193 lines
8.2 KiB
Python
193 lines
8.2 KiB
Python
import math
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import os
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from pathlib import Path
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from typing import List, Optional, Tuple
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from PIL import Image, ImageDraw, ImageCms
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from base_proxy import BASE_DIR, LEAVE_BLEED_INCHES
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from card_images import InputCardImage
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import util
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CUT_GUIDE_WIDTH_INCHES = 0.006
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LENGTH_CUT_GUIDE_INCHES = 0.06
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def gather_images(directory: Path) -> List[Path]:
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files_to_crop = []
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for f in os.listdir(directory):
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possible_image_path = directory / f
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if not possible_image_path.is_file():
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# Skip directory
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continue
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# TODO: Check if is image
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files_to_crop.append(possible_image_path)
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return files_to_crop
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def gather_input_cards() -> List[Path]:
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return gather_images(directory=BASE_DIR / 'input_cards')
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CARD_W_INCHES = 2.48031 # 63mm
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CARD_H_INCHES = 3.46457 # 88mm
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class SheetLayout:
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def __init__(self, dpi: int, w_inches: float, h_inches: float):
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self.dpi = dpi
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self.card_w_inches = CARD_W_INCHES
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self.card_h_inches = CARD_H_INCHES
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self.card_w = self.in_to_px(self.card_w_inches)
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self.card_h = self.in_to_px(self.card_h_inches)
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self.w_inches = w_inches
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self.h_inches = h_inches
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self.w = self.in_to_px(self.w_inches)
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self.h = self.in_to_px(self.h_inches)
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self.leave_bleed = self.in_to_px(LEAVE_BLEED_INCHES)
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self.cropped_image_dest_w = self.card_w + self.leave_bleed * 2
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self.cropped_image_dest_h = self.card_h + self.leave_bleed * 2
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self.spacing_inches = 0.05
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self.spacing = self.in_to_px(self.spacing_inches)
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self.min_padding_inches = 0.12
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self.min_padding = self.in_to_px(self.min_padding_inches)
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self.cards_per_row = ((self.w - self.min_padding * 2 + self.spacing)
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// (self.cropped_image_dest_w + self.spacing))
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self.cards_per_column = ((self.h - self.min_padding * 2 + self.spacing)
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// (self.cropped_image_dest_h + self.spacing))
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self.cards_per_sheet = self.cards_per_row * self.cards_per_column
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self.total_w_content = self.cropped_image_dest_w * self.cards_per_row + self.spacing * (self.cards_per_row - 1)
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self.total_h_content = self.cropped_image_dest_h * self.cards_per_column + self.spacing * (self.cards_per_column - 1)
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self.blank_space_w = (self.w - self.total_w_content) // 2
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self.blank_space_h = (self.h - self.total_h_content) // 2
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print(self.__dict__)
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def in_to_px(self, inches: float) -> float:
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return round(inches * self.dpi)
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def top_of_row(self, y_index: int, with_bleed: bool) -> int:
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assert 0 <= y_index < self.cards_per_column
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top = self.blank_space_h + (self.cropped_image_dest_h + self.spacing) * y_index
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if not with_bleed:
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top += self.leave_bleed
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return top
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def bottom_of_row(self, y_index: int, with_bleed: bool) -> int:
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if with_bleed:
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return self.top_of_row(y_index, True) + self.cropped_image_dest_h
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else:
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return self.top_of_row(y_index, False) + self.card_h
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def left_of_column(self, x_index: int, with_bleed: bool) -> int:
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assert 0 <= x_index < self.cards_per_row
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left = self.blank_space_w + (self.cropped_image_dest_w + self.spacing) * x_index
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if not with_bleed:
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left += self.leave_bleed
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return left
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def right_of_column(self, x_index: int, with_bleed: bool) -> int:
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if with_bleed:
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return self.left_of_column(x_index, True) + self.cropped_image_dest_w
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else:
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return self.left_of_column(x_index, False) + self.card_w
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def topleft_of_card_with_bleed(self, y_index: int, x_index: int) -> Tuple[int, int]:
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x = self.left_of_column(x_index, with_bleed=True)
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y = self.top_of_row(y_index, with_bleed=True)
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return (x, y)
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def create_sheet(input_cards: List[InputCardImage], sheet_filepath: Path, sheet_layout: SheetLayout):
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sheet = Image.new('RGB', (sheet_layout.w, sheet_layout.h), 'white')
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# icc_profile = ImageCms.getOpenProfile(str(BASE_DIR / 'icc' / 'AdobeRGB1998.icc'))
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# Draw external guidelines
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draw = ImageDraw.Draw(sheet)
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color = 'black'
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guide_thickness = sheet_layout.in_to_px(CUT_GUIDE_WIDTH_INCHES)
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for x_index in range(sheet_layout.cards_per_column):
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left_x = sheet_layout.left_of_column(x_index, with_bleed=False)
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right_x = sheet_layout.right_of_column(x_index, with_bleed=False)
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draw.line([(left_x, 0), (left_x, sheet_layout.h)], fill=color, width=guide_thickness)
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draw.line([(right_x, 0), (right_x, sheet_layout.h)], fill=color, width=guide_thickness)
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for y_index in range(sheet_layout.cards_per_row):
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top_y = sheet_layout.top_of_row(y_index, with_bleed=False)
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bottom_y = sheet_layout.bottom_of_row(y_index, with_bleed=False)
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draw.line([(0, top_y), (sheet_layout.w, top_y)], fill=color, width=guide_thickness)
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draw.line([(0, bottom_y), (sheet_layout.w, bottom_y)], fill=color, width=guide_thickness)
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# Draw cards
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input_cards_iter = input_cards.__iter__()
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for y_index in range(sheet_layout.cards_per_column):
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for x_index in range(sheet_layout.cards_per_row):
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try:
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input_card: InputCardImage = input_cards_iter.__next__()
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except StopIteration:
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break
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card_im = input_card.crop()
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card_im = card_im.resize((sheet_layout.cropped_image_dest_w, sheet_layout.cropped_image_dest_h),
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resample = Image.Resampling.LANCZOS)
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sheet.paste(card_im, sheet_layout.topleft_of_card_with_bleed(y_index, x_index))
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# Draw internal guidelines
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color = 'magenta'
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guide_len = sheet_layout.in_to_px(LENGTH_CUT_GUIDE_INCHES)
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# -1 because the pixels are in [0, W - 1] and [0, H - 1]
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left_x = sheet_layout.left_of_column(x_index, with_bleed=False)
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right_x = sheet_layout.right_of_column(x_index, with_bleed=False) - 1
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top_y = sheet_layout.top_of_row(y_index, with_bleed=False)
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bottom_y = sheet_layout.bottom_of_row(y_index, with_bleed=False) - 1
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# Top left
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draw.line([(left_x, top_y), (left_x, top_y + guide_len)], fill = color, width = guide_thickness)
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draw.line([(left_x, top_y), (left_x + guide_len, top_y)], fill = color, width = guide_thickness)
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# Bottom left
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draw.line([(left_x, bottom_y), (left_x, bottom_y - guide_len)], fill = color, width = guide_thickness)
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draw.line([(left_x, bottom_y), (left_x + guide_len, bottom_y)], fill = color, width = guide_thickness)
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# Top right
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draw.line([(right_x, top_y), (right_x, top_y + guide_len)], fill = color, width = guide_thickness)
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draw.line([(right_x, top_y), (right_x - guide_len, top_y)], fill = color, width = guide_thickness)
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# Bottom right
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draw.line([(right_x, bottom_y), (right_x, bottom_y - guide_len)], fill = color, width = guide_thickness)
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draw.line([(right_x, bottom_y), (right_x - guide_len, bottom_y)], fill = color, width = guide_thickness)
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# Save sheet
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# sheet.save(sheet_filepath, 'JPEG', dpi=(sheet_layout.dpi, sheet_layout.dpi), quality=100, subsampling=0, icc_profile=icc_profile.tobytes())
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sheet.save(sheet_filepath, 'JPEG', dpi=(sheet_layout.dpi, sheet_layout.dpi), quality=100, subsampling=0)
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def main():
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all_input_cards_paths = gather_input_cards()
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print(f'Found {len(all_input_cards_paths)} input cards:')
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print(all_input_cards_paths)
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all_input_cards = [InputCardImage(p) for p in all_input_cards_paths]
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#sheet_layout = SheetLayout(1200, 11, 8.5)
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sheet_layout = SheetLayout(1200, 8.5, 11)
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sheets_dir = BASE_DIR / 'sheets'
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sheets_dir.mkdir(parents=True, exist_ok=True)
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total_sheet_number = math.ceil(len(all_input_cards) / sheet_layout.cards_per_sheet)
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for i, cards_in_sheet in enumerate(util.batched(all_input_cards, sheet_layout.cards_per_sheet), 1):
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print(f'Will create sheet {i}/{total_sheet_number}')
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sheet_filepath = sheets_dir / f'sheet{i:03d}.jpg'
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create_sheet(cards_in_sheet, sheet_filepath, sheet_layout)
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print(f'Output {sheet_filepath}')
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if __name__ == '__main__':
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main()
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