mirror of
https://github.com/yuzu-emu/mbedtls
synced 2024-11-25 02:08:14 +00:00
a0b67c2f3e
When using a primality testing function the tolerable error rate depends on the scheme in question, the required security strength and wether it is used for key generation or parameter validation. To support all use cases we need more flexibility than what the old API provides.
201 lines
5.7 KiB
C
201 lines
5.7 KiB
C
/*
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* Diffie-Hellman-Merkle key exchange (prime generation)
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*
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* Copyright (C) 2006-2015, 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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#if !defined(MBEDTLS_CONFIG_FILE)
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#include "mbedtls/config.h"
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#else
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#include MBEDTLS_CONFIG_FILE
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#endif
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#if defined(MBEDTLS_PLATFORM_C)
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#include "mbedtls/platform.h"
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#else
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#include <stdio.h>
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#include <stdlib.h>
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#define mbedtls_printf printf
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#define mbedtls_time_t time_t
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#define MBEDTLS_EXIT_SUCCESS EXIT_SUCCESS
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#define MBEDTLS_EXIT_FAILURE EXIT_FAILURE
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#endif /* MBEDTLS_PLATFORM_C */
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#if !defined(MBEDTLS_BIGNUM_C) || !defined(MBEDTLS_ENTROPY_C) || \
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!defined(MBEDTLS_FS_IO) || !defined(MBEDTLS_CTR_DRBG_C) || \
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!defined(MBEDTLS_GENPRIME)
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int main( void )
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{
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mbedtls_printf("MBEDTLS_BIGNUM_C and/or MBEDTLS_ENTROPY_C and/or "
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"MBEDTLS_FS_IO and/or MBEDTLS_CTR_DRBG_C and/or "
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"MBEDTLS_GENPRIME not defined.\n");
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return( 0 );
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}
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#else
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#include "mbedtls/bignum.h"
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#include "mbedtls/entropy.h"
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#include "mbedtls/ctr_drbg.h"
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#include <stdio.h>
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#include <string.h>
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#define USAGE \
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"\n usage: dh_genprime param=<>...\n" \
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"\n acceprable parameters:\n" \
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" bits=%%d default: 2048\n"
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#define DFL_BITS 2048
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/*
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* Note: G = 4 is always a quadratic residue mod P,
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* so it is a generator of order Q (with P = 2*Q+1).
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*/
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#define GENERATOR "4"
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int main( int argc, char **argv )
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{
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int ret = 1;
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int exit_code = MBEDTLS_EXIT_FAILURE;
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mbedtls_mpi G, P, Q;
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mbedtls_entropy_context entropy;
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mbedtls_ctr_drbg_context ctr_drbg;
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const char *pers = "dh_genprime";
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FILE *fout;
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int nbits = DFL_BITS;
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int i;
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char *p, *q;
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mbedtls_mpi_init( &G ); mbedtls_mpi_init( &P ); mbedtls_mpi_init( &Q );
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mbedtls_ctr_drbg_init( &ctr_drbg );
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mbedtls_entropy_init( &entropy );
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if( argc == 0 )
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{
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usage:
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mbedtls_printf( USAGE );
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return( exit_code );
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}
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for( i = 1; i < argc; i++ )
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{
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p = argv[i];
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if( ( q = strchr( p, '=' ) ) == NULL )
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goto usage;
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*q++ = '\0';
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if( strcmp( p, "bits" ) == 0 )
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{
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nbits = atoi( q );
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if( nbits < 0 || nbits > MBEDTLS_MPI_MAX_BITS )
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goto usage;
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}
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else
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goto usage;
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}
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if( ( ret = mbedtls_mpi_read_string( &G, 10, GENERATOR ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_read_string returned %d\n", ret );
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goto exit;
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}
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mbedtls_printf( " ! Generating large primes may take minutes!\n" );
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mbedtls_printf( "\n . Seeding the random number generator..." );
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fflush( stdout );
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if( ( ret = mbedtls_ctr_drbg_seed( &ctr_drbg, mbedtls_entropy_func, &entropy,
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(const unsigned char *) pers,
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strlen( pers ) ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_ctr_drbg_seed returned %d\n", ret );
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goto exit;
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}
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mbedtls_printf( " ok\n . Generating the modulus, please wait..." );
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fflush( stdout );
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/*
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* This can take a long time...
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*/
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if( ( ret = mbedtls_mpi_gen_prime( &P, nbits, 1,
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mbedtls_ctr_drbg_random, &ctr_drbg ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_gen_prime returned %d\n\n", ret );
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goto exit;
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}
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mbedtls_printf( " ok\n . Verifying that Q = (P-1)/2 is prime..." );
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fflush( stdout );
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if( ( ret = mbedtls_mpi_sub_int( &Q, &P, 1 ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_sub_int returned %d\n\n", ret );
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goto exit;
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}
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if( ( ret = mbedtls_mpi_div_int( &Q, NULL, &Q, 2 ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_div_int returned %d\n\n", ret );
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goto exit;
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}
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if( ( ret = mbedtls_mpi_is_prime_ext( &Q, 50, mbedtls_ctr_drbg_random, &ctr_drbg ) ) != 0 )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_is_prime returned %d\n\n", ret );
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goto exit;
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}
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mbedtls_printf( " ok\n . Exporting the value in dh_prime.txt..." );
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fflush( stdout );
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if( ( fout = fopen( "dh_prime.txt", "wb+" ) ) == NULL )
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{
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mbedtls_printf( " failed\n ! Could not create dh_prime.txt\n\n" );
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goto exit;
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}
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if( ( ret = mbedtls_mpi_write_file( "P = ", &P, 16, fout ) != 0 ) ||
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( ret = mbedtls_mpi_write_file( "G = ", &G, 16, fout ) != 0 ) )
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{
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mbedtls_printf( " failed\n ! mbedtls_mpi_write_file returned %d\n\n", ret );
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fclose( fout );
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goto exit;
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}
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mbedtls_printf( " ok\n\n" );
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fclose( fout );
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exit_code = MBEDTLS_EXIT_SUCCESS;
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exit:
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mbedtls_mpi_free( &G ); mbedtls_mpi_free( &P ); mbedtls_mpi_free( &Q );
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mbedtls_ctr_drbg_free( &ctr_drbg );
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mbedtls_entropy_free( &entropy );
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#if defined(_WIN32)
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mbedtls_printf( " Press Enter to exit this program.\n" );
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fflush( stdout ); getchar();
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#endif
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return( exit_code );
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}
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#endif /* MBEDTLS_BIGNUM_C && MBEDTLS_ENTROPY_C && MBEDTLS_FS_IO &&
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MBEDTLS_CTR_DRBG_C && MBEDTLS_GENPRIME */
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