Moved GCM to use cipher layer instead of AES directly
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@ -1,7 +1,7 @@
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/**
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* \file gcm.h
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*
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* \brief Galois/Counter mode for AES
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* \brief Galois/Counter mode for 128-bit block ciphers
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*
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* Copyright (C) 2006-2013, Brainspark B.V.
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*
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@ -27,7 +27,7 @@
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#ifndef POLARSSL_GCM_H
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#define POLARSSL_GCM_H
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#include "aes.h"
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#include "cipher.h"
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#ifdef _MSC_VER
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#include <basetsd.h>
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@ -50,7 +50,7 @@ extern "C" {
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* \brief GCM context structure
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*/
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typedef struct {
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aes_context aes_ctx; /*!< AES context used */
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cipher_context_t cipher_ctx;/*!< cipher context used */
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uint64_t HL[16]; /*!< Precalculated HTable */
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uint64_t HH[16]; /*!< Precalculated HTable */
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uint64_t len; /*!< Total data length */
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@ -66,15 +66,17 @@ gcm_context;
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* \brief GCM initialization (encryption)
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*
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* \param ctx GCM context to be initialized
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* \param cipher cipher to use (a 128-bit block cipher)
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* \param key encryption key
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* \param keysize must be 128, 192 or 256
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*
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* \return 0 if successful, or POLARSSL_ERR_AES_INVALID_KEY_LENGTH
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* \return 0 if successful, or a cipher specific error code
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*/
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int gcm_init( gcm_context *ctx, const unsigned char *key, unsigned int keysize );
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int gcm_init( gcm_context *ctx, cipher_id_t cipher, const unsigned char *key,
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unsigned int keysize );
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/**
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* \brief GCM buffer encryption/decryption using AES
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* \brief GCM buffer encryption/decryption using a block cipher
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*
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* \note On encryption, the output buffer can be the same as the input buffer.
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* On decryption, the output buffer cannot be the same as input buffer.
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@ -108,7 +110,7 @@ int gcm_crypt_and_tag( gcm_context *ctx,
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unsigned char *tag );
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/**
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* \brief GCM buffer authenticated decryption using AES
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* \brief GCM buffer authenticated decryption using a block cipher
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*
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* \note On decryption, the output buffer cannot be the same as input buffer.
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* If buffers overlap, the output buffer must trail at least 8 bytes
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@ -298,9 +298,10 @@ static void gcm_ctx_free( void *ctx )
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polarssl_free( ctx );
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}
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static int gcm_setkey_wrap( void *ctx, const unsigned char *key, unsigned int key_length )
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static int gcm_aes_setkey_wrap( void *ctx, const unsigned char *key, unsigned int key_length )
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{
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return gcm_init( (gcm_context *) ctx, key, key_length );
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return gcm_init( (gcm_context *) ctx, POLARSSL_CIPHER_ID_AES,
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key, key_length );
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}
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const cipher_base_t gcm_aes_info = {
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@ -310,8 +311,8 @@ const cipher_base_t gcm_aes_info = {
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NULL,
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NULL,
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NULL,
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gcm_setkey_wrap,
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gcm_setkey_wrap,
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gcm_aes_setkey_wrap,
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gcm_aes_setkey_wrap,
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gcm_ctx_alloc,
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gcm_ctx_free,
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};
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@ -54,15 +54,17 @@
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}
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#endif
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static void gcm_gen_table( gcm_context *ctx )
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static int gcm_gen_table( gcm_context *ctx )
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{
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int i, j;
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int ret, i, j;
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uint64_t hi, lo;
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uint64_t vl, vh;
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unsigned char h[16];
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size_t olen = 0;
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memset( h, 0, 16 );
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aes_crypt_ecb( &ctx->aes_ctx, AES_ENCRYPT, h, h );
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if( ( ret = cipher_update( &ctx->cipher_ctx, h, 16, h, &olen ) ) != 0 )
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return( ret );
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ctx->HH[0] = 0;
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ctx->HL[0] = 0;
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@ -99,18 +101,33 @@ static void gcm_gen_table( gcm_context *ctx )
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HiL[j] = vl ^ ctx->HL[j];
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}
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}
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return( 0 );
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}
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int gcm_init( gcm_context *ctx, const unsigned char *key, unsigned int keysize )
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int gcm_init( gcm_context *ctx, cipher_id_t cipher, const unsigned char *key,
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unsigned int keysize )
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{
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int ret;
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const cipher_info_t *cipher_info;
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memset( ctx, 0, sizeof(gcm_context) );
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if( ( ret = aes_setkey_enc( &ctx->aes_ctx, key, keysize ) ) != 0 )
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cipher_info = cipher_info_from_values( cipher, keysize, POLARSSL_MODE_ECB );
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if( cipher_info == NULL )
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return( POLARSSL_ERR_GCM_BAD_INPUT );
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if( ( ret = cipher_init_ctx( &ctx->cipher_ctx, cipher_info ) ) != 0 )
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return( ret );
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gcm_gen_table( ctx );
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if( ( ret = cipher_setkey( &ctx->cipher_ctx, key, keysize,
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POLARSSL_ENCRYPT ) ) != 0 )
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{
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return( ret );
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}
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if( ( ret = gcm_gen_table( ctx ) ) != 0 )
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return( ret );
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return( 0 );
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}
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@ -176,10 +193,11 @@ int gcm_starts( gcm_context *ctx,
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const unsigned char *add,
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size_t add_len )
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{
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int ret;
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unsigned char work_buf[16];
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size_t i;
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const unsigned char *p;
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size_t use_len;
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size_t use_len, olen = 0;
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memset( ctx->y, 0x00, sizeof(ctx->y) );
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memset( ctx->buf, 0x00, sizeof(ctx->buf) );
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@ -218,7 +236,11 @@ int gcm_starts( gcm_context *ctx,
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gcm_mult( ctx, ctx->y, ctx->y );
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}
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aes_crypt_ecb( &ctx->aes_ctx, AES_ENCRYPT, ctx->y, ctx->base_ectr );
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if( ( ret = cipher_update( &ctx->cipher_ctx, ctx->y, 16, ctx->base_ectr,
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&olen ) ) != 0 )
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{
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return( ret );
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}
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ctx->add_len = add_len;
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p = add;
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@ -243,11 +265,12 @@ int gcm_update( gcm_context *ctx,
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const unsigned char *input,
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unsigned char *output )
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{
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int ret;
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unsigned char ectr[16];
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size_t i;
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const unsigned char *p;
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unsigned char *out_p = output;
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size_t use_len;
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size_t use_len, olen = 0;
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if( output > input && (size_t) ( output - input ) < length )
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return( POLARSSL_ERR_GCM_BAD_INPUT );
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@ -263,7 +286,11 @@ int gcm_update( gcm_context *ctx,
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if( ++ctx->y[i - 1] != 0 )
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break;
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aes_crypt_ecb( &ctx->aes_ctx, AES_ENCRYPT, ctx->y, ectr );
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if( ( ret = cipher_update( &ctx->cipher_ctx, ctx->y, 16, ectr,
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&olen ) ) != 0 )
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{
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return( ret );
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}
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for( i = 0; i < use_len; i++ )
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{
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@ -613,6 +640,7 @@ int gcm_self_test( int verbose )
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unsigned char buf[64];
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unsigned char tag_buf[16];
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int i, j, ret;
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cipher_id_t cipher = POLARSSL_CIPHER_ID_AES;
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for( j = 0; j < 3; j++ )
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{
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@ -623,7 +651,7 @@ int gcm_self_test( int verbose )
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if( verbose != 0 )
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printf( " AES-GCM-%3d #%d (%s): ", key_len, i, "enc" );
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gcm_init( &ctx, key[key_index[i]], key_len );
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gcm_init( &ctx, cipher, key[key_index[i]], key_len );
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ret = gcm_crypt_and_tag( &ctx, GCM_ENCRYPT,
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pt_len[i],
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@ -647,7 +675,7 @@ int gcm_self_test( int verbose )
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if( verbose != 0 )
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printf( " AES-GCM-%3d #%d (%s): ", key_len, i, "dec" );
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gcm_init( &ctx, key[key_index[i]], key_len );
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gcm_init( &ctx, cipher, key[key_index[i]], key_len );
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ret = gcm_crypt_and_tag( &ctx, GCM_DECRYPT,
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pt_len[i],
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@ -671,7 +699,7 @@ int gcm_self_test( int verbose )
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if( verbose != 0 )
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printf( " AES-GCM-%3d #%d split (%s): ", key_len, i, "enc" );
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gcm_init( &ctx, key[key_index[i]], key_len );
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gcm_init( &ctx, cipher, key[key_index[i]], key_len );
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ret = gcm_starts( &ctx, GCM_ENCRYPT,
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iv[iv_index[i]], iv_len[i],
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@ -734,7 +762,7 @@ int gcm_self_test( int verbose )
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if( verbose != 0 )
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printf( " AES-GCM-%3d #%d split (%s): ", key_len, i, "dec" );
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gcm_init( &ctx, key[key_index[i]], key_len );
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gcm_init( &ctx, cipher, key[key_index[i]], key_len );
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ret = gcm_starts( &ctx, GCM_DECRYPT,
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iv[iv_index[i]], iv_len[i],
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@ -39,7 +39,7 @@ void gcm_encrypt_and_tag( char *hex_key_string, char *hex_src_string,
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iv_len = unhexify( iv_str, hex_iv_string );
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add_len = unhexify( add_str, hex_add_string );
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TEST_ASSERT( gcm_init( &ctx, key_str, key_len * 8 ) == init_result );
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TEST_ASSERT( gcm_init( &ctx, POLARSSL_CIPHER_ID_AES, key_str, key_len * 8 ) == init_result );
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if( init_result == 0 )
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{
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TEST_ASSERT( gcm_crypt_and_tag( &ctx, GCM_ENCRYPT, pt_len, iv_str, iv_len, add_str, add_len, src_str, output, tag_len, tag_output ) == 0 );
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@ -84,7 +84,7 @@ void gcm_decrypt_and_verify( char *hex_key_string, char *hex_src_string,
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add_len = unhexify( add_str, hex_add_string );
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unhexify( tag_str, hex_tag_string );
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TEST_ASSERT( gcm_init( &ctx, key_str, key_len * 8 ) == init_result );
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TEST_ASSERT( gcm_init( &ctx, POLARSSL_CIPHER_ID_AES, key_str, key_len * 8 ) == init_result );
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if( init_result == 0 )
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{
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ret = gcm_auth_decrypt( &ctx, pt_len, iv_str, iv_len, add_str, add_len, tag_str, tag_len, src_str, output );
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