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gkh235.cxx
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//////////////////////////////////////////////////////////////////
//
// gkh235.cxx
//
// Copyright (c) 2016, Jan Willamowius
// Copyright (c) 2004-2005, Michal Zygmuntowicz
//
// This work is published under the GNU Public License version 2 (GPLv2)
// see file COPYING for details.
// We also explicitly grant the right to link this code
// with the OpenH323/H323Plus and OpenSSL library.
//
//////////////////////////////////////////////////////////////////
#include "config.h"
#include <ptlib.h>
#include <h225.h>
#include <h235.h>
#include <h235auth.h>
#include "Toolkit.h"
#include "GkStatus.h"
#include "authenticators.h"
#include "gkh235.h"
const char OID_H235_CAT[] = "1.2.840.113548.10.1.2.1";
const char OID_H235_MD5[] = "1.2.840.113549.2.5";
const char OID_H235_DES[] = "1.3.14.3.2.6";
const char OID_H235_A_V1[] = "0.0.8.235.0.1.1";
const char OID_H235_A_V2[] = "0.0.8.235.0.2.1";
const char OID_H235_T_V1[] = "0.0.8.235.0.1.5";
const char OID_H235_T_V2[] = "0.0.8.235.0.2.5";
const char OID_H235_U_V1[] = "0.0.8.235.0.1.6";
const char OID_H235_U_V2[] = "0.0.8.235.0.2.6";
GkH235Authenticators::GkH235Authenticators()
: m_timestampGracePeriod(GkConfig()->GetInteger("H235", "TimestampGracePeriod", 2*60*60+10)),
m_authCAT(NULL), m_authResultCAT(H235Authenticator::e_Disabled),
m_authMD5(NULL), m_authResultMD5(H235Authenticator::e_Disabled)
#ifdef HAS_DES_ECB
, m_authDES(NULL), m_authResultDES(H235Authenticator::e_Disabled)
#endif
#ifdef H323_H235
, m_authProcedure1(NULL), m_authResultProcedure1(H235Authenticator::e_Disabled)
#endif
{
}
GkH235Authenticators::GkH235Authenticators(const GkH235Authenticators & auth)
: m_authCAT(NULL), m_authMD5(NULL)
#ifdef HAS_DES_ECB
, m_authDES(NULL)
#endif
#ifdef H323_H235
, m_authProcedure1(NULL)
#endif
{
PWaitAndSignal lock(auth.m_mutex);
m_timestampGracePeriod = auth.m_timestampGracePeriod;
if (auth.m_authCAT != NULL)
m_authCAT = static_cast<H235AuthCAT*>(auth.m_authCAT->Clone());
m_localIdCAT = auth.m_localIdCAT;
m_authResultCAT = auth.m_authResultCAT;
if (auth.m_authMD5 != NULL)
m_authMD5 = static_cast<H235AuthSimpleMD5*>(auth.m_authMD5->Clone());
m_localIdMD5 = auth.m_localIdMD5;
m_authResultMD5 = auth.m_authResultMD5;
#ifdef HAS_DES_ECB
if (auth.m_authDES != NULL)
m_authDES = static_cast<H235AuthDesECB*>(auth.m_authDES->Clone());
m_localIdDES = auth.m_localIdDES;
m_authResultDES = auth.m_authResultDES;
#endif
#ifdef H323_H235
if (auth.m_authProcedure1 != NULL)
m_authProcedure1 = static_cast<H235AuthProcedure1*>(auth.m_authProcedure1->Clone());
m_localIdProcedure1 = auth.m_localIdProcedure1;
m_remoteIdProcedure1 = auth.m_remoteIdProcedure1;
m_authResultProcedure1 = auth.m_authResultProcedure1;
#endif
}
GkH235Authenticators & GkH235Authenticators::operator=(const GkH235Authenticators & auth)
{
GkH235Authenticators temp(auth);
PWaitAndSignal lock(m_mutex);
m_timestampGracePeriod = temp.m_timestampGracePeriod;
m_authCAT = temp.m_authCAT;
temp.m_authCAT = NULL;
m_localIdCAT = temp.m_localIdCAT;
m_authResultCAT = temp.m_authResultCAT;
m_authMD5 = temp.m_authMD5;
temp.m_authMD5 = NULL;
m_localIdMD5 = temp.m_localIdMD5;
m_authResultMD5 = temp.m_authResultMD5;
#ifdef H323_H235
m_authProcedure1 = temp.m_authProcedure1;
temp.m_authProcedure1 = NULL;
m_localIdProcedure1 = temp.m_localIdProcedure1;
m_remoteIdProcedure1 = temp.m_remoteIdProcedure1;
m_authResultProcedure1 = temp.m_authResultProcedure1;
#endif // H323_H235
return *this;
}
GkH235Authenticators::~GkH235Authenticators()
{
delete m_authCAT;
delete m_authMD5;
#ifdef H323_H235
delete m_authProcedure1;
#endif // H323_H235
}
int GkH235Authenticators::Validate(
const Q931 & msg,
const H225_ArrayOf_ClearToken & clearTokens,
const H225_ArrayOf_CryptoH323Token & cryptoTokens)
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
if (!GkConfig()->GetBoolean("H235", "FullQ931Checking", false)) {
return H235Authenticator::e_OK;
}
const PTime now;
bool procedure1Found = false;
for (PINDEX i = 0; i < cryptoTokens.GetSize(); i++) {
const H225_CryptoH323Token & token = cryptoTokens[i];
if (token.GetTag() == H225_CryptoH323Token::e_nestedcryptoToken) {
const H235_CryptoToken & nestedCryptoToken = token;
if (nestedCryptoToken.GetTag() == H235_CryptoToken::e_cryptoHashedToken) {
const H235_CryptoToken_cryptoHashedToken & cryptoHashedToken = nestedCryptoToken;
if (cryptoHashedToken.m_tokenOID == OID_H235_A_V1
|| cryptoHashedToken.m_tokenOID == OID_H235_A_V2) {
procedure1Found = true;
if (m_authProcedure1 == NULL)
m_authProcedure1 = new H235AuthProcedure1;
m_authProcedure1->Enable();
const long deltaTime = (long)(now.GetTimeInSeconds() - cryptoHashedToken.m_hashedVals.m_timeStamp);
if (std::abs(deltaTime) > m_timestampGracePeriod) {
PTRACE(2, "GKH235\tInvalid Procedure I timestamp ABS(" << now.GetTimeInSeconds()
<< '-' << (int)cryptoHashedToken.m_hashedVals.m_timeStamp << ") > "
<< m_timestampGracePeriod);
GkStatus::Instance()->SignalStatus("Warning: Endpoint Procedure I password rejected due to invalid timestamp\r\n");
return m_authResultProcedure1 = H235Authenticator::e_InvalidTime;
}
const PString oldLocalId = m_authProcedure1->GetLocalId();
const PString oldRemoteId = m_authProcedure1->GetRemoteId();
m_authProcedure1->SetLocalId(m_localIdProcedure1);
m_authProcedure1->SetRemoteId(m_remoteIdProcedure1);
bool checkSendersID = GkConfig()->GetBoolean("H235", "CheckSendersID", true);
if (cryptoHashedToken.m_hashedVals.HasOptionalField(H235_ClearToken::e_sendersID) && checkSendersID) {
bool idOK = true;
// TODO235: check if sendersID == EPID or == alias and then set the actual as expected, don't set if its not a correct one
if (!idOK) {
return H235Authenticator::e_Error;
}
}
// copy actual sendersID into what we expect
m_authProcedure1->SetRemoteId(cryptoHashedToken.m_hashedVals.m_sendersID);
// re-encode the message to check it, not sure why (PByteArray &)msg crashes
PBYTEArray buf(1024); // buffer with initial size 1024
if (!msg.Encode(buf)) {
PTRACE(1, "H235\tError: re-encode failed"); // should never happen
}
m_authResultProcedure1 = m_authProcedure1->ValidateCryptoToken(token, buf);
if (m_authResultProcedure1 != H235Authenticator::e_OK) {
m_authProcedure1->SetLocalId(oldLocalId);
m_authProcedure1->SetRemoteId(oldRemoteId);
}
}
}
}
}
if (!procedure1Found && m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredSignalPDU(msg.GetMessageType(), TRUE)) {
m_authResultProcedure1 = H235Authenticator::e_Absent;
return m_authResultProcedure1;
} else if (procedure1Found && m_authResultProcedure1 != H235Authenticator::e_OK) {
return m_authResultProcedure1;
}
return H235Authenticator::e_OK;
#else
return H235Authenticator::e_Disabled;
#endif // H323_H235
}
int GkH235Authenticators::Validate(
const H225_RasMessage & rasmsg,
const H225_ArrayOf_ClearToken & clearTokens,
const H225_ArrayOf_CryptoH323Token & cryptoTokens,
const PBYTEArray & rawPDU)
{
PWaitAndSignal lock(m_mutex);
const PTime now;
bool catFound = false;
bool md5Found = false;
#ifdef HAS_DES_ECB
bool desFound = false;
#endif
#ifdef H323_H235
bool procedure1Found = false;
#endif // H323_H235
PINDEX i;
for (i = 0; i < clearTokens.GetSize(); i++) {
const H235_ClearToken & token = clearTokens[i];
// check for CAT (Cisco Access Token)
if (token.m_tokenOID == OID_H235_CAT && Toolkit::Instance()->IsAuthenticatorEnabled("CAT")) {
catFound = true;
if (m_authCAT == NULL)
m_authCAT = new H235AuthCAT;
m_authCAT->Enable();
if (!token.HasOptionalField(H235_ClearToken::e_timeStamp)) {
PTRACE(2, "GKH235\tCAT requires timeStamp field");
return m_authResultCAT = H235Authenticator::e_Error;
}
const long deltaTime = (long)(now.GetTimeInSeconds() - token.m_timeStamp);
if (std::abs(deltaTime) > m_timestampGracePeriod) {
PTRACE(2, "GKH235\tInvalid CAT timestamp ABS(" << now.GetTimeInSeconds()
<< '-' << (int)token.m_timeStamp << ") > " << m_timestampGracePeriod);
PString ep;
if (token.HasOptionalField(H235_ClearToken::e_generalID)) {
ep = token.m_generalID;
} else if (token.HasOptionalField(H235_ClearToken::e_sendersID)) {
ep = token.m_sendersID;
}
GkStatus::Instance()->SignalStatus("Warning: Endpoint " + ep + " CAT password rejected due to invalid timestamp\r\n");
return m_authResultCAT = H235Authenticator::e_InvalidTime;
}
const PString oldLocalId = m_authCAT->GetLocalId();
m_authCAT->SetLocalId(m_localIdCAT);
m_authResultCAT = m_authCAT->ValidateClearToken(token);
if (m_authResultCAT != H235Authenticator::e_OK)
m_authCAT->SetLocalId(oldLocalId);
}
}
for (i = 0; i < cryptoTokens.GetSize(); i++) {
const H225_CryptoH323Token& token = cryptoTokens[i];
if (token.GetTag() == H225_CryptoH323Token::e_cryptoEPPwdHash && Toolkit::Instance()->IsAuthenticatorEnabled("MD5")) {
const H225_CryptoH323Token_cryptoEPPwdHash & cryptoEPPwdHash = token;
if (cryptoEPPwdHash.m_token.m_algorithmOID == OID_H235_MD5) {
md5Found = true;
if (m_authMD5 == NULL)
m_authMD5 = new H235AuthSimpleMD5();
m_authMD5->Enable();
const long deltaTime = (long)(now.GetTimeInSeconds() - cryptoEPPwdHash.m_timeStamp);
if (std::abs(deltaTime) > m_timestampGracePeriod) {
PTRACE(2, "GKH235\tInvalid MD5 timestamp ABS(" << now.GetTimeInSeconds()
<< '-' << (int)cryptoEPPwdHash.m_timeStamp << ") > " << m_timestampGracePeriod);
GkStatus::Instance()->SignalStatus("Warning: Endpoint " + AsString(cryptoEPPwdHash.m_alias, false) + " MD5 password rejected due to invalid timestamp\r\n");
return m_authResultMD5 = H235Authenticator::e_InvalidTime;
}
const PString oldLocalId = m_authMD5->GetLocalId();
m_authMD5->SetLocalId(m_localIdMD5);
m_authResultMD5 = m_authMD5->ValidateCryptoToken(token, rawPDU);
if (m_authResultMD5 != H235Authenticator::e_OK) {
m_authMD5->SetLocalId(oldLocalId);
return m_authResultMD5;
}
}
} else if (token.GetTag() == H225_CryptoH323Token::e_nestedcryptoToken && Toolkit::Instance()->IsAuthenticatorEnabled("H.235.1")) {
#ifdef H323_H235
const H235_CryptoToken & nestedCryptoToken = token;
if (nestedCryptoToken.GetTag() == H235_CryptoToken::e_cryptoHashedToken) {
const H235_CryptoToken_cryptoHashedToken & cryptoHashedToken = nestedCryptoToken;
if (cryptoHashedToken.m_tokenOID == OID_H235_A_V1
|| cryptoHashedToken.m_tokenOID == OID_H235_A_V2) {
procedure1Found = true;
if (m_authProcedure1 == NULL)
m_authProcedure1 = new H235AuthProcedure1();
m_authProcedure1->Enable();
const long deltaTime = (long)(now.GetTimeInSeconds() - cryptoHashedToken.m_hashedVals.m_timeStamp);
if (std::abs(deltaTime) > m_timestampGracePeriod) {
PTRACE(2, "GKH235\tInvalid Procedure I timestamp ABS(" << now.GetTimeInSeconds()
<< '-' << (int)cryptoHashedToken.m_hashedVals.m_timeStamp << ") > "
<< m_timestampGracePeriod);
GkStatus::Instance()->SignalStatus("Warning: Endpoint Procedure I password rejected due to invalid timestamp\r\n");
return m_authResultProcedure1 = H235Authenticator::e_InvalidTime;
}
const PString oldLocalId = m_authProcedure1->GetLocalId();
const PString oldRemoteId = m_authProcedure1->GetRemoteId();
m_authProcedure1->SetLocalId(m_localIdProcedure1);
m_authProcedure1->SetRemoteId(m_remoteIdProcedure1);
m_authResultProcedure1 = m_authProcedure1->ValidateCryptoToken(token, rawPDU);
if (m_authResultProcedure1 != H235Authenticator::e_OK) {
m_authProcedure1->SetLocalId(oldLocalId);
m_authProcedure1->SetRemoteId(oldRemoteId);
}
}
}
#endif // H323_H235
} else if (token.GetTag() == H225_CryptoH323Token::e_cryptoEPPwdEncr) {
H235_ENCRYPTED<H235_EncodedPwdCertToken> cryptoEPPwdEncr = (H235_ENCRYPTED<H235_EncodedPwdCertToken>)token;
#ifdef HAS_DES_ECB
if (cryptoEPPwdEncr.m_algorithmOID == OID_H235_DES && Toolkit::Instance()->IsAuthenticatorEnabled("DES")) {
desFound = true;
if (m_authDES == NULL)
m_authDES = new H235AuthDesECB();
m_authDES->Enable();
const PString oldLocalId = m_authDES->GetLocalId();
m_authDES->SetLocalId(m_localIdDES);
m_authResultDES = m_authDES->ValidateCryptoToken(token, rawPDU);
if (m_authResultDES != H235Authenticator::e_OK) {
m_authDES->SetLocalId(oldLocalId);
return m_authResultDES;
}
}
#endif
} else {
PTRACE(4, "GKH235\tUnhandled cryptoToken " << token.GetTagName());
}
}
if (!catFound && m_authCAT && m_authCAT->IsActive()
&& m_authCAT->IsSecuredPDU(rasmsg.GetTag(), TRUE)) {
m_authResultCAT = H235Authenticator::e_Absent;
return m_authResultCAT;
} else if (catFound && m_authResultCAT != H235Authenticator::e_OK)
return m_authResultCAT;
if (!md5Found && m_authMD5 && m_authMD5->IsActive()
&& m_authMD5->IsSecuredPDU(rasmsg.GetTag(), TRUE)) {
m_authResultMD5 = H235Authenticator::e_Absent;
return m_authResultMD5;
} else if (md5Found && m_authResultMD5 != H235Authenticator::e_OK)
return m_authResultMD5;
#ifdef HAS_DES_ECB
if (!desFound && m_authDES && m_authDES->IsActive()
&& m_authDES->IsSecuredPDU(rasmsg.GetTag(), TRUE)) {
m_authResultDES = H235Authenticator::e_Absent;
return m_authResultDES;
} else if (desFound && m_authResultDES != H235Authenticator::e_OK)
return m_authResultDES;
#endif
#ifdef H323_H235
if (!procedure1Found && m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredPDU(rasmsg.GetTag(), TRUE)) {
m_authResultProcedure1 = H235Authenticator::e_Absent;
return m_authResultProcedure1;
} else if (procedure1Found && m_authResultProcedure1 != H235Authenticator::e_OK)
return m_authResultProcedure1;
#endif // H323_H235
return H235Authenticator::e_OK;
}
void GkH235Authenticators::PrepareTokens(
H225_RasMessage & rasmsg,
H225_ArrayOf_ClearToken & clearTokens,
H225_ArrayOf_CryptoH323Token & cryptoTokens)
{
PWaitAndSignal lock(m_mutex);
if (m_authCAT != NULL && m_authCAT->IsActive()
&& m_authCAT->IsSecuredPDU(rasmsg.GetTag(), FALSE)
&& m_authResultCAT == H235Authenticator::e_OK) {
m_authCAT->SetLocalId(m_localIdCAT);
m_authCAT->PrepareTokens(clearTokens, cryptoTokens);
}
if (m_authMD5 && m_authMD5->IsActive()
&& m_authMD5->IsSecuredPDU(rasmsg.GetTag(), FALSE)
&& m_authResultMD5 == H235Authenticator::e_OK) {
m_authMD5->SetLocalId(m_localIdMD5);
m_authMD5->PrepareTokens(clearTokens, cryptoTokens);
}
#ifdef HAS_DES_ECB
if (m_authDES && m_authDES->IsActive()
&& m_authDES->IsSecuredPDU(rasmsg.GetTag(), FALSE)
&& m_authResultDES == H235Authenticator::e_OK) {
m_authDES->SetLocalId(m_localIdDES);
m_authDES->PrepareTokens(clearTokens, cryptoTokens);
}
#endif
#ifdef H323_H235
if (m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredPDU(rasmsg.GetTag(), FALSE)) {
// && m_authResultProcedure1 == H235Authenticator::e_OK) { // this hurts when sending call from ep without H.235.1 to one with H.235.1
m_authProcedure1->SetLocalId(m_localIdProcedure1);
m_authProcedure1->SetRemoteId(m_remoteIdProcedure1);
m_authProcedure1->PrepareTokens(clearTokens, cryptoTokens);
}
#endif // H323_H235
}
void GkH235Authenticators::Finalise(H225_RasMessage & rasmsg, PBYTEArray & rawPdu)
{
PWaitAndSignal lock(m_mutex);
if (m_authCAT != NULL && m_authCAT->IsActive()
&& m_authCAT->IsSecuredPDU(rasmsg.GetTag(), FALSE))
m_authCAT->Finalise(rawPdu);
if (m_authMD5 && m_authMD5->IsActive()
&& m_authMD5->IsSecuredPDU(rasmsg.GetTag(), FALSE))
m_authMD5->Finalise(rawPdu);
#ifdef H323_H235
if (m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredPDU(rasmsg.GetTag(), FALSE)) {
m_authProcedure1->Finalise(rawPdu);
}
#endif // H323_H235
}
void GkH235Authenticators::PrepareTokens(
unsigned q931Tag,
H225_ArrayOf_ClearToken & clearTokens,
H225_ArrayOf_CryptoH323Token & cryptoTokens)
{
#ifdef H323_H325
PWaitAndSignal lock(m_mutex);
if (m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredPDU(q931Tag, FALSE)) {
m_authProcedure1->SetLocalId(m_localIdProcedure1);
m_authProcedure1->SetRemoteId(m_remoteIdProcedure1);
m_authProcedure1->PrepareTokens(clearTokens, cryptoTokens);
}
#endif
}
void GkH235Authenticators::Finalise(unsigned q931Tag, PBYTEArray & rawPdu)
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
if (m_authProcedure1 && m_authProcedure1->IsActive()
&& m_authProcedure1->IsSecuredPDU(q931Tag, FALSE)) {
m_authProcedure1->Finalise(rawPdu);
}
#endif // H323_H235
}
void GkH235Authenticators::SetCATData(const PString & generalID, const PString & password)
{
PWaitAndSignal lock(m_mutex);
if (m_authCAT == NULL)
m_authCAT = new H235AuthCAT();
m_authCAT->Enable();
m_localIdCAT = generalID;
m_authCAT->SetPassword(password);
}
void GkH235Authenticators::SetSimpleMD5Data(const PString & generalID, const PString & password)
{
PWaitAndSignal lock(m_mutex);
if (m_authMD5 == NULL)
m_authMD5 = new H235AuthSimpleMD5();
m_authMD5->Enable();
m_localIdMD5 = generalID;
m_authMD5->SetPassword(password);
}
#ifdef HAS_DES_ECB
void GkH235Authenticators::SetDESData(const PString & generalID, const PString & password)
{
PWaitAndSignal lock(m_mutex);
if (m_authDES == NULL)
m_authDES = new H235AuthDesECB();
m_authDES->Enable();
m_localIdDES = generalID;
m_authDES->SetPassword(password);
}
#endif
void GkH235Authenticators::SetProcedure1Data(const PString & sendersID, const PString & remoteID, const PString & password, PBoolean requireGeneralID)
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
if (m_authProcedure1 == NULL)
m_authProcedure1 = new H235AuthProcedure1();
m_authProcedure1->Enable();
m_localIdProcedure1 = sendersID;
m_remoteIdProcedure1 = remoteID;
m_authProcedure1->SetPassword(password);
#ifdef HAS_H2351_CONFIG
m_authProcedure1->RequireGeneralID(requireGeneralID);
m_authProcedure1->CheckSendersID(GkConfig()->GetBoolean("H235", "CheckSendersID", true));
m_authProcedure1->FullQ931Checking(GkConfig()->GetBoolean("H235", "FullQ931Checking", false));
m_authProcedure1->VerifyRandomNumber(GkConfig()->GetBoolean("H235", "VerifyRandomNumber", true));
#endif // HAS_H2351_CONFIG
#endif // H323_H235
}
void GkH235Authenticators::SetProcedure1LocalId(const PString & localID)
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
m_localIdProcedure1 = localID;
#endif // H323_H235
}
void GkH235Authenticators::SetProcedure1RemoteId(const PString & remoteID)
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
m_remoteIdProcedure1 = remoteID;
#endif // H323_H235
}
bool GkH235Authenticators::HasProcedure1Password()
{
#ifdef H323_H235
PWaitAndSignal lock(m_mutex);
return m_authProcedure1 != NULL && m_authProcedure1->IsActive() && !m_authProcedure1->GetPassword();
#else
return false;
#endif // H323_H235
}
bool GkH235Authenticators::HasMD5Password()
{
PWaitAndSignal lock(m_mutex);
return m_authMD5 != NULL && m_authMD5->IsActive() && !m_authMD5->GetPassword();
}
#ifdef HAS_DES_ECB
bool GkH235Authenticators::HasDESPassword()
{
PWaitAndSignal lock(m_mutex);
return m_authDES != NULL && m_authDES->IsActive() && !m_authDES->GetPassword();
}
#endif
bool GkH235Authenticators::HasCATPassword()
{
PWaitAndSignal lock(m_mutex);
return m_authCAT != NULL && m_authCAT->IsActive() && !m_authCAT->GetPassword();
}
// get pointers to the tokens in the different Q.931 messages
void GkH235Authenticators::GetQ931Tokens(Q931::MsgTypes type, H225_H323_UserInformation * uuie, H225_ArrayOf_ClearToken ** tokens, H225_ArrayOf_CryptoH323Token ** cryptoTokens)
{
if (!uuie || (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() == H225_H323_UU_PDU_h323_message_body::e_empty)) {
return;
}
switch (type) {
case Q931::AlertingMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_alerting) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Alerting)");
return;
}
H225_Alerting_UUIE & alerting = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &alerting.m_tokens;
*cryptoTokens = &alerting.m_cryptoTokens;
}
break;
case Q931::CallProceedingMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_callProceeding) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (CallProceeding)");
return;
}
H225_CallProceeding_UUIE & proceeding = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &proceeding.m_tokens;
*cryptoTokens = &proceeding.m_cryptoTokens;
}
break;
case Q931::ConnectMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_connect) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Connect)");
return;
}
H225_Connect_UUIE & connect = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &connect.m_tokens;
*cryptoTokens = &connect.m_cryptoTokens;
}
break;
case Q931::ProgressMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_progress) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Progress)");
return;
}
H225_Progress_UUIE & progress = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &progress.m_tokens;
*cryptoTokens = &progress.m_cryptoTokens;
}
break;
case Q931::SetupMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_setup) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Setup)");
return;
}
H225_Setup_UUIE & setup = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &setup.m_tokens;
*cryptoTokens = &setup.m_cryptoTokens;
}
break;
case Q931::SetupAckMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_setupAcknowledge) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (SetupAck)");
return;
}
H225_SetupAcknowledge_UUIE & setupAck = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &setupAck.m_tokens;
*cryptoTokens = &setupAck.m_cryptoTokens;
}
break;
case Q931::ReleaseCompleteMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_releaseComplete) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (ReleaseComplete)");
return;
}
H225_ReleaseComplete_UUIE & rc = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &rc.m_tokens;
*cryptoTokens = &rc.m_cryptoTokens;
}
break;
case Q931::InformationMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_information) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Information)");
return;
}
H225_Information_UUIE & info = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &info.m_tokens;
*cryptoTokens = &info.m_cryptoTokens;
}
break;
case Q931::NotifyMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_notify) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Notify)");
return;
}
H225_Notify_UUIE & notify = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = ¬ify.m_tokens;
*cryptoTokens = ¬ify.m_cryptoTokens;
}
break;
case Q931::StatusMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_status) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Status)");
return;
}
H225_Status_UUIE & status = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &status.m_tokens;
*cryptoTokens = &status.m_cryptoTokens;
}
break;
case Q931::StatusEnquiryMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_statusInquiry) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (StatusInquiry)");
return;
}
H225_StatusInquiry_UUIE & statusInquiry = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &statusInquiry.m_tokens;
*cryptoTokens = &statusInquiry.m_cryptoTokens;
}
break;
case Q931::FacilityMsg: {
if (uuie->m_h323_uu_pdu.m_h323_message_body.GetTag() != H225_H323_UU_PDU_h323_message_body::e_facility) {
PTRACE(1, "Error: UUIE (" << uuie->m_h323_uu_pdu.m_h323_message_body.GetTagName() << ") doesn't match Q.931 message (Facility)");
return;
}
H225_Facility_UUIE & facility = uuie->m_h323_uu_pdu.m_h323_message_body;
*tokens = &facility.m_tokens;
*cryptoTokens = &facility.m_cryptoTokens;
}
break;
default:
return;
break;
}
}