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7250331472
'GNUPG-1-9-BRANCH'.
261 lines
7.9 KiB
C
261 lines
7.9 KiB
C
/* card-dinsig.c - German signature law (DINSIG) functions
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* Copyright (C) 2002 Free Software Foundation, Inc.
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*
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* This file is part of GnuPG.
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*
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* GnuPG 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 2 of the License, or
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* (at your option) any later version.
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*
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* GnuPG 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, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA
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*/
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/* The German signature law and its bylaw (SigG and SigV) is currently
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used with an interface specification described in DIN V 66291-1.
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The AID to be used is: 'D27600006601'.
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The file IDs for certificates utilize the generic format:
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Cxyz
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C being the hex digit 'C' (12).
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x being the service indicator:
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'0' := SigG conform digital signature.
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'1' := entity authentication.
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'2' := key encipherment.
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'3' := data encipherment.
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'4' := key agreement.
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other values are reserved for future use.
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y being the security environment number using '0' for cards
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not supporting a SE number.
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z being the certificate type:
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'0' := C.CH (base certificate of ard holder) or C.ICC.
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'1' .. '7' := C.CH (business or professional certificate
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of card holder.
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'8' .. 'D' := C.CA (certificate of a CA issue by the Root-CA).
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'E' := C.RCA (self certified certificate of the Root-CA).
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'F' := reserved.
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The file IDs used by default are:
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'1F00' EF.SSD (security service descriptor). [o,o]
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'2F02' EF.GDO (global data objects) [m,m]
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'A000' EF.PROT (signature log). Cyclic file with 20 records of 53 byte.
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Read and update after user authentication. [o,o]
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'B000' EF.PK.RCA.DS (public keys of Root-CA). Size is 512b or size
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of keys. [m (unless a 'C00E' is present),m]
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'B001' EF.PK.CA.DS (public keys of CAs). Size is 512b or size
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of keys. [o,o]
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'C00n' EF.C.CH.DS (digital signature certificate of card holder)
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with n := 0 .. 7. Size is 2k or size of cert. Read and
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update allowed after user authentication. [m,m]
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'C00m' EF.C.CA.DS (digital signature certificate of CA)
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with m := 8 .. E. Size is 1k or size of cert. Read always
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allowed, update after uder authentication. [o,o]
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'C100' EF.C.ICC.AUT (AUT certificate of ICC) [o,m]
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'C108' EF.C.CA.AUT (AUT certificate of CA) [o,m]
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'D000' EF.DM (display message) [-,m]
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The letters in brackets indicate optional or mandatory files: The
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first for card terminals under full control and the second for
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"business" card terminals.
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FIXME: Needs a lot more explanation.
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*/
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#include <config.h>
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#include <errno.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <time.h>
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#ifdef HAVE_OPENSC
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#include <opensc/pkcs15.h>
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#include <ksba.h>
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#include "scdaemon.h"
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#include "card-common.h"
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static int dinsig_read_cert (CARD card, const char *certidstr,
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unsigned char **cert, size_t *ncert);
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/* See card.c for interface description. Frankly we don't do any real
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enumeration but just check whether the well know files are
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available. */
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static int
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dinsig_enum_keypairs (CARD card, int idx,
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unsigned char *keygrip, char **keyid)
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{
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int rc;
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unsigned char *buf;
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size_t buflen;
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KsbaError krc;
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KsbaCert cert;
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/* fixme: We should locate the application via the EF(DIR) and not
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assume a Netkey card */
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if (!idx)
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rc = dinsig_read_cert (card, "DINSIG-DF01.C000", &buf, &buflen);
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else if (idx == 1)
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rc = dinsig_read_cert (card, "DINSIG-DF01.C200", &buf, &buflen);
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else
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rc = -1;
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if (rc)
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return rc;
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cert = ksba_cert_new ();
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if (!cert)
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{
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gpg_error_t tmperr = out_of_core ();
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xfree (buf);
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return tmperr;
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}
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krc = ksba_cert_init_from_mem (cert, buf, buflen);
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xfree (buf);
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if (krc)
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{
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log_error ("failed to parse the certificate at idx %d: %s\n",
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idx, ksba_strerror (krc));
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ksba_cert_release (cert);
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return gpg_error (GPG_ERR_CARD);
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}
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if (card_help_get_keygrip (cert, keygrip))
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{
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log_error ("failed to calculate the keygrip at index %d\n", idx);
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ksba_cert_release (cert);
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return gpg_error (GPG_ERR_CARD);
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}
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ksba_cert_release (cert);
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/* return the iD */
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if (keyid)
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{
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*keyid = xtrymalloc (17);
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if (!*keyid)
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return out_of_core ();
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if (!idx)
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strcpy (*keyid, "DINSIG-DF01.C000");
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else
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strcpy (*keyid, "DINSIG-DF01.C200");
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}
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return 0;
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}
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/* See card.c for interface description */
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static int
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dinsig_read_cert (CARD card, const char *certidstr,
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unsigned char **cert, size_t *ncert)
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{
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int rc;
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struct sc_path path;
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struct sc_file *file;
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unsigned char *buf;
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int buflen;
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if (!strcmp (certidstr, "DINSIG-DF01.C000"))
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sc_format_path ("3F00DF01C000", &path);
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else if (!strcmp (certidstr, "DINSIG-DF01.C200"))
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sc_format_path ("3F00DF01C200", &path);
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else
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return gpg_error (GPG_ERR_INV_ID);
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rc = sc_select_file (card->scard, &path, &file);
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if (rc)
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{
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log_error ("sc_select_file failed: %s\n", sc_strerror (rc));
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return map_sc_err (rc);
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}
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if (file->type != SC_FILE_TYPE_WORKING_EF
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|| file->ef_structure != SC_FILE_EF_TRANSPARENT)
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{
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log_error ("wrong type or structure of certificate EF\n");
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sc_file_free (file);
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return gpg_error (GPG_ERR_CARD);
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}
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if (file->size < 20) /* check against a somewhat arbitrary length */
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{
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log_error ("certificate EF too short\n");
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sc_file_free (file);
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return gpg_error (GPG_ERR_CARD);
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}
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buf = xtrymalloc (file->size);
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if (!buf)
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{
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gpg_error_t tmperr = out_of_core ();
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sc_file_free (file);
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return tmperr;
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}
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rc = sc_read_binary (card->scard, 0, buf, file->size, 0);
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if (rc >= 0 && rc != file->size)
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{
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log_error ("short read on certificate EF\n");
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sc_file_free (file);
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xfree (buf);
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return gpg_error (GPG_ERR_CARD);
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}
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sc_file_free (file);
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if (rc < 0)
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{
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log_error ("error reading certificate EF: %s\n", sc_strerror (rc));
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xfree (buf);
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return map_sc_err (rc);
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}
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buflen = rc;
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/* The object is not a plain certificate but wrapped into id-at
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userCertificate - fixme: we should check the specs and decided
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whether libksba should support it */
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if (buflen > 9 && buf[0] == 0x30 && buf[4] == 6 && buf[5] == 3
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&& buf[6] == 0x55 && buf[7] == 4 && buf[8] == 0x24)
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{
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/* We have to strip the padding. Although this is a good idea
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anyway, we have to do it due to a KSBA problem; KSBA does not
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work correct when the buffer is larger than the ASN.1
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structure and the certificates here are padded with FF. So
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as a workaround we look at the outer structure to get the
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size of the entire thing and adjust the buflen. We can only
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do this when there is a 2 byte length field */
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size_t seqlen;
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if (buf[1] == 0x82)
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{
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seqlen = ((buf[2] << 8) | buf[3]) + 4;
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if (seqlen < buflen)
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buflen = seqlen;
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}
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memmove (buf, buf+9, buflen-9);
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buflen -= 9;
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}
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*cert = buf;
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*ncert = buflen;
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return 0;
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}
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/* Bind our operations to the card */
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void
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card_dinsig_bind (CARD card)
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{
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card->fnc.enum_keypairs = dinsig_enum_keypairs;
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card->fnc.read_cert = dinsig_read_cert;
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}
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#endif /*HAVE_OPENSC*/
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