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https://github.com/FaceDeer/dfcaverns.git
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add giant mycelium fungoidal structure
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@ -69,6 +69,7 @@ local mushroom_cavern_ceiling = function(abs_cracks, humidity, vi, area, data, d
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df_primordial_items.spawn_ceiling_spire_vm(vi, area, data)
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elseif rand < 0.2 then
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data[vi-ystride] = c_orb
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data_param2[vi-ystride] = math.random(0,179)
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end
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end
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end
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@ -82,6 +83,7 @@ local mushroom_warren_ceiling = function(abs_cracks, vi, area, data, data_param2
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if abs_cracks < 0.2 then
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if math.random() < 0.2 then
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data[vi-ystride] = c_orb
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data_param2[vi-ystride] = math.random(0,179)
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end
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end
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end
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@ -40,6 +40,7 @@ minetest.register_node("df_primordial_items:glow_orb_hanging", {
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wield_image = "dfcaverns_mush_orb_vert.png",
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groups = {snappy = 3, flora = 1, attached_node = 1, flammable = 1},
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paramtype = "light",
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paramtype2 = "degrotate",
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drawtype = "plantlike",
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buildable_to = true,
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walkable = false,
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251
df_primordial_items/giant_mycelium.lua
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251
df_primordial_items/giant_mycelium.lua
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@ -0,0 +1,251 @@
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-- internationalization boilerplate
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local MP = minetest.get_modpath(minetest.get_current_modname())
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local S, NS = dofile(MP.."/intllib.lua")
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local hub_thickness = 0.1875--0.25
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local connector_thickness = 0.25--0.375
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local node_box = {
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type = "connected",
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fixed = {-hub_thickness,-hub_thickness,-hub_thickness,hub_thickness,hub_thickness,hub_thickness},
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connect_top = {-connector_thickness, 0, -connector_thickness, connector_thickness, 0.5, connector_thickness},
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connect_bottom = {-connector_thickness, -0.5, -connector_thickness, connector_thickness, 0, connector_thickness},
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connect_back = {-connector_thickness, -connector_thickness, 0, connector_thickness, connector_thickness, 0.5},
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connect_right = {0, -connector_thickness, -connector_thickness, 0.5, connector_thickness, connector_thickness},
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connect_front = {-connector_thickness, -connector_thickness, -0.5, connector_thickness, connector_thickness, 0},
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connect_left = {-0.5, -connector_thickness, -connector_thickness, 0, connector_thickness, connector_thickness},
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disconnected = {-connector_thickness,-connector_thickness,-connector_thickness,connector_thickness,connector_thickness,connector_thickness},
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}
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minetest.register_node("df_primordial_items:giant_hypha_root", {
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description = S("Giant Hypha"),
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tiles = {
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{name="dfcaverns_mush_stalk_side.png"},
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},
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connects_to = {"group:soil", "group:hypha"},
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connect_sides = { "top", "bottom", "front", "left", "back", "right" },
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drawtype = "nodebox",
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node_box = node_box,
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paramtype = "light",
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light_source = 2,
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is_ground_content = false,
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groups = {oddly_breakable_by_hand = 1, choppy = 2, hypha =1},
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sounds = default.node_sound_wood_defaults(),
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})
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minetest.register_node("df_primordial_items:giant_hypha", {
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description = S("Giant Hypha"),
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tiles = {
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{name="dfcaverns_mush_stalk_side.png"},
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},
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connects_to = {"group:hypha"},
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connect_sides = { "top", "bottom", "front", "left", "back", "right" },
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drawtype = "nodebox",
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node_box = node_box,
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paramtype = "light",
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light_source = 2,
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is_ground_content = false,
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groups = {oddly_breakable_by_hand = 1, choppy = 2, hypha =1},
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sounds = default.node_sound_wood_defaults(),
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})
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local grow_mycelium = function(pos)
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local nodes = {}
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for x = -1, 1 do
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nodes[x] = {}
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for y = -1, 1 do
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nodes[x][y] = {}
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for z = -1, 1 do
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local node = minetest.get_node({x=pos.x+x, y=pos.y+y, z=pos.z+z})
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local state = {}
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if minetest.get_item_group(node.name, "soil") > 0 then
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state.soil = true
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elseif minetest.get_item_group(node.name, "hypha") > 0 then
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state.hypha = true
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elseif minetest.registered_nodes[node.name] and minetest.registered_nodes[node.name].buildable_to then
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state.buildable = true
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end
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nodes[x][y][z] = state
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end
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end
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end
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--TODO there's probably some clever way to turn this into a subroutine, but I'm tired right now and
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--copy and pasting is easy and nobody's going to decide whether to hire or fire me based on this
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--particular snippet of code so what the hell. I'll fix it later when that clever way comes to me.
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local valid_targets = {}
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if nodes[-1][0][0].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[-1][-1][0].soil or
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nodes[-1][1][0].soil or
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nodes[-1][0][-1].soil or
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nodes[-1][0][1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[0][-1][0].soil or
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nodes[0][1][0].soil or
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nodes[0][0][-1].soil or
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nodes[0][0][1].soil)
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and not -- no adjacent hypha
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(nodes[-1][-1][0].hypha or
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nodes[-1][1][0].hypha or
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nodes[-1][0][-1].hypha or
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nodes[-1][0][1].hypha)
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then
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table.insert(valid_targets, {x=pos.x-1, y=pos.y, z=pos.z})
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end
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end
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if nodes[1][0][0].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[1][-1][0].soil or
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nodes[1][1][0].soil or
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nodes[1][0][-1].soil or
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nodes[1][0][1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[0][-1][0].soil or
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nodes[0][1][0].soil or
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nodes[0][0][-1].soil or
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nodes[0][0][1].soil)
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and not -- no adjacent hypha
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(nodes[1][-1][0].hypha or
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nodes[1][1][0].hypha or
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nodes[1][0][-1].hypha or
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nodes[1][0][1].hypha)
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then
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table.insert(valid_targets, {x=pos.x+1, y=pos.y, z=pos.z})
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end
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end
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if nodes[0][-1][0].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[-1][-1][0].soil or
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nodes[1][-1][0].soil or
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nodes[0][-1][-1].soil or
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nodes[0][-1][1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[-1][0][0].soil or
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nodes[1][0][0].soil or
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nodes[0][0][-1].soil or
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nodes[0][0][1].soil)
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and not -- no adjacent hypha
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(nodes[-1][-1][0].hypha or
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nodes[1][-1][0].hypha or
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nodes[0][-1][-1].hypha or
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nodes[0][-1][1].hypha)
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then
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table.insert(valid_targets, {x=pos.x, y=pos.y-1, z=pos.z})
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end
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end
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if nodes[0][1][0].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[-1][1][0].soil or
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nodes[1][1][0].soil or
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nodes[0][1][-1].soil or
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nodes[0][1][1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[-1][0][0].soil or
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nodes[1][0][0].soil or
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nodes[0][0][-1].soil or
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nodes[0][0][1].soil)
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and not -- no adjacent hypha
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(nodes[-1][1][0].hypha or
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nodes[1][1][0].hypha or
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nodes[0][1][-1].hypha or
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nodes[0][1][1].hypha)
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then
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table.insert(valid_targets, {x=pos.x, y=pos.y+1, z=pos.z})
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end
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end
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if nodes[0][0][-1].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[-1][0][-1].soil or
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nodes[1][0][-1].soil or
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nodes[0][-1][-1].soil or
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nodes[0][1][-1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[-1][0][0].soil or
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nodes[1][0][0].soil or
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nodes[0][-1][0].soil or
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nodes[0][1][0].soil)
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and not -- no adjacent hypha
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(nodes[-1][0][-1].hypha or
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nodes[1][0][-1].hypha or
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nodes[0][-1][-1].hypha or
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nodes[0][1][-1].hypha)
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then
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table.insert(valid_targets, {x=pos.x, y=pos.y, z=pos.z-1})
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end
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end
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if nodes[0][0][1].buildable then
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if
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-- test for soil to directly support new growth
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(nodes[-1][0][1].soil or
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nodes[1][0][1].soil or
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nodes[0][-1][1].soil or
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nodes[0][1][1].soil or
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-- test for soil "around the corner" to allow for growth over an edge
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nodes[-1][0][0].soil or
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nodes[1][0][0].soil or
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nodes[0][-1][0].soil or
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nodes[0][1][0].soil)
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and not -- no adjacent hypha
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(nodes[-1][0][1].hypha or
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nodes[1][0][1].hypha or
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nodes[0][-1][1].hypha or
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nodes[0][1][1].hypha)
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then
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table.insert(valid_targets, {x=pos.x, y=pos.y, z=pos.z+1})
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end
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end
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return valid_targets
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end
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minetest.register_node("df_primordial_items:giant_hypha_apical_meristem", {
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description = S("Giant Hypha Apical Meristem"),
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tiles = {
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{name="dfcaverns_mush_stalk_side.png^[brighten"},
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},
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connects_to = {"group:hypha"},
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connect_sides = { "top", "bottom", "front", "left", "back", "right" },
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drawtype = "nodebox",
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light_source = 6,
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node_box = {
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type = "connected",
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fixed = {-0.25,-0.25,-0.25,0.25,0.25,0.25},
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connect_top = {-0.375, 0, -0.375, 0.375, 0.5, 0.375},
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connect_bottom = {-0.375, -0.5, -0.375, 0.375, 0, 0.375},
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connect_back = {-0.375, -0.375, 0, 0.375, 0.375, 0.5},
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connect_right = {0, -0.375, -0.375, 0.5, 0.375, 0.375},
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connect_front = {-0.375, -0.375, -0.5, 0.375, 0.375, 0},
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connect_left = {-0.5, -0.375, -0.375, 0, 0.375, 0.375},
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disconnected = {-0.375,-0.375,-0.375,0.375,0.375,0.375},
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},
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paramtype = "light",
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is_ground_content = false,
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groups = {oddly_breakable_by_hand = 1, choppy = 2, hypha =1},
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sounds = default.node_sound_wood_defaults(),
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on_construct = function(pos)
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minetest.get_node_timer(pos):start(1.0)
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end,
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on_timer = function(pos, elapsed)
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--if math.random() < 0.99 then
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local targets = grow_mycelium(pos)
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local target_count = #targets
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if target_count > 0 then
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minetest.set_node(targets[math.random(1,target_count)], {name="df_primordial_items:giant_hypha_apical_meristem"})
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end
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--end
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if math.random() < 0.05 then
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minetest.get_node_timer(pos):start(1.0) -- branch
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elseif math.random() < 0.5 then
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minetest.set_node(pos, {name="df_primordial_items:giant_hypha_root"})
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else
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minetest.set_node(pos, {name="df_primordial_items:giant_hypha"})
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end
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end,
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})
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@ -10,3 +10,4 @@ dofile(MP.."/giant_fern.lua")
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dofile(MP.."/fungal_nodes.lua")
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dofile(MP.."/ceiling_fungus.lua")
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dofile(MP.."/primordial_mushroom.lua")
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dofile(MP.."/giant_mycelium.lua")
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