passing certification and interop with rk
This commit is contained in:
parent
fc8bc892c1
commit
feceeb0a22
60
fido2/ctap.c
60
fido2/ctap.c
@ -302,10 +302,10 @@ static uint32_t auth_data_update_count(CTAP_authDataHeader * authData)
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}
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uint8_t * byte = (uint8_t*) &authData->signCount;
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*byte++ = (count >> 0) & 0xff;
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*byte++ = (count >> 8) & 0xff;
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*byte++ = (count >> 16) & 0xff;
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*byte++ = (count >> 24) & 0xff;
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*byte++ = (count >> 16) & 0xff;
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*byte++ = (count >> 8) & 0xff;
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*byte++ = (count >> 0) & 0xff;
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return count;
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}
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@ -344,6 +344,9 @@ static int ctap_make_auth_data(struct rpId * rp, CborEncoder * map, uint8_t * au
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crypto_sha256_update(rp->id, rp->size);
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crypto_sha256_final(authData->head.rpIdHash);
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printf1(TAG_RED, "rpId: "); dump_hex1(TAG_RED, rp->id, rp->size);
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printf1(TAG_RED, "hash: "); dump_hex1(TAG_RED, authData->head.rpIdHash, 32);
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count = auth_data_update_count(&authData->head);
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device_set_status(CTAPHID_STATUS_UPNEEDED);
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@ -691,10 +694,10 @@ uint8_t ctap_add_user_entity(CborEncoder * map, CTAP_userEntity * user)
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int ret = cbor_encode_int(map, RESP_publicKeyCredentialUserEntity);
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check_ret(ret);
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int dispname = (user->name[0] != 0);
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int dispname = (user->name[0] != 0) && getAssertionState.user_verified;
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if (dispname)
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ret = cbor_encoder_create_map(map, &entity, 2);
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ret = cbor_encoder_create_map(map, &entity, 4);
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else
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ret = cbor_encoder_create_map(map, &entity, 1);
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check_ret(ret);
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@ -715,6 +718,20 @@ uint8_t ctap_add_user_entity(CborEncoder * map, CTAP_userEntity * user)
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ret = cbor_encode_text_stringz(&entity, (const char *)user->name);
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check_ret(ret);
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ret = cbor_encode_text_string(&entity, "displayName", 11);
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check_ret(ret);
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ret = cbor_encode_text_stringz(&entity, (const char *)user->displayName);
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check_ret(ret);
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ret = cbor_encode_text_string(&entity, "icon", 4);
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check_ret(ret);
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ret = cbor_encode_text_stringz(&entity, (const char *)user->icon);
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check_ret(ret);
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}
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ret = cbor_encoder_close_container(map, &entity);
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@ -871,7 +888,9 @@ uint8_t ctap_get_next_assertion(CborEncoder * encoder)
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{
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int ret;
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CborEncoder map;
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CTAP_authDataHeader * authData = &getAssertionState.authData;
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CTAP_authDataHeader authData;
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memmove(&authData, &getAssertionState.authData, sizeof(CTAP_authDataHeader));
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// CTAP_authDataHeader * authData = &getAssertionState.authData;
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CTAP_credentialDescriptor * cred = pop_credential();
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@ -880,10 +899,10 @@ uint8_t ctap_get_next_assertion(CborEncoder * encoder)
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return CTAP2_ERR_NOT_ALLOWED;
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}
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auth_data_update_count(authData);
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int add_user_info = cred->credential.user.id_size && getAssertionState.user_verified;
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auth_data_update_count(&authData);
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int add_user_info = cred->credential.user.id_size;
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if (getAssertionState.user_verified)
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if (add_user_info)
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{
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printf1(TAG_GREEN, "adding user info to assertion response\r\n");
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ret = cbor_encoder_create_map(encoder, &map, 4);
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@ -895,15 +914,24 @@ uint8_t ctap_get_next_assertion(CborEncoder * encoder)
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}
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check_ret(ret);
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printf1(TAG_RED, "RPID hash: "); dump_hex1(TAG_RED, authData.rpIdHash, 32);
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{
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ret = cbor_encode_int(&map,RESP_authData);
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check_ret(ret);
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ret = cbor_encode_byte_string(&map, (uint8_t *)authData, sizeof(CTAP_authDataHeader));
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ret = cbor_encode_byte_string(&map, (uint8_t *)&authData, sizeof(CTAP_authDataHeader));
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check_ret(ret);
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}
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ret = ctap_end_get_assertion(&map, cred, (uint8_t *)authData, getAssertionState.clientDataHash, add_user_info);
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// if only one account for this RP, null out the user details
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if (!getAssertionState.user_verified)
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{
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printf1(TAG_GREEN, "Not verified, nulling out user details on response\r\n");
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memset(cred->credential.user.name, 0, USER_NAME_LIMIT);
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}
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ret = ctap_end_get_assertion(&map, cred, (uint8_t *)&authData, getAssertionState.clientDataHash, add_user_info);
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check_retr(ret);
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ret = cbor_encoder_close_container(encoder, &map);
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@ -950,7 +978,7 @@ uint8_t ctap_get_assertion(CborEncoder * encoder, uint8_t * request, int length)
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printf1(TAG_GA, "ALLOW_LIST has %d creds\n", GA.credLen);
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int validCredCount = ctap_filter_invalid_credentials(&GA);
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int add_user_info = GA.creds[validCredCount - 1].credential.user.id_size && getAssertionState.user_verified;
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int add_user_info = GA.creds[validCredCount - 1].credential.user.id_size;
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if (validCredCount > 1)
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{
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map_size += 1;
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@ -995,7 +1023,7 @@ uint8_t ctap_get_assertion(CborEncoder * encoder, uint8_t * request, int length)
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}
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// if only one account for this RP, null out the user details
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if (validCredCount < 2)
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if (validCredCount < 2 || !getAssertionState.user_verified)
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{
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printf1(TAG_GREEN, "Only one account, nulling out user details on response\r\n");
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memset(&GA.creds[0].credential.user.name, 0, USER_NAME_LIMIT);
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@ -1340,11 +1368,13 @@ uint8_t ctap_request(uint8_t * pkt_raw, int length, CTAP_RESPONSE * resp)
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length--;
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uint8_t * buf = resp->data;
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printf1(TAG_GREEN, "lastcmd0 = 0x%02x\r\n", getAssertionState.lastcmd);
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cbor_encoder_init(&encoder, buf, resp->data_size, 0);
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printf1(TAG_CTAP,"cbor input structure: %d bytes\n", length);
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printf1(TAG_DUMP,"cbor req: "); dump_hex1(TAG_DUMP, pkt_raw, length);
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printf1(TAG_GREEN, "lastcmd1 = 0x%02x\r\n", getAssertionState.lastcmd);
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switch(cmd)
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{
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@ -1434,7 +1464,8 @@ uint8_t ctap_request(uint8_t * pkt_raw, int length, CTAP_RESPONSE * resp)
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}
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else
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{
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printf2(TAG_ERR, "unwanted GET_NEXT_ASSERTION\n");
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printf2(TAG_ERR, "unwanted GET_NEXT_ASSERTION. lastcmd == 0x%02x\n", getAssertionState.lastcmd);
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dump_hex1(TAG_GREEN, &getAssertionState, sizeof(getAssertionState));
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status = CTAP2_ERR_NOT_ALLOWED;
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}
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break;
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@ -1446,6 +1477,7 @@ uint8_t ctap_request(uint8_t * pkt_raw, int length, CTAP_RESPONSE * resp)
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done:
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device_set_status(CTAPHID_STATUS_IDLE);
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getAssertionState.lastcmd = cmd;
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printf1(TAG_GREEN, "lastcmd = 0x%02x\r\n", getAssertionState.lastcmd);
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if (status != CTAP1_ERR_SUCCESS)
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{
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@ -109,6 +109,8 @@
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#define RP_NAME_LIMIT 32 // application limit, name parameter isn't needed.
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#define USER_ID_MAX_SIZE 64
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#define USER_NAME_LIMIT 65 // Must be minimum of 64 bytes but can be more.
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#define DISPLAY_NAME_LIMIT 32 // Must be minimum of 64 bytes but can be more.
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#define ICON_LIMIT 128 // Must be minimum of 64 bytes but can be more.
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#define CTAP_MAX_MESSAGE_SIZE 1200
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#define CREDENTIAL_RK_FLASH_PAD 2 // size of RK should be 8-byte aligned to store in flash easily.
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@ -140,6 +142,8 @@ typedef struct
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uint8_t id[USER_ID_MAX_SIZE];
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uint8_t id_size;
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uint8_t name[USER_NAME_LIMIT];
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uint8_t displayName[DISPLAY_NAME_LIMIT];
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uint8_t icon[ICON_LIMIT];
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}__attribute__((packed)) CTAP_userEntity;
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typedef struct {
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@ -175,6 +175,13 @@ uint8_t parse_user(CTAP_makeCredential * MC, CborValue * val)
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printf2(TAG_ERR,"Error, expecting text string type for user.displayName value\n");
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return CTAP2_ERR_INVALID_CBOR_TYPE;
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}
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sz = DISPLAY_NAME_LIMIT;
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ret = cbor_value_copy_text_string(&map, (char *)MC->user.displayName, &sz, NULL);
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if (ret != CborErrorOutOfMemory)
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{ // Just truncate the name it's okay
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check_ret(ret);
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}
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MC->user.displayName[DISPLAY_NAME_LIMIT - 1] = 0;
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}
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else if (strcmp((const char *)key, "icon") == 0)
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{
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@ -183,6 +190,14 @@ uint8_t parse_user(CTAP_makeCredential * MC, CborValue * val)
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printf2(TAG_ERR,"Error, expecting text string type for user.icon value\n");
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return CTAP2_ERR_INVALID_CBOR_TYPE;
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}
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sz = ICON_LIMIT;
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ret = cbor_value_copy_text_string(&map, (char *)MC->user.icon, &sz, NULL);
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if (ret != CborErrorOutOfMemory)
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{ // Just truncate the name it's okay
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check_ret(ret);
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}
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MC->user.icon[ICON_LIMIT - 1] = 0;
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}
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else
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{
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@ -97,7 +97,7 @@ void ctaphid_init()
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{
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state = IDLE;
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buffer_reset();
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ctap_reset_state();
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//ctap_reset_state();
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}
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static uint32_t get_new_cid()
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@ -4,7 +4,7 @@
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#define DEBUG_UART USART1
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#define DEBUG_LEVEL 1
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#define DEBUG_LEVEL 0
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#define NON_BLOCK_PRINTING 0
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@ -33,7 +33,7 @@ void hw_init(void);
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#define SOLO_BUTTON_PORT GPIOA
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#define SOLO_BUTTON_PIN LL_GPIO_PIN_0
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#define SKIP_BUTTON_CHECK_WITH_DELAY 1
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#define SKIP_BUTTON_CHECK_WITH_DELAY 0
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#define SKIP_BUTTON_CHECK_FAST 0
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#endif
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@ -390,7 +390,7 @@ class Tester():
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def test_fido2_simple(self, pin_token=None):
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creds = []
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exclude_list = []
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rp = {'id': 'examplo.org', 'name': 'ExaRP'}
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rp = {'id': self.origin, 'name': 'ExaRP'}
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user = {'id': b'usee_od', 'name': 'AB User'}
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challenge = 'Y2hhbGxlbmdl'
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PIN = pin_token
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@ -432,7 +432,6 @@ class Tester():
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for i in range(0,2048**2):
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creds = []
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print(i)
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challenge = ''.join([abc[randint(0,len(abc)-1)] for x in range(0,32)])
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fake_id1 = array.array('B',[randint(0,255) for i in range(0,150)]).tostring()
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@ -445,6 +444,7 @@ class Tester():
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for i in range(0,1):
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t1 = time.time() * 1000
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attest, data = self.client.make_credential(rp, user, challenge, pin = PIN, exclude_list = [])
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print(attest.auth_data.counter)
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t2 = time.time() * 1000
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attest.verify(data.hash)
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print('Register valid (%d ms)' % (t2-t1))
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@ -460,6 +460,7 @@ class Tester():
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assertions, client_data = self.client.get_assertion(rp['id'], challenge, allow_list, pin = PIN)
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t2 = time.time() * 1000
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assertions[0].verify(client_data.hash, creds[0].public_key)
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print(assertions[0].auth_data.counter)
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print('Assertion valid (%d ms)' % (t2-t1))
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sys.stdout.flush()
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@ -607,6 +608,160 @@ class Tester():
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print('Warning, reset failed: ', e)
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print('PASS')
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def test_rk(self, ):
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creds = []
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rp = {'id': 'examplo.org', 'name': 'ExaRP'}
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user0 = {'id': b'first one', 'name': 'single User'}
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users = [{'id': b'user' + os.urandom(16), 'name': 'AB User'} for i in range(0,2)]
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challenge = 'Y2hhbGxlbmdl'
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PIN = None
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print('reset')
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self.ctap.reset()
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#if PIN: self.client.pin_protocol.set_pin(PIN)
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print('registering 1 user with RK')
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t1 = time.time() * 1000
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attest, data = self.client.make_credential(rp, user0, challenge, pin = PIN, exclude_list = [], rk = True)
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t2 = time.time() * 1000
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attest.verify(data.hash)
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creds.append(attest.auth_data.credential_data)
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print('Register valid (%d ms)' % (t2-t1))
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print('1 assertion')
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t1 = time.time() * 1000
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assertions, client_data = self.client.get_assertion(rp['id'], challenge, pin = PIN)
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t2 = time.time() * 1000
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assertions[0].verify(client_data.hash, creds[0].public_key)
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print('Assertion valid (%d ms)' % (t2-t1))
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print(assertions[0], client_data)
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print('registering %d users with RK' % len(users))
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for i in range(0,len(users)):
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t1 = time.time() * 1000
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attest, data = self.client.make_credential(rp, users[i], challenge, pin = PIN, exclude_list = [], rk = True)
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t2 = time.time() * 1000
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attest.verify(data.hash)
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print('Register valid (%d ms)' % (t2-t1))
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creds.append(attest.auth_data.credential_data)
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t1 = time.time() * 1000
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assertions, client_data = self.client.get_assertion(rp['id'], challenge, pin = PIN)
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t2 = time.time() * 1000
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for x,y in zip(assertions, creds):
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x.verify(client_data.hash,y.public_key)
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print('Assertion(s) valid (%d ms)' % (t2-t1))
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print('registering a duplicate user ')
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t1 = time.time() * 1000
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attest, data = self.client.make_credential(rp, users[1], challenge, pin = PIN, exclude_list = [], rk = True)
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t2 = time.time() * 1000
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attest.verify(data.hash)
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creds = creds[:2] + creds[3:] + [attest.auth_data.credential_data]
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print('Register valid (%d ms)' % (t2-t1))
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t1 = time.time() * 1000
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assertions, client_data = self.client.get_assertion(rp['id'], challenge, pin = PIN)
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t2 = time.time() * 1000
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assert(len(assertions) == len(users) +1)
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for x,y in zip(assertions, creds):
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x.verify(client_data.hash,y.public_key)
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print('Assertion(s) valid (%d ms)' % (t2-t1))
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def test_responses(self,):
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PIN = '1234'
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RPID = 'examplo2.org'
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for dev in (CtapHidDevice.list_devices()):
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print('dev',dev)
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client = Fido2Client(dev, RPID)
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ctap = client.ctap2
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# ctap.reset()
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try:
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if PIN: client.pin_protocol.set_pin(PIN)
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except:pass
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inf = ctap.get_info()
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#print (inf)
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print('versions: ',inf.versions)
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print('aaguid: ',inf.aaguid)
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print('rk: ',inf.options['rk'])
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print('clientPin: ',inf.options['clientPin'])
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print('max_message_size: ',inf.max_msg_size)
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#rp = {'id': 'SelectDevice', 'name': 'SelectDevice'}
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rp = {'id': RPID, 'name': 'ExaRP'}
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user = {'id': os.urandom(10), 'name': 'SelectDevice'}
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user = {'id': b'21first one', 'name': 'single User'}
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challenge = 'Y2hhbGxlbmdl'
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if 1:
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attest, data = client.make_credential(rp,
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user, challenge, exclude_list = [], pin = PIN, rk=True)
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cred = attest.auth_data.credential_data
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creds = [cred]
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allow_list = [{'id':creds[0].credential_id, 'type': 'public-key'}]
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allow_list = []
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assertions, client_data = client.get_assertion(rp['id'], challenge, pin = PIN)
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assertions[0].verify(client_data.hash, creds[0].public_key)
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if 0:
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print('registering 1 user with RK')
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t1 = time.time() * 1000
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attest, data = client.make_credential(rp, user, challenge, pin = PIN, exclude_list = [], rk = True)
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t2 = time.time() * 1000
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attest.verify(data.hash)
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creds = [attest.auth_data.credential_data]
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print('Register valid (%d ms)' % (t2-t1))
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print('1 assertion')
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t1 = time.time() * 1000
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assertions, client_data = client.get_assertion(rp['id'], challenge, pin = PIN)
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t2 = time.time() * 1000
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assertions[0].verify(client_data.hash, creds[0].public_key)
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print('Assertion valid (%d ms)' % (t2-t1))
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#print('fmt:',attest.fmt)
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#print('rp_id_hash',attest.auth_data.rp_id_hash)
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#print('flags:', hex(attest.auth_data.flags))
|
||||
#print('count:', hex(attest.auth_data.counter))
|
||||
print('flags MC:',attest.auth_data)
|
||||
print('flags GA:',assertions[0].auth_data)
|
||||
#print('cred_id:',attest.auth_data.credential_data.credential_id)
|
||||
#print('pubkey:',attest.auth_data.credential_data.public_key)
|
||||
#print('aaguid:',attest.auth_data.credential_data.aaguid)
|
||||
# print('cred data:',attest.auth_data.credential_data)
|
||||
# print('auth_data:',attest.auth_data)
|
||||
#print('auth_data:',attest.auth_data)
|
||||
#print('alg:',attest.att_statement['alg'])
|
||||
#print('sig:',attest.att_statement['sig'])
|
||||
#print('x5c:',attest.att_statement['x5c'])
|
||||
#print('data:',data)
|
||||
|
||||
print('assertion:', assertions[0])
|
||||
print('clientData:', client_data)
|
||||
|
||||
print()
|
||||
#break
|
||||
|
||||
|
||||
|
||||
def test_find_brute_force():
|
||||
i = 0
|
||||
while 1:
|
||||
@ -621,10 +776,12 @@ def test_find_brute_force():
|
||||
|
||||
if __name__ == '__main__':
|
||||
t = Tester()
|
||||
t.find_device()
|
||||
#t.find_device()
|
||||
# t.test_hid()
|
||||
# t.test_long_ping()
|
||||
t.test_fido2()
|
||||
#t.test_fido2()
|
||||
#t.test_rk()
|
||||
t.test_responses()
|
||||
# test_find_brute_force()
|
||||
#t.test_fido2_simple()
|
||||
#t.test_fido2_brute_force()
|
||||
|
Loading…
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Reference in New Issue
Block a user