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254 lines
4.8 KiB
Lua
254 lines
4.8 KiB
Lua
3 years ago
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--[[ NOTE:
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These standard library extensions are NOT used in Discordia. They are here as a
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convenience for those who wish to use them.
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There are multiple ways to implement some of these commonly used functions.
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Please pay attention to the implementations used here and make sure that they
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match your expectations.
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You may freely add to, remove, or edit any of the code here without any effect
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on the rest of the library. If you do make changes, do be careful when sharing
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your expectations with other users.
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You can inject these extensions into the standard Lua global tables by
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calling either the main module (ex: discordia.extensions()) or each sub-module
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(ex: discordia.extensions.string())
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]]
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local sort, concat = table.sort, table.concat
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local insert, remove = table.insert, table.remove
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local byte, char = string.byte, string.char
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local gmatch, match = string.gmatch, string.match
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local rep, find, sub = string.rep, string.find, string.sub
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local min, max, random = math.min, math.max, math.random
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local ceil, floor = math.ceil, math.floor
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local table = {}
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function table.count(tbl)
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local n = 0
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for _ in pairs(tbl) do
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n = n + 1
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end
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return n
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end
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function table.deepcount(tbl)
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local n = 0
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for _, v in pairs(tbl) do
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n = type(v) == 'table' and n + table.deepcount(v) or n + 1
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end
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return n
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end
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function table.copy(tbl)
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local ret = {}
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for k, v in pairs(tbl) do
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ret[k] = v
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end
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return ret
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end
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function table.deepcopy(tbl)
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local ret = {}
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for k, v in pairs(tbl) do
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ret[k] = type(v) == 'table' and table.deepcopy(v) or v
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end
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return ret
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end
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function table.reverse(tbl)
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for i = 1, #tbl do
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insert(tbl, i, remove(tbl))
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end
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end
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function table.reversed(tbl)
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local ret = {}
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for i = #tbl, 1, -1 do
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insert(ret, tbl[i])
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end
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return ret
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end
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function table.keys(tbl)
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local ret = {}
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for k in pairs(tbl) do
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insert(ret, k)
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end
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return ret
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end
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function table.values(tbl)
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local ret = {}
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for _, v in pairs(tbl) do
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insert(ret, v)
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end
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return ret
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end
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function table.randomipair(tbl)
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local i = random(#tbl)
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return i, tbl[i]
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end
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function table.randompair(tbl)
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local rand = random(table.count(tbl))
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local n = 0
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for k, v in pairs(tbl) do
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n = n + 1
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if n == rand then
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return k, v
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end
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end
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end
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function table.sorted(tbl, fn)
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local ret = {}
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for i, v in ipairs(tbl) do
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ret[i] = v
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end
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sort(ret, fn)
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return ret
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end
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function table.search(tbl, value)
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for k, v in pairs(tbl) do
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if v == value then
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return k
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end
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end
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return nil
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end
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function table.slice(tbl, start, stop, step)
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local ret = {}
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for i = start or 1, stop or #tbl, step or 1 do
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insert(ret, tbl[i])
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end
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return ret
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end
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local string = {}
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function string.split(str, delim)
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local ret = {}
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if not str then
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return ret
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end
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if not delim or delim == '' then
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for c in gmatch(str, '.') do
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insert(ret, c)
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end
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return ret
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end
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local n = 1
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while true do
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local i, j = find(str, delim, n)
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if not i then break end
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insert(ret, sub(str, n, i - 1))
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n = j + 1
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end
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insert(ret, sub(str, n))
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return ret
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end
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function string.trim(str)
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return match(str, '^%s*(.-)%s*$')
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end
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function string.pad(str, len, align, pattern)
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pattern = pattern or ' '
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if align == 'right' then
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return rep(pattern, (len - #str) / #pattern) .. str
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elseif align == 'center' then
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local pad = 0.5 * (len - #str) / #pattern
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return rep(pattern, floor(pad)) .. str .. rep(pattern, ceil(pad))
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else -- left
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return str .. rep(pattern, (len - #str) / #pattern)
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end
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end
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function string.startswith(str, pattern, plain)
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local start = 1
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return find(str, pattern, start, plain) == start
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end
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function string.endswith(str, pattern, plain)
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local start = #str - #pattern + 1
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return find(str, pattern, start, plain) == start
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end
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function string.levenshtein(str1, str2)
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if str1 == str2 then return 0 end
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local len1 = #str1
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local len2 = #str2
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if len1 == 0 then
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return len2
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elseif len2 == 0 then
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return len1
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end
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local matrix = {}
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for i = 0, len1 do
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matrix[i] = {[0] = i}
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end
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for j = 0, len2 do
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matrix[0][j] = j
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end
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for i = 1, len1 do
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for j = 1, len2 do
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local cost = byte(str1, i) == byte(str2, j) and 0 or 1
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matrix[i][j] = min(matrix[i-1][j] + 1, matrix[i][j-1] + 1, matrix[i-1][j-1] + cost)
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end
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end
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return matrix[len1][len2]
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end
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function string.random(len, mn, mx)
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local ret = {}
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mn = mn or 0
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mx = mx or 255
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for _ = 1, len do
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insert(ret, char(random(mn, mx)))
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end
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return concat(ret)
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end
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local math = {}
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function math.clamp(n, minValue, maxValue)
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return min(max(n, minValue), maxValue)
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end
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function math.round(n, i)
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local m = 10 ^ (i or 0)
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return floor(n * m + 0.5) / m
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end
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local ext = setmetatable({
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table = table,
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string = string,
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math = math,
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}, {__call = function(self)
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for _, v in pairs(self) do
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v()
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end
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end})
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for n, m in pairs(ext) do
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setmetatable(m, {__call = function(self)
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for k, v in pairs(self) do
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_G[n][k] = v
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end
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end})
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end
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return ext
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