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f7f6115f76
- Document a few more properties and methods - Add more information to many classes - Fix lots of typos and gramar mistakes - Use [code] tags for parameters consistently - Use [b] and [i] tags consistently - Put "Warning:" and "Note:" on their own line to be more visible, and make them always bold - Tweak formatting in code examples to be more readable - Use double quotes consistently - Add more links to third-party technologies
146 lines
8.0 KiB
XML
146 lines
8.0 KiB
XML
<?xml version="1.0" encoding="UTF-8" ?>
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<class name="Physics2DDirectSpaceState" inherits="Object" category="Core" version="3.2">
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<brief_description>
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Direct access object to a space in the [Physics2DServer].
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</brief_description>
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<description>
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Direct access object to a space in the [Physics2DServer]. It's used mainly to do queries against objects and areas residing in a given space.
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</description>
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<tutorials>
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<link>https://docs.godotengine.org/en/latest/tutorials/physics/ray-casting.html</link>
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</tutorials>
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<methods>
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<method name="cast_motion">
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<return type="Array">
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</return>
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<argument index="0" name="shape" type="Physics2DShapeQueryParameters">
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</argument>
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<description>
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Checks how far the shape can travel toward a point. If the shape can not move, the array will be empty.
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[b]Note:[/b] Both the shape and the motion are supplied through a [Physics2DShapeQueryParameters] object. The method will return an array with two floats between 0 and 1, both representing a fraction of [code]motion[/code]. The first is how far the shape can move without triggering a collision, and the second is the point at which a collision will occur. If no collision is detected, the returned array will be [code][1, 1][/code].
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</description>
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</method>
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<method name="collide_shape">
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<return type="Array">
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</return>
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<argument index="0" name="shape" type="Physics2DShapeQueryParameters">
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</argument>
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<argument index="1" name="max_results" type="int" default="32">
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</argument>
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<description>
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Checks the intersections of a shape, given through a [Physics2DShapeQueryParameters] object, against the space. The resulting array contains a list of points where the shape intersects another. Like with [method intersect_shape], the number of returned results can be limited to save processing time.
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</description>
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</method>
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<method name="get_rest_info">
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<return type="Dictionary">
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</return>
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<argument index="0" name="shape" type="Physics2DShapeQueryParameters">
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</argument>
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<description>
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Checks the intersections of a shape, given through a [Physics2DShapeQueryParameters] object, against the space. If it collides with more than one shape, the nearest one is selected. If the shape did not intersect anything, then an empty dictionary is returned instead.
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[b]Note:[/b] This method does not take into account the [code]motion[/code] property of the object. The returned object is a dictionary containing the following fields:
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[code]collider_id[/code]: The colliding object's ID.
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[code]linear_velocity[/code]: The colliding object's velocity [Vector2]. If the object is an [Area2D], the result is [code](0, 0)[/code].
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[code]metadata[/code]: The intersecting shape's metadata. This metadata is different from [method Object.get_meta], and is set with [method Physics2DServer.shape_set_data].
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[code]normal[/code]: The object's surface normal at the intersection point.
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[code]point[/code]: The intersection point.
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[code]rid[/code]: The intersecting object's [RID].
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[code]shape[/code]: The shape index of the colliding shape.
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</description>
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</method>
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<method name="intersect_point">
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<return type="Array">
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</return>
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<argument index="0" name="point" type="Vector2">
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</argument>
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<argument index="1" name="max_results" type="int" default="32">
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</argument>
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<argument index="2" name="exclude" type="Array" default="[ ]">
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</argument>
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<argument index="3" name="collision_layer" type="int" default="2147483647">
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</argument>
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<argument index="4" name="collide_with_bodies" type="bool" default="true">
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</argument>
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<argument index="5" name="collide_with_areas" type="bool" default="false">
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</argument>
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<description>
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Checks whether a point is inside any shape. The shapes the point is inside of are returned in an array containing dictionaries with the following fields:
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[code]collider[/code]: The colliding object.
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[code]collider_id[/code]: The colliding object's ID.
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[code]metadata[/code]: The intersecting shape's metadata. This metadata is different from [method Object.get_meta], and is set with [method Physics2DServer.shape_set_data].
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[code]rid[/code]: The intersecting object's [RID].
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[code]shape[/code]: The shape index of the colliding shape.
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Additionally, the method can take an [code]exclude[/code] array of objects or [RID]s that are to be excluded from collisions, a [code]collision_mask[/code] bitmask representing the physics layers to check in, or booleans to determine if the ray should collide with [PhysicsBody]s or [Area]s, respectively.
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</description>
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</method>
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<method name="intersect_point_on_canvas">
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<return type="Array">
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</return>
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<argument index="0" name="point" type="Vector2">
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</argument>
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<argument index="1" name="canvas_instance_id" type="int">
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</argument>
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<argument index="2" name="max_results" type="int" default="32">
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</argument>
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<argument index="3" name="exclude" type="Array" default="[ ]">
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</argument>
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<argument index="4" name="collision_layer" type="int" default="2147483647">
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</argument>
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<argument index="5" name="collide_with_bodies" type="bool" default="true">
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</argument>
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<argument index="6" name="collide_with_areas" type="bool" default="false">
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</argument>
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<description>
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</description>
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</method>
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<method name="intersect_ray">
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<return type="Dictionary">
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</return>
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<argument index="0" name="from" type="Vector2">
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</argument>
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<argument index="1" name="to" type="Vector2">
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</argument>
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<argument index="2" name="exclude" type="Array" default="[ ]">
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</argument>
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<argument index="3" name="collision_layer" type="int" default="2147483647">
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</argument>
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<argument index="4" name="collide_with_bodies" type="bool" default="true">
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</argument>
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<argument index="5" name="collide_with_areas" type="bool" default="false">
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</argument>
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<description>
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Intersects a ray in a given space. The returned object is a dictionary with the following fields:
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[code]collider[/code]: The colliding object.
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[code]collider_id[/code]: The colliding object's ID.
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[code]metadata[/code]: The intersecting shape's metadata. This metadata is different from [method Object.get_meta], and is set with [method Physics2DServer.shape_set_data].
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[code]normal[/code]: The object's surface normal at the intersection point.
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[code]position[/code]: The intersection point.
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[code]rid[/code]: The intersecting object's [RID].
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[code]shape[/code]: The shape index of the colliding shape.
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If the ray did not intersect anything, then an empty dictionary is returned instead.
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Additionally, the method can take an [code]exclude[/code] array of objects or [RID]s that are to be excluded from collisions, a [code]collision_mask[/code] bitmask representing the physics layers to check in, or booleans to determine if the ray should collide with [PhysicsBody]s or [Area]s, respectively.
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</description>
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</method>
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<method name="intersect_shape">
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<return type="Array">
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</return>
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<argument index="0" name="shape" type="Physics2DShapeQueryParameters">
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</argument>
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<argument index="1" name="max_results" type="int" default="32">
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</argument>
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<description>
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Checks the intersections of a shape, given through a [Physics2DShapeQueryParameters] object, against the space.
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[b]Note:[/b] This method does not take into account the [code]motion[/code] property of the object. The intersected shapes are returned in an array containing dictionaries with the following fields:
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[code]collider[/code]: The colliding object.
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[code]collider_id[/code]: The colliding object's ID.
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[code]metadata[/code]: The intersecting shape's metadata. This metadata is different from [method Object.get_meta], and is set with [method Physics2DServer.shape_set_data].
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[code]rid[/code]: The intersecting object's [RID].
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[code]shape[/code]: The shape index of the colliding shape.
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The number of intersections can be limited with the [code]max_results[/code] parameter, to reduce the processing time.
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</description>
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</method>
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</methods>
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<constants>
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</constants>
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</class>
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