mirror of
https://github.com/MikaylaFischler/cc-mek-scada.git
synced 2024-08-30 18:22:34 +00:00
258 lines
8.7 KiB
Lua
258 lines
8.7 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 rsio = require("scada-common.rsio")
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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 unit_session = require("supervisor.session.rtu.unit_session")
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local redstone = {}
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local RTU_UNIT_TYPES = comms.RTU_UNIT_TYPES
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local MODBUS_FCODE = types.MODBUS_FCODE
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local RS_IO = rsio.IO
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local IO_LVL = rsio.IO_LVL
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local IO_DIR = rsio.IO_DIR
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local IO_MODE = rsio.IO_MODE
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local RS_RTU_S_CMDS = {
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}
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local RS_RTU_S_DATA = {
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RS_COMMAND = 1
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}
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redstone.RS_RTU_S_CMDS = RS_RTU_S_CMDS
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redstone.RS_RTU_S_DATA = RS_RTU_S_DATA
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local TXN_TYPES = {
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DI_READ = 1,
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COIL_WRITE = 2,
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INPUT_REG_READ = 3,
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HOLD_REG_WRITE = 4
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}
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local TXN_TAGS = {
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"redstone.di_read",
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"redstone.coil_write",
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"redstone.input_reg_write",
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"redstone.hold_reg_write"
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}
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local PERIODICS = {
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INPUT_READ = 200
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}
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-- create a new redstone rtu session runner
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---@param session_id integer
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---@param unit_id integer
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---@param advert rtu_advertisement
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---@param out_queue mqueue
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function redstone.new(session_id, unit_id, advert, out_queue)
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-- type check
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if advert.type ~= RTU_UNIT_TYPES.REDSTONE then
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log.error("attempt to instantiate redstone RTU for type '" .. advert.type .. "'. this is a bug.")
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return nil
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end
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-- for redstone, use unit ID not device index
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local log_tag = "session.rtu(" .. session_id .. ").redstone(" .. unit_id .. "): "
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local self = {
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session = unit_session.new(unit_id, advert, out_queue, log_tag, TXN_TAGS),
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in_q = mqueue.new(),
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has_di = false,
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has_ai = false,
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periodics = {
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next_di_req = 0,
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next_ir_req = 0
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},
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io_list = {
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digital_in = {}, -- discrete inputs
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digital_out = {}, -- coils
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analog_in = {}, -- input registers
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analog_out = {} -- holding registers
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},
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db = {}
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}
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local public = self.session.get()
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-- INITIALIZE --
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-- create all channels as disconnected
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for _ = 1, #RS_IO do
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table.insert(self.db, IO_LVL.DISCONNECT)
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end
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-- setup I/O
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for i = 1, #advert.rsio do
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local channel = advert.rsio[i]
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local mode = rsio.get_io_mode(channel)
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if mode == IO_MODE.DIGITAL_IN then
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self.has_di = true
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table.insert(self.io_list.digital_in, channel)
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elseif mode == IO_MODE.DIGITAL_OUT then
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table.insert(self.io_list.digital_out, channel)
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elseif mode == IO_MODE.ANALOG_IN then
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self.has_ai = true
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table.insert(self.io_list.analog_in, channel)
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elseif mode == IO_MODE.ANALOG_OUT then
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table.insert(self.io_list.analog_out, channel)
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else
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-- should be unreachable code, we already validated channels
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log.error(log_tag .. "failed to identify advertisement channel IO mode (" .. channel .. ")", true)
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return nil
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end
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self.db[channel] = IO_LVL.LOW
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end
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-- PRIVATE FUNCTIONS --
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-- query discrete inputs
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local function _request_discrete_inputs()
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self.session.send_request(TXN_TYPES.DI_READ, MODBUS_FCODE.READ_DISCRETE_INPUTS, { 1, #self.io_list.digital_in })
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end
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-- query input registers
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local function _request_input_registers()
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self.session.send_request(TXN_TYPES.INPUT_REG_READ, MODBUS_FCODE.READ_INPUT_REGS, { 1, #self.io_list.analog_in })
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end
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-- write coil output
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local function _write_coil(coil, value)
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self.session.send_request(TXN_TYPES.COIL_WRITE, MODBUS_FCODE.WRITE_MUL_COILS, { coil, value })
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end
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-- write holding register output
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local function _write_holding_register(reg, value)
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self.session.send_request(TXN_TYPES.HOLD_REG_WRITE, MODBUS_FCODE.WRITE_MUL_HOLD_REGS, { reg, value })
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end
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-- PUBLIC FUNCTIONS --
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-- handle a packet
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---@param m_pkt modbus_frame
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function public.handle_packet(m_pkt)
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local txn_type = self.session.try_resolve(m_pkt.txn_id)
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if txn_type == false then
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-- nothing to do
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elseif txn_type == TXN_TYPES.DI_READ then
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-- discrete input read response
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if m_pkt.length == #self.io_list.digital_in then
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for i = 1, m_pkt.length do
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local channel = self.io_list.digital_in[i]
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local value = m_pkt.data[i]
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self.db[channel] = value
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end
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else
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log.debug(log_tag .. "MODBUS transaction reply length mismatch (" .. TXN_TAGS[txn_type] .. ")")
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end
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elseif txn_type == TXN_TYPES.INPUT_REG_READ then
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-- input register read response
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if m_pkt.length == #self.io_list.analog_in then
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for i = 1, m_pkt.length do
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local channel = self.io_list.analog_in[i]
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local value = m_pkt.data[i]
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self.db[channel] = value
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end
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else
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log.debug(log_tag .. "MODBUS transaction reply length mismatch (" .. TXN_TAGS[txn_type] .. ")")
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end
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elseif txn_type == TXN_TYPES.COIL_WRITE or txn_type == TXN_TYPES.HOLD_REG_WRITE then
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-- successful acknowledgement
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elseif txn_type == nil then
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log.error(log_tag .. "unknown transaction reply")
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else
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log.error(log_tag .. "unknown transaction type " .. txn_type)
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end
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end
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-- update this runner
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---@param time_now integer milliseconds
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function public.update(time_now)
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-- check command queue
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while self.in_q.ready() do
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-- get a new message to process
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local msg = self.in_q.pop()
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if msg ~= nil then
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if 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 == RS_RTU_S_DATA.RS_COMMAND then
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local rs_cmd = cmd.val ---@type rs_session_command
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if self.db[rs_cmd.channel] ~= IO_LVL.DISCONNECT then
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-- we have this as a connected channel
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local mode = rsio.get_io_mode(rs_cmd.channel)
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if mode == IO_MODE.DIGITAL_OUT then
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-- record the value for retries
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self.db[rs_cmd.channel] = rs_cmd.value
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-- find the coil address then write to it
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for i = 0, #self.digital_out do
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if self.digital_out[i] == rs_cmd.channel then
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_write_coil(i, rs_cmd.value)
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break
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end
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end
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elseif mode == IO_MODE.ANALOG_OUT then
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-- record the value for retries
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self.db[rs_cmd.channel] = rs_cmd.value
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-- find the holding register address then write to it
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for i = 0, #self.analog_out do
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if self.analog_out[i] == rs_cmd.channel then
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_write_holding_register(i, rs_cmd.value)
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break
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end
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end
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elseif mode ~= nil then
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log.debug(log_tag .. "attemted write to non D/O or A/O mode " .. mode)
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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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-- max 100ms spent processing queue
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if util.time() - time_now > 100 then
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log.warning(log_tag .. "exceeded 100ms queue process limit")
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break
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end
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end
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time_now = util.time()
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-- poll digital inputs
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if self.has_di then
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if self.periodics.next_di_req <= time_now then
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_request_discrete_inputs()
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self.periodics.next_di_req = time_now + PERIODICS.INPUT_READ
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end
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end
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-- poll analog inputs
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if self.has_ai then
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if self.periodics.next_ir_req <= time_now then
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_request_input_registers()
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self.periodics.next_ir_req = time_now + PERIODICS.INPUT_READ
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end
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end
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self.session.post_update()
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end
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-- get the unit session database
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function public.get_db() return self.db end
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return public, self.in_q
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end
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return redstone
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