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https://github.com/gSpotx2f/ruantiblock_openwrt.git
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166 lines
4.4 KiB
Lua
166 lines
4.4 KiB
Lua
--[[
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(с) 2020 gSpot <https://github.com/gSpotx2f>
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Some functions for manipulating IPv4 addresses.
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validate_ip(ip)
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ip_to_int(ip)
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int_to_ip(ip)
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summarize_address_range(first, last)
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get_network_addr(network)
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hosts_from_network(ip)
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get_supernet(network, new_prefix)
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lua == 5.1
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depends: lua-bitop
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--]]
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local bit = require("bit")
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local bnot, band, bor = bit.bnot, bit.band, bit.bor
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local bxor, lshift, rshift = bit.bxor, bit.lshift, bit.rshift
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local ipv4_length = 32
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local ipv4_capacity = 2 ^ ipv4_length - 1
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local ipaddr_pattern = "^(%d%d?%d?)%.(%d%d?%d?)%.(%d%d?%d?)%.(%d%d?%d?)$"
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local cidr_pattern = "^(%d%d?%d?%.%d%d?%d?%.%d%d?%d?%.%d%d?%d?)/(%d%d?)$"
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local function bit_length(n)
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if n == 0 then
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return 0
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elseif n < 0 then
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n = -n
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end
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local i = 1
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repeat
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local s = rshift(n, i)
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i = i + 1
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until s <= 0
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return i - 1
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end
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local function check_ip(...)
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if not ... then
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return false
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end
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for _, i in ipairs{...} do
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if type(i) ~= "number" or (0 > i or i > 255) then
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return false
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end
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end
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return true
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end
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local function check_prefix(n)
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if type(n) ~= "number" or (0 > n or n > 32) then
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return false
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end
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return true
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end
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local function validate_ip(ip)
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local a, b, c, d, e = ip:match("^(%d%d?%d?)%.(%d%d?%d?)%.(%d%d?%d?)%.(%d%d?%d?)/?(%d?%d?)$")
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if check_ip(tonumber(a), tonumber(b), tonumber(c), tonumber(d)) and
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(#e == 0 or check_prefix(tonumber(e))) then
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return true
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end
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return false
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end
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local function ip_to_int(ip)
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if type(ip) == "number" then
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return ip
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else
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local a, b, c, d = ip:match(ipaddr_pattern)
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return a and tonumber(a) * 16777216 + tonumber(b) * 65536 + tonumber(c) * 256 + tonumber(d) or nil
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end
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end
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local function int_to_ip(number)
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local octets = {}
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for i = 1, 4 do
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table.insert(octets, 1, tostring(band(number, 255)))
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number = rshift(number, 8)
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end
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return table.concat(octets, ".")
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end
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local function count_righthand_zero_bits(number, bits)
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return (number == 0) and bits or math.min(bits, bit_length(band(bnot(number), (number - 1))))
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end
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local function summarize_address_range(first, last)
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local ip_bits = ipv4_length
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first, last = ip_to_int(first), ip_to_int(last)
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local ret_val
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return function()
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if first > last then
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return
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end
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local nbits = math.min(count_righthand_zero_bits(first, ip_bits), bit_length(last - first + 1) - 1)
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ret_val = {[1] = first, [2] = (ip_bits - nbits)}
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first = first + lshift(1, nbits)
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if first - 1 == ipv4_capacity then
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return
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end
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return ret_val
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end
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end
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local function get_network_addr(network)
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local ip, pref = network:match(cidr_pattern)
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return ip and ip_to_int(ip), tonumber(pref)
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end
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local function hosts_from_network(network)
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local network_address, prefixlen
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if type(network) == "string" then
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network_address, prefixlen = get_network_addr(network)
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elseif type(network) == "table" then
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network_address, prefixlen = network[1], network[2]
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else
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return
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end
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local last_ip = network_address + (lshift(1, 32 - prefixlen) - 2)
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local ret_val
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local current_ip = network_address
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return function()
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current_ip = current_ip + 1
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if (prefixlen == 31 and current_ip - 2 or current_ip) <= last_ip then
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ret_val = current_ip
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else
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ret_val = nil
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end
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return ret_val
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end
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end
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local function get_supernet(network, new_prefix)
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local network_address, prefixlen
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if type(network) == "string" then
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network_address, prefixlen = get_network_addr(network)
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elseif type(network) == "table" then
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network_address, prefixlen = network[1], network[2]
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else
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return
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end
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if new_prefix > prefixlen then
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error("new_prefix must be shorter")
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end
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local netmask = bxor(ipv4_capacity, rshift(ipv4_capacity, prefixlen))
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if netmask < 0 then
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netmask = netmask + ipv4_capacity + 1
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end
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local diff_prefixlen = prefixlen - new_prefix
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return band(network_address, lshift(netmask, diff_prefixlen))
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end
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return {
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validate_ip = validate_ip,
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ip_to_int = ip_to_int,
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int_to_ip = int_to_ip,
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summarize_address_range = summarize_address_range,
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get_network_addr = get_network_addr,
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hosts_from_network = hosts_from_network,
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get_supernet = get_supernet,
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}
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