mirror of
https://github.com/MikaylaFischler/cc-mek-scada.git
synced 2024-08-30 18:22:34 +00:00
189 lines
4.3 KiB
Lua
189 lines
4.3 KiB
Lua
--
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-- Utility Functions
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--
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---@class util
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local util = {}
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-- PRINT --
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-- print
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util.print = function (message)
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term.write(message)
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end
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-- print line
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util.println = function (message)
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print(message)
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end
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-- timestamped print
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util.print_ts = function (message)
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term.write(os.date("[%H:%M:%S] ") .. message)
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end
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-- timestamped print line
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util.println_ts = function (message)
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print(os.date("[%H:%M:%S] ") .. message)
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end
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-- TIME --
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-- current time
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---@return integer milliseconds
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util.time_ms = function ()
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---@diagnostic disable-next-line: undefined-field
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return os.epoch('local')
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end
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-- current time
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---@return integer seconds
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util.time_s = function ()
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---@diagnostic disable-next-line: undefined-field
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return os.epoch('local') / 1000
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end
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-- current time
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---@return integer milliseconds
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util.time = function ()
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return util.time_ms()
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end
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-- PARALLELIZATION --
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-- protected sleep call so we still are in charge of catching termination
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---@param t integer seconds
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--- EVENT_CONSUMER: this function consumes events
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util.psleep = function (t)
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---@diagnostic disable-next-line: undefined-field
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pcall(os.sleep, t)
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end
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-- no-op to provide a brief pause (1 tick) to yield
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---
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--- EVENT_CONSUMER: this function consumes events
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util.nop = function ()
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util.psleep(0.05)
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end
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-- attempt to maintain a minimum loop timing (duration of execution)
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---@param target_timing integer minimum amount of milliseconds to wait for
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---@param last_update integer millisecond time of last update
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---@return integer time_now
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-- EVENT_CONSUMER: this function consumes events
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util.adaptive_delay = function (target_timing, last_update)
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local sleep_for = target_timing - (util.time() - last_update)
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-- only if >50ms since worker loops already yield 0.05s
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if sleep_for >= 50 then
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util.psleep(sleep_for / 1000.0)
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end
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return util.time()
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end
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-- MEKANISM POWER --
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-- function kFE(fe) return fe / 1000 end
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-- function MFE(fe) return fe / 1000000 end
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-- function GFE(fe) return fe / 1000000000 end
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-- function TFE(fe) return fe / 1000000000000 end
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-- -- FLOATING POINT PRINTS --
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-- local function fractional_1s(number)
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-- return number == math.round(number)
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-- end
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-- local function fractional_10ths(number)
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-- number = number * 10
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-- return number == math.round(number)
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-- end
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-- local function fractional_100ths(number)
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-- number = number * 100
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-- return number == math.round(number)
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-- end
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-- function power_format(fe)
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-- if fe < 1000 then
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-- return string.format("%.2f FE", fe)
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-- elseif fe < 1000000 then
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-- return string.format("%.3f kFE", kFE(fe))
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-- end
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-- end
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-- WATCHDOG --
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-- ComputerCraft OS Timer based Watchdog
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---@param timeout number timeout duration
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---
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--- triggers a timer event if not fed within 'timeout' seconds
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util.new_watchdog = function (timeout)
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---@diagnostic disable-next-line: undefined-field
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local start_timer = os.startTimer
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---@diagnostic disable-next-line: undefined-field
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local cancel_timer = os.cancelTimer
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local self = {
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timeout = timeout,
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wd_timer = start_timer(timeout)
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}
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---@class watchdog
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local public = {}
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---@param timer number timer event timer ID
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public.is_timer = function (timer)
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return self.wd_timer == timer
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end
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-- satiate the beast
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public.feed = function ()
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if self.wd_timer ~= nil then
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cancel_timer(self.wd_timer)
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end
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self.wd_timer = start_timer(self.timeout)
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end
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-- cancel the watchdog
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public.cancel = function ()
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if self.wd_timer ~= nil then
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cancel_timer(self.wd_timer)
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end
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end
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return public
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end
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-- LOOP CLOCK --
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-- ComputerCraft OS Timer based Loop Clock
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---@param period number clock period
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---
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--- fires a timer event at the specified period, does not start at construct time
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util.new_clock = function (period)
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---@diagnostic disable-next-line: undefined-field
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local start_timer = os.startTimer
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local self = {
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period = period,
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timer = nil
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}
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---@class clock
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local public = {}
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---@param timer number timer event timer ID
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public.is_clock = function (timer)
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return self.timer == timer
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end
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-- start the clock
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public.start = function ()
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self.timer = start_timer(self.period)
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end
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return public
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end
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return util
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