forked from VoxeLibre/VoxeLibre
[mesecons_delayer] fix code style issues
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@ -4,7 +4,7 @@ local DELAYS = { 0.1, 0.2, 0.3, 0.4 }
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local DEFAULT_DELAY = DELAYS[1]
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local DEFAULT_DELAY = DELAYS[1]
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-- Function that get the input/output rules of the delayer
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-- Function that get the input/output rules of the delayer
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local delayer_get_output_rules = function(node)
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local function delayer_get_output_rules(node)
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local rules = {{x = -1, y = 0, z = 0, spread=true}}
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local rules = {{x = -1, y = 0, z = 0, spread=true}}
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for i = 0, node.param2 do
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for i = 0, node.param2 do
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rules = mesecon.rotate_rules_left(rules)
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rules = mesecon.rotate_rules_left(rules)
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@ -12,7 +12,7 @@ local delayer_get_output_rules = function(node)
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return rules
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return rules
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end
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end
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local delayer_get_input_rules = function(node)
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local function delayer_get_input_rules(node)
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local rules = {{x = 1, y = 0, z = 0}}
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local rules = {{x = 1, y = 0, z = 0}}
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for i = 0, node.param2 do
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for i = 0, node.param2 do
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rules = mesecon.rotate_rules_left(rules)
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rules = mesecon.rotate_rules_left(rules)
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@ -22,7 +22,7 @@ end
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-- Return the sides of a delayer.
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-- Return the sides of a delayer.
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-- Those are used to toggle the lock state.
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-- Those are used to toggle the lock state.
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local delayer_get_sides = function(node)
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local function delayer_get_sides(node)
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local rules = {
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local rules = {
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{x = 0, y = 0, z = -1},
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{x = 0, y = 0, z = -1},
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{x = 0, y = 0, z = 1},
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{x = 0, y = 0, z = 1},
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@ -35,7 +35,7 @@ end
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-- Make the repeater at pos try to lock any repeater it faces.
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-- Make the repeater at pos try to lock any repeater it faces.
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-- Returns true if a repeater was locked.
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-- Returns true if a repeater was locked.
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local check_lock_repeater = function(pos, node)
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local function check_lock_repeater(pos, node)
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-- Check the repeater at pos and look if it faces
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-- Check the repeater at pos and look if it faces
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-- a repeater placed sideways.
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-- a repeater placed sideways.
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-- If yes, lock the second repeater.
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-- If yes, lock the second repeater.
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@ -67,7 +67,7 @@ end
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-- Make the repeater at pos try to unlock any repeater it faces.
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-- Make the repeater at pos try to unlock any repeater it faces.
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-- Returns true if a repeater was unlocked.
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-- Returns true if a repeater was unlocked.
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local check_unlock_repeater = function(pos, node)
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local function check_unlock_repeater(pos, node)
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-- Check the repeater at pos and look if it faces
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-- Check the repeater at pos and look if it faces
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-- a repeater placed sideways.
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-- a repeater placed sideways.
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-- If yes, also check if the second repeater doesn't receive
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-- If yes, also check if the second repeater doesn't receive
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@ -119,21 +119,19 @@ local check_unlock_repeater = function(pos, node)
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end
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end
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-- Functions that are called after the delay time
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-- Functions that are called after the delay time
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local delayer_activate = function(pos, node)
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local function delayer_activate(pos, node)
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local def = minetest.registered_nodes[node.name]
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local def = minetest.registered_nodes[node.name]
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local time = def.delayer_time
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local time = def.delayer_time
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minetest.set_node(pos, {name=def.delayer_onstate, param2=node.param2})
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minetest.set_node(pos, {name=def.delayer_onstate, param2=node.param2})
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mesecon.queue:add_action(pos, "receptor_on", {delayer_get_output_rules(node)}, time, nil)
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mesecon.queue:add_action(pos, "receptor_on", {delayer_get_output_rules(node)}, time, nil)
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check_lock_repeater(pos, node)
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check_lock_repeater(pos, node)
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end
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end
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local delayer_deactivate = function(pos, node)
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local function delayer_deactivate(pos, node)
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local def = minetest.registered_nodes[node.name]
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local def = minetest.registered_nodes[node.name]
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local time = def.delayer_time
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local time = def.delayer_time
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minetest.set_node(pos, {name=def.delayer_offstate, param2=node.param2})
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minetest.set_node(pos, {name=def.delayer_offstate, param2=node.param2})
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mesecon.queue:add_action(pos, "receptor_off", {delayer_get_output_rules(node)}, time, nil)
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mesecon.queue:add_action(pos, "receptor_off", {delayer_get_output_rules(node)}, time, nil)
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check_unlock_repeater(pos, node)
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check_unlock_repeater(pos, node)
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end
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end
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@ -145,44 +143,44 @@ end
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-- Register the 2 (states) x 4 (delay times) delayers
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-- Register the 2 (states) x 4 (delay times) delayers
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for i = 1, 4 do
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for i = 1, 4 do
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local groups
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local groups
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if i == 1 then
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if i == 1 then
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groups = {dig_immediate=3,dig_by_water=1,destroy_by_lava_flow=1,dig_by_piston=1,attached_node=1,redstone_repeater=i}
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groups = {dig_immediate=3,dig_by_water=1,destroy_by_lava_flow=1,dig_by_piston=1,attached_node=1,redstone_repeater=i}
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else
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else
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groups = {dig_immediate=3,dig_by_water=1,destroy_by_lava_flow=1,dig_by_piston=1,attached_node=1,redstone_repeater=i,not_in_creative_inventory=1}
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groups = {dig_immediate=3,dig_by_water=1,destroy_by_lava_flow=1,dig_by_piston=1,attached_node=1,redstone_repeater=i,not_in_creative_inventory=1}
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end
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end
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local delaytime = DELAYS[i]
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local delaytime = DELAYS[i]
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local boxes
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local boxes
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if i == 1 then
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if i == 1 then
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boxes = {
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boxes = {
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, 0/16, 1/16, -1/16, 2/16}, -- moved torch
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{ -1/16, -6/16, 0/16, 1/16, -1/16, 2/16}, -- moved torch
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}
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}
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elseif i == 2 then
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elseif i == 2 then
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boxes = {
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boxes = {
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, -2/16, 1/16, -1/16, 0/16}, -- moved torch
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{ -1/16, -6/16, -2/16, 1/16, -1/16, 0/16}, -- moved torch
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}
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}
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elseif i == 3 then
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elseif i == 3 then
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boxes = {
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boxes = {
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, -4/16, 1/16, -1/16, -2/16}, -- moved torch
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{ -1/16, -6/16, -4/16, 1/16, -1/16, -2/16}, -- moved torch
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}
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}
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elseif i == 4 then
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elseif i == 4 then
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boxes = {
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boxes = {
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -8/16, -8/16, -8/16, 8/16, -6/16, 8/16 }, -- the main slab
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, 6/16, 1/16, -1/16, 4/16}, -- still torch
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{ -1/16, -6/16, -6/16, 1/16, -1/16, -4/16}, -- moved torch
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{ -1/16, -6/16, -6/16, 1/16, -1/16, -4/16}, -- moved torch
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}
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}
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end
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end
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local help, tt, longdesc, usagehelp, icon, on_construct
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local help, tt, longdesc, usagehelp, icon, on_construct
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if i == 1 then
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if i == 1 then
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help = true
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help = true
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tt = S("Transmits redstone power only in one direction").."\n"..
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tt = S("Transmits redstone power only in one direction").."\n"..
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S("Delays signal").."\n"..
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S("Delays signal").."\n"..
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@ -191,7 +189,6 @@ if i == 1 then
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usagehelp = S("To power a redstone repeater, send a signal in “arrow” direction (the input). The signal goes out on the opposite side (the output) with a delay. To change the delay, use the redstone repeater. The delay is between 0.1 and 0.4 seconds long and can be changed in steps of 0.1 seconds. It is indicated by the position of the moving redstone torch.").."\n"..
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usagehelp = S("To power a redstone repeater, send a signal in “arrow” direction (the input). The signal goes out on the opposite side (the output) with a delay. To change the delay, use the redstone repeater. The delay is between 0.1 and 0.4 seconds long and can be changed in steps of 0.1 seconds. It is indicated by the position of the moving redstone torch.").."\n"..
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S("To lock a repeater, send a signal from an adjacent repeater into one of its sides. While locked, the moving redstone torch disappears, the output doesn't change and the input signal is ignored.")
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S("To lock a repeater, send a signal from an adjacent repeater into one of its sides. While locked, the moving redstone torch disappears, the output doesn't change and the input signal is ignored.")
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icon = "mesecons_delayer_item.png"
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icon = "mesecons_delayer_item.png"
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-- Check sides of constructed repeater and lock it, if required
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-- Check sides of constructed repeater and lock it, if required
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on_construct = function(pos)
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on_construct = function(pos)
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local node = minetest.get_node(pos)
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local node = minetest.get_node(pos)
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@ -219,18 +216,18 @@ if i == 1 then
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end
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end
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end
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end
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end
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end
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else
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else
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help = false
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help = false
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end
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end
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local desc_off
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local desc_off
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if i == 1 then
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if i == 1 then
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desc_off = S("Redstone Repeater")
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desc_off = S("Redstone Repeater")
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else
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else
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desc_off = S("Redstone Repeater (Delay @1)", i)
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desc_off = S("Redstone Repeater (Delay @1)", i)
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end
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end
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minetest.register_node("mesecons_delayer:delayer_off_"..tostring(i), {
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minetest.register_node("mesecons_delayer:delayer_off_"..tostring(i), {
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description = desc_off,
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description = desc_off,
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inventory_image = icon,
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inventory_image = icon,
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wield_image = icon,
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wield_image = icon,
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@ -290,22 +287,19 @@ minetest.register_node("mesecons_delayer:delayer_off_"..tostring(i), {
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delayer_lockstate = "mesecons_delayer:delayer_off_locked",
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delayer_lockstate = "mesecons_delayer:delayer_off_locked",
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sounds = mcl_sounds.node_sound_stone_defaults(),
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sounds = mcl_sounds.node_sound_stone_defaults(),
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mesecons = {
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mesecons = {
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receptor =
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receptor = {
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{
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state = mesecon.state.off,
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state = mesecon.state.off,
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rules = delayer_get_output_rules
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rules = delayer_get_output_rules,
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},
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},
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effector =
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effector = {
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{
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rules = delayer_get_input_rules,
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rules = delayer_get_input_rules,
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action_on = delayer_activate
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action_on = delayer_activate,
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}
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},
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},
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},
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on_rotate = on_rotate,
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on_rotate = on_rotate,
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})
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})
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minetest.register_node("mesecons_delayer:delayer_on_"..tostring(i), {
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minetest.register_node("mesecons_delayer:delayer_on_"..tostring(i), {
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description = S("Redstone Repeater (Delay @1, Powered)", i),
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description = S("Redstone Repeater (Delay @1, Powered)", i),
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_doc_items_create_entry = false,
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_doc_items_create_entry = false,
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drawtype = "nodebox",
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drawtype = "nodebox",
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@ -343,6 +337,7 @@ minetest.register_node("mesecons_delayer:delayer_on_"..tostring(i), {
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minetest.record_protection_violation(pos, protname)
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minetest.record_protection_violation(pos, protname)
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return
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return
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end
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end
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--HACK! we already know the node name, so we should generate the function to avoid multiple checks
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if node.name=="mesecons_delayer:delayer_on_1" then
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if node.name=="mesecons_delayer:delayer_on_1" then
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minetest.set_node(pos, {name="mesecons_delayer:delayer_on_2",param2=node.param2})
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minetest.set_node(pos, {name="mesecons_delayer:delayer_on_2",param2=node.param2})
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elseif node.name=="mesecons_delayer:delayer_on_2" then
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elseif node.name=="mesecons_delayer:delayer_on_2" then
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@ -361,20 +356,17 @@ minetest.register_node("mesecons_delayer:delayer_on_"..tostring(i), {
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delayer_lockstate = "mesecons_delayer:delayer_on_locked",
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delayer_lockstate = "mesecons_delayer:delayer_on_locked",
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sounds = mcl_sounds.node_sound_stone_defaults(),
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sounds = mcl_sounds.node_sound_stone_defaults(),
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mesecons = {
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mesecons = {
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receptor =
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receptor = {
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{
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state = mesecon.state.on,
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state = mesecon.state.on,
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rules = delayer_get_output_rules
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rules = delayer_get_output_rules,
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},
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},
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effector =
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effector = {
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{
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rules = delayer_get_input_rules,
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rules = delayer_get_input_rules,
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action_off = delayer_deactivate
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action_off = delayer_deactivate,
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}
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},
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},
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},
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on_rotate = on_rotate,
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on_rotate = on_rotate,
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})
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})
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end
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end
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