Adding AES wrapping/unwrapping
Signed-off-by: Pol Henarejos <pol.henarejos@cttc.es>
This commit is contained in:
@@ -272,7 +272,7 @@ int dkek_type_key(const uint8_t *in) {
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return 0x0;
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}
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int dkek_decode_key(void *key_ctx, const uint8_t *in, size_t in_len) {
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int dkek_decode_key(void *key_ctx, const uint8_t *in, size_t in_len, int *key_size_out) {
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uint8_t kcv[8];
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memset(kcv, 0, sizeof(kcv));
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dkek_kcv(kcv);
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@@ -336,6 +336,8 @@ int dkek_decode_key(void *key_ctx, const uint8_t *in, size_t in_len) {
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return r;
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int key_size = get_uint16_t(kb, 8);
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if (key_size_out)
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*key_size_out = key_size;
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ofs = 10;
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if (key_type == 5 || key_type == 6) {
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mbedtls_rsa_context *rsa = (mbedtls_rsa_context *)key_ctx;
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@@ -28,7 +28,7 @@ extern int dkek_encrypt(uint8_t *data, size_t len);
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extern int dkek_decrypt(uint8_t *data, size_t len);
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extern int dkek_encode_key(void *key_ctx, int key_type, uint8_t *out, size_t *out_len);
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extern int dkek_type_key(const uint8_t *in);
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extern int dkek_decode_key(void *key_ctx, const uint8_t *in, size_t in_len);
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extern int dkek_decode_key(void *key_ctx, const uint8_t *in, size_t in_len, int *key_size_out);
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#define MAX_DKEK_ENCODE_KEY_BUFFER (8+1+12+6+(8+2*4+2*4096/8+3+13)+16)
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128
src/hsm/sc_hsm.c
128
src/hsm/sc_hsm.c
@@ -232,7 +232,7 @@ int cvc_prepare_signatures(sc_pkcs15_card_t *p15card, sc_cvc_t *cvc, size_t sig_
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}
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int parse_token_info(const file_t *f, int mode) {
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char *label = "SmartCard-HSM";
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char *label = "Pico-HSM";
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char *manu = "Pol Henarejos";
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sc_pkcs15_tokeninfo_t *ti = (sc_pkcs15_tokeninfo_t *)calloc(1, sizeof(sc_pkcs15_tokeninfo_t));
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ti->version = HSM_VERSION_MAJOR;
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@@ -589,7 +589,7 @@ static int cmd_import_dkek() {
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//Stores the private and public keys in flash
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int store_keys(void *key_ctx, int type, uint8_t key_id, sc_context_t *ctx) {
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int r, key_size;
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uint8_t *asn1bin;
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uint8_t *asn1bin = NULL;
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size_t asn1len = 0;
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uint8_t kdata[4096/8]; //worst case
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if (type == SC_PKCS15_TYPE_PRKEY_RSA) {
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@@ -598,50 +598,64 @@ int store_keys(void *key_ctx, int type, uint8_t key_id, sc_context_t *ctx) {
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mbedtls_mpi_write_binary(&rsa->P, kdata, key_size/2);
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mbedtls_mpi_write_binary(&rsa->Q, kdata+key_size/2, key_size/2);
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}
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else {
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else if (type == SC_PKCS15_TYPE_PRKEY_EC) {
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mbedtls_ecdsa_context *ecdsa = (mbedtls_ecdsa_context *)key_ctx;
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key_size = mbedtls_mpi_size(&ecdsa->d);
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kdata[0] = ecdsa->grp.id & 0xff;
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mbedtls_mpi_write_binary(&ecdsa->d, kdata+1, key_size);
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key_size++;
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}
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else if (type & HSM_KEY_AES) {
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if (type == HSM_KEY_AES_128)
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key_size = 16;
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else if (type == HSM_KEY_AES_192)
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key_size = 24;
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else if (type == HSM_KEY_AES_256)
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key_size = 32;
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memcpy(kdata, key_ctx, key_size);
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}
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r = dkek_encrypt(kdata, key_size);
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if (r != HSM_OK) {
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return r;
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}
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file_t *fpk = file_new((KEY_PREFIX << 8) | key_id);
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if (!fpk)
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return SW_MEMORY_FAILURE();
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r = flash_write_data_to_file(fpk, kdata, key_size);
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if (r != HSM_OK)
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return r;
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//add_file_to_chain(fpk, &ef_kf);
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if (type == SC_PKCS15_TYPE_PRKEY_RSA || type == SC_PKCS15_TYPE_PRKEY_EC) {
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struct sc_pkcs15_object *p15o = (struct sc_pkcs15_object *)calloc(1,sizeof (struct sc_pkcs15_object));
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struct sc_pkcs15_object *p15o = (struct sc_pkcs15_object *)calloc(1,sizeof (struct sc_pkcs15_object));
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sc_pkcs15_prkey_info_t *prkd = (sc_pkcs15_prkey_info_t *)calloc(1, sizeof (sc_pkcs15_prkey_info_t));
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memset(prkd, 0, sizeof(sc_pkcs15_prkey_info_t));
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prkd->id.len = 1;
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prkd->id.value[0] = key_id;
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prkd->usage = SC_PKCS15_PRKEY_USAGE_DECRYPT | SC_PKCS15_PRKEY_USAGE_SIGN | SC_PKCS15_PRKEY_USAGE_SIGNRECOVER | SC_PKCS15_PRKEY_USAGE_UNWRAP;
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prkd->access_flags = SC_PKCS15_PRKEY_ACCESS_SENSITIVE | SC_PKCS15_PRKEY_ACCESS_NEVEREXTRACTABLE | SC_PKCS15_PRKEY_ACCESS_ALWAYSSENSITIVE | SC_PKCS15_PRKEY_ACCESS_LOCAL;
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prkd->native = 1;
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prkd->key_reference = key_id;
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prkd->path.value[0] = PRKD_PREFIX;
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prkd->path.value[1] = key_id;
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prkd->path.len = 2;
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if (type == SC_PKCS15_TYPE_PRKEY_RSA)
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prkd->modulus_length = key_size;
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else
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prkd->field_length = key_size-1; //contains 1 byte for the grp id
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p15o->data = prkd;
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p15o->type = SC_PKCS15_TYPE_PRKEY | (type & 0xff);
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r = sc_pkcs15_encode_prkdf_entry(ctx, p15o, &asn1bin, &asn1len);
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free(prkd);
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//sc_asn1_print_tags(asn1bin, asn1len);
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}
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sc_pkcs15_prkey_info_t *prkd = (sc_pkcs15_prkey_info_t *)calloc(1, sizeof (sc_pkcs15_prkey_info_t));
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memset(prkd, 0, sizeof(sc_pkcs15_prkey_info_t));
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prkd->id.len = 1;
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prkd->id.value[0] = key_id;
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prkd->usage = SC_PKCS15_PRKEY_USAGE_DECRYPT | SC_PKCS15_PRKEY_USAGE_SIGN | SC_PKCS15_PRKEY_USAGE_SIGNRECOVER | SC_PKCS15_PRKEY_USAGE_UNWRAP;
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prkd->access_flags = SC_PKCS15_PRKEY_ACCESS_SENSITIVE | SC_PKCS15_PRKEY_ACCESS_NEVEREXTRACTABLE | SC_PKCS15_PRKEY_ACCESS_ALWAYSSENSITIVE | SC_PKCS15_PRKEY_ACCESS_LOCAL;
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prkd->native = 1;
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prkd->key_reference = key_id;
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prkd->path.value[0] = PRKD_PREFIX;
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prkd->path.value[1] = key_id;
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prkd->path.len = 2;
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if (type == SC_PKCS15_TYPE_PRKEY_RSA)
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prkd->modulus_length = key_size;
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else
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prkd->field_length = key_size-1; //contains 1 byte for the grp id
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p15o->data = prkd;
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p15o->type = SC_PKCS15_TYPE_PRKEY | (type & 0xff);
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r = sc_pkcs15_encode_prkdf_entry(ctx, p15o, &asn1bin, &asn1len);
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free(prkd);
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//sc_asn1_print_tags(asn1bin, asn1len);
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fpk = file_new((PRKD_PREFIX << 8) | key_id);
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r = flash_write_data_to_file(fpk, asn1bin, asn1len);
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free(asn1bin);
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if (asn1bin)
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free(asn1bin);
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if (r != HSM_OK)
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return r;
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//add_file_to_chain(fpk, &ef_prkdf);
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@@ -1083,19 +1097,16 @@ static int cmd_key_gen() {
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//at this moment, we do not use the template, as only CBC is supported by the driver (encrypt, decrypt and CMAC)
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uint8_t aes_key[32]; //maximum AES key size
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memcpy(aes_key, random_bytes_get(key_size), key_size);
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r = dkek_encrypt(aes_key, key_size);
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if (r != HSM_OK)
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return SW_EXEC_ERROR();
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file_t *fpk = file_new((KEY_PREFIX << 8) | key_id);
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if (!fpk)
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return SW_MEMORY_FAILURE();
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r = flash_write_data_to_file(fpk, aes_key, key_size);
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if (r != HSM_OK)
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return SW_MEMORY_FAILURE();
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fpk = file_new((PRKD_PREFIX << 8) | key_id);
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if (!fpk)
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return SW_MEMORY_FAILURE();
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r = flash_write_data_to_file(fpk, NULL, 0);
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int aes_type = 0x0;
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if (key_size == 16)
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aes_type = HSM_KEY_AES_128;
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else if (key_size == 24)
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aes_type = HSM_KEY_AES_192;
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else if (key_size == 32)
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aes_type = HSM_KEY_AES_256;
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sc_context_t *card_ctx = create_context();
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r = store_keys(aes_key, aes_type, key_id, card_ctx);
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free(card_ctx);
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if (r != HSM_OK)
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return SW_MEMORY_FAILURE();
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low_flash_available();
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@@ -1327,6 +1338,21 @@ static int cmd_key_wrap() {
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r = dkek_encode_key(&ctx, HSM_KEY_EC, res_APDU, &wrap_len);
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mbedtls_ecdsa_free(&ctx);
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}
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else if (*dprkd == P15_KEYTYPE_AES) {
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uint8_t kdata[32]; //maximum AES key size
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int key_size = file_read_uint16(ef->data), aes_type = HSM_KEY_AES;
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memcpy(kdata, file_read(ef->data+2), key_size);
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if (dkek_decrypt(kdata, key_size) != 0) {
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return SW_EXEC_ERROR();
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}
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if (key_size == 32)
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aes_type = HSM_KEY_AES_256;
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else if (key_size == 24)
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aes_type = HSM_KEY_AES_192;
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else if (key_size == 16)
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aes_type = HSM_KEY_AES_128;
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r = dkek_encode_key(kdata, aes_type, res_APDU, &wrap_len);
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}
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if (r != HSM_OK)
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return SW_EXEC_ERROR();
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res_APDU_size = wrap_len;
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@@ -1345,8 +1371,7 @@ static int cmd_key_unwrap() {
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if (key_type == HSM_KEY_RSA) {
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mbedtls_rsa_context ctx;
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mbedtls_rsa_init(&ctx);
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r = dkek_decode_key(&ctx, apdu.cmd_apdu_data, apdu.cmd_apdu_data_len);
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printf("r %d\r\n",r);
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r = dkek_decode_key(&ctx, apdu.cmd_apdu_data, apdu.cmd_apdu_data_len, NULL);
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if (r != HSM_OK) {
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mbedtls_rsa_free(&ctx);
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return SW_EXEC_ERROR();
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@@ -1359,7 +1384,7 @@ static int cmd_key_unwrap() {
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else if (key_type == HSM_KEY_EC) {
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mbedtls_ecdsa_context ctx;
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mbedtls_ecdsa_init(&ctx);
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r = dkek_decode_key(&ctx, apdu.cmd_apdu_data, apdu.cmd_apdu_data_len);
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r = dkek_decode_key(&ctx, apdu.cmd_apdu_data, apdu.cmd_apdu_data_len, NULL);
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if (r != HSM_OK) {
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mbedtls_ecdsa_free(&ctx);
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return SW_EXEC_ERROR();
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@@ -1369,6 +1394,23 @@ static int cmd_key_unwrap() {
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free(card_ctx);
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mbedtls_ecdsa_free(&ctx);
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}
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else if (key_type == HSM_KEY_AES) {
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uint8_t aes_key[32];
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int key_size = 0, aes_type;
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r = dkek_decode_key(aes_key, apdu.cmd_apdu_data, apdu.cmd_apdu_data_len, &key_size);
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if (r != HSM_OK) {
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return SW_EXEC_ERROR();
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}
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if (key_size == 32)
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aes_type = HSM_KEY_AES_256;
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else if (key_size == 24)
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aes_type = HSM_KEY_AES_192;
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else if (key_size == 16)
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aes_type = HSM_KEY_AES_128;
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sc_context_t *card_ctx = create_context();
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r = store_keys(aes_key, aes_type, key_id, card_ctx);
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free(card_ctx);
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}
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return SW_OK();
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}
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