251 lines
9.7 KiB
Python
251 lines
9.7 KiB
Python
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import re
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import json
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from Crypto.Cipher import AES
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from Crypto.PublicKey import RSA
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from Crypto.Util import Counter
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import os
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import random
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import binascii
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import requests
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import errors
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from crypto import *
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class Mega(object):
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def __init__(self):
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self.schema = 'https'
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self.domain = 'mega.co.nz'
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self.timeout = 160 #max time (secs) to wait for response from api requests
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self.sid = None
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self.sequence_num = random.randint(0, 0xFFFFFFFF)
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@classmethod
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def login(class_, email, password):
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inst = class_()
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inst.login_user(email, password)
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return inst
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def login_user(self, email, password):
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password_aes = prepare_key(str_to_a32(password))
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uh = stringhash(email, password_aes)
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resp = self.api_request({'a': 'us', 'user': email, 'uh': uh})
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#if numeric error code response
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if isinstance(resp, int):
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raise errors.RequestError(resp)
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self._login_process(resp, password_aes)
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def _login_process(self, resp, password):
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encrypted_master_key = base64_to_a32(resp['k'])
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self.master_key = decrypt_key(encrypted_master_key, password)
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if 'tsid' in resp:
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tsid = base64_url_decode(resp['tsid'])
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key_encrypted = a32_to_str(
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encrypt_key(str_to_a32(tsid[:16]), self.master_key))
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if key_encrypted == tsid[-16:]:
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self.sid = resp['tsid']
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elif 'csid' in resp:
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encrypted_rsa_private_key = base64_to_a32(resp['privk'])
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rsa_private_key = decrypt_key(encrypted_rsa_private_key, self.master_key)
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private_key = a32_to_str(rsa_private_key)
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self.rsa_private_key = [0, 0, 0, 0]
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for i in range(4):
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l = ((ord(private_key[0]) * 256 + ord(private_key[1]) + 7) / 8) + 2
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self.rsa_private_key[i] = mpi_to_int(private_key[:l])
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private_key = private_key[l:]
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encrypted_sid = mpi_to_int(base64_url_decode(resp['csid']))
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rsa_decrypter = RSA.construct(
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(self.rsa_private_key[0] * self.rsa_private_key[1],
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0L, self.rsa_private_key[2], self.rsa_private_key[0],
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self.rsa_private_key[1]))
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sid = '%x' % rsa_decrypter.key._decrypt(encrypted_sid)
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sid = binascii.unhexlify('0' + sid if len(sid) % 2 else sid)
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self.sid = base64_url_encode(sid[:43])
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def api_request(self, data):
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params = {'id': self.sequence_num}
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self.sequence_num += 1
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if self.sid:
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params.update({'sid': self.sid})
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req = requests.post(
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'{0}://g.api.{1}/cs'.format(self.schema,self.domain), params=params, data=json.dumps([data]), timeout=self.timeout)
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json_resp = req.json()
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#if numeric error code response
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if isinstance(json_resp, int):
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raise errors.RequestError(json_resp)
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return json_resp[0]
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def get_files(self):
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files = self.api_request({'a': 'f', 'c': 1})
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files_dict = {}
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for file in files['f']:
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files_dict[file['h']] = self.process_file(file)
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return files_dict
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def download_url(self, url):
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path = self.parse_url(url).split('!')
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file_id = path[0]
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file_key = path[1]
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self.download_file(file_id, file_key, is_public=True)
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def parse_url(self, url):
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#parse file id and key from url
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if('!' in url):
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match = re.findall(r'/#!(.*)', url)
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path = match[0]
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return path
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else:
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raise errors.RequestError('Url key missing')
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def download_file(self, file_id, file_key, is_public=False):
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if is_public:
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file_key = base64_to_a32(file_key)
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file_data = self.api_request({'a': 'g', 'g': 1, 'p': file_id})
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else:
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file_data = self.api_request({'a': 'g', 'g': 1, 'n': file_id})
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k = (file_key[0] ^ file_key[4], file_key[1] ^ file_key[5],
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file_key[2] ^ file_key[6], file_key[3] ^ file_key[7])
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iv = file_key[4:6] + (0, 0)
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meta_mac = file_key[6:8]
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file_url = file_data['g']
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file_size = file_data['s']
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attribs = base64_url_decode(file_data['at'])
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attribs = decrypt_attr(attribs, k)
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file_name = attribs['n']
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input_file = requests.get(file_url, stream=True).raw
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output_file = open(file_name, 'wb')
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counter = Counter.new(
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128, initial_value=((iv[0] << 32) + iv[1]) << 64)
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aes = AES.new(a32_to_str(k), AES.MODE_CTR, counter=counter)
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file_mac = (0, 0, 0, 0)
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for chunk_start, chunk_size in sorted(get_chunks(file_size).items()):
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chunk = input_file.read(chunk_size)
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chunk = aes.decrypt(chunk)
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output_file.write(chunk)
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chunk_mac = [iv[0], iv[1], iv[0], iv[1]]
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for i in range(0, len(chunk), 16):
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block = chunk[i:i+16]
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if len(block) % 16:
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block += '\0' * (16 - (len(block) % 16))
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block = str_to_a32(block)
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chunk_mac = [
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chunk_mac[0] ^ block[0],
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chunk_mac[1] ^ block[1],
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chunk_mac[2] ^ block[2],
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chunk_mac[3] ^ block[3]]
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chunk_mac = aes_cbc_encrypt_a32(chunk_mac, k)
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file_mac = [
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file_mac[0] ^ chunk_mac[0],
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file_mac[1] ^ chunk_mac[1],
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file_mac[2] ^ chunk_mac[2],
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file_mac[3] ^ chunk_mac[3]]
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file_mac = aes_cbc_encrypt_a32(file_mac, k)
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output_file.close()
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# check mac integrity
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if (file_mac[0] ^ file_mac[1], file_mac[2] ^ file_mac[3]) != meta_mac:
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raise ValueError('Mismatched mac')
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def get_public_url(self, file_id, file_key):
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if file_id and file_key:
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public_handle = self.api_request({'a': 'l', 'n': file_id})
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decrypted_key = a32_to_base64(file_key)
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return '{0}://{1}/#!%s!%s'.format(self.schema, self.domain) % (public_handle, decrypted_key)
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else:
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raise errors.ValidationError('File id and key must be set')
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def upload(self, filename, dest=None):
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#determine storage node
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if dest is None:
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#if none set, upload to cloud drive node
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root_id = getattr(self, 'root_id')
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if root_id is None:
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self.get_files()
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dest = self.root_id
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#request upload url, call 'u' method
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input_file = open(filename, 'rb')
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size = os.path.getsize(filename)
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ul_url = self.api_request({'a': 'u', 's': size})['p']
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#generate random aes key (128) for file
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ul_key = [random.randint(0, 0xFFFFFFFF) for r in range(6)]
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count = Counter.new(128, initial_value=((ul_key[4] << 32) + ul_key[5]) << 64)
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aes = AES.new(a32_to_str(ul_key[:4]), AES.MODE_CTR, counter=count)
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file_mac = [0, 0, 0, 0]
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for chunk_start, chunk_size in sorted(get_chunks(size).items()):
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chunk = input_file.read(chunk_size)
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#determine chunks mac
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chunk_mac = [ul_key[4], ul_key[5], ul_key[4], ul_key[5]]
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for i in range(0, len(chunk), 16):
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block = chunk[i:i+16]
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if len(block) % 16:
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block += '\0' * (16 - len(block) % 16)
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block = str_to_a32(block)
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chunk_mac = [chunk_mac[0] ^ block[0], chunk_mac[1] ^ block[1], chunk_mac[2] ^ block[2],
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chunk_mac[3] ^ block[3]]
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chunk_mac = aes_cbc_encrypt_a32(chunk_mac, ul_key[:4])
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#our files mac
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file_mac = [file_mac[0] ^ chunk_mac[0], file_mac[1] ^ chunk_mac[1], file_mac[2] ^ chunk_mac[2],
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file_mac[3] ^ chunk_mac[3]]
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file_mac = aes_cbc_encrypt_a32(file_mac, ul_key[:4])
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#encrypt file and upload
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chunk = aes.encrypt(chunk)
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output_file = requests.post(ul_url + "/" + str(chunk_start), data=chunk, timeout=self.timeout)
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completion_file_handle = output_file.text
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#determine meta mac
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meta_mac = (file_mac[0] ^ file_mac[1], file_mac[2] ^ file_mac[3])
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attribs = {'n': os.path.basename(filename)}
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encrypt_attribs = base64_url_encode(encrypt_attr(attribs, ul_key[:4]))
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key = [ul_key[0] ^ ul_key[4], ul_key[1] ^ ul_key[5], ul_key[2] ^ meta_mac[0], ul_key[3] ^ meta_mac[1],
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ul_key[4], ul_key[5], meta_mac[0], meta_mac[1]]
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encrypted_key = a32_to_base64(encrypt_key(key, self.master_key))
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#update attributes
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data = self.api_request({'a': 'p', 't': dest, 'n': [
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{'h': completion_file_handle, 't': 0, 'a': encrypt_attribs, 'k': encrypted_key}]}
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)
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return data
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def process_file(self, file):
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if file['t'] == 0 or file['t'] == 1:
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key = file['k'][file['k'].index(':') + 1:]
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key = decrypt_key(base64_to_a32(key), self.master_key)
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if file['t'] == 0:
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k = file['k'] = (key[0] ^ key[4], key[1] ^ key[5], key[2] ^ key[6], key[3] ^ key[7])
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iv = file['iv'] = key[4:6] + (0, 0)
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meta_mac = file['meta_mac'] = key[6:8]
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else:
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k = file['k'] = key
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attributes = base64_url_decode(file['a'])
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attributes = decrypt_attr(attributes, k)
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file['a'] = attributes
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elif file['t'] == 2:
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self.root_id = file['h']
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file['a'] = {'n': 'Cloud Drive'}
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elif file['t'] == 3:
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self.inbox_id = file['h']
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file['a'] = {'n': 'Inbox'}
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elif file['t'] == 4:
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self.trashbin_id = file['h']
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file['a'] = {'n': 'Rubbish Bin'}
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return file
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