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-- Internal.lua - The core of mesecons
--
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-- For more practical developer resources see http://mesecons.net/developers.php
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--
-- Function overview
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-- mesecon.get_effector(nodename) --> Returns the mesecons.effector -specifictation in the nodedef by the nodename
-- mesecon.get_receptor(nodename) --> Returns the mesecons.receptor -specifictation in the nodedef by the nodename
-- mesecon.get_conductor(nodename) --> Returns the mesecons.conductor-specifictation in the nodedef by the nodename
-- mesecon.get_any_inputrules (node) --> Returns the rules of a node if it is a conductor or an effector
-- mesecon.get_any_outputrules (node) --> Returns the rules of a node if it is a conductor or a receptor
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-- RECEPTORS
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-- mesecon.is_receptor(nodename) --> Returns true if nodename is a receptor
-- mesecon.is_receptor_on(nodename --> Returns true if nodename is an receptor with state = mesecon.state.on
-- mesecon.is_receptor_off(nodename) --> Returns true if nodename is an receptor with state = mesecon.state.off
-- mesecon.receptor_get_rules(node) --> Returns the rules of the receptor (mesecon.rules.default if none specified)
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-- EFFECTORS
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-- mesecon.is_effector(nodename) --> Returns true if nodename is an effector
-- mesecon.is_effector_on(nodename) --> Returns true if nodename is an effector with nodedef.mesecons.effector.action_off
-- mesecon.is_effector_off(nodename) --> Returns true if nodename is an effector with nodedef.mesecons.effector.action_on
-- mesecon.effector_get_rules(node) --> Returns the input rules of the effector (mesecon.rules.default if none specified)
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-- SIGNALS
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-- mesecon.activate(pos, node, depth) --> Activates the effector node at the specific pos (calls nodedef.mesecons.effector.action_on), higher depths are executed later
-- mesecon.deactivate(pos, node, depth) --> Deactivates the effector node at the specific pos (calls nodedef.mesecons.effector.action_off), higher depths are executed later
-- mesecon.changesignal(pos, node, rulename, newstate, depth) --> Changes the effector node at the specific pos (calls nodedef.mesecons.effector.action_change), higher depths are executed later
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-- CONDUCTORS
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-- mesecon.is_conductor(nodename) --> Returns true if nodename is a conductor
-- mesecon.is_conductor_on(node --> Returns true if node is a conductor with state = mesecon.state.on
-- mesecon.is_conductor_off(node) --> Returns true if node is a conductor with state = mesecon.state.off
-- mesecon.get_conductor_on(node_off) --> Returns the onstate nodename of the conductor
-- mesecon.get_conductor_off(node_on) --> Returns the offstate nodename of the conductor
-- mesecon.conductor_get_rules(node) --> Returns the input+output rules of a conductor (mesecon.rules.default if none specified)
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-- HIGH-LEVEL Internals
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-- mesecon.is_power_on(pos) --> Returns true if pos emits power in any way
-- mesecon.is_power_off(pos) --> Returns true if pos does not emit power in any way
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-- mesecon.is_powered(pos) --> Returns bool, spread. bool is true if pos is powered by a receptor, a conductor or an opaque block.
-- spread is true if it is powered AND also transmits its power one block further.
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-- RULES ROTATION helpers
-- mesecon.rotate_rules_right(rules)
-- mesecon.rotate_rules_left(rules)
-- mesecon.rotate_rules_up(rules)
-- mesecon.rotate_rules_down(rules)
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-- These functions return rules that have been rotated in the specific direction
-- General
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function mesecon . get_effector ( nodename )
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if minetest.registered_nodes [ nodename ]
and minetest.registered_nodes [ nodename ] . mesecons
and minetest.registered_nodes [ nodename ] . mesecons.effector then
return minetest.registered_nodes [ nodename ] . mesecons.effector
end
end
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function mesecon . get_receptor ( nodename )
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if minetest.registered_nodes [ nodename ]
and minetest.registered_nodes [ nodename ] . mesecons
and minetest.registered_nodes [ nodename ] . mesecons.receptor then
return minetest.registered_nodes [ nodename ] . mesecons.receptor
end
end
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function mesecon . get_conductor ( nodename )
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if minetest.registered_nodes [ nodename ]
and minetest.registered_nodes [ nodename ] . mesecons
and minetest.registered_nodes [ nodename ] . mesecons.conductor then
return minetest.registered_nodes [ nodename ] . mesecons.conductor
end
end
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function mesecon . get_any_outputrules ( node )
if not node then return nil end
if mesecon.is_conductor ( node.name ) then
return mesecon.conductor_get_rules ( node )
elseif mesecon.is_receptor ( node.name ) then
return mesecon.receptor_get_rules ( node )
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elseif minetest.get_item_group ( node.name , " opaque " ) == 1 then
return mesecon.rules . alldirs
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end
end
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function mesecon . get_any_inputrules ( node )
if not node then return nil end
if mesecon.is_conductor ( node.name ) then
return mesecon.conductor_get_rules ( node )
elseif mesecon.is_effector ( node.name ) then
return mesecon.effector_get_rules ( node )
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elseif minetest.get_item_group ( node.name , " opaque " ) == 1 then
return mesecon.rules . alldirs
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end
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end
function mesecon . get_any_rules ( node )
return mesecon.mergetable ( mesecon.get_any_inputrules ( node ) or { } ,
mesecon.get_any_outputrules ( node ) or { } )
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end
-- Receptors
-- Nodes that can power mesecons
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function mesecon . is_receptor_on ( nodename )
local receptor = mesecon.get_receptor ( nodename )
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if receptor and receptor.state == mesecon.state . on then
return true
end
return false
end
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function mesecon . is_receptor_off ( nodename )
local receptor = mesecon.get_receptor ( nodename )
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if receptor and receptor.state == mesecon.state . off then
return true
end
return false
end
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function mesecon . is_receptor ( nodename )
local receptor = mesecon.get_receptor ( nodename )
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if receptor then
return true
end
return false
end
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function mesecon . receptor_get_rules ( node )
local receptor = mesecon.get_receptor ( node.name )
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if receptor then
local rules = receptor.rules
if type ( rules ) == ' function ' then
return rules ( node )
elseif rules then
return rules
end
end
return mesecon.rules . default
end
-- Effectors
-- Nodes that can be powered by mesecons
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function mesecon . is_effector_on ( nodename )
local effector = mesecon.get_effector ( nodename )
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if effector and effector.action_off then
return true
end
return false
end
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function mesecon . is_effector_off ( nodename )
local effector = mesecon.get_effector ( nodename )
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if effector and effector.action_on then
return true
end
return false
end
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function mesecon . is_effector ( nodename )
local effector = mesecon.get_effector ( nodename )
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if effector then
return true
end
return false
end
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function mesecon . effector_get_rules ( node )
local effector = mesecon.get_effector ( node.name )
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if effector then
local rules = effector.rules
if type ( rules ) == ' function ' then
return rules ( node )
elseif rules then
return rules
end
end
return mesecon.rules . default
end
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-- #######################
-- # Signals (effectors) #
-- #######################
-- Activation:
mesecon.queue : add_function ( " activate " , function ( pos , rulename )
local node = mesecon.get_node_force ( pos )
if not node then return end
local effector = mesecon.get_effector ( node.name )
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if effector and effector.action_on then
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effector.action_on ( pos , node , rulename )
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end
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end )
function mesecon . activate ( pos , node , rulename , depth )
if rulename == nil then
for _ , rule in ipairs ( mesecon.effector_get_rules ( node ) ) do
mesecon.activate ( pos , node , rule , depth + 1 )
end
return
end
mesecon.queue : add_action ( pos , " activate " , { rulename } , nil , rulename , 1 / depth )
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end
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-- Deactivation
mesecon.queue : add_function ( " deactivate " , function ( pos , rulename )
local node = mesecon.get_node_force ( pos )
if not node then return end
local effector = mesecon.get_effector ( node.name )
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if effector and effector.action_off then
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effector.action_off ( pos , node , rulename )
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end
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end )
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function mesecon . deactivate ( pos , node , rulename , depth )
if rulename == nil then
for _ , rule in ipairs ( mesecon.effector_get_rules ( node ) ) do
mesecon.deactivate ( pos , node , rule , depth + 1 )
end
return
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end
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mesecon.queue : add_action ( pos , " deactivate " , { rulename } , nil , rulename , 1 / depth )
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end
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-- Change
mesecon.queue : add_function ( " change " , function ( pos , rulename , changetype )
local node = mesecon.get_node_force ( pos )
if not node then return end
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local effector = mesecon.get_effector ( node.name )
if effector and effector.action_change then
effector.action_change ( pos , node , rulename , changetype )
end
end )
function mesecon . changesignal ( pos , node , rulename , newstate , depth )
if rulename == nil then
for _ , rule in ipairs ( mesecon.effector_get_rules ( node ) ) do
mesecon.changesignal ( pos , node , rule , newstate , depth + 1 )
end
return
end
-- Include "change" in overwritecheck so that it cannot be overwritten
-- by "active" / "deactivate" that will be called upon the node at the same time.
local overwritecheck = { " change " , rulename }
mesecon.queue : add_action ( pos , " change " , { rulename , newstate } , nil , overwritecheck , 1 / depth )
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end
-- Conductors
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function mesecon . is_conductor_on ( node , rulename )
if not node then return false end
local conductor = mesecon.get_conductor ( node.name )
if conductor then
if conductor.state then
return conductor.state == mesecon.state . on
end
if conductor.states then
if not rulename then
return mesecon.getstate ( node.name , conductor.states ) ~= 1
end
local bit = mesecon.rule2bit ( rulename , mesecon.conductor_get_rules ( node ) )
local binstate = mesecon.getbinstate ( node.name , conductor.states )
return mesecon.get_bit ( binstate , bit )
end
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end
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return false
end
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function mesecon . is_conductor_off ( node , rulename )
if not node then return false end
local conductor = mesecon.get_conductor ( node.name )
if conductor then
if conductor.state then
return conductor.state == mesecon.state . off
end
if conductor.states then
if not rulename then
return mesecon.getstate ( node.name , conductor.states ) == 1
end
local bit = mesecon.rule2bit ( rulename , mesecon.conductor_get_rules ( node ) )
local binstate = mesecon.getbinstate ( node.name , conductor.states )
return not mesecon.get_bit ( binstate , bit )
end
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end
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return false
end
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function mesecon . is_conductor ( nodename )
local conductor = mesecon.get_conductor ( nodename )
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if conductor then
return true
end
return false
end
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function mesecon . get_conductor_on ( node_off , rulename )
local conductor = mesecon.get_conductor ( node_off.name )
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if conductor then
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if conductor.onstate then
return conductor.onstate
end
if conductor.states then
local bit = mesecon.rule2bit ( rulename , mesecon.conductor_get_rules ( node_off ) )
local binstate = mesecon.getbinstate ( node_off.name , conductor.states )
binstate = mesecon.set_bit ( binstate , bit , " 1 " )
return conductor.states [ tonumber ( binstate , 2 ) + 1 ]
end
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end
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return offstate
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end
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function mesecon . get_conductor_off ( node_on , rulename )
local conductor = mesecon.get_conductor ( node_on.name )
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if conductor then
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if conductor.offstate then
return conductor.offstate
end
if conductor.states then
local bit = mesecon.rule2bit ( rulename , mesecon.conductor_get_rules ( node_on ) )
local binstate = mesecon.getbinstate ( node_on.name , conductor.states )
binstate = mesecon.set_bit ( binstate , bit , " 0 " )
return conductor.states [ tonumber ( binstate , 2 ) + 1 ]
end
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end
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return onstate
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end
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function mesecon . conductor_get_rules ( node )
local conductor = mesecon.get_conductor ( node.name )
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if conductor then
local rules = conductor.rules
if type ( rules ) == ' function ' then
return rules ( node )
elseif rules then
return rules
end
end
return mesecon.rules . default
end
-- some more general high-level stuff
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function mesecon . is_power_on ( pos , rulename )
local node = mesecon.get_node_force ( pos )
if node and ( mesecon.is_conductor_on ( node , rulename ) or mesecon.is_receptor_on ( node.name ) ) then
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return true
end
return false
end
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function mesecon . is_power_off ( pos , rulename )
local node = mesecon.get_node_force ( pos )
if node and ( mesecon.is_conductor_off ( node , rulename ) or mesecon.is_receptor_off ( node.name ) ) then
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return true
end
return false
end
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-- Turn off an equipotential section starting at `pos`, which outputs in the direction of `link`.
-- Breadth-first search. Map is abstracted away in a voxelmanip.
-- Follow all all conductor paths replacing conductors that were already
-- looked at, activating / changing all effectors along the way.
function mesecon . turnon ( pos , link )
local frontiers = { { pos = pos , link = link } }
local depth = 1
while frontiers [ 1 ] do
local f = table.remove ( frontiers , 1 )
local node = mesecon.get_node_force ( f.pos )
if not node then
-- Area does not exist; do nothing
elseif mesecon.is_conductor_off ( node , f.link ) then
local rules = mesecon.conductor_get_rules ( node )
-- Call turnon on neighbors
for _ , r in ipairs ( mesecon.rule2meta ( f.link , rules ) ) do
local np = vector.add ( f.pos , r )
for _ , l in ipairs ( mesecon.rules_link_rule_all ( f.pos , r ) ) do
table.insert ( frontiers , { pos = np , link = l } )
end
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end
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mesecon.swap_node_force ( f.pos , mesecon.get_conductor_on ( node , f.link ) )
elseif mesecon.is_effector ( node.name ) then
mesecon.changesignal ( f.pos , node , f.link , mesecon.state . on , depth )
if mesecon.is_effector_off ( node.name ) then
mesecon.activate ( f.pos , node , f.link , depth )
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end
end
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depth = depth + 1
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end
end
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-- Turn on an equipotential section starting at `pos`, which outputs in the direction of `link`.
-- Breadth-first search. Map is abstracted away in a voxelmanip.
-- Follow all all conductor paths replacing conductors that were already
-- looked at, deactivating / changing all effectors along the way.
-- In case an onstate receptor is discovered, abort the process by returning false, which will
-- cause `receptor_off` to discard all changes made in the voxelmanip.
-- Contrary to turnon, turnoff has to cache all change and deactivate signals so that they will only
-- be called in the very end when we can be sure that no conductor was found along the path.
--
-- Signal table entry structure:
-- {
-- pos = position of effector,
-- node = node descriptor (name, param1 and param2),
-- link = link the effector is connected to,
-- depth = indicates order in which signals wire fired, higher is later
-- }
function mesecon . turnoff ( pos , link )
local frontiers = { { pos = pos , link = link } }
local signals = { }
local depth = 1
while frontiers [ 1 ] do
local f = table.remove ( frontiers , 1 )
local node = mesecon.get_node_force ( f.pos )
if not node then
-- Area does not exist; do nothing
elseif mesecon.is_conductor_on ( node , f.link ) then
local rules = mesecon.conductor_get_rules ( node )
for _ , r in ipairs ( mesecon.rule2meta ( f.link , rules ) ) do
local np = vector.add ( f.pos , r )
-- Check if an onstate receptor is connected. If that is the case,
-- abort this turnoff process by returning false. `receptor_off` will
-- discard all the changes that we made in the voxelmanip:
for _ , l in ipairs ( mesecon.rules_link_rule_all_inverted ( f.pos , r ) ) do
if mesecon.is_receptor_on ( mesecon.get_node_force ( np ) . name ) then
return false
end
end
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-- Call turnoff on neighbors
for _ , l in ipairs ( mesecon.rules_link_rule_all ( f.pos , r ) ) do
table.insert ( frontiers , { pos = np , link = l } )
end
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end
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mesecon.swap_node_force ( f.pos , mesecon.get_conductor_off ( node , f.link ) )
elseif mesecon.is_effector ( node.name ) then
table.insert ( signals , {
pos = f.pos ,
node = node ,
link = f.link ,
depth = depth
} )
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end
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depth = depth + 1
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end
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for _ , sig in ipairs ( signals ) do
mesecon.changesignal ( sig.pos , sig.node , sig.link , mesecon.state . off , sig.depth )
if mesecon.is_effector_on ( sig.node . name ) and not mesecon.is_powered ( sig.pos ) then
mesecon.deactivate ( sig.pos , sig.node , sig.link , sig.depth )
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end
end
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return true
end
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-- Get all linking inputrules of inputnode (effector or conductor) that is connected to
-- outputnode (receptor or conductor) at position `output` and has an output in direction `rule`
function mesecon . rules_link_rule_all ( output , rule )
local input = vector.add ( output , rule )
local inputnode = mesecon.get_node_force ( input )
local inputrules = mesecon.get_any_inputrules ( inputnode )
if not inputrules then
return { }
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end
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local rules = { }
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for _ , inputrule in ipairs ( mesecon.flattenrules ( inputrules ) ) do
-- Check if input accepts from output
if vector.equals ( vector.add ( input , inputrule ) , output ) then
table.insert ( rules , inputrule )
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end
end
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return rules
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end
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-- Get all linking outputnodes of outputnode (receptor or conductor) that is connected to
-- inputnode (effector or conductor) at position `input` and has an input in direction `rule`
function mesecon . rules_link_rule_all_inverted ( input , rule )
local output = vector.add ( input , rule )
local outputnode = mesecon.get_node_force ( output )
local outputrules = mesecon.get_any_outputrules ( outputnode )
if not outputrules then
return { }
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end
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local rules = { }
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for _ , outputrule in ipairs ( mesecon.flattenrules ( outputrules ) ) do
if vector.equals ( vector.add ( output , outputrule ) , input ) then
table.insert ( rules , mesecon.invertRule ( outputrule ) )
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end
end
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return rules
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end
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function mesecon . is_powered ( pos , rule , depth , sourcepos , home_pos )
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if depth == nil then depth = 0 end
if depth > 1 then
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return false , false
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end
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local node = mesecon.get_node_force ( pos )
local rules = mesecon.get_any_inputrules ( node )
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if not rules then
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return false , false
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end
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if not home_pos then
home_pos = pos
end
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-- List of nodes that send out power to pos
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if sourcepos == nil then
sourcepos = { }
end
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local function power_walk ( pos , home_pos , sourcepos , rulenames , rule , depth )
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local spread = false
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for _ , rname in ipairs ( rulenames ) do
local np = vector.add ( pos , rname )
local nn = mesecon.get_node_force ( np )
if ( mesecon.is_conductor_on ( nn , mesecon.invertRule ( rname ) )
or mesecon.is_receptor_on ( nn.name ) ) then
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if not vector.equals ( home_pos , np ) then
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local rulez = mesecon.get_any_outputrules ( nn )
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local spread_tmp = false
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for r = 1 , # rulez do
if vector.equals ( mesecon.invertRule ( rname ) , rulez [ r ] ) then
if rulez [ r ] . spread then
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spread_tmp = true
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end
end
end
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if depth == 0 or spread_tmp then
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table.insert ( sourcepos , np )
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if spread_tmp then
spread = true
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end
end
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end
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elseif depth == 0 and minetest.get_item_group ( nn.name , " opaque " ) == 1 then
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local more_sourcepos = mesecon.is_powered ( np , nil , depth + 1 , sourcepos , home_pos )
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if more_sourcepos and # more_sourcepos > 0 then
mesecon.mergetable ( sourcepos , more_sourcepos )
end
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end
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end
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return sourcepos , spread
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end
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local spread = false
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if not rule then
for _ , rule in ipairs ( mesecon.flattenrules ( rules ) ) do
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local spread_temp
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local rulenames = mesecon.rules_link_rule_all_inverted ( pos , rule )
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sourcepos , spread_temp = power_walk ( pos , home_pos , sourcepos , rulenames , rule , depth )
if spread_temp then
spread = true
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end
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end
else
local rulenames = mesecon.rules_link_rule_all_inverted ( pos , rule )
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sourcepos , spread = power_walk ( pos , home_pos , sourcepos , rulenames , rule , depth )
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end
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-- Return FALSE if not powered, return list of sources if is powered
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if ( # sourcepos == 0 ) then
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return false , false
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else
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return sourcepos , spread
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end
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end