226 lines
8.2 KiB
Python
226 lines
8.2 KiB
Python
import base64,hashlib,os,shutil
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import math,time,json,datetime,logging
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from PIL import Image
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from tinydb import TinyDB, Query
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from Comics.spiders.utils.Constant import ComicPath
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class CommonUtils:
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@classmethod
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def parseExec(cls,data,exec):
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if data !=None and exec != None:
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dots = str(exec).split(".")
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if not isinstance(data,dict): data = json.loads(data)
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for dot in dots:
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data = data.get(dot)
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return data
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class imageUtils:
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@classmethod
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def deScrambleImagesByDir(cls,chapter_dir):
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scramble_count = 0
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if os.path.exists(chapter_dir): #获取章节图片路径
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dirs = os.listdir(chapter_dir)
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for img in dirs:
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if img.startswith("scramble="):
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imageUtils.encode_scramble_image(os.path.join(chapter_dir,img))
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scramble_count += 1
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logging.debug(f"scramble= {scramble_count}")
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return scramble_count
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@classmethod
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def deScrambleImagesByPath(cls,img_path,img_save=None):
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if os.path.basename(img_path).startswith("scramble="):
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imageUtils.encode_scramble_image(img_path,img_save)
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return True
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else:
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return False
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@classmethod
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def encodeImage(cls,str_en):
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#print("en",str_en)
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enc = base64.b64decode(str_en)
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#print("解密:",enc)
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m = hashlib.md5()
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m.update(enc)
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md5 = m.digest()
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d = md5[-1]
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#print(md5)
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try:
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blocks = d % 10 + 5
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except:
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blocks = 0 %10 + 5
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#print("blocks=",blocks)
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return blocks
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@classmethod
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def scrambleImage(cls,file_path):
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#检测到未下载完的图像 直接返回None
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if str(file_path).endswith(".downloads"):
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os.remove(file_path)
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return None
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file_str = str(file_path).split("=")
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#10_29.jpg
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base_dir = file_str[0].replace("scramble","")
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base_name = file_str[-1]
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base_fn = base_name.split("_")
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save_name = base_fn[1]
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save_name_delesu = save_name.split(".")[0]
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blocks = int(base_fn[0])
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save_file_path = os.path.join(base_dir,save_name)
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print("sva",save_file_path)
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if os.path.exists(save_file_path):
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print("图片已解密,已跳过:", save_file_path)
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return None
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image_su = str(file_path).split(".")[-1]
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try:
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img = Image.open(file_path)
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except:
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print(f"error Image: {file_path}")
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width = img.width
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height = img.height
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#blocks = cls.encodeImage(enStr)
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print("blocks=",blocks)
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block_height = int(height / blocks)
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block_width = int(width / blocks)
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print("blockHeight=",block_height)
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suffix = str(file_path).split(".")[-1]
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split_path = os.path.join(base_dir,save_name_delesu+"split")
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if image_su == "downloads":
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return None
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is_split = cls.splitimage(file_path,blocks,1,split_path)
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if is_split != None:
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cls.image_compose(split_path,blocks,1,save_file_path,block_height,width)
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else:
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if os.path.exists(split_path):
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shutil.rmtree(split_path)
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if os.path.exists(file_path):
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shutil.move(file_path, save_file_path)
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#完成后清空
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return file_path
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@classmethod
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def splitimage(cls,src,rownum,colnum,dstpath):
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img=Image.open(src)
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w,h=img.size
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if rownum<= h and colnum<=w:
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s=os.path.split(src)
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if dstpath=='':
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dstpath = s[0]
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if not os.path.exists(dstpath):
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os.makedirs(dstpath)
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fn=s[1].split('.')
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basename=fn[0]
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ext=fn[-1]
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num=0
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rowheight=h//rownum
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colwidth=w//colnum
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for r in range(rownum):
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for c in range(colnum):
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box=(c*colwidth,r*rowheight,(c+1)*colwidth,(r+1)*rowheight)
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count_image = "{:0>3d}".format(num)
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file_path = os.path.join(dstpath,str(count_image)+'.'+ext)
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print("file_path=",file_path)
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img.crop(box).save(file_path)
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num=num+1
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return "成功"
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else:
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print('不数!')
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return None
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@classmethod
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def image_compose(cls,src,row,column,save_path,image_height,image_width):
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image_size = image_height
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#image_height = 376
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#image_width = 720
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images_format = ['.png','.jpg']
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#image_names = [name for name in os.listdir(src) for item in images_format if
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# os.path.splitext(name)[1] == item][::-1]
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img_list=os.listdir(src)
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img_list.sort()
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img_list.sort(key=lambda x: int(x[:-4]))
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##文件名按数字排序
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img_nums=len(img_list)
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image_names = []
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for i in range(img_nums):
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img_name=os.path.join(src,img_list[i])
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image_names.append(img_name)
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#使用倒序
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image_names = image_names[::-1]
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# 简单的对于参数的设定和实际图片集的大小进行数量判断
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if len(image_names) < row * column:
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raise ValueError("合成图片的参数和要求的数量不能匹配!")
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to_image = Image.new('RGB', (column * image_width, row * image_height)) #创建一个新图
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# 循环遍历,把每张图片按顺序粘贴到对应位置上
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for y in range(1, row + 1):
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for x in range(1, column + 1):
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#1 * (row=1 -1) col=1 -1
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image_path = image_names[column * (y - 1) + x - 1]
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print("split_image=",image_path)
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from_image = Image.open(image_path)
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#保持原图片大小
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#.resize(
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# (image_size, image_size),Image.ANTIALIAS)
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to_image.paste(from_image, ((x - 1) * image_size, (y - 1) * image_size))
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from_image.close()
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to_image.save(save_path)
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print("图片合并完成:", save_path)
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shutil.rmtree(src)
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# 保存新图
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@classmethod
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def getScrambleImage(cls,path):
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scramble_file_cache = cls.scrambleImage(path)
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if scramble_file_cache != None and os.path.exists(scramble_file_cache): os.remove(scramble_file_cache)
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@classmethod
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def encode_scramble_image(cls,imgpath,img_save=None):
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image = Image.open(imgpath)
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w, h = image.size
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#image.show()
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file_str = str(imgpath).split("=")
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#10_29.jpg
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base_fn = file_str[-1].split("_")
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blocks = int(base_fn[0])
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if img_save == None:
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save_path = os.path.join(os.path.dirname(imgpath),ComicPath.getFileScrambleImageSave(imgpath))
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else: save_path = img_save
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# print(type(aid),type(img_name))
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if blocks:
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s = blocks # 随机值
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# print(s)
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l = h % s # 切割最后多余的值
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box_list = []
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hz = 0
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for i in range(s):
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c = math.floor(h / s)
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g = i * c
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hz += c
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h2 = h - c * (i + 1) - l
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if i == 0:
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c += l;hz += l
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else:
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g += l
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box_list.append((0, h2, w, h - g))
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# print(box_list,len(box_list))
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item_width = w
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# box_list.reverse() #还原切图可以倒序列表
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# print(box_list, len(box_list))
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newh = 0
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image_list = [image.crop(box) for box in box_list]
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# print(box_list)
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newimage = Image.new("RGB", (w, h))
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for image in image_list:
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# image.show()
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b_w, b_h = image.size
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newimage.paste(image, (0, newh))
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newh += b_h
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newimage.save(save_path)
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print("解密成功=",save_path)
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if os.path.exists(imgpath):
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os.remove(imgpath)
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print("remove=",imgpath) |