[Cryptech-Commits] [sw/libhal] 05/14: Unit tests mostly working with PKCS #8.

git at cryptech.is git at cryptech.is
Thu Apr 6 23:38:04 UTC 2017


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sra at hactrn.net pushed a commit to branch pkcs8
in repository sw/libhal.

commit faf6905dd3208dc5e479e2a1a2bec624b2420899
Author: Rob Austein <sra at hactrn.net>
AuthorDate: Mon Apr 3 17:58:02 2017 -0400

    Unit tests mostly working with PKCS #8.
    
    A few parsing problems remaining, mostly with objects large enough
    that PKCS #8 may have pushed them over some buffer size or another.
    These are all with RSA, where the Python code (PyCrypto) already
    supported PKCS #8, so most likely it's a problem in the new C code.
    
    Python ECDSA PKCS #8 shim code is nasty and could use some cleanup.
    If practical, we might want to sub-class ecdsa.keys.SigningKey; we
    might also want to flesh this out into something we can send upstream
    to the author of the Python ecdsa library.
---
 pkcs8.py      |  46 ++++++++++-
 unit-tests.py | 261 ++++++++++++++++++++++++++++++++--------------------------
 2 files changed, 190 insertions(+), 117 deletions(-)

diff --git a/pkcs8.py b/pkcs8.py
index cbd5c27..cd45ff6 100644
--- a/pkcs8.py
+++ b/pkcs8.py
@@ -24,6 +24,11 @@ from pyasn1.type.constraint     import SingleValueConstraint
 from pyasn1.codec.der.encoder   import encode as DER_Encode
 from pyasn1.codec.der.decoder   import decode as DER_Decode
 
+from ecdsa                      import der as ECDSA_DER
+from ecdsa.util                 import oid_ecPublicKey, encoded_oid_ecPublicKey
+from ecdsa.keys                 import SigningKey
+from ecdsa.curves               import find_curve
+
 class AlgorithmIdentifier(Sequence):
     componentType = NamedTypes(
         NamedType(              "algorithm",            ObjectIdentifier()),
@@ -263,6 +268,18 @@ if __name__ == "__main__":
     #print; dumpasn1(der_test_keys["ec_pkcs8"])
     print; print "Reencoded PKCS #8 {} static data".format("matches" if der == der_test_keys["ec_pkcs8"] else "doesn't match")
 
+    # Try doing same thing with ecdsa package ASN.1 utilities.
+    sk = SigningKey.from_der(der_test_keys["ec_rfc5915"])
+    vk = ECDSA_DER.encode_bitstring("\x00\x04" + sk.get_verifying_key().to_string())
+    ec = ECDSA_DER.encode_sequence(ECDSA_DER.encode_integer(1),
+                                   ECDSA_DER.encode_octet_string(sk.to_string()),
+                                   ECDSA_DER.encode_constructed(1, vk))
+    p8 = ECDSA_DER.encode_sequence(ECDSA_DER.encode_integer(0),
+                                   ECDSA_DER.encode_sequence(encoded_oid_ecPublicKey,
+                                                             sk.curve.encoded_oid),
+                                   ECDSA_DER.encode_octet_string(ec))
+    print; print "ECDSA-library PKCS #8 encoding {} pyasn1 PKCS #8 encoding".format("matches" if p8 == der_test_keys["ec_pkcs8"] else "doesn't match")
+
     # Generate ECPrivateKey from  PKCS #8 and check against static data
     ec = ECPrivateKey()
     ec["version"]    = ec_pkcs8_privateKey["version"]
@@ -275,6 +292,33 @@ if __name__ == "__main__":
     print; print "Reencoded PKCS #8 {} static data".format("matches" if der == der_test_keys["ec_rfc5915"] else "doesn't match")
 
     # Paranoia: Make sure we really can load the RFC 5915 we just generated.
-    from ecdsa.keys import SigningKey
     sk = SigningKey.from_der(der)
     print; print "ECDSA Python library parse of reencoded PKCS #8 data: {!r}".format(sk)
+
+    # Same thing with ecdsa package ASN.1 utilities.
+    car, cdr = ECDSA_DER.remove_sequence(der_test_keys["ec_pkcs8"])
+    assert cdr == ""
+    version, cdr = ECDSA_DER.remove_integer(car)
+    assert version == 0
+    car, ec = ECDSA_DER.remove_sequence(cdr)
+    oid, cdr = ECDSA_DER.remove_object(car)
+    assert oid == oid_ecPublicKey
+    oid, cdr = ECDSA_DER.remove_object(cdr)
+    curve = find_curve(oid)
+    assert cdr == ""
+    car, cdr = ECDSA_DER.remove_octet_string(ec)
+    assert cdr == ""
+    car, cdr = ECDSA_DER.remove_sequence(car)
+    assert cdr == ""
+    version, cdr = ECDSA_DER.remove_integer(car)
+    assert version == 1
+    privkey, cdr = ECDSA_DER.remove_octet_string(cdr)
+    tag, car, cdr = ECDSA_DER.remove_constructed(cdr)
+    assert tag == 1
+    assert cdr == ""
+    pubkey, cdr = ECDSA_DER.remove_bitstring(car)
+    assert cdr == ""
+    assert pubkey[:2] == "\x00\x04"
+    sk = SigningKey.from_string(privkey, curve)
+    print; print "ECDSA-library PKCS #8 decoding {} pyasn1 PKCS #8 decoding".format(
+        "matches" if der == sk.to_der() else "doesn't match")
diff --git a/unit-tests.py b/unit-tests.py
index bc7edf7..fbe7e3a 100644
--- a/unit-tests.py
+++ b/unit-tests.py
@@ -57,9 +57,11 @@ except ImportError:
 
 
 try:
+    from ecdsa                  import der as ECDSA_DER
     from ecdsa.keys             import SigningKey as ECDSA_SigningKey, VerifyingKey as ECDSA_VerifyingKey
     from ecdsa.ellipticcurve    import Point
-    from ecdsa.curves           import NIST256p, NIST384p, NIST521p
+    from ecdsa.curves           import NIST256p, NIST384p, NIST521p, find_curve as ECDSA_find_curve
+    from ecdsa.util             import oid_ecPublicKey
     if not pycrypto_loaded:
         from hashlib            import sha256 as SHA256, sha384 as SHA384, sha512 as SHA512
     ecdsa_loaded = True
@@ -917,8 +919,8 @@ class PreloadedRSAKey(PreloadedKey):
         if pycrypto_loaded:
             k1 = RSA.importKey(pem)
             k2 = k1.publickey()
-            cls(HAL_KEY_TYPE_RSA_PRIVATE, keylen, k1, k1.exportKey("DER"), keylen = keylen)
-            cls(HAL_KEY_TYPE_RSA_PUBLIC,  keylen, k2, k2.exportKey("DER"), keylen = keylen)
+            cls(HAL_KEY_TYPE_RSA_PRIVATE, keylen, k1, k1.exportKey(format = "DER", pkcs = 8), keylen = keylen)
+            cls(HAL_KEY_TYPE_RSA_PUBLIC,  keylen, k2, k2.exportKey(format = "DER"          ), keylen = keylen)
 
     def sign(self, text, hash):
         return PKCS1_v1_5.PKCS115_SigScheme(self.obj).sign(hash(text))
@@ -928,12 +930,35 @@ class PreloadedRSAKey(PreloadedKey):
 
 class PreloadedECKey(PreloadedKey):
 
+    @staticmethod
+    def _check(condition):
+        if not condition:
+            raise ECDSA_DER.UnexpectedDER()
+
     @classmethod
     def importKey(cls, curve, pem):
         if ecdsa_loaded:
-            k1 = ECDSA_SigningKey.from_pem(pem)
+            der = ECDSA_DER.unpem(pem)
+            car, cdr = ECDSA_DER.remove_sequence(der)
+            cls._check(cdr == "")
+            version, cdr = ECDSA_DER.remove_integer(car)
+            cls._check(version == 0)
+            algid, pkinfo = ECDSA_DER.remove_sequence(cdr)
+            oid, cdr = ECDSA_DER.remove_object(algid)
+            cls._check(oid == oid_ecPublicKey)
+            oid, cdr = ECDSA_DER.remove_object(cdr)
+            sk_curve = ECDSA_find_curve(oid)
+            cls._check(cdr == "")
+            car, cdr = ECDSA_DER.remove_octet_string(pkinfo)
+            cls._check(cdr == "")
+            car, cdr = ECDSA_DER.remove_sequence(car)
+            cls._check(cdr == "")
+            version, cdr = ECDSA_DER.remove_integer(car)
+            cls._check(version == 1)
+            privkey, cdr = ECDSA_DER.remove_octet_string(cdr)
+            k1 = ECDSA_SigningKey.from_string(privkey, sk_curve)
             k2 = k1.get_verifying_key()
-            cls(HAL_KEY_TYPE_EC_PRIVATE, curve, k1, k1.to_der(), curve = curve)
+            cls(HAL_KEY_TYPE_EC_PRIVATE, curve, k1, der,         curve = curve)
             cls(HAL_KEY_TYPE_EC_PUBLIC,  curve, k2, k2.to_der(), curve = curve)
 
     def sign(self, text, hash):
@@ -945,137 +970,141 @@ class PreloadedECKey(PreloadedKey):
 
 # openssl genrsa 1024
 PreloadedRSAKey.importKey(1024, '''\
------BEGIN RSA PRIVATE KEY-----
-MIICXQIBAAKBgQC95QlDOvlQhdCe/a7eIoX9SGPVfXfA8/62ilnF+NcwLrhxkr2R
-4EVQB65+9AbxqM8Hqol6fhZzmDs48cl2tOFGJpE8iMhiFm4i6SGl2RXYaG0xi+lJ
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-lsTSiPyQjc4dQQJxFduvWHLx28bx+l7FTav7FaKntCJo
------END RSA PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIICdwIBADANBgkqhkiG9w0BAQEFAASCAmEwggJdAgEAAoGBAL3lCUM6+VCF0J79
+rt4ihf1IY9V9d8Dz/raKWcX41zAuuHGSvZHgRVAHrn70BvGozweqiXp+FnOYOzjx
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+XsVNq/sVoqe0Img=
+-----END PRIVATE KEY-----
 ''')
 
 # openssl genrsa 2048
 PreloadedRSAKey.importKey(2048, '''\
------BEGIN RSA PRIVATE KEY-----
-MIIEpAIBAAKCAQEAsbvq6syhDXD/OMVAuLoMceGQLUIiezfShVqFfyMqADjqhFRW
-Wbonn0XV9ZkypU4Ib9n6PtLATNaefhpsUlI4s+20YTlQ7GiwJ9p97/N1o1u060ja
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-EQfc0UFoFHyc3mYEKR4zHheqQG5OFBN89LqG3S+O69vc1qwCvNKL+Q==
------END RSA PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIIEvgIBADANBgkqhkiG9w0BAQEFAASCBKgwggSkAgEAAoIBAQCxu+rqzKENcP84
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+-----END PRIVATE KEY-----
 ''')
 
 # openssl genrsa 4096
 PreloadedRSAKey.importKey(4096, '''\
------BEGIN RSA PRIVATE KEY-----
-MIIJKAIBAAKCAgEAzWpYSQt+DrUNI+EJT/ko92wM2POfFnmm3Kc34nmuK6sez0DJ
-r9Vib9R5K46RNgqcUdAodjU6cy3/MZA53SqP7RwR/LQtWmK2a+T4iey2vQZ0iCDA
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-ZCAemKEexVyzg8cHm9ghj6MLQZe3gs94V6h8I2ifrBBNHMrZgYg2Db0GeyYrr+kZ
-GDjT0DZp0jgyfwKCAQEA2gdTclmrfAU/67ziOJbjkMgfhBdteE1BbJDNUca0zB6q
-Ju4BwNgt0cxHMbltgE2/8hWP95HIaQdh1mIgwSK93MxRbaAvAQfF3muJxvMR5Mru
-DejE+IEK9eZetgkNHGWyfiFzBWHda/Z9PQkqYtRfop5qFBVAPZ4YzR5hT0j64eDQ
-N/z9C0ZB6RL9EcXJgEYgGI3wP8Qsrw3JRBQN0SCVRmrEJm4WIXs+CEHOk56/VbPM
-v82uwbHVghS0U9bEZvNoeq7ZQjS2tRXXRJeOgQyCNvYy670T0KvQZoDb59EbEDSz
-eQZS1J7rDEBHW+VwRSJA8noMEgZdEv8AxbEF2CddWwKCAQAMwH71iXvoW1FNbNxm
-70V7wKO5ExHfJxJ1wQFphYIMbZtn9HG2UFpZHcbKj9Fc8GdbewU/inIljnepC0b5
-v/jLwqT0imm0AmQqCdVNp5mukOg+BOiVEmjN/HTmVO2yE6EZbXHIYkcUBRa3dNxj
-2IitjGp15k27DQSb21VJ7AsH46z5WnuUtgIRXLXxDoXYgLWWfApvYvYJ2lKwma6L
-xnHHwXDvESBoFpn5sZ0jdbXSNl3geFarh7gs753534ys940cBBij+ZbYr14Owc4H
-r0wKdpZvZfD4UC2DLUtVjjSVpeHSWXC/vyjkkdEIKTR6a3kRP8ZliZR7FF4Wjxnv
-NGtvAoIBAEu5g6gRsNewUxUjU0boUT115ExSfrjrzC9S05z1cNH8TIic3YsHClL1
-qjyA9KE9X89K4efQgFTKNZbqGgo6cMsBQ77ZhbnL41Nu8jlhLvPR74BxOgg9eXsS
-eg6rchxMzgO0xmg2J1taDwFl74zHyjeG4bz77IX6JQ8I4C9TX5+YH3lyqsiBrF6x
-M6g6k9Ozh24/zhO3pPVfymmUtX/O20nLxzi5v4H9dfwULxVia33upsxvOaUYiNlX
-K5J641gGbmE93UN7X4HhhhTStrHnkEpalDEASKOPKSCQ3M/U9ptYUoVURuyGDYkB
-wkcOl0HLtdcBwLN59lWkr7X519fNREUCggEBAMk39k+shD2DW8ubE/LgoforwfT2
-558FPxpZ+pGwMHL3ZnLuQuiROyPyQZj/ZmmLAa2TPrwS/ssln46Y2KesejWK/0Hq
-8SaFLhOjacF8u5IOOKBZvx+HOT6ctRNBVyzt9A8wu0DE6nzc5HQpm9TMXrOLuZ0L
-u22yFikwoIgYpU6hBdbg1mnirZS/ZyqJV9gWB6ZYyUAUGdgBqL6euSAAqBp93qz8
-sQLesqTufT1mVZd/ndLyvjDJjNKUE0w1g/1xNtg6N5aM+7pc/DwE/s+EtCxc/858
-dQYLBHIPcw6e0FdL3nTs44BpAqcK28N5eWbe/KaZ3EA0lHRmyOQ++WgU6jo=
------END RSA PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIIJQgIBADANBgkqhkiG9w0BAQEFAASCCSwwggkoAgEAAoICAQDNalhJC34OtQ0j
+4QlP+Sj3bAzY858Weabcpzfiea4rqx7PQMmv1WJv1HkrjpE2CpxR0Ch2NTpzLf8x
+kDndKo/tHBH8tC1aYrZr5PiJ7La9BnSIIMDY0jiCOCYICNmc4P+bnJReMKKD/Any
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+pl2Fz2zOlWFXwNdmhd79HNQ2NkfvBSq54fJ+lsvBL6HcxwmqttYV0JAGK9megjTl
+wXYkgcR5HdLQbKjb8iF414VfZO3ygOcdjhqiVEeJHkIx0zxSgZLFH1jXZ9n11yp0
+Ifd3rAMCwEMdMITxkjAXCFbqID6DnhgTdfsGWyBavrSmgIOAf4ImOHRUNXGovuv7
+DvqwP1YBAxrsZv4ynZcJichk9dOuybBVtn2zm8VdQQ4NiibqoGVtkHyDJnN57lKR
+zWPHZ+earFG1+UDhbfFUBAWh/asWJQIDAQABAoICAHGFBclIWp/SGrLrWHQj5Cno
+Qqla6V5IWJi0qMO2LzTe2qX6zfsoV8ApkdUqcsGE16K3AMVi4SxqDQ/c/r1lGikV
+TDN1d2LuDpZN8bR3Zv3LpXbdcvXgJ25/jTT/fxOdnGTpAW2UPxvlm7G8GCqVzNt6
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+MF5ll1s5fsv7yOTkNseZ9RwOO8FL2D4Vt+SMO6umGunV0ef9iBoDbs1mzztM9ZfV
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+IJ+6OvIBBfW2ay1l5FyGXKReZ074kNym8zIEoEPvXzwkRaMJfUhFG0fFMnlYb6kT
+yw08s0vx5lVn4IRs2NWTh21YYvDI2b6tCQw2Y6Wb7tkd17MFeWNk56plt2xNINBw
+ZgbwnGW8ukA3rSmMga9N1Ot2eSwyEHg8r6Xsq3IRUNZdT9VPqSqE/dGLV2ge//zU
+GmWB+MQkzxnGZqx8/hKUnWiUqqwcwVKtyWNkIB6YoR7FXLODxweb2CGPowtBl7eC
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+BT/rvOI4luOQyB+EF214TUFskM1RxrTMHqom7gHA2C3RzEcxuW2ATb/yFY/3kchp
+B2HWYiDBIr3czFFtoC8BB8Xea4nG8xHkyu4N6MT4gQr15l62CQ0cZbJ+IXMFYd1r
+9n09CSpi1F+inmoUFUA9nhjNHmFPSPrh4NA3/P0LRkHpEv0RxcmARiAYjfA/xCyv
+DclEFA3RIJVGasQmbhYhez4IQc6Tnr9Vs8y/za7BsdWCFLRT1sRm82h6rtlCNLa1
+FddEl46BDII29jLrvRPQq9BmgNvn0RsQNLN5BlLUnusMQEdb5XBFIkDyegwSBl0S
+/wDFsQXYJ11bAoIBAAzAfvWJe+hbUU1s3GbvRXvAo7kTEd8nEnXBAWmFggxtm2f0
+cbZQWlkdxsqP0VzwZ1t7BT+KciWOd6kLRvm/+MvCpPSKabQCZCoJ1U2nma6Q6D4E
+6JUSaM38dOZU7bIToRltcchiRxQFFrd03GPYiK2ManXmTbsNBJvbVUnsCwfjrPla
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+VquHuCzvnfnfjKz3jRwEGKP5ltivXg7BzgevTAp2lm9l8PhQLYMtS1WONJWl4dJZ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+-----END PRIVATE KEY-----
 ''')
 
 # openssl ecparam -genkey -name prime256v1 | openssl ec
 PreloadedECKey.importKey(HAL_CURVE_P256, '''\
------BEGIN EC PRIVATE KEY-----
-MHcCAQEEIPBrVhD1iFF2e8wPkPf4N1038iR8xPgku/CVOT8lcSztoAoGCCqGSM49
-AwEHoUQDQgAE3mB5BmN5Fa4fV74LsDWIpBUxktPqYGJ6WOBrjPs1HWkNU7JHO3qY
-9yy+CXFSPb89GWQgb5wLtNPn4QYMj+KRTA==
------END EC PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIGHAgEAMBMGByqGSM49AgEGCCqGSM49AwEHBG0wawIBAQQg8GtWEPWIUXZ7zA+Q
+9/g3XTfyJHzE+CS78JU5PyVxLO2hRANCAATeYHkGY3kVrh9XvguwNYikFTGS0+pg
+YnpY4GuM+zUdaQ1Tskc7epj3LL4JcVI9vz0ZZCBvnAu00+fhBgyP4pFM
+-----END PRIVATE KEY-----
 ''')
 
 # openssl ecparam -genkey -name secp384r1 | openssl ec
 PreloadedECKey.importKey(HAL_CURVE_P384, '''\
------BEGIN EC PRIVATE KEY-----
-MIGkAgEBBDCVGo35Hbrf3Iys7mWRIm5yjg+6vPIgzbp2jCbDyszBo+wTxmQambG4
-g8yocp4wM6+gBwYFK4EEACKhZANiAATYwa+M8T8jsNHKmMZTvPPflUIfrjuZZo1D
-3kkkmN4r6cTNctjaeRdAfD0X40l4yPnGIP9ParuKVVl1y0TdQ7BS3g/Gj/LP33HD
-ESP8gFDIKFCWSDX0uhmy+HsGsPwgNoY=
------END EC PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIG2AgEAMBAGByqGSM49AgEGBSuBBAAiBIGeMIGbAgEBBDCVGo35Hbrf3Iys7mWR
+Im5yjg+6vPIgzbp2jCbDyszBo+wTxmQambG4g8yocp4wM6+hZANiAATYwa+M8T8j
+sNHKmMZTvPPflUIfrjuZZo1D3kkkmN4r6cTNctjaeRdAfD0X40l4yPnGIP9ParuK
+VVl1y0TdQ7BS3g/Gj/LP33HDESP8gFDIKFCWSDX0uhmy+HsGsPwgNoY=
+-----END PRIVATE KEY-----
 ''')
 
 # openssl ecparam -genkey -name secp521r1 | openssl ec
 PreloadedECKey.importKey(HAL_CURVE_P521, '''\
------BEGIN EC PRIVATE KEY-----
-MIHcAgEBBEIBtf+LKhJNQEJRFQ2cGQPcviwfp9IKSnD5EFTqAPtv7/+t2FtmdHHP
-/fWIlZ7jcC5N9dWy6bKGu3+FqwgZAYLpsqigBwYFK4EEACOhgYkDgYYABADdfcUe
-P0oAZQ5308v5ijcg4hePvhvVi+QKcrwmE9kirXCFoYN1tzPmXZmw8lNJenrbwaNz
-opJR84LBHnomGPogAQGF0aRk0jE8w1j1oMfrrzV6vCWnkh7pyzsDnrLU1HrkWeqw
-ihzwMzYJgFzToDH+fCh7nrBFZZZ9P9gPYMlSM5UMeA==
------END EC PRIVATE KEY-----
+-----BEGIN PRIVATE KEY-----
+MIHuAgEAMBAGByqGSM49AgEGBSuBBAAjBIHWMIHTAgEBBEIBtf+LKhJNQEJRFQ2c
+GQPcviwfp9IKSnD5EFTqAPtv7/+t2FtmdHHP/fWIlZ7jcC5N9dWy6bKGu3+FqwgZ
+AYLpsqihgYkDgYYABADdfcUeP0oAZQ5308v5ijcg4hePvhvVi+QKcrwmE9kirXCF
+oYN1tzPmXZmw8lNJenrbwaNzopJR84LBHnomGPogAQGF0aRk0jE8w1j1oMfrrzV6
+vCWnkh7pyzsDnrLU1HrkWeqwihzwMzYJgFzToDH+fCh7nrBFZZZ9P9gPYMlSM5UM
+eA==
+-----END PRIVATE KEY-----
 ''')
 
 



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