mirror of
https://github.com/MikaylaFischler/cc-mek-scada.git
synced 2024-08-30 18:22:34 +00:00
223 lines
7.4 KiB
Lua
223 lines
7.4 KiB
Lua
local log = require("scada-common.log")
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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 imatrix = {}
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local RTU_UNIT_TYPE = types.RTU_UNIT_TYPE
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local MODBUS_FCODE = types.MODBUS_FCODE
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local TXN_TYPES = {
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FORMED = 1,
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BUILD = 2,
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STATE = 3,
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TANKS = 4
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}
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local TXN_TAGS = {
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"imatrix.formed",
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"imatrix.build",
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"imatrix.state",
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"imatrix.tanks"
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}
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local PERIODICS = {
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FORMED = 2000,
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BUILD = 1000,
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STATE = 500,
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TANKS = 1000
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}
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-- create a new imatrix rtu session runner
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---@nodiscard
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---@param session_id integer RTU session ID
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---@param unit_id integer RTU unit ID
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---@param advert rtu_advertisement RTU advertisement table
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---@param out_queue mqueue RTU unit message out queue
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function imatrix.new(session_id, unit_id, advert, out_queue)
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-- checks
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if advert.type ~= RTU_UNIT_TYPE.IMATRIX then
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log.error("attempt to instantiate imatrix RTU for type " .. types.rtu_type_to_string(advert.type))
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return nil
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end
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local log_tag = util.c("session.rtu(", session_id, ").imatrix[@", unit_id, "]: ")
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local self = {
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session = unit_session.new(session_id, unit_id, advert, out_queue, log_tag, TXN_TAGS),
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has_build = false,
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periodics = {
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next_formed_req = 0,
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next_build_req = 0,
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next_state_req = 0,
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next_tanks_req = 0
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},
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---@class imatrix_session_db
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db = {
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formed = false,
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build = {
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last_update = 0,
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length = 0,
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width = 0,
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height = 0,
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min_pos = types.new_zero_coordinate(),
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max_pos = types.new_zero_coordinate(),
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max_energy = 0,
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transfer_cap = 0,
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cells = 0,
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providers = 0
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},
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state = {
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last_update = 0,
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last_input = 0,
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last_output = 0
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},
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tanks = {
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last_update = 0,
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energy = 0,
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energy_need = 0,
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energy_fill = 0.0
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}
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}
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}
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local public = self.session.get()
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-- PRIVATE FUNCTIONS --
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-- query if the multiblock is formed
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local function _request_formed()
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-- read discrete input 1 (start = 1, count = 1)
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self.session.send_request(TXN_TYPES.FORMED, MODBUS_FCODE.READ_DISCRETE_INPUTS, { 1, 1 })
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end
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-- query the build of the device
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local function _request_build()
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-- read input registers 1 through 9 (start = 1, count = 9)
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self.session.send_request(TXN_TYPES.BUILD, MODBUS_FCODE.READ_INPUT_REGS, { 1, 9 })
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end
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-- query the state of the device
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local function _request_state()
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-- read input register 10 through 11 (start = 10, count = 2)
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self.session.send_request(TXN_TYPES.STATE, MODBUS_FCODE.READ_INPUT_REGS, { 10, 2 })
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end
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-- query the tanks of the device
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local function _request_tanks()
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-- read input registers 12 through 15 (start = 12, count = 3)
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self.session.send_request(TXN_TYPES.TANKS, MODBUS_FCODE.READ_INPUT_REGS, { 12, 3 })
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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)
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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.FORMED then
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-- formed response
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-- load in data if correct length
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if m_pkt.length == 1 then
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self.db.formed = m_pkt.data[1]
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if not self.db.formed then self.has_build = false 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.BUILD then
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-- build response
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-- load in data if correct length
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if m_pkt.length == 9 then
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self.db.build.last_update = util.time_ms()
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self.db.build.length = m_pkt.data[1]
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self.db.build.width = m_pkt.data[2]
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self.db.build.height = m_pkt.data[3]
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self.db.build.min_pos = m_pkt.data[4]
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self.db.build.max_pos = m_pkt.data[5]
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self.db.build.max_energy = m_pkt.data[6]
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self.db.build.transfer_cap = m_pkt.data[7]
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self.db.build.cells = m_pkt.data[8]
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self.db.build.providers = m_pkt.data[9]
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self.has_build = true
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out_queue.push_data(unit_session.RTU_US_DATA.BUILD_CHANGED, { unit = advert.reactor, type = advert.type })
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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.STATE then
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-- state response
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-- load in data if correct length
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if m_pkt.length == 2 then
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self.db.state.last_update = util.time_ms()
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self.db.state.last_input = m_pkt.data[1]
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self.db.state.last_output = m_pkt.data[2]
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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.TANKS then
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-- tanks response
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-- load in data if correct length
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if m_pkt.length == 3 then
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self.db.tanks.last_update = util.time_ms()
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self.db.tanks.energy = m_pkt.data[1]
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self.db.tanks.energy_need = m_pkt.data[2]
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self.db.tanks.energy_fill = m_pkt.data[3]
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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 == 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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if self.periodics.next_formed_req <= time_now then
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_request_formed()
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self.periodics.next_formed_req = time_now + PERIODICS.FORMED
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end
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if self.db.formed then
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if not self.has_build and self.periodics.next_build_req <= time_now then
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_request_build()
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self.periodics.next_build_req = time_now + PERIODICS.BUILD
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end
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if self.periodics.next_state_req <= time_now then
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_request_state()
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self.periodics.next_state_req = time_now + PERIODICS.STATE
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end
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if self.periodics.next_tanks_req <= time_now then
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_request_tanks()
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self.periodics.next_tanks_req = time_now + PERIODICS.TANKS
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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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-- invalidate build cache
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function public.invalidate_cache()
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self.periodics.next_formed_req = 0
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self.periodics.next_build_req = 0
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self.has_build = false
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end
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-- get the unit session database
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---@nodiscard
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function public.get_db() return self.db end
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return public
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end
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return imatrix
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