mirror of
https://github.com/Uberi/Minetest-WorldEdit.git
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131 lines
4.1 KiB
Markdown
131 lines
4.1 KiB
Markdown
WorldEdit API
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-------------
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For more information, see the [README](README.md).
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### worldedit.volume(pos1, pos2)
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Determines the volume of the region defined by positions `pos1` and `pos2`.
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Returns the volume.
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### worldedit.set(pos1, pos2, nodename)
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Sets a region defined by positions `pos1` and `pos2` to `nodename`. To clear to region, use "air" as the value of `nodename`.
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Returns the number of nodes set.
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### worldedit.replace(pos1, pos2, searchnode, replacenode)
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Replaces all instances of `searchnode` with `replacenode` in a region defined by positions `pos1` and `pos2`.
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Returns the number of nodes replaced.
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### worldedit.hollow_sphere = function(pos, radius, nodename)
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Adds a hollow sphere at `pos` with radius `radius`, composed of `nodename`.
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Returns the number of nodes added.
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### worldedit.sphere = function(pos, radius, nodename)
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Adds a sphere at `pos` with radius `radius`, composed of `nodename`.
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Returns the number of nodes added.
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### worldedit.hollow_cylinder(pos, axis, length, radius, nodename)
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Adds a hollow cylinder at `pos` along the `axis` axis ("x" or "y" or "z") with length `length` and radius `radius`, composed of `nodename`.
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Returns the number of nodes added.
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### worldedit.cylinder(pos, axis, length, radius, nodename)
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Adds a cylinder at `pos` along the `axis` axis ("x" or "y" or "z") with length `length` and radius `radius`, composed of `nodename`.
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Returns the number of nodes added.
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### worldedit.pyramid(pos, height, nodename)
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Adds a pyramid at `pos` with height `height`.
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Returns the number of nodes added.
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### worldedit.spiral(pos, width, height, spacer, nodename)
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Adds a spiral at `pos` with width `width`, height `height`, space between walls `spacer`, composed of `nodename`.
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Returns the number of nodes added.
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### worldedit.copy(pos1, pos2, axis, amount)
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Copies the region defined by positions `pos1` and `pos2` along the `axis` axis ("x" or "y" or "z") by `amount` nodes.
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Returns the number of nodes copied.
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### worldedit.move(pos1, pos2, axis, amount)
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Moves the region defined by positions `pos1` and `pos2` along the `axis` axis ("x" or "y" or "z") by `amount` nodes.
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Returns the number of nodes moved.
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### worldedit.stack(pos1, pos2, axis, count)
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Duplicates the region defined by positions `pos1` and `pos2` along the `axis` axis ("x" or "y" or "z") `count` times.
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Returns the number of nodes stacked.
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### worldedit.transpose(pos1, pos2, axis1, axis2)
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Transposes a region defined by the positions `pos1` and `pos2` between the `axis1` and `axis2` axes ("x" or "y" or "z").
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Returns the number of nodes transposed.
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### worldedit.flip(pos1, pos2, axis)
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Flips a region defined by the positions `pos1` and `pos2` along the `axis` axis ("x" or "y" or "z").
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Returns the number of nodes flipped.
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### worldedit.rotate(pos1, pos2, angle)
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Rotates a region defined by the positions `pos1` and `pos2` by `angle` degrees clockwise around the y axis (supporting 90 degree increments only).
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Returns the number of nodes rotated.
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### worldedit.dig(pos1, pos2)
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Digs a region defined by positions `pos1` and `pos2`.
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Returns the number of nodes dug.
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### worldedit.serialize(pos1, pos2)
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Converts the region defined by positions `pos1` and `pos2` into a single string.
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Returns the serialized data and the number of nodes serialized.
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### worldedit.deserialize(originpos, value)
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Loads the nodes represented by string `value` at position `originpos`.
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Returns the number of nodes deserialized.
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### worldedit.deserialize_old(originpos, value)
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Loads the nodes represented by string `value` at position `originpos`, using the older table-based WorldEdit format.
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This function is deprecated, and should not be used unless there is a need to support legacy WorldEdit save files.
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Returns the number of nodes deserialized.
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### worldedit.metasave(pos1, pos2, file)
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Saves the nodes and meta defined by positions `pos1` and `pos2` into a file.
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Returns the number of nodes saved.
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### worldedit.metaload(pos1, file)
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Loads the nodes and meta from `file` to position `pos1`.
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Returns the number of nodes loaded. |