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31e41eea6c
Check to see if NSS is initialized before trying to do so again. If we are temporarily creating a certificate be sure to delete it in order to remove references to it and avoid NSS shutdown issues. In the certificate load validator shut down NSS if we end up initializing it. I'm not entirely sure why but this prevents a later shutdown issue if we are passed the --ca-cert-file option.
264 lines
7.6 KiB
Python
264 lines
7.6 KiB
Python
# Authors:
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# Rob Crittenden <rcritten@redhat.com>
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#
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# Copyright (C) 2010 Red Hat
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# see file 'COPYING' for use and warranty information
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation, either version 3 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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# Certificates should be stored internally DER-encoded. We can be passed
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# a certificate several ways: read if from LDAP, read it from a 3rd party
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# app (dogtag, candlepin, etc) or as user input. The normalize_certificate()
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# function will convert an incoming certificate to DER-encoding.
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# Conventions
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#
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# Where possible the following naming conventions are used:
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#
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# cert: the certificate is a PEM-encoded certificate
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# dercert: the certificate is DER-encoded
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# nsscert: the certificate is an NSS Certificate object
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# rawcert: the cert is in an unknown format
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import os
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import sys
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import base64
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import re
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import nss.nss as nss
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from nss.error import NSPRError
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from ipapython import ipautil
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from ipalib import api
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from ipalib import _
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from ipalib import util
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from ipalib import errors
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from ipapython.dn import DN
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PEM = 0
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DER = 1
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PEM_REGEX = re.compile(r'(?<=-----BEGIN CERTIFICATE-----).*?(?=-----END CERTIFICATE-----)', re.DOTALL)
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_subject_base = None
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def subject_base():
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global _subject_base
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if _subject_base is None:
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config = api.Command['config_show']()['result']
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_subject_base = DN(config['ipacertificatesubjectbase'][0])
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return _subject_base
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def valid_issuer(issuer):
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if api.env.ra_plugin == 'dogtag':
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return DN(issuer) == DN(('CN', 'Certificate Authority'), subject_base())
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else:
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return DN(issuer) == DN(('CN', '%s Certificate Authority' % api.env.realm))
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def strip_header(pem):
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"""
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Remove the header and footer from a certificate.
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"""
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s = pem.find("-----BEGIN CERTIFICATE-----")
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if s >= 0:
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e = pem.find("-----END CERTIFICATE-----")
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pem = pem[s+27:e]
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return pem
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def load_certificate(data, datatype=PEM, dbdir=None):
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"""
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Given a base64-encoded certificate, with or without the
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header/footer, return a request object.
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Returns a nss.Certificate type
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"""
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if type(data) in (tuple, list):
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data = data[0]
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if (datatype == PEM):
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data = strip_header(data)
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data = base64.b64decode(data)
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if not nss.nss_is_initialized():
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if dbdir is None:
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if 'in_tree' in api.env:
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if api.env.in_tree:
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dbdir = api.env.dot_ipa + os.sep + 'alias'
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else:
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dbdir = "/etc/httpd/alias"
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nss.nss_init(dbdir)
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else:
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nss.nss_init_nodb()
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else:
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nss.nss_init(dbdir)
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return nss.Certificate(buffer(data))
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def load_certificate_chain_from_file(filename, dbdir=None):
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"""
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Load a certificate chain from a PEM file.
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Returns a list of nss.Certificate objects.
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"""
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fd = open(filename, 'r')
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data = fd.read()
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fd.close()
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chain = PEM_REGEX.findall(data)
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chain = [load_certificate(cert, PEM, dbdir) for cert in chain]
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return chain
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def load_certificate_from_file(filename, dbdir=None):
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"""
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Load a certificate from a PEM file.
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Returns a nss.Certificate type
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"""
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fd = open(filename, 'r')
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data = fd.read()
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fd.close()
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return load_certificate(data, PEM, dbdir)
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def get_subject(certificate, datatype=PEM, dbdir=None):
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"""
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Load an X509.3 certificate and get the subject.
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"""
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nsscert = load_certificate(certificate, datatype, dbdir)
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subject = nsscert.subject
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del(nsscert)
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return subject
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def get_issuer(certificate, datatype=PEM, dbdir=None):
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"""
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Load an X509.3 certificate and get the issuer.
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"""
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nsscert = load_certificate(certificate, datatype, dbdir)
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issuer = nsscert.issuer
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del(nsscert)
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return issuer
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def get_serial_number(certificate, datatype=PEM, dbdir=None):
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"""
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Return the decimal value of the serial number.
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"""
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nsscert = load_certificate(certificate, datatype, dbdir)
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serial_number = nsscert.serial_number
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del(nsscert)
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return serial_number
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def make_pem(data):
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"""
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Convert a raw base64-encoded blob into something that looks like a PE
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file with lines split to 64 characters and proper headers.
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"""
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pemcert = '\n'.join([data[x:x+64] for x in range(0, len(data), 64)])
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return '-----BEGIN CERTIFICATE-----\n' + \
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pemcert + \
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'\n-----END CERTIFICATE-----'
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def normalize_certificate(rawcert):
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"""
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Incoming certificates should be DER-encoded. If not it is converted to
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DER-format.
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Note that this can't be a normalizer on a Param because only unicode
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variables are normalized.
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"""
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if not rawcert:
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return None
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rawcert = strip_header(rawcert)
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if util.isvalid_base64(rawcert):
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try:
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dercert = base64.b64decode(rawcert)
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except Exception, e:
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raise errors.Base64DecodeError(reason=str(e))
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else:
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dercert = rawcert
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# At this point we should have a certificate, either because the data
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# was base64-encoded and now its not or it came in as DER format.
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# Let's decode it and see. Fetching the serial number will pass the
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# certificate through the NSS DER parser.
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try:
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serial = unicode(get_serial_number(dercert, DER))
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except NSPRError, nsprerr:
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if nsprerr.errno == -8183: # SEC_ERROR_BAD_DER
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raise errors.CertificateFormatError(
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error=_('improperly formatted DER-encoded certificate'))
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else:
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raise errors.CertificateFormatError(error=str(nsprerr))
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return dercert
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def write_certificate(rawcert, filename):
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"""
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Write the certificate to a file in PEM format.
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The cert value can be either DER or PEM-encoded, it will be normalized
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to DER regardless, then back out to PEM.
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"""
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dercert = normalize_certificate(rawcert)
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try:
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fp = open(filename, 'w')
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fp.write(make_pem(base64.b64encode(dercert)))
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fp.close()
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except (IOError, OSError), e:
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raise errors.FileError(reason=str(e))
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def verify_cert_subject(ldap, hostname, dercert):
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"""
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Verify that the certificate issuer we're adding matches the issuer
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base of our installation.
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This assumes the certificate has already been normalized.
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This raises an exception on errors and returns nothing otherwise.
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"""
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nsscert = load_certificate(dercert, datatype=DER)
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subject = str(nsscert.subject)
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issuer = str(nsscert.issuer)
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del(nsscert)
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# Handle both supported forms of issuer, from selfsign and dogtag.
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if (not valid_issuer(issuer)):
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raise errors.CertificateOperationError(error=_('Issuer "%(issuer)s" does not match the expected issuer') % \
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{'issuer' : issuer})
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if __name__ == '__main__':
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# this can be run with:
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# python ipalib/x509.py < /etc/ipa/ca.crt
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from ipalib import api
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api.bootstrap()
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api.finalize()
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nss.nss_init_nodb()
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# Read PEM certs from stdin and print out its components
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certlines = sys.stdin.readlines()
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cert = ''.join(certlines)
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nsscert = load_certificate(cert)
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print nsscert
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