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Use a rendered terrain image instead of the scanned map
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18e7126dd9
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@ -187,14 +187,14 @@ def get_img_name(maparea):
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maps = {
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# id left top right bottom zoom description
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# G&K G&K G&K G&K factor
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# DO NOT just change the coordinates of "all" - they MUST match the borders of the scanned map.
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"all": [ 409276.28, 5283481.05, 412201.56, 5279805.56, 1.0, "All"],
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"40": [ 411110.51, 5281325.74, 411602.22, 5280722.74, 3.0, "Eishöhle"],
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"76": [ 410293.14, 5282170.72, 410930.97, 5281607.07, 3.0, "Eislufthöhle"],
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"204": [ 411226.79, 5283085.08, 411903.50, 5282315.82, 3.0, "Steinbrückenhöhle"],
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"tc": [ 410071.88, 5281645.52, 410938.73, 5281036.96, 3.0, "Near Top Camp"],
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"gk": [ 410918.96, 5285236.99, 413196.87, 5283288.24, 4.0, "Grießkogel Area"],
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# UTM33 UTM33 UTM33 UTM33 factor
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# DO NOT just change the coordinates of "all" - they MUST match the borders of the background image.
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"all": [ 409276., 5285237., 413197., 5279805., 1.0, "All"],
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"40": [ 411110., 5281326., 411603., 5280722., 3.0, "Eishöhle"],
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"76": [ 410293., 5282171., 410931., 5281607., 3.0, "Eislufthöhle"],
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"204": [ 411226., 5283086., 411904., 5282315., 3.0, "Steinbrückenhöhle"],
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"tc": [ 410071., 5281646., 410939., 5281036., 3.0, "Near Top Camp"],
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"gk": [ 410918., 5285237., 413197., 5283288., 4.0, "Grießkogel Area"],
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}
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# Keys in the order in which we want the maps output
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mapcodes = ["all", "gk", "40", "76", "204", "tc"]
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@ -217,7 +217,7 @@ SIZE = 8
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myFont = ImageFont.truetype(FONT, SIZE)
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showbg = not(len(sys.argv) > 1 and sys.argv[1] == '--white')
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mainImage = Image.open("pguidemap.jpg")
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mainImage = Image.open("pguidemap.png")
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if not showbg:
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mainImage = Image.new("RGB", mainImage.size, '#ffffff')
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@ -232,13 +232,13 @@ for maparea in maps.keys():
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else:
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M = maps['all']
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W, H = mainImage.size
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l = int((m[L] - M[L]) / (M[R] - M[L]) * W)
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t = int((m[T] - M[T]) / (M[B] - M[T]) * H)
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r = int((m[R] - M[L]) / (M[R] - M[L]) * W)
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b = int((m[B] - M[T]) / (M[B] - M[T]) * H)
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l = int(float(m[L] - M[L]) / (M[R] - M[L]) * W)
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t = int(float(m[T] - M[T]) / (M[B] - M[T]) * H)
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r = int(float(m[R] - M[L]) / (M[R] - M[L]) * W)
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b = int(float(m[B] - M[T]) / (M[B] - M[T]) * H)
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img = mainImage.crop((l, t, r, b))
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w = int(round(m[ZOOM] * (m[R] - m[L]) / (M[R] - M[L]) * W))
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h = int(round(m[ZOOM] * (m[B] - m[T]) / (M[B] - M[T]) * H))
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w = int(round(m[ZOOM] * float(m[R] - m[L]) / (M[R] - M[L]) * W))
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h = int(round(m[ZOOM] * float(m[B] - m[T]) / (M[B] - M[T]) * H))
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print "%s: H %d W %d" % (maparea, h, w)
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img = img.resize((w, h), Image.BICUBIC)
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imgs[maparea] = img
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@ -247,7 +247,7 @@ for maparea in maps.keys():
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draws[maparea] = draw
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imgmaps[maparea] = []
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# Draw scale bar
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m100 = int(100 / (m[R] - m[L]) * img.size[0])
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m100 = int(100.0 / (m[R] - m[L]) * img.size[0])
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draw.line([10, SIZE*3, 10, SIZE*2], fill='#000000')
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draw.line([10, SIZE*2, 10+m100, SIZE*2], fill='#000000')
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draw.line([10+m100, SIZE * 3, 10+m100, SIZE*2], fill='#000000')
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BIN
noinfo/prospecting_guide_scripts/pguidemap.png
Normal file
BIN
noinfo/prospecting_guide_scripts/pguidemap.png
Normal file
Binary file not shown.
After Width: | Height: | Size: 701 KiB |
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