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https://github.com/yuzu-emu/mbedtls.git
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- Added input checking and more efficient buffer overlap use
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369e14bbf1
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@ -188,7 +188,6 @@ int gcm_crypt_and_tag( gcm_context *ctx,
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unsigned char buf[16];
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unsigned char buf[16];
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unsigned char work_buf[16];
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unsigned char work_buf[16];
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size_t i;
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size_t i;
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unsigned char cb;
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const unsigned char *p;
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const unsigned char *p;
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unsigned char *out_p = output;
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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;
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@ -201,6 +200,12 @@ int gcm_crypt_and_tag( gcm_context *ctx,
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memset( tag, 0x00, tag_len );
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memset( tag, 0x00, tag_len );
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memset( buf, 0x00, 16 );
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memset( buf, 0x00, 16 );
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if( ( mode == GCM_DECRYPT && output <= input && ( input - output ) < 8 ) ||
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( output > input && (size_t) ( output - input ) < length ) )
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{
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return( POLARSSL_ERR_GCM_BAD_INPUT );
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}
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if( mode == GCM_ENCRYPT )
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if( mode == GCM_ENCRYPT )
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xor_p = (unsigned char **) &out_p;
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xor_p = (unsigned char **) &out_p;
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else
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else
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@ -270,11 +275,9 @@ int gcm_crypt_and_tag( gcm_context *ctx,
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{
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{
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use_len = ( length < 16 ) ? length : 16;
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use_len = ( length < 16 ) ? length : 16;
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i = 15;
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for( i = 16; i > 0; i-- )
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do {
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if( ++y[i - 1] != 0 )
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y[i]++;
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break;
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cb = y[i] == 0;
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} while( i-- && cb );
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aes_crypt_ecb( &ctx->aes_ctx, AES_ENCRYPT, y, ectr );
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aes_crypt_ecb( &ctx->aes_ctx, AES_ENCRYPT, y, ectr );
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@ -282,21 +285,18 @@ int gcm_crypt_and_tag( gcm_context *ctx,
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{
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{
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((uint64_t *) out_p)[0] = ((uint64_t *) ectr)[0] ^
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((uint64_t *) out_p)[0] = ((uint64_t *) ectr)[0] ^
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((uint64_t *) p)[0];
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((uint64_t *) p)[0];
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((uint64_t *) buf)[0] ^= ((uint64_t *) (*xor_p))[0];
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((uint64_t *) out_p)[1] = ((uint64_t *) ectr)[1] ^
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((uint64_t *) out_p)[1] = ((uint64_t *) ectr)[1] ^
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((uint64_t *) p)[1];
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((uint64_t *) p)[1];
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}
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else
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for( i = 0; i < use_len; i++ )
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out_p[i] = ectr[i] ^ p[i];
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if( use_len == 16 )
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{
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((uint64_t *) buf)[0] ^= ((uint64_t *) (*xor_p))[0];
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((uint64_t *) buf)[1] ^= ((uint64_t *) (*xor_p))[1];
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((uint64_t *) buf)[1] ^= ((uint64_t *) (*xor_p))[1];
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}
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}
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else
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else
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for( i = 0; i < use_len; i++ )
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for( i = 0; i < use_len; i++ )
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{
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out_p[i] = ectr[i] ^ p[i];
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buf[i] ^= (*xor_p)[i];
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buf[i] ^= (*xor_p)[i];
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}
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gcm_mult( ctx, buf, buf );
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gcm_mult( ctx, buf, buf );
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