contrib/png-it: clean up code, grammar
This took several years off my life expectancy, and there's still ways to go.
This commit is contained in:
@@ -1,48 +1,53 @@
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"""
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Outputs a huge PNG file using the tiles from a overviewer map.
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Outputs one huge PNG file using the tiles from an Overviewer map.
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"""
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from optparse import OptionParser
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from PIL import Image
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from os.path import join, split, exists
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from glob import glob
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import sys
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from glob import glob
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from optparse import OptionParser
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from os.path import exists, join, split
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from PIL import Image
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def main():
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usage = 'usage: %prog [options] <tile-set-folder>'
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parser = OptionParser(description='',\
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prog = 'png_it', version='0.0.1', usage=usage)
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parser = OptionParser(description='', prog='png_it', version='0.0.1', usage=usage)
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parser.add_option('--memory-limit', '-m', help = 'Limit the amount of ram to use in MB. If it\'s expected to exceed the limit it won\'t do anything.',\
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metavar = '<memory>', type = int, dest = 'memory_limit', default = None)
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parser.add_option('--zoom-level', '-z', help = 'Which zoom level to use from the overviewer map. NOTE: the RAM usage will increase exponentially with the zoom level.',\
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metavar = '<zoom-level>', type = int, dest = 'zoom_level', default = None)
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parser.add_option('--crop', '-c', help = 'It will crop a frame around the image, give it in percentage. For example in a image of 1000x2000 pixels, a 10% crop will crop 100 pixels in the left, right sides and 200 pixels in the bottom and top sides. NOTE: this is no exact, it will be rounded to the nearest overviewer map tile.',\
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metavar = '<crop>', type = int, dest = 'crop', default = 0)
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parser.add_option('--center', '-e', help = 'Mark what will be the center of the image, two percentage values comma separated',\
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metavar = '<center>', type = str, dest = 'center', default = None)
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parser.add_option('--autocrop', '-a', help = 'Calculates the center and crop vales automatically to show all the tiles in the minimun image size.Unless you want a very specific image this options is very recommendedable.',\
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action = 'store_true', dest = 'autocrop', default = False)
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parser.add_option('--output', '-o', help = 'Path for the resulting PNG. It will save it as PNG, no matter what extension do you use.',\
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metavar = '<output>', type = str, dest = 'output', default = "output.png")
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parser.add_option('--memory-limit', '-m', help="Limit the amount of ram to use in MB. "
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"If it's expected to exceed the limit it won't do anything.",
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metavar='<memory>', type=int, dest='memory_limit', default=None)
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parser.add_option('--zoom-level', '-z', help="Which zoom level to use from the overviewer "
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"map. NOTE: the RAM usage will increase exponentially with the zoom level.",
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metavar='<zoom-level>', type=int, dest='zoom_level', default=None)
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parser.add_option('--crop', '-c', help="Crop a frame around the image, as a percentage of the "
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"original. For example in a image of 1000x2000 pixels, a 10% crop will crop "
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"100 pixels in the left and right sides and 200 pixels in the bottom and "
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"top sides. NOTE: this is no exact, it will be rounded to the nearest "
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"Overviewer map tile.", metavar='<crop>', type=int, dest='crop', default=0)
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parser.add_option('--center', '-e', help="Mark what will be the center of the image, two "
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"comma separated percentage values.", metavar='<center>', type=str,
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dest='center', default=None)
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parser.add_option('--autocrop', '-a', help="Calculate the center and crop vales automatically "
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"to show all the tiles in the smallest possible image size. Unless you want "
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"a very specific image this option is recommended.", action='store_true',
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dest='autocrop', default=False)
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parser.add_option('--output', '-o', help="Path for the resulting PNG. The image will be saved "
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"as a PNG file, no matter what extension you use.", metavar='<output>',
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type=str, dest='output', default="output.png")
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(options, args) = parser.parse_args()
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# arg is overviewer tile set folder
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if len(args) > 1:
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parser.error("Error! Only one overviewer tile set accepted as input. Use --help for a complete list of options.")
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parser.error("Error! Only one Overviewer tile set accepted as input. Use --help for a "
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"complete list of options.")
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if not args:
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parser.error("Error! Need an overviewer tile set folder. Use --help for a complete list of options.")
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tileset = args[0] #set the tileset dir after ensuring it's been provided, not before.
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parser.error("Error! Need an overviewer tile set folder. Use --help for a complete list "
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"of options.")
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# set the tileset dir after ensuring it's been provided, not before.
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tileset = args[0]
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if not options.zoom_level:
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parser.error("Error! The option zoom-level is mandatory.")
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@@ -58,8 +63,8 @@ def main():
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# calculate stuff
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n = options.zoom_level
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length_in_tiles = 2**n
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tile_size = (384,384)
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px_size = 4 # bytes
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tile_size = (384, 384)
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px_size = 4 # bytes
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# create a list with all the images in the zoom level
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path = tileset
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@@ -69,7 +74,8 @@ def main():
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all_images = glob(path)
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if not all_images:
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print "Error! No images found in this zoom level. Is this really an overviewer tile set directory?"
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print("Error! No images found in this zoom level. Is this really an Overviewer tile set "
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"directory?")
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sys.exit(1)
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# autocrop will calculate the center and crop values automagically
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@@ -78,8 +84,8 @@ def main():
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max_x = max_y = 0
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counter = 0
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total = len(all_images)
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print "Checking tiles for autocrop calculations:"
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# get the maximun and minimun tiles coordinates of the map
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print("Checking tiles for autocrop calculations:")
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# get the maximum and minimum tiles coordinates of the map
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for path in all_images:
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t = get_tuple_coords(options, path)
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c = get_tile_coords_from_tuple(options, t)
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@@ -88,12 +94,14 @@ def main():
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max_x = max(max_x, c[0])
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max_y = max(max_y, c[1])
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counter += 1
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if (counter % 100 == 0 or counter == total or counter == 1): print "Checked {0} of {1}".format(counter, total)
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if (counter % 100 == 0 or counter == total or counter == 1):
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print("Checked {0} of {1}.".format(counter, total))
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# the center of the map will be in the middle of the occupied zone
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center = (int((min_x + max_x)/2.), int((min_y + max_y)/2.))
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# see the next next comment to know what's center_vector
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center_vector = (int(center[0] - (length_in_tiles/2. - 1)), int(center[1] - (length_in_tiles/2. - 1)))
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center = (int((min_x + max_x) / 2.0), int((min_y + max_y) / 2.0))
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# see the next next comment to know what center_vector is
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center_vector = (int(center[0] - (length_in_tiles / 2.0 - 1)),
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int(center[1] - (length_in_tiles / 2.0 - 1)))
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# I'm not completely sure why, but the - 1 factor in ^ makes everything nicer.
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# min_x - center_vector[0] will be the unused amount of tiles in
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@@ -104,30 +112,33 @@ def main():
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else:
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# center_vector is the vector that joins the center tile with
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# the new center tile in tile coords
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#(tile coords are how many tile are on the left, x, and
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# tile coords are how many tile are on the left, x, and
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# how many above, y. The top-left tile has coords (0,0)
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if options.center:
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center_x, center_y = options.center.split(",")
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center_x = int(center_x)
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center_y = int(center_y)
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center_tile_x = int(2**n*(center_x/100.))
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center_tile_y = int(2**n*(center_y/100.))
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center_vector = (int(center_tile_x - length_in_tiles/2.), int(center_tile_y - length_in_tiles/2.))
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center_tile_x = int(2**n * (center_x / 100.0))
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center_tile_y = int(2**n * (center_y / 100.0))
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center_vector = (int(center_tile_x - length_in_tiles / 2.0),
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int(center_tile_y - length_in_tiles / 2.0))
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else:
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center_vector = (0,0)
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center_vector = (0, 0)
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# crop if needed
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tiles_to_crop = int(2**n*(options.crop/100.))
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tiles_to_crop = int(2**n * (options.crop / 100.0))
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crop = (tiles_to_crop, tiles_to_crop)
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final_img_size = (tile_size[0]*length_in_tiles,tile_size[1]*length_in_tiles)
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final_cropped_img_size = (final_img_size[0] - 2*crop[0]*tile_size[0],final_img_size[1] - 2*crop[1]*tile_size[1])
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final_img_size = (tile_size[0] * length_in_tiles, tile_size[1] * length_in_tiles)
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final_cropped_img_size = (final_img_size[0] - 2 * crop[0] * tile_size[0],
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final_img_size[1] - 2 * crop[1] * tile_size[1])
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mem = final_cropped_img_size[0]*final_cropped_img_size[1]*px_size # bytes!
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print "The image size will be {0}x{1}".format(final_cropped_img_size[0],final_cropped_img_size[1])
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print "A total of {0} MB of memory will be used.".format(mem/1024**2)
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if mem/1024.**2. > options.memory_limit:
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print "Warning! The expected RAM usage exceeds the specified limit. Exiting."
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mem = final_cropped_img_size[0] * final_cropped_img_size[1] * px_size # bytes!
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print("The image size will be {0}x{1}"
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.format(final_cropped_img_size[0], final_cropped_img_size[1]))
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print("A total of {0} MB of memory will be used.".format(mem / 1024**2))
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if mem / 1024.0**2.0 > options.memory_limit:
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print("Warning! The expected RAM usage exceeds the specified limit. Exiting.")
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sys.exit(1)
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# Create a new huge image
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@@ -136,17 +147,17 @@ def main():
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# Paste ALL the images
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total = len(all_images)
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counter = 0
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print "Pasting images:"
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print("Pasting images:")
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for path in all_images:
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img = Image.open(path)
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t = get_tuple_coords(options, path)
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x, y = get_cropped_centered_img_coords(options, tile_size, center_vector, crop, t)
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final_img.paste(img, (x, y))
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counter += 1
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if (counter % 100 == 0 or counter == total or counter == 1): print "Pasted {0} of {1}".format(counter, total)
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print "Done!"
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print "Saving image... (this can take a while)"
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if (counter % 100 == 0 or counter == total or counter == 1):
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print("Pasted {0} of {1}.".format(counter, total))
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print("Done!")
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print("Saving image... (this may take a while)")
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final_img.save(options.output, "PNG")
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@@ -158,11 +169,12 @@ def get_cropped_centered_img_coords(options, tile_size, center_vector, crop, t):
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new_tile_x = x - crop[0] - center_vector[0]
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new_tile_y = y - crop[1] - center_vector[1]
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new_img_x = new_tile_x*tile_size[0]
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new_img_y = new_tile_y*tile_size[1]
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new_img_x = new_tile_x * tile_size[0]
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new_img_y = new_tile_y * tile_size[1]
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return new_img_x, new_img_y
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def get_tile_coords_from_tuple(options, t):
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""" Gets a tuple of coords from get_tuple_coords and returns
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the number of tiles from the top left corner to this tile.
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@@ -174,14 +186,15 @@ def get_tile_coords_from_tuple(options, t):
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for i in t:
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if i == 1:
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x += 2**(z-n)
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x += 2**(z - n)
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elif i == 2:
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y += 2**(z-n)
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y += 2**(z - n)
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elif i == 3:
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x += 2**(z-n)
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y += 2**(z-n)
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x += 2**(z - n)
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y += 2**(z - n)
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n += 1
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return (x,y)
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return (x, y)
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def get_tuple_coords(options, path):
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""" Extracts the "quadtree coordinates" (the numbers in the folder
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@@ -189,7 +202,7 @@ def get_tuple_coords(options, path):
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The upper most folder is in the left of the tuple."""
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l = []
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path, head = split(path)
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head = head.split(".")[0] # remove the .png
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head = head.split(".")[0] # remove the .png
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l.append(int(head))
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for i in range(options.zoom_level - 1):
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path, head = split(path)
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@@ -198,6 +211,7 @@ def get_tuple_coords(options, path):
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l.reverse()
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return tuple(l)
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def get_image(tileset, t):
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""" Returns the path of an image, takes a tuple with the
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"quadtree coordinates", these are the numbers in the folders of the
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@@ -208,5 +222,6 @@ def get_image(tileset, t):
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path += ".png"
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return path
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if __name__ == '__main__':
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main()
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