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profile-service.rb
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profile-service.rb
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#!/usr/local/bin/ruby
# PayloadIdentifier: identifies a payload through its lifetime (all versions)
# PayloadType: kind of payload, do not change
# PayloadDisplayName: display name, shown on install and inspection
# PayloadDescription: longer description to go with display name
=begin
NOTES
The use of certificates has been simplified for the sake of providing a
simple example. We'll just be using a root and ssl certificate. The ssl
certificate will be used for:
- TLS cert for the profile service
- RA cert for the simplified SCEP service
- Profile signing cert for profiles generated by the service
FIX UPS
remove more debug logging or make it optional, just like dumping payloads
describe the apple certificate hierarchy for device certificates
=end
require 'webrick'
require 'webrick/https'
include WEBrick
require 'openssl'
require 'set'
# http://plist.rubyforge.org
$:.unshift(File.dirname(__FILE__) + "/plist/lib")
require 'plist'
# http://UUIDTools.rubyforge.org
$:.unshift(File.dirname(__FILE__) + "/uuidtools/lib")
require 'uuidtools'
# explicitly set this to host ip or name if more than one interface exists
@@address = ENV['HOSTNAME']
def local_ip
# turn off reverse DNS resolution temporarily
orig, Socket.do_not_reverse_lookup = Socket.do_not_reverse_lookup, true
UDPSocket.open do |s|
s.connect '0.0.0.1', 1
s.addr.last
end
ensure
Socket.do_not_reverse_lookup = orig
end
@@rsa_key_size = 2048
@@root_cert_file = "ca_cert.pem"
@@root_cert = nil
@@root_key_file = "ca_private.pem"
@@root_key = nil
@@serial_file = "serial"
@@serial = 100
@@ssl_key_file = "ssl_private.pem"
@@ssl_key = nil
@@ssl_cert_file = "ssl_cert.pem"
@@ssl_cert = nil
@@ra_key_file = "ra_private.pem"
@@ra_key = nil
@@ra_cert_file = "ra_cert.pem"
@@ra_cert = nil
@@issued_first_profile = Set.new
def issue_cert(dn, key, serial, not_before, not_after, extensions, issuer, issuer_key, digest)
cert = OpenSSL::X509::Certificate.new
issuer = cert unless issuer
issuer_key = key unless issuer_key
cert.version = 2
cert.serial = serial
cert.subject = dn
cert.issuer = issuer.subject
cert.public_key = key.public_key
cert.not_before = not_before
cert.not_after = not_after
ef = OpenSSL::X509::ExtensionFactory.new
ef.subject_certificate = cert
ef.issuer_certificate = issuer
extensions.each { |oid, value, critical|
cert.add_extension(ef.create_extension(oid, value, critical))
}
cert.sign(issuer_key, digest)
cert
end
def issueCert(req, validdays)
req = OpenSSL::X509::Request.new(req)
cert = issue_cert(req.subject, req.public_key, @@serial, Time.now, Time.now+(86400*validdays),
[ ["keyUsage","digitalSignature,keyEncipherment",true] ],
@@root_cert, @@root_key, OpenSSL::Digest::SHA1.new)
@@serial += 1
File.open(@@serial_file, "w") { |f| f.write @@serial.to_s }
cert
end
require 'socket'
def local_ip
orig, Socket.do_not_reverse_lookup = Socket.do_not_reverse_lookup, true # turn off reverse DNS resolution temporarily
UDPSocket.open do |s|
s.connect '17.244.0.1', 1
s.addr.last
end
ensure
Socket.do_not_reverse_lookup = orig
end
def service_address(request)
address = "localhost"
if request.addr.size > 0
host, port = request.addr[2], request.addr[1]
end
host.to_s + ":" + port.to_s
end
=begin
*** PAYLOAD SECTION ***
=end
def general_payload
payload = Hash.new
payload['PayloadVersion'] = 1 # do not modify
payload['PayloadUUID'] = UUIDTools::UUID.random_create().to_s # should be unique
# string that show up in UI, customisable
payload['PayloadOrganization'] = "ACME Inc."
payload
end
def profile_service_payload(request, challenge)
payload = general_payload()
payload['PayloadType'] = "Profile Service" # do not modify
payload['PayloadIdentifier'] = "com.acme.mobileconfig.profile-service"
# strings that show up in UI, customisable
payload['PayloadDisplayName'] = "ACME Profile Service"
payload['PayloadDescription'] = "Install this profile to enroll for secure access to ACME Inc."
payload_content = Hash.new
payload_content['URL'] = "https://" + service_address(request) + "/profile"
payload_content['DeviceAttributes'] = [
"UDID",
"VERSION"
=begin
"PRODUCT", # ie. iPhone1,1 or iPod2,1
"MAC_ADDRESS_EN0", # WiFi MAC address
"DEVICE_NAME", # given device name "iPhone"
# Items below are only available on iPhones
"IMEI",
"ICCID"
=end
];
if (challenge && !challenge.empty?)
payload_content['Challenge'] = challenge
end
payload['PayloadContent'] = payload_content
Plist::Emit.dump(payload)
end
def scep_cert_payload(request, purpose, challenge)
payload = general_payload()
payload['PayloadIdentifier'] = "com.acme.encryption-cert-request"
payload['PayloadType'] = "com.apple.security.scep" # do not modify
# strings that show up in UI, customisable
payload['PayloadDisplayName'] = purpose
payload['PayloadDescription'] = "Provides device encryption identity"
payload_content = Hash.new
payload_content['URL'] = "https://" + service_address(request) + "/scep"
=begin
# scep instance NOTE: required for MS SCEP servers
payload_content['Name'] = ""
=end
payload_content['Subject'] = [ [ [ "O", "ACME Inc." ] ],
[ [ "CN", purpose + " (" + UUIDTools::UUID.random_create().to_s + ")" ] ] ];
if (!challenge.empty?)
payload_content['Challenge'] = challenge
end
payload_content['Keysize'] = @@rsa_key_size
payload_content['Key Type'] = "RSA"
payload_content['Key Usage'] = 5 # digital signature (1) | key encipherment (4)
# NOTE: MS SCEP server will only issue signature or encryption, not both
# SCEP can run over HTTP, as long as the CA cert is verified out of band
# Below we achieve this by adding the fingerprint to the SCEP payload
# that the phone downloads over HTTPS during enrollment.
=begin
# Disabled until the following is fixed: <rdar://problem/7172187> SCEP various fixes
payload_content['CAFingerprint'] = StringIO.new(OpenSSL::Digest::SHA1.new(@@root_cert.to_der).digest)
=end
payload['PayloadContent'] = payload_content;
payload
end
def encryption_cert_payload(request, challenge)
payload = general_payload()
payload['PayloadIdentifier'] = "com.acme.encrypted-profile-service"
payload['PayloadType'] = "Configuration" # do not modify
# strings that show up in UI, customisable
payload['PayloadDisplayName'] = "Profile Service Enroll"
payload['PayloadDescription'] = "Enrolls identity for the encrypted profile service"
payload['PayloadContent'] = [scep_cert_payload(request, "Profile Service", challenge)];
Plist::Emit.dump(payload)
end
def client_cert_configuration_payload(request)
webclip_payload = general_payload()
webclip_payload['PayloadIdentifier'] = "com.acme.webclip.intranet"
webclip_payload['PayloadType'] = "com.apple.webClip.managed" # do not modify
# strings that show up in UI, customisable
webclip_payload['PayloadDisplayName'] = "ACME Inc."
webclip_payload['PayloadDescription'] = "Creates a link to the ACME intranet on the home screen"
# allow user to remove webclip
webclip_payload['IsRemovable'] = true
# the link
webclip_payload['Label'] = "ACME Inc."
webclip_payload['URL'] = "https://" + service_address(request).split(":")[0] # + ":4443/"
client_cert_payload = scep_cert_payload(request, "Client Authentication", "foo");
Plist::Emit.dump([webclip_payload, client_cert_payload])
end
def vpn_configuration_payload(request)
intranet_webclip_payload = general_payload()
intranet_webclip_payload['PayloadIdentifier'] = "com.acme.webclip.intranet"
intranet_webclip_payload['PayloadType'] = "com.apple.webClip.managed" # do not modify
# strings that show up in UI, customisable
intranet_webclip_payload['PayloadDisplayName'] = "ACME Inc."
intranet_webclip_payload['PayloadDescription'] = "Creates a link to the ACME intranet on the home screen"
intranet_webclip_payload['IsRemovable'] = true
intranet_webclip_payload['Label'] = "ACME Inc."
intranet_webclip_payload['URL'] = "https://www.intranet.acme.com/"
vpn_cert_payload = scep_cert_payload(request, "VPN", "foo");
vpn_payload = general_payload()
vpn_payload['PayloadIdentifier'] = "com.acme.vpn.intranet"
vpn_payload['PayloadType'] = "com.apple.vpn.managed"
vpn_payload['PayloadDisplayName'] = "VPN (ACME North America)"
vpn_payload['PayloadDescription'] = "Configures VPN settings, including authentication."
vpn_payload['VPNType'] = "IPSec"
vpn_settings = Hash.new
vpn_settings['AuthenticationMethod'] = "Certificate"
vpn_settings['OnDemandEnabled'] = 1
vpn_settings['OnDemandMatchDomainsAlways'] = ["intranet.acme.com"]
#vpn_settings['OnDemandMatchDomainsNever'] =
#vpn_settings['OnDemandMatchDomainsOnRetry'] =
vpn_settings['PayloadCertificateUUID'] = payload2['PayloadUUID'].to_s
vpn_settings['RemoteAddress'] = service_address(request).split(":")[0]
vpn_settings['XAuthEnabled'] = 1
# vpn_settings['XAuthName'] = "foo"
vpn_settings['PromptForVPNPIN'] = false
# vpn_settings['XAuthPasswordEncryption'] = "just say no"
# vpn_settings['XAuthPassword'] = "foo"
vpn_payload['IPSec'] = vpn_settings
passcode_policy_payload = general_payload()
passcode_policy_payload['PayloadIdentifier'] = "com.acme.passcodepolicy"
passcode_policy_payload['PayloadType'] = "com.apple.mobiledevice.passwordpolicy"
passcode_policy_payload['PayloadDisplayName'] = "Passcode Policy"
passcode_policy_payload['PayloadDescription'] = "Configures passcode policy."
passcode_policy_payload['maxFailedAttempts'] = 10
passcode_policy_payload['minLength'] = 6
passcode_policy_payload['maxPINAgeInDays'] = 90
passcode_policy_payload['requireAlphanumeric'] = false
passcode_policy_payload['minComplexChars'] = 0
passcode_policy_payload['maxInactivity'] = 5
passcode_policy_payload['forcePIN'] = true
passcode_policy_payload['allowSimple'] = false
passcode_policy_payload['pinHistory'] = 1
passcode_policy_payload['maxGracePeriod'] = 5
Plist::Emit.dump([intranet_webclip_payload, vpn_cert_payload, vpn_payload, passcode_policy_payload])
end
def configuration_payload(request, encrypted_content)
payload = general_payload()
payload['PayloadIdentifier'] = "com.acme.intranet"
payload['PayloadType'] = "Configuration" # do not modify
# strings that show up in UI, customisable
payload['PayloadDisplayName'] = "Encrypted Config"
payload['PayloadDescription'] = "Access to the ACME Intranet"
payload['PayloadExpirationDate'] = Date.today # expire today, for demo purposes
payload['EncryptedPayloadContent'] = StringIO.new(encrypted_content)
Plist::Emit.dump(payload)
end
def init
if @@address == "AUTOMATIC"
@@address = local_ip
print "*** detected address #{@@address} ***\n"
end
ca_cert_ok = false
ra_cert_ok = false
ssl_cert_ok = false
begin
@@root_key = OpenSSL::PKey::RSA.new(File.read(@@root_key_file))
@@root_cert = OpenSSL::X509::Certificate.new(File.read(@@root_cert_file))
@@serial = File.read(@@serial_file).to_i
ca_cert_ok = true
@@ra_key = OpenSSL::PKey::RSA.new(File.read(@@ra_key_file))
@@ra_cert = OpenSSL::X509::Certificate.new(File.read(@@ra_cert_file))
ra_cert_ok = true
@@ssl_key = OpenSSL::PKey::RSA.new(File.read(@@ssl_key_file))
@@ssl_cert = OpenSSL::X509::Certificate.new(File.read(@ssl_cert_file))
@@ssl_cert.extensions.each { |e,ssl_cert_ok|
e.value == "DNS:#{@@address}" && ssl_cert_ok = true
}
if !ssl_cert_ok
print "*** server address changed; issuing new ssl certificate ***\n"
raise
end
rescue
if !ca_cert_ok
then
@@root_key = OpenSSL::PKey::RSA.new(@@rsa_key_size)
@@root_cert = issue_cert( OpenSSL::X509::Name.parse(
"/O=None/CN=ACME Root CA (#{UUIDTools::UUID.random_create().to_s})"),
@@root_key, 1, Time.now, Time.now+(86400*365),
[ ["basicConstraints","CA:TRUE",true],
["keyUsage","Digital Signature,keyCertSign,cRLSign",true] ],
nil, nil, OpenSSL::Digest::SHA1.new)
@@serial = 100
File.open(@@root_key_file, "w") { |f| f.write @@root_key.to_pem }
File.open(@@root_cert_file, "w") { |f| f.write @@root_cert.to_pem }
File.open(@@serial_file, "w") { |f| f.write @@serial.to_s }
end
if !ra_cert_ok
then
@@ra_key = OpenSSL::PKey::RSA.new(@@rsa_key_size)
@@ra_cert = issue_cert( OpenSSL::X509::Name.parse(
"/O=None/CN=ACME SCEP RA"),
@@ra_key, @@serial, Time.now, Time.now+(86400*365),
[ ["basicConstraints","CA:TRUE",true],
["keyUsage","Digital Signature,keyEncipherment",true] ],
@@root_cert, @@root_key, OpenSSL::Digest::SHA1.new)
@@serial += 1
File.open(@@ra_key_file, "w") { |f| f.write @@ra_key.to_pem }
File.open(@@ra_cert_file, "w") { |f| f.write @@ra_cert.to_pem }
end
@@ssl_key = OpenSSL::PKey::RSA.new(@@rsa_key_size)
@@ssl_cert = issue_cert( OpenSSL::X509::Name.parse("/O=None/CN=ACME Profile Service"),
@@ssl_key, @@serial, Time.now, Time.now+(86400*365),
[
["keyUsage","Digital Signature",true] ,
["subjectAltName", "DNS:" + @@address, true]
],
@@root_cert, @@root_key, OpenSSL::Digest::SHA1.new)
@@serial += 1
File.open(@@serial_file, "w") { |f| f.write @@serial.to_s }
File.open(@@ssl_key_file, "w") { |f| f.write @@ssl_key.to_pem }
File.open(@@ssl_cert_file, "w") { |f| f.write @@ssl_cert.to_pem }
end
end
=begin
*************************************************************************
*************************************************************************
=end
init()
world = WEBrick::HTTPServer.new(
:Port => 8443,
:DocumentRoot => Dir::pwd + "/htdocs",
:SSLEnable => true,
:SSLVerifyClient => OpenSSL::SSL::VERIFY_NONE,
:SSLCertificate => @@ssl_cert,
:SSLPrivateKey => @@ssl_key
)
world.mount_proc("/") { |req, res|
res['Content-Type'] = "text/html"
res.body = <<WELCOME_MESSAGE
<style>
body { margin:40px 40px;font-family:Helvetica;}
h1 { font-size:80px; }
p { font-size:60px; }
a { text-decoration:none; }
</style>
<h1 >ACME Inc. Profile Service</h1>
<p>If you had to accept the certificate accessing this page, you should
download the <a href="/CA">root certificate</a> and install it so it becomes trusted.
<p>We are using a self-signed
certificate here, for production it should be issued by a known CA.
<p>After that, go ahead and <a href="/enroll">enroll</a>
WELCOME_MESSAGE
}
world.mount_proc("/CA") { |req, res|
res['Content-Type'] = "application/x-x509-ca-cert"
res.body = @@root_cert.to_der
}
world.mount_proc("/enroll") { |req, res|
HTTPAuth.basic_auth(req, res, "realm") {|user, password|
user == 'apple' && password == 'apple'
}
res['Content-Type'] = "application/x-apple-aspen-config"
configuration = profile_service_payload(req, "signed-auth-token")
signed_profile = OpenSSL::PKCS7.sign(@@ssl_cert, @@ssl_key,
configuration, [], OpenSSL::PKCS7::BINARY)
res.body = signed_profile.to_der
}
world.mount_proc("/profile") { |req, res|
# verify CMS blob, but don't check signer certificate
p7sign = OpenSSL::PKCS7.new(req.body)
store = OpenSSL::X509::Store.new
p7sign.verify(nil, store, nil, OpenSSL::PKCS7::NOVERIFY)
signers = p7sign.signers
# this should be checking whether the signer is a cert we issued
#
if (signers[0].issuer.to_s == @@root_cert.subject.to_s)
print "Request from cert with serial #{signers[0].serial}"
" seen previously: #{@@issued_first_profile.include?(signers[0].serial.to_s)}"
" (profiles issued to #{@@issued_first_profile.to_a}) \n"
if (@@issued_first_profile.include?(signers[0].serial.to_s))
res.set_redirect(WEBrick::HTTPStatus::MovedPermanently, "/enroll")
print res
else
@@issued_first_profile.add(signers[0].serial.to_s)
payload = client_cert_configuration_payload(req)
# vpn_configuration_payload(req)
#File.open("payload", "w") { |f| f.write payload }
encrypted_profile = OpenSSL::PKCS7.encrypt(p7sign.certificates,
payload, OpenSSL::Cipher::Cipher::new("des-ede3-cbc"),
OpenSSL::PKCS7::BINARY)
configuration = configuration_payload(req, encrypted_profile.to_der)
end
else
#File.open("signeddata", "w") { |f| f.write p7sign.data }
device_attributes = Plist::parse_xml(p7sign.data)
#print device_attributes
=begin
# Limit issuing of profiles to one device and validate challenge
if device_attributes['UDID'] == "213cee5cd11778bee2cd1cea624bcc0ab813d235" &&
device_attributes['CHALLENGE'] == "signed-auth-token"
end
=end
configuration = encryption_cert_payload(req, "")
end
if !configuration || configuration.empty?
raise "you lose"
else
# we're either sending a configuration to enroll the profile service cert
# or a profile specifically for this device
res['Content-Type'] = "application/x-apple-aspen-config"
signed_profile = OpenSSL::PKCS7.sign(@@ssl_cert, @@ssl_key,
configuration, [], OpenSSL::PKCS7::BINARY)
res.body = signed_profile.to_der
File.open("profile.der", "w") { |f| f.write signed_profile.to_der }
end
}
=begin
This is a hacked up SCEP service to simplify the profile service demonstration
but clearly doesn't perform any of the security checks a regular service would
enforce.
=end
include OpenSSL::ASN1
world.mount_proc("/scep"){ |req, res|
print "Query #{req.query_string}\n"
query = HTTPUtils::parse_query(req.query_string)
if query['operation'] == "GetCACert"
res['Content-Type'] = "application/x-x509-ca-ra-cert"
#scep_certs = OpenSSL::PKCS7.new()
#scep_certs.type="signed"
#scep_certs.certificates=[@@root_cert, @@ra_cert]
scep_certs = Sequence.new([
OpenSSL::ASN1::ObjectId.new('1.2.840.113549.1.7.2'),
ASN1Data.new([
Sequence.new([
OpenSSL::ASN1::Integer.new(1),
OpenSSL::ASN1::Set.new([
]),
Sequence.new([
OpenSSL::ASN1::ObjectId.new('1.2.840.113549.1.7.1')
]),
ASN1Data.new([
decode(@@root_cert.to_der),
decode(@@ra_cert.to_der)
], 0, :CONTEXT_SPECIFIC),
ASN1Data.new([
], 1, :CONTEXT_SPECIFIC),
OpenSSL::ASN1::Set.new([
])
])
], 0, :CONTEXT_SPECIFIC)
])
res.body = scep_certs.to_der
else
if query['operation'] == "GetCACaps"
res['Content-Type'] = "text/plain"
res.body = "POSTPKIOperation\nSHA-1\nDES3\n"
else
if query['operation'] == "PKIOperation"
p7sign = OpenSSL::PKCS7.new(req.body)
store = OpenSSL::X509::Store.new
p7sign.verify(nil, store, nil, OpenSSL::PKCS7::NOVERIFY)
signers = p7sign.signers
p7enc = OpenSSL::PKCS7.new(p7sign.data)
csr = p7enc.decrypt(@@ra_key, @@ra_cert)
cert = issueCert(csr, 1)
#degenerate_pkcs7 = OpenSSL::PKCS7.new()
#degenerate_pkcs7.type="signed"
#degenerate_pkcs7.certificates=[cert]
degenerate_pkcs7 = Sequence.new([
OpenSSL::ASN1::ObjectId.new('1.2.840.113549.1.7.2'),
ASN1Data.new([
Sequence.new([
OpenSSL::ASN1::Integer.new(1),
OpenSSL::ASN1::Set.new([
]),
Sequence.new([
OpenSSL::ASN1::ObjectId.new('1.2.840.113549.1.7.1')
]),
ASN1Data.new([
decode(cert.to_der)
], 0, :CONTEXT_SPECIFIC),
ASN1Data.new([
], 1, :CONTEXT_SPECIFIC),
OpenSSL::ASN1::Set.new([
])
])
], 0, :CONTEXT_SPECIFIC)
])
enc_cert = OpenSSL::PKCS7.encrypt(p7sign.certificates, degenerate_pkcs7.to_der,
OpenSSL::Cipher::Cipher::new("des-ede3-cbc"), OpenSSL::PKCS7::BINARY)
reply = OpenSSL::PKCS7.sign(@@ra_cert, @@ra_key, enc_cert.to_der, [], OpenSSL::PKCS7::BINARY)
res['Content-Type'] = "application/x-pki-message"
res.body = reply.to_der
end
end
end
}
secret = WEBrick::HTTPServer.new(
:Port => 4443,
:DocumentRoot => Dir::pwd,
:SSLEnable => true,
:SSLCertificate => @@ssl_cert,
:SSLPrivateKey => @@ssl_key,
:SSLVerifyClient => OpenSSL::SSL:: VERIFY_PEER|OpenSSL::SSL::VERIFY_FAIL_IF_NO_PEER_CERT,
:SSLClientCA => @@root_cert,
:SSLCertName => nil # name for auto-gen
# :SSLVerifyDepth => nil,
# :SSLVerifyCallback => nil, # custom verification
# :SSLCertificateStore => nil,
)
=begin
meta["SSL_CLIENT_CERT"] = @client_cert ? @client_cert.to_pem : ""
if @client_cert_chain
@client_cert_chain.each_with_index{|cert, i|
meta["SSL_CLIENT_CERT_CHAIN_#{i}"] = cert.to_pem
}
end
meta["SSL_CIPHER"] = @cipher[0]
meta["SSL_PROTOCOL"] = @cipher[1]
meta["SSL_CIPHER_USEKEYSIZE"] = @cipher[2].to_s
meta["SSL_CIPHER_ALGKEYSIZE"] = @cipher[3].to_s
=end
secret.mount_proc("/") { |req, res|
# client_cert = OpenSSL::X509::Certificate.new(req.meta_vars['SSL_CLIENT_CERT'])
#{client_cert.issuer.to_s}
print "#{req.meta_vars['SSL_CLIENT_CERT'].to_s}\n"
print "#{req.meta_vars['SSL_SERVER_CERT'].to_s}\n"
res['Content-Type'] = "text/html"
res.body = <<WELCOME
<style>
body { margin:40px 40px;font-family:Helvetica;}
h1 { font-size:80px; }
p { font-size:60px; }
a { text-decoration:none; }
</style>
<h1 >ACME Inc. Internal</h1>
<p>Hello #{req.meta_vars['SSL_CLIENT_CERT'].to_s}
x
<p>If you can read this, we are cool.
<p>This connection: #{req.meta_vars["SSL_CIPHER"]}
#{req.meta_vars["SSL_PROTOCOL"]}
#{req.meta_vars["SSL_CIPHER_USEKEYSIZE"]}
#{req.meta_vars["SSL_CIPHER_ALGKEYSIZE"]}
WELCOME
}
trap(:INT) do
world.shutdown
# secret.shutdown
end
world_t = Thread.new {
Thread.current.abort_on_exception = true
world.start
}
=begin
secret_t = Thread.new {
Thread.current.abort_on_exception = true
secret.start
}
=end
world_t.join
#secret_t.join