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@@ -211,12 +211,12 @@ func make_layer(layer, parent, root, data):
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var opacity = float(layer.opacity) if "opacity" in layer else 1.0
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var visible = bool(layer.visible) if "visible" in layer else true
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var z_index = 0
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if "properties" in layer and "z_index" in layer.properties:
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z_index = layer.properties.z_index
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if layer.type == "tilelayer":
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var layer_size = Vector2(int(layer.width), int(layer.height))
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var tilemap = TileMap.new()
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@@ -231,6 +231,7 @@ func make_layer(layer, parent, root, data):
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tilemap.cell_y_sort = true
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tilemap.cell_tile_origin = TileMap.TILE_ORIGIN_BOTTOM_LEFT
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tilemap.collision_layer = options.collision_layer
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tilemap.collision_mask = options.collision_mask
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tilemap.z_index = z_index
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var offset = Vector2()
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@@ -280,7 +281,7 @@ func make_layer(layer, parent, root, data):
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var gid = int_id & ~(FLIPPED_HORIZONTALLY_FLAG | FLIPPED_VERTICALLY_FLAG | FLIPPED_DIAGONALLY_FLAG)
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var cell_x = cell_offset.x + chunk.x + (count % int(chunk.width))
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var cell_y = cell_offset.y + chunk.y + int(count / chunk.width)
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var cell_y = cell_offset.y + chunk.y + int(count / chunk.width) + 1
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tilemap.set_cell(cell_x, cell_y, gid, flipped_h, flipped_v, flipped_d)
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count += 1
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@@ -702,26 +703,26 @@ func build_tileset_for_scene(tilesets, source_path, options):
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var i = 0
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var column = 0
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# Needed to look up textures for animations
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var tileRegions = []
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while i < tilecount:
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var tilepos = Vector2(x, y)
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var region = Rect2(tilepos, tilesize)
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tileRegions.push_back(region)
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column += 1
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i += 1
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x += int(tilesize.x) + spacing
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if (columns > 0 and column >= columns) or x >= int(imagesize.x) - margin or (x + int(tilesize.x)) > int(imagesize.x):
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x = margin
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y += int(tilesize.y) + spacing
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column = 0
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i = 0
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while i < tilecount:
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var region = tileRegions[i]
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@@ -778,7 +779,7 @@ func build_tileset_for_scene(tilesets, source_path, options):
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result.tile_set_texture(gid, image)
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if options.apply_offset:
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result.tile_set_texture_offset(gid, Vector2(0, -image.get_height()))
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if "tiles" in ts and rel_id in ts.tiles and "objectgroup" in ts.tiles[rel_id] \
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and "objects" in ts.tiles[rel_id].objectgroup:
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for object in ts.tiles[rel_id].objectgroup.objects:
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@@ -803,10 +804,10 @@ func build_tileset_for_scene(tilesets, source_path, options):
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result.tile_set_occluder_offset(gid, offset)
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else:
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result.tile_add_shape(gid, shape, Transform2D(0, offset), object.type == "one-way")
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if "properties" in ts and "custom_material" in ts.properties:
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result.tile_set_material(gid, load(ts.properties.custom_material))
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if options.custom_properties and options.tile_metadata and "tileproperties" in ts \
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and "tilepropertytypes" in ts and rel_id in ts.tileproperties and rel_id in ts.tilepropertytypes:
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tile_meta[gid] = get_custom_properties(ts.tileproperties[rel_id], ts.tilepropertytypes[rel_id])
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@@ -815,7 +816,7 @@ func build_tileset_for_scene(tilesets, source_path, options):
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if property in ts.tiles[rel_id]:
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if not gid in tile_meta: tile_meta[gid] = {}
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tile_meta[gid][property] = ts.tiles[rel_id][property]
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gid += 1
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i += 1
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@@ -1047,13 +1048,19 @@ func is_convex(vertices):
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return true
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# Decompress the data of the layer
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# Compression argument is a string, either "gzip" or "zlib"
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# Compression argument is a string, either "gzip", "zlib", or "zstd"
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func decompress_layer_data(layer_data, compression, map_size):
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if compression != "gzip" and compression != "zlib":
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print_error("Unrecognized compression format: %s" % [compression])
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return ERR_INVALID_DATA
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var compression_type = File.COMPRESSION_DEFLATE if compression == "zlib" else File.COMPRESSION_GZIP
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var compression_type = -1
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match compression:
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"zlib":
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compression_type = File.COMPRESSION_DEFLATE
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"gzip":
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compression_type = File.COMPRESSION_GZIP
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"zstd":
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compression_type = File.COMPRESSION_ZSTD
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_:
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print_error("Unrecognized compression format: %s" % [compression])
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return ERR_INVALID_DATA
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var expected_size = int(map_size.x) * int(map_size.y) * 4
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var raw_data = Marshalls.base64_to_raw(layer_data).decompress(expected_size, compression_type)
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@@ -1220,7 +1227,7 @@ func validate_layer(layer):
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print_error("Invalid data layer property.")
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return ERR_INVALID_DATA
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if "compression" in layer:
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if layer.compression != "gzip" and layer.compression != "zlib":
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if layer.compression != "gzip" and layer.compression != "zlib" and layer.compression != "zstd":
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print_error("Invalid compression type.")
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return ERR_INVALID_DATA
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"imagelayer":
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