Refactor editor UI logic and structure
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editor.scn (Stored with Git LFS)
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editor.scn (Stored with Git LFS)
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@ -1,7 +1,5 @@
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class_name EditableTerrain extends Node
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class_name EditableTerrain extends Node
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const _DEFAULT_COLOR := Color(0.0, 0.0, 0.0, 0.5)
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##
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##
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## Blank sample value.
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## Blank sample value.
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##
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##
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@ -9,14 +7,6 @@ const BLANK := Color(0.0, 0.0, 0.0, 0.0)
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var _image := Image.create(1, 1, false, Image.FORMAT_RGBAF)
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var _image := Image.create(1, 1, false, Image.FORMAT_RGBAF)
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##
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## Terrain texture channel mixing values.
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##
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## Affects the color that terrain is mixed into during editing operations like [method paint].
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##
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@export
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var channels := Vector3.ZERO
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##
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##
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## Tracked [TerrainInstance3D] to echo all terrain editing changes to.
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## Tracked [TerrainInstance3D] to echo all terrain editing changes to.
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##
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##
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@ -33,7 +23,6 @@ var instance: TerrainInstance3D = null:
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##
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##
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## Width and height of the editable terrain in units.
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## Width and height of the editable terrain in units.
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##
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##
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@export
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var size := Vector2i.ZERO:
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var size := Vector2i.ZERO:
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get:
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get:
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return size
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return size
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@ -47,49 +36,160 @@ var size := Vector2i.ZERO:
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size = value
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size = value
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func _init() -> void:
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func _get_draw_area(point: Vector2i, mask: Image, scale: float) -> Rect2i:
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_image.fill(_DEFAULT_COLOR)
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##
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## Mixes the texture [member channels] and raises the terrain by [code]elevation_level[/code] in a
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## brush pattern masked by [code]brush_mask[/code] to the worldspace [code]point[/code] with
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## [code]brush_intensity[/code] as the intensity of the applied effects for a single paint.
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##
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## For continuous painting, a delta value may be supplied to [code]brush_intensity[/code] to avoid
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## issues with variable-rate paint updates.
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##
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func paint(point: Vector2i, elevation_level: float,
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brush_mask: Image, brush_scale: float, brush_intensity: float) -> void:
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# Convert worldspace point to image-space coordinates for brush and calculate drawable area.
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# Convert worldspace point to image-space coordinates for brush and calculate drawable area.
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var brush_mask_size := brush_mask.get_size()
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var mask_size := mask.get_size()
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var brush_size := brush_mask_size * brush_scale
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var scaled_mask_size := mask_size * scale
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var draw_area := Rect2i(Vector2i.ZERO, size).intersection(
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return Rect2i(Vector2i.ZERO, size).intersection(
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Rect2i((point - Vector2i(brush_size * 0.5)) + Vector2i(size * 0.5), brush_size))
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Rect2i((point - Vector2i(scaled_mask_size * 0.5)) + Vector2i(size * 0.5), scaled_mask_size))
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func _init() -> void:
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clear(BLANK)
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##
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## Clears the image to the value of [code]clear_color[/code].
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##
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func clear(clear_color: Color) -> void:
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_image.fill(clear_color)
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##
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##
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##
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func erase(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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if draw_area.has_area():
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var scaled_brush_mask_size := brush_mask_size / draw_area.size
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var mask_ratio := mask.get_size() / draw_area.size
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elevation_level = clampf(elevation_level, -1.0, 1.0)
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for y in draw_area.size.y:
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for y in draw_area.size.y:
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var brush_mask_y := int(y * scaled_brush_mask_size.y)
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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var pixel := _image.get_pixelv(terrain_map_coord)
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var mask := brush_mask.get_pixel(
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var mask_intensity_delta := intensity *\
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int(x * scaled_brush_mask_size.x), brush_mask_y).a
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delta * mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a
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var mask_intensity := brush_intensity * mask
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_image.set_pixelv(terrain_map_coord, Color(
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_image.set_pixelv(terrain_map_coord, Color(
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lerpf(pixel.r, channels.x, mask_intensity),
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lerpf(pixel.r, 0.0, mask_intensity_delta),
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lerpf(pixel.g, channels.y, mask_intensity),
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lerpf(pixel.g, 0.0, mask_intensity_delta),
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lerpf(pixel.b, channels.z, mask_intensity),
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lerpf(pixel.b, 0.0, mask_intensity_delta),
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lerpf(pixel.a, pixel.a + (elevation_level * mask), brush_intensity)))
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pixel.a))
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instance.terrain_map.update(_image)
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##
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##
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##
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func lower(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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_image.set_pixelv(terrain_map_coord, Color(pixel.r, pixel.g, pixel.b,
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lerpf(pixel.a, pixel.a - (intensity *
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mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a), delta)))
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instance.terrain_map.update(_image)
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##
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##
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##
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func paint_blue(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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_image.set_pixelv(terrain_map_coord, Color(
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pixel.r, pixel.g, lerpf(pixel.b, intensity, delta *\
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mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a),
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pixel.a))
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instance.terrain_map.update(_image)
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##
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##
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##
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func paint_green(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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_image.set_pixelv(terrain_map_coord, Color(
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pixel.r, lerpf(pixel.g, intensity, delta *\
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mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a),
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pixel.b, pixel.a))
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instance.terrain_map.update(_image)
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##
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##
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##
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func paint_red(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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_image.set_pixelv(terrain_map_coord, Color(
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lerpf(pixel.r, intensity, delta *\
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mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a),
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pixel.g, pixel.b, pixel.a))
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instance.terrain_map.update(_image)
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##
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##
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##
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func raise(point: Vector2i, mask: Image, scale: float, intensity: float, delta: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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if draw_area.has_area():
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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_image.set_pixelv(terrain_map_coord, Color(pixel.r, pixel.g, pixel.b,
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lerpf(pixel.a, pixel.a + (intensity *
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mask.get_pixel(int(x * mask_ratio.x), brush_mask_y).a), delta)))
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instance.terrain_map.update(_image)
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instance.terrain_map.update(_image)
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@ -109,42 +209,23 @@ func sample(point: Vector2i) -> Color:
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return BLANK
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return BLANK
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##
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##
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## Mixes the texture [member channels] and smooths the terrain to [code]smoothing_level[/code] in a
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## brush pattern masked by [code]brush_mask[/code] to the worldspace [code]point[/code] with
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## [code]brush_intensity[/code] as the intensity of the applied effects for a single paint.
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##
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##
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## For continuous smoothing, a delta value may be supplied to [code]brush_intensity[/code] to avoid
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## issues with variable-rate smooth updates.
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##
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##
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func smooth(point: Vector2i, smoothing_level: float,
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func smooth(point: Vector2i, mask: Image, scale: float, level: float, delta: float) -> void:
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brush_mask: Image, brush_scale: float, brush_intensity: float) -> void:
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var draw_area := _get_draw_area(point, mask, scale)
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# Convert worldspace point to image-space coordinates for brush and calculate drawable area.
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var brush_mask_size := brush_mask.get_size()
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var brush_size := brush_mask_size * brush_scale
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var terrain_map_size := _image.get_size()
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var draw_area := Rect2i(Vector2i.ZERO, terrain_map_size).intersection(
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Rect2i((point - Vector2i(brush_size * 0.5)) +\
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Vector2i(terrain_map_size * 0.5), brush_size))
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if draw_area.has_area():
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if draw_area.has_area():
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var scaled_brush_mask_size := brush_mask_size / draw_area.size
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var mask_ratio := mask.get_size() / draw_area.size
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for y in draw_area.size.y:
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for y in draw_area.size.y:
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var brush_mask_y := int(y * scaled_brush_mask_size.y)
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var brush_mask_y := int(y * mask_ratio.y)
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for x in draw_area.size.x:
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for x in draw_area.size.x:
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var terrain_map_coord := draw_area.position + Vector2i(x, y)
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var pixel := _image.get_pixelv(terrain_map_coord)
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var pixel := _image.get_pixelv(terrain_map_coord)
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var mask_intensity := brush_intensity * brush_mask.get_pixel(
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_image.set_pixelv(terrain_map_coord, Color(pixel.r, pixel.g, pixel.b,
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int(x * scaled_brush_mask_size.x), brush_mask_y).a
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lerpf(pixel.a, level, delta * mask.get_pixel(
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int(x * mask_ratio.x), brush_mask_y).a)))
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_image.set_pixelv(terrain_map_coord, Color(
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lerpf(pixel.r, channels.x, mask_intensity),
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lerpf(pixel.g, channels.y, mask_intensity),
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lerpf(pixel.b, channels.z, mask_intensity),
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lerpf(pixel.a, smoothing_level, mask_intensity)))
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instance.terrain_map.update(_image)
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instance.terrain_map.update(_image)
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BIN
editor/menus_theme.res (Stored with Git LFS)
BIN
editor/menus_theme.res (Stored with Git LFS)
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