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@ -1,4 +1,5 @@
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import os |
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import tempfile |
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import FreeCADGui as Gui |
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import FreeCAD as App |
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@ -52,57 +53,41 @@ class AHB_Render:
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b = step |
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def Activated(self): |
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resolution = (1024, 1024) |
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resolution = (2048, 2048) |
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filename = "/home/youen/dev_linux/vhelio-render/vhelio.png" |
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temp_lines_file_name = tempfile.gettempdir() + "/ahb_temp_lines.png" |
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temp_shapes_file_name = tempfile.gettempdir() + "/ahb_temp_shapes.png" |
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self.set_render_lines() |
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Gui.ActiveDocument.ActiveView.saveImage("/home/youen/dev_linux/vhelio-render/vhelio.png", resolution[0], resolution[1], "#ffffff") |
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Gui.ActiveDocument.ActiveView.saveImage(temp_lines_file_name, resolution[0], resolution[1], "#ffffff") |
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self.set_render_outlines() |
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Gui.ActiveDocument.ActiveView.saveImage("/home/youen/dev_linux/vhelio-render/vhelio-shapes.png", resolution[0]*2, resolution[1]*2, "#ffffff") |
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Gui.ActiveDocument.ActiveView.saveImage(temp_shapes_file_name, resolution[0]*2, resolution[1]*2, "#ffffff") |
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from PIL import Image |
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import time |
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lines = Image.open("/home/youen/dev_linux/vhelio-render/vhelio.png") |
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from PIL import Image, ImageFilter |
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#import time |
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lines = Image.open(temp_lines_file_name) |
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lines = lines.convert("L") |
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shapes = Image.open("/home/youen/dev_linux/vhelio-render/vhelio-shapes.png") |
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shapes = Image.open(temp_shapes_file_name) |
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cacheWidth = 8 |
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cacheHalfWidth = int(cacheWidth/2) |
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cache = [] |
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for y in range(0, 4): |
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cacheLine = [] |
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for x in range(0, cacheWidth + 2): |
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cacheLine.append((0.0,0.0,0.0)) |
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cache.append(cacheLine) |
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#startTime = time.perf_counter() |
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startTime = time.perf_counter() |
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for xb in range(1, lines.size[0]-cacheHalfWidth, cacheHalfWidth): |
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for yb in range(1, lines.size[1]-1): |
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for y in range(0, 4): |
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cacheLine = cache[y] |
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for x in range(0, cacheWidth + 2): |
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cacheLine[x] = shapes.getpixel((xb*2+x-1, yb*2+y-1)) |
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outlines = shapes.filter(ImageFilter.Kernel((3, 3), (-1, -1, -1, -1, 8, -1, -1, -1, -1), 1, 0)) |
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outlines2 = shapes.filter(ImageFilter.Kernel((3, 3), (1, 1, 1, 1, -8, 1, 1, 1, 1), 1, 0)) |
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outlines = outlines.convert("L") |
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outlines2 = outlines2.convert("L") |
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outlines = outlines.point(lambda p: 0 if p > 0 else 255) |
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outlines2 = outlines2.point(lambda p: 0 if p > 0 else 255) |
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outlines.paste(outlines2, None, outlines2.point(lambda p: 255 - p)) |
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#outlines.save("/home/youen/dev_linux/vhelio-render/vhelio-outlines.png") |
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lines = lines.resize(outlines.size, Image.NEAREST) |
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lines.paste(outlines, None, outlines.point(lambda p: 255 - p)) |
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lines = lines.resize(lines.size, Image.BILINEAR) |
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for xa in range(0, cacheHalfWidth): |
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outline_color = 1.0 |
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for xaa in range(0, 2): |
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x = xa*2 + xaa |
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for y in range(0, 2): |
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c = cache[y+1][x+1] |
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border = False |
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if c != cache[y][x]: border = True |
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if c != cache[y][x+1]: border = True |
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if c != cache[y][x+2]: border = True |
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if c != cache[y+1][x]: border = True |
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if c != cache[y+1][x+2]: border = True |
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if c != cache[y+2][x]: border = True |
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if c != cache[y+2][x+1]: border = True |
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if c != cache[y+2][x+2]: border = True |
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if border: outline_color = outline_color - 0.25 |
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lines.putpixel((xb+xa, yb), min(lines.getpixel((xb+xa, yb)), int(outline_color * 255.0))) |
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endTime = time.perf_counter() |
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print("Outline detection: " + str(round((endTime - startTime)*1000)/1000) + "s") |
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lines.save("/home/youen/dev_linux/vhelio-render/vhelio-final.png") |
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#endTime = time.perf_counter() |
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#print("Outline detection: " + str(round((endTime - startTime)*1000)/1000) + "s") |
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lines.save(filename) |
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from ahb_command import AHB_CommandWrapper |
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AHB_CommandWrapper.addGuiCommand('AHB_render', AHB_Render()) |
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