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For the time being we don't support writing a description for those, preferring having all details in the method's description. Using self-closing tags saves half the lines, and prevents contributors from thinking that they should write the argument or return documentation there.
168 lines
6.3 KiB
XML
168 lines
6.3 KiB
XML
<?xml version="1.0" encoding="UTF-8" ?>
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<class name="Rect2i" version="4.0">
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<brief_description>
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2D axis-aligned bounding box using integer coordinates.
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</brief_description>
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<description>
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[Rect2i] consists of a position, a size, and several utility functions. It is typically used for fast overlap tests.
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It uses integer coordinates. If you need floating-point coordinates, use [Rect2] instead.
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</description>
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<tutorials>
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<link title="Math tutorial index">https://docs.godotengine.org/en/latest/tutorials/math/index.html</link>
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<link title="Vector math">https://docs.godotengine.org/en/latest/tutorials/math/vector_math.html</link>
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</tutorials>
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<methods>
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<method name="Rect2i" qualifiers="constructor">
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<return type="Rect2i" />
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<description>
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Constructs a default-initialized [Rect2i] with default (zero) values of [member position] and [member size].
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</description>
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</method>
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<method name="Rect2i" qualifiers="constructor">
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<return type="Rect2i" />
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<argument index="0" name="from" type="Rect2i" />
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<description>
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Constructs a [Rect2i] as a copy of the given [Rect2i].
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</description>
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</method>
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<method name="Rect2i" qualifiers="constructor">
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<return type="Rect2i" />
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<argument index="0" name="from" type="Rect2" />
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<description>
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Constructs a new [Rect2i] from [Rect2]. The floating point coordinates will be truncated.
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</description>
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</method>
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<method name="Rect2i" qualifiers="constructor">
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<return type="Rect2i" />
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<argument index="0" name="position" type="Vector2i" />
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<argument index="1" name="size" type="Vector2i" />
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<description>
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Constructs a [Rect2i] by position and size.
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</description>
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</method>
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<method name="Rect2i" qualifiers="constructor">
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<return type="Rect2i" />
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<argument index="0" name="x" type="int" />
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<argument index="1" name="y" type="int" />
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<argument index="2" name="width" type="int" />
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<argument index="3" name="height" type="int" />
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<description>
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Constructs a [Rect2i] by x, y, width, and height.
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</description>
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</method>
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<method name="abs" qualifiers="const">
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<return type="Rect2i" />
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<description>
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Returns a [Rect2i] with equivalent position and area, modified so that the top-left corner is the origin and [code]width[/code] and [code]height[/code] are positive.
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</description>
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</method>
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<method name="encloses" qualifiers="const">
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<return type="bool" />
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<argument index="0" name="b" type="Rect2i" />
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<description>
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Returns [code]true[/code] if this [Rect2i] completely encloses another one.
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</description>
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</method>
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<method name="expand" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="to" type="Vector2i" />
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<description>
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Returns this [Rect2i] expanded to include a given point.
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</description>
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</method>
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<method name="get_area" qualifiers="const">
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<return type="int" />
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<description>
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Returns the area of the [Rect2i].
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</description>
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</method>
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<method name="grow" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="amount" type="int" />
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<description>
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Returns a copy of the [Rect2i] grown by the specified [code]amount[/code] on all sides.
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</description>
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</method>
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<method name="grow_individual" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="left" type="int" />
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<argument index="1" name="top" type="int" />
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<argument index="2" name="right" type="int" />
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<argument index="3" name="bottom" type="int" />
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<description>
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Returns a copy of the [Rect2i] grown by the specified amount on each side individually.
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</description>
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</method>
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<method name="grow_side" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="side" type="int" />
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<argument index="1" name="amount" type="int" />
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<description>
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Returns a copy of the [Rect2i] grown by the specified [code]amount[/code] on the specified [enum Side].
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</description>
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</method>
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<method name="has_no_area" qualifiers="const">
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<return type="bool" />
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<description>
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Returns [code]true[/code] if the [Rect2i] is flat or empty.
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</description>
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</method>
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<method name="has_point" qualifiers="const">
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<return type="bool" />
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<argument index="0" name="point" type="Vector2i" />
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<description>
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Returns [code]true[/code] if the [Rect2i] contains a point.
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</description>
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</method>
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<method name="intersection" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="b" type="Rect2i" />
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<description>
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Returns the intersection of this [Rect2i] and [code]b[/code].
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If the rectangles do not intersect, an empty [Rect2i] is returned.
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</description>
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</method>
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<method name="intersects" qualifiers="const">
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<return type="bool" />
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<argument index="0" name="b" type="Rect2i" />
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<description>
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Returns [code]true[/code] if the [Rect2i] overlaps with [code]b[/code] (i.e. they have at least one point in common).
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If [code]include_borders[/code] is [code]true[/code], they will also be considered overlapping if their borders touch, even without intersection.
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</description>
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</method>
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<method name="merge" qualifiers="const">
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<return type="Rect2i" />
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<argument index="0" name="b" type="Rect2i" />
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<description>
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Returns a larger [Rect2i] that contains this [Rect2i] and [code]b[/code].
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</description>
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</method>
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<method name="operator !=" qualifiers="operator">
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<return type="bool" />
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<argument index="0" name="right" type="Rect2i" />
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<description>
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</description>
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</method>
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<method name="operator ==" qualifiers="operator">
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<return type="bool" />
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<argument index="0" name="right" type="Rect2i" />
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<description>
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</description>
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</method>
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</methods>
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<members>
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<member name="end" type="Vector2i" setter="" getter="" default="Vector2i(0, 0)">
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Ending corner. This is calculated as [code]position + size[/code]. Setting this value will change the size.
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</member>
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<member name="position" type="Vector2i" setter="" getter="" default="Vector2i(0, 0)">
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Beginning corner. Typically has values lower than [member end].
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</member>
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<member name="size" type="Vector2i" setter="" getter="" default="Vector2i(0, 0)">
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Size from [member position] to [member end]. Typically, all components are positive.
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If the size is negative, you can use [method abs] to fix it.
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</member>
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</members>
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<constants>
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</constants>
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</class>
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