mirror of
https://github.com/intel/linux-sgx
synced 2026-06-08 14:49:32 +00:00
d10c025eb0
Signed-off-by: Yu Ding dingelish@gmail.com
436 lines
14 KiB
C++
436 lines
14 KiB
C++
/*
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* Copyright (C) 2011-2020 Intel Corporation. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of Intel Corporation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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*/
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#include "sgx_trts.h"
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#include "sgx_utils.h"
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#include "EnclaveMessageExchange.h"
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#include "sgx_eid.h"
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#include "error_codes.h"
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#include "sgx_ecp_types.h"
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#include "sgx_thread.h"
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#include <map>
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#include "dh_session_protocol.h"
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#include "sgx_dh.h"
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#include "sgx_tcrypto.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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uint32_t enclave_to_enclave_call_dispatcher(char* decrypted_data, size_t decrypted_data_length, char** resp_buffer, size_t* resp_length);
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uint32_t message_exchange_response_generator(char* decrypted_data, char** resp_buffer, size_t* resp_length);
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uint32_t verify_peer_enclave_trust(sgx_dh_session_enclave_identity_t* peer_enclave_identity);
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#ifdef __cplusplus
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}
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#endif
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#define MAX_SESSION_COUNT 16
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//number of open sessions
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uint32_t g_session_count = 0;
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ATTESTATION_STATUS generate_session_id(uint32_t *session_id);
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extern "C" ATTESTATION_STATUS end_session(uint32_t session_id);
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//Array of open session ids
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session_id_tracker_t *g_session_id_tracker[MAX_SESSION_COUNT];
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//Map between the session id and the session information associated with that particular session
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std::map<uint32_t, dh_session_t>g_dest_session_info_map;
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//Create a session with the destination enclave
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//Handle the request from Source Enclave for a session
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extern "C" ATTESTATION_STATUS session_request(sgx_dh_msg1_t *dh_msg1,
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uint32_t *session_id )
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{
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dh_session_t session_info;
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sgx_dh_session_t sgx_dh_session;
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sgx_status_t status = SGX_SUCCESS;
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if(!session_id || !dh_msg1)
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{
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return INVALID_PARAMETER_ERROR;
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}
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//Intialize the session as a session responder
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status = sgx_dh_init_session(SGX_DH_SESSION_RESPONDER, &sgx_dh_session);
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if(SGX_SUCCESS != status)
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{
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return status;
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}
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//get a new SessionID
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if ((status = (sgx_status_t)generate_session_id(session_id)) != SUCCESS)
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return status; //no more sessions available
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//Allocate memory for the session id tracker
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g_session_id_tracker[*session_id] = (session_id_tracker_t *)malloc(sizeof(session_id_tracker_t));
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if(!g_session_id_tracker[*session_id])
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{
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return MALLOC_ERROR;
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}
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memset(g_session_id_tracker[*session_id], 0, sizeof(session_id_tracker_t));
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g_session_id_tracker[*session_id]->session_id = *session_id;
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session_info.status = IN_PROGRESS;
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//Generate Message1 that will be returned to Source Enclave
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status = sgx_dh_responder_gen_msg1((sgx_dh_msg1_t*)dh_msg1, &sgx_dh_session);
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if(SGX_SUCCESS != status)
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{
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SAFE_FREE(g_session_id_tracker[*session_id]);
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return status;
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}
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memcpy(&session_info.in_progress.dh_session, &sgx_dh_session, sizeof(sgx_dh_session_t));
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//Store the session information under the corresponding source enclave id key
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g_dest_session_info_map.insert(std::pair<uint32_t, dh_session_t>(*session_id, session_info));
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return status;
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}
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//Verify Message 2, generate Message3 and exchange Message 3 with Source Enclave
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extern "C" ATTESTATION_STATUS exchange_report(sgx_dh_msg2_t *dh_msg2,
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sgx_dh_msg3_t *dh_msg3,
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uint32_t session_id)
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{
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sgx_key_128bit_t dh_aek; // Session key
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dh_session_t *session_info;
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ATTESTATION_STATUS status = SUCCESS;
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sgx_dh_session_t sgx_dh_session;
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sgx_dh_session_enclave_identity_t initiator_identity;
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if(!dh_msg2 || !dh_msg3)
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{
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return INVALID_PARAMETER_ERROR;
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}
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memset(&dh_aek,0, sizeof(sgx_key_128bit_t));
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do
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{
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//Retrieve the session information for the corresponding source enclave id
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std::map<uint32_t, dh_session_t>::iterator it = g_dest_session_info_map.find(session_id);
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if(it != g_dest_session_info_map.end())
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{
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session_info = &it->second;
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}
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else
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{
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status = INVALID_SESSION;
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break;
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}
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if(session_info->status != IN_PROGRESS)
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{
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status = INVALID_SESSION;
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break;
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}
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memcpy(&sgx_dh_session, &session_info->in_progress.dh_session, sizeof(sgx_dh_session_t));
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dh_msg3->msg3_body.additional_prop_length = 0;
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//Process message 2 from source enclave and obtain message 3
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sgx_status_t se_ret = sgx_dh_responder_proc_msg2(dh_msg2,
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dh_msg3,
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&sgx_dh_session,
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&dh_aek,
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&initiator_identity);
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if(SGX_SUCCESS != se_ret)
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{
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status = se_ret;
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break;
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}
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//Verify source enclave's trust
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if(verify_peer_enclave_trust(&initiator_identity) != SUCCESS)
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{
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return INVALID_SESSION;
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}
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//save the session ID, status and initialize the session nonce
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session_info->session_id = session_id;
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session_info->status = ACTIVE;
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session_info->active.counter = 0;
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memcpy(session_info->active.AEK, &dh_aek, sizeof(sgx_key_128bit_t));
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memset(&dh_aek,0, sizeof(sgx_key_128bit_t));
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g_session_count++;
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}while(0);
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if(status != SUCCESS)
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{
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end_session(session_id);
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}
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return status;
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}
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//Process the request from the Source enclave and send the response message back to the Source enclave
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extern "C" ATTESTATION_STATUS generate_response(secure_message_t* req_message,
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size_t req_message_size,
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size_t max_payload_size,
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secure_message_t* resp_message,
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size_t resp_message_size,
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uint32_t session_id)
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{
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const uint8_t* plaintext;
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uint32_t plaintext_length;
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uint8_t *decrypted_data;
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uint32_t decrypted_data_length;
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uint32_t plain_text_offset;
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ms_in_msg_exchange_t * ms;
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size_t resp_data_length;
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size_t resp_message_calc_size;
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char* resp_data;
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uint8_t l_tag[TAG_SIZE];
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size_t header_size, expected_payload_size;
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dh_session_t *session_info;
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secure_message_t* temp_resp_message;
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uint32_t ret;
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sgx_status_t status;
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plaintext = (const uint8_t*)(" ");
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plaintext_length = 0;
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if(!req_message || !resp_message)
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{
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return INVALID_PARAMETER_ERROR;
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}
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//Get the session information from the map corresponding to the source enclave id
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std::map<uint32_t, dh_session_t>::iterator it = g_dest_session_info_map.find(session_id);
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if(it != g_dest_session_info_map.end())
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{
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session_info = &it->second;
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}
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else
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{
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return INVALID_SESSION;
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}
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if(session_info->status != ACTIVE)
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{
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return INVALID_SESSION;
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}
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//Set the decrypted data length to the payload size obtained from the message
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decrypted_data_length = req_message->message_aes_gcm_data.payload_size;
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header_size = sizeof(secure_message_t);
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expected_payload_size = req_message_size - header_size;
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//Verify the size of the payload
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if(expected_payload_size != decrypted_data_length)
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return INVALID_PARAMETER_ERROR;
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memset(&l_tag, 0, 16);
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plain_text_offset = decrypted_data_length;
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decrypted_data = (uint8_t*)malloc(decrypted_data_length);
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if(!decrypted_data)
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{
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return MALLOC_ERROR;
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}
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memset(decrypted_data, 0, decrypted_data_length);
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//Decrypt the request message payload from source enclave
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status = sgx_rijndael128GCM_decrypt(&session_info->active.AEK, req_message->message_aes_gcm_data.payload,
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decrypted_data_length, decrypted_data,
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reinterpret_cast<uint8_t *>(&(req_message->message_aes_gcm_data.reserved)),
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sizeof(req_message->message_aes_gcm_data.reserved), &(req_message->message_aes_gcm_data.payload[plain_text_offset]), plaintext_length,
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&req_message->message_aes_gcm_data.payload_tag);
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if(SGX_SUCCESS != status)
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{
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SAFE_FREE(decrypted_data);
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return status;
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}
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//Casting the decrypted data to the marshaling structure type to obtain type of request (generic message exchange/enclave to enclave call)
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ms = (ms_in_msg_exchange_t *)decrypted_data;
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// Verify if the nonce obtained in the request is equal to the session nonce
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if(*((uint32_t*)req_message->message_aes_gcm_data.reserved) != session_info->active.counter || *((uint32_t*)req_message->message_aes_gcm_data.reserved) > ((uint32_t)-2))
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{
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SAFE_FREE(decrypted_data);
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return INVALID_PARAMETER_ERROR;
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}
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if(ms->msg_type == MESSAGE_EXCHANGE)
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{
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//Call the generic secret response generator for message exchange
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ret = message_exchange_response_generator((char*)decrypted_data, &resp_data, &resp_data_length);
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if(ret !=0)
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{
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SAFE_FREE(decrypted_data);
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SAFE_FREE(resp_data);
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return INVALID_SESSION;
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}
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}
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else
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{
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SAFE_FREE(decrypted_data);
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return INVALID_REQUEST_TYPE_ERROR;
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}
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if(resp_data_length > max_payload_size)
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{
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SAFE_FREE(resp_data);
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SAFE_FREE(decrypted_data);
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return OUT_BUFFER_LENGTH_ERROR;
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}
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resp_message_calc_size = sizeof(secure_message_t)+ resp_data_length;
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if(resp_message_calc_size > resp_message_size)
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{
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SAFE_FREE(resp_data);
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SAFE_FREE(decrypted_data);
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return OUT_BUFFER_LENGTH_ERROR;
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}
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//Code to build the response back to the Source Enclave
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temp_resp_message = (secure_message_t*)malloc(resp_message_calc_size);
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if(!temp_resp_message)
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{
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SAFE_FREE(resp_data);
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SAFE_FREE(decrypted_data);
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return MALLOC_ERROR;
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}
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memset(temp_resp_message,0,sizeof(secure_message_t)+ resp_data_length);
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const uint32_t data2encrypt_length = (uint32_t)resp_data_length;
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temp_resp_message->session_id = session_info->session_id;
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temp_resp_message->message_aes_gcm_data.payload_size = data2encrypt_length;
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//Increment the Session Nonce (Replay Protection)
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session_info->active.counter = session_info->active.counter + 1;
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//Set the response nonce as the session nonce
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memcpy(&temp_resp_message->message_aes_gcm_data.reserved,&session_info->active.counter,sizeof(session_info->active.counter));
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//Prepare the response message with the encrypted payload
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status = sgx_rijndael128GCM_encrypt(&session_info->active.AEK, (uint8_t*)resp_data, data2encrypt_length,
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reinterpret_cast<uint8_t *>(&(temp_resp_message->message_aes_gcm_data.payload)),
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reinterpret_cast<uint8_t *>(&(temp_resp_message->message_aes_gcm_data.reserved)),
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sizeof(temp_resp_message->message_aes_gcm_data.reserved), plaintext, plaintext_length,
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&(temp_resp_message->message_aes_gcm_data.payload_tag));
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if(SGX_SUCCESS != status)
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{
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SAFE_FREE(resp_data);
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SAFE_FREE(decrypted_data);
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SAFE_FREE(temp_resp_message);
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return status;
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}
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memset(resp_message, 0, sizeof(secure_message_t)+ resp_data_length);
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memcpy(resp_message, temp_resp_message, sizeof(secure_message_t)+ resp_data_length);
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SAFE_FREE(decrypted_data);
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SAFE_FREE(resp_data);
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SAFE_FREE(temp_resp_message);
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return SUCCESS;
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}
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//Respond to the request from the Source Enclave to close the session
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extern "C" ATTESTATION_STATUS end_session(uint32_t session_id)
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{
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ATTESTATION_STATUS status = SUCCESS;
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int i;
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dh_session_t session_info;
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//uint32_t session_id;
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//Get the session information from the map corresponding to the source enclave id
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std::map<uint32_t, dh_session_t>::iterator it = g_dest_session_info_map.find(session_id);
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if(it != g_dest_session_info_map.end())
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{
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session_info = it->second;
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}
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else
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{
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return INVALID_SESSION;
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}
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//session_id = session_info.session_id;
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//Erase the session information for the current session
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g_dest_session_info_map.erase(session_id);
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//Update the session id tracker
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if (g_session_count > 0)
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{
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//check if session exists
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for (i=1; i <= MAX_SESSION_COUNT; i++)
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{
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if(g_session_id_tracker[i-1] != NULL && g_session_id_tracker[i-1]->session_id == session_id)
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{
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memset(g_session_id_tracker[i-1], 0, sizeof(session_id_tracker_t));
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SAFE_FREE(g_session_id_tracker[i-1]);
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g_session_count--;
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break;
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}
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}
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}
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return status;
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}
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//Returns a new sessionID for the source destination session
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ATTESTATION_STATUS generate_session_id(uint32_t *session_id)
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{
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ATTESTATION_STATUS status = SUCCESS;
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if(!session_id)
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{
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return INVALID_PARAMETER_ERROR;
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}
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//if the session structure is uninitialized, set that as the next session ID
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for (int i = 0; i < MAX_SESSION_COUNT; i++)
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{
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if (g_session_id_tracker[i] == NULL)
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{
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*session_id = i;
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return status;
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}
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}
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status = NO_AVAILABLE_SESSION_ERROR;
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return status;
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}
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