Fix python2 issues in kgenpids and kindlekey
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@ -101,3 +101,4 @@ This is v10.0.9, a release candidate for v10.1.0. I don't expect there to be maj
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- Fix a bug where decrypting a 40-bit RC4 pdf with R=2 didn't work.
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- Fix a bug where decrypting a 40-bit RC4 pdf with R=2 didn't work.
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- Fix a bug where decrypting a 256-bit AES pdf with V=5 didn't work.
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- Fix a bug where decrypting a 256-bit AES pdf with V=5 didn't work.
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- Fix bugs in kgenpids.py and kindlekey.py that caused it to fail on Python 2 (#380).
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@ -53,11 +53,17 @@ def SHA1(message):
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def encode(data, map):
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def encode(data, map):
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result = b''
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result = b''
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for char in data:
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for char in data:
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if sys.version_info[0] == 2:
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value = ord(char)
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else:
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value = char
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value = char
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Q = (value ^ 0x80) // len(map)
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Q = (value ^ 0x80) // len(map)
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R = value % len(map)
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R = value % len(map)
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result += bytes([map[Q]])
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result += bytes([map[R]])
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result += bytes(bytearray([map[Q]]))
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result += bytes(bytearray([map[R]]))
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return result
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return result
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# Hash the bytes in data and then encode the digest with the characters in map
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# Hash the bytes in data and then encode the digest with the characters in map
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@ -84,6 +90,9 @@ def decode(data,map):
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def getTwoBitsFromBitField(bitField,offset):
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def getTwoBitsFromBitField(bitField,offset):
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byteNumber = offset // 4
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byteNumber = offset // 4
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bitPosition = 6 - 2*(offset % 4)
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bitPosition = 6 - 2*(offset % 4)
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if sys.version_info[0] == 2:
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return ord(bitField[byteNumber]) >> bitPosition & 3
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else:
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return bitField[byteNumber] >> bitPosition & 3
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return bitField[byteNumber] >> bitPosition & 3
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# Returns the six bits at offset from a bit field
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# Returns the six bits at offset from a bit field
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@ -97,7 +106,8 @@ def encodePID(hash):
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global charMap3
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global charMap3
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PID = b''
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PID = b''
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for position in range (0,8):
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for position in range (0,8):
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PID += bytes([charMap3[getSixBitsFromBitField(hash,position)]])
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PID += bytes(bytearray([charMap3[getSixBitsFromBitField(hash,position)]]))
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return PID
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return PID
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# Encryption table used to generate the device PID
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# Encryption table used to generate the device PID
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@ -134,7 +144,7 @@ def generateDevicePID(table,dsn,nbRoll):
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index = (index+1) %8
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index = (index+1) %8
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for counter in range (0,8):
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for counter in range (0,8):
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index = ((((pid[counter] >>5) & 3) ^ pid[counter]) & 0x1f) + (pid[counter] >> 7)
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index = ((((pid[counter] >>5) & 3) ^ pid[counter]) & 0x1f) + (pid[counter] >> 7)
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pidAscii += bytes([charMap4[index]])
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pidAscii += bytes(bytearray([charMap4[index]]))
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return pidAscii
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return pidAscii
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def crc32(s):
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def crc32(s):
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@ -150,7 +160,7 @@ def checksumPid(s):
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for i in (0,1):
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for i in (0,1):
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b = crc & 0xff
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b = crc & 0xff
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pos = (b // l) ^ (b % l)
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pos = (b // l) ^ (b % l)
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res += bytes([charMap4[pos%l]])
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res += bytes(bytearray([charMap4[pos%l]]))
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crc >>= 8
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crc >>= 8
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return res
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return res
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@ -161,6 +171,9 @@ def pidFromSerial(s, l):
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crc = crc32(s)
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crc = crc32(s)
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arr1 = [0]*l
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arr1 = [0]*l
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for i in range(len(s)):
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for i in range(len(s)):
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if sys.version_info[0] == 2:
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arr1[i%l] ^= ord(s[i])
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else:
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arr1[i%l] ^= s[i]
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arr1[i%l] ^= s[i]
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crc_bytes = [crc >> 24 & 0xff, crc >> 16 & 0xff, crc >> 8 & 0xff, crc & 0xff]
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crc_bytes = [crc >> 24 & 0xff, crc >> 16 & 0xff, crc >> 8 & 0xff, crc & 0xff]
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for i in range(l):
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for i in range(l):
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@ -168,7 +181,7 @@ def pidFromSerial(s, l):
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pid = b""
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pid = b""
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for i in range(l):
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for i in range(l):
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b = arr1[i] & 0xff
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b = arr1[i] & 0xff
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pid += bytes([charMap4[(b >> 7) + ((b >> 5 & 3) ^ (b & 0x1f))]])
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pid += bytes(bytearray([charMap4[(b >> 7) + ((b >> 5 & 3) ^ (b & 0x1f))]]))
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return pid
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return pid
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@ -115,11 +115,17 @@ def primes(n):
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def encode(data, map):
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def encode(data, map):
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result = b''
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result = b''
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for char in data:
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for char in data:
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if sys.version_info[0] == 2:
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value = ord(char)
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else:
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value = char
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value = char
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Q = (value ^ 0x80) // len(map)
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Q = (value ^ 0x80) // len(map)
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R = value % len(map)
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R = value % len(map)
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result += bytes([map[Q]])
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result += bytes([map[R]])
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result += bytes(bytearray([map[Q]]))
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result += bytes(bytearray([map[R]]))
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return result
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return result
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# Hash the bytes in data and then encode the digest with the characters in map
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# Hash the bytes in data and then encode the digest with the characters in map
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