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Try to clarify ECDH interface documentation
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@ -47,23 +47,24 @@ typedef enum
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*/
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typedef struct
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{
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ecp_group grp; /*!< ellipitic curve used */
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mpi d; /*!< our secret value */
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ecp_point Q; /*!< our public value */
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ecp_point Qp; /*!< peer's public value */
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mpi z; /*!< shared secret */
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int point_format; /*!< format for point export */
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ecp_point Vi; /*!< blinding value (for later) */
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ecp_point Vf; /*!< un-blinding value (for later) */
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mpi _d; /*!< previous d */
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ecp_group grp; /*!< ellipitic curve used */
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mpi d; /*!< our secret value (private key) */
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ecp_point Q; /*!< our public value (public key) */
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ecp_point Qp; /*!< peer's public value (public key) */
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mpi z; /*!< shared secret */
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int point_format; /*!< format for point export in TLS messages */
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ecp_point Vi; /*!< blinding value (for later) */
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ecp_point Vf; /*!< un-blinding value (for later) */
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mpi _d; /*!< previous d (for later) */
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}
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ecdh_context;
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/**
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* \brief Generate a public key
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* \brief Generate a public key.
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* Raw function that only does the core computation.
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*
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* \param grp ECP group
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* \param d Destination MPI (secret exponent)
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* \param d Destination MPI (secret exponent, aka private key)
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* \param Q Destination point (public key)
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* \param f_rng RNG function
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* \param p_rng RNG parameter
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@ -77,11 +78,12 @@ int ecdh_gen_public( ecp_group *grp, mpi *d, ecp_point *Q,
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/**
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* \brief Compute shared secret
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* Raw function that only does the core computation.
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*
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* \param grp ECP group
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* \param z Destination MPI (shared secret)
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* \param Q Public key from other party
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* \param d Our secret exponent
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* \param d Our secret exponent (private key)
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* \param f_rng RNG function (see notes)
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* \param p_rng RNG parameter
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*
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@ -112,7 +114,8 @@ void ecdh_init( ecdh_context *ctx );
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void ecdh_free( ecdh_context *ctx );
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/**
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* \brief Setup and write the ServerKeyExhange parameters
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* \brief Generate a public key and a TLS ServerKeyExchange payload.
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* (First function used by a TLS server for ECDHE.)
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*
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* \param ctx ECDH context
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* \param olen number of chars written
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@ -132,7 +135,8 @@ int ecdh_make_params( ecdh_context *ctx, size_t *olen,
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void *p_rng );
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/**
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* \brief Parse the ServerKeyExhange parameters
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* \brief Parse and procress a TLS ServerKeyExhange payload.
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* (First function used by a TLS client for ECDHE.)
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*
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* \param ctx ECDH context
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* \param buf pointer to start of input buffer
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@ -144,7 +148,10 @@ int ecdh_read_params( ecdh_context *ctx,
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const unsigned char **buf, const unsigned char *end );
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/**
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* \brief Setup an ECDH context from an EC key
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* \brief Setup an ECDH context from an EC key.
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* (Used by clients and servers in place of the
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* ServerKeyEchange for static ECDH: import ECDH parameters
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* from a certificate's EC key information.)
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*
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* \param ctx ECDH constext to set
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* \param key EC key to use
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@ -156,7 +163,8 @@ int ecdh_get_params( ecdh_context *ctx, const ecp_keypair *key,
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ecdh_side side );
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/**
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* \brief Setup and export the client's public value
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* \brief Generate a public key and a TLS ClientKeyExchange payload.
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* (Second function used by a TLS client for ECDH(E).)
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*
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* \param ctx ECDH context
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* \param olen number of bytes actually written
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@ -173,7 +181,8 @@ int ecdh_make_public( ecdh_context *ctx, size_t *olen,
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void *p_rng );
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/**
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* \brief Parse and import the client's public value
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* \brief Parse and process a TLS ClientKeyExchange payload.
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* (Second function used by a TLS server for ECDH(E).)
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*
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* \param ctx ECDH context
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* \param buf start of input buffer
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@ -185,7 +194,8 @@ int ecdh_read_public( ecdh_context *ctx,
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const unsigned char *buf, size_t blen );
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/**
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* \brief Derive and export the shared secret
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* \brief Derive and export the shared secret.
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* (Last function used by both TLS client en servers.)
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*
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* \param ctx ECDH context
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* \param olen number of bytes written
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