mirror of
https://github.com/minetest-mods/mesecons.git
synced 2024-11-15 23:00:32 +01:00
2b096f050d
* Close vulnerability and optimize digiline_send `digiline_send` as it previously existed was vulnerable to a time-of-check-to-time-of-use vulnerability in which a table could be sent, size-checked, and then modified after the send but before delivery. This would allow larger tables to be sent. It was also slow because it called `minetest.serialize`. Fix both of these by implementing custom message cleanup logic which simultaneously computes the message’s cost. * Clean up interaction with Digilines Use `minetest.global_exists` to avoid an undefined global variable warning when operating a Luacontroller with Digilines not available. Use the new `digilines` table in preference to the old `digiline` table. * Copy received messages When a Digiline message is received at a Luacontroller, copy it so that local modifications made by the Luacontroller code will not modify copies of the table that are being passed to other nodes on the Digiline network.
792 lines
22 KiB
Lua
792 lines
22 KiB
Lua
-- ______
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-- |
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-- |
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-- | __ ___ _ __ _ _
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-- | | | | | |\ | | |_| | | | | |_ |_|
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-- |___| |______ |__| | \| | | \ |__| |_ |_ |_ |\
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-- |
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-- |
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--
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-- Reference
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-- ports = get_real_port_states(pos): gets if inputs are powered from outside
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-- newport = merge_port_states(state1, state2): just does result = state1 or state2 for every port
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-- set_port(pos, rule, state): activates/deactivates the mesecons according to the port states
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-- set_port_states(pos, ports): Applies new port states to a Luacontroller at pos
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-- run(pos): runs the code in the controller at pos
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-- reset_meta(pos, code, errmsg): performs a software-reset, installs new code and prints error messages
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-- resetn(pos): performs a hardware reset, turns off all ports
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--
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-- The Sandbox
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-- The whole code of the controller runs in a sandbox,
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-- a very restricted environment.
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-- Actually the only way to damage the server is to
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-- use too much memory from the sandbox.
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-- You can add more functions to the environment
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-- (see where local env is defined)
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-- Something nice to play is is appending minetest.env to it.
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local BASENAME = "mesecons_luacontroller:luacontroller"
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local rules = {
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a = {x = -1, y = 0, z = 0, name="A"},
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b = {x = 0, y = 0, z = 1, name="B"},
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c = {x = 1, y = 0, z = 0, name="C"},
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d = {x = 0, y = 0, z = -1, name="D"},
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}
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------------------
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-- Action stuff --
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------------------
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-- These helpers are required to set the port states of the luacontroller
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local function update_real_port_states(pos, rule_name, new_state)
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local meta = minetest.get_meta(pos)
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if rule_name == nil then
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meta:set_int("real_portstates", 1)
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return
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end
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local n = meta:get_int("real_portstates") - 1
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local L = {}
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for i = 1, 4 do
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L[i] = n % 2
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n = math.floor(n / 2)
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end
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-- (0,-1) (-1,0) (1,0) (0,1)
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local pos_to_side = { 4, 1, nil, 3, 2 }
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if rule_name.x == nil then
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for _, rname in ipairs(rule_name) do
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local port = pos_to_side[rname.x + (2 * rname.z) + 3]
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L[port] = (newstate == "on") and 1 or 0
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end
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else
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local port = pos_to_side[rule_name.x + (2 * rule_name.z) + 3]
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L[port] = (new_state == "on") and 1 or 0
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end
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meta:set_int("real_portstates",
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1 +
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1 * L[1] +
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2 * L[2] +
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4 * L[3] +
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8 * L[4])
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end
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local port_names = {"a", "b", "c", "d"}
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local function get_real_port_states(pos)
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-- Determine if ports are powered (by itself or from outside)
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local meta = minetest.get_meta(pos)
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local L = {}
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local n = meta:get_int("real_portstates") - 1
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for _, name in ipairs(port_names) do
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L[name] = ((n % 2) == 1)
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n = math.floor(n / 2)
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end
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return L
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end
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local function merge_port_states(ports, vports)
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return {
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a = ports.a or vports.a,
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b = ports.b or vports.b,
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c = ports.c or vports.c,
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d = ports.d or vports.d,
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}
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end
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local function generate_name(ports)
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local d = ports.d and 1 or 0
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local c = ports.c and 1 or 0
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local b = ports.b and 1 or 0
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local a = ports.a and 1 or 0
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return BASENAME..d..c..b..a
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end
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local function set_port(pos, rule, state)
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if state then
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mesecon.receptor_on(pos, {rule})
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else
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mesecon.receptor_off(pos, {rule})
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end
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end
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local function clean_port_states(ports)
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ports.a = ports.a and true or false
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ports.b = ports.b and true or false
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ports.c = ports.c and true or false
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ports.d = ports.d and true or false
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end
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local function set_port_states(pos, ports)
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local node = minetest.get_node(pos)
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local name = node.name
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clean_port_states(ports)
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local vports = minetest.registered_nodes[name].virtual_portstates
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local new_name = generate_name(ports)
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if name ~= new_name and vports then
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-- Problem:
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-- We need to place the new node first so that when turning
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-- off some port, it won't stay on because the rules indicate
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-- there is an onstate output port there.
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-- When turning the output off then, it will however cause feedback
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-- so that the luacontroller will receive an "off" event by turning
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-- its output off.
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-- Solution / Workaround:
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-- Remember which output was turned off and ignore next "off" event.
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local meta = minetest.get_meta(pos)
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local ign = minetest.deserialize(meta:get_string("ignore_offevents")) or {}
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if ports.a and not vports.a and not mesecon.is_powered(pos, rules.a) then ign.A = true end
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if ports.b and not vports.b and not mesecon.is_powered(pos, rules.b) then ign.B = true end
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if ports.c and not vports.c and not mesecon.is_powered(pos, rules.c) then ign.C = true end
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if ports.d and not vports.d and not mesecon.is_powered(pos, rules.d) then ign.D = true end
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meta:set_string("ignore_offevents", minetest.serialize(ign))
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minetest.swap_node(pos, {name = new_name, param2 = node.param2})
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if ports.a ~= vports.a then set_port(pos, rules.a, ports.a) end
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if ports.b ~= vports.b then set_port(pos, rules.b, ports.b) end
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if ports.c ~= vports.c then set_port(pos, rules.c, ports.c) end
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if ports.d ~= vports.d then set_port(pos, rules.d, ports.d) end
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end
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end
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-----------------
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-- Overheating --
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-----------------
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local function burn_controller(pos)
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local node = minetest.get_node(pos)
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node.name = BASENAME.."_burnt"
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minetest.swap_node(pos, node)
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minetest.get_meta(pos):set_string("lc_memory", "");
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-- Wait for pending operations
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minetest.after(0.2, mesecon.receptor_off, pos, mesecon.rules.flat)
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end
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local function overheat(pos, meta)
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if mesecon.do_overheat(pos) then -- If too hot
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burn_controller(pos)
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return true
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end
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end
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------------------------
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-- Ignored off events --
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------------------------
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local function ignore_event(event, meta)
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if event.type ~= "off" then return false end
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local ignore_offevents = minetest.deserialize(meta:get_string("ignore_offevents")) or {}
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if ignore_offevents[event.pin.name] then
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ignore_offevents[event.pin.name] = nil
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meta:set_string("ignore_offevents", minetest.serialize(ignore_offevents))
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return true
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end
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end
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-------------------------
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-- Parsing and running --
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-------------------------
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local function safe_print(param)
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print(dump(param))
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end
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local function safe_date()
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return(os.date("*t",os.time()))
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end
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-- string.rep(str, n) with a high value for n can be used to DoS
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-- the server. Therefore, limit max. length of generated string.
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local function safe_string_rep(str, n)
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if #str * n > mesecon.setting("luacontroller_string_rep_max", 64000) then
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debug.sethook() -- Clear hook
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error("string.rep: string length overflow", 2)
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end
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return string.rep(str, n)
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end
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-- string.find with a pattern can be used to DoS the server.
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-- Therefore, limit string.find to patternless matching.
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local function safe_string_find(...)
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if (select(4, ...)) ~= true then
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debug.sethook() -- Clear hook
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error("string.find: 'plain' (fourth parameter) must always be true in a Luacontroller")
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end
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return string.find(...)
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end
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local function remove_functions(x)
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local tp = type(x)
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if tp == "function" then
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return nil
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end
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-- Make sure to not serialize the same table multiple times, otherwise
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-- writing mem.test = mem in the Luacontroller will lead to infinite recursion
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local seen = {}
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local function rfuncs(x)
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if seen[x] then return end
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seen[x] = true
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if type(x) ~= "table" then return end
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for key, value in pairs(x) do
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if type(key) == "function" or type(value) == "function" then
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x[key] = nil
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else
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if type(key) == "table" then
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rfuncs(key)
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end
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if type(value) == "table" then
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rfuncs(value)
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end
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end
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end
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end
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rfuncs(x)
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return x
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end
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local function get_interrupt(pos)
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-- iid = interrupt id
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local function interrupt(time, iid)
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if type(time) ~= "number" then return end
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local luac_id = minetest.get_meta(pos):get_int("luac_id")
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mesecon.queue:add_action(pos, "lc_interrupt", {luac_id, iid}, time, iid, 1)
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end
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return interrupt
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end
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-- Given a message object passed to digiline_send, clean it up into a form
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-- which is safe to transmit over the network and compute its "cost" (a very
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-- rough estimate of its memory usage).
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--
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-- The cleaning comprises the following:
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-- 1. Functions (and userdata, though user scripts ought not to get hold of
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-- those in the first place) are removed, because they break the model of
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-- Digilines as a network that carries basic data, and they could exfiltrate
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-- references to mutable objects from one Luacontroller to another, allowing
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-- inappropriate high-bandwidth, no-wires communication.
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-- 2. Tables are duplicated because, being mutable, they could otherwise be
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-- modified after the send is complete in order to change what data arrives
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-- at the recipient, perhaps in violation of the previous cleaning rule or
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-- in violation of the message size limit.
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--
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-- The cost indication is only approximate; it’s not a perfect measurement of
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-- the number of bytes of memory used by the message object.
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--
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-- Parameters:
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-- msg -- the message to clean
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-- back_references -- for internal use only; do not provide
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--
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-- Returns:
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-- 1. The cleaned object.
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-- 2. The approximate cost of the object.
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local function clean_and_weigh_digiline_message(msg, back_references)
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local t = type(msg)
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if t == "string" then
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-- Strings are immutable so can be passed by reference, and cost their
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-- length plus the size of the Lua object header (24 bytes on a 64-bit
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-- platform) plus one byte for the NUL terminator.
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return msg, #msg + 25
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elseif t == "number" then
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-- Numbers are passed by value so need not be touched, and cost 8 bytes
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-- as all numbers in Lua are doubles.
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return msg, 8
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elseif t == "boolean" then
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-- Booleans are passed by value so need not be touched, and cost 1
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-- byte.
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return msg, 1
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elseif t == "table" then
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-- Tables are duplicated. Check if this table has been seen before
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-- (self-referential or shared table); if so, reuse the cleaned value
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-- of the previous occurrence, maintaining table topology and avoiding
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-- infinite recursion, and charge zero bytes for this as the object has
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-- already been counted.
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back_references = back_references or {}
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local bref = back_references[msg]
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if bref then
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return bref, 0
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end
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-- Construct a new table by cleaning all the keys and values and adding
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-- up their costs, plus 8 bytes as a rough estimate of table overhead.
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local cost = 8
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local ret = {}
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back_references[msg] = ret
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for k, v in pairs(msg) do
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local k_cost, v_cost
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k, k_cost = clean_and_weigh_digiline_message(k, back_references)
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v, v_cost = clean_and_weigh_digiline_message(v, back_references)
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if k ~= nil and v ~= nil then
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-- Only include an element if its key and value are of legal
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-- types.
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ret[k] = v
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end
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-- If we only counted the cost of a table element when we actually
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-- used it, we would be vulnerable to the following attack:
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-- 1. Construct a huge table (too large to pass the cost limit).
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-- 2. Insert it somewhere in a table, with a function as a key.
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-- 3. Insert it somewhere in another table, with a number as a key.
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-- 4. The first occurrence doesn’t pay the cost because functions
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-- are stripped and therefore the element is dropped.
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-- 5. The second occurrence doesn’t pay the cost because it’s in
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-- back_references.
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-- By counting the costs regardless of whether the objects will be
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-- included, we avoid this attack; it may overestimate the cost of
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-- some messages, but only those that won’t be delivered intact
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-- anyway because they contain illegal object types.
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cost = cost + k_cost + v_cost
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end
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return ret, cost
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else
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return nil, 0
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end
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end
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local function get_digiline_send(pos)
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if not minetest.global_exists("digilines") then return end
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return function(channel, msg)
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-- Make sure channel is string, number or boolean
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if (type(channel) ~= "string" and type(channel) ~= "number" and type(channel) ~= "boolean") then
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return false
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end
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local msg_cost
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msg, msg_cost = clean_and_weigh_digiline_message(msg)
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if msg == nil or msg_cost > mesecon.setting("luacontroller_digiline_maxlen", 50000) then
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return false
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end
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minetest.after(0, digilines.receptor_send, pos, digilines.rules.default, channel, msg)
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return true
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end
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end
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local safe_globals = {
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"assert", "error", "ipairs", "next", "pairs", "select",
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"tonumber", "tostring", "type", "unpack", "_VERSION"
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}
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local function create_environment(pos, mem, event)
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-- Gather variables for the environment
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local vports = minetest.registered_nodes[minetest.get_node(pos).name].virtual_portstates
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local vports_copy = {}
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for k, v in pairs(vports) do vports_copy[k] = v end
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local rports = get_real_port_states(pos)
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-- Create new library tables on each call to prevent one Luacontroller
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-- from breaking a library and messing up other Luacontrollers.
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local env = {
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pin = merge_port_states(vports, rports),
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port = vports_copy,
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event = event,
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mem = mem,
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heat = mesecon.get_heat(pos),
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heat_max = mesecon.setting("overheat_max", 20),
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print = safe_print,
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interrupt = get_interrupt(pos),
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digiline_send = get_digiline_send(pos),
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string = {
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byte = string.byte,
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char = string.char,
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format = string.format,
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len = string.len,
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lower = string.lower,
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upper = string.upper,
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rep = safe_string_rep,
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reverse = string.reverse,
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sub = string.sub,
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find = safe_string_find,
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},
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math = {
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abs = math.abs,
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acos = math.acos,
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asin = math.asin,
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atan = math.atan,
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atan2 = math.atan2,
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ceil = math.ceil,
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cos = math.cos,
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cosh = math.cosh,
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deg = math.deg,
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exp = math.exp,
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floor = math.floor,
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fmod = math.fmod,
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frexp = math.frexp,
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huge = math.huge,
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ldexp = math.ldexp,
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log = math.log,
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log10 = math.log10,
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max = math.max,
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min = math.min,
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modf = math.modf,
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pi = math.pi,
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pow = math.pow,
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rad = math.rad,
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random = math.random,
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sin = math.sin,
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sinh = math.sinh,
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sqrt = math.sqrt,
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tan = math.tan,
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tanh = math.tanh,
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},
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table = {
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concat = table.concat,
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insert = table.insert,
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maxn = table.maxn,
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remove = table.remove,
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sort = table.sort,
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},
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os = {
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clock = os.clock,
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difftime = os.difftime,
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time = os.time,
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datetable = safe_date,
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},
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}
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env._G = env
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for _, name in pairs(safe_globals) do
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env[name] = _G[name]
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end
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return env
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end
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local function timeout()
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debug.sethook() -- Clear hook
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error("Code timed out!", 2)
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end
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local function create_sandbox(code, env)
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if code:byte(1) == 27 then
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return nil, "Binary code prohibited."
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end
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local f, msg = loadstring(code)
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if not f then return nil, msg end
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setfenv(f, env)
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-- Turn off JIT optimization for user code so that count
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-- events are generated when adding debug hooks
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if rawget(_G, "jit") then
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jit.off(f, true)
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end
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||
|
||
return function(...)
|
||
-- Use instruction counter to stop execution
|
||
-- after luacontroller_maxevents
|
||
local maxevents = mesecon.setting("luacontroller_maxevents", 10000)
|
||
debug.sethook(timeout, "", maxevents)
|
||
local ok, ret = pcall(f, ...)
|
||
debug.sethook() -- Clear hook
|
||
if not ok then error(ret, 0) end
|
||
return ret
|
||
end
|
||
end
|
||
|
||
|
||
local function load_memory(meta)
|
||
return minetest.deserialize(meta:get_string("lc_memory")) or {}
|
||
end
|
||
|
||
|
||
local function save_memory(pos, meta, mem)
|
||
local memstring = minetest.serialize(remove_functions(mem))
|
||
local memsize_max = mesecon.setting("luacontroller_memsize", 100000)
|
||
|
||
if (#memstring <= memsize_max) then
|
||
meta:set_string("lc_memory", memstring)
|
||
else
|
||
print("Error: Luacontroller memory overflow. "..memsize_max.." bytes available, "
|
||
..#memstring.." required. Controller overheats.")
|
||
burn_controller(pos)
|
||
end
|
||
end
|
||
|
||
|
||
local function run(pos, event)
|
||
local meta = minetest.get_meta(pos)
|
||
if overheat(pos) then return end
|
||
if ignore_event(event, meta) then return end
|
||
|
||
-- Load code & mem from meta
|
||
local mem = load_memory(meta)
|
||
local code = meta:get_string("code")
|
||
|
||
-- Create environment
|
||
local env = create_environment(pos, mem, event)
|
||
|
||
-- Create the sandbox and execute code
|
||
local f, msg = create_sandbox(code, env)
|
||
if not f then return msg end
|
||
local success, msg = pcall(f)
|
||
if not success then return msg end
|
||
if type(env.port) ~= "table" then
|
||
return "Ports set are invalid."
|
||
end
|
||
|
||
-- Actually set the ports
|
||
set_port_states(pos, env.port)
|
||
|
||
-- Save memory. This may burn the luacontroller if a memory overflow occurs.
|
||
save_memory(pos, meta, env.mem)
|
||
end
|
||
|
||
mesecon.queue:add_function("lc_interrupt", function (pos, luac_id, iid)
|
||
-- There is no luacontroller anymore / it has been reprogrammed / replaced / burnt
|
||
if (minetest.get_meta(pos):get_int("luac_id") ~= luac_id) then return end
|
||
if (minetest.registered_nodes[minetest.get_node(pos).name].is_burnt) then return end
|
||
run(pos, {type="interrupt", iid = iid})
|
||
end)
|
||
|
||
local function reset_meta(pos, code, errmsg)
|
||
local meta = minetest.get_meta(pos)
|
||
meta:set_string("code", code)
|
||
code = minetest.formspec_escape(code or "")
|
||
errmsg = minetest.formspec_escape(tostring(errmsg or ""))
|
||
meta:set_string("formspec", "size[12,10]"..
|
||
"background[-0.2,-0.25;12.4,10.75;jeija_luac_background.png]"..
|
||
"textarea[0.2,0.2;12.2,9.5;code;;"..code.."]"..
|
||
"image_button[4.75,8.75;2.5,1;jeija_luac_runbutton.png;program;]"..
|
||
"image_button_exit[11.72,-0.25;0.425,0.4;jeija_close_window.png;exit;]"..
|
||
"label[0.1,9;"..errmsg.."]")
|
||
meta:set_int("luac_id", math.random(1, 65535))
|
||
end
|
||
|
||
local function reset(pos)
|
||
set_port_states(pos, {a=false, b=false, c=false, d=false})
|
||
end
|
||
|
||
|
||
-----------------------
|
||
-- Node Registration --
|
||
-----------------------
|
||
|
||
local output_rules = {}
|
||
local input_rules = {}
|
||
|
||
local node_box = {
|
||
type = "fixed",
|
||
fixed = {
|
||
{-8/16, -8/16, -8/16, 8/16, -7/16, 8/16}, -- Bottom slab
|
||
{-5/16, -7/16, -5/16, 5/16, -6/16, 5/16}, -- Circuit board
|
||
{-3/16, -6/16, -3/16, 3/16, -5/16, 3/16}, -- IC
|
||
}
|
||
}
|
||
|
||
local selection_box = {
|
||
type = "fixed",
|
||
fixed = { -8/16, -8/16, -8/16, 8/16, -5/16, 8/16 },
|
||
}
|
||
|
||
local digiline = {
|
||
receptor = {},
|
||
effector = {
|
||
action = function(pos, node, channel, msg)
|
||
msg = clean_and_weigh_digiline_message(msg)
|
||
run(pos, {type = "digiline", channel = channel, msg = msg})
|
||
end
|
||
}
|
||
}
|
||
|
||
local function get_program(pos)
|
||
local meta = minetest.get_meta(pos)
|
||
return meta:get_string("code")
|
||
end
|
||
|
||
local function set_program(pos, code)
|
||
reset(pos)
|
||
reset_meta(pos, code)
|
||
local err = run(pos, {type="program"})
|
||
if err then
|
||
reset_meta(pos, code, err)
|
||
return false, err
|
||
end
|
||
return true
|
||
end
|
||
|
||
local function on_receive_fields(pos, form_name, fields, sender)
|
||
if not fields.program then
|
||
return
|
||
end
|
||
local name = sender:get_player_name()
|
||
if minetest.is_protected(pos, name) and not minetest.check_player_privs(name, {protection_bypass=true}) then
|
||
minetest.record_protection_violation(pos, name)
|
||
return
|
||
end
|
||
local ok, err = set_program(pos, fields.code)
|
||
if not ok then
|
||
-- it's not an error from the server perspective
|
||
minetest.log("action", "Lua controller programming error: " .. err)
|
||
end
|
||
end
|
||
|
||
for a = 0, 1 do -- 0 = off 1 = on
|
||
for b = 0, 1 do
|
||
for c = 0, 1 do
|
||
for d = 0, 1 do
|
||
local cid = tostring(d)..tostring(c)..tostring(b)..tostring(a)
|
||
local node_name = BASENAME..cid
|
||
local top = "jeija_luacontroller_top.png"
|
||
if a == 1 then
|
||
top = top.."^jeija_luacontroller_LED_A.png"
|
||
end
|
||
if b == 1 then
|
||
top = top.."^jeija_luacontroller_LED_B.png"
|
||
end
|
||
if c == 1 then
|
||
top = top.."^jeija_luacontroller_LED_C.png"
|
||
end
|
||
if d == 1 then
|
||
top = top.."^jeija_luacontroller_LED_D.png"
|
||
end
|
||
|
||
local groups
|
||
if a + b + c + d ~= 0 then
|
||
groups = {dig_immediate=2, not_in_creative_inventory=1, overheat = 1}
|
||
else
|
||
groups = {dig_immediate=2, overheat = 1}
|
||
end
|
||
|
||
output_rules[cid] = {}
|
||
input_rules[cid] = {}
|
||
if a == 1 then table.insert(output_rules[cid], rules.a) end
|
||
if b == 1 then table.insert(output_rules[cid], rules.b) end
|
||
if c == 1 then table.insert(output_rules[cid], rules.c) end
|
||
if d == 1 then table.insert(output_rules[cid], rules.d) end
|
||
|
||
if a == 0 then table.insert( input_rules[cid], rules.a) end
|
||
if b == 0 then table.insert( input_rules[cid], rules.b) end
|
||
if c == 0 then table.insert( input_rules[cid], rules.c) end
|
||
if d == 0 then table.insert( input_rules[cid], rules.d) end
|
||
|
||
local mesecons = {
|
||
effector = {
|
||
rules = input_rules[cid],
|
||
action_change = function (pos, _, rule_name, new_state)
|
||
update_real_port_states(pos, rule_name, new_state)
|
||
run(pos, {type=new_state, pin=rule_name})
|
||
end,
|
||
},
|
||
receptor = {
|
||
state = mesecon.state.on,
|
||
rules = output_rules[cid]
|
||
},
|
||
luacontroller = {
|
||
get_program = get_program,
|
||
set_program = set_program,
|
||
},
|
||
}
|
||
|
||
minetest.register_node(node_name, {
|
||
description = "Luacontroller",
|
||
drawtype = "nodebox",
|
||
tiles = {
|
||
top,
|
||
"jeija_microcontroller_bottom.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png"
|
||
},
|
||
inventory_image = top,
|
||
paramtype = "light",
|
||
is_ground_content = false,
|
||
groups = groups,
|
||
drop = BASENAME.."0000",
|
||
sunlight_propagates = true,
|
||
selection_box = selection_box,
|
||
node_box = node_box,
|
||
on_construct = reset_meta,
|
||
on_receive_fields = on_receive_fields,
|
||
sounds = default.node_sound_stone_defaults(),
|
||
mesecons = mesecons,
|
||
digiline = digiline,
|
||
-- Virtual portstates are the ports that
|
||
-- the node shows as powered up (light up).
|
||
virtual_portstates = {
|
||
a = a == 1,
|
||
b = b == 1,
|
||
c = c == 1,
|
||
d = d == 1,
|
||
},
|
||
after_dig_node = function (pos, node)
|
||
mesecon.do_cooldown(pos)
|
||
mesecon.receptor_off(pos, output_rules)
|
||
end,
|
||
is_luacontroller = true,
|
||
on_blast = mesecon.on_blastnode,
|
||
})
|
||
end
|
||
end
|
||
end
|
||
end
|
||
|
||
------------------------------
|
||
-- Overheated Luacontroller --
|
||
------------------------------
|
||
|
||
minetest.register_node(BASENAME .. "_burnt", {
|
||
drawtype = "nodebox",
|
||
tiles = {
|
||
"jeija_luacontroller_burnt_top.png",
|
||
"jeija_microcontroller_bottom.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png",
|
||
"jeija_microcontroller_sides.png"
|
||
},
|
||
inventory_image = "jeija_luacontroller_burnt_top.png",
|
||
is_burnt = true,
|
||
paramtype = "light",
|
||
is_ground_content = false,
|
||
groups = {dig_immediate=2, not_in_creative_inventory=1},
|
||
drop = BASENAME.."0000",
|
||
sunlight_propagates = true,
|
||
selection_box = selection_box,
|
||
node_box = node_box,
|
||
on_construct = reset_meta,
|
||
on_receive_fields = on_receive_fields,
|
||
sounds = default.node_sound_stone_defaults(),
|
||
virtual_portstates = {a = false, b = false, c = false, d = false},
|
||
mesecons = {
|
||
effector = {
|
||
rules = mesecon.rules.flat,
|
||
action_change = function(pos, _, rule_name, new_state)
|
||
update_real_port_states(pos, rule_name, new_state)
|
||
end,
|
||
},
|
||
},
|
||
on_blast = mesecon.on_blastnode,
|
||
})
|
||
|
||
------------------------
|
||
-- Craft Registration --
|
||
------------------------
|
||
|
||
minetest.register_craft({
|
||
output = BASENAME.."0000 2",
|
||
recipe = {
|
||
{'mesecons_materials:silicon', 'mesecons_materials:silicon', 'group:mesecon_conductor_craftable'},
|
||
{'mesecons_materials:silicon', 'mesecons_materials:silicon', 'group:mesecon_conductor_craftable'},
|
||
{'group:mesecon_conductor_craftable', 'group:mesecon_conductor_craftable', ''},
|
||
}
|
||
})
|
||
|