Added a nbits member to ecp_group
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@ -52,18 +52,17 @@ ecp_point;
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/**
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* \brief ECP group structure
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*
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* The curves we consider are defined by y^2 = x^3 - 3x + b mod p,
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* and a generator for a large subgroup is fixed.
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* The curves we consider are defined by y^2 = x^3 - 3x + B mod P,
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* and a generator for a large subgroup of order N is fixed.
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*
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* If modp is NULL, pbits will not be used, and reduction modulo P is
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* done using a generic algorithm.
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* pbits and nbits must be the size of P and N in bits.
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*
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* If modp is not NULL, pbits must be the size of P in bits and modp
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* must be a function that takes an mpi in the range 0..2^(2*pbits) and
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* transforms it in-place in an integer of little more than pbits, so
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* that the integer may be efficiently brought in the 0..P range by a
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* few additions or substractions. It must return 0 on success and a
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* POLARSSL_ERR_ECP_XXX error on failure.
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* If modp is NULL, reduction modulo P is done using a generic
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* algorithm. Otherwise, it must point to a function that takes an mpi
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* in the range 0..2^(2*pbits) and transforms it in-place in an integer
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* of little more than pbits, so that the integer may be efficiently
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* brought in the 0..P range by a few additions or substractions. It
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* must return 0 on success and a POLARSSL_ERR_ECP_XXX error on failure.
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*/
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typedef struct
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{
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@ -71,8 +70,9 @@ typedef struct
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mpi B; /*!< constant term in the equation */
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ecp_point G; /*!< generator of the subgroup used */
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mpi N; /*!< the order of G */
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size_t pbits; /*!< number of bits in P */
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size_t nbits; /*!< number of bits in N */
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int (*modp)(mpi *); /*!< function for fast reduction mod P */
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unsigned pbits; /*!< number of bits in P */
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}
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ecp_group;
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@ -158,6 +158,8 @@ int ecp_point_read_string( ecp_point *P, int radix,
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* \param n The generator's order
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*
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* \return 0 if successful, or a POLARSSL_ERR_MPI_XXX error code
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*
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* \note Sets all fields except modp.
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*/
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int ecp_group_read_string( ecp_group *grp, int radix,
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const char *p, const char *b,
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@ -64,8 +64,10 @@ void ecp_group_init( ecp_group *grp )
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ecp_point_init( &grp->G );
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mpi_init( &grp->N );
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grp->modp = NULL;
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grp->pbits = 0;
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grp->nbits = 0;
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grp->modp = NULL;
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}
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/*
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@ -155,12 +157,16 @@ int ecp_group_read_string( ecp_group *grp, int radix,
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MPI_CHK( ecp_point_read_string( &grp->G, radix, gx, gy ) );
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MPI_CHK( mpi_read_string( &grp->N, radix, n ) );
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grp->pbits = mpi_msb( &grp->P );
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grp->nbits = mpi_msb( &grp->N );
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cleanup:
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return( ret );
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}
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/*
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* Wrapper around fast quasi-modp functions, with fall-back to mpi_mod_mpi
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* Wrapper around fast quasi-modp functions, with fall-back to mpi_mod_mpi.
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* See the documentation of struct ecp_group.
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*/
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static int ecp_modp( mpi *N, const ecp_group *grp )
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{
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@ -394,7 +400,6 @@ int ecp_use_known_dp( ecp_group *grp, size_t index )
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{
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case POLARSSL_ECP_DP_SECP192R1:
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grp->modp = ecp_mod_p192;
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grp->pbits = 192;
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return( ecp_group_read_string( grp, 16,
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SECP192R1_P, SECP192R1_B,
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SECP192R1_GX, SECP192R1_GY, SECP192R1_N ) );
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@ -416,7 +421,6 @@ int ecp_use_known_dp( ecp_group *grp, size_t index )
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case POLARSSL_ECP_DP_SECP521R1:
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grp->modp = ecp_mod_p521;
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grp->pbits = 521;
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return( ecp_group_read_string( grp, 16,
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SECP521R1_P, SECP521R1_B,
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SECP521R1_GX, SECP521R1_GY, SECP521R1_N ) );
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