/** * \file * \brief Unity tests for the cryptoauthlib Verify Command * * \copyright (c) 2015-2020 Microchip Technology Inc. and its subsidiaries. * * \page License * * Subject to your compliance with these terms, you may use Microchip software * and any derivatives exclusively with Microchip products. It is your * responsibility to comply with third party license terms applicable to your * use of third party software (including open source software) that may * accompany Microchip software. * * THIS SOFTWARE IS SUPPLIED BY MICROCHIP "AS IS". NO WARRANTIES, WHETHER * EXPRESS, IMPLIED OR STATUTORY, APPLY TO THIS SOFTWARE, INCLUDING ANY IMPLIED * WARRANTIES OF NON-INFRINGEMENT, MERCHANTABILITY, AND FITNESS FOR A * PARTICULAR PURPOSE. IN NO EVENT WILL MICROCHIP BE LIABLE FOR ANY INDIRECT, * SPECIAL, PUNITIVE, INCIDENTAL OR CONSEQUENTIAL LOSS, DAMAGE, COST OR EXPENSE * OF ANY KIND WHATSOEVER RELATED TO THE SOFTWARE, HOWEVER CAUSED, EVEN IF * MICROCHIP HAS BEEN ADVISED OF THE POSSIBILITY OR THE DAMAGES ARE * FORESEEABLE. TO THE FULLEST EXTENT ALLOWED BY LAW, MICROCHIP'S TOTAL * LIABILITY ON ALL CLAIMS IN ANY WAY RELATED TO THIS SOFTWARE WILL NOT EXCEED * THE AMOUNT OF FEES, IF ANY, THAT YOU HAVE PAID DIRECTLY TO MICROCHIP FOR * THIS SOFTWARE. */ #include #include "atca_test.h" #include "basic/atca_basic.h" #include "host/atca_host.h" #include "test/atca_tests.h" #include "atca_execution.h" TEST(atca_cmd_unit_test, nonce_passthrough) { ATCA_STATUS status; ATCAPacket packet; ATCACommand ca_cmd = _gDevice->mCommands; //build a nonce command (pass through mode) packet.param1 = NONCE_MODE_PASSTHROUGH; packet.param2 = 0x0000; memset(packet.data, 0x55, 32); // a 32-byte nonce status = atNonce(ca_cmd, &packet); TEST_ASSERT_EQUAL(ATCA_SUCCESS, status); TEST_ASSERT_EQUAL_INT(NONCE_COUNT_LONG, packet.txsize); status = atca_execute_command(&packet, _gDevice); TEST_ASSERT_EQUAL(ATCA_SUCCESS, status); TEST_ASSERT_EQUAL_INT(NONCE_RSP_SIZE_SHORT, packet.data[ATCA_COUNT_IDX]); // check for nonce response for pass through mode TEST_ASSERT_EQUAL_INT8(ATCA_SUCCESS, packet.data[ATCA_RSP_DATA_IDX]); } TEST(atca_cmd_basic_test, challenge) { ATCA_STATUS status = ATCA_GEN_FAIL; uint8_t random_number[32]; status = atcab_random(random_number); TEST_ASSERT_EQUAL(ATCA_SUCCESS, status); status = atcab_nonce(random_number); TEST_ASSERT_EQUAL(ATCA_SUCCESS, status); } // *INDENT-OFF* - Preserve formatting t_test_case_info nonce_basic_test_info[] = { { REGISTER_TEST_CASE(atca_cmd_basic_test, challenge), DEVICE_MASK(ATSHA204A) | DEVICE_MASK(ATECC108A) | DEVICE_MASK(ATECC508A) | DEVICE_MASK(ATECC608A) }, { (fp_test_case)NULL, (uint8_t)0 },/* Array Termination element*/ }; t_test_case_info nonce_unit_test_info[] = { { REGISTER_TEST_CASE(atca_cmd_unit_test, nonce_passthrough), DEVICE_MASK(ATSHA204A) | DEVICE_MASK(ATECC108A) | DEVICE_MASK(ATECC508A) | DEVICE_MASK(ATECC608A) }, { (fp_test_case)NULL, (uint8_t)0 }, /* Array Termination element*/ }; // *INDENT-ON*