Files
vsmartcard/ccid/sm.c
frankmorgner ae3e7ae862 - added untested function to decrypt sm
- function cipher now always disables automatic padding


git-svn-id: https://vsmartcard.svn.sourceforge.net/svnroot/vsmartcard@52 96b47cad-a561-4643-ad3b-153ac7d7599c
2010-03-31 21:58:49 +00:00

437 lines
12 KiB
C

#include "sm.h"
#include "utils.h"
#include <opensc/asn1.h>
#include <opensc/log.h>
#include <string.h>
static const struct sc_asn1_entry c_sm_capdu[] = {
{ "Padding-content indicator followed by cryptogram",
SC_ASN1_INTEGER , 0x87, SC_ASN1_OPTIONAL|SC_ASN1_UNSIGNED, NULL, NULL },
{ "Protected Le",
SC_ASN1_INTEGER , 0x97, SC_ASN1_OPTIONAL|SC_ASN1_UNSIGNED, NULL, NULL },
{ "Cryptographic Checksum",
SC_ASN1_OCTET_STRING, 0x8E, 0, NULL, NULL },
{ NULL , 0 , 0 , 0 , NULL , NULL }
};
static const struct sc_asn1_entry c_sm_rapdu[] = {
{ "Padding-content indicator followed by cryptogram" ,
SC_ASN1_INTEGER , 0x87, SC_ASN1_OPTIONAL|SC_ASN1_UNSIGNED, NULL, NULL },
{ "Processing Status",
SC_ASN1_INTEGER , 0x99, SC_ASN1_OPTIONAL|SC_ASN1_UNSIGNED, NULL, NULL },
{ "Cryptographic Checksum",
SC_ASN1_OCTET_STRING, 0x8E, 0, NULL, NULL },
{ NULL, 0, 0, 0, NULL, NULL }
};
BUF_MEM * add_padding(const struct sm_ctx *ctx, const char *data, size_t datalen)
{
BUF_MEM *tmp = BUF_MEM_create_init(data, datalen);
BUF_MEM *padded = NULL;
switch (ctx->padding_indicator) {
case SM_NO_PADDING:
padded = tmp;
tmp = NULL;
break;
case SM_ISO_PADDING:
padded = add_iso_pad(tmp, EVP_CIPHER_block_size(ctx->cipher));
if (tmp) {
OPENSSL_cleanse(tmp->data, tmp->max);
BUF_MEM_free(tmp);
}
break;
default:
return NULL;
}
return padded;
}
int no_padding(u8 padding_indicator, const char *data, size_t datalen,
size_t *raw_len)
{
if (!datalen || !data)
return SC_ERROR_INVALID_ARGUMENTS;
size_t len;
switch (padding_indicator) {
case SM_NO_PADDING:
len = datalen;
break;
case SM_ISO_PADDING:
for (len = datalen;
len && (data[len-1] == 0);
len--) { };
if (data[len-1] != 0x80)
return SC_ERROR_INVALID_DATA;
break;
default:
return SC_ERROR_NOT_SUPPORTED;
}
*raw_len = len;
return SC_SUCCESS;
}
u8 * format_le(size_t le_len, size_t le, struct sc_asn1_entry *le_entry)
{
u8 * lebuf = malloc(le_len);
if (lebuf) {
switch (le_len) {
case 1:
lebuf[0] = le;
break;
case 2:
lebuf[0] = htons(le) >> 8;
lebuf[1] = htons(le) & 0xff;
break;
case 3:
lebuf[0] = 0x00;
lebuf[1] = htons(le) >> 8;
lebuf[2] = htons(le) & 0xff;
break;
default:
free(lebuf);
return NULL;
}
sc_format_asn1_entry(le_entry, lebuf, &le_len, SC_ASN1_PRESENT);
}
return lebuf;
}
BUF_MEM * prefix_buf(u8 prefix, BUF_MEM *buf)
{
if (!buf) return NULL;
BUF_MEM *cat = BUF_MEM_create(buf->length + 1);
if (cat) {
cat->data[0] = prefix;
memcpy(cat->data + 1, buf->data, buf->length);
cat->length = buf->length + 1;
}
return cat;
}
BUF_MEM * format_data(const struct sm_ctx *ctx, const u8 *data, size_t datalen,
struct sc_asn1_entry *formatted_encrypted_data_entry)
{
BUF_MEM *pad_data = add_padding(ctx, (char *) data, datalen);
BUF_MEM *enc_data = cipher(ctx->cipher_ctx, ctx->cipher,
ctx->cipher_engine, ctx->key_enc, ctx->iv, 1, pad_data);
if (pad_data) {
OPENSSL_cleanse(pad_data->data, pad_data->max);
BUF_MEM_free(pad_data);
}
BUF_MEM *indicator_encdata = prefix_buf(ctx->padding_indicator, enc_data);
if (enc_data) {
BUF_MEM_free(enc_data);
}
if (indicator_encdata)
sc_format_asn1_entry(formatted_encrypted_data_entry,
indicator_encdata->data, &(indicator_encdata->length),
SC_ASN1_PRESENT);
return indicator_encdata;
}
BUF_MEM * format_head(const struct sm_ctx *ctx, const sc_apdu_t *apdu)
{
char head[4];
head[0] = apdu->cla;
head[1] = apdu->ins;
head[2] = apdu->p1;
head[3] = apdu->p2;
return add_padding(ctx, head, sizeof head);
}
int sm_encrypt(const struct sm_ctx *ctx, sc_card_t *card,
const sc_apdu_t *apdu, sc_apdu_t *sm_apdu)
{
struct sc_asn1_entry sm_capdu[4];
u8 *le = NULL;
size_t oldlen;
BUF_MEM *fdata = NULL, *sm_data = NULL,
*mac_data = NULL, *mac = NULL, *tmp = NULL;
int r;
if (!apdu || !ctx || !card || !card->slot || !sm_apdu) {
r = SC_ERROR_INVALID_ARGUMENTS;
goto err;
}
sc_copy_asn1_entry(c_sm_capdu, sm_capdu);
mac_data = format_head(ctx, apdu);
if (!mac_data) {
r = SC_ERROR_WRONG_PADDING;
goto err;
}
/* get le and data depending on the case of the unsecure command */
switch (apdu->cse) {
case SC_APDU_CASE_1:
break;
case SC_APDU_CASE_2_SHORT:
le = format_le(1, apdu->le, sm_capdu + 1);
if (!le) {
r = SC_ERROR_WRONG_LENGTH;
goto err;
}
break;
case SC_APDU_CASE_2_EXT:
if (card->slot->active_protocol == SC_PROTO_T0) {
/* T0 extended APDUs look just like short APDUs */
le = format_le(1, apdu->le, sm_capdu + 1);
if (!le) {
r = SC_ERROR_WRONG_LENGTH;
goto err;
}
} else {
/* in case of T1 always use 3 bytes for length */
le = format_le(3, apdu->le, sm_capdu + 1);
if (!le) {
r = SC_ERROR_WRONG_LENGTH;
goto err;
}
}
break;
case SC_APDU_CASE_3_SHORT:
case SC_APDU_CASE_3_EXT:
fdata = format_data(ctx, apdu->data, apdu->datalen,
sm_capdu + 0);
if (!fdata) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
break;
case SC_APDU_CASE_4_SHORT:
/* in case of T0 no Le byte is added */
if (card->slot->active_protocol != SC_PROTO_T0) {
le = format_le(1, apdu->le, sm_capdu + 1);
if (!le) {
r = SC_ERROR_WRONG_LENGTH;
goto err;
}
}
fdata = format_data(ctx, apdu->data, apdu->datalen,
sm_capdu + 0);
if (!fdata) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
break;
case SC_APDU_CASE_4_EXT:
if (card->slot->active_protocol == SC_PROTO_T0) {
/* again a T0 extended case 4 APDU looks just
* like a short APDU, the additional data is
* transferred using ENVELOPE and GET RESPONSE */
} else {
/* only 2 bytes are use to specify the length of the
* expected data */
le = format_le(2, apdu->le, sm_capdu + 1);
if (!le) {
r = SC_ERROR_WRONG_LENGTH;
goto err;
}
}
fdata = format_data(ctx, apdu->data, apdu->datalen,
sm_capdu + 0);
if (!fdata) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
break;
default:
r = SC_ERROR_INVALID_DATA;
goto err;
}
tmp = BUF_MEM_new();
if (!tmp) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
r = sc_asn1_encode(card->ctx, sm_capdu, (u8 **) &tmp->data, &tmp->length);
if (r < 0) {
goto err;
}
oldlen = mac_data->length;
BUF_MEM_grow(mac_data, oldlen + tmp->length);
memcpy(mac_data->data + oldlen, tmp->data, tmp->length);
BUF_MEM_free(tmp);
tmp = add_padding(ctx, mac_data->data, mac_data->length);
BUF_MEM_free(mac_data);
mac_data = hash(ctx->md, ctx->md_ctx, ctx->md_engine, tmp);
mac = cipher(ctx->cipher_ctx, ctx->cipher, ctx->cipher_engine,
ctx->key_mac, ctx->iv, 1, mac_data);
if (!mac) {
r = SC_ERROR_INTERNAL;
goto err;
}
sc_format_asn1_entry(sm_capdu + 2, mac->data, &(mac->length),
SC_ASN1_PRESENT);
/* format SM apdu */
BUF_MEM_free(sm_data);
sm_data = BUF_MEM_new();
if (!sm_data) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
r = sc_asn1_encode(card->ctx, sm_capdu, (u8 **) &sm_data->data, &sm_data->length);
if (r < 0)
goto err;
memcpy(sm_apdu, apdu, sizeof *sm_apdu);
sm_apdu->data = (u8 *) sm_data->data;
sm_apdu->lc = sm_data->length;
sm_apdu->le = 0;
sm_apdu->cse = SC_APDU_CASE_4;
/* BUF_MEM_free must not free sm_data->data */
sm_data->data = NULL;
sm_data->length = 0;
sm_data->max = 0;
err:
if (fdata) {
BUF_MEM_free(fdata);
}
if (tmp) {
BUF_MEM_free(tmp);
}
if (mac_data) {
BUF_MEM_free(mac_data);
}
if (mac) {
BUF_MEM_free(mac);
}
if (sm_data) {
BUF_MEM_free(sm_data);
}
if (le) {
free(le);
}
SC_FUNC_RETURN(card->ctx, SC_LOG_TYPE_ERROR, r);
}
int sm_decrypt(const struct sm_ctx *ctx, sc_card_t *card,
const sc_apdu_t *sm_apdu, sc_apdu_t *apdu)
{
int r;
struct sc_asn1_entry sm_rapdu[4];
u8 sw[2], mac[EVP_CIPHER_block_size(ctx->cipher)], fdata[1024];
size_t sw_len = sizeof sw, mac_len = sizeof mac, fdata_len = sizeof fdata,
buf_len, oldlen;
const u8 *buf;
BUF_MEM *mac_data = NULL, *tmp = NULL, *my_mac = NULL, *data = NULL,
enc_data;
sc_copy_asn1_entry(c_sm_rapdu, sm_rapdu);
sc_format_asn1_entry(sm_rapdu + 0, fdata, &fdata_len, 0);
sc_format_asn1_entry(sm_rapdu + 1, sw, &sw_len, 0);
sc_format_asn1_entry(sm_rapdu + 2, mac, &mac_len, 0);
r = sc_asn1_decode(card->ctx, sm_rapdu, apdu->resp, apdu->resplen,
&buf, &buf_len);
if (r < 0)
goto err;
if (buf_len > 0) {
r = SC_ERROR_TOO_MANY_OBJECTS;
goto err;
}
if (sm_rapdu[0].flags & SC_ASN1_PRESENT) {
if (ctx->padding_indicator != fdata[0]) {
r = SC_ERROR_DECRYPT_FAILED;
goto err;
}
enc_data.data = (char *) fdata + 1;
enc_data.length = fdata_len - 1;
enc_data.max = enc_data.length;
}
mac_data = format_head(ctx, sm_apdu);
tmp = BUF_MEM_new();
if (!tmp) {
r = SC_ERROR_OUT_OF_MEMORY;
goto err;
}
sc_format_asn1_entry(sm_rapdu + 2, NULL, NULL, 0);
r = sc_asn1_encode(card->ctx, sm_rapdu, (u8 **) &tmp->data, &tmp->length);
if (r < 0)
goto err;
oldlen = mac_data->length;
BUF_MEM_grow(mac_data, oldlen + tmp->length);
memcpy(mac_data->data + oldlen, tmp->data, tmp->length);
free(tmp->data);
tmp = add_padding(ctx, mac_data->data, mac_data->length);
BUF_MEM_free(mac_data);
mac_data = hash(ctx->md, ctx->md_ctx, ctx->md_engine, tmp);
my_mac = cipher(ctx->cipher_ctx, ctx->cipher, ctx->cipher_engine,
ctx->key_mac, ctx->iv, 1, mac_data);
if (!my_mac) {
r = SC_ERROR_INTERNAL;
goto err;
}
if (my_mac->length != mac_len ||
memcmp(my_mac->data, mac, mac_len) != 0) {
r = SC_ERROR_DECRYPT_FAILED;
goto err;
}
data = cipher(ctx->cipher_ctx, ctx->cipher, ctx->cipher_engine,
ctx->key_enc, ctx->iv, 0, &enc_data);
r = no_padding(ctx->padding_indicator, data->data, data->length,
&data->length);
if (r < 0)
goto err;
memcpy(apdu, sm_apdu, sizeof *apdu);
apdu->resp = (u8 *) data->data;
apdu->resplen = data->length;
/* BUF_MEM_free must not free data->data */
data->data = NULL;
data->length = 0;
data->max = 0;
err:
if (tmp) {
BUF_MEM_free(tmp);
}
if (mac_data) {
BUF_MEM_free(mac_data);
}
if (my_mac) {
BUF_MEM_free(my_mac);
}
if (data) {
BUF_MEM_free(data);
}
SC_FUNC_RETURN(card->ctx, SC_LOG_TYPE_ERROR, r);
}