- added commandline-option to test PACE currently with hard coded secret etc. git-svn-id: https://vsmartcard.svn.sourceforge.net/svnroot/vsmartcard@41 96b47cad-a561-4643-ad3b-153ac7d7599c
714 lines
20 KiB
C
714 lines
20 KiB
C
/*
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* Copyright (C) 2010 Frank Morgner
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*
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* This file is part of ccid.
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*
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* ccid is free software: you can redistribute it and/or modify it under the
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* terms of the GNU General Public License as published by the Free Software
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* Foundation, either version 3 of the License, or (at your option) any later
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* version.
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*
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* ccid is distributed in the hope that it will be useful, but WITHOUT ANY
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* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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* FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
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* details.
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*
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* You should have received a copy of the GNU General Public License along with
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* ccid. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <opensc/log.h>
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#include "pace.h"
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#define ASN1_APP_EXP_OPT(stname, field, type, tag) ASN1_EX_TYPE(ASN1_TFLG_EXPTAG|ASN1_TFLG_APPLICATION|ASN1_TFLG_OPTIONAL, tag, stname, field, type)
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/*
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* MSE:Set AT
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*/
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typedef struct pace_mse_set_at_cd_st {
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ASN1_OBJECT *cryptographic_mechanism_reference;
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ASN1_INTEGER *key_reference1;
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ASN1_INTEGER *key_reference2;
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ASN1_INTEGER *auxiliary_data;
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ASN1_INTEGER *eph_pub_key;
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ASN1_INTEGER *cha_template;
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} PACE_MSE_SET_AT_C;
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ASN1_SEQUENCE(PACE_MSE_SET_AT_C) = {
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/* 0x80
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* Cryptographic mechanism reference */
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ASN1_IMP_OPT(PACE_MSE_SET_AT_C, cryptographic_mechanism_reference, ASN1_OBJECT, 0),
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/* 0x83
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* Reference of a public key / secret key */
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ASN1_IMP_OPT(PACE_MSE_SET_AT_C, key_reference1, ASN1_INTEGER, 3),
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/* 0x84
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* Reference of a private key / Reference for computing a session key */
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ASN1_IMP_OPT(PACE_MSE_SET_AT_C, key_reference2, ASN1_INTEGER, 4),
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/* 0x67
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* Auxiliary authenticated data */
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ASN1_APP_EXP_OPT(PACE_MSE_SET_AT_C, auxiliary_data, ASN1_INTEGER, 7),
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/* 0x91
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* Ephemeral Public Key */
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ASN1_IMP_OPT(PACE_MSE_SET_AT_C, eph_pub_key, ASN1_INTEGER, 0x11),
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/* 0x7F4C
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* Certificate Holder Authorization Template */
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ASN1_APP_EXP_OPT(PACE_MSE_SET_AT_C, cha_template, ASN1_INTEGER, 0x4c),
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} ASN1_SEQUENCE_END(PACE_MSE_SET_AT_C)
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IMPLEMENT_ASN1_FUNCTIONS(PACE_MSE_SET_AT_C)
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/*
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* General Authenticate
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*/
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/* Protocol Command Data */
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typedef struct pace_gen_auth_cd_st {
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ASN1_OCTET_STRING *mapping_data;
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ASN1_OCTET_STRING *eph_pub_key;
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ASN1_OCTET_STRING *auth_token;
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} PACE_GEN_AUTH_C;
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ASN1_SEQUENCE(PACE_GEN_AUTH_C) = {
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/* 0x81
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* Mapping Data */
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ASN1_IMP_OPT(PACE_GEN_AUTH_C, mapping_data, ASN1_INTEGER, 1),
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/* 0x83
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* Ephemeral Public Key */
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ASN1_IMP_OPT(PACE_GEN_AUTH_C, eph_pub_key, ASN1_INTEGER, 3),
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/* 0x85
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* Authentication Token */
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ASN1_IMP_OPT(PACE_GEN_AUTH_C, auth_token, ASN1_INTEGER, 5),
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} ASN1_SEQUENCE_END(PACE_GEN_AUTH_C)
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IMPLEMENT_ASN1_FUNCTIONS(PACE_GEN_AUTH_C)
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/* Protocol Response Data */
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typedef struct pace_gen_auth_rapdu_body_st {
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ASN1_INTEGER *enc_nonce;
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ASN1_INTEGER *mapping_data;
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ASN1_INTEGER *eph_pub_key;
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ASN1_INTEGER *auth_token;
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ASN1_INTEGER *cert_auth1;
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ASN1_INTEGER *cert_auth2;
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} PACE_GEN_AUTH_R_BODY;
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ASN1_SEQUENCE(PACE_GEN_AUTH_R_BODY) = {
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/* 0x80
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* Encrypted Nonce */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, enc_nonce, ASN1_INTEGER, 0),
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/* 0x82
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* Mapping Data */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, mapping_data, ASN1_INTEGER, 2),
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/* 0x84
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* Ephemeral Public Key */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, eph_pub_key, ASN1_INTEGER, 4),
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/* 0x86
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* Authentication Token */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, auth_token, ASN1_INTEGER, 6),
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/* 0x87
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* Certification Authority Reference */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, cert_auth1, ASN1_INTEGER, 7),
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/* 0x88
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* Certification Authority Reference */
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ASN1_IMP_OPT(PACE_GEN_AUTH_R_BODY, cert_auth2, ASN1_INTEGER, 8),
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} ASN1_SEQUENCE_END(PACE_GEN_AUTH_R_BODY)
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IMPLEMENT_ASN1_FUNCTIONS(PACE_GEN_AUTH_R_BODY)
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typedef PACE_GEN_AUTH_R_BODY PACE_GEN_AUTH_R;
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/* 0x7C
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* Dynamic Authentication Data */
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ASN1_ITEM_TEMPLATE(PACE_GEN_AUTH_R) =
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ASN1_EX_TEMPLATE_TYPE(
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ASN1_TFLG_IMPTAG|ASN1_TFLG_APPLICATION,
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0x1c, PACE_GEN_AUTH_R, PACE_GEN_AUTH_R_BODY)
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ASN1_ITEM_TEMPLATE_END(PACE_GEN_AUTH_R)
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IMPLEMENT_ASN1_FUNCTIONS(PACE_GEN_AUTH_R)
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#ifdef NO_PACE
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inline int GetReadersPACECapabilities(sc_context_t *ctx, sc_card_t *card,
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const __u8 *in, __u8 **out, size_t *outlen) {
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_NOT_SUPPORTED);
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}
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inline int EstablishPACEChannel(sc_context_t *ctx, sc_card_t *card,
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const __u8 *in, __u8 **out, size_t *outlen) {
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_NOT_SUPPORTED);
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}
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void pace_test(sc_context_t *ctx, sc_card_t *card) {
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_NOT_SUPPORTED);
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}
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#else
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#include <opensc/opensc.h>
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#include <opensc/ui.h>
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#include <openssl/objects.h>
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#include <openssl/err.h>
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#include <asm/byteorder.h>
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#include <string.h>
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#include <openssl/pace.h>
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uint16_t ssc = 0;
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int GetReadersPACECapabilities(sc_context_t *ctx, sc_card_t *card,
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const __u8 *in, __u8 **out, size_t *outlen) {
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if (!out || !outlen)
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_INVALID_ARGUMENTS);
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__u8 *result = realloc(*out, 2);
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if (!result)
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_OUT_OF_MEMORY);
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*out = result;
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*outlen = 2;
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/* lengthBitMap */
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*result = 1;
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result++;
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/* BitMap */
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*result = PACE_BITMAP_PACE|PACE_BITMAP_EID;
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_SUCCESS);
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}
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/** select and read EF.CardAccess */
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int get_ef_card_access(sc_context_t *ctx, sc_card_t *card,
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__u8 **ef_cardaccess, size_t *length_ef_cardaccess)
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{
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int r;
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char buf[9];
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sc_path_t path;
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sc_file_t *file;
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snprintf(buf, sizeof buf, "3f00%04x", FID_EF_CARDACCESS);
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sc_format_path(buf, &path);
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//printf("%s:%d\n", __FILE__, __LINE__);
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SC_TEST_RET(ctx, sc_select_file(card, &path, &file),
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"Could not select EF.CardAccess.");
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//printf("%s:%d\n", __FILE__, __LINE__);
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ssc++;
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*length_ef_cardaccess = file->size;
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*ef_cardaccess = malloc(*length_ef_cardaccess);
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if (!*ef_cardaccess)
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_OUT_OF_MEMORY);
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r = sc_read_binary(card, 0, *ef_cardaccess, *length_ef_cardaccess, 0);
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ssc++;
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SC_TEST_RET(ctx, r, "Could not read EF.CardAccess.");
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*length_ef_cardaccess = r;
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_SUCCESS);
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}
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int pace_mse_set_at(sc_context_t *ctx, sc_card_t *card,
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int protocol, int secret_key, int reference)
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{
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sc_apdu_t apdu;
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unsigned char *d = NULL;
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PACE_MSE_SET_AT_C *data = NULL;
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int r;
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memset(&apdu, 0, sizeof apdu);
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apdu.ins = 0x22;
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apdu.p1 = 0xc1;
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apdu.p2 = 0xa4;
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apdu.flags = SC_APDU_FLAGS_NO_GET_RESP|SC_APDU_FLAGS_NO_RETRY_WL;
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data = PACE_MSE_SET_AT_C_new();
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if (!data) {
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r = SC_ERROR_OUT_OF_MEMORY;
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goto err;
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}
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data->cryptographic_mechanism_reference = OBJ_nid2obj(protocol);
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data->key_reference1 = ASN1_INTEGER_new();
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data->key_reference2 = ASN1_INTEGER_new();
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if (!data->cryptographic_mechanism_reference
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|| !data->key_reference1
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|| !data->key_reference2) {
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r = SC_ERROR_OUT_OF_MEMORY;
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goto err;
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}
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if (!ASN1_INTEGER_set(data->key_reference1, secret_key)
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|| !ASN1_INTEGER_set(data->key_reference2, reference)) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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r = i2d_PACE_MSE_SET_AT_C(data, &d);
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if (r < 0) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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apdu.data = (const u8 *) d;
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apdu.datalen = r;
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apdu.lc = r;
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r = sc_transmit_apdu(card, &apdu);
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ssc++;
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if (r < 0)
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goto err;
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if (apdu.resplen) {
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r = SC_ERROR_UNKNOWN_DATA_RECEIVED;
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goto err;
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}
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if (apdu.sw1 == 0x63) {
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if ((apdu.sw2 & 0xc0) == 0xc0) {
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sc_error(card->ctx, "Verification failed (remaining tries: %d%s)\n",
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apdu.sw2 & 0x0f,
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(apdu.sw2 & 0x0f) == 1? ", password must be resumed":
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(apdu.sw2 & 0x0f) == 0? ", password must be unblocked":
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"");
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r = SC_ERROR_PIN_CODE_INCORRECT;
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goto err;
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} else {
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sc_error(card->ctx, "Unknown SWs; SW1=%02X, SW2=%02X\n",
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apdu.sw1, apdu.sw2);
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r = SC_ERROR_CARD_CMD_FAILED;
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goto err;
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}
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} else if (apdu.sw1 == 0x62 && apdu.sw2 == 0x83) {
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sc_error(card->ctx, "Password is deactivated\n");
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r = SC_ERROR_AUTH_METHOD_BLOCKED;
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goto err;
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} else {
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r = sc_check_sw(card, apdu.sw1, apdu.sw2);
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}
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err:
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if (data) {
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if (data->cryptographic_mechanism_reference)
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ASN1_OBJECT_free(data->cryptographic_mechanism_reference);
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if (data->key_reference1)
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ASN1_INTEGER_free(data->key_reference1);
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if (data->key_reference2)
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ASN1_INTEGER_free(data->key_reference2);
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PACE_MSE_SET_AT_C_free(data);
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}
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if (d)
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free(d);
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if (apdu.resplen)
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free(apdu.resp);
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SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, r);
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}
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int pace_gen_auth(sc_context_t *ctx, sc_card_t *card,
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int step, const u8 *in, size_t in_len, u8 **out, size_t *out_len)
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{
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sc_apdu_t apdu;
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PACE_GEN_AUTH_C *c_data = NULL;
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PACE_GEN_AUTH_R *r_data = NULL;
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unsigned char *d = NULL, *p;
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int r, l;
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memset(&apdu, 0, sizeof apdu);
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apdu.ins = 0x86;
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apdu.p1 = 0;
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apdu.p2 = 0;
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apdu.flags = SC_APDU_FLAGS_NO_GET_RESP|SC_APDU_FLAGS_NO_RETRY_WL;
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c_data = PACE_GEN_AUTH_C_new();
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if (!c_data) {
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r = SC_ERROR_OUT_OF_MEMORY;
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goto err;
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}
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switch(step) {
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case 1:
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break;
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case 2:
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c_data->mapping_data = ASN1_OCTET_STRING_new();
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if (!c_data->mapping_data
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|| !M_ASN1_OCTET_STRING_set(
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c_data->mapping_data, in, in_len)) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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break;
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case 3:
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c_data->eph_pub_key = ASN1_OCTET_STRING_new();
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if (!c_data->eph_pub_key
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|| !M_ASN1_OCTET_STRING_set(
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c_data->eph_pub_key, in, in_len)) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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break;
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case 4:
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c_data->auth_token = ASN1_OCTET_STRING_new();
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if (!c_data->auth_token
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|| !M_ASN1_OCTET_STRING_set(
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c_data->auth_token, in, in_len)) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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break;
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default:
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r = SC_ERROR_INVALID_ARGUMENTS;
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goto err;
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}
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r = i2d_PACE_GEN_AUTH_C(c_data, &d);
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if (r < 0) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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apdu.data = (const u8 *) d;
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apdu.datalen = r;
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apdu.lc = r;
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r = sc_transmit_apdu(card, &apdu);
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ssc++;
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if (r < 0)
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goto err;
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r = sc_check_sw(card, apdu.sw1, apdu.sw2);
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if (r < 0)
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goto err;
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if (!d2i_PACE_GEN_AUTH_R(&r_data,
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(const unsigned char **) &apdu.resp, apdu.resplen)) {
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r = SC_ERROR_INTERNAL;
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goto err;
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}
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switch(step) {
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case 1:
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if (!r_data->enc_nonce
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|| r_data->mapping_data
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|| r_data->eph_pub_key
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|| r_data->auth_token) {
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r = SC_ERROR_UNKNOWN_DATA_RECEIVED;
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goto err;
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}
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p = r_data->enc_nonce->data;
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l = r_data->enc_nonce->length;
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break;
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case 2:
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if (r_data->enc_nonce
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|| !r_data->mapping_data
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|| r_data->eph_pub_key
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|| r_data->auth_token) {
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r = SC_ERROR_UNKNOWN_DATA_RECEIVED;
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goto err;
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}
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p = r_data->mapping_data->data;
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l = r_data->mapping_data->length;
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break;
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case 3:
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if (r_data->enc_nonce
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|| r_data->mapping_data
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|| !r_data->eph_pub_key
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|| r_data->auth_token) {
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r = SC_ERROR_UNKNOWN_DATA_RECEIVED;
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goto err;
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}
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p = r_data->eph_pub_key->data;
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l = r_data->eph_pub_key->length;
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break;
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case 4:
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if (r_data->enc_nonce
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|| r_data->mapping_data
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|| r_data->eph_pub_key
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|| !r_data->auth_token) {
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r = SC_ERROR_UNKNOWN_DATA_RECEIVED;
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goto err;
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}
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p = r_data->auth_token->data;
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l = r_data->auth_token->length;
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break;
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default:
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r = SC_ERROR_INVALID_ARGUMENTS;
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goto err;
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}
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*out = malloc(l);
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if (!*out) {
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r = SC_ERROR_OUT_OF_MEMORY;
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goto err;
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}
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memcpy(p, *out, l);
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*out_len = l;
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err:
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if (c_data) {
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if (c_data->mapping_data)
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ASN1_OCTET_STRING_free(c_data->mapping_data);
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if (c_data->eph_pub_key)
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ASN1_OCTET_STRING_free(c_data->eph_pub_key);
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if (c_data->auth_token)
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ASN1_OCTET_STRING_free(c_data->auth_token);
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PACE_GEN_AUTH_C_free(c_data);
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}
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if (d)
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free(d);
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if (r_data) {
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if (r_data->mapping_data)
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ASN1_OCTET_STRING_free(r_data->mapping_data);
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if (r_data->eph_pub_key)
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ASN1_OCTET_STRING_free(r_data->eph_pub_key);
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if (r_data->auth_token)
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ASN1_OCTET_STRING_free(r_data->auth_token);
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PACE_GEN_AUTH_R_free(r_data);
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}
|
|
if (apdu.resplen)
|
|
free(apdu.resp);
|
|
|
|
SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, r);
|
|
}
|
|
|
|
PACE_SEC *
|
|
get_psec(sc_card_t *card, const char *pin, size_t length_pin, u8 pin_id)
|
|
{
|
|
sc_ui_hints_t hints;
|
|
char *p;
|
|
PACE_SEC *r;
|
|
int sc_result;
|
|
|
|
if (pin && length_pin)
|
|
return PACE_SEC_new(pin, length_pin, pin_id);
|
|
|
|
memset(&hints, 0, sizeof(hints));
|
|
hints.dialog_name = "ccid.PACE";
|
|
hints.card = card;
|
|
switch(pin_id) {
|
|
case PACE_MRZ:
|
|
hints.prompt = "Enter MRZ";
|
|
break;
|
|
case PACE_CAN:
|
|
hints.prompt = "Enter CAN";
|
|
break;
|
|
case PACE_PIN:
|
|
hints.prompt = "Enter PIN";
|
|
break;
|
|
case PACE_PUK:
|
|
hints.prompt = "Enter PUK";
|
|
break;
|
|
default:
|
|
return NULL;
|
|
}
|
|
hints.usage = SC_UI_USAGE_OTHER;
|
|
sc_result = sc_ui_get_pin(&hints, &p);
|
|
if (sc_result < 0) {
|
|
sc_error(card->ctx, "Could not read PACE secret (%s).\n",
|
|
sc_strerror(sc_result));
|
|
return NULL;
|
|
}
|
|
|
|
r = PACE_SEC_new(p, strlen(p), pin_id);
|
|
|
|
OPENSSL_cleanse(p, strlen(p));
|
|
free(p);
|
|
|
|
return r;
|
|
}
|
|
|
|
void debug_ossl(sc_context_t *ctx) {
|
|
unsigned long r = ERR_get_error();
|
|
while (r) {
|
|
sc_error(ctx, ERR_error_string(r, NULL));
|
|
}
|
|
}
|
|
|
|
int EstablishPACEChannel(sc_context_t *ctx, sc_card_t *card,
|
|
const __u8 *in, __u8 **out, size_t *outlen)
|
|
{
|
|
__u8 pin_id;
|
|
size_t length_chat, length_pin, length_cert_desc, length_ef_cardaccess;
|
|
const __u8 *chat, *pin, *certificate_description;
|
|
__u8 *ef_cardaccess;
|
|
PACEInfo *info = NULL;
|
|
PACEDomainParameterInfo *static_dp = NULL, *eph_dp = NULL;
|
|
BUF_MEM *enc_nonce, *nonce = NULL, *mdata = NULL, *mdata_opp = NULL,
|
|
*k_enc = NULL, *k_mac = NULL, *token_opp = NULL,
|
|
*token = NULL, *pub = NULL, *pub_opp = NULL, *key = NULL;
|
|
PACE_SEC *sec = NULL;
|
|
PACE_CTX *pctx = NULL;
|
|
int r;
|
|
|
|
if (!in || !out || !outlen)
|
|
SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, SC_ERROR_INVALID_ARGUMENTS);
|
|
|
|
pin_id = *in;
|
|
in++;
|
|
|
|
length_chat = *in;
|
|
in++;
|
|
chat = in;
|
|
in += length_chat;
|
|
|
|
length_pin = *in;
|
|
in++;
|
|
pin = in;
|
|
in += length_pin;
|
|
|
|
length_cert_desc = (__le16_to_cpu((__le16) *in));
|
|
in += sizeof (__le16);
|
|
certificate_description = in;
|
|
|
|
enc_nonce = BUF_MEM_new();
|
|
if (!enc_nonce) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
r = get_ef_card_access(ctx, card, &ef_cardaccess, &length_ef_cardaccess);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
if (!parse_ef_card_access(ef_cardaccess, length_ef_cardaccess,
|
|
&info, &static_dp)) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
r = pace_mse_set_at(ctx, card, info->protocol, pin_id, 1);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
r = pace_gen_auth(ctx, card, 1, NULL, 0, (u8 **) &enc_nonce->data,
|
|
&enc_nonce->length);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
enc_nonce->max = enc_nonce->length;
|
|
|
|
sec = get_psec(card, (char *) pin, length_pin, pin_id);
|
|
if (!sec) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
pctx = PACE_CTX_new();
|
|
if (!pctx || !PACE_CTX_init(pctx, info)) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
|
|
nonce = PACE_STEP2_dec_nonce(sec, enc_nonce, pctx);
|
|
|
|
mdata_opp = BUF_MEM_new();
|
|
mdata = PACE_STEP3A_map_generate_key(static_dp, pctx);
|
|
if (!nonce || !mdata || !mdata_opp) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
r = pace_gen_auth(ctx, card, 2, (u8 *) mdata->data, mdata->length,
|
|
(u8 **) &mdata_opp->data, &mdata_opp->length);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
mdata_opp->max = mdata_opp->length;
|
|
|
|
eph_dp = PACE_STEP3A_map_compute_key(static_dp, pctx, nonce, mdata_opp);
|
|
pub = PACE_STEP3B_dh_generate_key(eph_dp, pctx);
|
|
pub_opp = BUF_MEM_new();
|
|
if (!eph_dp || !pub || !pub_opp) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
r = pace_gen_auth(ctx, card, 3, (u8 *) pub->data, pub->length,
|
|
(u8 **) &pub_opp->data, &pub_opp->length);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
pub_opp->max = pub_opp->length;
|
|
|
|
key = PACE_STEP3B_dh_compute_key(eph_dp, pctx, pub_opp);
|
|
if (!key ||
|
|
!PACE_STEP3C_derive_keys(key, pctx, &k_mac, &k_enc)) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
token = PACE_STEP3D_compute_authentication_token(pctx,
|
|
eph_dp, info, pub_opp, k_mac, ssc);
|
|
token_opp = BUF_MEM_new();
|
|
if (!token || !token_opp) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
r = pace_gen_auth(ctx, card, 4, (u8 *) token->data, token->length,
|
|
(u8 **) &token_opp->data, &token_opp->length);
|
|
if (r < 0) {
|
|
goto err;
|
|
}
|
|
token_opp->max = token_opp->length;
|
|
|
|
if (!PACE_STEP3D_verify_authentication_token(pctx,
|
|
eph_dp, info, pub_opp, k_mac, token_opp, ssc)) {
|
|
r = SC_ERROR_INTERNAL;
|
|
debug_ossl(ctx);
|
|
goto err;
|
|
}
|
|
|
|
/* XXX parse CHAT to check role of terminal */
|
|
|
|
err:
|
|
if (info)
|
|
PACEInfo_free(info);
|
|
if (static_dp)
|
|
PACEDomainParameterInfo_clear_free(static_dp);
|
|
if (eph_dp)
|
|
PACEDomainParameterInfo_clear_free(eph_dp);
|
|
if (enc_nonce)
|
|
BUF_MEM_free(enc_nonce);
|
|
if (nonce) {
|
|
OPENSSL_cleanse(nonce->data, nonce->length);
|
|
BUF_MEM_free(nonce);
|
|
}
|
|
if (mdata)
|
|
BUF_MEM_free(mdata);
|
|
if (mdata_opp)
|
|
BUF_MEM_free(mdata_opp);
|
|
if (k_enc) {
|
|
OPENSSL_cleanse(k_enc->data, k_enc->length);
|
|
BUF_MEM_free(k_enc);
|
|
}
|
|
if (k_mac) {
|
|
OPENSSL_cleanse(k_mac->data, k_mac->length);
|
|
BUF_MEM_free(k_mac);
|
|
}
|
|
if (token_opp)
|
|
BUF_MEM_free(token_opp);
|
|
if (token)
|
|
BUF_MEM_free(token);
|
|
if (pub)
|
|
BUF_MEM_free(pub);
|
|
if (pub_opp)
|
|
BUF_MEM_free(pub_opp);
|
|
if (key) {
|
|
OPENSSL_cleanse(key->data, key->length);
|
|
BUF_MEM_free(key);
|
|
}
|
|
if (sec)
|
|
PACE_SEC_clean_free(sec);
|
|
if (pctx)
|
|
PACE_CTX_clear_free(pctx);
|
|
|
|
SC_FUNC_RETURN(ctx, SC_LOG_TYPE_DEBUG, r);
|
|
}
|
|
|
|
void pace_test(sc_context_t *ctx, sc_card_t *card)
|
|
{
|
|
__u8 in[16];
|
|
__u8 *out = NULL;
|
|
size_t outlen;
|
|
|
|
in[0] = PACE_CAN; // pin_id
|
|
in[1] = 0; // length_chat
|
|
in[2] = 6; // length_pin
|
|
in[3] = '8';
|
|
in[4] = '4';
|
|
in[5] = '0';
|
|
in[6] = '1';
|
|
in[7] = '7';
|
|
in[8] = '9';
|
|
in[9] = 0; // length_cert_desc
|
|
in[10]= 0; // length_cert_desc
|
|
|
|
EstablishPACEChannel(ctx, card, in, &out, &outlen);
|
|
}
|
|
|
|
#endif
|