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Move UINT32_LE macros to common.h
32-bit integer manipulation macros (little edian): GET_UINT32_LE and PUT_UINT32_LE appear in several files in library/. Removes duplicate code and save vertical space the macro has been moved to common.h. Improves maintainability. Also provided brief comment in common.h for BYTES_TO_U32_LE. comment/documentation will probably need to be edited further for all recent additions to library/common.h Signed-off-by: Joe Subbiani <joe.subbiani@arm.com>
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@ -57,29 +57,6 @@
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#define AES_VALIDATE( cond ) \
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#define AES_VALIDATE( cond ) \
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MBEDTLS_INTERNAL_VALIDATE( cond )
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MBEDTLS_INTERNAL_VALIDATE( cond )
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE(n,b,i) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE(n,b,i) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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#if defined(MBEDTLS_PADLOCK_C) && \
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#if defined(MBEDTLS_PADLOCK_C) && \
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( defined(MBEDTLS_HAVE_X86) || defined(MBEDTLS_PADLOCK_ALIGN16) )
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( defined(MBEDTLS_HAVE_X86) || defined(MBEDTLS_PADLOCK_ALIGN16) )
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static int aes_padlock_ace = -1;
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static int aes_padlock_ace = -1;
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@ -55,29 +55,6 @@
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#define ARIA_VALIDATE( cond ) \
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#define ARIA_VALIDATE( cond ) \
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MBEDTLS_INTERNAL_VALIDATE( cond )
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MBEDTLS_INTERNAL_VALIDATE( cond )
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE( n, b, i ) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE( n, b, i ) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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/*
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/*
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* modify byte order: ( A B C D ) -> ( B A D C ), i.e. swap pairs of bytes
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* modify byte order: ( A B C D ) -> ( B A D C ), i.e. swap pairs of bytes
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*
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*
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@ -90,8 +90,31 @@
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}
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}
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#endif
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#endif
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE(n,b,i) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE(n,b,i) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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/**
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/**
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*
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* 32-bit integer conversion from bytes (little endian)
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*/
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*/
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#define BYTES_TO_U32_LE( data, offset ) \
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#define BYTES_TO_U32_LE( data, offset ) \
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( (uint32_t) (data)[offset] \
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( (uint32_t) (data)[offset] \
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@ -43,29 +43,6 @@
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#if !defined(MBEDTLS_MD5_ALT)
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#if !defined(MBEDTLS_MD5_ALT)
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE(n,b,i) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE(n,b,i) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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void mbedtls_md5_init( mbedtls_md5_context *ctx )
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void mbedtls_md5_init( mbedtls_md5_context *ctx )
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{
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{
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memset( ctx, 0, sizeof( mbedtls_md5_context ) );
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memset( ctx, 0, sizeof( mbedtls_md5_context ) );
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@ -234,29 +234,6 @@ static psa_status_t psa_crypto_storage_get_data_length(
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return( PSA_SUCCESS );
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return( PSA_SUCCESS );
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}
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}
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE( n, b, i ) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE( n, b, i ) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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/*
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/*
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* 16-bit integer manipulation macros (little endian)
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* 16-bit integer manipulation macros (little endian)
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*/
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*/
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@ -44,29 +44,6 @@
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#if !defined(MBEDTLS_RIPEMD160_ALT)
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#if !defined(MBEDTLS_RIPEMD160_ALT)
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/*
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* 32-bit integer manipulation macros (little endian)
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*/
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#ifndef GET_UINT32_LE
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#define GET_UINT32_LE(n,b,i) \
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{ \
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(n) = ( (uint32_t) (b)[(i) ] ) \
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| ( (uint32_t) (b)[(i) + 1] << 8 ) \
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| ( (uint32_t) (b)[(i) + 2] << 16 ) \
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| ( (uint32_t) (b)[(i) + 3] << 24 ); \
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}
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#endif
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#ifndef PUT_UINT32_LE
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#define PUT_UINT32_LE(n,b,i) \
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{ \
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(b)[(i) ] = (unsigned char) ( ( (n) ) & 0xFF ); \
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(b)[(i) + 1] = (unsigned char) ( ( (n) >> 8 ) & 0xFF ); \
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(b)[(i) + 2] = (unsigned char) ( ( (n) >> 16 ) & 0xFF ); \
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(b)[(i) + 3] = (unsigned char) ( ( (n) >> 24 ) & 0xFF ); \
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}
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#endif
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void mbedtls_ripemd160_init( mbedtls_ripemd160_context *ctx )
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void mbedtls_ripemd160_init( mbedtls_ripemd160_context *ctx )
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{
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{
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memset( ctx, 0, sizeof( mbedtls_ripemd160_context ) );
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memset( ctx, 0, sizeof( mbedtls_ripemd160_context ) );
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