mirror of
https://github.com/sbrl/Minetest-WorldEditAdditions.git
synced 2024-11-01 22:03:02 +00:00
212 lines
4.1 KiB
Lua
212 lines
4.1 KiB
Lua
-- ██████ ██ ████████
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-- ██ ██ ██ ██
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-- ██████ ██ ██
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-- ██ ██ ██ ██
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-- ██████ ██ ██
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--- LuaJIT bit polyfill
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-- Adapted for Minetest by Starbeamrainbowlabs
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--
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-- Note that this file is MIT licenced, and NOT MPL-2.0!
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--
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-- Docs: http://bitop.luajit.org/api.html
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--
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-- TODO: Document these.
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-- @module worldeditadditions_core.bit
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-- @source https://github.com/Rabios/polyfill.lua/blob/master/polyfill.lua
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-- @licence MIT
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local bit_local
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if minetest.global_exists("bit") then
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bit_local = bit
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else
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bit_local = {
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bits = 32,
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powtab = { 1 }
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}
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for b = 1, bit_local.bits - 1 do
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bit_local.powtab[#bit_local.powtab + 1] = 2 ^ b
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end
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end
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-- Functions
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-- bit_local.band
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if not bit_local.band then
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bit_local.band = function(a, b)
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local result = 0
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for x = 1, bit_local.bits do
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result = result + result
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if (a < 0) then
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if (b < 0) then
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result = result + 1
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end
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end
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a = a + a
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b = b + b
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end
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return result
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end
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end
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-- bit_local.bor
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if not bit_local.bor then
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bit_local.bor = function(a, b)
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local result = 0
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for x = 1, bit_local.bits do
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result = result + result
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if (a < 0) then
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result = result + 1
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elseif (b < 0) then
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result = result + 1
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end
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a = a + a
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b = b + b
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end
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return result
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end
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end
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-- bit_local.bnot
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if not bit_local.bnot then
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bit_local.bnot = function(x)
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return bit_local.bxor(x, (bit_local.bits or math.floor(math.log(x, 2)) ^ 2) - 1)
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end
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end
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-- bit_local.lshift
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if not bit_local.lshift then
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bit_local.lshift = function(a, n)
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if (n > bit_local.bits) then
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a = 0
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else
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a = a * bit_local.powtab[n]
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end
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return a
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end
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end
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-- bit_local.rshift
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if not bit_local.rshift then
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bit_local.rshift = function(a, n)
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if (n > bit_local.bits) then
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a = 0
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elseif (n > 0) then
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if (a < 0) then
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a = a - bit_local.powtab[#bit_local.powtab]
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a = a / bit_local.powtab[n]
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a = a + bit_local.powtab[bit_local.bits - n]
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else
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a = a / bit_local.powtab[n]
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end
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end
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return a
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end
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end
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-- bit_local.arshift
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if not bit_local.arshift then
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bit_local.arshift = function(a, n)
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if (n >= bit_local.bits) then
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if (a < 0) then
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a = -1
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else
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a = 0
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end
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elseif (n > 0) then
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if (a < 0) then
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a = a - bit_local.powtab[#bit_local.powtab]
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a = a / bit_local.powtab[n]
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a = a - bit_local.powtab[bit_local.bits - n]
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else
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a = a / bit_local.powtab[n]
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end
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end
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return a
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end
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end
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-- bit_local.bxor
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if not bit_local.bxor then
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bit_local.bxor = function(a, b)
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local result = 0
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for x = 1, bit_local.bits, 1 do
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result = result + result
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if (a < 0) then
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if (b >= 0) then
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result = result + 1
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end
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elseif (b < 0) then
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result = result + 1
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end
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a = a + a
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b = b + b
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end
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return result
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end
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end
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-- bit_local.rol
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if not bit_local.rol then
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bit_local.rol = function(a, b)
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local bits = bit_local.band(b, bit_local.bits - 1)
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a = bit_local.band(a, 0xffffffff)
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a = bit_local.bor(bit_local.lshift(a, b), bit_local.rshift(a, ((bit_local.bits - 1) - b)))
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return bit_local.band(n, 0xffffffff)
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end
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end
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-- bit_local.ror
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if not bit_local.ror then
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bit_local.ror = function(a, b)
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return bit_local.rol(a, - b)
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end
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end
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-- bit_local.bswap
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if not bit_local.bswap then
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bit_local.bswap = function(n)
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local a = bit_local.band(n, 0xff)
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n = bit_local.rshift(n, 8)
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local b = bit_local.band(n, 0xff)
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n = bit_local.rshift(n, 8)
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local c = bit_local.band(n, 0xff)
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n = bit_local.rshift(n, 8)
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local d = bit_local.band(n, 0xff)
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return bit_local.lshift(bit_local.lshift(bit_local.lshift(a, 8) + b, 8) + c, 8) + d
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end
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end
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-- bit_local.tobit
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if not bit_local.tobit then
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bit_local.tobit = function(n)
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local MOD = 2^32
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n = n % MOD
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if (n >= 0x80000000) then
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n = n - MOD
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end
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return n
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end
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end
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-- bit_local.tohex
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if not bit_local.tohex then
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bit_local.tohex = function(x, n)
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n = n or 8
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local up
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if n <= 0 then
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if n == 0 then
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return ''
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end
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up = true
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n = -n
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end
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x = bit_local.band(x, 16^n - 1)
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return ('%0'..n..(up and 'X' or 'x')):format(x)
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end
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end
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return bit_local
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