cc-mek-scada/scada-common/util.lua

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--
-- Utility Functions
--
local cc_strings = require("cc.strings")
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local const = require("scada-common.constants")
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local math = math
local string = string
local table = table
local os = os
local getmetatable = getmetatable
local print = print
local tostring = tostring
local type = type
local t_concat = table.concat
local t_insert = table.insert
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local t_pack = table.pack
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---@class util
local util = {}
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-- scada-common version
util.version = "1.3.1"
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util.TICK_TIME_S = 0.05
util.TICK_TIME_MS = 50
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--#region OPERATORS
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-- trinary operator
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---@nodiscard
---@param cond boolean|nil condition
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---@param a any return if true
---@param b any return if false
---@return any value
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function util.trinary(cond, a, b)
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if cond then return a else return b end
end
--#endregion
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--#region PRINT
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local p_time = "[%H:%M:%S] "
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-- print
---@param message any
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function util.print(message) term.write(tostring(message)) end
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-- print line
---@param message any
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function util.println(message) print(tostring(message)) end
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-- timestamped print
---@param message any
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function util.print_ts(message) term.write(os.date(p_time) .. tostring(message)) end
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-- timestamped print line
---@param message any
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function util.println_ts(message) print(os.date(p_time) .. tostring(message)) end
--#endregion
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--#region STRING TOOLS
-- get a value as a string
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---@nodiscard
---@param val any
---@return string
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function util.strval(val)
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local t = type(val)
if t == "string" then return val end
-- this depends on Lua short-circuiting the or check for metatables (note: metatables won't have metatables)
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if (t == "table" and (getmetatable(val) == nil or getmetatable(val).__tostring == nil)) or t == "function" then
return t_concat{"[", tostring(val), "]"}
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else return tostring(val) end
end
-- tokenize a string by a separator<br>
-- does not behave exactly like C's strtok
---@param str string string to tokenize
---@param sep string separator to tokenize by
---@return table token_list
function util.strtok(str, sep)
local list = {}
for part in string.gmatch(str, "([^" .. sep .. "]+)") do t_insert(list, part) end
return list
end
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-- repeat a space n times
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---@nodiscard
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---@param n integer
---@return string
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function util.spaces(n) return string.rep(" ", n) end
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-- pad text to a minimum width
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---@nodiscard
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---@param str string text
---@param n integer minimum width
---@return string
function util.pad(str, n)
local len = string.len(str)
local lpad = math.floor((n - len) / 2)
local rpad = (n - len) - lpad
return t_concat{util.spaces(lpad), str, util.spaces(rpad)}
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end
-- wrap a string into a table of lines
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---@nodiscard
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---@param str string
---@param limit integer line limit
---@return table lines
function util.strwrap(str, limit) return cc_strings.wrap(str, limit) end
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-- concatenation with built-in to string
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---@nodiscard
---@vararg any
---@return string
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function util.concat(...)
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local args, strings = t_pack(...), {}
for i = 1, args.n do strings[i] = util.strval(args[i]) end
return t_concat(strings)
end
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-- alias
util.c = util.concat
-- sprintf implementation
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---@nodiscard
---@param format string
---@vararg any
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function util.sprintf(format, ...) return string.format(format, ...) end
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-- format a number string with commas as the thousands separator<br>
-- subtracts from spaces at the start if present for each comma used
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---@nodiscard
---@param num string number string
---@return string
function util.comma_format(num)
local formatted = num
local commas = 0
local i = 1
while i > 0 do
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formatted, i = formatted:gsub("^(%s-%d+)(%d%d%d)", "%1,%2")
if i > 0 then commas = commas + 1 end
end
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local _, num_spaces = formatted:gsub(" %s-", "")
local remove = math.min(num_spaces, commas)
formatted = string.sub(formatted, remove + 1)
return formatted
end
--#endregion
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--#region MATH
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-- is a value an integer
---@nodiscard
---@param x any value
---@return boolean is_integer
function util.is_int(x) return type(x) == "number" and x == math.floor(x) end
-- get the sign of a number
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---@nodiscard
---@param x number value
---@return integer sign (-1 for < 0, 1 otherwise)
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function util.sign(x) return util.trinary(x < 0, -1, 1) end
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-- round a number to an integer
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---@nodiscard
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---@return integer rounded
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function util.round(x) return math.floor(x + 0.5) end
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-- get a new moving average object
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---@nodiscard
---@param length integer history length
function util.mov_avg(length)
local data = {}
local index = 1
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local last_t = 0 ---@type number|nil
---@class moving_average
local public = {}
-- reset all to a given value, or clear all data if no value is given
---@param x number? value
function public.reset(x)
index = 1
data = {}
if x then
for _ = 1, length do t_insert(data, x) end
end
end
-- record a new value
---@param x number new value
---@param t number? optional last update time to prevent duplicated entries
function public.record(x, t)
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if type(t) == "number" and last_t == t then return end
data[index] = x
last_t = t
index = index + 1
if index > length then index = 1 end
end
-- compute the moving average
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---@nodiscard
---@return number average
function public.compute()
if #data == 0 then return 0 end
local sum = 0
for i = 1, #data do
sum = sum + data[i]
end
return sum / #data
end
return public
end
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--#endregion
--#region TIME
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-- current time
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---@nodiscard
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---@return integer milliseconds
---@diagnostic disable-next-line: undefined-field
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function util.time_ms() return os.epoch("local") end
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-- current time
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---@nodiscard
---@return number seconds
---@diagnostic disable-next-line: undefined-field
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function util.time_s() return os.epoch("local") / 1000.0 end
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-- current time
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---@nodiscard
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---@return integer milliseconds
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function util.time() return util.time_ms() end
--#endregion
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--#region OS
-- OS pull event raw wrapper with types
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---@nodiscard
---@param target_event? string event to wait for
---@return os_event event, any param1, any param2, any param3, any param4, any param5
---@diagnostic disable-next-line: undefined-field
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function util.pull_event(target_event) return os.pullEventRaw(target_event) end
-- OS queue event raw wrapper with types
---@param event os_event
---@param param1 any
---@param param2 any
---@param param3 any
---@param param4 any
---@param param5 any
function util.push_event(event, param1, param2, param3, param4, param5)
---@diagnostic disable-next-line: undefined-field
return os.queueEvent(event, param1, param2, param3, param4, param5)
end
-- start an OS timer
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---@nodiscard
---@param t number timer duration in seconds
---@return integer timer ID
---@diagnostic disable-next-line: undefined-field
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function util.start_timer(t) return os.startTimer(t) end
-- cancel an OS timer
---@param timer integer timer ID
---@diagnostic disable-next-line: undefined-field
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function util.cancel_timer(timer) os.cancelTimer(timer) end
--#endregion
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--#region PARALLELIZATION
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-- protected sleep call so we still are in charge of catching termination<br>
-- returns the result of pcall
---@param t number seconds
---@return boolean success, any result, any ...
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--- EVENT_CONSUMER: this function consumes events
---@diagnostic disable-next-line: undefined-field
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function util.psleep(t) return pcall(os.sleep, t) end
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-- no-op to provide a brief pause (1 tick) to yield<br>
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--- EVENT_CONSUMER: this function consumes events
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function util.nop() util.psleep(0.05) end
-- attempt to maintain a minimum loop timing (duration of execution)<br>
-- note: will not yield for time periods less than 50ms
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---@nodiscard
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---@param target_timing integer minimum amount of milliseconds to wait for
---@param last_update integer millisecond time of last update
---@return integer time_now
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--- EVENT_CONSUMER: this function consumes events
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function util.adaptive_delay(target_timing, last_update)
local sleep_for = target_timing - (util.time() - last_update)
-- only if >50ms since worker loops already yield 0.05s
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if sleep_for >= 50 then util.psleep(sleep_for / 1000.0) end
return util.time()
end
--#endregion
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--#region TABLE UTILITIES
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-- delete elements from a table if the passed function returns false when passed a table element<br>
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-- put briefly: deletes elements that return false, keeps elements that return true
---@param t table table to remove elements from
---@param f function should return false to delete an element when passed the element: f(elem) = true|false
---@param on_delete? function optional function to execute on deletion, passed the table element to be deleted as the parameter
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function util.filter_table(t, f, on_delete)
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local move_to = 1
for i = 1, #t do
local element = t[i]
if element ~= nil then
if f(element) then
if t[move_to] == nil then
t[move_to] = element
t[i] = nil
end
move_to = move_to + 1
else
if on_delete then on_delete(element) end
t[i] = nil
end
end
end
end
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-- check if a table contains the provided element
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---@nodiscard
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---@param t table table to check
---@param element any element to check for
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function util.table_contains(t, element)
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for i = 1, #t do
if t[i] == element then return true end
end
return false
end
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-- count the length of a table, even if the values are not sequential or contain named keys
---@nodiscard
---@param t table
---@return integer length
function util.table_len(t)
local n = 0
for _, _ in pairs(t) do n = n + 1 end
return n
end
--#endregion
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--#region MEKANISM MATH
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-- convert Joules to FE
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---@nodiscard
---@param J number Joules
---@return number FE Forge Energy
function util.joules_to_fe(J) return (J * 0.4) end
-- convert FE to Joules
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---@nodiscard
---@param FE number Forge Energy
---@return number J Joules
function util.fe_to_joules(FE) return (FE * 2.5) end
local function kFE(fe) return fe / 1000.0 end
local function MFE(fe) return fe / 1000000.0 end
local function GFE(fe) return fe / 1000000000.0 end
local function TFE(fe) return fe / 1000000000000.0 end
local function PFE(fe) return fe / 1000000000000000.0 end
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local function EFE(fe) return fe / 1000000000000000000.0 end -- if you accomplish this please touch grass
local function ZFE(fe) return fe / 1000000000000000000000.0 end -- how & why did you do this?
-- format a power value into XXX.XX UNIT format (FE, kFE, MFE, GFE, TFE, PFE, EFE, ZFE)
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---@nodiscard
---@param fe number forge energy value
---@param combine_label? boolean if a label should be included in the string itself
---@param format? string format override
---@return string str, string? unit
function util.power_format(fe, combine_label, format)
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local unit, value
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if type(format) ~= "string" then format = "%.2f" end
if fe < 1000.0 then
unit = "FE"
value = fe
elseif fe < 1000000.0 then
unit = "kFE"
value = kFE(fe)
elseif fe < 1000000000.0 then
unit = "MFE"
value = MFE(fe)
elseif fe < 1000000000000.0 then
unit = "GFE"
value = GFE(fe)
elseif fe < 1000000000000000.0 then
unit = "TFE"
value = TFE(fe)
elseif fe < 1000000000000000000.0 then
unit = "PFE"
value = PFE(fe)
elseif fe < 1000000000000000000000.0 then
unit = "EFE"
value = EFE(fe)
else
unit = "ZFE"
value = ZFE(fe)
end
if combine_label then
return util.sprintf(util.c(format, " %s"), value, unit)
else
return util.sprintf(format, value), unit
end
end
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-- compute Mekanism's rotation rate for a turbine
---@nodiscard
---@param turbine turbinev_session_db turbine data
function util.turbine_rotation(turbine)
local build = turbine.build
local inner_vol = build.steam_cap / const.mek.TURBINE_GAS_PER_TANK
local disp_rate = (build.dispersers * const.mek.TURBINE_DISPERSER_FLOW) * inner_vol
local vent_rate = build.vents * const.mek.TURBINE_VENT_FLOW
local max_rate = math.min(disp_rate, vent_rate)
local flow = math.min(max_rate, turbine.tanks.steam.amount)
return (flow * (turbine.tanks.steam.amount / build.steam_cap)) / max_rate
end
--#endregion
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--#region UTILITY CLASSES
-- WATCHDOG --
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-- OS timer based watchdog<br>
-- triggers a timer event if not fed within 'timeout' seconds
---@nodiscard
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---@param timeout number timeout duration
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function util.new_watchdog(timeout)
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local self = { timeout = timeout, wd_timer = util.start_timer(timeout) }
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---@class watchdog
local public = {}
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-- check if a timer is this watchdog
---@nodiscard
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---@param timer number event timer ID
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function public.is_timer(timer) return self.wd_timer == timer end
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-- satiate the beast
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function public.feed()
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public.cancel()
self.wd_timer = util.start_timer(self.timeout)
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end
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-- cancel the watchdog
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function public.cancel()
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if self.wd_timer ~= nil then util.cancel_timer(self.wd_timer) end
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end
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return public
end
-- LOOP CLOCK --
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-- OS timer based loop clock<br>
-- fires a timer event at the specified period, does not start at construct time
---@nodiscard
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---@param period number clock period
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function util.new_clock(period)
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local self = { period = period, timer = nil }
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---@class clock
local public = {}
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-- check if a timer is this clock
---@nodiscard
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---@param timer number timer event timer ID
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function public.is_clock(timer) return self.timer == timer end
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-- start the clock
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function public.start() self.timer = util.start_timer(self.period) end
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return public
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end
-- FIELD VALIDATOR --
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-- create a new type validator<br>
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-- can execute sequential checks and check valid() to see if it is still valid
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---@nodiscard
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function util.new_validator()
local valid = true
---@class validator
local public = {}
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function public.assert_type_bool(value) valid = valid and type(value) == "boolean" end
function public.assert_type_num(value) valid = valid and type(value) == "number" end
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function public.assert_type_int(value) valid = valid and util.is_int(value) end
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function public.assert_type_str(value) valid = valid and type(value) == "string" end
function public.assert_type_table(value) valid = valid and type(value) == "table" end
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function public.assert(check) valid = valid and (check == true) end
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function public.assert_eq(check, expect) valid = valid and check == expect end
function public.assert_min(check, min) valid = valid and check >= min end
function public.assert_min_ex(check, min) valid = valid and check > min end
function public.assert_max(check, max) valid = valid and check <= max end
function public.assert_max_ex(check, max) valid = valid and check < max end
function public.assert_range(check, min, max) valid = valid and check >= min and check <= max end
function public.assert_range_ex(check, min, max) valid = valid and check > min and check < max end
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function public.assert_channel(channel) valid = valid and util.is_int(channel) and channel >= 0 and channel <= 65535 end
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-- check if all assertions passed successfully
---@nodiscard
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function public.valid() return valid end
return public
end
--#endregion
return util