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154 lines
5.6 KiB
Text
154 lines
5.6 KiB
Text
INTRODUCTION
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============
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This document is an attempt to describe the basics of the DTLS element.
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It hasn't been written by the author(s) and so, besides being incomplete,
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*IT MIGHT ALSO BE INCORRECT*. So take it with a pinch of salt.
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As always, if in doubt ask on the GStreamer Matrix room:
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https://matrix.to/#/#gstreamer:gstreamer.org.
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THE INTERNALS
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=============
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This plugin provides two main elements (dtlssrtpdec and dtlssrtpenc) and a few
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minor elements necessary to implement them. The two elements dtlssrtpdec and
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dtlssrtpenc are the only ones you are supposed to include in, respectively, the
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RX and TX pipelines of your DTLS-enabled application. This means you're not
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supposed to directly include those minor elements in your pipelines.
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dtlssrtpenc
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-----------
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This element is to be included in the TX pipeline and will initiate the DTLS
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handshake if configured to be the client. Its main configuration parameters are:
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- connection-id: a string that must match the connection-id in dtlssrtpdec;
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- is-client: a boolean that indicates whether this is going to be the client
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or the server during the DTLS handshake.
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Internally this element comprises the standard srtpenc element, the dtlsenc
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element and a funnel to connect both these elements to one single output.
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The srtpenc can be used to encrypt SRTP/SRTCP packets while the dtlsenc can be
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used to encrypt generic data, e.g. for non-SRTP applications.
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NB With the current implementation the TX pipeline containing the dtlssrtpenc
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must be created *AFTER* the RX pipeline.
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dtlssrtpdec
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-----------
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It is to be included in the RX pipeline. Its main configuration parameters are:
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- connection-id: a string that must match the connection-id in dtlssrtpenc;
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- pem: a string that can be used to provide your own certificate *AND* private
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key in PEM format. The private key is required to carry out the
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handshake so do not forget it or the DTLS negotiation will fail;
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- peer_pem: a read only parameter that can be used to retrieve the
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certificate sent from the other party in PEM format once the
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handshake is completed.
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Internally this element comprises a dtlssrtpdemux, a standard srtpdec element
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and the dtlsdec element. The dtlssrtpdemux element switches SRT(C)P packets to
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the srtpdec element and DTLS packets to the dtlsdec element and discards any
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other unknown packet. So, similarly for the dtlssrtpenc case, DTLS-SRTP
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applications would exercise the srtpdec element and any other non-SRTP
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application would exercise the dtlsdec element.
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NB With the current implementation the RX pipeline containing the dtlssrtpdec
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must be created *BEFORE* the TX pipeline.
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EXAMPLE PIPELINE
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================
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The following is an example usage of the DTLS plugin. It is a python script that
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creates two endpoints that exchange encrypted audio using DTLS to exchange the
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encryption keys.
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NB In theory we would show an example gst-launch command. However that would not
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be enough because you need two pairs of TX/RX pipelines for a proper
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handshake and you can't use gst-launch two start 4 different pipelines.
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This why there is a python script in here.
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```
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#!/usr/bin/env python3
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# create two endpoints, each with tx and rx pipelines using the DTLS
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# elements and let audio flowing for a while to give time for a packet capture
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import time
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from gi.repository import Gst, GObject, GLib
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GObject.threads_init()
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Gst.init(None)
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def _start_pipeline(pipeline):
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pipeline.set_state(Gst.State.PLAYING)
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pipeline.get_state(Gst.CLOCK_TIME_NONE)
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def _sleep_while_iterating_gloop(secs):
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""" block for secs seconds but iterate the gloop while you do """
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for _ in range(10 * secs):
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gloop = GLib.MainLoop()
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gloop_context = gloop.get_context()
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gloop_context.iteration(may_block=False)
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time.sleep(0.1)
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def dtls_tx_pipeline_description(name, is_client, port):
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return ' ! '.join([
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'audiotestsrc is-live=true',
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'audio/x-raw, rate=8000, format=S16LE, channels=1',
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'opusenc frame-size=10',
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'rtpopuspay pt=103',
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'.rtp_sink_0 dtlssrtpenc connection-id={name} is-client={client} .src',
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'udpsink port={port}'
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]).format(name=name, client=is_client, port=port)
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def dtls_rx_pipeline_description(name, port):
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return ' ! '.join([
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'udpsrc port={port}',
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'.sink dtlssrtpdec connection-id={name} .rtp_src',
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'queue',
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'fakesink async=false'
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]).format(name=name, port=port)
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class Endpoint:
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def __init__(self, name, is_client, tx_port, rx_port):
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self.name = name
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tx_pipeline_description = dtls_tx_pipeline_description(
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name, is_client, tx_port
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)
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rx_pipeline_description = dtls_rx_pipeline_description(name, rx_port)
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print(rx_pipeline_description)
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print(tx_pipeline_description)
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self.rx_pipeline = Gst.parse_launch(rx_pipeline_description)
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self.tx_pipeline = Gst.parse_launch(tx_pipeline_description)
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def start(self):
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# Start RX first, otherwise it fails due to the current implementation
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self.start_rx_pipeline()
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self.start_tx_pipeline()
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def start_rx_pipeline(self):
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_start_pipeline(self.rx_pipeline)
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def start_tx_pipeline(self):
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_start_pipeline(self.tx_pipeline)
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def stop(self):
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def stop_pipeline(p):
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p.set_state(Gst.State.NULL)
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p.get_state(Gst.CLOCK_TIME_NONE)
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stop_pipeline(self.tx_pipeline)
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stop_pipeline(self.rx_pipeline)
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blue = Endpoint("blue", is_client=True, tx_port=23000, rx_port=23002)
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red = Endpoint("red", is_client=False, tx_port=23002, rx_port=23000)
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red.start()
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blue.start()
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_sleep_while_iterating_gloop(3)
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red.stop()
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blue.stop()
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```
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