mirror of
https://github.com/espressif/esp-idf.git
synced 2024-10-05 20:47:46 -04:00
7330851db0
- also renamed the security test app to crypto test app
169 lines
5.3 KiB
C
169 lines
5.3 KiB
C
/*
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* SPDX-FileCopyrightText: 2023 Espressif Systems (Shanghai) CO LTD
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*
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* SPDX-License-Identifier: Unlicense OR CC0-1.0
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*/
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#include <stdio.h>
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#include <string.h>
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#include "esp_log.h"
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#include "esp_private/periph_ctrl.h"
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#include "memory_checks.h"
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#include "unity_fixture.h"
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#if CONFIG_IDF_TARGET_ESP32
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#define ESP_MPI_USE_MONT_EXP
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#endif
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#include "hal/mpi_hal.h"
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#include "mpi_params.h"
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#define _DEBUG_ 0
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static void esp_mpi_enable_hardware_hw_op( void )
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{
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/* Enable RSA hardware */
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periph_module_enable(PERIPH_RSA_MODULE);
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mpi_hal_enable_hardware_hw_op();
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}
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static void esp_mpi_disable_hardware_hw_op( void )
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{
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mpi_hal_disable_hardware_hw_op();
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/* Disable RSA hardware */
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periph_module_disable(PERIPH_RSA_MODULE);
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}
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static void mpi_mul_mpi_mod_hw_op(void)
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{
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esp_mpi_enable_hardware_hw_op();
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for(int i = 0; i < TEST_CASES_NUM; i++){
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#if CONFIG_IDF_TARGET_ESP32
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mpi_hal_set_mode((test_cases_num_words[i] / 16) - 1);
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#else
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mpi_hal_set_mode(test_cases_num_words[i] - 1);
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#endif
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/* Load M, X, Rinv, Mprime (Mprime is mod 2^32) */
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mpi_hal_write_to_mem_block(MPI_PARAM_M, 0, test_cases_M_p[i], test_cases_M_n[i], test_cases_num_words[i]);
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mpi_hal_write_to_mem_block(MPI_PARAM_X, 0, test_cases_X_p[i], test_cases_X_n[i], test_cases_num_words[i]);
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#if !CONFIG_IDF_TARGET_ESP32
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mpi_hal_write_to_mem_block(MPI_PARAM_Y, 0, test_cases_Y_p[i], test_cases_Y_n[i], test_cases_num_words[i]);
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#endif
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mpi_hal_write_to_mem_block(MPI_PARAM_Z, 0, test_cases_Rinv_p[i], test_cases_Rinv_n[i], test_cases_num_words[i]);
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mpi_hal_write_m_prime(test_cases_Mprime[i]);
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#if CONFIG_IDF_TARGET_ESP32
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mpi_hal_start_op(MPI_MULT);
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mpi_hal_wait_op_complete();
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/* execute second stage */
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/* Load Y to X input memory block, rerun */
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mpi_hal_write_to_mem_block(MPI_PARAM_X, 0, test_cases_Y_p[i], test_cases_Y_n[i], test_cases_num_words[i]);
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mpi_hal_start_op(MPI_MULT);
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#else
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mpi_hal_start_op(MPI_MODMULT);
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#endif
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uint32_t* Z_p = (uint32_t*)calloc(test_cases_Z_words[i], sizeof(uint32_t));
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mpi_hal_read_result_hw_op(Z_p, test_cases_Z_words[i], test_cases_Z_words[i]);
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printf("Test Case %d: ", i+1);
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#if _DEBUG_
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printf("\n");
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ESP_LOG_BUFFER_HEX("Expected Z:", test_cases_Z_p[i], test_cases_Z_words[i]*4);
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ESP_LOG_BUFFER_HEX("Got Z:", Z_p, test_cases_Z_words[i]*4);
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#endif
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TEST_ASSERT_EQUAL_HEX32_ARRAY_MESSAGE(test_cases_Z_p[i], Z_p, test_cases_Z_words[i], "Result");
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printf("PASS\n");
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free(Z_p);
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}
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esp_mpi_disable_hardware_hw_op();
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}
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static void mpi_exp_mpi_mod_hw_op(void)
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{
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for (int i = 0; i < EXP_TEST_CASES_NUM; i++) {
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if (i == 14 || i == 16 || i == 18 || i == 22) // cases when Y == 0 (in Z = X ^ Y mod M) should be handled in the software level
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continue;
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#ifdef ESP_MPI_USE_MONT_EXP // CONFIG_IDF_TARGET_ESP32
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printf("Support for montgomery exponentiation to be added.\n");
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break;
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#else
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esp_mpi_enable_hardware_hw_op();
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mpi_hal_set_mode(exp_test_cases_num_words[i] - 1);
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mpi_hal_write_to_mem_block(MPI_PARAM_X, 0, exp_test_cases_X_p[i], exp_test_cases_X_n[i], exp_test_cases_num_words[i]);
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mpi_hal_write_to_mem_block(MPI_PARAM_Y, 0, exp_test_cases_Y_p[i], exp_test_cases_Y_n[i], exp_test_cases_num_words[i]);
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mpi_hal_write_to_mem_block(MPI_PARAM_M, 0, exp_test_cases_M_p[i], exp_test_cases_M_n[i], exp_test_cases_num_words[i]);
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mpi_hal_write_to_mem_block(MPI_PARAM_Z, 0, exp_test_cases_Rinv_p[i], exp_test_cases_Rinv_n[i], exp_test_cases_num_words[i]);
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mpi_hal_write_m_prime(exp_test_cases_Mprime[i]);
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/* Enable acceleration options */
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mpi_hal_enable_constant_time(false);
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mpi_hal_enable_search(true);
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mpi_hal_set_search_position(exp_test_cases_y_bits[i] - 1);
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/* Execute first stage montgomery multiplication */
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mpi_hal_start_op(MPI_MODEXP);
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mpi_hal_enable_search(false);
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#endif
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uint32_t* Z_p = (uint32_t*)calloc(exp_test_cases_m_words[i], sizeof(uint32_t));
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/* Read back the result */
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mpi_hal_read_result_hw_op(Z_p, exp_test_cases_m_words[i], exp_test_cases_m_words[i]);
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esp_mpi_disable_hardware_hw_op();
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printf("Test Case %d: ", i+1);
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#if _DEBUG_
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printf("\n");
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ESP_LOG_BUFFER_HEX("Expected Z:", test_cases_Z_p[i], test_cases_Z_words[i]*4);
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ESP_LOG_BUFFER_HEX("Got Z:", Z_p, test_cases_Z_words[i]*4);
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#endif
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TEST_ASSERT_EQUAL_HEX32_ARRAY_MESSAGE(exp_test_cases_Z_p[i], Z_p, exp_test_cases_m_words[i], "Result");
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printf("PASS\n");
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free(Z_p);
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}
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}
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TEST_GROUP(mpi);
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TEST_SETUP(mpi)
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{
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test_utils_record_free_mem();
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TEST_ESP_OK(test_utils_set_leak_level(0, ESP_LEAK_TYPE_CRITICAL, ESP_COMP_LEAK_GENERAL));
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}
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TEST_TEAR_DOWN(mpi)
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{
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test_utils_finish_and_evaluate_leaks(test_utils_get_leak_level(ESP_LEAK_TYPE_WARNING, ESP_COMP_LEAK_ALL),
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test_utils_get_leak_level(ESP_LEAK_TYPE_CRITICAL, ESP_COMP_LEAK_ALL));
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}
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TEST(mpi, mpi_multiplication)
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{
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mpi_mul_mpi_mod_hw_op();
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}
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TEST(mpi, mpi_exponentiation)
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{
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mpi_exp_mpi_mod_hw_op();
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}
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TEST_GROUP_RUNNER(mpi)
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{
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RUN_TEST_CASE(mpi, mpi_multiplication);
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RUN_TEST_CASE(mpi, mpi_exponentiation);
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}
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