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Added ecp_use_known_dp()
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@ -32,9 +32,9 @@
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/*
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* ECP error codes
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*
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* (The functions written up to now return MPI error codes only.)
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* (Only one error code available...)
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*/
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#define POLARSSL_ERR_ECP_GENERIC -0x007E /**< Generic ECP error */
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/**
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* \brief ECP point structure (affine coordinates)
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@ -75,6 +75,12 @@ ecp_group;
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* parameters. Therefore, only well-known domain parameters from trusted
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* sources (such as the ones below) should be used.
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*/
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#define POLARSSL_ECP_DP_SECP192R1 0
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#define POLARSSL_ECP_DP_SECP224R1 1
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#define POLARSSL_ECP_DP_SECP256R1 2
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#define POLARSSL_ECP_DP_SECP384R1 3
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#define POLARSSL_ECP_DP_SECP521R1 4
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#define POLARSSL_ECP_SECP192R1_P \
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"FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEFFFFFFFFFFFFFFFF"
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#define POLARSSL_ECP_SECP192R1_B \
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@ -215,6 +221,20 @@ int ecp_group_read_string( ecp_group *grp, int radix,
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const char *p, const char *b,
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const char *gx, const char *gy, const char *n);
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/**
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* \brief Set a group using well-known domain parameters
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*
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* \param grp Destination group
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* \param index Index in the list of well-known domain parameters
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*
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* \return O if successul,
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* POLARSSL_ERR_MPI_XXX if initialization failed
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* POLARSSL_ERR_ECP_GENERIC if index is out of range
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*
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* \note Index should be a POLARSSL_ECP_DP_XXX macro.
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*/
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int ecp_use_known_dp( ecp_group *grp, size_t index );
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/**
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* \brief Addition: R = P + Q
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*
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@ -68,6 +68,7 @@
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* SHA2 1 0x0078-0x0078
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* SHA4 1 0x007A-0x007A
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* PBKDF2 1 0x007C-0x007C
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* ECP 1 0x007E-0x007E
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*
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* High-level module nr (3 bits - 0x1...-0x8...)
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* Name ID Nr of Errors
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@ -154,7 +154,57 @@ cleanup:
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return( ret );
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}
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#define dbg(X) printf(#X " = %s%lu\n", X.s < 0 ? "-" : "", X.p[0])
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/*
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* Set a group using well-known domain parameters
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*/
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int ecp_use_known_dp( ecp_group *grp, size_t index )
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{
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switch( index )
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{
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case POLARSSL_ECP_DP_SECP192R1:
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return( ecp_group_read_string( grp, 16,
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POLARSSL_ECP_SECP192R1_P,
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POLARSSL_ECP_SECP192R1_B,
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POLARSSL_ECP_SECP192R1_GX,
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POLARSSL_ECP_SECP192R1_GY,
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POLARSSL_ECP_SECP192R1_N )
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);
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case POLARSSL_ECP_DP_SECP224R1:
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return( ecp_group_read_string( grp, 16,
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POLARSSL_ECP_SECP224R1_P,
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POLARSSL_ECP_SECP224R1_B,
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POLARSSL_ECP_SECP224R1_GX,
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POLARSSL_ECP_SECP224R1_GY,
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POLARSSL_ECP_SECP224R1_N )
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);
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case POLARSSL_ECP_DP_SECP256R1:
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return( ecp_group_read_string( grp, 16,
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POLARSSL_ECP_SECP256R1_P,
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POLARSSL_ECP_SECP256R1_B,
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POLARSSL_ECP_SECP256R1_GX,
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POLARSSL_ECP_SECP256R1_GY,
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POLARSSL_ECP_SECP256R1_N )
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);
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case POLARSSL_ECP_DP_SECP384R1:
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return( ecp_group_read_string( grp, 16,
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POLARSSL_ECP_SECP384R1_P,
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POLARSSL_ECP_SECP384R1_B,
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POLARSSL_ECP_SECP384R1_GX,
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POLARSSL_ECP_SECP384R1_GY,
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POLARSSL_ECP_SECP384R1_N )
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);
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case POLARSSL_ECP_DP_SECP521R1:
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return( ecp_group_read_string( grp, 16,
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POLARSSL_ECP_SECP521R1_P,
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POLARSSL_ECP_SECP521R1_B,
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POLARSSL_ECP_SECP521R1_GX,
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POLARSSL_ECP_SECP521R1_GY,
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POLARSSL_ECP_SECP521R1_N )
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);
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}
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return( POLARSSL_ERR_ECP_GENERIC );
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}
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/*
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* Addition: R = P + Q, generic case (P != Q, P != 0, Q != 0, R != 0)
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@ -476,7 +526,7 @@ int ecp_self_test( int verbose )
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}
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}
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if (verbose != 0 )
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if( verbose != 0 )
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printf( "passed\n" );
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MPI_CHK( ecp_copy( &mul_tbl[0], &O ) );
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@ -507,9 +557,21 @@ int ecp_self_test( int verbose )
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}
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}
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if (verbose != 0 )
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if( verbose != 0 )
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printf( "passed\n" );
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if( verbose != 0 )
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printf( " ECP test #3 (use_known_dp): " );
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for( i = 0; i <= POLARSSL_ECP_DP_SECP521R1; i++ )
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{
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MPI_CHK( ecp_use_known_dp( &grp, i ) );
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}
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if( verbose != 0 )
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printf( "passed\n" );
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cleanup:
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if( ret != 0 && verbose != 0 )
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