Minetest-WorldEdit/worldedit/primitives.lua

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worldedit = worldedit or {}
local minetest = minetest --local copy of global
--adds a hollow sphere centered at `pos` with radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.hollow_sphere = function(pos, radius, nodename)
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local pos1 = {x=pos.x - radius, y=pos.y - radius, z=pos.z - radius}
local pos2 = {x=pos.x + radius, y=pos.y + radius, z=pos.z + radius}
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
local min_radius, max_radius = radius * (radius - 1), radius * (radius + 1)
local offsetx, offsety, offsetz = pos.x - emerged_pos1.x, pos.y - emerged_pos1.y, pos.z - emerged_pos1.z
local zstride, ystride = area.zstride, area.ystride
local count = 0
for z = -radius, radius do
local newz = (z + offsetz) * zstride + 1 --offset contributed by z plus 1 to make it 1-indexed
for y = -radius, radius do
local newy = newz + (y + offsety) * ystride
for x = -radius, radius do
local squared = x * x + y * y + z * z
if squared >= min_radius and squared <= max_radius then --position is on surface of sphere
local i = newy + (x + offsetx)
nodes[i] = node_id
count = count + 1
end
end
end
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a sphere centered at `pos` with radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.sphere = function(pos, radius, nodename)
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local pos1 = {x=pos.x - radius, y=pos.y - radius, z=pos.z - radius}
local pos2 = {x=pos.x + radius, y=pos.y + radius, z=pos.z + radius}
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
local max_radius = radius * (radius + 1)
local offsetx, offsety, offsetz = pos.x - emerged_pos1.x, pos.y - emerged_pos1.y, pos.z - emerged_pos1.z
local zstride, ystride = area.zstride, area.ystride
local count = 0
for z = -radius, radius do
local newz = (z + offsetz) * zstride + 1 --offset contributed by z plus 1 to make it 1-indexed
for y = -radius, radius do
local newy = newz + (y + offsety) * ystride
for x = -radius, radius do
if x * x + y * y + z * z <= max_radius then --position is inside sphere
local i = newy + (x + offsetx)
nodes[i] = node_id
count = count + 1
end
end
end
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a hollow dome centered at `pos` with radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.hollow_dome = function(pos, radius, nodename)
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local pos1 = {x=pos.x - radius, y=pos.y, z=pos.z - radius}
local pos2 = {x=pos.x + radius, y=pos.y + radius, z=pos.z + radius}
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
local min_radius, max_radius = radius * (radius - 1), radius * (radius + 1)
local offsetx, offsety, offsetz = pos.x - emerged_pos1.x, pos.y - emerged_pos1.y, pos.z - emerged_pos1.z
local zstride, ystride = area.zstride, area.ystride
local count = 0
for z = -radius, radius do
local newz = (z + offsetz) * zstride + 1 --offset contributed by z plus 1 to make it 1-indexed
for y = 0, radius do
local newy = newz + (y + offsety) * ystride
for x = -radius, radius do
local squared = x * x + y * y + z * z
if squared >= min_radius and squared <= max_radius then --position is on surface of sphere
local i = newy + (x + offsetx)
nodes[i] = node_id
count = count + 1
end
end
end
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a dome centered at `pos` with radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.dome = function(pos, radius, nodename) --wip: use bresenham sphere for maximum speed
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local pos1 = {x=pos.x - radius, y=pos.y, z=pos.z - radius}
local pos2 = {x=pos.x + radius, y=pos.y + radius, z=pos.z + radius}
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
local max_radius = radius * (radius + 1)
local offsetx, offsety, offsetz = pos.x - emerged_pos1.x, pos.y - emerged_pos1.y, pos.z - emerged_pos1.z
local zstride, ystride = area.zstride, area.ystride
local count = 0
for z = -radius, radius do
local newz = (z + offsetz) * zstride + 1 --offset contributed by z plus 1 to make it 1-indexed
for y = 0, radius do
local newy = newz + (y + offsety) * ystride
for x = -radius, radius do
if x * x + y * y + z * z <= max_radius then --position is inside sphere
local i = newy + (x + offsetx)
nodes[i] = node_id
count = count + 1
end
end
end
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a hollow cylinder at `pos` along the `axis` axis ("x" or "y" or "z") with length `length` and radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.hollow_cylinder = function(pos, axis, length, radius, nodename) --wip: rewrite this using voxelmanip
local other1, other2
if axis == "x" then
other1, other2 = "y", "z"
elseif axis == "y" then
other1, other2 = "x", "z"
else --axis == "z"
other1, other2 = "x", "y"
end
--handle negative lengths
local currentpos = {x=pos.x, y=pos.y, z=pos.z}
if length < 0 then
length = -length
currentpos[axis] = currentpos[axis] - length
end
--create schematic for single node column along the axis
local node = {name=nodename, param1=0, param2=0}
local nodes = {}
for i = 1, length do
nodes[i] = node
end
local schematic = {size={[axis]=length, [other1]=1, [other2]=1}, data=nodes}
--add columns in a circle around axis to form cylinder
local place_schematic = minetest.place_schematic
local count = 0
local offset1, offset2 = 0, radius
local delta = -radius
while offset1 <= offset2 do
--add node at each octant
local first1, first2 = pos[other1] + offset1, pos[other1] - offset1
local second1, second2 = pos[other2] + offset2, pos[other2] - offset2
currentpos[other1], currentpos[other2] = first1, second1
place_schematic(currentpos, schematic) --octant 1
currentpos[other1] = first2
place_schematic(currentpos, schematic) --octant 4
currentpos[other2] = second2
place_schematic(currentpos, schematic) --octant 5
currentpos[other1] = first1
place_schematic(currentpos, schematic) --octant 8
local first1, first2 = pos[other1] + offset2, pos[other1] - offset2
local second1, second2 = pos[other2] + offset1, pos[other2] - offset1
currentpos[other1], currentpos[other2] = first1, second1
place_schematic(currentpos, schematic) --octant 2
currentpos[other1] = first2
place_schematic(currentpos, schematic) --octant 3
currentpos[other2] = second2
place_schematic(currentpos, schematic) --octant 6
currentpos[other1] = first1
place_schematic(currentpos, schematic) --octant 7
count = count + 8 --wip: broken because sometimes currentpos is repeated
--move to next location
delta = delta + (offset1 * 2) + 1
if delta >= 0 then
offset2 = offset2 - 1
delta = delta - (offset2 * 2)
end
offset1 = offset1 + 1
end
count = count * length --apply the length to the number of nodes
return count
end
--adds a cylinder at `pos` along the `axis` axis ("x" or "y" or "z") with length `length` and radius `radius`, composed of `nodename`, returning the number of nodes added
worldedit.cylinder = function(pos, axis, length, radius, nodename, env)
local other1, other2
if axis == "x" then
other1, other2 = "y", "z"
elseif axis == "y" then
other1, other2 = "x", "z"
else --axis == "z"
other1, other2 = "x", "y"
end
--handle negative lengths
local currentpos = {x=pos.x, y=pos.y, z=pos.z}
if length < 0 then
length = -length
currentpos[axis] = currentpos[axis] - length
end
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local pos1 = {
[axis]=currentpos[axis],
[other1]=currentpos[other1] - radius,
[other2]=currentpos[other2] - radius
}
local pos2 = {
[axis]=currentpos[axis] + length - 1,
[other1]=currentpos[other1] + radius,
[other2]=currentpos[other2] + radius
}
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
local max_radius = radius * (radius + 1)
local stride = {x=1, y=area.ystride, z=area.zstride}
local offset = {x=currentpos.x - emerged_pos1.x, y=currentpos.y - emerged_pos1.y, z=currentpos.z - emerged_pos1.z}
local min_slice, max_slice = offset[axis], offset[axis] + length - 1
local count = 0
for axis1 = -radius, radius do
local newaxis1 = (axis1 + offset[other1]) * stride[other1] + 1 --offset contributed by other axis 1 plus 1 to make it 1-indexed
for axis2 = -radius, radius do
local newaxis2 = newaxis1 + (axis2 + offset[other2]) * stride[other2]
if axis1 * axis1 + axis2 * axis2 <= max_radius then
for slice = min_slice, max_slice do
local i = newaxis2 + slice * stride[axis] + 1
nodes[i] = node_id
end
count = count + length
end
end
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a pyramid centered at `pos` with height `height`, composed of `nodename`, returning the number of nodes added
worldedit.pyramid = function(pos, height, nodename, env)
local pos1 = {x=pos.x - height, y=pos.y, z=pos.z - height}
local pos2 = {x=pos.x + height, y=pos.y + height, z=pos.z + height}
--set up voxel manipulator
local manip = minetest.get_voxel_manip()
local emerged_pos1, emerged_pos2 = manip:read_from_map(pos1, pos2)
local area = VoxelArea:new({MinEdge=emerged_pos1, MaxEdge=emerged_pos2})
--fill emerged area with ignore
local nodes = {}
local ignore = minetest.get_content_id("ignore")
for i = 1, worldedit.volume(emerged_pos1, emerged_pos2) do
nodes[i] = ignore
end
--fill selected area with node
local node_id = minetest.get_content_id(nodename)
height = height - 1
local offsetx, offsety, offsetz = pos.x - emerged_pos1.x, pos.y - emerged_pos1.y, pos.z - emerged_pos1.z
local zstride, ystride = area.zstride, area.ystride
local count = 0
for y = 0, height do --go through each level of the pyramid
local newy = (y + offsety) * ystride + 1 --offset contributed by y plus 1 to make it 1-indexed
for z = -height, height do
local newz = newy + (z + offsetz) * zstride
for x = -height, height do
local i = newz + (x + offsetx)
nodes[i] = node_id
end
end
height = height - 1
count = count + ((height - y) * 2 + 1) ^ 2
end
--update map nodes
manip:set_data(nodes)
manip:write_to_map()
manip:update_map()
return count
end
--adds a spiral centered at `pos` with width `width`, height `height`, space between walls `spacer`, composed of `nodename`, returning the number of nodes added
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worldedit.spiral = function(pos, width, height, spacer, nodename, env) --wip: clean this up
-- spiral matrix - http://rosettacode.org/wiki/Spiral_matrix#Lua
--wip: rewrite this whole thing, nobody can understand it anyways
av, sn = math.abs, function(s) return s~=0 and s/av(s) or 0 end
local function sindex(z, x) -- returns the value at (x, z) in a spiral that starts at 1 and goes outwards
if z == -x and z >= x then return (2*z+1)^2 end
local l = math.max(av(z), av(x))
return (2*l-1)^2+4*l+2*l*sn(x+z)+sn(z^2-x^2)*(l-(av(z)==l and sn(z)*x or sn(x)*z)) -- OH GOD WHAT
end
local function spiralt(side)
local ret, id, start, stop = {}, 0, math.floor((-side+1)/2), math.floor((side-1)/2)
for i = 1, side do
for j = 1, side do
local id = side^2 - sindex(stop - i + 1,start + j - 1)
ret[id] = {x=i,z=j}
end
end
return ret
end
if env == nil then env = minetest.env end
-- connect the joined parts
local spiral = spiralt(width)
height = tonumber(height)
if height < 1 then height = 1 end
spacer = tonumber(spacer)-1
if spacer < 1 then spacer = 1 end
local count = 0
local node = {name=nodename}
local np,lp
for y=0,height do
lp = nil
for _,v in ipairs(spiral) do
np = {x=pos.x+v.x*spacer, y=pos.y+y, z=pos.z+v.z*spacer}
if lp~=nil then
if lp.x~=np.x then
if lp.x<np.x then
for i=lp.x+1,np.x do
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env:add_node({x=i, y=np.y, z=np.z}, node)
count = count + 1
end
else
for i=np.x,lp.x-1 do
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env:add_node({x=i, y=np.y, z=np.z}, node)
count = count + 1
end
end
end
if lp.z~=np.z then
if lp.z<np.z then
for i=lp.z+1,np.z do
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env:add_node({x=np.x, y=np.y, z=i}, node)
count = count + 1
end
else
for i=np.z,lp.z-1 do
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env:add_node({x=np.x, y=np.y, z=i}, node)
count = count + 1
end
end
end
end
lp = np
end
end
return count
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end