/usr/include/resip/stack/TransactionUser.hxx is in libresiprocate-1.9-dev 1.9.6-1.
This file is owned by root:root, with mode 0o644.
The actual contents of the file can be viewed below.
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#define RESIP_TU_HXX
#include <iosfwd>
#include <set>
#include "rutil/TimeLimitFifo.hxx"
#include "rutil/Data.hxx"
#include "rutil/CongestionManager.hxx"
#include "resip/stack/Message.hxx"
#include "resip/stack/MessageFilterRule.hxx"
namespace resip
{
class SipMessage;
/**
@brief The base-class for an RFC 3261 Transaction User. This is the
"app-layer".
Subclasses of TransactionUser are expected to do the following things:
- Register itself by using SipStack::registerTransactionUser().
- Regularly pull messages out of mFifo, and process them.
- Particularly, every received SIP request MUST be responded to, or
the stack will leak transactions.
- Before the TransactionUser is destroyed, it should ensure that it has
been unregistered from the stack using
SipStack::unregisterTransactionUser(), and gotten a confirmation in
the form of a TransactionUserMessage.
There is also a collection of things you can do to customize how the stack
interacts with your TransactionUser:
- If you wish to restrict the types of SIP traffic your TransactionUser
will receive from the stack, you can do so by setting the
MessageFilterRuleList, either in the constructor, or with
setMessageFilterRuleList() (see MessageFilterRule for more)
- If you need more fine-grained control over what SIP messages your
TransactionUser is willing/able to handle, you can override
TransactionUser::isForMe().
- If you wish your TransactionUser to be notified whenever a
transaction ends, just pass RegisterForTransactionTermination in the
constructor.
- If you wish your TransactionUser to be notified when Connections are
closed, pass RegisterForConnectionTermination in the constructor.
@ingroup resip_crit
*/
class TransactionUser
{
public:
/**
@brief Posts a Message to this TransactionUser's fifo. Ownership of msg
is taken.
@param msg The Message to add to mFifo. (This takes ownership of msg)
*/
void post(Message* msg);
/**
@brief Returns true iff domain matches one of the domains that this
TransactionUser is responsible for. (added with addDomain).
@param domain The domain name to check.
@return True iff this TransactionUser is responsible for domain.
@note The comparison performed is case-sensitive; make sure you
lower-case everything you put in here.
*/
bool isMyDomain(const Data& domain) const;
/**
@brief Adds a domain to the set of domains that this TransactionUser is
responsible for.
@note The comparison performed is case-sensitive; make sure you
lower-case everything you put in here.
@todo Make this case-insensitive.
*/
void addDomain(const Data& domain);
/**
@brief Return the name of this TransactionUser. Used in encode().
@return The name of this TransactionUser, as a Data.
*/
virtual const Data& name() const=0;
/**
@brief Encodes the name of this TransactionUser (as specified by
name()), and the current depth of its fifo.
@param strm The ostream to encode to.
@return strm
*/
virtual EncodeStream& encode(EncodeStream& strm) const;
/**
@brief Sets this TransactionUser's MessageFilterRuleList.
This tells the stack which SIP messages this TransactionUser is
interested in, and which ones it is not. This allows multiple
TransactionUsers to run on top of the same SipStack.
@param rules The MessageFilterRuleList to use.
@see MessageFilterRule
*/
void setMessageFilterRuleList(MessageFilterRuleList &rules);
/**
@internal
@brief Returns true iff this TransactionUser should be notified when
transactions end.
*/
bool isRegisteredForTransactionTermination() const;
/**
@internal
@brief Returns true iff this TransactionUser should be notified when
connections close.
*/
bool isRegisteredForConnectionTermination() const;
bool isRegisteredForKeepAlivePongs() const;
inline CongestionManager::RejectionBehavior getRejectionBehavior() const
{
if(mCongestionManager)
{
return mCongestionManager->getRejectionBehavior(&mFifo);
}
return CongestionManager::NORMAL;
}
virtual void setCongestionManager(CongestionManager* manager)
{
if(mCongestionManager)
{
mCongestionManager->unregisterFifo(&mFifo);
}
mCongestionManager=manager;
if(mCongestionManager)
{
mCongestionManager->registerFifo(&mFifo);
}
}
virtual UInt16 getExpectedWait() const
{
return (UInt16)mFifo.expectedWaitTimeMilliSec();
}
// .bwc. This specifies whether the TU can cope with dropped responses
// (due to congestion). Some TUs may need responses to clean up state,
// while others may rely on TransactionTerminated messages. Those that
// rely on TransactionTerminated messages will be able to return false
// here, meaning that in dire congestion situations, the stack will drop
// responses bound for the TU.
virtual bool responsesMandatory() const {return true;}
protected:
enum TransactionTermination
{
RegisterForTransactionTermination,
DoNotRegisterForTransactionTermination
};
enum ConnectionTermination
{
RegisterForConnectionTermination,
DoNotRegisterForConnectionTermination
};
enum KeepAlivePongs
{
RegisterForKeepAlivePongs,
DoNotRegisterForKeepAlivePongs
};
/**
@brief Constructor that specifies whether this TransactionUser needs to
hear about the completion of transactions, and the closing of
connections.
@param t Whether or not the TransactionUser should be informed when
transactions end (disabled by default).
@param c Whether or not the TransactionUser should be informed when
connections close (disabled by default).
@note The default MessageFilterRuleList used will accept all SIP
requests with either sip: or sips: in the Request-Uri.
@note This is protected to ensure than no-one constructs the
base-class. (Subclasses call this in their constructor)
*/
TransactionUser(TransactionTermination t=DoNotRegisterForTransactionTermination,
ConnectionTermination c=DoNotRegisterForConnectionTermination,
KeepAlivePongs k=DoNotRegisterForKeepAlivePongs);
/**
@brief Constructor that specifies the MessageFilterRuleList, whether
this TransactionUser needs to hear about the completion of
transactions, and the closing of connections.
@param rules The MessageFilterRuleList to use. (A copy is made)
@param t Whether or not the TransactionUser should be informed when
transactions end (disabled by default).
@param c Whether or not the TransactionUser should be informed when
connections close (disabled by default).
@note This is protected to ensure than no-one constructs the
base-class. (Subclasses call this in their constructor)
*/
TransactionUser(MessageFilterRuleList &rules,
TransactionTermination t=DoNotRegisterForTransactionTermination,
ConnectionTermination c=DoNotRegisterForConnectionTermination,
KeepAlivePongs k=DoNotRegisterForKeepAlivePongs);
virtual ~TransactionUser()=0;
/**
@brief Returns true iff this TransactionUser should process msg.
@param msg The SipMessage we received.
@return True iff this TransactionUser should process msg.
@note By default, this uses the MessageFilterRuleList. It can be
overridden for more flexibility.
*/
virtual bool isForMe(const SipMessage& msg) const;
/**
@brief This TransactionUser's fifo. All communication with the
TransactionUser goes through here.
*/
TimeLimitFifo<Message> mFifo;
CongestionManager* mCongestionManager;
private:
void postToTransactionUser(Message* msg, TimeLimitFifo<Message>::DepthUsage usage);
unsigned int size() const;
bool wouldAccept(TimeLimitFifo<Message>::DepthUsage usage) const;
private:
MessageFilterRuleList mRuleList;
typedef std::set<Data> DomainList;
DomainList mDomainList;
bool mRegisteredForTransactionTermination;
bool mRegisteredForConnectionTermination;
bool mRegisteredForKeepAlivePongs;
friend class TuSelector;
};
EncodeStream&
operator<<(EncodeStream& strm, const TransactionUser& tu);
}
#endif
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