/usr/include/openh323/h235.h is in libh323plus-dev 1.24.0~dfsg2-1.3.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
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// h235.h
//
// Code automatically generated by asnparse.
//
#if ! H323_DISABLE_H235
#ifndef __H235_H
#define __H235_H
#ifdef P_USE_PRAGMA
#pragma interface
#endif
#include <ptclib/asner.h>
//
// ChallengeString
//
class H235_ChallengeString : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ChallengeString, PASN_OctetString);
#endif
public:
H235_ChallengeString(unsigned tag = UniversalOctetString, TagClass tagClass = UniversalTagClass);
H235_ChallengeString(const char * v);
H235_ChallengeString(const PString & v);
H235_ChallengeString(const PBYTEArray & v);
H235_ChallengeString & operator=(const char * v);
H235_ChallengeString & operator=(const PString & v);
H235_ChallengeString & operator=(const PBYTEArray & v);
PObject * Clone() const;
};
//
// TimeStamp
//
class H235_TimeStamp : public PASN_Integer
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_TimeStamp, PASN_Integer);
#endif
public:
H235_TimeStamp(unsigned tag = UniversalInteger, TagClass tagClass = UniversalTagClass);
H235_TimeStamp & operator=(int v);
H235_TimeStamp & operator=(unsigned v);
PObject * Clone() const;
};
//
// RandomVal
//
class H235_RandomVal : public PASN_Integer
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_RandomVal, PASN_Integer);
#endif
public:
H235_RandomVal(unsigned tag = UniversalInteger, TagClass tagClass = UniversalTagClass);
H235_RandomVal & operator=(int v);
H235_RandomVal & operator=(unsigned v);
PObject * Clone() const;
};
//
// Password
//
class H235_Password : public PASN_BMPString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_Password, PASN_BMPString);
#endif
public:
H235_Password(unsigned tag = UniversalBMPString, TagClass tagClass = UniversalTagClass);
H235_Password & operator=(const char * v);
H235_Password & operator=(const PString & v);
H235_Password & operator=(const PWCharArray & v);
H235_Password & operator=(const PASN_BMPString & v);
PObject * Clone() const;
};
//
// Identifier
//
class H235_Identifier : public PASN_BMPString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_Identifier, PASN_BMPString);
#endif
public:
H235_Identifier(unsigned tag = UniversalBMPString, TagClass tagClass = UniversalTagClass);
H235_Identifier & operator=(const char * v);
H235_Identifier & operator=(const PString & v);
H235_Identifier & operator=(const PWCharArray & v);
H235_Identifier & operator=(const PASN_BMPString & v);
PObject * Clone() const;
};
//
// KeyMaterial
//
class H235_KeyMaterial : public PASN_BitString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_KeyMaterial, PASN_BitString);
#endif
public:
H235_KeyMaterial(unsigned tag = UniversalBitString, TagClass tagClass = UniversalTagClass);
PObject * Clone() const;
};
//
// NonStandardParameter
//
class H235_NonStandardParameter : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_NonStandardParameter, PASN_Sequence);
#endif
public:
H235_NonStandardParameter(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_nonStandardIdentifier;
PASN_OctetString m_data;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// DHset
//
class H235_DHset : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_DHset, PASN_Sequence);
#endif
public:
H235_DHset(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_BitString m_halfkey;
PASN_BitString m_modSize;
PASN_BitString m_generator;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ECpoint
//
class H235_ECpoint : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ECpoint, PASN_Sequence);
#endif
public:
H235_ECpoint(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_x,
e_y
};
PASN_BitString m_x;
PASN_BitString m_y;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ECKASDH
//
class H235_ECKASDH_eckasdhp;
class H235_ECKASDH_eckasdh2;
class H235_ECKASDH : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ECKASDH, PASN_Choice);
#endif
public:
H235_ECKASDH(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_eckasdhp,
e_eckasdh2
};
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_ECKASDH_eckasdhp &() const;
#else
operator H235_ECKASDH_eckasdhp &();
operator const H235_ECKASDH_eckasdhp &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_ECKASDH_eckasdh2 &() const;
#else
operator H235_ECKASDH_eckasdh2 &();
operator const H235_ECKASDH_eckasdh2 &() const;
#endif
PBoolean CreateObject();
PObject * Clone() const;
};
//
// ECGDSASignature
//
class H235_ECGDSASignature : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ECGDSASignature, PASN_Sequence);
#endif
public:
H235_ECGDSASignature(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_BitString m_r;
PASN_BitString m_s;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// TypedCertificate
//
class H235_TypedCertificate : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_TypedCertificate, PASN_Sequence);
#endif
public:
H235_TypedCertificate(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_type;
PASN_OctetString m_certificate;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// AuthenticationBES
//
class H235_AuthenticationBES : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_AuthenticationBES, PASN_Choice);
#endif
public:
H235_AuthenticationBES(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_default,
e_radius
};
PBoolean CreateObject();
PObject * Clone() const;
};
//
// AuthenticationMechanism
//
class H235_NonStandardParameter;
class H235_AuthenticationBES;
class H235_AuthenticationMechanism : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_AuthenticationMechanism, PASN_Choice);
#endif
public:
H235_AuthenticationMechanism(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_dhExch,
e_pwdSymEnc,
e_pwdHash,
e_certSign,
e_ipsec,
e_tls,
e_nonStandard,
e_authenticationBES,
e_keyExch
};
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_NonStandardParameter &() const;
#else
operator H235_NonStandardParameter &();
operator const H235_NonStandardParameter &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_AuthenticationBES &() const;
#else
operator H235_AuthenticationBES &();
operator const H235_AuthenticationBES &() const;
#endif
PBoolean CreateObject();
PObject * Clone() const;
};
//
// Element
//
class H235_Element : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_Element, PASN_Choice);
#endif
public:
H235_Element(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_octets,
e_integer,
e_bits,
e_name,
e_flag
};
PBoolean CreateObject();
PObject * Clone() const;
};
//
// IV8
//
class H235_IV8 : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_IV8, PASN_OctetString);
#endif
public:
H235_IV8(unsigned tag = UniversalOctetString, TagClass tagClass = UniversalTagClass);
H235_IV8(const char * v);
H235_IV8(const PString & v);
H235_IV8(const PBYTEArray & v);
H235_IV8 & operator=(const char * v);
H235_IV8 & operator=(const PString & v);
H235_IV8 & operator=(const PBYTEArray & v);
PObject * Clone() const;
};
//
// IV16
//
class H235_IV16 : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_IV16, PASN_OctetString);
#endif
public:
H235_IV16(unsigned tag = UniversalOctetString, TagClass tagClass = UniversalTagClass);
H235_IV16(const char * v);
H235_IV16(const PString & v);
H235_IV16(const PBYTEArray & v);
H235_IV16 & operator=(const char * v);
H235_IV16 & operator=(const PString & v);
H235_IV16 & operator=(const PBYTEArray & v);
PObject * Clone() const;
};
//
// Params
//
class H235_Params : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_Params, PASN_Sequence);
#endif
public:
H235_Params(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_ranInt,
e_iv8,
e_iv16,
e_iv,
e_clearSalt
};
PASN_Integer m_ranInt;
H235_IV8 m_iv8;
H235_IV16 m_iv16;
PASN_OctetString m_iv;
PASN_OctetString m_clearSalt;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ReturnSig
//
class H235_ReturnSig : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ReturnSig, PASN_Sequence);
#endif
public:
H235_ReturnSig(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_requestRandom,
e_certificate
};
H235_Identifier m_generalId;
H235_RandomVal m_responseRandom;
H235_RandomVal m_requestRandom;
H235_TypedCertificate m_certificate;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// EncodedReturnSig
//
class H235_EncodedReturnSig : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_EncodedReturnSig, PASN_OctetString);
#endif
public:
H235_EncodedReturnSig(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
PBoolean DecodeSubType(H235_ReturnSig & obj) { return PASN_OctetString::DecodeSubType(obj); }
void EncodeSubType(const H235_ReturnSig & obj) { PASN_OctetString::EncodeSubType(obj); }
PObject * Clone() const;
};
//
// KeySyncMaterial
//
class H235_KeySyncMaterial : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_KeySyncMaterial, PASN_Sequence);
#endif
public:
H235_KeySyncMaterial(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
H235_Identifier m_generalID;
H235_KeyMaterial m_keyMaterial;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// EncodedKeySyncMaterial
//
class H235_EncodedKeySyncMaterial : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_EncodedKeySyncMaterial, PASN_OctetString);
#endif
public:
H235_EncodedKeySyncMaterial(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
PBoolean DecodeSubType(H235_KeySyncMaterial & obj) { return PASN_OctetString::DecodeSubType(obj); }
void EncodeSubType(const H235_KeySyncMaterial & obj) { PASN_OctetString::EncodeSubType(obj); }
PObject * Clone() const;
};
//
// V3KeySyncMaterial
//
class H235_V3KeySyncMaterial : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_V3KeySyncMaterial, PASN_Sequence);
#endif
public:
H235_V3KeySyncMaterial(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_generalID,
e_algorithmOID,
e_encryptedSessionKey,
e_encryptedSaltingKey,
e_clearSaltingKey,
e_paramSsalt,
e_keyDerivationOID,
e_genericKeyMaterial
};
H235_Identifier m_generalID;
PASN_ObjectId m_algorithmOID;
H235_Params m_paramS;
PASN_OctetString m_encryptedSessionKey;
PASN_OctetString m_encryptedSaltingKey;
PASN_OctetString m_clearSaltingKey;
H235_Params m_paramSsalt;
PASN_ObjectId m_keyDerivationOID;
PASN_OctetString m_genericKeyMaterial;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ECKASDH_eckasdhp
//
class H235_ECKASDH_eckasdhp : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ECKASDH_eckasdhp, PASN_Sequence);
#endif
public:
H235_ECKASDH_eckasdhp(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
H235_ECpoint m_public_key;
PASN_BitString m_modulus;
H235_ECpoint m_base;
PASN_BitString m_weierstrassA;
PASN_BitString m_weierstrassB;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ECKASDH_eckasdh2
//
class H235_ECKASDH_eckasdh2 : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ECKASDH_eckasdh2, PASN_Sequence);
#endif
public:
H235_ECKASDH_eckasdh2(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
H235_ECpoint m_public_key;
PASN_BitString m_fieldSize;
H235_ECpoint m_base;
PASN_BitString m_weierstrassA;
PASN_BitString m_weierstrassB;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ArrayOf_ProfileElement
//
class H235_ProfileElement;
class H235_ArrayOf_ProfileElement : public PASN_Array
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ArrayOf_ProfileElement, PASN_Array);
#endif
public:
H235_ArrayOf_ProfileElement(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_Object * CreateObject() const;
H235_ProfileElement & operator[](PINDEX i) const;
PObject * Clone() const;
};
//
// ProfileElement
//
class H235_ProfileElement : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ProfileElement, PASN_Sequence);
#endif
public:
H235_ProfileElement(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_paramS,
e_element
};
PASN_Integer m_elementID;
H235_Params m_paramS;
H235_Element m_element;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// SIGNED
//
template <class ToBeSigned>
class H235_SIGNED : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_SIGNED, PASN_Sequence);
#endif
public:
H235_SIGNED(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
ToBeSigned m_toBeSigned;
PASN_ObjectId m_algorithmOID;
H235_Params m_paramS;
PASN_BitString m_signature;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// ENCRYPTED
//
template <class ToBeEncrypted>
class H235_ENCRYPTED : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ENCRYPTED, PASN_Sequence);
#endif
public:
H235_ENCRYPTED(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_algorithmOID;
H235_Params m_paramS;
PASN_OctetString m_encryptedData;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// HASHED
//
template <class ToBeHashed>
class H235_HASHED : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_HASHED, PASN_Sequence);
#endif
public:
H235_HASHED(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_algorithmOID;
H235_Params m_paramS;
PASN_BitString m_hash;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// KeySignedMaterial
//
class H235_KeySignedMaterial : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_KeySignedMaterial, PASN_Sequence);
#endif
public:
H235_KeySignedMaterial(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_srandom,
e_timeStamp
};
H235_Identifier m_generalId;
H235_RandomVal m_mrandom;
H235_RandomVal m_srandom;
H235_TimeStamp m_timeStamp;
H235_ENCRYPTED<H235_EncodedKeySyncMaterial> m_encrptval;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// EncodedKeySignedMaterial
//
class H235_EncodedKeySignedMaterial : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_EncodedKeySignedMaterial, PASN_OctetString);
#endif
public:
H235_EncodedKeySignedMaterial(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
PBoolean DecodeSubType(H235_KeySignedMaterial & obj) { return PASN_OctetString::DecodeSubType(obj); }
void EncodeSubType(const H235_KeySignedMaterial & obj) { PASN_OctetString::EncodeSubType(obj); }
PObject * Clone() const;
};
//
// H235CertificateSignature
//
class H235_H235CertificateSignature : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_H235CertificateSignature, PASN_Sequence);
#endif
public:
H235_H235CertificateSignature(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_requesterRandom
};
H235_TypedCertificate m_certificate;
H235_RandomVal m_responseRandom;
H235_RandomVal m_requesterRandom;
H235_SIGNED<H235_EncodedReturnSig> m_signature;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// H235Key
//
class H235_KeyMaterial;
class H235_V3KeySyncMaterial;
class H235_H235Key : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_H235Key, PASN_Choice);
#endif
public:
H235_H235Key(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_secureChannel,
e_sharedSecret,
e_certProtectedKey,
e_secureSharedSecret
};
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_KeyMaterial &() const;
#else
operator H235_KeyMaterial &();
operator const H235_KeyMaterial &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_ENCRYPTED<H235_EncodedKeySyncMaterial> &() const;
#else
operator H235_ENCRYPTED<H235_EncodedKeySyncMaterial> &();
operator const H235_ENCRYPTED<H235_EncodedKeySyncMaterial> &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_SIGNED<H235_EncodedKeySignedMaterial> &() const;
#else
operator H235_SIGNED<H235_EncodedKeySignedMaterial> &();
operator const H235_SIGNED<H235_EncodedKeySignedMaterial> &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_V3KeySyncMaterial &() const;
#else
operator H235_V3KeySyncMaterial &();
operator const H235_V3KeySyncMaterial &() const;
#endif
PBoolean CreateObject();
PObject * Clone() const;
};
//
// ClearToken
//
class H235_ClearToken : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_ClearToken, PASN_Sequence);
#endif
public:
H235_ClearToken(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
enum OptionalFields {
e_timeStamp,
e_password,
e_dhkey,
e_challenge,
e_random,
e_certificate,
e_generalID,
e_nonStandard,
e_eckasdhkey,
e_sendersID,
e_h235Key,
e_profileInfo
};
PASN_ObjectId m_tokenOID;
H235_TimeStamp m_timeStamp;
H235_Password m_password;
H235_DHset m_dhkey;
H235_ChallengeString m_challenge;
H235_RandomVal m_random;
H235_TypedCertificate m_certificate;
H235_Identifier m_generalID;
H235_NonStandardParameter m_nonStandard;
H235_ECKASDH m_eckasdhkey;
H235_Identifier m_sendersID;
H235_H235Key m_h235Key;
H235_ArrayOf_ProfileElement m_profileInfo;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// EncodedGeneralToken
//
class H235_EncodedGeneralToken : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_EncodedGeneralToken, PASN_OctetString);
#endif
public:
H235_EncodedGeneralToken(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
PBoolean DecodeSubType(H235_ClearToken & obj) { return PASN_OctetString::DecodeSubType(obj); }
void EncodeSubType(const H235_ClearToken & obj) { PASN_OctetString::EncodeSubType(obj); }
PObject * Clone() const;
};
//
// PwdCertToken
//
class H235_PwdCertToken : public H235_ClearToken
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_PwdCertToken, H235_ClearToken);
#endif
public:
H235_PwdCertToken(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PObject * Clone() const;
};
//
// EncodedPwdCertToken
//
class H235_EncodedPwdCertToken : public PASN_OctetString
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_EncodedPwdCertToken, PASN_OctetString);
#endif
public:
H235_EncodedPwdCertToken(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
PBoolean DecodeSubType(H235_PwdCertToken & obj) { return PASN_OctetString::DecodeSubType(obj); }
void EncodeSubType(const H235_PwdCertToken & obj) { PASN_OctetString::EncodeSubType(obj); }
PObject * Clone() const;
};
//
// CryptoToken
//
class H235_CryptoToken_cryptoEncryptedToken;
class H235_CryptoToken_cryptoSignedToken;
class H235_CryptoToken_cryptoHashedToken;
class H235_CryptoToken : public PASN_Choice
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_CryptoToken, PASN_Choice);
#endif
public:
H235_CryptoToken(unsigned tag = 0, TagClass tagClass = UniversalTagClass);
enum Choices {
e_cryptoEncryptedToken,
e_cryptoSignedToken,
e_cryptoHashedToken,
e_cryptoPwdEncr
};
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_CryptoToken_cryptoEncryptedToken &() const;
#else
operator H235_CryptoToken_cryptoEncryptedToken &();
operator const H235_CryptoToken_cryptoEncryptedToken &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_CryptoToken_cryptoSignedToken &() const;
#else
operator H235_CryptoToken_cryptoSignedToken &();
operator const H235_CryptoToken_cryptoSignedToken &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_CryptoToken_cryptoHashedToken &() const;
#else
operator H235_CryptoToken_cryptoHashedToken &();
operator const H235_CryptoToken_cryptoHashedToken &() const;
#endif
#if defined(__GNUC__) && __GNUC__ <= 2 && __GNUC_MINOR__ < 9
operator H235_ENCRYPTED<H235_EncodedPwdCertToken> &() const;
#else
operator H235_ENCRYPTED<H235_EncodedPwdCertToken> &();
operator const H235_ENCRYPTED<H235_EncodedPwdCertToken> &() const;
#endif
PBoolean CreateObject();
PObject * Clone() const;
};
//
// CryptoToken_cryptoEncryptedToken
//
class H235_CryptoToken_cryptoEncryptedToken : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_CryptoToken_cryptoEncryptedToken, PASN_Sequence);
#endif
public:
H235_CryptoToken_cryptoEncryptedToken(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_tokenOID;
H235_ENCRYPTED<H235_EncodedGeneralToken> m_token;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// CryptoToken_cryptoSignedToken
//
class H235_CryptoToken_cryptoSignedToken : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_CryptoToken_cryptoSignedToken, PASN_Sequence);
#endif
public:
H235_CryptoToken_cryptoSignedToken(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_tokenOID;
H235_SIGNED<H235_EncodedGeneralToken> m_token;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
//
// CryptoToken_cryptoHashedToken
//
class H235_CryptoToken_cryptoHashedToken : public PASN_Sequence
{
#ifndef PASN_LEANANDMEAN
PCLASSINFO(H235_CryptoToken_cryptoHashedToken, PASN_Sequence);
#endif
public:
H235_CryptoToken_cryptoHashedToken(unsigned tag = UniversalSequence, TagClass tagClass = UniversalTagClass);
PASN_ObjectId m_tokenOID;
H235_ClearToken m_hashedVals;
H235_HASHED<H235_EncodedGeneralToken> m_token;
PINDEX GetDataLength() const;
PBoolean Decode(PASN_Stream & strm);
void Encode(PASN_Stream & strm) const;
#ifndef PASN_NOPRINTON
void PrintOn(ostream & strm) const;
#endif
Comparison Compare(const PObject & obj) const;
PObject * Clone() const;
};
#endif // __H235_H
#endif // if ! H323_DISABLE_H235
// End of h235.h
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