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SipCoreApiDocumentation » History » Version 42

Ruud Klaver, 05/07/2009 01:17 PM

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= SIP core API =
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[[TOC(Sip*, depth=3)]]
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== Introduction ==
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This chapter describes the internal architecture and API of the SIP core of the {{{sipsimple}}} library.
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{{{sipsimple}}} is a Python package, the core of which wrapps the PJSIP C library, which handles SIP signaling and audio media for the SIP SIMPLE client.
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SIP stands for 'Sessions Initiation Protocol', an IETF standard described by [http://tools.ietf.org/html/rfc3261 RFC 3261]. SIP is an application-layer control protocol that can establish,
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modify and terminate multimedia sessions such as Internet telephony calls
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(VoIP). Media can be added to (and removed from) an existing session.
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SIP transparently supports name mapping and redirection services, which
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supports personal mobility, users can maintain a single externally visible
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address identifier, which can be in the form of a standard email address or
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E.164 telephone number regardless of their physical network location.
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SIP allows the endpoints to negotiate and combine any type of session they
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mutually understand like video, instant messaging (IM), file transfer,
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desktop sharing and provides a generic event notification system with
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real-time publications and subscriptions about state changes that can be
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used for asynchronous services like presence, message waiting indicator and
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busy line appearance.
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For a comprehensive overview of SIP related protocols and use cases visit http://www.tech-invite.com
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== PJSIP library ==
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{{{sipsimple}}} builds on PJSIP [http://www.pjsip.org], a set of static libraries, written in C, which provide SIP signaling and media capabilities.
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PJSIP is considered to be the most mature and advanced open source SIP stack available.
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The following diagram, taken from the PJSIP documentation, illustrates the library stack of PJSIP:
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[[Image(http://www.pjsip.org/images/diagram.jpg, nolink)]]
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The diagram shows that there is a common base library, and two more or less independent stacks of libraries, one for SIP signaling and one for SIP media.
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The latter also includes an abstraction layer for the soundcard.
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Both of these stracks are integrated in the high level library, called PJSUA.
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PJSIP itself provides a high-level [http://www.pjsip.org/python/pjsua.htm Python wrapper for PJSUA].
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Despite this, the choice was made to bypass PJSUA and write the SIP core of the {{{sipsimple}}} package as a Python wrapper, which directly uses the PJSIP and PJMEDIA libraries.
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The main reasons for this are the following:
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 * PJSUA assumes a session with exactly one audio stream, whilst for the SIP SIMPLE client more advanced (i.e. low-level) manipulation of the SDP is needed.
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 * What is advertised as SIMPLE functionality, it is minimal and incomplete subset of it. Only page mode messaging using SIP MESSAGE method and basic device status presence are possible, while session mode IM and rich presence are desired.
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 * PJSUA integrates the decoding and encoding of payloads (e.g. presence related XML documents), while in the SIP SIMPLE client this should be done at a high level, not by the SIP stack.
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PJSIP itself is by nature asynchronous.
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In the case of PJSIP it means that in general there will be one thread which handles reception and transmission of SIP signaling messages by means of a polling function which is continually called by the application.
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Whenever the application performs some action through a function, this function will return immediately.
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If PJSIP has a result for this action, it will notify the application by means of a callback function in the context of the polling function thread.
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> NOTE: Currently the core starts the media handling as a separate C thread to avoid lag caused by the GIL.
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> The soundcard also has its own C thread.
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== Architecture ==
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The {{{sipsimple}}} core wrapper itself is mostly written using [http://cython.org/ Cython] (formerly [http://www.cosc.canterbury.ac.nz/greg.ewing/python/Pyrex/ Pyrex]).
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It allows a Python-like file with some added C manipulation statements to be compiled to C.
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This in turn compiles to a Python C extension module, which links with the PJSIP static libraries.
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The SIP core part of the {{{sipsimple}}} Python package is subdivided into three modules:
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 '''sipsimple.engine'''::
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  Python module that contains the {{{Engine}}} singleton class, which manages the thread that constantly polls the PJSIP library, i.e. the PJSIP worker thread.
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  For the applications that use the core of {{{sipsimple}}}, the {{{Engine}}} object forms the main entry point.
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 '''sipsimple.core'''::
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  This is the Python C extension module ultimately compiled from the Cython file and PJSIP static libraries.
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  It contains these types of classes:
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   * The {{{PJSIPUA}}} class, which can only be instanced once, and is this case is only instanced once by the {{{Engine}}} object.
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     In this way the {{{Engine}}} singleton class acts as a wrapper to the one {{{PJSIPUA}}} instance.
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     The {{{PJSIPUA}}} class represents the SIP endpoint and manages the initialization and destruction of all the PJSIP libraries.
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     It also provides a number of methods.
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     The application however should never call these methods directly on the {{{PJSIPUA}}} object, rather it should call them on the {{{Engine}}} wrapper object.
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     This object handles everything that for one reason or another cannot or should not be handled from Cython.
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   * The classes that represent the main SIP primitives to be used by the application, or in the case of {{{Request}}} a generic SIP transction.
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     The application can instantiate these classes once the {{{Engine}}} class has been instantiated and the PJSIP worker thread has been started.
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     All of these classes represent a state machine.
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     * {{{Request}}}
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     * {{{Publication}}}
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     * {{{Subscription}}}
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     * {{{Invitation}}}
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   * Several helper classes, which represent some structured collection of data to be passed as parameter to methods of the SIP primitive classes and to parameters of notifications.
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     * {{{SIPURI}}}
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     * {{{Credentials}}}
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     * {{{Route}}}
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   * A number of SDP manipulation classes, which directly wrap the PJSIP structures representing either the parsed or to be generated SDP.
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     {{{SDPSession}}} objects may contain references to the other classes and are passed as arguments to methods of a {{{Invitiation}}} object or notifications sent by it.
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     * {{{SDPSession}}}
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     * {{{SDPMedia}}}
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     * {{{SDPConnection}}}
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     * {{{SDPAttribute}}}
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   * Two classes related to transport of media traffic and audio traffic specifically, built on PJMEDIA.
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     These classes can be instantiated independently from the other classes in order to keep signaling and media separate.
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     * {{{RTPTransport}}}
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     * {{{AudioTransport}}}
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   * Two classes related to {{{.wav}}} files, one for playback and one for recording.
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     * {{{WaveFile}}}
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     * {{{RecordingWaveFile}}}
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   * Two exception classes, the second being a subclass of the first.
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     * {{{SIPCoreError}}}
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     * {{{PJSIPError}}}
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   * Classes used internally within the {{{core}}} module, e.g. to wrap a particular PJSIP library.
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     These classes should not be imported directly and are not included in the {{{__all__}}} variable of this module.
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 '''sipsimple.primitives'''::
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  This module contains several SIP primitive classes that are based on the {{{Request}}} object from the core:
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   * {{{Registration}}}
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   * {{{Message}}}
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These classes (except the ones internal to the {{{core}}} module) are illustrated in the following diagram:
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[[Image(sipsimple-core-classes.png, nolink)]]
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== Integration ==
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The core itself has one Python dependency, the [http://pypi.python.org/pypi/python-application application] module, which in turn depends on the [http://pypi.python.org/pypi/zope.interface zope.interface] module.
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These modules should be present on the system before the core can be used.
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An application that uses the SIP core must use the notification system provided by the {{{application}}} module in order to receive notifications from it.
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It does this by creating one or more classes that act as an observer for particular messages and registering it with the {{{NotificationCenter}}}, which is a singleton class.
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This means that any call to instance an object from this class will result in the same object.
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As an example, this bit of code will create an observer for logging messages only:
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{{{
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from zope.interface import implements
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from application.notification import NotificationCenter, IObserver
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class SIPEngineLogObserver(object):
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    implements(IObserver)
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    def handle_notification(self, notification):
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        print "%(timestamp)s (%(level)d) %(sender)14s: %(message)s" % notification.data.__dict__
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notification_center = NotificationCenter()
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log_observer = EngineLogObserver()
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notification_center.add_observer(self, name="SIPEngineLog")
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}}}
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Each notification object has three attributes:
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 '''sender'''::
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  The object that sent the notification.
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  For generic notifications the sender will be the {{{Engine}}} instance, otherwise the relevant object.
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 '''name'''::
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  The name describing the notification.
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  All messages will be described in this document and start with the prefix "SIP".
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 '''data'''::
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  An instance of {{{application.notification.NotificationData}}} or a subclass of it.
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  The attributes of this object provide additional data about the notification.
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  Notifications described in this document will also have the data attributes described.
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Besides setting up the notification observers, the application should import the relevant objects from the core by issuing the {{{from sipsimple import *}}} statement.
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It can then instance the {{{Engine}}} class, which is also a singleton, and start the PJSIP worker thread by calling {{{Engine.start()}}}, optionally providing a number of initialization options.
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Most of these options can later be changed at runtime, by setting attributes of the same name on the {{{Engine}}} object.
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The application may then instance one of the SIP primitive classes and perform operations on it.
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When starting the {{{Engine}}} class, the application can pass a number of keyword arguments that influence the behaviour of the SIP endpoint.
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For example, the SIP network ports may be set through the {{{local_udp_port}}}, {{{local_tcp_port}}} and {{{local_tls_port}}} arguments.
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The UDP/RTP ports are described by a range of ports through {{{rtp_port_range}}}, two of which will be randomly selected for each {{{RTPTransport}}} object and effectively each audio stream.
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The methods called on the SIP primitive objects and the {{{Engine}}} object (proxied to the {{{PJSIPUA}}} instance) may be called from any thread.
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They will return immediately and any delayed result, such as results depending on network traffic, will be returned later using a notification.
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In this manner the SIP core continues the asynchronous pattern of PJSIP.
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If there is an error in processing the request, an instance of {{{SIPCoreError}}}, or its subclass {{{PJSIPError}}} will be raised.
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The former will be raised whenever an error occurs inside the core, the latter whenever an underlying PJSIP function returns an error.
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The {{{PJSIPError}}} object also contains a status attribute, which is the PJSIP errno as an integer.
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As a very basic example, one can REGISTER for a sip account by typing the following lines on a Python console:
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{{{
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from sipsimple import *
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e = Engine()
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e.start()
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cred = Credentials(SIPURI(user="alice", host="example.com"), "password")
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reg = Registration(cred, Route("1.2.3.4"))
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reg.register()
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}}}
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Note that in this example no observer for notifications from this {{{Registration}}} object are registered, so the result of the operation cannot be seen.
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To see how this example can be converted to actually wait for the response without creating an observer, see the example for GreenRegistration at [wiki:SipSynchronousAPI#sipsimple.green.core.GreenRegistration SynchronousAPI].
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== Components ==
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=== Engine ===
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As explained above, this singleton class needs to be instantiated by the application using the SIP core of {{{sipsimple}}} and represents the whole SIP core stack.
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Once the {{{start()}}} method is called, it instantiates the {{{core.PJSIPUA}}} object and will proxy attribute and methods from it to the application.
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==== attributes ====
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 '''default_start_options''' (class attribute)::
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  This dictionary is a class attribute that describes the default values for the initialization options passed as keyword arguments to the {{{start()}}} method.
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  Consult this method for documentation of the contents.
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 '''is_running'''::
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  A boolean property indicating if the {{{Engine}}} is running and if it is safe to try calling any proxied methods or attributes on it.
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==== methods ====
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 '''!__init!__'''(''self'')::
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  This will either create the {{{Engine}}} if it is called for the first time or return the one {{{Engine}}} instance if it is called subsequently.
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 '''start'''(''self'', '''**kwargs''')::
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  Initialize all PJSIP libraries based on the keyword parameters provited and start the PJSIP worker thread.
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  If this fails an appropriate exception is raised.
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  After the {{{Engine}}} has been started successfully, it can never be started again after being stopped.
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  The keyword arguments will be discussed here.
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  Many of these values are also readable as (proxied) attributes on the Engine once the {{{start()}}} method has been called.
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  Many of them can also be set at runtime, either by modifying the attribute or by calling a particular method.
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  This will also be documented for each argument in the following list of options.
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  [[BR]]''auto_sound'':[[BR]]
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  A boolean indicating if PJSIP should automatically select and enable a soundcard to use for for recording and playing back sound.
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  If this is set to {{{False}}} the Dummy sound device is selected.
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  To be able to hear and contribute audio, the application will have to select a sound device manually through the {{{set_sound_devices}}} method.
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  This option is not accessible as an attribute on the object, as it is transitory.
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  [[BR]]''local_ip'': (Default: {{{None}}})[[BR]]
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  IP address of a local interface to bind to.
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  If this is {{{None}}} on start, the {{{Engine}}} will try to determine the default outgoing interface and bind to it.
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  Setting this to {{{0.0.0.0}}} will cause PJSIP to listen for traffic on any interface, but this is not recommended.
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  As an attribute, this value is read-only.
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  [[BR]]''local_udp_port'': (Default: {{{0}}})[[BR]]
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  The local UDP port to listen on for UDP datagrams.
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  If this is 0, a random port will be chosen.
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  If it is {{{None}}}, the UDP transport is disabled, both for incoming and outgoing traffic.
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_local_udp_port()}}} method.
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  [[BR]]''local_tcp_port'': (Default: {{{0}}})[[BR]]
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  The local TCP port to listen on for new TCP connections.
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  If this is 0, a random port will be chosen.
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  If it is {{{None}}}, the TCP transport is disabled, both for incoming and outgoing traffic.
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_local_tcp_port()}}} method.
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  [[BR]]''local_tls_port'': (Default: {{{0}}})[[BR]]
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  The local TCP port to listen on for new TLS over TCP connections.
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  If this is 0, a random port will be chosen.
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  If it is {{{None}}}, the TLS transport is disabled, both for incoming and outgoing traffic.
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation. 
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  [[BR]]''tls_protocol'': (Default: "TLSv1")[[BR]] 
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  This string describes the (minimum) TLS protocol that should be used. 
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  Its values should be either {{{None}}}, "SSLv2", "SSLv23", "SSLv3" or "TLSv1". 
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  If {{{None}}} is specified, the PJSIP default will be used, which is currently "TLSv1". 
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  [[BR]]''tls_verify_server'': (Default: {{{False}}})[[BR]]
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  This boolean indicates whether PJSIP should verify the certificate of the server against the local CA list when making an outgoing TLS connection.
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation.
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  [[BR]]''tls_ca_file'': (Default: {{{None}}})[[BR]]
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  This string indicates the location of the file containing the local list of CA certificates, to be used for TLS connections.
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  If this is set to {{{None}}}, no CA certificates will be read. 
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation. 
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  [[BR]]''tls_cert_file'': (Default: {{{None}}})[[BR]] 
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  This string indicates the location of a file containing the TLS certificate to be used for TLS connections. 
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  If this is set to {{{None}}}, no certificate file will be read. 
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation. 
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  [[BR]]''tls_privkey_file'': (Default: {{{None}}})[[BR]] 
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  This string indicates the location of a file containing the TLS private key associated with the above mentioned certificated to be used for TLS connections. 
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  If this is set to {{{None}}}, no private key file will be read. 
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation. 
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  [[BR]]''tls_timeout'': (Default: 1000)[[BR]] 
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  The timeout value for a TLS negotiation in milliseconds. 
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  Note that this value should be reasonably small, as a TLS negotiation blocks the whole PJSIP polling thread. 
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_tls_options()}}} method, as internally the TLS transport needs to be restarted for this operation.
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  [[BR]]''ec_tail_length'': (Default: {{{50}}})[[BR]]
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  Echo cancellation tail length in milliseconds.
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  A longer value should provide better echo cancellation but incurs more processing cost.
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  Setting this to 0 will disable echo cancellation.
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  As an attribute, this value is read-only, but it can be set as an argument to the {{{set_sound_devices}}} method.
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  [[BR]]''user_agent'': (Default: {{{"ag-projects/sipclient-%version-pjsip-%pjsip-version"}}})[[BR]]
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  This value indicates what should be set in the {{{User-Agent}}} header, which is included in each request or response sent.
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  It can be read and set directly as an attribute at runtime.
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  [[BR]]''log_level'': (Default: 5)[[BR]]
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  This integer dictates the maximum log level that may be reported to the application by PJSIP through the {{{SIPEngineLog}}} notification.
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  By default the maximum amount of logging information is reported.
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  This value can be read and set directly as an attribute at runtime.
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  [[BR]]''trace_sip'': (Default: {{{False}}})[[BR]]
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  This boolean indicates if the SIP core should send the application SIP messages as seen on the wire through the {{{SIPEngineSIPTrace}}} notification.
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  It can be read and set directly as an attribute at runtime.
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  [[BR]]''sample_rate'': (Default: {{{32}}})[[BR]]
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  The sample rate in kHz at which the sound card should operate.
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  Higher values allow some codecs (such as speex) to achieve better quality but will incur higher processing cost, particularly in combination with echo cancellation.
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  This parameter should be either 8, 16 or 32.
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  The corresponding attribute of this value is read-only.
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  [[BR]]''playback_dtmf'': (Default: {{{True}}})[[BR]]
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  If this boolean is set to {{{True}}}, both incoming and outgoing DTMF signals have their corresponding audio tones played back on the sound card.
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  This value can be read and set directly as an attribute at runtime.
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  [[BR]]''rtp_port_range'': (Default: (40000, 40100))[[BR]]
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  This tuple of two ints indicates the range to select UDP ports from when creating a new {{{RTPTransport}}} object, which is used to transport media.
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  It can be read and set directly as an attribute at runtime, but the ports of previously created {{{RTPTransport}}} objects remain unaffected.
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  [[BR]]''codecs'': (Default: {{{["speex", "G722", "PCMU", "PCMA", "iLBC", "GSM"]}}})[[BR]]
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  This list specifies the codecs to use for audio sessions and their preferred order.
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  It can be read and set directly as an attribute at runtime.
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  Note that this global option can be overridden by an argument passed to {{{AudioTransport.__init__()}}}.
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  The strings in this list is case insensitive.
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  [[BR]]''events'': (Default: <some sensible events>)[[BR]]
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  PJSIP needs a mapping between SIP SIMPLE event packages and content types.
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  This dictionary provides some default packages and their event types.
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  As an attribute, this value is read-only, but it can be changed at runtime using the {{{set_local_tls_port()}}} method.
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 '''start_cfg'''(''self'', '''enable_sound'''={{{True}}}, '''**kwargs''')::
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  This provides a [wiki:SipConfigurationAPI Configuration API] aware start method.
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  It will retrieve all the arguments that can be passed to {{{start()}}} from the configuration framework, unless they are overridden by the keyword arguments to this method.
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  Any argument that can be passed to {{{start()}}} may be specified, except for {{{auto_sound}}}.
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  [[BR]]''enable_sound'':[[BR]]
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  If this is set to {{{True}}}, the sound devices set up in the configuration framework will be started.
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  If it is {{{False}}}, the Dummy sound device will be used.
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 '''stop'''(''self'')::
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  Stop the PJSIP worker thread and unload all PJSIP libraries.
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  Note that after this all references to SIP core objects can no longer be used, these should be properly removed by the application itself before stopping the {{{Engine}}}.
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  Also note that, once stopped the {{{Engine}}} cannot be started again.
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  This method is automatically called when the Python interpreter exits.
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==== proxied attributes ====
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Besides all the proxied attributes described for the {{{__init__}}} method above, two other attributes are provided once the {{{Engine}}} has been started.
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 '''playback_devices'''::
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  This read-only attribute is a list of string, representing all audio playback devices on the system that can be used.
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  These device names can be passed as the {{{playback_device}}} argument of the {{{set_sound_devices()}}} method.
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 '''recording_devices'''::
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  This read-only attribute is a list of string, representing all audio recording devices on the system that can be used.
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  These device names can be passed as the {{{recording_device}}} argument of the {{{set_sound_devices()}}} method.
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 '''available_codecs'''::
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  A read-only list of codecs available in the core, regardless of the codecs configured through the {{{codecs}}} attribute.
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==== proxied methods ====
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 '''add_event'''(''self'', '''event''', '''accept_types''')::
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  Couple a certain event package to a list of content types.
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  Once added it cannot be removed or modified.
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 '''set_sound_devices'''(''self'', '''playback_device'''={{{None}}}, '''recording_device'''={{{None}}}, '''tail_length'''={{{None}}})::
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  Set and open the playback and recording device, using the specified echo cancellation tail length in milliseconds.
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  If no echo cancellation value is specified, either the value set while calling the {{{start()}}} method will be used or the default value will be used (see the documentation of this method).
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  A {{{tail_length}}} of 0 disables echo cancellation.
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  The device attributes need to be strings and should be obtained from the {{{playback_devices}}} and {{{recording_devices}}} attributes respectively.
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  Passing either of these as {{{None}}} means that PJSIP should select a sound device automatically.
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  If sound devices were already opened these will be closed first.
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 '''connect_audio_transport'''(''self'', '''transport''')::
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  Connect a started audio transport, in the form of a {{{AudioTransport}}} object, to the recording and playback audio devices and other connected audio transports.
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  This means that when more than one audio stream is connected they will form a conference.
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 '''disconnect_audio_transport'''(''self'', '''transport''')::
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  Disconnect a previously connected audio transport, in the form of a {{{AudioTransport}}} object.
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  Stopped audio streams are disconnected automatically.
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 '''detect_nat_type'''(''self'', '''stun_server_address''', '''stun_server_port'''=3478, '''user_data'''=None)::
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  Will start a series of STUN requests which detect the type of NAT this host is behind.
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  The {{{stun_server_address}}} parameter indicates the IP address or hostname of the STUN server to be used and {{{stun_server_port}}} specifies the remote UDP port to use.
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  When the type of NAT is detected, this will be reported back to the application by means of a {{{SIPEngineDetectedNATType}}} notification, including the user_data object passed with this method.
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 '''set_local_udp_port'''(''self'', '''value''')::
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  Update the {{{local_udp_port}}} attribute to the newly specified value.
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 '''set_local_tcp_port'''(''self'', '''value''')::
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  Update the {{{local_tcp_port}}} attribute to the newly specified value.
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 '''set_tls_options'''(''self'', '''local_port'''={{{None}}}, '''protocol'''="TLSv1", '''verify_server'''={{{False}}}, '''ca_file'''={{{None}}}, '''cert_file'''={{{None}}}, '''privkey_file'''={{{None}}}, '''timeout'''=1000):: 
340
  Calling this method will (re)start the TLS transport with the specified arguments, or stop it in the case that the '''local_port''' argument is set to {{{None}}}. 
341
  The semantics of the arguments are the same as on the {{{start()}}} method. 
342 1 Adrian Georgescu
 '''parse_sip_uri(''self'', '''uri_string''')::
343
  Will parse the provided SIP URI string using the PJSIP parsing capabilities and return a {{{SIPURI}}} object, or raise an exception if there was an error parsing the URI.
344
345
==== notifications ====
346
347 16 Ruud Klaver
Notifications sent by the {{{Engine}}} are notifications that are related to the {{{Engine}}} itself or unrelated to any SIP primitive object.
348 1 Adrian Georgescu
They are described here including the data attributes that is included with them.
349
350 29 Luci Stanescu
 '''SIPEngineWillStart'''::
351 16 Ruud Klaver
  This notification is sent when the {{{Engine}}} is about to start.
352
  [[BR]]''timestamp'':[[BR]]
353
  A {{{datetime.datetime}}} object indicating when the notification was sent.
354 29 Luci Stanescu
 '''SIPEngineDidStart'''::
355 16 Ruud Klaver
  This notification is sent when the {{{Engine}}} is has just been started.
356
  [[BR]]''timestamp'':[[BR]]
357
  A {{{datetime.datetime}}} object indicating when the notification was sent.
358 29 Luci Stanescu
 '''SIPEngineDidFail'''::
359 16 Ruud Klaver
  This notification is sent whenever the {{{Engine}}} has failed fatally and either cannot start or is about to stop.
360
  It is not recommended to call any methods on the {{{Engine}}} at this point.
361
  [[BR]]''timestamp'':[[BR]]
362
  A {{{datetime.datetime}}} object indicating when the notification was sent.
363 29 Luci Stanescu
 '''SIPEngineWillEnd'''::
364 16 Ruud Klaver
  This notification is sent when the {{{Engine}}} is about to stop because the application called the {{{stop()}}} method.
365
  Methods on the {{{Engine}}} can be called at this point, but anything that has a delayed result will probably not return any notification.
366
  [[BR]]''timestamp'':[[BR]]
367
  A {{{datetime.datetime}}} object indicating when the notification was sent.
368 29 Luci Stanescu
 '''SIPEngineDidEnd'''::
369 16 Ruud Klaver
  This notification is sent when the {{{Engine}}} was running and is now stopped, either because of failure or because the application requested it.
370
  [[BR]]''timestamp'':[[BR]]
371
  A {{{datetime.datetime}}} object indicating when the notification was sent.
372 29 Luci Stanescu
 '''SIPEngineLog'''::
373 1 Adrian Georgescu
  This notification is a wrapper for PJSIP logging messages.
374
  It can be used by the application to output PJSIP logging to somewhere meaningful, possibly doing filtering based on log level.
375
  [[BR]]''timestamp'':[[BR]]
376
  A {{{datetime.datetime}}} object representing the time when the log message was output by PJSIP.
377
  [[BR]]''sender'':[[BR]]
378
  The PJSIP module that originated this log message.
379
  [[BR]]''level'':[[BR]]
380
  The logging level of the message as an integer.
381
  Currently this is 1 through 5, 1 being the most critical.
382
  [[BR]]''message'':[[BR]]
383
  The actual log message.
384 29 Luci Stanescu
 '''SIPEngineSIPTrace'''::
385 1 Adrian Georgescu
  Will be sent only when the {{{do_siptrace}}} attribute of the {{{Engine}}} instance is set to {{{True}}}.
386
  The notification data attributes will contain the SIP messages as they are sent and received on the wire.
387
  [[BR]]''timestamp'':[[BR]]
388
  A {{{datetime.datetime}}} object indicating when the notification was sent.
389
  [[BR]]''received'':[[BR]]
390
  A boolean indicating if this message was sent from or received by PJSIP (i.e. the direction of the message).
391
  [[BR]]''source_ip'':[[BR]]
392
  The source IP address as a string.
393
  [[BR]]''source_port'':[[BR]]
394
  The source port of the message as an integer.
395
  [[BR]]''destination_ip'':[[BR]]
396
  The destination IP address as a string.
397
  [[BR]]''source_port'':[[BR]]
398
  The source port of the message as an integer.
399
  [[BR]]''data'':[[BR]]
400
  The contents of the message as a string.
401
402
> For received message the destination_ip and for sent messages the source_ip may not be reliable.
403
404 29 Luci Stanescu
 '''SIPEngineGotMessage'''::
405 1 Adrian Georgescu
  This notification is sent when there is an incoming {{{MESSAGE}}} request.
406
  Since this is a one-shot occurrence, it is not modeled as an object.
407
  [[BR]]''timestamp'':[[BR]]
408
  A {{{datetime.datetime}}} object indicating when the notification was sent.
409
  [[BR]]''to_uri'':[[BR]]
410
  The contents of the {{{To:}}} header of the received {{{MESSAGE}}} request represented as a {{{SIPURI}}} object.
411
  [[BR]]''from_uri'':[[BR]]
412
  The contents of the {{{From:}}} header of the received {{{MESSAGE}}} request represented as a {{{SIPURI}}} object.
413
  [[BR]]''content_type'':[[BR]]
414
  The first part of the {{{Content-Type:}}} header of the received {{{MESSAGE}}} request (before the {{{/}}}).
415
  [[BR]]''content_subtype'':[[BR]]
416
  The second part of the {{{Content-Type:}}} header of the received {{{MESSAGE}}} request (after the {{{/}}}).
417
  [[BR]]''body'':[[BR]]
418
  The body of the {{{MESSAGE}}} request.
419
420
> content_type and content_subtype should be combined in a single argument, also in other places where this occurs.
421
422 29 Luci Stanescu
 '''SIPEngineGotMessageResponse'''::
423 1 Adrian Georgescu
  When sending a {{{MESSAGE}}} through the {{{send_message}}} function, this notification will be sent whenever there is a final response to the sent {{{MESSAGE}}} request (which may be an internally generated timeout).
424
  [[BR]]''timestamp'':[[BR]]
425
  A {{{datetime.datetime}}} object indicating when the notification was sent.
426
  [[BR]]''to_uri'':[[BR]]
427
  The original {{{to_uri}}} parameter used when calling the {{{send_message}}} function.
428
  [[BR]]''code'':[[BR]]
429
  The status code of the response as integer.
430
  [[BR]]''reason'':[[BR]]
431
  The reason text of the response.
432 29 Luci Stanescu
 '''SIPEngineDetectedNATType'''::
433 1 Adrian Georgescu
  This notification is sent some time after the application request the NAT type this host behind to be detected using a STUN server.
434
  Note that there is no way to associate a request to do this with a notification, although every call to the {{{detect_nat_type()}}} method will generate exactly one notification.
435
  [[BR]]''timestamp'':[[BR]]
436
  A {{{datetime.datetime}}} object indicating when the notification was sent.
437
  [[BR]]''succeeded'':[[BR]]
438
  A boolean indicating if the NAT detection succeeded.
439 38 Ruud Klaver
  [[BR]]''user_data'':[[BR]]
440
  The {{{user_data}}} argument passed while calling the {{{detect_nat_type()}}} method.
441
  This can be any object and could be used for matching requests to responses.
442 1 Adrian Georgescu
  [[BR]]''nat_type'':[[BR]]
443
  A string describing the type of NAT found.
444
  This value is only present if NAT detection succeeded.
445
  [[BR]]''error'':[[BR]]
446
  A string indicating the error that occurred while attempting to detect the type of NAT.
447
  This value only present if NAT detection did not succeed.
448 29 Luci Stanescu
 '''SIPEngineGotException'''::
449 16 Ruud Klaver
  This notification is sent whenever there is an unexpected exception within the PJSIP working thread.
450
  The application should show the traceback to the user somehow.
451 29 Luci Stanescu
  An exception need not be fatal, but if it is it will be followed by a '''SIPEngineDidFail''' notification.
452 1 Adrian Georgescu
  [[BR]]''timestamp'':[[BR]]
453
  A {{{datetime.datetime}}} object indicating when the notification was sent.
454
  [[BR]]''traceback'':[[BR]]
455
  A string containing the traceback of the exception.
456
  In general this should be printed on the console.
457
458
=== send_message ===
459
460
> In the future, this function will probably be implemented as a class or as a method of PJSIPUA.
461
462
The only function of the API is {{{send_message}}}, which sends a {{{MESSAGE}}} request containing a body to the specified SIP URI.
463
As described above, a {{{message_response}}} is generated when the final response is received.
464
Until the final response is received it is not allowed to send a new {{{MESSAGE}}} request to the {{{to_uri}}} used, a {{{SIPCoreError}}} exception will be thrown if the application tries this.
465
It has the following format and arguments:
466
{{{
467 22 Ruud Klaver
send_message(credentials, to_uri, content_type, content_subtype, body, route)
468 1 Adrian Georgescu
}}}
469
 '''credentials'''::
470
  Credentials to be used if authentication is needed at the proxy in the form of a {{{Credentials}}} object.
471
  This object also contains the From URI.
472
 '''to_uri'''::
473
  The SIP URI to send the {{{MESSAGE}}} request to in the form of a {{{SIPURI}}} object.
474
 '''content_type'''::
475
  The first part of the {{{Content-Type:}}} header (before the {{{/}}}).
476
 '''content_subtype'''::
477
  The first part of the {{{Content-Type:}}} header (before the {{{/}}}).
478
 '''body'''::
479
  The body of the {{{MESSAGE}}} request that is to be sent.
480
 '''route'''::
481
  This represents the first host to send the request to in the form of a {{{Route}}} object.
482
483
> The exception thrown when the application tries to send a MESSAGE too fast should be customized.
484
> In this way the application may keep a queue of MESSAGE requests and send the next one when the last one was answered.
485
486
=== SIPURI ===
487
488
This is a helper object for representing a SIP URI.
489
This object needs to be used whenever a SIP URI should be specified to the SIP core.
490
It supports comparison to other {{{SIPURI}}} objects using the == and != expressions.
491
As all of its attributes are set by the {{{__init__}}} method, the individual attributes will not be documented here.
492
493
==== methods ====
494
495 23 Ruud Klaver
 '''!__init!__'''(''self'', '''host''', '''user'''={{{None}}}, '''port'''={{{None}}}, '''display'''={{{None}}}, '''secure'''={{{False}}}, '''parameters'''={{{None}}}, '''headers'''={{{None}}})::
496 1 Adrian Georgescu
  Creates the SIPURI object with the specified parameters as attributes.
497
  Each of these attributes can be accessed and changed on the object once instanced.
498
  {{{host}}} is the only mandatory attribute.
499
  [[BR]]''host'':[[BR]]
500
  The host part of the SIP URI as a string.
501
  [[BR]]''user'':[[BR]]
502
  The username part of the SIP URI as a string, or None if not set.
503
  [[BR]]''port'':[[BR]]
504
  The port part of the SIP URI as an int, or None or 0 if not set.
505
  [[BR]]''display'':[[BR]]
506
  The optional display name of the SIP URI as a string, or None if not set.
507
  [[BR]]''secure'':[[BR]]
508
  A boolean indicating whether this is a SIP or SIPS URI, the latter being indicated by a value of {{{True}}}.
509
  [[BR]]''parameters'':[[BR]]
510
  The URI parameters. represented by a dictionary.
511
  [[BR]]''headers'':[[BR]]
512
  The URI headers, represented by a dictionary.
513
 '''!__str!__'''(''self'')::
514
  The special Python method to represent this object as a string, the output is the properly formatted SIP URI.
515
 '''copy'''(''self'')::
516
  Returns a copy of the {{{SIPURI}}} object.
517
518
=== Credentials ===
519
520
This object represents authentication credentials for a particular SIP account.
521
These should be included whenever creating a SIP primitive object that originates SIP requests.
522
As with the {{{SIPURI}}} object, the attributes of this object are the same as the arguments to the {{{__init__}}} method.
523
524
==== methods ====
525
526 33 Ruud Klaver
 '''!__init!__'''(''self'', '''uri''', '''password'''={{{None}}})::
527 1 Adrian Georgescu
  Creates the Credentials object with the specified parameters as attributes.
528
  Each of these attributes can be accessed and changed on the object once instanced.
529
  [[BR]]''uri'':[[BR]]
530
  A {{{SIPURI}}} object representing the account for which these are the credentials.
531
  [[BR]]''password'':[[BR]]
532
  The password for this SIP account as a string.
533
  If a password is not needed, for example when sending SIP messages without a proxy, this can be {{{None}}}.
534
 '''copy'''(''self'')::
535
  Returns a copy of the {{{Credentials}}} object.
536
537
=== Route ===
538
539 22 Ruud Klaver
This class provides a means for the application using the SIP core to set the destination address, port and transport for a particular request, i.e. the outbound proxy.
540 33 Ruud Klaver
As it is the application's responsibility to look this up and pass it as an argument for every SIP primitive class it creates.
541 22 Ruud Klaver
The contents of the {{{Route}}} object will be placed in the {{{Route}}} header of the request.
542 1 Adrian Georgescu
As with the {{{SIPURI}}} object, the attributes of this object are the same as the arguments to the {{{__init__}}} method.
543
544
==== methods ====
545
546 22 Ruud Klaver
 '''!__init!__'''(''self'', '''address''', '''port'''=5060, '''transport'''={{{None}}})::
547 1 Adrian Georgescu
  Creates the Route object with the specified parameters as attributes.
548
  Each of these attributes can be accessed on the object once instanced.
549 22 Ruud Klaver
  [[BR]]''address'':[[BR]]
550
  The IPv4 or IPv6 address that the request in question should be sent to as a string.
551 1 Adrian Georgescu
  [[BR]]''port'':[[BR]]
552 22 Ruud Klaver
  The port to send the requests to, represented as an int.
553 1 Adrian Georgescu
  [[BR]]''transport'':[[BR]]
554 35 Ruud Klaver
  The transport to use, this can be a string of either "udp", "tcp" or "tls" (case insensitive), depending on what transports are enabled on the {{{PJSIPUA}}} object.
555 1 Adrian Georgescu
 '''copy'''(''self'')::
556
  Returns a copy of the {{{Route}}} object.
557
558 22 Ruud Klaver
> IPv6 transports are not supported yet.
559
560 1 Adrian Georgescu
=== Registration ===
561
562
A {{{Registration}}} object represents a SIP endpoint's registration for a particular SIP account using the {{{REGISTER}}} method at its SIP registrar.
563
In effect, the SIP endpoint can send a {{{REGISTER}}} to the registrar to indicate that it is a valid endpoint for the specified SIP account.
564
After the {{{REGISTER}}} request is successfully received, the SIP proxy will be able to contact the SIP endpoint whenever there is an {{{INVITE}}} or other relevant request sent to the SIP account.
565
In short, unless a SIP endpoint is registered, it cannot be contacted.
566
Internally it uses a state machine to represent the registration process.
567
The states of this state machine can be seen in the following diagram:
568
569 2 Adrian Georgescu
[[Image(sipsimple-registration-state-machine.png, nolink)]]
570 1 Adrian Georgescu
571
State changes are triggered by the following events:
572
 1. The initial state.
573
 2. User requests in the form of the {{{register()}}} and {{{unregister()}}} methods.
574
 3. A final response for a {{{REGISTER}}} is received from the network.
575
 4. The refresh timer expires.
576
The state machine of a {{{Registration}}} object has a queue, which means that for example when the object is in the {{{registering}}} state and the application calls the {{{unregister()}}} method, the object will unregister itself once a final response has been received for the registering {{{REGISTER}}}.
577
578
> The implementation of this object needs to be revised.
579
580
==== attributes ====
581
582
 '''state'''::
583
  Indicates which state the internal state machine is in.
584
  This is one of {{{unregistered}}}, {{{registering}}}, {{{registered}}}, {{{unregistering}}}.
585
 '''credentials'''::
586
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object, including the SIP account for which we want to register.
587
  This attribute is set on object instantiation and is read-only.
588
 '''route'''::
589
  The outbound proxy to use in the form of a {{{Route}}} object.
590
  This attribute is set on object instantiation and is read-only.
591
 '''extra_headers'''::
592
  A dictionary of extra headers that should be added to any outgoing {{{REGISTER}}} request.
593
  This attribute is set on object instantiation and is read-only.
594
 '''expires'''::
595
  The amount of seconds to request the registration for, i.e. the value that should be put in the {{{Expires}}} header.
596
  This attribute is set on object instantiation and can be modified at runtime.
597
  A new value will be used during the next refreshing {{{REGISTER}}}.
598
 '''expires_received'''::
599
  The amount of seconds the last successful {{{REGISTER}}} is valid for.
600
  This value is read-only.
601
602
==== methods ====
603
604 33 Ruud Klaver
 '''!__init!__'''(''self'', '''credentials''', '''route''', '''expires'''=300, '''contact_uri'''={{{None}}}, '''extra_headers'''={{{None}}})::
605 1 Adrian Georgescu
  Creates a new {{{Registration}}} object.
606
  [[BR]]''credentials'':[[BR]]
607 23 Ruud Klaver
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object, including the SIP account for which we want to register.
608 1 Adrian Georgescu
  [[BR]]''route'':[[BR]]
609
  The outbound proxy to use in the form of a {{{Route}}} object
610
  [[BR]]''expires'':[[BR]]
611
  The amount of seconds to request the registration for, i.e. the value that should be put in the {{{Expires}}} header.
612 33 Ruud Klaver
  [[BR]]''contact_uri'':[[BR]]
613
  The Contact URI that should be used to register as a {{{SIPURI}}} object.
614
  If this is {{{None}}}, a Contact URI will be generated.
615 1 Adrian Georgescu
  [[BR]]''extra_headers'':[[BR]]
616
  A dictionary of extra headers that should be added to any outgoing request.
617
 '''register'''(''self'')::
618
  Whenever the object is ready to send a {{{REGISTER}}} for the specified SIP account it will do so, moving the state machine into the {{{registering}}} state.
619
  If the {{{REGISTER}}} succeeds the state machines moves into the {{{registered}}} state and the object will automatically refresh the registration before it expires (again moving into the {{{registering}}} state).
620
  If it is unsuccessful the state machine reverts to the {{{unregistered}}} state.
621
 '''unregister'''(''self'')::
622
  If the object is registered it will send a {{{REGISTER}}} with an {{{Expires}}} header of 0, effectively unregistering the contact from the SIP account.
623
624
==== notifications ====
625
626 29 Luci Stanescu
 '''SIPRegistrationChangedState'''::
627 1 Adrian Georgescu
  This notification will be sent every time the internal state machine of a {{{Registeration}}} object changes state.
628
  [[BR]]''timestamp'':[[BR]]
629
  A {{{datetime.datetime}}} object indicating when the notification was sent.
630
  [[BR]]''state'':[[BR]]
631
  The new state the state machine moved into.
632
  [[BR]]''code'': (only on SIP response triggered state change)[[BR]]
633
  The status code of the response that caused the state change.
634
  This may be internally generated by PJSIP, e.g. on timeout.
635
  [[BR]]''reason'': (only on SIP response triggered state change)[[BR]]
636
  The status text of the response that caused the state change.
637
  This may be internally generated by PJSIP, e.g. on timeout.
638
  [[BR]]''contact_uri'': (only on successful registration)[[BR]]
639
  The {{{Contact}}} URI used to register as a string.
640
  [[BR]]''expires'': (only on successful registration)[[BR]]
641
  How many seconds until this registration expires.
642
  [[BR]]''contact_uri_list'': (only on successful registration)[[BR]]
643
  The full list of {{{Contact}}} URIs registered for this SIP account, including the one just performed by this object.
644
645
==== example code ====
646
647
This code shows how to make a {{{Registration}}} object for a particular SIP account and have it register.
648
649
{{{
650
accnt = SIPURI(user="username", host="domain.com")
651
creds = Credentials(accnt, "password")
652 22 Ruud Klaver
reg = Registration(creds, Route("1.2.3.4"))
653 1 Adrian Georgescu
reg.register()
654
}}}
655
656 29 Luci Stanescu
After executing this code, the application will have to wait until the {{{Registration}}} object sends the {{{SIPRegistrationChangedState}}} notification, which includes the result of the requested operation.
657 1 Adrian Georgescu
658
=== Publication ===
659
660
Publication of SIP events is an Internet standard published at [http://tools.ietf.org/html/rfc3903 RFC 3903]. 
661
PUBLISH is similar to REGISTER in that it allows a user to create, modify, and remove state in another entity which manages this state on behalf of the user.
662
663
A {{{Publication}}} object represents publishing some content for a particular SIP account and a particular event type at the SIP presence agent through a {{{PUBLISH}}} request.
664
The state machine of this object is very similar to that of the {{{Registration}}} object, as can be seen in the following diagram:
665
666 2 Adrian Georgescu
[[Image(sipsimple-publication-state-machine.png, nolink)]]
667 1 Adrian Georgescu
668
State changes are triggered by the following events:
669
 1. The initial state.
670
 2. User requests in the form of the {{{publish()}}} and {{{unpublish()}}} methods.
671
 3. A final response for a {{{PUBLISH}}} is received from the network.
672
 4. The refresh timer expires.
673
Like the {{{Registration}}} state machine, the {{{Publication}}} state machine is queued.
674
This means that the application may call either the {{{publish()}}} or {{{unpublish()}}} method at any point in the state machine.
675
The object will perform the requested action when ready.
676
When some content is published and the application wants to update the contents, it can directly call the {{{publish()}}} method with the new content.
677
678
> The implementation of this object needs to be revised.
679
680
> If this object is re-used after unpublication, the etag value is not reset by PJSIP.
681
> This needs to be fixed.
682
683
==== attributes ====
684
685
 '''state'''::
686
  Indicates which state the internal state machine is in.
687
  This is one of {{{unpublished}}}, {{{publishing}}}, {{{published}}}, {{{unpublishing}}}.
688
 '''credentials'''::
689
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object, including the SIP account for which we want to register.
690
  This attribute is set on object instantiation and is read-only.
691
 '''route'''::
692
  The outbound proxy to use in the form of a {{{Route}}} object.
693
  This attribute is set on object instantiation and is read-only.
694
 '''extra_headers'''::
695
  A dictionary of extra headers that should be added to any outgoing {{{PUBLISH}}} request.
696
  This attribute is set on object instantiation and is read-only.
697
 '''expires'''::
698
  The amount of seconds the contents of the {{{PUBLISH}}} are valid, i.e. the value that should be put in the {{{Expires}}} header.
699
  This attribute is set on object instantiation and can be modified at runtime.
700
  A new value will be used during the next refreshing {{{PUBLISH}}}.
701
702
==== methods ====
703
704 23 Ruud Klaver
 '''!__init!__'''(''self'', '''credentials''', '''event''', '''route''', '''expires'''=300, '''extra_headers'''={{{None}}})::
705 1 Adrian Georgescu
  Creates a new {{{Publication}}} object.
706
  [[BR]]''credentials'':[[BR]]
707
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object, including the SIP account that we want to publish the content for.
708
  [[BR]]''event'':[[BR]]
709
  The event package for which we want to publish content.
710
  [[BR]]''route'':[[BR]]
711
  The outbound proxy to use in the form of a {{{Route}}} object
712
  [[BR]]''expires'':[[BR]]
713
  The amount of seconds the contents of the {{{PUBLISH}}} are valid, i.e. the value that should be put in the {{{Expires}}} header.
714
  [[BR]]''extra_headers'':[[BR]]
715
  A dictionary of extra headers that should be added to any outgoing {{{PUBLISH}}} request.
716
 '''publish'''(''self'', '''content_type''', '''content_subtype''', '''body''')::
717
  Whenever the object is ready to send a {{{PUBLISH}}} for the specified SIP account it will do so, moving the state machine into the {{{publishing}}} state.
718
  If the {{{PUBLISH}}} succeeds the state machines moves into the {{{published}}} state and the object will automatically refresh the publication before it expires (again moving into the {{{publishing}}} state).
719
  If it is unsuccessful the state machine reverts to the {{{unregistered}}} state.
720
  [[BR]]''content_type'':[[BR]]
721
  The first part of the {{{Content-Type:}}} header of the {{{PUBLISH}}} request that is to be sent (before the {{{/}}}), indicating the type of content of the body.
722
  [[BR]]''content_subtype'':[[BR]]
723
  The second part of the {{{Content-Type:}}} header of the {{{PUBLISH}}} request that is to be sent (after the {{{/}}}), indicating the type of content of the body.
724
 '''unpublish'''(''self'')::
725
  If the object has some content published, it will send a {{{PUBLISH}}} with an {{{Expires}}} header of 0, effectively unpublishing the content for the specified SIP account.
726
727
==== notifications ====
728
729 29 Luci Stanescu
 '''SIPPublicationChangedState'''::
730 1 Adrian Georgescu
  This notification will be sent every time the internal state machine of a {{{Publication}}} object changes state.
731
  [[BR]]''timestamp'':[[BR]]
732
  A {{{datetime.datetime}}} object indicating when the notification was sent.
733
  [[BR]]''state'':[[BR]]
734
  The new state the state machine moved into.
735
  [[BR]]''code'': (only on SIP response triggered state change)[[BR]]
736
  The status code of the response that caused the state change.
737
  This may be internally generated by PJSIP, e.g. on timeout.
738
  [[BR]]''reason'': (only on SIP response triggered state change)[[BR]]
739
  The status text of the response that caused the state change.
740
  This may be internally generated by PJSIP, e.g. on timeout.
741
742
> On init the event package is not checked with known event packages, this is only used for {{{Subscription}}} objects.
743
> This could be done for the sake of consistency.
744
745
==== example code ====
746
747
This code shows how to make a {{{Publication}}} object for a particular SIP account and have it attempt to publish its presence.
748
749
{{{
750
accnt = SIPURI(user="username", host="domain.com")
751
creds = Credentials(accnt, "password")
752 22 Ruud Klaver
pub = Publication(creds, "presence", Route("1.2.3.4"))
753 1 Adrian Georgescu
pub.publish("text", "plain", "hi!")
754
}}}
755
756 29 Luci Stanescu
After executing this code, the application will have to wait until the {{{Publication}}} object sends the {{{SIPPublicationChangedState}}} notification, which includes the result of the requested operation.
757 1 Adrian Georgescu
In this case the presence agent will most likely reply with "Unsupported media type", as the code tries to submit Content-Type which is not valid for the presence event package.
758
759
=== Subscription ===
760
761
Subscription and notifications for SIP events is an Internet standard published at [http://tools.ietf.org/html/rfc3856 RFC 3856].
762
763
This SIP primitive class represents a subscription to a specific event type of a particular SIP URI.
764
This means that the application should instance this class for each combination of event and SIP URI that it wishes to subscribe to.
765
The event type and the content types that are acceptable for it need to be registered first, either through the {{{init_options}}} attribute of {{{Engine}}} (before starting it), or by calling the {{{add_event()}}} method of the {{{Engine}}} instance.
766
Whenever a {{{NOTIFY}}} is received, the application will receive the {{{Subcription_notify}}} event.
767
768
Internally a {{{Subscription}}} object has a state machine, which reflects the state of the subscription.
769
It is a direct mirror of the state machine of the underlying {{{pjsip_evsub}}} object, whose possible states are at least {{{NULL}}}, {{{SENT}}}, {{{ACCEPTED}}}, {{{PENDING}}}, {{{ACTIVE}}} or {{{TERMINATED}}}.
770
The last three states are directly copied from the contents of the {{{Subscription-State}}} header of the received {{{NOTIFY}}} request.
771
Also, the state can be an arbitrary string if the contents of the {{{Subscription-State}}} header are not one of the three above.
772
The state machine of the {{{Subscription}}} object is not queued, meaning that if an action is performed that is not allowed in the state the state machine is currently in, an exception will be raised.
773
774
> The implementation of this object needs to be revised.
775
776
==== attributes ====
777
778
 '''state'''::
779
  Indicates which state the internal state machine is in.
780
  See the previous section for a list of states the state machine can be in.
781
 '''credentials'''::
782
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object.
783
  The {{{SIPURI}}} object included in the {{{Credentials}}} object is used for the {{{From}}} header of the {{{SUBSCRIBE}}} request.
784
  This attribute is set on object instantiation and is read-only.
785
 '''to_uri'''::
786
  The SIP URI we want to subscribe to a particular event of represented as a {{{SIPURI}}} object.
787
  This attribute is set on object instantiation and is read-only.
788
 '''event'''::
789
  The event package to which we want to subscribe at the given SIP URI.
790
  This attribute is set on object instantiation and is read-only.
791
 '''route'''::
792
  The outbound proxy to use in the form of a {{{Route}}} object.
793
  This attribute is set on object instantiation and is read-only.
794
 '''expires'''::
795
  The expires value that was requested on object instantiation.
796
  This attribute is read-only.
797
 '''extra_headers'''::
798
  A dictionary of extra headers that should be added to any outgoing {{{SUBSCRIBE}}} request.
799
  This attribute is set on object instantiation and is read-only.
800
801
==== methods ====
802
803 33 Ruud Klaver
 '''!__init!__'''(''self'', '''credentials''', '''to_uri''', '''event''', '''route''', '''expires'''=300, '''contact_uri'''={{{None}}}, '''extra_headers'''={{{None}}})::
804 1 Adrian Georgescu
  Creates a new {{{Subscription}}} object.
805
  [[BR]]''credentials'':[[BR]]
806
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object.
807
  The {{{SIPURI}}} object included in the {{{Credentials}}} object is used for the {{{From}}} header of the {{{SUBSCRIBE}}} request.
808
  [[BR]]''to_uri'':[[BR]]
809
  The SIP URI we want to subscribe to a particular event of represented as a {{{SIPURI}}} object.
810
  [[BR]]''event'':[[BR]]
811
  The event package to which we want to subscribe at the given SIP URI.
812
  [[BR]]''route'':[[BR]]
813
  The outbound proxy to use in the form of a {{{Route}}} object
814
  [[BR]]''expires'':[[BR]]
815
  The amount of seconds  the {{{SUBSCRIBE}}} is valid, i.e. the value that should be put in the {{{Expires}}} header.
816 33 Ruud Klaver
  [[BR]]''contact_uri'':[[BR]]
817
  The Contact URI that should be used in the {{{SUBSCRIBE}}} requests.
818
  If this is {{{None}}}, a Contact URI will be generated internally.
819 1 Adrian Georgescu
  [[BR]]''extra_headers'':[[BR]]
820
  A dictionary of extra headers that should be added to any outgoing {{{SUBSCRIBE}}} request.
821
 '''subscribe'''(''self'')::
822
  This method activates the subscription and causes the object to send a {{{SUBSCRIBE}}} request to the relevant presence agent.
823
  It can only be used when the object is in the {{{TERMINATED}}} state.
824
 '''unsubscribe'''(''self'')::
825
  This method causes the object to send a {{{SUBSCRIBE}}} request with an {{{Expires}}} value of 0, effectively canceling the active subscription.
826
  It can be used when the object is not in the {{{TERMINATED}}} state.
827
828
==== notifications ====
829
830 29 Luci Stanescu
 '''SIPSubscriptionChangedState'''::
831 1 Adrian Georgescu
  This notification will be sent every time the internal state machine of a {{{Subscription}}} object changes state.
832
  [[BR]]''timestamp'':[[BR]]
833
  A {{{datetime.datetime}}} object indicating when the notification was sent.
834
  [[BR]]''state'':[[BR]]
835
  The new state the state machine moved into.
836
  [[BR]]''code'': (only on SIP response triggered state change)[[BR]]
837
  The status code of the response that caused the state change.
838
  This may be internally generated by PJSIP, e.g. on timeout.
839
  [[BR]]''reason'': (only on SIP response triggered state change)[[BR]]
840
  The status text of the response that caused the state change.
841
  This may be internally generated by PJSIP, e.g. on timeout.
842 29 Luci Stanescu
 '''SIPSubscriptionGotNotify'''::
843 1 Adrian Georgescu
  This notification will be sent when a {{{NOTIFY}}} is received that corresponds to a particular {{{Subscription}}} object.
844
  Note that this notification will not be sent when a {{{NOTIFY}}} with an empty body is received.
845
  [[BR]]''timestamp'':[[BR]]
846
  A {{{datetime.datetime}}} object indicating when the notification was sent.
847
  [[BR]]''content_type'':[[BR]]
848
  The first part of the {{{Content-Type:}}} header of the received {{{NOTIFY}}} request (before the {{{/}}}), indicating the type of the body.
849
  [[BR]]''content_subtype'':[[BR]]
850
  The second part of the {{{Content-Type:}}} header of the received {{{NOTIFY}}} request (after the {{{/}}}), indicating the type of the body.
851
  [[BR]]''body'':[[BR]]
852
  The body of the {{{NOTIFY}}} request.
853
854
==== example code ====
855
856
This code shows how to make a {{{Subscription}}} object that subscribes to the presence of another SIP account.
857
858
{{{
859
accnt = SIPURI(user="watcher", host="domain.com")
860
creds = Credentials(accnt, "password")
861
to_uri = SIPURI(user="watched", host="domain.com")
862 22 Ruud Klaver
sub = Subscription(creds, to_uri, "presence", Route("1.2.3.4"))
863 1 Adrian Georgescu
sub.subscribe()
864
}}}
865
866 29 Luci Stanescu
After executing this code, the application will have to wait until the {{{Subscription}}} object sends the {{{SIPSubscriptionChangedState}}} notification, which includes the result of the requested operation.
867
Independently of this, the object sends a {{{SIPSubscriptionGotNotify}}} notification anytime it receives a {{{NOTIFY}}} request for this subscription, as long as the subscription is active.
868 1 Adrian Georgescu
869
=== Invitation ===
870
871
The {{{Invitation}}} class represents an {{{INVITE}}} session, which governs a complete session of media exchange between two SIP endpoints from start to finish.
872
It is implemented to be agnostic to the media stream or streams negotiated, which is achieved by using the {{{SDPSession}}} class and its companion classes, which directly represents the parsed SDP.
873
The {{{Invitation}}} class represents both incoming and outgoing sessions.
874
875
The state machine contained in each {{{Invitation}}} object is based on the one used by the underlying PJSIP [http://www.pjsip.org/pjsip/docs/html/group__PJSIP__INV.htm pjsip_inv_session] object.
876
In order to represent re-{{{INVITE}}}s and user-requested disconnections, three more states have been added to this state machine.
877
The progression through this state machine is fairly linear and is dependent on whether this is an incoming or an outgoing session.
878
State changes are triggered either by incoming or by outgoing SIP requests and responses.
879
The states and the transitions between them are shown in the following diagram:
880
881
[[Image(sipsimple-core-invite-state-machine.png, nolink)]]
882
883
The state changes of this machine are triggered by the following:
884
 1. An {{{Invitation}}} object is newly created, either by the application for an outgoing session, or by the core for an incoming session.
885
 2. The application requested an outgoing session by calling the {{{send_invite()}}} method and and initial {{{INVITE}}} request is sent.
886
 3. A new incoming session is received by the core.
887
    The application should look out for state change to this state in order to be notified of new incoming sessions.
888
 4. A provisional response (1xx) is received from the remove party.
889
 5. A provisional response (1xx) is sent to the remote party, after the application called the {{{respond_to_invite_provisionally()}}} method.
890
 6. A positive final response (2xx) is received from the remote party.
891
 7. A positive final response (2xx) is sent to the remote party, after the application called the {{{accept_invite()}}} method.
892
 8. A positive final response (2xx) is sent or received, depending on the orientation of the session.
893
 9. An {{{ACK}}} is sent or received, depending on the orientation of the session.
894
    If the {{{ACK}}} is sent from the local to the remote party, it is initiated by PJSIP, not by a call from the application.
895
 10. The local party sent a re-{{{INVITE}}} to the remote party by calling the {{{send_reinvite()}}} method.
896
 11. The remote party has sent a final response to the re-{{{INVITE}}}.
897
 12. The remote party has sent a re-{{{INVITE}}}.
898
 13. The local party has responded to the re-{{{INVITE}}} by calling the {{{respond_to_reinvite()}}} method.
899
 14. The application requests that the session ends by calling the {{{disconnect()}}} method.
900
 15. A response is received from the remote party to whichever message was sent by the local party to end the session.
901
 16. A message is received from the remote party which ends the session.
902
903 29 Luci Stanescu
The application is notified of a state change in either state machine through the {{{SIPInvitationChangedState}}} notification, which has as data the current and previous states.
904 1 Adrian Georgescu
If the event is triggered by and incoming message, extensive data about that message, such as method/code, headers and body, is also included with the notification.
905
The application should compare the previous and current states and perform the appropriate action.
906
907 29 Luci Stanescu
An {{{Invitiation}}} object also emits the {{{SIPInvitationGotSDPUpdate}}} notification, which indicates that SDP negotiation between the two parties has been completed.
908 1 Adrian Georgescu
This will occur (at least) once during the initial session negotiation steps, during re-{{{INVITE}}}s in both directions and whenever an {{{UPDATE}}} request is received.
909
In the last case, the {{{Invitation}}} object will automatically include the current local SDP in the response.
910
911
==== attributes ====
912
913
 '''state'''::
914
  The state the {{{Invitation}}} state machine is currently in.
915
  See the diagram above for possible states.
916
  This attribute is read-only.
917
 '''is_outgoing'''::
918
  Boolean indicating if the original {{{INVITE}}} was outgoing, or incoming if set to {{{False}}}.
919
 '''credentials'''::
920
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object.
921
  If this {{{Invitation}}} object represents an incoming {{{INVITE}}} session this attribute will be {{{None}}}.
922
  This attribute is set on object instantiation and is read-only.
923
 '''caller_uri'''::
924
  The SIP URI of the caller represented by a {{{SIPURI}}} object.
925
  If this is in an outgoing {{{INVITE}}} session, the caller_uri is taken from the supplied {{{Credentials}}} object.
926
  Otherwise the URI is taken from the {{{From:}}} header of the initial {{{INVITE}}}.
927
  This attribute is set on object instantiation and is read-only.
928
 '''callee_uri'''::
929
  The SIP URI of the callee represented by a {{{SIPURI}}} object.
930
  If this is an outgoing {{{INVITE}}} session, this is the callee_uri from the !__init!__ method.
931
  Otherwise the URI is taken from the {{{To:}}} header of the initial {{{INVITE}}}.
932
  This attribute is set on object instantiation and is read-only.
933
 '''local_uri'''::
934
  The local SIP URI used in this session.
935
  If the original {{{INVITE}}} was incoming, this is the same as {{{callee_uri}}}, otherwise it will be the same as {{{caller_uri}}}.
936
 '''remote_uri'''::
937
  The SIP URI of the remote party in this session.
938
  If the original {{{INVITE}}} was incoming, this is the same as {{{caller_uri}}}, otherwise it will be the same as {{{callee_uri}}}.
939
 '''route'''::
940
  The outbound proxy that was requested to be used in the form of a {{{Route}}} object, including the desired transport.
941
  If this {{{Invitation}}} object represents an incoming {{{INVITE}}} session this attribute will always be {{{None}}}.
942
  This attribute is set on object instantiation and is read-only.
943
 '''call_id'''::
944
  The call ID of the {{{INVITE}}} session as a read-only string.
945
  In the {{{NULL}}} and {{{DISCONNECTED}}} states, this attribute is {{{None}}}.
946 33 Ruud Klaver
 '''transport'''::
947
  A string indicating the transport used for the application.
948
  This can be "udp", "tcp" or "tls".
949
 '''local_contact_uri'''::
950
  The Contact URI that the local side provided to the remote side within this {{{INVITE}}} session as a {{{SIPURI}}} object.
951 1 Adrian Georgescu
952
==== methods ====
953
954 33 Ruud Klaver
 '''!__init!__'''(''self'', '''credentials''', '''callee_uri''', '''route''', '''contact_uri'''={{{None}}})::
955 1 Adrian Georgescu
  Creates a new {{{Invitation}}} object for an outgoing session.
956
  [[BR]]''credentials'':[[BR]]
957 22 Ruud Klaver
  The SIP credentials needed to authenticate at the SIP proxy in the form of a {{{Credentials}}} object.
958 1 Adrian Georgescu
  The {{{SIPURI}}} object included in the {{{Credentials}}} object is used for the {{{From}}} header of the {{{INVITE}}} request.
959
  [[BR]]''callee_uri'':[[BR]]
960
  The SIP URI we want to send the {{{INVITE}}} to, represented as a {{{SIPURI}}} object.
961
  [[BR]]''route'':[[BR]]
962
  The outbound proxy to use in the form of a {{{Route}}} object.
963
  This includes the desired transport to use.
964 33 Ruud Klaver
  [[BR]]''contact_uri'':[[BR]]
965
  The Contact URI to include in the {{{INVITE}}} request, a {{{SIPURI}}} object.
966
  If this is {{{None}}}, a Contact URI will be internally generated.
967 1 Adrian Georgescu
 '''get_active_local_sdp'''(''self'')::
968
  Returns a new {{{SDPSession}}} object representing the currently active local SDP.
969
  If no SDP was negotiated yet, this returns {{{None}}}.
970
 '''get_active_remote_sdp'''(''self'')::
971
  Returns a new {{{SDPSession}}} object representing the currently active local SDP.
972
  If no SDP was negotiated yet, this returns {{{None}}}.
973
 '''get_offered_local_sdp'''(''self'')::
974
  Returns a new {{{SDPSession}}} object representing the currently proposed local SDP.
975
  If no local offered SDP has been set, this returns {{{None}}}.
976
 '''set_offered_local_sdp'''(''self'', '''local_sdp''')::
977
  Sets the offered local SDP, either for an initial {{{INVITE}}} or re-{{{INVITE}}}, or as an SDP answer in response to an initial {{{INVITE}}} or re-{{{INVITE}}}.
978
  [[BR]]''local_sdp'':[[BR]]
979
  The SDP to send as offer or answer to the remote party.
980
 '''get_offered_remote_sdp'''(''self'')::
981
  Returns a new {{{SDPSession}}} object representing the currently proposed remote SDP.
982
  If no remote SDP has been offered in the current state, this returns {{{None}}}.
983
 '''send_invite'''(''self'', '''extra_headers'''={{{None}}})::
984
  This tries to move the state machine into the {{{CALLING}}} state by sending the initial {{{INVITE}}} request.
985
  It may only be called from the {{{NULL}}} state on an outgoing {{{Invitation}}} object.
986
  [[BR]]''extra_headers'':[[BR]]
987
  Any extra headers that should be included in the {{{INVITE}}} request in the form of a dict.
988
 '''respond_to_invite_provisionally'''(''self'', '''response_code'''=180, '''extra_headers'''={{{None}}})::
989
  This tries to move the state machine into the {{{EARLY}}} state by sending a provisional response to the initial {{{INVITE}}}.
990
  It may only be called from the {{{INCOMING}}} state on an incoming {{{Invitation}}} object.
991
  [[BR]]''response_code'':[[BR]]
992
  The code of the provisional response to use as an int.
993
  This should be in the 1xx range.
994
  [[BR]]''extra_headers'':[[BR]]
995
  Any extra headers that should be included in the response in the form of a dict.
996
 '''accept_invite'''(''self'', '''extra_headers'''={{{None}}})::
997
  This tries to move the state machine into the {{{CONNECTING}}} state by sending a 200 OK response to the initial {{{INVITE}}}.
998
  It may only be called from the {{{INCOMING}}} or {{{EARLY}}} states on an incoming {{{Invitation}}} object.
999
  [[BR]]''extra_headers'':[[BR]]
1000
  Any extra headers that should be included in the response in the form of a dict.
1001 41 Ruud Klaver
 '''disconnect'''(''self'', '''response_code'''=603, '''extra_headers'''={{{None}}}, '''timeout'''={{{None}}})::
1002 1 Adrian Georgescu
  This moves the {{{INVITE}}} state machine into the {{{DISCONNECTING}}} state by sending the necessary SIP message.
1003
  When a response from the remote party is received, the state machine will go into the {{{DISCONNECTED}}} state.
1004
  Depending on the current state, this could be a CANCEL or BYE request or a negative response.
1005
  [[BR]]''response_code'':[[BR]]
1006
  The code of the response to use as an int, if transmission of a response is needed.
1007
  [[BR]]''extra_headers'':[[BR]]
1008
  Any extra headers that should be included in the request or response in the form of a dict.
1009 41 Ruud Klaver
  [[BR]]''timeout'':[[BR]]
1010
  How many seconds to wait for the remote party to reply before changing the state to {{{DISCONNECTED}}}, as an int or a float.
1011
  If this is set to {{{None}}}, the default PJSIP timeout will be used, which currently appears to be 3.5 seconds.
1012 33 Ruud Klaver
 '''respond_to_reinvite'''(''self'', '''response_code'''=200, '''extra_headers'''={{{None}}})::
1013 1 Adrian Georgescu
  Respond to a received re-{{{INVITE}}} with a response that is either provisional (1xx), positive (2xx) or negative (3xx and upwards).
1014
  This method can be called by the application when the state machine is in the {{{REINVITED}}} state and will move the state machine back into the {{{CONFIRMED}}} state.
1015
  Before giving a positive final response, the SDP needs to be set using the {{{set_offered_local_sdp()}}} method.
1016
  [[BR]]''response_code'':[[BR]]
1017
  The code of the response to use as an int.
1018
  This should be a 3 digit number.
1019
  [[BR]]''extra_headers'':[[BR]]
1020
 '''send_reinvite'''(''self'', '''extra_headers'''={{{None}}})::
1021
  The application may only call this method when the state machine is in the {{{CONFIRMED}}} state to induce sending a re-{{{INVITE}}}.
1022
  Before doing this it needs to set the new local SDP offer by calling the {{{set_offered_local_sdp()}}} method.
1023
  After this method is called, the state machine will be in the {{{REINVITING}}} state, until a final response from the remote party is received.
1024
  [[BR]]''extra_headers'':[[BR]]
1025
  Any extra headers that should be included in the re-{{{INVITE}}} in the form of a dict.
1026
1027
==== notifications ====
1028
1029 29 Luci Stanescu
 '''SIPInvitationChangedState'''::
1030 1 Adrian Georgescu
  This notification is sent by an {{{Invitation}}} object whenever its state machine changes state.
1031
  [[BR]]''timestamp'':[[BR]]
1032
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1033
  [[BR]]''prev_state'':[[BR]]
1034
  The previous state of the INVITE state machine.
1035
  [[BR]]''state'':[[BR]]
1036
  The new state of the INVITE state machine, which may be the same as the previous state.
1037
  [[BR]]''method'': (only if the state change got triggered by an incoming SIP request)[[BR]]
1038
  The method of the SIP request as a string.
1039
  [[BR]]''request_uri'': (only if the state change got triggered by an incoming SIP request)[[BR]]
1040
  The request URI of the SIP request as a {{{SIPURI}}} object.
1041
  [[BR]]''code'': (only if the state change got triggered by an incoming SIP response or internal timeout or error)[[BR]]
1042
  The code of the SIP response or error as an int.
1043
  [[BR]]''reason'': (only if the state change got triggered by an incoming SIP response or internal timeout or error)[[BR]]
1044
  The reason text of the SIP response or error as an int.
1045
  [[BR]]''headers'': (only if the state change got triggered by an incoming SIP request or response)[[BR]]
1046
  The headers of the SIP request or response as a dict.
1047
  Each SIP header is represented in its parsed for as long as PJSIP supports it.
1048
  The format of the parsed value depends on the header.
1049
  [[BR]]''body'': (only if the state change got triggered by an incoming SIP request or response)[[BR]]
1050
  The body of the SIP request or response as a string, or {{{None}}} if no body was included.
1051
  The content type of the body can be learned from the {{{Content-Type:}}} header in the headers argument.
1052 29 Luci Stanescu
 '''SIPInvitationGotSDPUpdate'''::
1053 1 Adrian Georgescu
  This notification is sent by an {{{Invitation}}} object whenever SDP negotation has been perfomed.
1054
  It should be used by the application as an indication to start, change or stop any associated media streams.
1055
  [[BR]]''timestamp'':[[BR]]
1056
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1057
  [[BR]]''succeeded'':[[BR]]
1058
  A boolean indicating if the SDP negotation has succeeded.
1059
  [[BR]]''error'': (only if SDP negotation did not succeed)[[BR]]
1060
  A string indicating why SDP negotation failed.
1061
  [[BR]]''local_sdp'': (only if SDP negotation succeeded)[[BR]]
1062
  A SDPSession object indicating the local SDP that was negotiated.
1063
  [[BR]]''remote_sdp'': (only if SDP negotation succeeded)[[BR]]
1064
  A SDPSession object indicating the remote SDP that was negotiated.
1065
1066
=== SDPSession ===
1067
1068
SDP stands for Session Description Protocol. Session Description Protocol (SDP) is a format for describing streaming media initialization parameters in an ASCII string. SDP is intended for describing multimedia communication sessions for the purposes of session announcement, session invitation, and other forms of multimedia session initiation. It is an IETF standard described by [http://tools.ietf.org/html/rfc4566 RFC 4566]. [http://tools.ietf.org/html/rfc3264 RFC 3264] defines an Offer/Answer Model with the Session Description Protocol (SDP), a mechanism by which two entities can make use of the Session Description Protocol (SDP) to arrive at a common view of a multimedia session between them. 
1069
1070
SDPSession object directly represents the contents of a SDP body, as carried e.g. in a INVITE request, and is a simple wrapper for the PJSIP [http://www.pjsip.org/pjmedia/docs/html/structpjmedia__sdp__session.htm pjmedia_sdp_session] structure.
1071
It can be passed to those methods of an {{{Invitation}}} object that result in transmission of a message that includes SDP, or is passed to the application through a notification that is triggered by reception of a message that includes SDP.
1072
A {{{SDPSession}}} object may contain {{{SDPMedia}}}, {{{SDPConnection}}} and {{{SDPAttribute}}} objects.
1073
It supports comparison to other {{{SDPSession}}} objects using the == and != expressions.
1074
As all the attributes of the {{{SDPSession}}} class are set by attributes of the {{{__init__}}} method, they will be documented along with that method.
1075
1076
==== methods ====
1077
1078 23 Ruud Klaver
 '''!__init!__'''(''self'', '''address''', '''id'''={{{None}}}, '''version'''={{{None}}}, '''user='''"-", net_type="IN", '''address_type'''="IP4", '''name'''=" ", '''info'''={{{None}}}, '''connection'''={{{None}}}, '''start_time'''=0, '''stop_time'''=0, '''attributes'''={{{None}}}, '''media'''={{{None}}})::
1079 1 Adrian Georgescu
  Creates the SDPSession object with the specified parameters as attributes.
1080
  Each of these attributes can be accessed and changed on the object once instanced.
1081
  [[BR]]''address'':[[BR]]
1082
  The address that is contained in the "o" (origin) line of the SDP as a string.
1083
  [[BR]]''id'':[[BR]]
1084
  The session identifier contained in the "o" (origin) line of the SDP as an int.
1085
  If this is set to {{{None}}} on init, a session identifier will be generated.
1086
  [[BR]]''version'':[[BR]]
1087
  The version identifier contained in the "o" (origin) line of the SDP as an int.
1088
  If this is set to {{{None}}} on init, a version identifier will be generated.
1089
  [[BR]]''user'':[[BR]]
1090
  The user name contained in the "o" (origin) line of the SDP as a string.
1091
  [[BR]]''net_type'':[[BR]]
1092
  The network type contained in the "o" (origin) line of the SDP as a string.
1093
  [[BR]]''address_type'':[[BR]]
1094
  The address type contained in the "o" (origin) line of the SDP as a string.
1095
  [[BR]]''name'':[[BR]]
1096
  The contents of the "s" (session name) line of the SDP as a string.
1097
  [[BR]]''info'':[[BR]]
1098
  The contents of the session level "i" (information) line of the SDP as a string.
1099
  If this is {{{None}}} or an empty string, the SDP has no "i" line.
1100
  [[BR]]''connection'':[[BR]]
1101
  The contents of the "c" (connection) line of the SDP as a {{{SDPConnection}}} object.
1102
  If this is set to {{{None}}}, the SDP has no session level "c" line.
1103
  [[BR]]''start_time'':[[BR]]
1104
  The first value of the "t" (time) line of the SDP as an int.
1105
  [[BR]]''stop_time'':[[BR]]
1106
  The second value of the "t" (time) line of the SDP as an int.
1107
  [[BR]]''attributes'':[[BR]]
1108
  The session level "a" lines (attributes) in the SDP represented by a list of {{{SDPAttribute}}} objects.
1109
  [[BR]]''media'':[[BR]]
1110
  The media sections of the SDP represented by a list of {{{SDPMedia}}} objects.
1111
1112
=== SDPMedia ===
1113
1114
This object represents the contents of a media section of a SDP body, i.e. a "m" line and everything under it until the next "m" line.
1115
It is a simple wrapper for the PJSIP [http://www.pjsip.org/pjmedia/docs/html/structpjmedia__sdp__media.htm pjmedia_sdp_media] structure.
1116
One or more {{{SDPMedia}}} objects are usually contained in a {{{SDPSession}}} object.
1117
It supports comparison to other {{{SDPMedia}}} objects using the == and != expressions.
1118
As all the attributes of this class are set by attributes of the {{{__init__}}} method, they will be documented along with that method.
1119
1120
==== methods ====
1121
1122 24 Ruud Klaver
 '''!__init!__'''(''self'', '''media''', '''port''', '''transport''', '''port_count'''=1, '''formats'''={{{None}}}, '''info'''={{{None}}}, '''connection'''={{{None}}}, '''attributes'''={{{None}}})::
1123 1 Adrian Georgescu
  Creates the SDPMedia object with the specified parameters as attributes.
1124
  Each of these attributes can be accessed and changed on the object once instanced.
1125
  [[BR]]''media'':[[BR]]
1126
  The media type contained in the "m" (media) line as a string.
1127
  [[BR]]''port'':[[BR]]
1128
  The transport port contained in the "m" (media) line as an int.
1129
  [[BR]]''transport'':[[BR]]
1130
  The transport protocol in the "m" (media) line as a string.
1131
  [[BR]]''port_count'':[[BR]]
1132
  The port count in the "m" (media) line as an int.
1133
  If this is set to 1, it is not included in the SDP.
1134
  [[BR]]''formats'':[[BR]]
1135
  The media formats in the "m" (media) line represented by a list of strings.
1136
  [[BR]]''info'':[[BR]]
1137
  The contents of the "i" (information) line of this media section as a string.
1138
  If this is {{{None}}} or an empty string, the media section has no "i" line.
1139
  [[BR]]''connection'':[[BR]]
1140
  The contents of the "c" (connection) line that is somewhere below the "m" line of this section as a {{{SDPConnection}}} object.
1141
  If this is set to {{{None}}}, this media section has no "c" line.
1142
  [[BR]]''attributes'':[[BR]]
1143
  The "a" lines (attributes) that are somewhere below the "m" line of this section represented by a list of {{{SDPAttribute}}} objects.
1144
 '''get_direction'''(''self'')::
1145
  This is a convenience methods that goes through all the attributes of the media section and returns the direction, which is either "sendrecv", "sendonly", "recvonly" or "inactive".
1146
  If none of these attributes is present, the default direction is "sendrecv".
1147
1148
=== SDPConnection ===
1149
1150
This object represents the contents of a "c" (connection) line of a SDP body, either at the session level or for an individual media stream.
1151
It is a simple wrapper for the PJSIP [http://www.pjsip.org/pjmedia/docs/html/structpjmedia__sdp__conn.htm pjmedia_sdp_conn] structure.
1152
A {{{SDPConnection}}} object can be contained in a {{{SDPSession}}} object or {{{SDPMedia}}} object.
1153
It supports comparison to other {{{SDPConnection}}} objects using the == and != expressions.
1154
As all the attributes of this class are set by attributes of the {{{__init__}}} method, they will be documented along with that method.
1155
1156
==== methods ====
1157
1158
 '''!__init!__'''(''self'', '''address''', '''net_type'''="IN", '''address_type'''="IP4")::
1159
  Creates the SDPConnection object with the specified parameters as attributes.
1160
  Each of these attributes can be accessed and changed on the object once instanced.
1161
  [[BR]]''address'':[[BR]]
1162
  The address part of the connection line as a string.
1163
  [[BR]]''net_type'':[[BR]]
1164
  The network type part of the connection line as a string.
1165
  [[BR]]''address_type'':[[BR]]
1166
  The address type part of the connection line as a string.
1167
1168
=== SDPAttribute ===
1169
1170
This object represents the contents of a "a" (attribute) line of a SDP body, either at the session level or for an individual media stream.
1171
It is a simple wrapper for the PJSIP [http://www.pjsip.org/pjmedia/docs/html/structpjmedia__sdp__attr.htm pjmedia_sdp_attr] structure.
1172
One or more {{{SDPAttribute}}} objects can be contained in a {{{SDPSession}}} object or {{{SDPMedia}}} object.
1173
It supports comparison to other {{{SDPAttribute}}} objects using the == and != expressions.
1174
As all the attributes of this class are set by attributes of the {{{__init__}}} method, they will be documented along with that method.
1175
1176
==== methods ====
1177
1178
 '''!__init!__'''(''self'', '''name''', '''value''')::
1179
  Creates the SDPAttribute object with the specified parameters as attributes.
1180
  Each of these attributes can be accessed and changed on the object once instanced.
1181
  [[BR]]''name'':[[BR]]
1182
  The name part of the attribute line as a string.
1183
  [[BR]]''value'':[[BR]]
1184
  The value part of the attribute line as a string.
1185
1186
=== RTPTransport ===
1187
1188
This object represents a transport for RTP media, the basis of which is a pair of UDP sockets, one for RTP and one for RTCP.
1189
Internally it wraps a [http://www.pjsip.org/pjmedia/docs/html/group__PJMEDIA__TRANSPORT.htm pjmedia_transport] object.
1190
Initially this object will only be used by the {{{AudioTransport}}} object, but in the future it can also be used for video and [wiki:RTTProposal Real-Time Text].
1191
For this reason the {{{AudioTransport}}} and {{{RTPTransport}}} are two distinct objects.
1192
1193
The {{{RTPTransport}}} object also allows support for ICE and SRTP functionality from PJSIP.
1194
Because these features are related to both the UDP transport and the SDP formatting, the SDP carried in SIP signaling message will need to "pass through" this object during the SDP negotiation.
1195
The code using this object, which in most cases will be the {{{AudioTransport}}} object, will need to call certain methods on the object at appropriate times.
1196
This process of SDP negotiation is represented by the internal state machine of the object, as shown in the following diagram:
1197
1198
> The Real-time Transport Protocol (or RTP) defines a standardized packet format for delivering audio and video over the Internet.
1199
> It was developed by the Audio-Video Transport Working Group of the IETF and published in [http://tools.ietf.org/html/rfc3550 RFC 3550].
1200
> RTP is used in streaming media systems (together with the RTSP) as well as in videoconferencing and push to talk systems.
1201
> For these it carries media streams controlled by Session Initiation Protocol (SIP) signaling protocols, making it the technical foundation of the Voice over IP industry.
1202
1203 18 Adrian Georgescu
[[Image(sipsimple-rtp-transport-state-machine.png, nolink)]]
1204 1 Adrian Georgescu
1205
State changes are triggered by the following events:
1206 17 Ruud Klaver
 1. The application calls the {{{set_INIT()}}} method after object creation and ICE+STUN is not used.
1207
 2. The application calls the {{{set_INIT()}}} method after object creation and ICE+STUN is used.
1208
 3. A successful STUN response is received from the STUN server.
1209
 4. The {{{set_LOCAL()}}} method is called.
1210
 5. The {{{set_ESTABLISHED()}}} method is called.
1211
 6. The {{{set_INIT()}}} method is called while the object is in the {{{LOCAL}}} or {{{ESTABLISHED}}} state.
1212
 7. A method is called on the application, but in the meantime the {{{Engine}}} has stopped.
1213
    The object can no longer be used.
1214
 8. There was an error in getting the STUN candidates from the STUN server.
1215 1 Adrian Georgescu
1216
> It would make sense to be able to use the object even if the STUN request fails (and have ICE not include a STUN candidate), but for some reason the pjmedia_transport is unusable once STUN negotation has failed.
1217
> This means that the RTPTransport object is also unusable once it has reached the STUN_FAILED state.
1218
> A workaround would be destroy the RTPTransport object and create a new one that uses ICE without STUN.
1219
1220
These states allow for two SDP negotiation scenarios to occur, represented by two paths that can be followed through the state machine.
1221
In this example we will assume that ICE with STUN is not used, as it is independent of the SDP negotiation procedure.
1222
 * The first scenario is where the local party generates the SDP offer.
1223
   For a stream that it wishes to include in this SDP offer, it instantiates a {{{RTPTransport}}} object.
1224 17 Ruud Klaver
   After instantiation the object is initialized by calling the {{{set_INIT()}}} method and the local RTP address and port can be fetched from it using the {{{local_rtp_address}}} and {{{local_rtp_port}}} respectively, which can be used to generate the local SDP in the form of a {{{SDPSession}}} object (note that it needs the full object, not just the relevant {{{SDPMedia}}} object).
1225 1 Adrian Georgescu
   This local SDP then needs to be passed to the {{{set_LOCAL()}}} method, which moves the state machine into the {{{LOCAL}}} state.
1226
   Depending on the options used for the {{{RTPTransport}}} instantiation (such as ICE and SRTP), this may change the {{{SDPSession}}} object.
1227
   This (possibly changed) {{{SDPSession}}} object then needs to be passed to the {{{Invitation}}} object.
1228
   After SDP negotiation is completed, the application needs to pass both the local and remote SDP, in the form of {{{SDPSession}}} objects, to the {{{RTPTransport}}} object using the {{{set_ESTABLISHED()}}} method, moving the state machine into the {{{ESTABLISHED}}} state.
1229
   This will not change either of the {{{SDPSession}}} objects.
1230
 * The second scenario is where the local party is offered a media stream in SDP and wants to accept it.
1231 17 Ruud Klaver
   In this case a {{{RTPTransport}}} is also instantiated and initialized using the {{{set_INIT()}}} method, and the application can generate the local SDP in response to the remote SDP, using the {{{local_rtp_address}}} and {{{local_rtp_port}}} attributes.
1232 1 Adrian Georgescu
   Directly after this it should pass the generated local SDP and received remote SDP, in the form of {{{SDPSession}}} objects, to the {{{set_ESTABLISHED()}}} method.
1233
   In this case the local SDP object may be changed, after which it can be passed to the {{{Invitation}}} object.
1234
1235
Whenever the {{{RTPTransport}}} object is in the {{{LOCAL}}} or {{{ESTABLISHED}}} states, it may be reset to the {{{INIT}}} state to facilitate re-use of the existing transport and its features.
1236
Before doing this however, the internal transport object must no longer be in use.
1237
1238
==== attributes ====
1239
1240
 '''state'''::
1241
  Indicates which state the internal state machine is in.
1242
  See the previous section for a list of states the state machine can be in.
1243
  This attribute is read-only.
1244
 '''local_rtp_address'''::
1245
  The local IPv4 or IPv6 address of the interface the {{{RTPTransport}}} object is listening on and the address that should be included in the SDP.
1246
  If no address was specified during object instantiation, PJSIP will take guess out of the IP addresses of all interfaces.
1247
  This attribute is read-only and will be {{{None}}} if PJSIP is not listening on the transport.
1248
 '''local_rtp_port'''::
1249
  The UDP port PJSIP is listening on for RTP traffic.
1250
  RTCP traffic will always be this port plus one.
1251
  This attribute is read-only and will be {{{None}}} if PJSIP is not listening on the transport.
1252
 '''remote_rtp_address_sdp'''::
1253
  The remote IP address that was seen in the SDP.
1254
  This attribute is read-only and will be {{{None}}} unless the object is in the {{{ESTABLISHED}}} state.
1255
 '''remote_rtp_port_sdp'''::
1256
  The remote UDP port for RTP that was seen in the SDP.
1257
  This attribute is read-only and will be {{{None}}} unless the object is in the {{{ESTABLISHED}}} state.
1258
 '''remote_rtp_address_received'''::
1259
  The remote IP address from which RTP data was received.
1260
  This attribute is read-only and will be {{{None}}} unless RTP was actually received.
1261
 '''remote_rtp_port_received'''::
1262
  The remote UDP port from which RTP data was received.
1263
  This attribute is read-only and will be {{{None}}} unless RTP was actually received.
1264
 '''use_srtp'''::
1265
  A boolean indicating if the use of SRTP was requested when the object was instantiated.
1266
  This attribute is read-only.
1267
 '''force_srtp'''::
1268
  A boolean indicating if SRTP being mandatory for this transport if it is enabled was requested when the object was instantiated.
1269
  This attribute is read-only.
1270
 '''srtp_active'''::
1271
  A boolean indicating if SRTP encryption and decryption is running.
1272
  Querying this attribute only makes sense once the object is in the {{{ESTABLISHED}}} state and use of SRTP was requested.
1273
  This attribute is read-only.
1274
 '''use_ice'''::
1275
  A boolean indicating if the use of ICE was requested when the object was instantiated.
1276
  This attribute is read-only.
1277
 '''ice_stun_address'''::
1278 19 Ruud Klaver
  A string indicating the IP address of the STUN server that was requested to be used.
1279 1 Adrian Georgescu
  This attribute is read-only.
1280
 '''ice_stun_port'''::
1281
  A string indicating the UDP port of the STUN server that was requested to be used.
1282
  This attribute is read-only.
1283
1284
==== methods ====
1285
1286
 '''!__init!__'''(''self'', '''local_rtp_address'''={{{None}}}, '''use_srtp'''={{{False}}}, '''srtp_forced'''={{{False}}}, '''use_ice'''={{{False}}}, '''ice_stun_address'''={{{None}}}, '''ice_stun_port'''=3478)::
1287
  Creates a new {{{RTPTransport}}} object and opens the RTP and RTCP UDP sockets.
1288
  If aditional features are requested, they will be initialized.
1289
  After object instantiation, it is either in the {{{INIT}}} or the {{{WAIT_STUN}}} state, depending on the values of the {{{use_ice}}} and {{{ice_stun_address}}} arguments.
1290
  [[BR]]''local_rtp_address'':[[BR]]
1291
  Optionally contains the local IP address to listen on, either in IPv4 or IPv6 form.
1292
  If this is not specified, PJSIP will listen on all network interfaces.
1293
  [[BR]]''use_srtp'':[[BR]]
1294
  A boolean indicating if SRTP should be used.
1295
  If this is set to {{{True}}}, SRTP information will be added to the SDP when it passes this object.
1296
  [[BR]]''srtp_forced'':[[BR]]
1297
  A boolean indicating if use of SRTP is set to mandatory in the SDP.
1298
  If this is set to {{{True}}} and the remote party does not support SRTP, the SDP negotation for this stream will fail.
1299
  This argument is relevant only if {{{use_srtp}}} is set to {{{True}}}.
1300
  [[BR]]''use_ice'':[[BR]]
1301
  A boolean indicating if ICE should be used.
1302
  If this is set to {{{True}}}, ICE candidates will be added to the SDP when it passes this object.
1303
  [[BR]]''ice_stun_address'':[[BR]]
1304
  A string indicating the address (IP address or hostname) of the STUN server that should be used to add a STUN candidate to the ICE candidates.
1305
  If this is set to {{{None}}} no STUN candidate will be added, otherwise the object will be put into the {{{WAIT_STUN}}} state until a reply, either positive or negative, is received from the specified STUN server.
1306 29 Luci Stanescu
  When this happens a {{{RTPTransportGotSTUNResponse}}} notification is sent.
1307 1 Adrian Georgescu
  This argument is relevant only if {{{use_ice}}} is set to {{{True}}}.
1308
  [[BR]]''ice_stun_address'':[[BR]]
1309
  An int indicating the UDP port of the STUN server that should be used to add a STUN candidate to the ICE candidates.
1310
  This argument is relevant only if {{{use_ice}}} is set to {{{True}}} and {{{ice_stun_address}}} is not {{{None}}}.
1311 34 Ruud Klaver
 '''set_INIT'''(''self'')::
1312
  This moves the internal state machine into the {{{INIT}}} state.
1313
  If the state machine is in the {{{LOCAL}}} or {{{ESTABLISHED}}} states, this effectively resets the {{{RTPTransport}}} object for re-use.
1314
 '''set_LOCAL'''(''self'', '''local_sdp''', '''sdp_index''')::
1315 1 Adrian Georgescu
  This moves the the internal state machine into the {{{LOCAL}}} state.
1316
  [[BR]]''local_sdp'':[[BR]]
1317
  The local SDP to be proposed in the form of a {{{SDPSession}}} object.
1318
  Note that this object may be modified by this method.
1319
  [[BR]]''sdp_index'':[[BR]]
1320
  The index in the SDP for the media stream for which this object was created.
1321 34 Ruud Klaver
 '''set_ESTABLISHED'''(''self'', '''local_sdp''', '''remote_sdp''', '''sdp_index''')::
1322 1 Adrian Georgescu
  This moves the the internal state machine into the {{{ESTABLISHED}}} state.
1323
  [[BR]]''local_sdp'':[[BR]]
1324
  The local SDP to be proposed in the form of a {{{SDPSession}}} object.
1325
  Note that this object may be modified by this method, but only when moving from the {{{LOCAL}}} to the {{{ESTABLISHED}}} state.
1326
  [[BR]]''remote_sdp'':[[BR]]
1327
  The remote SDP that was received in in the form of a {{{SDPSession}}} object.
1328 17 Ruud Klaver
  [[BR]]''sdp_index'':[[BR]]
1329
  The index in the SDP for the media stream for which this object was created.
1330 1 Adrian Georgescu
1331
==== notifications ====
1332
1333 29 Luci Stanescu
 '''RTPTransportDidInitialize'''::
1334 17 Ruud Klaver
  This notification is sent when a {{{RTPTransport}}} object has successfully initialized.
1335
  If STUN+ICE is not requested, this is sent immediately on {{{set_INIT()}}}, otherwise it is sent after the STUN query has succeeded.
1336 1 Adrian Georgescu
  [[BR]]''timestamp'':[[BR]]
1337
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1338 29 Luci Stanescu
 '''RTPTransportDidFail'''::
1339 17 Ruud Klaver
  This notification is sent by a {{{RTPTransport}}} object that fails to retrieve ICE candidates from the STUN server after {{{set_INIT()}}} is called.
1340
  [[BR]]''timestamp'':[[BR]]
1341
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1342
  [[BR]]''reason'':[[BR]]
1343
  A string describing the failure reason.
1344 1 Adrian Georgescu
1345
=== AudioTransport ===
1346
1347
This object represent an audio stream as it is transported over the network.
1348
It contains an instance of {{{RTPTransport}}} and wraps a [http://www.pjsip.org/pjmedia/docs/html/group__PJMED__STRM.htm pjmedia_stream] object, which in turn manages the RTP encapsulation, RTCP session, audio codec and adaptive jitter buffer.
1349
It also generates a {{{SDPMedia}}} object to be included in the local SDP.
1350
1351
Like the {{{RTPTransport}}} object there are two usage scenarios.
1352
 * In the first scenario, only the {{{RTPTransport}}} instance to be used is passed to the AudioTransport object.
1353
   The application can then generate the {{{SDPMedia}}} object by calling the {{{get_local_media()}}} method and should include it in the SDP offer.
1354
   Once the remote SDP is received, it should be set along with the complete local SDP by calling the {{{start()}}} method, which will start the audio stream.
1355
   The stream can then be connected to the conference bridge.
1356
 * In the other scenario the remote SDP is already known because it was received in an SDP offer and can be passed directly on object instantiation.
1357
   The local {{{SDPMedia}}} object can again be generated by calling the {{{get_local_media()}}} method and is to be included in the SDP answer.
1358
   The audio stream is started directly when the object is created.
1359
1360
Unlike the {{{RTPTransport}}} object, this object cannot be reused.
1361
1362
==== attributes ====
1363
1364
 '''transport'''::
1365
  The {{{RTPTransport}}} object that was passed when the object got instatiated.
1366
  This attribute is read-only.
1367
 '''is_active'''::
1368
  A boolean indicating if the object is currently sending and receiving audio.
1369
  This attribute is read-only.
1370
 '''is_started'''::
1371
  A boolean indicating if the object has been started.
1372
  Both this attribute and the {{{is_active}}} attribute get set to {{{True}}} once the {{{start()}}} method is called, but unlike the {{{is_active}}} attribute this attribute does not get set to {{{False}}} once {{{stop()}}} is called.
1373
  This is to prevent the object from being re-used.
1374
  This attribute is read-only.
1375
 '''codec'''::
1376
  Once the SDP negotiation is complete, this attribute indicates the audio codec that was negotiated, otherwise it will be {{{None}}}.
1377
  This attribute is read-only.
1378
 '''sample_rate'''::
1379
  Once the SDP negotiation is complete, this attribute indicates the sample rate of the audio codec that was negotiated, otherwise it will be {{{None}}}.
1380
  This attribute is read-only.
1381
 '''direction'''::
1382
  The current direction of the audio transport, which is one of "sendrecv", "sendonly", "recvonly" or "inactive".
1383
  This attribute is read-only, although it can be set using the {{{update_direction()}}} method.
1384
1385
==== methods ====
1386
1387 40 Ruud Klaver
 '''!__init!__'''(''self'', '''transport''', '''remote_sdp'''={{{None}}}, '''sdp_index'''=0, '''enable_silence_detection'''=True, '''codecs'''={{{None}}})::
1388 1 Adrian Georgescu
  Creates a new {{{AudioTransport}}} object and start the underlying stream if the remote SDP is already known.
1389
  [[BR]]''transport'':[[BR]]
1390
  The transport to use in the form of a {{{RTPTransport}}} object.
1391
  [[BR]]''remote_sdp'':[[BR]]
1392
  The remote SDP that was received in the form of a {{{SDPSession}}} object.
1393
  [[BR]]''sdp_index'':[[BR]]
1394
  The index within the SDP of the audio stream that should be created.
1395
  [[BR]]''enable_silence_detection''[[BR]]
1396
  Boolean that indicates if silence detection should be used for this audio stream.
1397
  When enabled, this {{{AudioTransport}}} object will stop sending audio to the remote party if the input volume is below a certain threshold.
1398 40 Ruud Klaver
  [[BR]]''codecs''[[BR]]
1399
  A list of strings indicating the codecs that should be proposed in the SDP of this {{{AudioTransport}}}, in order of preference.
1400
  This overrides the global codecs list set on the {{{Engine}}}.
1401
  The values of this list are case insensitive.
1402 1 Adrian Georgescu
 '''get_local_media'''(''self'', '''is_offer''', '''direction'''="sendrecv")::
1403
  Generates a {{{SDPMedia}}} object which describes the audio stream.
1404
  This object should be included in a {{{SDPSession}}} object that gets passed to the {{{Invitation}}} object.
1405
  This method should also be used to obtain the SDP to include in re-INVITEs and replies to re-INVITEs.
1406
  [[BR]]''is_offer'':[[BR]]
1407
  A boolean indicating if the SDP requested is to be included in an offer.
1408
  If this is {{{False}}} it is to be included in an answer.
1409
  [[BR]]''direction'':[[BR]]
1410
  The direction attribute to put in the SDP.
1411
 '''start'''(''self'', '''local_sdp''', '''remote_sdp''', '''sdp_index''')::
1412
  This method should only be called once, when the application has previously sent an SDP offer and the answer has been received.
1413
  [[BR]]''local_sdp'':[[BR]]
1414
  The full local SDP that was included in the SDP negotiation in the form of a {{{SDPSession}}} object.
1415
  [[BR]]''remote_sdp'':[[BR]]
1416
  The remote SDP that was received in the form of a {{{SDPSession}}} object.
1417
  [[BR]]''sdp_index'':[[BR]]
1418
  The index within the SDP of the audio stream.
1419
 '''stop'''(''self'')::
1420
  This method stops and destroys the audio stream encapsulated by this object.
1421
  After this it can no longer be used and should be deleted, while the {{{RTPTransport}}} object used by it can be re-used for something else.
1422
  This method will be called automatically when the object is deleted after it was started, but this should not be relied on because of possible reference counting issues.
1423
 '''send_dtmf'''(''self'', '''digit''')::
1424
  For a negotiated audio transport this sends one DTMF digit to the other party
1425
  [[BR]]''digit'':[[BR]]
1426
  A string of length one indicating the DTMF digit to send.
1427
  This can be either a number or letters A through D.
1428
 '''update_direction'''(''self'', '''direction''')::
1429
  This method should be called after SDP negotiation has completed to update the direction of the media stream.
1430
  [[BR]]''direction'':[[BR]]
1431
  The direction that has been negotiated.
1432
1433
==== notifications ====
1434
1435 29 Luci Stanescu
 '''RTPAudioTransportGotDTMF'''::
1436 1 Adrian Georgescu
  This notification will be sent when an incoming DTMF digit is received from the remote party.
1437
  [[BR]]''timestamp'':[[BR]]
1438
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1439
  [[BR]]''digit'':[[BR]]
1440
  The DTMF digit that was received, in the form of a string of length one.
1441
  This can be either a number or letters A through D.
1442
1443
=== WaveFile ===
1444
1445
This is a simple object that allows playing back of a {{{.wav}}} file over the PJSIP conference bridge, possibly looping a number of times.
1446
Only 16-bit PCM and A-law/U-law formats are supported.
1447
Its main purpose is the playback of ringtones.
1448
1449
This class can be instantiated by the application before the {{{Engine}}} is running, but in order to actually start playback, through the {{{start()}}} method, the {{{Engine}}} must have been started as well.
1450
Once the {{{start()}}} method is called, the {{{.wav}}} file will continue playing until the loop count specified is reached( or forever if the specified loop count is 0), or until the {{{stop()}}} method is called.
1451 29 Luci Stanescu
When playback stops for either of these reasons, a {{{WaveFileDidFinishPlaying}}} notification is sent by the object.
1452 1 Adrian Georgescu
After this the {{{start()}}} method may be called again in order to re-use the object.
1453
1454
It is the application's responsibility to keep a reference to the {{{WaveFile}}} object for the duration of playback.
1455
If the reference count of the object reaches 0, playback will be stopped.
1456
In this case no notification will be sent.
1457
1458
==== attributes ====
1459
1460
 '''file_name'''::
1461
  The name of the {{{.wav}}} file, as specified when the object was created.
1462
 '''is_active'''::
1463
  A boolean read-only property that indicates if the file is currently being played back.
1464
  Note that if the playback loop is currently in a pause between playbacks, this attribute will also be {{{True}}}.
1465
1466
==== methods ====
1467
1468
 '''!__init!__'''(''self'', '''file_name''')::
1469
  Creates a new {{{WaveFile}}} object.
1470
  [[BR]]''file_name'':[[BR]]
1471
  The name of the {{{.wav}}} file to be played back as a string.
1472
  This should include the full path to the file.
1473
 '''start'''(''self'', '''level'''=100, '''loop_count'''=1, '''pause_time'''=0)::
1474
  Start playback of the {{{.wav}}} file, optionally looping it.
1475
  [[BR]]''level'':[[BR]]
1476
  The level to play the file back at, in percentage.
1477
  A percentage lower than 100 means playback will be attenuated, a percentage higher than 100 means it will amplified.
1478
  [[BR]]''loop_count'':[[BR]]
1479
  The number of time to loop playing this file.
1480
  A value of 0 means looping infinitely.
1481
  [[BR]]''pause_time'':[[BR]]
1482
  The number of seconds to pause between consecutive loops.
1483
  This can be either an int or a float.
1484
 '''stop'''(''self'')::
1485
  Stop playback of the file.
1486
1487
==== notifications ====
1488
1489 29 Luci Stanescu
 '''WaveFileDidFinishPlaying'''::
1490 1 Adrian Georgescu
  This notification will be sent whenever the {{{.wav}}} file has been played back the specified number of times.
1491
  After sending this event, the playback may be re-started.
1492
  [[BR]]''timestamp'':[[BR]]
1493
  A {{{datetime.datetime}}} object indicating when the notification was sent.
1494
1495
=== RecordingWaveFile ===
1496
1497
This is a simple object that allows recording whatever is heard on the PJSIP conference bridge to a PCM {{{.wav}}} file.
1498
1499
This class can be instantiated by the application before the {{{Engine}}} is running, but in order to actually start playback, through the {{{start()}}} method, the {{{Engine}}} must have been started as well.
1500
Recording to the file can be stopped either by calling the {{{stop()}}} method or by removing all references to the object.
1501
Once the {{{stop()}}} method has been called, the {{{start()}}} method may not be called again.
1502
It is the application's responsibility to keep a reference to the {{{RecordingWaveFile}}} object for the duration of the recording.
1503
1504
==== attributes ====
1505
1506
 '''file_name'''::
1507 15 Ruud Klaver
  The name of the {{{.wav}}} file, as specified when the object was created.
1508
 '''is_active'''::
1509
  A boolean read-only attribute that indicates if the file is currently being written to.
1510 1 Adrian Georgescu
 '''is_paused'''::
1511
  A boolean read-only attribute that indicates if the active recording is currently paused.
1512
1513
==== methods ====
1514
1515
 '''!__init!__'''(''self'', '''file_name''')::
1516
  Creates a new {{{RecordingWaveFile}}} object.
1517
  [[BR]]''file_name'':[[BR]]
1518
  The name of the {{{.wav}}} file to record to as a string.
1519
  This should include the full path to the file.
1520 15 Ruud Klaver
 '''start'''(''self'')::
1521
  Start recording the sound on the conference bridge to the {{{.wav}}} file.
1522
 '''pause'''(''self'')::
1523
  Pause recording to the {{{.wav}}} file.
1524 1 Adrian Georgescu
 '''resume'''(''self'')::
1525
  Resume a previously paused recording.
1526
 '''stop'''(''self'')::
1527
  Stop recording to the file.