2014-02-27 20:19:10 +00:00
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--
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-- lume
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--
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-- Copyright (c) 2014, rxi
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--
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-- This library is free software; you can redistribute it and/or modify it
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-- under the terms of the MIT license. See LICENSE for details.
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--
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2014-02-27 22:55:19 +00:00
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local lume = { _version = "1.0.1" }
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2014-02-27 20:19:10 +00:00
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function lume.clamp(x, min, max)
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return math.max(math.min(x, max), min)
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end
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function lume.round(x)
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return x > 0 and math.floor(x + .5) or math.ceil(x - .5)
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end
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function lume.sign(x)
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return x < 0 and -1 or 1
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end
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function lume.lerp(a, b, amount)
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return a + (b - a) * lume.clamp(amount, 0, 1)
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end
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function lume.smooth(a, b, amount)
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local m = (1 - math.cos(lume.clamp(amount, 0, 1) * math.pi)) / 2
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return a + (b - a) * m
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end
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function lume.pingpong(x, len)
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return (1 - math.abs(1 - x % 2)) * (len or 1)
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end
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function lume.distance(x1, y1, x2, y2)
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return math.sqrt((x1 - x2) ^ 2 + (y1 - y2) ^ 2)
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end
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function lume.angle(x1, y1, x2, y2)
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return math.atan2(x1 - x2, y1 - y2)
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end
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function lume.random(a, b)
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if not a then a, b = 0, 1 end
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if not b then b = 0 end
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return a + math.random() * (b - a)
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end
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function lume.randomchoice(t)
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return t[math.random(#t)]
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end
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function lume.shuffle(t)
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for i = 1, #t do
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local r = math.random(#t)
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t[i], t[r] = t[r], t[i]
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end
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return t
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end
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function lume.array(...)
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local t = {}
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for x in unpack({...}) do t[#t + 1] = x end
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return t
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end
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function lume.map(t, fn)
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local rtn = {}
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for k, v in pairs(t) do rtn[k] = fn(v) end
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return rtn
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end
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function lume.all(t, fn)
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for k, v in pairs(t) do
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if not fn(v) then return false end
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end
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return true
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end
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function lume.any(t, fn)
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for k, v in pairs(t) do
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if fn(v) then return true end
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end
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return false
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end
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function lume.reduce(t, fn, first)
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local acc = first
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if acc == nil then acc = 0 end
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for i = 1, #t do acc = fn(acc, t[i]) end
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return acc
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end
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2014-02-27 22:39:09 +00:00
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function lume.set(t, retainkeys)
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2014-02-27 22:17:36 +00:00
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local tmp = {}
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for k, v in pairs(t) do tmp[v] = k end
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local rtn = {}
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2014-02-27 22:39:09 +00:00
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for k, v in pairs(tmp) do rtn[retainkeys and v or (#rtn + 1)] = k end
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2014-02-27 22:17:36 +00:00
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return rtn
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end
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2014-02-27 22:39:09 +00:00
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function lume.filter(t, fn, retainkeys)
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2014-02-27 20:19:10 +00:00
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local rtn = {}
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for k, v in pairs(t) do
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2014-02-27 22:39:09 +00:00
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if fn(v) then rtn[retainkeys and k or (#rtn + 1)] = v end
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2014-02-27 20:19:10 +00:00
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end
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return rtn
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end
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2014-02-27 22:39:09 +00:00
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function lume.merge(t, t2, retainkeys)
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2014-02-27 20:19:10 +00:00
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for k, v in pairs(t2) do
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2014-02-27 22:39:09 +00:00
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t[retainkeys and k or (#t + 1)] = v
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2014-02-27 20:19:10 +00:00
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end
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return t
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end
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function lume.find(t, value)
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for k, v in pairs(t) do
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if v == value then return k end
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end
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return nil
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end
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function lume.once(fn, ...)
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local arg = {...}
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return function()
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if arg == nil then return end
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fn(unpack(arg))
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arg = nil
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end
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end
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function lume.slice(t, i, j)
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i = i or 1
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j = j and (j < 0 and (#t + j) or j) or (#t - i + 1)
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local rtn = {}
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for i = math.max(i, 1), math.min(j, #t) do
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rtn[#rtn + 1] = t[i]
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end
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return rtn
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end
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function lume.clone(t)
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2014-02-27 21:31:26 +00:00
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local rtn = {}
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2014-02-27 20:19:10 +00:00
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for k, v in pairs(t) do rtn[k] = v end
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return rtn
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end
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function lume.fn(fn, ...)
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local arg = {...}
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return function() fn(unpack(arg)) end
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end
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function lume.serialize(x)
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local f = { string = function(v) return string.format("%q", v) end,
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number = tostring, boolean = tostring }
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f.table = function(t)
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local rtn = {}
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for k, v in pairs(t) do
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rtn[#rtn + 1] = "[" .. f[type(k)](k) .. "]=" .. f[type(v)](v) .. ","
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end
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return "{" .. table.concat(rtn) .. "}"
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end
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return f[type(x)](x)
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end
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function lume.deserialize(str)
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return lume.dostring("return " .. str)
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end
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function lume.split(str, sep)
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return lume.array(str:gmatch("([^" .. (sep or "%s") .. "]+)"))
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end
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function lume.trim(str, chars)
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chars = chars or "%s"
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return str:match("^[" .. chars .. "]*(.-)[" .. chars .. "]*$")
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end
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function lume.format(str, vars)
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local f = function(x) return tostring(vars[x]) or "{" .. x .. "}" end
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return (str:gsub("{(.-)}", f))
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end
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function lume.dostring(str)
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return assert(loadstring(str))()
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end
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function lume.rgba(color)
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local floor = math.floor
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local a = floor((color / 2 ^ 24) % 256)
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local r = floor((color / 2 ^ 16) % 256)
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local g = floor((color / 2 ^ 08) % 256)
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local b = floor((color) % 256)
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return r, g, b, a
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end
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return lume
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