aboutsummaryrefslogtreecommitdiff
path: root/tools/ocspclient.py
blob: 2f567510400740d56bd344bffcd0b04878dcca07 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
#!/usr/bin/env python
#
# This file is part of pyasn1-modules software.
#
# Copyright (c) 2005-2016, Ilya Etingof <ilya@glas.net>
# License: http://pyasn1.sf.net/license.html
#
import hashlib
import sys

try:
    import urllib2
except ImportError:
    import urllib.request as urllib2

from pyasn1.codec.der import decoder, encoder
from pyasn1.type import univ

from pyasn1_modules import rfc2560, rfc2459, pem

sha1oid = univ.ObjectIdentifier((1, 3, 14, 3, 2, 26))


# noinspection PyClassHasNoInit
class ValueOnlyBitStringEncoder(encoder.encoder.BitStringEncoder):
    # These methods just do not encode tag and length fields of TLV
    def encodeTag(self, *args):
        return ''

    def encodeLength(self, *args):
        return ''

    def encodeValue(*args):
        substrate, isConstructed = encoder.encoder.BitStringEncoder.encodeValue(*args)
        # OCSP-specific hack follows: cut off the "unused bit count"
        # encoded bit-string value.
        return substrate[1:], isConstructed

    def __call__(self, bitStringValue):
        return self.encode(None, bitStringValue, defMode=True, maxChunkSize=0)


valueOnlyBitStringEncoder = ValueOnlyBitStringEncoder()


# noinspection PyShadowingNames
def mkOcspRequest(issuerCert, userCert):
    issuerTbsCertificate = issuerCert.getComponentByName('tbsCertificate')
    issuerSubject = issuerTbsCertificate.getComponentByName('subject')

    userTbsCertificate = userCert.getComponentByName('tbsCertificate')
    userIssuer = userTbsCertificate.getComponentByName('issuer')

    assert issuerSubject == userIssuer, '%s\n%s' % (
        issuerSubject.prettyPrint(), userIssuer.prettyPrint()
    )

    userIssuerHash = hashlib.sha1(
        encoder.encode(userIssuer)
    ).digest()

    issuerSubjectPublicKey = issuerTbsCertificate.getComponentByName('subjectPublicKeyInfo').getComponentByName(
        'subjectPublicKey')

    issuerKeyHash = hashlib.sha1(
        valueOnlyBitStringEncoder(issuerSubjectPublicKey)
    ).digest()

    userSerialNumber = userTbsCertificate.getComponentByName('serialNumber')

    # Build request object

    request = rfc2560.Request()

    reqCert = request.setComponentByName('reqCert').getComponentByName('reqCert')

    hashAlgorithm = reqCert.setComponentByName('hashAlgorithm').getComponentByName('hashAlgorithm')
    hashAlgorithm.setComponentByName('algorithm', sha1oid)

    reqCert.setComponentByName('issuerNameHash', userIssuerHash)
    reqCert.setComponentByName('issuerKeyHash', issuerKeyHash)
    reqCert.setComponentByName('serialNumber', userSerialNumber)

    ocspRequest = rfc2560.OCSPRequest()

    tbsRequest = ocspRequest.setComponentByName('tbsRequest').getComponentByName('tbsRequest')
    tbsRequest.setComponentByName('version', 'v1')

    requestList = tbsRequest.setComponentByName('requestList').getComponentByName('requestList')
    requestList.setComponentByPosition(0, request)

    return ocspRequest


def parseOcspResponse(ocspResponse):
    responseStatus = ocspResponse.getComponentByName('responseStatus')
    assert responseStatus == rfc2560.OCSPResponseStatus('successful'), responseStatus.prettyPrint()
    responseBytes = ocspResponse.getComponentByName('responseBytes')
    responseType = responseBytes.getComponentByName('responseType')
    assert responseType == rfc2560.id_pkix_ocsp_basic, responseType.prettyPrint()

    response = responseBytes.getComponentByName('response')

    basicOCSPResponse, _ = decoder.decode(
        response, asn1Spec=rfc2560.BasicOCSPResponse()
    )

    tbsResponseData = basicOCSPResponse.getComponentByName('tbsResponseData')

    response0 = tbsResponseData.getComponentByName('responses').getComponentByPosition(0)

    return (
        tbsResponseData.getComponentByName('producedAt'),
        response0.getComponentByName('certID'),
        response0.getComponentByName('certStatus').getName(),
        response0.getComponentByName('thisUpdate')
    )


if len(sys.argv) != 2:
    print("""Usage:
$ cat CACertificate.pem userCertificate.pem | %s <ocsp-responder-url>""" % sys.argv[0])
    sys.exit(-1)
else:
    ocspUrl = sys.argv[1]

# Parse CA and user certificates

issuerCert, _ = decoder.decode(
    pem.readPemBlocksFromFile(
        sys.stdin, ('-----BEGIN CERTIFICATE-----', '-----END CERTIFICATE-----')
    )[1],
    asn1Spec=rfc2459.Certificate()
)
# noinspection PyRedeclaration
userCert, _ = decoder.decode(
    pem.readPemBlocksFromFile(
        sys.stdin, ('-----BEGIN CERTIFICATE-----', '-----END CERTIFICATE-----')
    )[1],
    asn1Spec=rfc2459.Certificate()
)

# Build OCSP request

ocspReq = mkOcspRequest(issuerCert, userCert)

# Use HTTP POST to get response (see Appendix A of RFC 2560)
# In case you need proxies, set the http_proxy env variable

httpReq = urllib2.Request(
    ocspUrl,
    encoder.encode(ocspReq),
    {'Content-Type': 'application/ocsp-request'}
)
httpRsp = urllib2.urlopen(httpReq).read()

# Process OCSP response

# noinspection PyRedeclaration
ocspRsp, _ = decoder.decode(httpRsp, asn1Spec=rfc2560.OCSPResponse())

producedAt, certId, certStatus, thisUpdate = parseOcspResponse(ocspRsp)

print('Certificate ID %s is %s at %s till %s\n' % (certId.getComponentByName('serialNumber'),
                                                   certStatus, producedAt, thisUpdate))