mirror of
https://github.com/Mbed-TLS/mbedtls.git
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4edcf693e7
Move all changes local to Mbed TLS into config-tfm.h (except for commenting out a couple of #include's). Signed-off-by: Dave Rodgman <dave.rodgman@arm.com>
574 lines
18 KiB
C
574 lines
18 KiB
C
/**
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* \file config.h
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*
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* \brief Configuration options (set of defines)
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*
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* This set of compile-time options may be used to enable
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* or disable features selectively, and reduce the global
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* memory footprint.
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*/
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/*
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* Copyright (C) 2006-2023, ARM Limited, All Rights Reserved
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* SPDX-License-Identifier: Apache-2.0
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*
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* Licensed under the Apache License, Version 2.0 (the "License"); you may
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* not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*
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* This file is part of mbed TLS (https://tls.mbed.org)
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*/
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#ifndef PROFILE_M_MBEDTLS_CONFIG_H
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#define PROFILE_M_MBEDTLS_CONFIG_H
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//#include "config_tfm.h"
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#if defined(_MSC_VER) && !defined(_CRT_SECURE_NO_DEPRECATE)
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#define _CRT_SECURE_NO_DEPRECATE 1
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#endif
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/**
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* \name SECTION: System support
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*
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* This section sets system specific settings.
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* \{
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*/
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/**
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* \def MBEDTLS_HAVE_ASM
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*
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* The compiler has support for asm().
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*
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* Requires support for asm() in compiler.
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*
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* Used in:
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* library/aria.c
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* library/timing.c
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* include/mbedtls/bn_mul.h
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*
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* Required by:
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* MBEDTLS_AESNI_C
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* MBEDTLS_PADLOCK_C
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*
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* Comment to disable the use of assembly code.
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*/
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#define MBEDTLS_HAVE_ASM
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/**
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* \def MBEDTLS_PLATFORM_MEMORY
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*
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* Enable the memory allocation layer.
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*
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* By default mbed TLS uses the system-provided calloc() and free().
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* This allows different allocators (self-implemented or provided) to be
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* provided to the platform abstraction layer.
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*
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* Enabling MBEDTLS_PLATFORM_MEMORY without the
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* MBEDTLS_PLATFORM_{FREE,CALLOC}_MACROs will provide
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* "mbedtls_platform_set_calloc_free()" allowing you to set an alternative calloc() and
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* free() function pointer at runtime.
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*
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* Enabling MBEDTLS_PLATFORM_MEMORY and specifying
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* MBEDTLS_PLATFORM_{CALLOC,FREE}_MACROs will allow you to specify the
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* alternate function at compile time.
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*
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* Requires: MBEDTLS_PLATFORM_C
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*
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* Enable this layer to allow use of alternative memory allocators.
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*/
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#define MBEDTLS_PLATFORM_MEMORY
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/* \} name SECTION: System support */
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/**
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* \name SECTION: mbed TLS feature support
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*
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* This section sets support for features that are or are not needed
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* within the modules that are enabled.
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* \{
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*/
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/**
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* \def MBEDTLS_AES_ROM_TABLES
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*
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* Use precomputed AES tables stored in ROM.
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*
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* Uncomment this macro to use precomputed AES tables stored in ROM.
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* Comment this macro to generate AES tables in RAM at runtime.
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*
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* Tradeoff: Using precomputed ROM tables reduces RAM usage by ~8kb
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* (or ~2kb if \c MBEDTLS_AES_FEWER_TABLES is used) and reduces the
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* initialization time before the first AES operation can be performed.
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* It comes at the cost of additional ~8kb ROM use (resp. ~2kb if \c
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* MBEDTLS_AES_FEWER_TABLES below is used), and potentially degraded
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* performance if ROM access is slower than RAM access.
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*
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* This option is independent of \c MBEDTLS_AES_FEWER_TABLES.
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*
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*/
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#define MBEDTLS_AES_ROM_TABLES
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/**
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* \def MBEDTLS_AES_FEWER_TABLES
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*
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* Use less ROM/RAM for AES tables.
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*
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* Uncommenting this macro omits 75% of the AES tables from
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* ROM / RAM (depending on the value of \c MBEDTLS_AES_ROM_TABLES)
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* by computing their values on the fly during operations
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* (the tables are entry-wise rotations of one another).
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*
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* Tradeoff: Uncommenting this reduces the RAM / ROM footprint
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* by ~6kb but at the cost of more arithmetic operations during
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* runtime. Specifically, one has to compare 4 accesses within
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* different tables to 4 accesses with additional arithmetic
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* operations within the same table. The performance gain/loss
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* depends on the system and memory details.
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*
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* This option is independent of \c MBEDTLS_AES_ROM_TABLES.
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*
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*/
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#define MBEDTLS_AES_FEWER_TABLES
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/**
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* \def MBEDTLS_ECP_NIST_OPTIM
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*
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* Enable specific 'modulo p' routines for each NIST prime.
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* Depending on the prime and architecture, makes operations 4 to 8 times
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* faster on the corresponding curve.
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*
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* Comment this macro to disable NIST curves optimisation.
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*/
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#define MBEDTLS_ECP_NIST_OPTIM
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/**
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* \def MBEDTLS_NO_PLATFORM_ENTROPY
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*
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* Do not use built-in platform entropy functions.
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* This is useful if your platform does not support
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* standards like the /dev/urandom or Windows CryptoAPI.
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*
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* Uncomment this macro to disable the built-in platform entropy functions.
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*/
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#define MBEDTLS_NO_PLATFORM_ENTROPY
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/**
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* \def MBEDTLS_ENTROPY_NV_SEED
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*
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* Enable the non-volatile (NV) seed file-based entropy source.
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* (Also enables the NV seed read/write functions in the platform layer)
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*
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* This is crucial (if not required) on systems that do not have a
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* cryptographic entropy source (in hardware or kernel) available.
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*
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* Requires: MBEDTLS_ENTROPY_C, MBEDTLS_PLATFORM_C
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*
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* \note The read/write functions that are used by the entropy source are
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* determined in the platform layer, and can be modified at runtime and/or
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* compile-time depending on the flags (MBEDTLS_PLATFORM_NV_SEED_*) used.
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*
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* \note If you use the default implementation functions that read a seedfile
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* with regular fopen(), please make sure you make a seedfile with the
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* proper name (defined in MBEDTLS_PLATFORM_STD_NV_SEED_FILE) and at
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* least MBEDTLS_ENTROPY_BLOCK_SIZE bytes in size that can be read from
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* and written to or you will get an entropy source error! The default
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* implementation will only use the first MBEDTLS_ENTROPY_BLOCK_SIZE
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* bytes from the file.
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*
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* \note The entropy collector will write to the seed file before entropy is
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* given to an external source, to update it.
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*/
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#define MBEDTLS_ENTROPY_NV_SEED
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/**
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* \def MBEDTLS_PSA_CRYPTO_SPM
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*
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* When MBEDTLS_PSA_CRYPTO_SPM is defined, the code is built for SPM (Secure
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* Partition Manager) integration which separates the code into two parts: a
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* NSPE (Non-Secure Process Environment) and an SPE (Secure Process
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* Environment).
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*
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* Module: library/psa_crypto.c
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* Requires: MBEDTLS_PSA_CRYPTO_C
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*
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*/
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#define MBEDTLS_PSA_CRYPTO_SPM
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/**
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* \def MBEDTLS_SHA256_SMALLER
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*
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* Enable an implementation of SHA-256 that has lower ROM footprint but also
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* lower performance.
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*
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* The default implementation is meant to be a reasonnable compromise between
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* performance and size. This version optimizes more aggressively for size at
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* the expense of performance. Eg on Cortex-M4 it reduces the size of
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* mbedtls_sha256_process() from ~2KB to ~0.5KB for a performance hit of about
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* 30%.
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*
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* Uncomment to enable the smaller implementation of SHA256.
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*/
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#define MBEDTLS_SHA256_SMALLER
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/**
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* \def MBEDTLS_PSA_CRYPTO_CONFIG
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*
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* This setting allows support for cryptographic mechanisms through the PSA
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* API to be configured separately from support through the mbedtls API.
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*
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* When this option is disabled, the PSA API exposes the cryptographic
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* mechanisms that can be implemented on top of the `mbedtls_xxx` API
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* configured with `MBEDTLS_XXX` symbols.
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*
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* When this option is enabled, the PSA API exposes the cryptographic
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* mechanisms requested by the `PSA_WANT_XXX` symbols defined in
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* include/psa/crypto_config.h. The corresponding `MBEDTLS_XXX` settings are
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* automatically enabled if required (i.e. if no PSA driver provides the
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* mechanism). You may still freely enable additional `MBEDTLS_XXX` symbols
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* in mbedtls_config.h.
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*
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* If the symbol #MBEDTLS_PSA_CRYPTO_CONFIG_FILE is defined, it specifies
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* an alternative header to include instead of include/psa/crypto_config.h.
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*
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* This feature is still experimental and is not ready for production since
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* it is not completed.
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*/
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#define MBEDTLS_PSA_CRYPTO_CONFIG
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/* \} name SECTION: mbed TLS feature support */
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/**
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* \name SECTION: mbed TLS modules
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*
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* This section enables or disables entire modules in mbed TLS
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* \{
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*/
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/**
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* \def MBEDTLS_AES_C
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*
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* Enable the AES block cipher.
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*
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* Module: library/aes.c
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* Caller: library/cipher.c
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* library/pem.c
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* library/ctr_drbg.c
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*
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* This module is required to support the TLS ciphersuites that use the AES
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* cipher.
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*
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* PEM_PARSE uses AES for decrypting encrypted keys.
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*/
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#define MBEDTLS_AES_C
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/**
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* \def MBEDTLS_AES_ONLY_128_BIT_KEY_LENGTH
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*
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* Use only 128-bit keys in AES operations to save ROM.
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*
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* Uncomment this macro to remove support for AES operations that use 192-
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* or 256-bit keys.
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*
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* Uncommenting this macro reduces the size of AES code by ~300 bytes
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* on v8-M/Thumb2.
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*
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* Module: library/aes.c
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*
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* Requires: MBEDTLS_AES_C
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*/
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#define MBEDTLS_AES_ONLY_128_BIT_KEY_LENGTH
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/**
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* \def MBEDTLS_CIPHER_C
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*
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* Enable the generic cipher layer.
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*
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* Module: library/cipher.c
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*
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* Uncomment to enable generic cipher wrappers.
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*/
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#define MBEDTLS_CIPHER_C
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/**
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* \def MBEDTLS_CTR_DRBG_C
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*
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* Enable the CTR_DRBG AES-based random generator.
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* The CTR_DRBG generator uses AES-256 by default.
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* To use AES-128 instead, enable MBEDTLS_CTR_DRBG_USE_128_BIT_KEY below.
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*
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* Module: library/ctr_drbg.c
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* Caller:
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*
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* Requires: MBEDTLS_AES_C
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*
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* This module provides the CTR_DRBG AES random number generator.
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*/
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#define MBEDTLS_CTR_DRBG_C
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/**
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* \def MBEDTLS_ENTROPY_C
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*
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* Enable the platform-specific entropy code.
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*
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* Module: library/entropy.c
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* Caller:
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*
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* Requires: MBEDTLS_SHA512_C or MBEDTLS_SHA256_C
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*
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* This module provides a generic entropy pool
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*/
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#define MBEDTLS_ENTROPY_C
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/**
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* \def MBEDTLS_HKDF_C
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*
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* Enable the HKDF algorithm (RFC 5869).
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*
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* Module: library/hkdf.c
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* Caller:
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*
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* Requires: MBEDTLS_MD_C
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*
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* This module adds support for the Hashed Message Authentication Code
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* (HMAC)-based key derivation function (HKDF).
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*/
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//#define MBEDTLS_HKDF_C /* Used for HUK deriviation */
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/**
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* \def MBEDTLS_MEMORY_BUFFER_ALLOC_C
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*
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* Enable the buffer allocator implementation that makes use of a (stack)
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* based buffer to 'allocate' dynamic memory. (replaces calloc() and free()
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* calls)
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*
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* Module: library/memory_buffer_alloc.c
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*
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* Requires: MBEDTLS_PLATFORM_C
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* MBEDTLS_PLATFORM_MEMORY (to use it within mbed TLS)
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*
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* Enable this module to enable the buffer memory allocator.
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*/
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#define MBEDTLS_MEMORY_BUFFER_ALLOC_C
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/**
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* \def MBEDTLS_PLATFORM_C
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*
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* Enable the platform abstraction layer that allows you to re-assign
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* functions like calloc(), free(), snprintf(), printf(), fprintf(), exit().
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*
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* Enabling MBEDTLS_PLATFORM_C enables to use of MBEDTLS_PLATFORM_XXX_ALT
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* or MBEDTLS_PLATFORM_XXX_MACRO directives, allowing the functions mentioned
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* above to be specified at runtime or compile time respectively.
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*
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* \note This abstraction layer must be enabled on Windows (including MSYS2)
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* as other module rely on it for a fixed snprintf implementation.
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*
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* Module: library/platform.c
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* Caller: Most other .c files
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*
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* This module enables abstraction of common (libc) functions.
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*/
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#define MBEDTLS_PLATFORM_C
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#define MBEDTLS_PLATFORM_NO_STD_FUNCTIONS
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#define MBEDTLS_PLATFORM_STD_MEM_HDR <stdlib.h>
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#include <stdio.h>
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#define MBEDTLS_PLATFORM_SNPRINTF_MACRO snprintf
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#define MBEDTLS_PLATFORM_PRINTF_ALT
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#define MBEDTLS_PLATFORM_STD_EXIT_SUCCESS EXIT_SUCCESS
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#define MBEDTLS_PLATFORM_STD_EXIT_FAILURE EXIT_FAILURE
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/**
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* \def MBEDTLS_PSA_CRYPTO_C
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*
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* Enable the Platform Security Architecture cryptography API.
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*
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* Module: library/psa_crypto.c
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*
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* Requires: MBEDTLS_CTR_DRBG_C, MBEDTLS_ENTROPY_C
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*
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*/
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#define MBEDTLS_PSA_CRYPTO_C
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/**
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* \def MBEDTLS_PSA_CRYPTO_STORAGE_C
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*
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* Enable the Platform Security Architecture persistent key storage.
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*
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* Module: library/psa_crypto_storage.c
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*
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* Requires: MBEDTLS_PSA_CRYPTO_C,
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* either MBEDTLS_PSA_ITS_FILE_C or a native implementation of
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* the PSA ITS interface
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*/
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#define MBEDTLS_PSA_CRYPTO_STORAGE_C
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/* \} name SECTION: mbed TLS modules */
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/**
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* \name SECTION: General configuration options
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*
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* This section contains Mbed TLS build settings that are not associated
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* with a particular module.
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*
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* \{
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*/
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/**
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* \def MBEDTLS_CONFIG_FILE
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*
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* If defined, this is a header which will be included instead of
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* `"mbedtls/mbedtls_config.h"`.
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* This header file specifies the compile-time configuration of Mbed TLS.
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* Unlike other configuration options, this one must be defined on the
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* compiler command line: a definition in `mbedtls_config.h` would have
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* no effect.
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*
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* This macro is expanded after an <tt>\#include</tt> directive. This is a popular but
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* non-standard feature of the C language, so this feature is only available
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* with compilers that perform macro expansion on an <tt>\#include</tt> line.
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*
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* The value of this symbol is typically a path in double quotes, either
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* absolute or relative to a directory on the include search path.
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*/
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//#define MBEDTLS_CONFIG_FILE "mbedtls/mbedtls_config.h"
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/**
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* \def MBEDTLS_USER_CONFIG_FILE
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*
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* If defined, this is a header which will be included after
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* `"mbedtls/mbedtls_config.h"` or #MBEDTLS_CONFIG_FILE.
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* This allows you to modify the default configuration, including the ability
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* to undefine options that are enabled by default.
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*
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* This macro is expanded after an <tt>\#include</tt> directive. This is a popular but
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* non-standard feature of the C language, so this feature is only available
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* with compilers that perform macro expansion on an <tt>\#include</tt> line.
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*
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* The value of this symbol is typically a path in double quotes, either
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* absolute or relative to a directory on the include search path.
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*/
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//#define MBEDTLS_USER_CONFIG_FILE "/dev/null"
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/**
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* \def MBEDTLS_PSA_CRYPTO_CONFIG_FILE
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*
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* If defined, this is a header which will be included instead of
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* `"psa/crypto_config.h"`.
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* This header file specifies which cryptographic mechanisms are available
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* through the PSA API when #MBEDTLS_PSA_CRYPTO_CONFIG is enabled, and
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* is not used when #MBEDTLS_PSA_CRYPTO_CONFIG is disabled.
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*
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* This macro is expanded after an <tt>\#include</tt> directive. This is a popular but
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* non-standard feature of the C language, so this feature is only available
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* with compilers that perform macro expansion on an <tt>\#include</tt> line.
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*
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* The value of this symbol is typically a path in double quotes, either
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* absolute or relative to a directory on the include search path.
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*/
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//#define MBEDTLS_PSA_CRYPTO_CONFIG_FILE "psa/crypto_config.h"
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/**
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* \def MBEDTLS_PSA_CRYPTO_USER_CONFIG_FILE
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*
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* If defined, this is a header which will be included after
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* `"psa/crypto_config.h"` or #MBEDTLS_PSA_CRYPTO_CONFIG_FILE.
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* This allows you to modify the default configuration, including the ability
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* to undefine options that are enabled by default.
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*
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* This macro is expanded after an <tt>\#include</tt> directive. This is a popular but
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* non-standard feature of the C language, so this feature is only available
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* with compilers that perform macro expansion on an <tt>\#include</tt> line.
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*
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* The value of this symbol is typically a path in double quotes, either
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* absolute or relative to a directory on the include search path.
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*/
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//#define MBEDTLS_PSA_CRYPTO_USER_CONFIG_FILE "/dev/null"
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/** \} name SECTION: General configuration options */
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/**
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* \name SECTION: Module configuration options
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*
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* This section allows for the setting of module specific sizes and
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* configuration options. The default values are already present in the
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* relevant header files and should suffice for the regular use cases.
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*
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* Our advice is to enable options and change their values here
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* only if you have a good reason and know the consequences.
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*
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* Please check the respective header file for documentation on these
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* parameters (to prevent duplicate documentation).
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* \{
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*/
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/* ECP options */
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#define MBEDTLS_ECP_FIXED_POINT_OPTIM 0 /**< Disable fixed-point speed-up */
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/**
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* Uncomment to enable p256-m. This is an alternative implementation of
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* key generation, ECDH and (randomized) ECDSA on the curve SECP256R1.
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* Compared to the default implementation:
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*
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* - p256-m has a much smaller code size and RAM footprint.
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* - p256-m is only available via the PSA API. This includes the pk module
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* when #MBEDTLS_USE_PSA_CRYPTO is enabled.
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* - p256-m does not support deterministic ECDSA, EC-JPAKE, custom protocols
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* over the core arithmetic, or deterministic derivation of keys.
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*
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* We recommend enabling this option if your application uses the PSA API
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* and the only elliptic curve support it needs is ECDH and ECDSA over
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* SECP256R1.
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*
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* If you enable this option, you do not need to enable any ECC-related
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* MBEDTLS_xxx option. You do need to separately request support for the
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* cryptographic mechanisms through the PSA API:
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* - #MBEDTLS_PSA_CRYPTO_C and #MBEDTLS_PSA_CRYPTO_CONFIG for PSA-based
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* configuration;
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* - #MBEDTLS_USE_PSA_CRYPTO if you want to use p256-m from PK, X.509 or TLS;
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* - #PSA_WANT_ECC_SECP_R1_256;
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* - #PSA_WANT_ALG_ECDH and/or #PSA_WANT_ALG_ECDSA as needed;
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* - #PSA_WANT_KEY_TYPE_ECC_PUBLIC_KEY, #PSA_WANT_KEY_TYPE_ECC_KEY_PAIR_BASIC,
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* #PSA_WANT_KEY_TYPE_ECC_KEY_PAIR_IMPORT,
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* #PSA_WANT_KEY_TYPE_ECC_KEY_PAIR_EXPORT and/or
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* #PSA_WANT_KEY_TYPE_ECC_KEY_PAIR_GENERATE as needed.
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*
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* \note To benefit from the smaller code size of p256-m, make sure that you
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* do not enable any ECC-related option not supported by p256-m: this
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* would cause the built-in ECC implementation to be built as well, in
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* order to provide the required option.
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* Make sure #PSA_WANT_ALG_DETERMINISTIC_ECDSA, #PSA_WANT_ALG_JPAKE and
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* #PSA_WANT_KEY_TYPE_ECC_KEY_PAIR_DERIVE, and curves other than
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* SECP256R1 are disabled as they are not supported by this driver.
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* Also, avoid defining #MBEDTLS_PK_PARSE_EC_COMPRESSED or
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* #MBEDTLS_PK_PARSE_EC_EXTENDED as those currently require a subset of
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* the built-in ECC implementation, see docs/driver-only-builds.md.
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*/
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#define MBEDTLS_PSA_P256M_DRIVER_ENABLED
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/* \} name SECTION: Customisation configuration options */
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#if CRYPTO_NV_SEED
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#include "tfm_mbedcrypto_config_extra_nv_seed.h"
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#endif /* CRYPTO_NV_SEED */
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#if !defined(CRYPTO_HW_ACCELERATOR) && defined(MBEDTLS_ENTROPY_NV_SEED)
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//#include "mbedtls_entropy_nv_seed_config.h"
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#endif
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#ifdef CRYPTO_HW_ACCELERATOR
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#include "mbedtls_accelerator_config.h"
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#endif
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#endif /* PROFILE_M_MBEDTLS_CONFIG_H */
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