在实际生活中,经常会有文件重复的困扰,即同一个文件可能既在A目录中,又在B目录中,更可恶的是,即便是同一个文件,文件名可能还不一样。在文件较少的情况下,该类情况还比较容易处理,最不济就是one by one的人工比较——即便如此,也很难保证你的眼神足够犀利。倘若文件很多,这岂不是个impossible mission?最近在看《Python UNIX和Linux系统管理指南》,里面就有有关“数据比较”的内容,在其基础上,结合实际整理如下。
该脚本主要包括以下模块:diskwalk,chechsum,find_dupes,delete。其中diskwalk模块是遍历文件的,给定路径,遍历输出该路径下的所有文件。chechsum模块是求文件的md5值。find_dupes导入了diskwalk和chechsum模块,根据md5的值来判断文件是否相同。delete是删除模块。具体如下:
1. diskwalk.py
import os,sys
class diskwalk(object):
def __init__(self,path):
self.path = path
def paths(self):
path=self.path
path_collection=[]
for dirpath,dirnames,filenames in os.walk(path):
for file in filenames:
fullpath=os.path.join(dirpath,file)
path_collection.append(fullpath)
return path_collection
if __name__ == '__main__':
for file in diskwalk(sys.argv[1]).paths():
print file
2.chechsum.py
import hashlib,sys
def create_checksum(path):
fp = open(path)
checksum = hashlib.md5()
while True:
buffer = fp.read(8192)
if not buffer:break
checksum.update(buffer)
fp.close()
checksum = checksum.digest()
return checksum
if __name__ == '__main__':
create_checksum(sys.argv[1])
3. find_dupes.py
from checksum import create_checksum
from diskwalk import diskwalk
from os.path import getsize
import sys
def findDupes(path):
record = {}
dup = {}
d = diskwalk(path)
files = d.paths()
for file in files:
compound_key = (getsize(file),create_checksum(file))
if compound_key in record:
dup[file] = record[compound_key]
else:
record[compound_key]=file
return dup
if __name__ == '__main__':
for file in findDupes(sys.argv[1]).items():
print "The duplicate file is %s" % file[0]
print "The original file is %s\n" % file[1]
findDupes函数返回了字典dup,该字典的键是重复的文件,值是原文件。这样就解答了很多人的疑惑,毕竟,你怎么确保你输出的是重复的文件呢?
4. delete.py
import os,sys
class deletefile(object):
def __init__(self,file):
self.file=file
def delete(self):
print "Deleting %s" % self.file
os.remove(self.file)
def dryrun(self):
print "Dry Run: %s [NOT DELETED]" % self.file
def interactive(self):
answer=raw_input("Do you really want to delete: %s [Y/N]" % self.file)
if answer.upper() == 'Y':
os.remove(self.file)
else:
print "Skiping: %s" % self.file
return
if __name__ == '__main__':
from find_dupes import findDupes
dup=findDupes(sys.argv[1])
for file in dup.iterkeys():
delete=deletefile(file)
#delete.dryrun()
delete.interactive()
#delete.delete()
deletefile类构造了3个函数,实现的都是文件删除功能、其中delete函数是直接删除文件,dryrun函数是试运行,文件并没有删除,interactive函数是交互模式,让用户来确定是否删除。这充分了考虑了客户的需求。
总结:这四个模块已封装好,均可单独使用实现各自的功能。组合起来就可批量删除重复文件,只需输入一个路径。
最后,贴个完整版本的,兼容Python 2.0, 3.0。
#!/usr/bin/python
# -*- coding: UTF-8 -*-
from __future__ import print_function
import os, sys, hashlib
class diskwalk(object):
def __init__(self, path):
self.path = path
def paths(self):
path = self.path
files_in_path = []
for dirpath, dirnames, filenames in os.walk(path):
for each_file in filenames:
fullpath = os.path.join(dirpath, each_file)
files_in_path.append(fullpath)
return files_in_path
def create_checksum(path):
fp = open(path,'rb')
checksum = hashlib.md5()
while True:
buffer = fp.read(8192)
if not buffer: break
checksum.update(buffer)
fp.close()
checksum = checksum.digest()
return checksum
def findDupes(path):
record = {}
dup = {}
d = diskwalk(path)
files = d.paths()
for each_file in files:
compound_key = (os.path.getsize(each_file), create_checksum(each_file))
if compound_key in record:
dup[each_file] = record[compound_key]
else:
record[compound_key] = each_file
return dup
class deletefile(object):
def __init__(self, file_name):
self.file_name = file_name
def delete(self):
print("Deleting %s" % self.file_name)
os.remove(self.file_name)
def dryrun(self):
print("Dry Run: %s [NOT DELETED]" % self.file_name)
def interactive(self):
try:
answer = raw_input("Do you really want to delete: %s [Y/N]" % self.file_name)
except NameError:
answer = input("Do you really want to delete: %s [Y/N]" % self.file_name)
if answer.upper() == 'Y':
os.remove(self.file_name)
else:
print("Skiping: %s" % self.file_name)
return
def main():
directory_to_check = sys.argv[1]
duplicate_file = findDupes(directory_to_check)
for each_file in duplicate_file:
delete = deletefile(each_file)
delete.interactive()
if __name__ == '__main__':
main()
其中,第一个参数是待检测的目录。
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