forked from VoxeLibre/VoxeLibre
Update master #1
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@ -48,6 +48,18 @@ function table.pairs_by_keys(t, f)
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return iter
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return iter
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end
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end
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local function table.pull_random_items(table)
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local count = #table
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return function()
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local idx = math.random(count)
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local res = table[idx]
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table[idx] = table[count]
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table[count] = nil
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count = count - 1
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return res
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end
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end
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local LOGGING_ON = minetest.settings:get_bool("mcl_logging_default", false)
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local LOGGING_ON = minetest.settings:get_bool("mcl_logging_default", false)
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local LOG_MODULE = "[MCL2]"
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local LOG_MODULE = "[MCL2]"
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function mcl_util.mcl_log(message, module, bypass_default_logger)
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function mcl_util.mcl_log(message, module, bypass_default_logger)
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@ -543,16 +543,16 @@ local function has_room(self,pos)
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end
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end
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table.insert(nodes,"air")
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table.insert(nodes,"air")
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local p1 = vector.offset(pos,cb[1],cb[2] + 1,cb[3])
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-- Calculate area to check for room
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p1.x = math.floor(p1.x)
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p1.y = math.floor(p1.y)
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p1.z = math.floor(p1.z)
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local cb_height = cb[5] - cb[2]
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local cb_height = cb[5] - cb[2]
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local p2 = vector.offset(p1,cb[4] - cb[1], cb_height, cb[6] - cb[3])
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local p1 = vector.new(
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p2.x = math.ceil(p2.x) - 1
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math.round(pos.x + cb[1]),
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p2.y = math.ceil(p2.y) - 1
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pos.y,
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p2.z = math.ceil(p2.z) - 1
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math.round(pos.z + cb[3]))
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local p2 = vector.new(
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math.round(pos.x + cb[4]),
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math.ceil(p1.y + cb_height) - 1,
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math.round(pos.z + cb[6]))
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-- Check if the entire spawn volume is free
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-- Check if the entire spawn volume is free
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local dx = p2.x - p1.x + 1
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local dx = p2.x - p1.x + 1
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@ -560,7 +560,23 @@ local function has_room(self,pos)
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local dz = p2.z - p1.z + 1
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local dz = p2.z - p1.z + 1
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local found_nodes = minetest.find_nodes_in_area(p1,p2,nodes) or 0
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local found_nodes = minetest.find_nodes_in_area(p1,p2,nodes) or 0
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local n = #found_nodes
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local n = #found_nodes
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if n == ( dx * dy * dz ) then return true end
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--[[
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minetest.log(dump({
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cb = cb,
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pos = pos,
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n = n,
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dx = dx,
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dy = dy,
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dz = dz,
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p1 = p1,
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p2 = p2,
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found_nodes = found_nodes,
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nodes = nodes,
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}))
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]]
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if n == ( dx * dy * dz ) then
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return true
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end
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-- If we don't have an implementation of get_node_boxes, we can't check for sub-node space
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-- If we don't have an implementation of get_node_boxes, we can't check for sub-node space
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if not minetest.get_node_boxes then return false end
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if not minetest.get_node_boxes then return false end
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@ -699,10 +715,10 @@ function mcl_mobs.spawn(pos,id)
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if not pos or not id then return false end
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if not pos or not id then return false end
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local def = minetest.registered_entities[id] or minetest.registered_entities["mobs_mc:"..id] or minetest.registered_entities["extra_mobs:"..id]
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local def = minetest.registered_entities[id] or minetest.registered_entities["mobs_mc:"..id] or minetest.registered_entities["extra_mobs:"..id]
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if not def or not def.is_mob or (def.can_spawn and not def.can_spawn(pos)) then return false end
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if not def or not def.is_mob or (def.can_spawn and not def.can_spawn(pos)) then return false end
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if not has_room(def, pos) then return false end
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return minetest.add_entity(pos, def.name)
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return minetest.add_entity(pos, def.name)
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end
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end
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local function spawn_group(p,mob,spawn_on,amount_to_spawn)
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local function spawn_group(p,mob,spawn_on,amount_to_spawn)
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local nn= minetest.find_nodes_in_area_under_air(vector.offset(p,-5,-3,-5),vector.offset(p,5,3,5),spawn_on)
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local nn= minetest.find_nodes_in_area_under_air(vector.offset(p,-5,-3,-5),vector.offset(p,5,3,5),spawn_on)
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local o
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local o
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@ -1049,14 +1049,18 @@ local function has_summon_participants(self)
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end
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end
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local function summon_golem(self)
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local function summon_golem(self)
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vector.offset(self.object:get_pos(),-10,-10,-10)
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local pos = self.object:get_pos()
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local nn = minetest.find_nodes_in_area_under_air(vector.offset(self.object:get_pos(),-10,-10,-10),vector.offset(self.object:get_pos(),10,10,10),{"group:solid","group:water"})
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local p1 = vector.offset(pos, -10, -10, -10)
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table.shuffle(nn)
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local p2 = vector.offset(pos, 10, 10, 10)
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for _,n in pairs(nn) do
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local nn = minetest.find_nodes_in_area_under_air(p1, p2,{"group:solid","group:water"})
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local up = minetest.find_nodes_in_area(vector.offset(n,0,1,0),vector.offset(n,0,3,0),{"air"})
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for n in table.pull_random_items(nn) do
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if up and #up >= 3 then
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n.y = n.y + 1
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minetest.log("trying to summon golem at "..vector.to_string(n))
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local summon = mcl_mobs.spawn(n, "mobs_mc:iron_golem")
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if summon then
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minetest.sound_play("mcl_portals_open_end_portal", {pos=n, gain=0.5, max_hear_distance = 16}, true)
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minetest.sound_play("mcl_portals_open_end_portal", {pos=n, gain=0.5, max_hear_distance = 16}, true)
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return minetest.add_entity(vector.offset(n,0,1,0),"mobs_mc:iron_golem")
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return summon
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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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@ -147,20 +147,14 @@ local function spawn_mobs(pos, elapsed)
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-- get meta
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-- get meta
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local meta = minetest.get_meta(pos)
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local meta = minetest.get_meta(pos)
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-- get settings
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local mob = meta:get_string("Mob")
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local mlig = meta:get_int("MinLight")
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local xlig = meta:get_int("MaxLight")
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local num = meta:get_int("MaxMobsInArea")
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local pla = meta:get_int("PlayerDistance")
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local yof = meta:get_int("YOffset")
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-- if amount is 0 then do nothing
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-- if amount is 0 then do nothing
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local num = meta:get_int("MaxMobsInArea")
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if num == 0 then
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if num == 0 then
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return
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return
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end
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end
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-- are we spawning a registered mob?
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-- are we spawning a registered mob?
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local mob = meta:get_string("Mob")
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if not mcl_mobs.spawning_mobs[mob] then
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if not mcl_mobs.spawning_mobs[mob] then
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minetest.log("error", "[mcl_mobspawners] Mob Spawner: Mob doesn't exist: "..mob)
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minetest.log("error", "[mcl_mobspawners] Mob Spawner: Mob doesn't exist: "..mob)
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return
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return
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@ -174,17 +168,14 @@ local function spawn_mobs(pos, elapsed)
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local timer = minetest.get_node_timer(pos)
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local timer = minetest.get_node_timer(pos)
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-- spawn mob if player detected and in range
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-- spawn mob if player detected and in range
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local pla = meta:get_int("PlayerDistance")
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if pla > 0 then
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if pla > 0 then
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local in_range = 0
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local in_range = 0
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local objs = minetest.get_objects_inside_radius(pos, pla)
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local objs = minetest.get_objects_inside_radius(pos, pla)
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for _,oir in pairs(objs) do
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for _,oir in pairs(objs) do
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if oir:is_player() then
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if oir:is_player() then
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in_range = 1
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in_range = 1
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break
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break
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end
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end
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end
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end
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@ -213,7 +204,6 @@ local function spawn_mobs(pos, elapsed)
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-- count mob objects of same type in area
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-- count mob objects of same type in area
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for k, obj in ipairs(objs) do
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for k, obj in ipairs(objs) do
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ent = obj:get_luaentity()
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ent = obj:get_luaentity()
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if ent and ent.name and ent.name == mob then
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if ent and ent.name and ent.name == mob then
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@ -228,31 +218,28 @@ local function spawn_mobs(pos, elapsed)
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end
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end
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-- find air blocks within 8×3×8 nodes of spawner
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-- find air blocks within 8×3×8 nodes of spawner
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local yof = meta:get_int("YOffset")
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local air = minetest.find_nodes_in_area(
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local air = minetest.find_nodes_in_area(
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{x = pos.x - 4, y = pos.y - 1 + yof, z = pos.z - 4},
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{x = pos.x - 4, y = pos.y - 1 + yof, z = pos.z - 4},
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{x = pos.x + 4, y = pos.y + 1 + yof, z = pos.z + 4},
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{x = pos.x + 4, y = pos.y + 1 + yof, z = pos.z + 4},
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{"air"})
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{"air"})
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-- spawn up to 4 mobs in random air blocks
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-- spawn mobs in random air blocks. Default max of 4
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if air then
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if air then
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local max = 4
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local num_to_spawn = spawn_count_overrides[mob] or 4
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if spawn_count_overrides[mob] then
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local mlig = meta:get_int("MinLight")
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max = spawn_count_overrides[mob]
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local xlig = meta:get_int("MaxLight")
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end
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for a=1, max do
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if #air <= 0 then
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-- We're out of space! Stop spawning
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break
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end
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local air_index = math.random(#air)
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local pos2 = air[air_index]
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local lig = minetest.get_node_light(pos2) or 0
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pos2.y = pos2.y + 0.5
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for pos2 = table.pull_random_items(air) do
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local pos2 = air[air_index]
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-- only if light levels are within range
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-- only if light levels are within range
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local lig = minetest.get_node_light(pos2) or 0
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if lig >= mlig and lig <= xlig then
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if lig >= mlig and lig <= xlig then
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minetest.add_entity(pos2, mob)
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if mcl_mobs.spawn(pos2, mob) then
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num_to_spawn = num_to_spawn - 1
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if num_to_spawn == 0 then break end
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end
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end
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end
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table.remove(air, air_index)
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table.remove(air, air_index)
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end
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end
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