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/**
* \ file ssl . h
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*
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* \ brief SSL / TLS functions .
*
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* Copyright ( C ) 2006 - 2013 , Brainspark B . V .
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*
* This file is part of PolarSSL ( http : //www.polarssl.org)
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* Lead Maintainer : Paul Bakker < polarssl_maintainer at polarssl . org >
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*
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* All rights reserved .
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*
* This program is free software ; you can redistribute it and / or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation ; either version 2 of the License , or
* ( at your option ) any later version .
*
* This program is distributed in the hope that it will be useful ,
* but WITHOUT ANY WARRANTY ; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE . See the
* GNU General Public License for more details .
*
* You should have received a copy of the GNU General Public License along
* with this program ; if not , write to the Free Software Foundation , Inc . ,
* 51 Franklin Street , Fifth Floor , Boston , MA 02110 - 1301 USA .
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*/
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# ifndef POLARSSL_SSL_H
# define POLARSSL_SSL_H
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# include "config.h"
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# include "net.h"
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# include "bignum.h"
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# include "md5.h"
# include "sha1.h"
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# include "sha256.h"
# include "sha512.h"
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# include "ssl_ciphersuites.h"
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# if defined(POLARSSL_X509_PARSE_C)
# include "x509.h"
# endif
# if defined(POLARSSL_RSA_C)
# include "rsa.h"
# endif
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# if defined(POLARSSL_DHM_C)
# include "dhm.h"
# endif
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# if defined(POLARSSL_ECDH_C)
# include "ecdh.h"
# endif
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# if defined(POLARSSL_ZLIB_SUPPORT)
# include "zlib.h"
# endif
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# if defined(POLARSSL_HAVE_TIME)
# include <time.h>
# endif
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# if defined(_MSC_VER) && !defined(inline)
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# define inline _inline
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# else
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# if defined(__ARMCC_VERSION) && !defined(inline)
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# define inline __inline
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# endif /* __ARMCC_VERSION */
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# endif /*_MSC_VER */
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/*
* SSL Error codes
*/
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# define POLARSSL_ERR_SSL_FEATURE_UNAVAILABLE -0x7080 /**< The requested feature is not available. */
# define POLARSSL_ERR_SSL_BAD_INPUT_DATA -0x7100 /**< Bad input parameters to function. */
# define POLARSSL_ERR_SSL_INVALID_MAC -0x7180 /**< Verification of the message MAC failed. */
# define POLARSSL_ERR_SSL_INVALID_RECORD -0x7200 /**< An invalid SSL record was received. */
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# define POLARSSL_ERR_SSL_CONN_EOF -0x7280 /**< The connection indicated an EOF. */
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# define POLARSSL_ERR_SSL_UNKNOWN_CIPHER -0x7300 /**< An unknown cipher was received. */
# define POLARSSL_ERR_SSL_NO_CIPHER_CHOSEN -0x7380 /**< The server has no ciphersuites in common with the client. */
# define POLARSSL_ERR_SSL_NO_SESSION_FOUND -0x7400 /**< No session to recover was found. */
# define POLARSSL_ERR_SSL_NO_CLIENT_CERTIFICATE -0x7480 /**< No client certification received from the client, but required by the authentication mode. */
# define POLARSSL_ERR_SSL_CERTIFICATE_TOO_LARGE -0x7500 /**< Our own certificate(s) is/are too large to send in an SSL message.*/
# define POLARSSL_ERR_SSL_CERTIFICATE_REQUIRED -0x7580 /**< The own certificate is not set, but needed by the server. */
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# define POLARSSL_ERR_SSL_PRIVATE_KEY_REQUIRED -0x7600 /**< The own private key or pre-shared key is not set, but needed. */
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# define POLARSSL_ERR_SSL_CA_CHAIN_REQUIRED -0x7680 /**< No CA Chain is set, but required to operate. */
# define POLARSSL_ERR_SSL_UNEXPECTED_MESSAGE -0x7700 /**< An unexpected message was received from our peer. */
# define POLARSSL_ERR_SSL_FATAL_ALERT_MESSAGE -0x7780 /**< A fatal alert message was received from our peer. */
# define POLARSSL_ERR_SSL_PEER_VERIFY_FAILED -0x7800 /**< Verification of our peer failed. */
# define POLARSSL_ERR_SSL_PEER_CLOSE_NOTIFY -0x7880 /**< The peer notified us that the connection is going to be closed. */
# define POLARSSL_ERR_SSL_BAD_HS_CLIENT_HELLO -0x7900 /**< Processing of the ClientHello handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_SERVER_HELLO -0x7980 /**< Processing of the ServerHello handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE -0x7A00 /**< Processing of the Certificate handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE_REQUEST -0x7A80 /**< Processing of the CertificateRequest handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_SERVER_KEY_EXCHANGE -0x7B00 /**< Processing of the ServerKeyExchange handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_SERVER_HELLO_DONE -0x7B80 /**< Processing of the ServerHelloDone handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE -0x7C00 /**< Processing of the ClientKeyExchange handshake message failed. */
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# define POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE_RP -0x7C80 /**< Processing of the ClientKeyExchange handshake message failed in DHM / ECDH Read Public. */
# define POLARSSL_ERR_SSL_BAD_HS_CLIENT_KEY_EXCHANGE_CS -0x7D00 /**< Processing of the ClientKeyExchange handshake message failed in DHM / ECDH Calculate Secret. */
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# define POLARSSL_ERR_SSL_BAD_HS_CERTIFICATE_VERIFY -0x7D80 /**< Processing of the CertificateVerify handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_CHANGE_CIPHER_SPEC -0x7E00 /**< Processing of the ChangeCipherSpec handshake message failed. */
# define POLARSSL_ERR_SSL_BAD_HS_FINISHED -0x7E80 /**< Processing of the Finished handshake message failed. */
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# define POLARSSL_ERR_SSL_MALLOC_FAILED -0x7F00 /**< Memory allocation failed */
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# define POLARSSL_ERR_SSL_HW_ACCEL_FAILED -0x7F80 /**< Hardware acceleration function returned with error */
# define POLARSSL_ERR_SSL_HW_ACCEL_FALLTHROUGH -0x6F80 /**< Hardware acceleration function skipped / left alone data */
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# define POLARSSL_ERR_SSL_COMPRESSION_FAILED -0x6F00 /**< Processing of the compression / decompression failed */
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# define POLARSSL_ERR_SSL_BAD_HS_PROTOCOL_VERSION -0x6E80 /**< Handshake protocol not within min/max boundaries */
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/*
* Various constants
*/
# define SSL_MAJOR_VERSION_3 3
# define SSL_MINOR_VERSION_0 0 /*!< SSL v3.0 */
# define SSL_MINOR_VERSION_1 1 /*!< TLS v1.0 */
# define SSL_MINOR_VERSION_2 2 /*!< TLS v1.1 */
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# define SSL_MINOR_VERSION_3 3 /*!< TLS v1.2 */
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/* RFC 6066 section 4 */
# define SSL_MAX_FRAG_LEN_NONE 0 /*!< don't use this extension */
# define SSL_MAX_FRAG_LEN_512 1 /*!< MaxFragmentLength 2^9 */
# define SSL_MAX_FRAG_LEN_1024 2 /*!< MaxFragmentLength 2^10 */
# define SSL_MAX_FRAG_LEN_2048 3 /*!< MaxFragmentLength 2^11 */
# define SSL_MAX_FRAG_LEN_4096 4 /*!< MaxFragmentLength 2^12 */
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# define SSL_IS_CLIENT 0
# define SSL_IS_SERVER 1
# define SSL_COMPRESS_NULL 0
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# define SSL_COMPRESS_DEFLATE 1
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# define SSL_VERIFY_NONE 0
# define SSL_VERIFY_OPTIONAL 1
# define SSL_VERIFY_REQUIRED 2
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# define SSL_INITIAL_HANDSHAKE 0
# define SSL_RENEGOTIATION 1
# define SSL_LEGACY_RENEGOTIATION 0
# define SSL_SECURE_RENEGOTIATION 1
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# define SSL_RENEGOTIATION_DISABLED 0
# define SSL_RENEGOTIATION_ENABLED 1
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# define SSL_LEGACY_NO_RENEGOTIATION 0
# define SSL_LEGACY_ALLOW_RENEGOTIATION 1
# define SSL_LEGACY_BREAK_HANDSHAKE 2
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/*
* Size of the input / output buffer .
* Note : the RFC defines the default size of SSL / TLS messages . If you
* change the value here , other clients / servers may not be able to
* communicate with you anymore . Only change this value if you control
* both sides of the connection and have it reduced at both sides !
*/
# if !defined(POLARSSL_CONFIG_OPTIONS)
# define SSL_MAX_CONTENT_LEN 16384 /**< Size of the input / output buffer */
# endif /* !POLARSSL_CONFIG_OPTIONS */
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/*
* Allow an extra 512 bytes for the record header
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* and encryption overhead ( counter + MAC + padding )
* and allow for a maximum of 1024 of compression expansion if
* enabled .
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*/
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# if defined(POLARSSL_ZLIB_SUPPORT)
# define SSL_COMPRESSION_ADD 1024
# else
# define SSL_COMPRESSION_ADD 0
# endif
# define SSL_BUFFER_LEN (SSL_MAX_CONTENT_LEN + SSL_COMPRESSION_ADD + 512)
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# define SSL_EMPTY_RENEGOTIATION_INFO 0xFF /**< renegotiation info ext */
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/*
* Supported Signature and Hash algorithms ( For TLS 1.2 )
*/
# define SSL_HASH_NONE 0
# define SSL_HASH_MD5 1
# define SSL_HASH_SHA1 2
# define SSL_HASH_SHA224 3
# define SSL_HASH_SHA256 4
# define SSL_HASH_SHA384 5
# define SSL_HASH_SHA512 6
# define SSL_SIG_RSA 1
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/*
* Client Certificate Types
*/
# define SSL_CERT_TYPE_RSA_SIGN 1
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/*
* Message , alert and handshake types
*/
# define SSL_MSG_CHANGE_CIPHER_SPEC 20
# define SSL_MSG_ALERT 21
# define SSL_MSG_HANDSHAKE 22
# define SSL_MSG_APPLICATION_DATA 23
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# define SSL_ALERT_LEVEL_WARNING 1
# define SSL_ALERT_LEVEL_FATAL 2
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# define SSL_ALERT_MSG_CLOSE_NOTIFY 0 /* 0x00 */
# define SSL_ALERT_MSG_UNEXPECTED_MESSAGE 10 /* 0x0A */
# define SSL_ALERT_MSG_BAD_RECORD_MAC 20 /* 0x14 */
# define SSL_ALERT_MSG_DECRYPTION_FAILED 21 /* 0x15 */
# define SSL_ALERT_MSG_RECORD_OVERFLOW 22 /* 0x16 */
# define SSL_ALERT_MSG_DECOMPRESSION_FAILURE 30 /* 0x1E */
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# define SSL_ALERT_MSG_HANDSHAKE_FAILURE 40 /* 0x28 */
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# define SSL_ALERT_MSG_NO_CERT 41 /* 0x29 */
# define SSL_ALERT_MSG_BAD_CERT 42 /* 0x2A */
# define SSL_ALERT_MSG_UNSUPPORTED_CERT 43 /* 0x2B */
# define SSL_ALERT_MSG_CERT_REVOKED 44 /* 0x2C */
# define SSL_ALERT_MSG_CERT_EXPIRED 45 /* 0x2D */
# define SSL_ALERT_MSG_CERT_UNKNOWN 46 /* 0x2E */
# define SSL_ALERT_MSG_ILLEGAL_PARAMETER 47 /* 0x2F */
# define SSL_ALERT_MSG_UNKNOWN_CA 48 /* 0x30 */
# define SSL_ALERT_MSG_ACCESS_DENIED 49 /* 0x31 */
# define SSL_ALERT_MSG_DECODE_ERROR 50 /* 0x32 */
# define SSL_ALERT_MSG_DECRYPT_ERROR 51 /* 0x33 */
# define SSL_ALERT_MSG_EXPORT_RESTRICTION 60 /* 0x3C */
# define SSL_ALERT_MSG_PROTOCOL_VERSION 70 /* 0x46 */
# define SSL_ALERT_MSG_INSUFFICIENT_SECURITY 71 /* 0x47 */
# define SSL_ALERT_MSG_INTERNAL_ERROR 80 /* 0x50 */
# define SSL_ALERT_MSG_USER_CANCELED 90 /* 0x5A */
# define SSL_ALERT_MSG_NO_RENEGOTIATION 100 /* 0x64 */
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# define SSL_ALERT_MSG_UNSUPPORTED_EXT 110 /* 0x6E */
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# define SSL_ALERT_MSG_UNRECOGNIZED_NAME 112 /* 0x70 */
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# define SSL_ALERT_MSG_UNKNOWN_PSK_IDENTITY 115 /* 0x73 */
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# define SSL_HS_HELLO_REQUEST 0
# define SSL_HS_CLIENT_HELLO 1
# define SSL_HS_SERVER_HELLO 2
# define SSL_HS_CERTIFICATE 11
# define SSL_HS_SERVER_KEY_EXCHANGE 12
# define SSL_HS_CERTIFICATE_REQUEST 13
# define SSL_HS_SERVER_HELLO_DONE 14
# define SSL_HS_CERTIFICATE_VERIFY 15
# define SSL_HS_CLIENT_KEY_EXCHANGE 16
# define SSL_HS_FINISHED 20
/*
* TLS extensions
*/
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# define TLS_EXT_SERVERNAME 0
# define TLS_EXT_SERVERNAME_HOSTNAME 0
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# define TLS_EXT_MAX_FRAGMENT_LENGTH 1
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# define TLS_EXT_SUPPORTED_ELLIPTIC_CURVES 10
# define TLS_EXT_SUPPORTED_POINT_FORMATS 11
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# define TLS_EXT_SIG_ALG 13
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# define TLS_EXT_RENEGOTIATION_INFO 0xFF01
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/*
* Size defines
*/
# if !defined(POLARSSL_MPI_MAX_SIZE)
# define POLARSSL_PREMASTER_SIZE 512
# else
# define POLARSSL_PREMASTER_SIZE POLARSSL_MPI_MAX_SIZE
# endif
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# ifdef __cplusplus
extern " C " {
# endif
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/*
* Generic function pointers for allowing external RSA private key
* implementations .
*/
typedef int ( * rsa_decrypt_func ) ( void * ctx , int mode , size_t * olen ,
const unsigned char * input , unsigned char * output ,
size_t output_max_len ) ;
typedef int ( * rsa_sign_func ) ( void * ctx ,
int ( * f_rng ) ( void * , unsigned char * , size_t ) , void * p_rng ,
int mode , int hash_id , unsigned int hashlen ,
const unsigned char * hash , unsigned char * sig ) ;
typedef size_t ( * rsa_key_len_func ) ( void * ctx ) ;
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/*
* SSL state machine
*/
typedef enum
{
SSL_HELLO_REQUEST ,
SSL_CLIENT_HELLO ,
SSL_SERVER_HELLO ,
SSL_SERVER_CERTIFICATE ,
SSL_SERVER_KEY_EXCHANGE ,
SSL_CERTIFICATE_REQUEST ,
SSL_SERVER_HELLO_DONE ,
SSL_CLIENT_CERTIFICATE ,
SSL_CLIENT_KEY_EXCHANGE ,
SSL_CERTIFICATE_VERIFY ,
SSL_CLIENT_CHANGE_CIPHER_SPEC ,
SSL_CLIENT_FINISHED ,
SSL_SERVER_CHANGE_CIPHER_SPEC ,
SSL_SERVER_FINISHED ,
SSL_FLUSH_BUFFERS ,
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SSL_HANDSHAKE_WRAPUP ,
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SSL_HANDSHAKE_OVER
}
ssl_states ;
typedef struct _ssl_session ssl_session ;
typedef struct _ssl_context ssl_context ;
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typedef struct _ssl_transform ssl_transform ;
typedef struct _ssl_handshake_params ssl_handshake_params ;
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/*
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* This structure is used for storing current session data .
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*/
struct _ssl_session
{
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# if defined(POLARSSL_HAVE_TIME)
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time_t start ; /*!< starting time */
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# endif
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int ciphersuite ; /*!< chosen ciphersuite */
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int compression ; /*!< chosen compression */
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size_t length ; /*!< session id length */
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unsigned char id [ 32 ] ; /*!< session identifier */
unsigned char master [ 48 ] ; /*!< the master secret */
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# if defined(POLARSSL_X509_PARSE_C)
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x509_cert * peer_cert ; /*!< peer X.509 cert chain */
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# endif /* POLARSSL_X509_PARSE_C */
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} ;
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/*
* This structure contains a full set of runtime transform parameters
* either in negotiation or active .
*/
struct _ssl_transform
{
/*
* Session specific crypto layer
*/
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const ssl_ciphersuite_t * ciphersuite_info ;
/*!< Chosen cipersuite_info */
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unsigned int keylen ; /*!< symmetric key length */
size_t minlen ; /*!< min. ciphertext length */
size_t ivlen ; /*!< IV length */
size_t fixed_ivlen ; /*!< Fixed part of IV (AEAD) */
size_t maclen ; /*!< MAC length */
unsigned char iv_enc [ 16 ] ; /*!< IV (encryption) */
unsigned char iv_dec [ 16 ] ; /*!< IV (decryption) */
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/* Needed only for SSL v3.0 secret */
unsigned char mac_enc [ 32 ] ; /*!< SSL v3.0 secret (enc) */
unsigned char mac_dec [ 32 ] ; /*!< SSL v3.0 secret (dec) */
md_context_t md_ctx_enc ; /*!< MAC (encryption) */
md_context_t md_ctx_dec ; /*!< MAC (decryption) */
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uint32_t ctx_enc [ 136 ] ; /*!< encryption context */
uint32_t ctx_dec [ 136 ] ; /*!< decryption context */
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/*
* Session specific compression layer
*/
# if defined(POLARSSL_ZLIB_SUPPORT)
z_stream ctx_deflate ; /*!< compression context */
z_stream ctx_inflate ; /*!< decompression context */
# endif
} ;
/*
* This structure contains the parameters only needed during handshake .
*/
struct _ssl_handshake_params
{
/*
* Handshake specific crypto variables
*/
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int sig_alg ; /*!< Signature algorithm */
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int cert_type ; /*!< Requested cert type */
int verify_sig_alg ; /*!< Signature algorithm for verify */
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# if defined(POLARSSL_DHM_C)
dhm_context dhm_ctx ; /*!< DHM key exchange */
# endif
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# if defined(POLARSSL_ECDH_C)
ecdh_context ecdh_ctx ; /*!< ECDH key exchange */
# endif
int ec_curve ; /*!< Selected elliptic curve */
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# if defined(POLARSSL_ECP_C)
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int ec_point_format ; /*!< Client supported format */
# endif
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/*
* Checksum contexts
*/
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md5_context fin_md5 ;
sha1_context fin_sha1 ;
sha256_context fin_sha256 ;
sha512_context fin_sha512 ;
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void ( * update_checksum ) ( ssl_context * , const unsigned char * , size_t ) ;
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void ( * calc_verify ) ( ssl_context * , unsigned char * ) ;
void ( * calc_finished ) ( ssl_context * , unsigned char * , int ) ;
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int ( * tls_prf ) ( const unsigned char * , size_t , const char * ,
const unsigned char * , size_t ,
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unsigned char * , size_t ) ;
size_t pmslen ; /*!< premaster length */
unsigned char randbytes [ 64 ] ; /*!< random bytes */
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unsigned char premaster [ POLARSSL_PREMASTER_SIZE ] ;
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/*!< premaster secret */
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int resume ; /*!< session resume indicator*/
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int max_major_ver ; /*!< max. major version client*/
int max_minor_ver ; /*!< max. minor version client*/
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} ;
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struct _ssl_context
{
/*
* Miscellaneous
*/
int state ; /*!< SSL handshake: current state */
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int renegotiation ; /*!< Initial or renegotiation */
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int major_ver ; /*!< equal to SSL_MAJOR_VERSION_3 */
int minor_ver ; /*!< either 0 (SSL3) or 1 (TLS1.0) */
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int max_major_ver ; /*!< max. major version used */
int max_minor_ver ; /*!< max. minor version used */
int min_major_ver ; /*!< min. major version used */
int min_minor_ver ; /*!< min. minor version used */
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/*
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* Callbacks ( RNG , debug , I / O , verification )
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*/
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int ( * f_rng ) ( void * , unsigned char * , size_t ) ;
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void ( * f_dbg ) ( void * , int , const char * ) ;
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int ( * f_recv ) ( void * , unsigned char * , size_t ) ;
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int ( * f_send ) ( void * , const unsigned char * , size_t ) ;
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int ( * f_get_cache ) ( void * , ssl_session * ) ;
int ( * f_set_cache ) ( void * , const ssl_session * ) ;
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int ( * f_sni ) ( void * , ssl_context * , const unsigned char * , size_t ) ;
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void * p_rng ; /*!< context for the RNG function */
void * p_dbg ; /*!< context for the debug function */
void * p_recv ; /*!< context for reading operations */
void * p_send ; /*!< context for writing operations */
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void * p_get_cache ; /*!< context for cache retrieval */
void * p_set_cache ; /*!< context for cache store */
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void * p_sni ; /*!< context for SNI extension */
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void * p_hw_data ; /*!< context for HW acceleration */
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# if defined(POLARSSL_X509_PARSE_C)
int ( * f_vrfy ) ( void * , x509_cert * , int , int * ) ;
void * p_vrfy ; /*!< context for verification */
# endif
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/*
* Session layer
*/
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ssl_session * session_in ; /*!< current session data (in) */
ssl_session * session_out ; /*!< current session data (out) */
ssl_session * session ; /*!< negotiated session data */
ssl_session * session_negotiate ; /*!< session data in negotiation */
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ssl_handshake_params * handshake ; /*!< params required only during
the handshake process */
/*
* Record layer transformations
*/
ssl_transform * transform_in ; /*!< current transform params (in) */
ssl_transform * transform_out ; /*!< current transform params (in) */
ssl_transform * transform ; /*!< negotiated transform params */
ssl_transform * transform_negotiate ; /*!< transform params in negotiation */
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/*
* Record layer ( incoming data )
*/
unsigned char * in_ctr ; /*!< 64-bit incoming message counter */
unsigned char * in_hdr ; /*!< 5-byte record header (in_ctr+8) */
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unsigned char * in_iv ; /*!< ivlen-byte IV (in_hdr+5) */
unsigned char * in_msg ; /*!< message contents (in_iv+ivlen) */
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unsigned char * in_offt ; /*!< read offset in application data */
int in_msgtype ; /*!< record header: message type */
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size_t in_msglen ; /*!< record header: message length */
size_t in_left ; /*!< amount of data read so far */
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size_t in_hslen ; /*!< current handshake message length */
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int nb_zero ; /*!< # of 0-length encrypted messages */
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int record_read ; /*!< record is already present */
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/*
* Record layer ( outgoing data )
*/
unsigned char * out_ctr ; /*!< 64-bit outgoing message counter */
unsigned char * out_hdr ; /*!< 5-byte record header (out_ctr+8) */
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unsigned char * out_iv ; /*!< ivlen-byte IV (out_hdr+5) */
unsigned char * out_msg ; /*!< message contents (out_iv+ivlen) */
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int out_msgtype ; /*!< record header: message type */
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size_t out_msglen ; /*!< record header: message length */
size_t out_left ; /*!< amount of data not yet written */
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/* Maximum fragment length extension (RFC 6066 section 4) */
unsigned char mfl_code ; /*!< numerical code for MaxFragmentLength */
uint16_t max_frag_len ; /*!< value of MaxFragmentLength */
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/*
* PKI layer
*/
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# if defined(POLARSSL_RSA_C)
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void * rsa_key ; /*!< own RSA private key */
rsa_decrypt_func rsa_decrypt ; /*!< function for RSA decrypt*/
rsa_sign_func rsa_sign ; /*!< function for RSA sign */
rsa_key_len_func rsa_key_len ; /*!< function for RSA key len*/
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# endif /* POLARSSL_RSA_C */
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# if defined(POLARSSL_X509_PARSE_C)
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x509_cert * own_cert ; /*!< own X.509 certificate */
x509_cert * ca_chain ; /*!< own trusted CA chain */
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x509_crl * ca_crl ; /*!< trusted CA CRLs */
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const char * peer_cn ; /*!< expected peer CN */
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# endif /* POLARSSL_X509_PARSE_C */
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/*
* User settings
*/
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int endpoint ; /*!< 0: client, 1: server */
int authmode ; /*!< verification mode */
int client_auth ; /*!< flag for client auth. */
int verify_result ; /*!< verification result */
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int disable_renegotiation ; /*!< enable/disable renegotiation */
int allow_legacy_renegotiation ; /*!< allow legacy renegotiation */
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const int * ciphersuite_list [ 4 ] ; /*!< allowed ciphersuites / version */
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# if defined(POLARSSL_DHM_C)
mpi dhm_P ; /*!< prime modulus for DHM */
mpi dhm_G ; /*!< generator for DHM */
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# endif
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# if defined(POLARSSL_KEY_EXCHANGE_PSK_ENABLED)
/*
* PSK values
*/
const unsigned char * psk ;
size_t psk_len ;
const unsigned char * psk_identity ;
size_t psk_identity_len ;
# endif
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/*
* TLS extensions
*/
unsigned char * hostname ;
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size_t hostname_len ;
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/*
* Secure renegotiation
*/
int secure_renegotiation ; /*!< does peer support legacy or
secure renegotiation */
size_t verify_data_len ; /*!< length of verify data stored */
char own_verify_data [ 36 ] ; /*!< previous handshake verify data */
char peer_verify_data [ 36 ] ; /*!< previous handshake verify data */
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} ;
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# if defined(POLARSSL_SSL_HW_RECORD_ACCEL)
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# define SSL_CHANNEL_OUTBOUND 0
# define SSL_CHANNEL_INBOUND 1
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extern int ( * ssl_hw_record_init ) ( ssl_context * ssl ,
const unsigned char * key_enc , const unsigned char * key_dec ,
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size_t keylen ,
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const unsigned char * iv_enc , const unsigned char * iv_dec ,
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size_t ivlen ,
const unsigned char * mac_enc , const unsigned char * mac_dec ,
size_t maclen ) ;
extern int ( * ssl_hw_record_activate ) ( ssl_context * ssl , int direction ) ;
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extern int ( * ssl_hw_record_reset ) ( ssl_context * ssl ) ;
extern int ( * ssl_hw_record_write ) ( ssl_context * ssl ) ;
extern int ( * ssl_hw_record_read ) ( ssl_context * ssl ) ;
extern int ( * ssl_hw_record_finish ) ( ssl_context * ssl ) ;
# endif
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/**
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* \ brief Returns the list of ciphersuites supported by the SSL / TLS module .
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*
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* \ return a statically allocated array of ciphersuites , the last
* entry is 0.
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*/
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const int * ssl_list_ciphersuites ( void ) ;
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/**
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* \ brief Return the name of the ciphersuite associated with the given
* ID
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*
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* \ param ciphersuite_id SSL ciphersuite ID
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*
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* \ return a string containing the ciphersuite name
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*/
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const char * ssl_get_ciphersuite_name ( const int ciphersuite_id ) ;
/**
* \ brief Return the ID of the ciphersuite associated with the given
* name
*
* \ param ciphersuite_name SSL ciphersuite name
*
* \ return the ID with the ciphersuite or 0 if not found
*/
int ssl_get_ciphersuite_id ( const char * ciphersuite_name ) ;
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/**
* \ brief Initialize an SSL context
*
* \ param ssl SSL context
*
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* \ return 0 if successful , or POLARSSL_ERR_SSL_MALLOC_FAILED if
* memory allocation failed
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*/
int ssl_init ( ssl_context * ssl ) ;
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/**
* \ brief Reset an already initialized SSL context for re - use
* while retaining application - set variables , function
* pointers and data .
*
* \ param ssl SSL context
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* \ return 0 if successful , or POLASSL_ERR_SSL_MALLOC_FAILED ,
POLARSSL_ERR_SSL_HW_ACCEL_FAILED or
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* POLARSSL_ERR_SSL_COMPRESSION_FAILED
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*/
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int ssl_session_reset ( ssl_context * ssl ) ;
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/**
* \ brief Set the current endpoint type
*
* \ param ssl SSL context
* \ param endpoint must be SSL_IS_CLIENT or SSL_IS_SERVER
*/
void ssl_set_endpoint ( ssl_context * ssl , int endpoint ) ;
/**
* \ brief Set the certificate verification mode
*
* \ param ssl SSL context
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* \ param authmode can be :
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*
* SSL_VERIFY_NONE : peer certificate is not checked ( default ) ,
* this is insecure and SHOULD be avoided .
*
* SSL_VERIFY_OPTIONAL : peer certificate is checked , however the
* handshake continues even if verification failed ;
* ssl_get_verify_result ( ) can be called after the
* handshake is complete .
*
* SSL_VERIFY_REQUIRED : peer * must * present a valid certificate ,
* handshake is aborted if verification failed .
*/
void ssl_set_authmode ( ssl_context * ssl , int authmode ) ;
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# if defined(POLARSSL_X509_PARSE_C)
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/**
* \ brief Set the verification callback ( Optional ) .
*
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* If set , the verify callback is called for each
* certificate in the chain . For implementation
* information , please see \ c x509parse_verify ( )
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*
* \ param ssl SSL context
* \ param f_vrfy verification function
* \ param p_vrfy verification parameter
*/
void ssl_set_verify ( ssl_context * ssl ,
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int ( * f_vrfy ) ( void * , x509_cert * , int , int * ) ,
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void * p_vrfy ) ;
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# endif /* POLARSSL_X509_PARSE_C */
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/**
* \ brief Set the random number generator callback
*
* \ param ssl SSL context
* \ param f_rng RNG function
* \ param p_rng RNG parameter
*/
void ssl_set_rng ( ssl_context * ssl ,
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int ( * f_rng ) ( void * , unsigned char * , size_t ) ,
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void * p_rng ) ;
/**
* \ brief Set the debug callback
*
* \ param ssl SSL context
* \ param f_dbg debug function
* \ param p_dbg debug parameter
*/
void ssl_set_dbg ( ssl_context * ssl ,
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void ( * f_dbg ) ( void * , int , const char * ) ,
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void * p_dbg ) ;
/**
* \ brief Set the underlying BIO read and write callbacks
*
* \ param ssl SSL context
* \ param f_recv read callback
* \ param p_recv read parameter
* \ param f_send write callback
* \ param p_send write parameter
*/
void ssl_set_bio ( ssl_context * ssl ,
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int ( * f_recv ) ( void * , unsigned char * , size_t ) , void * p_recv ,
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int ( * f_send ) ( void * , const unsigned char * , size_t ) , void * p_send ) ;
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/**
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* \ brief Set the session cache callbacks ( server - side only )
* If not set , no session resuming is done .
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*
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* The session cache has the responsibility to check for stale
* entries based on timeout . See RFC 5246 for recommendations .
*
* Warning : session . peer_cert is cleared by the SSL / TLS layer on
* connection shutdown , so do not cache the pointer ! Either set
* it to NULL or make a full copy of the certificate .
*
* The get callback is called once during the initial handshake
* to enable session resuming . The get function has the
* following parameters : ( void * parameter , ssl_session * session )
* If a valid entry is found , it should fill the master of
* the session object with the cached values and return 0 ,
* return 1 otherwise . Optionally peer_cert can be set as well
* if it is properly present in cache entry .
*
* The set callback is called once during the initial handshake
* to enable session resuming after the entire handshake has
* been finished . The set function has the following parameters :
* ( void * parameter , const ssl_session * session ) . The function
* should create a cache entry for future retrieval based on
* the data in the session structure and should keep in mind
* that the ssl_session object presented ( and all its referenced
* data ) is cleared by the SSL / TLS layer when the connection is
* terminated . It is recommended to add metadata to determine if
* an entry is still valid in the future . Return 0 if
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* successfully cached , return 1 otherwise .
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*
* \ param ssl SSL context
* \ param f_get_cache session get callback
* \ param p_get_cache session get parameter
* \ param f_set_cache session set callback
* \ param p_set_cache session set parameter
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*/
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void ssl_set_session_cache ( ssl_context * ssl ,
int ( * f_get_cache ) ( void * , ssl_session * ) , void * p_get_cache ,
int ( * f_set_cache ) ( void * , const ssl_session * ) , void * p_set_cache ) ;
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/**
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* \ brief Request resumption of session ( client - side only )
* Session data is copied from presented session structure .
*
* Warning : session . peer_cert is cleared by the SSL / TLS layer on
* connection shutdown , so do not cache the pointer ! Either set
* it to NULL or make a full copy of the certificate when
* storing the session for use in this function .
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*
* \ param ssl SSL context
* \ param session session context
*/
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void ssl_set_session ( ssl_context * ssl , const ssl_session * session ) ;
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/**
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* \ brief Set the list of allowed ciphersuites
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* ( Overrides all version specific lists )
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*
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* \ param ssl SSL context
* \ param ciphersuites 0 - terminated list of allowed ciphersuites
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*/
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void ssl_set_ciphersuites ( ssl_context * ssl , const int * ciphersuites ) ;
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/**
* \ brief Set the list of allowed ciphersuites for a specific
* version of the protocol .
* ( Only useful on the server side )
*
* \ param ssl SSL context
* \ param ciphersuites 0 - terminated list of allowed ciphersuites
* \ param major Major version number ( only SSL_MAJOR_VERSION_3
* supported )
* \ param minor Minor version number ( SSL_MINOR_VERSION_0 ,
* SSL_MINOR_VERSION_1 and SSL_MINOR_VERSION_2 ,
* SSL_MINOR_VERSION_3 supported )
*/
void ssl_set_ciphersuites_for_version ( ssl_context * ssl ,
const int * ciphersuites ,
int major , int minor ) ;
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# if defined(POLARSSL_X509_PARSE_C)
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/**
* \ brief Set the data required to verify peer certificate
*
* \ param ssl SSL context
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* \ param ca_chain trusted CA chain ( meaning all fully trusted top - level CAs )
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* \ param ca_crl trusted CA CRLs
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* \ param peer_cn expected peer CommonName ( or NULL )
*/
void ssl_set_ca_chain ( ssl_context * ssl , x509_cert * ca_chain ,
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x509_crl * ca_crl , const char * peer_cn ) ;
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/**
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* \ brief Set own certificate chain and private key
*
* Note : own_cert should contain IN order from the bottom
* up your certificate chain . The top certificate ( self - signed )
* can be omitted .
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*
* \ param ssl SSL context
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* \ param own_cert own public certificate chain
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* \ param rsa_key own private RSA key
*/
void ssl_set_own_cert ( ssl_context * ssl , x509_cert * own_cert ,
rsa_context * rsa_key ) ;
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/**
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* \ brief Set own certificate and alternate non - PolarSSL private
* key and handling callbacks , such as the PKCS # 11 wrappers
* or any other external private key handler .
* ( see the respective RSA functions in rsa . h for documentation
* of the callback parameters , with the only change being
* that the rsa_context * is a void * in the callbacks )
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*
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* Note : own_cert should contain IN order from the bottom
* up your certificate chain . The top certificate ( self - signed )
* can be omitted .
*
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* \ param ssl SSL context
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* \ param own_cert own public certificate chain
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* \ param rsa_key alternate implementation private RSA key
* \ param rsa_decrypt_func alternate implementation of \ c rsa_pkcs1_decrypt ( )
* \ param rsa_sign_func alternate implementation of \ c rsa_pkcs1_sign ( )
* \ param rsa_key_len_func function returning length of RSA key in bytes
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*/
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void ssl_set_own_cert_alt ( ssl_context * ssl , x509_cert * own_cert ,
void * rsa_key ,
rsa_decrypt_func rsa_decrypt ,
rsa_sign_func rsa_sign ,
rsa_key_len_func rsa_key_len ) ;
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# endif /* POLARSSL_X509_PARSE_C */
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# if defined(POLARSSL_KEY_EXCHANGE_PSK_ENABLED)
/**
* \ brief Set the Pre Shared Key ( PSK ) and the identity name connected
* to it . The PSK is used in all PSK - based ciphersuites .
*
* \ param ssl SSL context
* \ param psk pointer to the pre - shared key
* \ param psk_len pre - shared key length
* \ param psk_identity pointer to the pre - shared key identity
* \ param psk_identity_len identity key length
*/
void ssl_set_psk ( ssl_context * ssl , const unsigned char * psk , size_t psk_len ,
const unsigned char * psk_identity , size_t psk_identity_len ) ;
# endif /* POLARSSL_KEY_EXCHANGE_PSK_ENABLED */
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# if defined(POLARSSL_DHM_C)
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/**
* \ brief Set the Diffie - Hellman public P and G values ,
* read as hexadecimal strings ( server - side only )
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* ( Default : POLARSSL_DHM_RFC5114_MODP_1024_ [ PG ] )
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*
* \ param ssl SSL context
* \ param dhm_P Diffie - Hellman - Merkle modulus
* \ param dhm_G Diffie - Hellman - Merkle generator
*
* \ return 0 if successful
*/
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int ssl_set_dh_param ( ssl_context * ssl , const char * dhm_P , const char * dhm_G ) ;
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/**
* \ brief Set the Diffie - Hellman public P and G values ,
* read from existing context ( server - side only )
*
* \ param ssl SSL context
* \ param dhm_ctx Diffie - Hellman - Merkle context
*
* \ return 0 if successful
*/
int ssl_set_dh_param_ctx ( ssl_context * ssl , dhm_context * dhm_ctx ) ;
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# endif
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/**
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* \ brief Set hostname for ServerName TLS extension
* ( client - side only )
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*
*
* \ param ssl SSL context
* \ param hostname the server hostname
*
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* \ return 0 if successful or POLARSSL_ERR_SSL_MALLOC_FAILED
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*/
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int ssl_set_hostname ( ssl_context * ssl , const char * hostname ) ;
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/**
* \ brief Set server side ServerName TLS extension callback
* ( optional , server - side only ) .
*
* If set , the ServerName callback is called whenever the
* server receives a ServerName TLS extension from the client
* during a handshake . The ServerName callback has the
* following parameters : ( void * parameter , ssl_context * ssl ,
* const unsigned char * hostname , size_t len ) . If a suitable
* certificate is found , the callback should set the
* certificate and key to use with ssl_set_own_cert ( ) ( and
* possibly adjust the CA chain as well ) and return 0. The
* callback should return - 1 to abort the handshake at this
* point .
*
* \ param ssl SSL context
* \ param f_sni verification function
* \ param p_sni verification parameter
*/
void ssl_set_sni ( ssl_context * ssl ,
int ( * f_sni ) ( void * , ssl_context * , const unsigned char * ,
size_t ) ,
void * p_sni ) ;
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/**
* \ brief Set the maximum supported version sent from the client side
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* and / or accepted at the server side
* ( Default : SSL_MAJOR_VERSION_3 , SSL_MINOR_VERSION_3 )
*
* Note : This prevents ciphersuites from ' higher ' versions to
* be ignored .
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*
* \ param ssl SSL context
* \ param major Major version number ( only SSL_MAJOR_VERSION_3 supported )
* \ param minor Minor version number ( SSL_MINOR_VERSION_0 ,
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* SSL_MINOR_VERSION_1 and SSL_MINOR_VERSION_2 ,
* SSL_MINOR_VERSION_3 supported )
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*/
void ssl_set_max_version ( ssl_context * ssl , int major , int minor ) ;
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/**
* \ brief Set the minimum accepted SSL / TLS protocol version
* ( Default : SSL_MAJOR_VERSION_3 , SSL_MINOR_VERSION_0 )
*
* \ param ssl SSL context
* \ param major Major version number ( only SSL_MAJOR_VERSION_3 supported )
* \ param minor Minor version number ( SSL_MINOR_VERSION_0 ,
* SSL_MINOR_VERSION_1 and SSL_MINOR_VERSION_2 ,
* SSL_MINOR_VERSION_3 supported )
*/
void ssl_set_min_version ( ssl_context * ssl , int major , int minor ) ;
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/**
* \ brief Set the maximum fragment length to emit and / or negotiate
* ( Default : SSL_MAX_CONTENT_LEN , usually 2 ^ 14 bytes )
* ( Server : set maximum fragment length to emit ,
* usually negotiated by the client during handshake
* ( Client : set maximum fragment length to emit * and *
* negotiate with the server during handshake )
*
* \ param ssl SSL context
* \ param mfl Code for maximum fragment length ( allowed values :
* SSL_MAX_FRAG_LEN_512 , SSL_MAX_FRAG_LEN_1024 ,
* SSL_MAX_FRAG_LEN_2048 , SSL_MAX_FRAG_LEN_4096 )
*
* \ return O if successful or POLARSSL_ERR_SSL_BAD_INPUT_DATA
*/
int ssl_set_max_frag_len ( ssl_context * ssl , unsigned char mfl_code ) ;
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/**
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* \ brief Enable / Disable renegotiation support for connection when
* initiated by peer
* ( Default : SSL_RENEGOTIATION_DISABLED )
*
* Note : A server with support enabled is more vulnerable for a
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* resource DoS by a malicious client . You should enable this on
* a client to enable server - initiated renegotiation .
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*
* \ param ssl SSL context
* \ param renegotiation Enable or disable ( SSL_RENEGOTIATION_ENABLED or
* SSL_RENEGOTIATION_DISABLED )
*/
void ssl_set_renegotiation ( ssl_context * ssl , int renegotiation ) ;
/**
* \ brief Prevent or allow legacy renegotiation .
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* ( Default : SSL_LEGACY_NO_RENEGOTIATION )
*
* SSL_LEGACY_NO_RENEGOTIATION allows connections to
* be established even if the peer does not support
* secure renegotiation , but does not allow renegotiation
* to take place if not secure .
* ( Interoperable and secure option )
*
* SSL_LEGACY_ALLOW_RENEGOTIATION allows renegotiations
* with non - upgraded peers . Allowing legacy renegotiation
* makes the connection vulnerable to specific man in the
* middle attacks . ( See RFC 5746 )
* ( Most interoperable and least secure option )
*
* SSL_LEGACY_BREAK_HANDSHAKE breaks off connections
* if peer does not support secure renegotiation . Results
* in interoperability issues with non - upgraded peers
* that do not support renegotiation altogether .
* ( Most secure option , interoperability issues )
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*
* \ param ssl SSL context
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* \ param allow_legacy Prevent or allow ( SSL_NO_LEGACY_RENEGOTIATION ,
* SSL_ALLOW_LEGACY_RENEGOTIATION or
* SSL_LEGACY_BREAK_HANDSHAKE )
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*/
void ssl_legacy_renegotiation ( ssl_context * ssl , int allow_legacy ) ;
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/**
* \ brief Return the number of data bytes available to read
*
* \ param ssl SSL context
*
* \ return how many bytes are available in the read buffer
*/
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size_t ssl_get_bytes_avail ( const ssl_context * ssl ) ;
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/**
* \ brief Return the result of the certificate verification
*
* \ param ssl SSL context
*
* \ return 0 if successful , or a combination of :
* BADCERT_EXPIRED
* BADCERT_REVOKED
* BADCERT_CN_MISMATCH
* BADCERT_NOT_TRUSTED
*/
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int ssl_get_verify_result ( const ssl_context * ssl ) ;
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/**
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* \ brief Return the name of the current ciphersuite
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*
* \ param ssl SSL context
*
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* \ return a string containing the ciphersuite name
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*/
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const char * ssl_get_ciphersuite ( const ssl_context * ssl ) ;
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/**
* \ brief Return the current SSL version ( SSLv3 / TLSv1 / etc )
*
* \ param ssl SSL context
*
* \ return a string containing the SSL version
*/
const char * ssl_get_version ( const ssl_context * ssl ) ;
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# if defined(POLARSSL_X509_PARSE_C)
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/**
* \ brief Return the peer certificate from the current connection
*
* Note : Can be NULL in case no certificate was sent during
* the handshake . Different calls for the same connection can
* return the same or different pointers for the same
* certificate and even a different certificate altogether .
* The peer cert CAN change in a single connection if
* renegotiation is performed .
*
* \ param ssl SSL context
*
* \ return the current peer certificate
*/
const x509_cert * ssl_get_peer_cert ( const ssl_context * ssl ) ;
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# endif /* POLARSSL_X509_PARSE_C */
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/**
* \ brief Perform the SSL handshake
*
* \ param ssl SSL context
*
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* \ return 0 if successful , POLARSSL_ERR_NET_WANT_READ ,
* POLARSSL_ERR_NET_WANT_WRITE , or a specific SSL error code .
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*/
int ssl_handshake ( ssl_context * ssl ) ;
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/**
* \ brief Perform a single step of the SSL handshake
*
* Note : the state of the context ( ssl - > state ) will be at
* the following state after execution of this function .
* Do not call this function if state is SSL_HANDSHAKE_OVER .
*
* \ param ssl SSL context
*
* \ return 0 if successful , POLARSSL_ERR_NET_WANT_READ ,
* POLARSSL_ERR_NET_WANT_WRITE , or a specific SSL error code .
*/
int ssl_handshake_step ( ssl_context * ssl ) ;
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/**
* \ brief Perform an SSL renegotiation on the running connection
*
* \ param ssl SSL context
*
* \ return 0 if succesful , or any ssl_handshake ( ) return value .
*/
int ssl_renegotiate ( ssl_context * ssl ) ;
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/**
* \ brief Read at most ' len ' application data bytes
*
* \ param ssl SSL context
* \ param buf buffer that will hold the data
* \ param len how many bytes must be read
*
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* \ return This function returns the number of bytes read , 0 for EOF ,
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* or a negative error code .
*/
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int ssl_read ( ssl_context * ssl , unsigned char * buf , size_t len ) ;
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/**
* \ brief Write exactly ' len ' application data bytes
*
* \ param ssl SSL context
* \ param buf buffer holding the data
* \ param len how many bytes must be written
*
* \ return This function returns the number of bytes written ,
* or a negative error code .
*
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* \ note When this function returns POLARSSL_ERR_NET_WANT_WRITE ,
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* it must be called later with the * same * arguments ,
* until it returns a positive value .
*/
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int ssl_write ( ssl_context * ssl , const unsigned char * buf , size_t len ) ;
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/**
* \ brief Send an alert message
*
* \ param ssl SSL context
* \ param level The alert level of the message
* ( SSL_ALERT_LEVEL_WARNING or SSL_ALERT_LEVEL_FATAL )
* \ param message The alert message ( SSL_ALERT_MSG_ * )
*
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* \ return 0 if successful , or a specific SSL error code .
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*/
int ssl_send_alert_message ( ssl_context * ssl ,
unsigned char level ,
unsigned char message ) ;
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/**
* \ brief Notify the peer that the connection is being closed
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*
* \ param ssl SSL context
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*/
int ssl_close_notify ( ssl_context * ssl ) ;
/**
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* \ brief Free referenced items in an SSL context and clear memory
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*
* \ param ssl SSL context
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*/
void ssl_free ( ssl_context * ssl ) ;
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/**
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* \ brief Free referenced items in an SSL session including the
* peer certificate and clear memory
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*
* \ param session SSL session
*/
void ssl_session_free ( ssl_session * session ) ;
/**
* \ brief Free referenced items in an SSL transform context and clear
* memory
*
* \ param transform SSL transform context
*/
void ssl_transform_free ( ssl_transform * transform ) ;
/**
* \ brief Free referenced items in an SSL handshake context and clear
* memory
*
* \ param handshake SSL handshake context
*/
void ssl_handshake_free ( ssl_handshake_params * handshake ) ;
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/*
* Internal functions ( do not call directly )
*/
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int ssl_handshake_client_step ( ssl_context * ssl ) ;
int ssl_handshake_server_step ( ssl_context * ssl ) ;
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void ssl_handshake_wrapup ( ssl_context * ssl ) ;
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int ssl_send_fatal_handshake_failure ( ssl_context * ssl ) ;
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int ssl_derive_keys ( ssl_context * ssl ) ;
int ssl_read_record ( ssl_context * ssl ) ;
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/**
* \ return 0 if successful , POLARSSL_ERR_SSL_CONN_EOF on EOF or
* another negative error code .
*/
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int ssl_fetch_input ( ssl_context * ssl , size_t nb_want ) ;
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int ssl_write_record ( ssl_context * ssl ) ;
int ssl_flush_output ( ssl_context * ssl ) ;
int ssl_parse_certificate ( ssl_context * ssl ) ;
int ssl_write_certificate ( ssl_context * ssl ) ;
int ssl_parse_change_cipher_spec ( ssl_context * ssl ) ;
int ssl_write_change_cipher_spec ( ssl_context * ssl ) ;
int ssl_parse_finished ( ssl_context * ssl ) ;
int ssl_write_finished ( ssl_context * ssl ) ;
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void ssl_optimize_checksum ( ssl_context * ssl , const ssl_ciphersuite_t * ciphersuite_info ) ;
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# ifdef __cplusplus
}
# endif
# endif /* ssl.h */