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Try to add support for new K4PC
Co-authored-by: Andrew Innes <andrew.c12@gmail.com> Co-authored-by: Satsuoni <satsuoni@hotmail.com>
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@ -89,3 +89,4 @@ List of changes since the fork of Apprentice Harper's repository:
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- PDF: Ignore invalid PDF objids unless the script is running in strict mode. Fixes some PDFs, apparently. Fixes #233.
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- Bugfix: EPUBs with remaining content in the encryption.xml after decryption weren't written correctly.
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- Support for Adobe's 'aes128-cbc-uncompressed' encryption method (fixes #242).
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- Two bugfixes for Amazon DeDRM from Satuoni ( https://github.com/noDRM/DeDRM_tools/issues/315#issuecomment-1508305428 ) and andrewc12 ( https://github.com/andrewc12/DeDRM_tools/commit/d9233d61f00d4484235863969919059f4d0b2057 ) that might make the plugin work with newer versions.
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@ -835,6 +835,107 @@ def obfuscate(secret, version):
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return obfuscated
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# scramble() and obfuscate2() from https://github.com/andrewc12/DeDRM_tools/commit/d9233d61f00d4484235863969919059f4d0b2057
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def scramble(st,magic):
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ret=bytearray(len(st))
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padlen=len(st)
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for counter in range(len(st)):
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ivar2=(padlen//2)-2*(counter%magic)+magic+counter-1
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ret[ivar2%padlen]=st[counter]
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return ret
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def obfuscate2(secret, version):
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if version == 1: # v1 does not use obfuscation
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return secret
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magic, word = OBFUSCATION_TABLE["V%d" % version]
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# extend secret so that its length is divisible by the magic number
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if len(secret) % magic != 0:
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secret = secret + b'\x00' * (magic - len(secret) % magic)
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obfuscated = bytearray(len(secret))
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wordhash = bytearray(hashlib.sha256(word).digest()[16:])
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#print(wordhash.hex())
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shuffled = bytearray(scramble(secret,magic))
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for i in range(0, len(secret)):
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obfuscated[i] = shuffled[i] ^ wordhash[i % 16]
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return obfuscated
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# scramble3() and obfuscate3() from https://github.com/Satsuoni/DeDRM_tools/commit/da6b6a0c911b6d45fe1b13042b690daebc1cc22f
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def scramble3(st,magic):
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ret=bytearray(len(st))
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padlen=len(st)
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divs = padlen // magic
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cntr = 0
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iVar6 = 0
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offset = 0
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if (0 < ((magic - 1) + divs)):
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while True:
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if (offset & 1) == 0 :
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uVar4 = divs - 1
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if offset < divs:
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iVar3 = 0
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uVar4 = offset
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else:
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iVar3 = (offset - divs) + 1
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if uVar4>=0:
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iVar5 = uVar4 * magic
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index = ((padlen - 1) - cntr)
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while True:
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if (magic <= iVar3): break
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ret[index] = st[iVar3 + iVar5]
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iVar3 = iVar3 + 1
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cntr = cntr + 1
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uVar4 = uVar4 - 1
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iVar5 = iVar5 - magic
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index -= 1
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if uVar4<=-1: break
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else:
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if (offset < magic):
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iVar3 = 0
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else :
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iVar3 = (offset - magic) + 1
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if (iVar3 < divs):
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uVar4 = offset
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if (magic <= offset):
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uVar4 = magic - 1
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index = ((padlen - 1) - cntr)
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iVar5 = iVar3 * magic
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while True:
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if (uVar4 < 0) : break
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iVar3 += 1
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ret[index] = st[uVar4 + iVar5]
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uVar4 -= 1
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index=index-1
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iVar5 = iVar5 + magic;
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cntr += 1;
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if iVar3>=divs: break
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offset = offset + 1
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if offset >= ((magic - 1) + divs) :break
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return ret
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#not sure if the third variant is used anywhere, but it is in Kindle, so I tried to add it
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def obfuscate3(secret, version):
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if version == 1: # v1 does not use obfuscation
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return secret
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magic, word = OBFUSCATION_TABLE["V%d" % version]
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# extend secret so that its length is divisible by the magic number
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if len(secret) % magic != 0:
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secret = secret + b'\x00' * (magic - len(secret) % magic)
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#secret = bytearray(secret)
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obfuscated = bytearray(len(secret))
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wordhash = bytearray(hashlib.sha256(word).digest())
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#print(wordhash.hex())
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shuffled=bytearray(scramble3(secret,magic))
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#print(shuffled)
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# shuffle secret and xor it with the first half of the word hash
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for i in range(0, len(secret)):
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obfuscated[i] = shuffled[i] ^ wordhash[i % 16]
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return obfuscated
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class DrmIonVoucher(object):
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envelope = None
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version = None
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@ -878,12 +979,25 @@ class DrmIonVoucher(object):
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else:
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_assert(False, "Unknown lock parameter: %s" % param)
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sharedsecret = obfuscate(shared, self.version)
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sharedsecrets = [obfuscate(shared, self.version),obfuscate2(shared, self.version),obfuscate3(shared, self.version)]
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decrypted=False
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ex=None
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for sharedsecret in sharedsecrets:
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key = hmac.new(sharedsecret, b"PIDv3", digestmod=hashlib.sha256).digest()
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aes = AES.new(key[:32], AES.MODE_CBC, self.cipheriv[:16])
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try:
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b = aes.decrypt(self.ciphertext)
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b = pkcs7unpad(b, 16)
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decrypted=True
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print("Decryption succeeded")
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break
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except Exception as ex:
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print("Decryption failed, trying next fallback ")
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if not decrypted:
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raise ex
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sharedsecret = obfuscate(shared, self.version)
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self.drmkey = BinaryIonParser(BytesIO(b))
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addprottable(self.drmkey)
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