mirror of
https://github.com/Leseratte10/acsm-calibre-plugin.git
synced 2024-12-23 01:34:36 +06:00
396 lines
15 KiB
Python
396 lines
15 KiB
Python
from lxml import etree
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import base64
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import os, locale, platform
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try:
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from Crypto.PublicKey import RSA
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from Crypto.Util.asn1 import DerSequence
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from Crypto.Cipher import PKCS1_v1_5
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except ImportError:
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# Debian (and Ubuntu) ship pycryptodome, but not in its compatible mode with pycrypto
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# If `Crypto` can't be found, try under pycryptodome's own namespace
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from Cryptodome.PublicKey import RSA
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from Cryptodome.Util.asn1 import DerSequence
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from Cryptodome.Cipher import PKCS1_v1_5
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try:
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from libadobe import addNonce, sign_node, sendRequestDocu, sendHTTPRequest
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from libadobe import makeFingerprint, makeSerial, encrypt_with_device_key, decrypt_with_device_key
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from libadobe import get_devkey_path, get_device_path, get_activation_xml_path
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except:
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from calibre_plugins.deacsm.libadobe import addNonce, sign_node, sendRequestDocu, sendHTTPRequest
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from calibre_plugins.deacsm.libadobe import makeFingerprint, makeSerial, encrypt_with_device_key, decrypt_with_device_key
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from calibre_plugins.deacsm.libadobe import get_devkey_path, get_device_path, get_activation_xml_path
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VAR_AUTH_SERVER = "adeactivate.adobe.com"
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VAR_ACS_SERVER = "http://adeactivate.adobe.com/adept"
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VAR_HOBBES_VERSION = "10.0.4"
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def createDeviceFile(hobbes: str, randomSerial: bool):
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# Original implementation: Device::createDeviceFile(const std::string& hobbes, bool randomSerial)
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serial = makeSerial(randomSerial)
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fingerprint = makeFingerprint(serial)
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NSMAP = { "adept" : "http://ns.adobe.com/adept" }
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etree.register_namespace("adept", NSMAP["adept"])
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root = etree.Element(etree.QName(NSMAP["adept"], "deviceInfo"))
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etree.SubElement(root, etree.QName(NSMAP["adept"], "deviceClass")).text = "Desktop"
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etree.SubElement(root, etree.QName(NSMAP["adept"], "deviceSerial")).text = serial
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etree.SubElement(root, etree.QName(NSMAP["adept"], "deviceName")).text = platform.uname()[1]
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etree.SubElement(root, etree.QName(NSMAP["adept"], "deviceType")).text = "standalone"
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atr_ver = etree.SubElement(root, etree.QName(NSMAP["adept"], "version"))
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atr_ver.set("name", "hobbes")
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atr_ver.set("value", hobbes)
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atr_ver2 = etree.SubElement(root, etree.QName(NSMAP["adept"], "version"))
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atr_ver2.set("name", "clientOS")
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atr_ver2.set("value", platform.system() + " " + platform.release())
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# "Windows Vista"
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atr_ver3 = etree.SubElement(root, etree.QName(NSMAP["adept"], "version"))
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atr_ver3.set("name", "clientLocale")
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language = locale.getdefaultlocale()[0]
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if language is None or language == "":
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# Can sometimes happen on MacOS with default English language
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language = "en_US"
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atr_ver3.set("value", language)
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etree.SubElement(root, etree.QName(NSMAP["adept"], "fingerprint")).text = fingerprint
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f = open(get_device_path(), "w")
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f.write("<?xml version=\"1.0\"?>\n")
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f.write(etree.tostring(root, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1"))
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f.close()
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def createUser():
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NSMAP = { "adept" : "http://ns.adobe.com/adept" }
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root = etree.Element("activationInfo")
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root.set("xmlns", NSMAP["adept"])
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etree.register_namespace("adept", NSMAP["adept"])
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activationServiceInfo = etree.SubElement(root, etree.QName(NSMAP["adept"], "activationServiceInfo"))
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activationURL = VAR_ACS_SERVER + "/ActivationServiceInfo"
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response = sendHTTPRequest(activationURL)
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#print("======================================================")
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#print("Sending request to " + activationURL)
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#print("got response:")
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#print(response)
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#print("======================================================")
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adobe_response_xml = etree.fromstring(response)
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adNS = lambda tag: '{%s}%s' % ('http://ns.adobe.com/adept', tag)
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authURL = adobe_response_xml.find("./%s" % (adNS("authURL"))).text
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userInfoURL = adobe_response_xml.find("./%s" % (adNS("userInfoURL"))).text
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certificate = adobe_response_xml.find("./%s" % (adNS("certificate"))).text
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if (authURL is None or userInfoURL is None or certificate is None):
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return False, "Error: Unexpected reply from Adobe."
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etree.SubElement(activationServiceInfo, etree.QName(NSMAP["adept"], "authURL")).text = authURL
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etree.SubElement(activationServiceInfo, etree.QName(NSMAP["adept"], "userInfoURL")).text = userInfoURL
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etree.SubElement(activationServiceInfo, etree.QName(NSMAP["adept"], "activationURL")).text = VAR_ACS_SERVER
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etree.SubElement(activationServiceInfo, etree.QName(NSMAP["adept"], "certificate")).text = certificate
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authenticationURL = authURL + "/AuthenticationServiceInfo"
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response2 = sendHTTPRequest(authenticationURL)
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#print("======================================================")
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#print("Sending request to " + authenticationURL)
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#print("got response:")
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#print(response2)
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#print("======================================================")
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adobe_response_xml2 = etree.fromstring(response2)
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authCert = adobe_response_xml2.find("./%s" % (adNS("certificate"))).text
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etree.SubElement(activationServiceInfo, etree.QName(NSMAP["adept"], "authenticationCertificate")).text = authCert
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f = open(get_activation_xml_path(), "w")
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f.write("<?xml version=\"1.0\"?>\n")
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f.write(etree.tostring(root, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1"))
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f.close()
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return True, "Done"
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def buildSignInRequest(adobeID: str, adobePassword: str, authenticationCertificate: str):
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NSMAP = { "adept" : "http://ns.adobe.com/adept" }
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etree.register_namespace("adept", NSMAP["adept"])
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root = etree.Element(etree.QName(NSMAP["adept"], "signIn"))
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root.set("method", "AdobeID")
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f = open(get_devkey_path(), "rb")
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devkey_bytes = f.read()
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f.close()
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_authenticationCertificate = base64.b64decode(authenticationCertificate)
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# Build buffer <devkey_bytes> <len username> <username> <len password> <password>
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ar = bytearray(devkey_bytes)
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ar.extend(bytearray(len(adobeID).to_bytes(1, 'big')))
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ar.extend(bytearray(adobeID.encode("latin-1")))
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ar.extend(bytearray(len(adobePassword).to_bytes(1, 'big')))
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ar.extend(bytearray(adobePassword.encode("latin-1")))
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# Crypt code from https://stackoverflow.com/a/12921889/4991648
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cert = DerSequence()
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cert.decode(_authenticationCertificate)
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tbsCertificate = DerSequence()
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tbsCertificate.decode(cert[0])
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subjectPublicKeyInfo = tbsCertificate[6]
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rsakey = RSA.importKey(subjectPublicKeyInfo)
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cipherAC = PKCS1_v1_5.new(rsakey)
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crypted_msg = cipherAC.encrypt(bytes(ar))
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etree.SubElement(root, etree.QName(NSMAP["adept"], "signInData")).text = base64.b64encode(crypted_msg)
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# Generate Auth key and License Key
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authkey = RSA.generate(1024, e=65537)
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licensekey = RSA.generate(1024, e=65537)
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authkey_pub = authkey.publickey().exportKey("DER")
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authkey_priv = authkey.exportKey("DER", pkcs=8)
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authkey_priv_enc = encrypt_with_device_key(authkey_priv)
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licensekey_pub = licensekey.publickey().exportKey("DER")
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licensekey_priv = licensekey.exportKey("DER", pkcs=8)
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licensekey_priv_enc = encrypt_with_device_key(licensekey_priv)
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etree.SubElement(root, etree.QName(NSMAP["adept"], "publicAuthKey")).text = base64.b64encode(authkey_pub)
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etree.SubElement(root, etree.QName(NSMAP["adept"], "encryptedPrivateAuthKey")).text = base64.b64encode(authkey_priv_enc)
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etree.SubElement(root, etree.QName(NSMAP["adept"], "publicLicenseKey")).text = base64.b64encode(licensekey_pub)
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etree.SubElement(root, etree.QName(NSMAP["adept"], "encryptedPrivateLicenseKey")).text = base64.b64encode(licensekey_priv_enc)
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return "<?xml version=\"1.0\"?>\n" + etree.tostring(root, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1")
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def signIn(username: str, passwd: str):
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# Get authenticationCertificate
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activationxml = etree.parse(get_activation_xml_path())
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adNS = lambda tag: '{%s}%s' % ('http://ns.adobe.com/adept', tag)
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authenticationCertificate = activationxml.find("./%s/%s" % (adNS("activationServiceInfo"), adNS("authenticationCertificate"))).text
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signInRequest = buildSignInRequest(username, passwd, authenticationCertificate)
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signInURL = activationxml.find("./%s/%s" % (adNS("activationServiceInfo"), adNS("authURL"))).text + "/SignInDirect"
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credentials = sendRequestDocu(signInRequest, signInURL)
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#print("======================================================")
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#print("Sending request to " + signInURL)
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#print("Payload:")
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#print(signInRequest)
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#print("got response:")
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#print(credentials)
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#print("======================================================")
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try:
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credentialsXML = etree.fromstring(credentials)
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if (credentialsXML.tag == adNS("error")):
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err = credentialsXML.get("data")
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if ("E_AUTH_FAILED" in err and "CUS05051" in err):
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return False, "Invalid username or password!"
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else:
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return False, "Unknown Adobe error:" + credentials
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elif (credentialsXML.tag == adNS("credentials")):
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pass
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#print("Login successful")
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else:
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return False, "Invalid main tag " + credentialsXML.tag
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except:
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return False, "Invalid response to login request"
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# Got correct credentials
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private_key_data_encrypted = credentialsXML.find("./%s" % (adNS("encryptedPrivateLicenseKey"))).text
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private_key_data_encrypted = base64.b64decode(private_key_data_encrypted)
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private_key_data = decrypt_with_device_key(private_key_data_encrypted)
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# Okay, now we got the credential response correct. Now "just" apply all these to the main activation.xml
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f = open(get_activation_xml_path(), "w")
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f.write("<?xml version=\"1.0\"?>\n")
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f.write(etree.tostring(activationxml, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1").replace("</activationInfo>", ""))
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# Yeah, that's ugly, but I didn't get etree to work with the different Namespaces ...
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f.write("<adept:credentials xmlns:adept=\"http://ns.adobe.com/adept\">\n")
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f.write("<adept:user>%s</adept:user>\n" % (credentialsXML.find("./%s" % (adNS("user"))).text))
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f.write("<adept:username method=\"%s\">%s</adept:username>\n" % (credentialsXML.find("./%s" % (adNS("username"))).get("method", "AdobeID"), credentialsXML.find("./%s" % (adNS("username"))).text))
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f.write("<adept:pkcs12>%s</adept:pkcs12>\n" % (credentialsXML.find("./%s" % (adNS("pkcs12"))).text))
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f.write("<adept:licenseCertificate>%s</adept:licenseCertificate>\n" % (credentialsXML.find("./%s" % (adNS("licenseCertificate"))).text))
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f.write("<adept:privateLicenseKey>%s</adept:privateLicenseKey>\n" % (base64.b64encode(private_key_data).decode("latin-1")))
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f.write("<adept:authenticationCertificate>%s</adept:authenticationCertificate>\n" % (authenticationCertificate))
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f.write("</adept:credentials>\n")
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f.write("</activationInfo>\n")
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f.close()
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return True, "Done"
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def buildActivateReq():
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devicexml = etree.parse(get_device_path())
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activationxml = etree.parse(get_activation_xml_path())
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adNS = lambda tag: '{%s}%s' % ('http://ns.adobe.com/adept', tag)
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version = None
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clientOS = None
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clientLocale = None
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ver = devicexml.findall("./%s" % (adNS("version")))
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for f in ver:
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if f.get("name") == "hobbes":
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version = f.get("value")
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elif f.get("name") == "clientOS":
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clientOS = f.get("value")
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elif f.get("name") == "clientLocale":
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clientLocale = f.get("value")
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if (version is None or clientOS is None or clientLocale is None):
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return False, "err"
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ret = ""
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ret += "<?xml version=\"1.0\"?>"
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ret += "<adept:activate xmlns:adept=\"http://ns.adobe.com/adept\" requestType=\"initial\">"
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ret += "<adept:fingerprint>%s</adept:fingerprint>" % (devicexml.find("./%s" % (adNS("fingerprint"))).text)
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ret += "<adept:deviceType>%s</adept:deviceType>" % (devicexml.find("./%s" % (adNS("deviceType"))).text)
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ret += "<adept:clientOS>%s</adept:clientOS>" % (clientOS)
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ret += "<adept:clientLocale>%s</adept:clientLocale>" % (clientLocale)
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ret += "<adept:clientVersion>%s</adept:clientVersion>" % (devicexml.find("./%s" % (adNS("deviceClass"))).text)
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ret += "<adept:targetDevice>"
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ret += "<adept:softwareVersion>%s</adept:softwareVersion>" % (version)
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ret += "<adept:clientOS>%s</adept:clientOS>" % (clientOS)
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ret += "<adept:clientLocale>%s</adept:clientLocale>" % (clientLocale)
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ret += "<adept:clientVersion>%s</adept:clientVersion>" % (devicexml.find("./%s" % (adNS("deviceClass"))).text)
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ret += "<adept:deviceType>%s</adept:deviceType>" % (devicexml.find("./%s" % (adNS("deviceType"))).text)
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ret += "<adept:fingerprint>%s</adept:fingerprint>" % (devicexml.find("./%s" % (adNS("fingerprint"))).text)
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ret += "</adept:targetDevice>"
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ret += addNonce()
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ret += "<adept:user>%s</adept:user>" % (activationxml.find("./%s/%s" % (adNS("credentials"), adNS("user"))).text)
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ret += "</adept:activate>"
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return True, ret
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def activateDevice():
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result, activate_req = buildActivateReq()
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if (result is False):
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return False, "Building activation request failed: " + activate_req
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#print("======================================================")
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#print("activate")
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#print(activate_req)
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NSMAP = { "adept" : "http://ns.adobe.com/adept" }
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etree.register_namespace("adept", NSMAP["adept"])
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req_xml = etree.fromstring(activate_req)
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signature = sign_node(req_xml)
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etree.SubElement(req_xml, etree.QName(NSMAP["adept"], "signature")).text = signature
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#print ("final request:")
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#print(etree.tostring(req_xml, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1"))
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data = "<?xml version=\"1.0\"?>\n" + etree.tostring(req_xml, encoding="utf-8", pretty_print=True, xml_declaration=False).decode("latin-1")
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ret = sendRequestDocu(data, VAR_ACS_SERVER + "/Activate")
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try:
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credentialsXML = etree.fromstring(ret)
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adNS = lambda tag: '{%s}%s' % ('http://ns.adobe.com/adept', tag)
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if (credentialsXML.tag == adNS("error")):
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err = credentialsXML.get("data")
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return False, "Adobe error: " + err.split(' ')[0] + "\n" + err
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elif (credentialsXML.tag == adNS("activationToken")):
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pass
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#print("Login successful")
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else:
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return False, "Invalid main tag " + credentialsXML.tag
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except:
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return False, "Error parsing Adobe /Activate response"
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#print("Response from server: ")
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#print(ret)
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# Soooo, lets go and append that to the XML:
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f = open(get_activation_xml_path(), "r")
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old_xml = f.read().replace("</activationInfo>", "")
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f.close()
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f = open(get_activation_xml_path(), "w")
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f.write(old_xml)
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f.write(ret.decode("latin-1"))
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f.write("</activationInfo>\n")
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f.close()
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return True, ret
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def exportAccountEncryptionKeyDER(output_file: str):
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try:
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activationxml = etree.parse(get_activation_xml_path())
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adNS = lambda tag: '{%s}%s' % ('http://ns.adobe.com/adept', tag)
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privatekey = activationxml.find("./%s/%s" % (adNS("credentials"), adNS("privateLicenseKey"))).text
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privatekey = base64.b64decode(privatekey)
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privatekey = privatekey[26:]
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f = open(output_file, "wb")
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f.write(privatekey)
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f.close()
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return True
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except:
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return False
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