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262 lines
8.9 KiB
Plaintext
262 lines
8.9 KiB
Plaintext
Experimental QUIC support for nginx
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-----------------------------------
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1. Introduction
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2. Installing
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3. Configuration
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4. Clients
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5. Troubleshooting
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6. Contributing
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7. Links
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1. Introduction
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This is an experimental QUIC [1] / HTTP/3 [2] support for nginx.
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The code is developed in a separate "quic" branch available
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at https://hg.nginx.org/nginx-quic. Currently it is based
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on nginx mainline 1.21.x. We merge new nginx releases into
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this branch regularly.
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The project code base is under the same BSD license as nginx.
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The code is currently at a beta level of quality and should not
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be used in production.
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We are working on improving HTTP/3 support with the goal of
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integrating it to the main NGINX codebase. Expect frequent
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updates of this code and don't rely on it for whatever purpose.
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We'll be grateful for any feedback and code submissions however
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we don't bear any responsibilities for any issues with this code.
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You can always contact us via nginx-devel mailing list [3].
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What works now:
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Currently we support IETF-QUIC draft-29 through final RFC documents.
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Earlier drafts are NOT supported as they have incompatible wire format.
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nginx should be able to respond to HTTP/3 requests over QUIC and
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it should be possible to upload and download big files without errors.
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+ The handshake completes successfully
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+ One endpoint can update keys and its peer responds correctly
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+ 0-RTT data is being received and acted on
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+ Connection is established using TLS Resume Ticket
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+ A handshake that includes a Retry packet completes successfully
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+ Stream data is being exchanged and ACK'ed
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+ An H3 transaction succeeded
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+ One or both endpoints insert entries into dynamic table and
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subsequently reference them from header blocks
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+ Version Negotiation packet is sent to client with unknown version
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+ Lost packets are detected and retransmitted properly
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+ Clients may migrate to new address
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Not (yet) supported features:
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- Explicit Congestion Notification (ECN) as specified in quic-recovery [5]
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- A connection with the spin bit succeeds and the bit is spinning
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- Structured Logging
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Since the code is experimental and still under development,
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a lot of things may not work as expected, for example:
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- Flow control mechanism is basic and intended to avoid CPU hog and make
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simple interactions possible
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- Not all protocol requirements are strictly followed; some of checks are
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omitted for the sake of simplicity of initial implementation
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2. Installing
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You will need a BoringSSL [4] library that provides QUIC support
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$ hg clone -b quic https://hg.nginx.org/nginx-quic
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$ cd nginx-quic
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$ ./auto/configure --with-debug --with-http_v3_module \
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--with-cc-opt="-I../boringssl/include" \
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--with-ld-opt="-L../boringssl/build/ssl \
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-L../boringssl/build/crypto"
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$ make
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Alternatively, nginx can be configured with QuicTLS [9]
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$ ./auto/configure --with-debug --with-http_v3_module \
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--with-cc-opt="-I../quictls/build/include" \
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--with-ld-opt="-L../quictls/build/lib"
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When configuring nginx, you can enable QUIC and HTTP/3 using the
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following new configuration options:
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--with-http_v3_module - enable QUIC and HTTP/3
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--with-stream_quic_module - enable QUIC in Stream
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3. Configuration
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The HTTP "listen" directive got a new option "http3" which enables
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HTTP/3 over QUIC on the specified port.
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The Stream "listen" directive got a new option "quic" which enables
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QUIC as client transport protocol instead of TCP or plain UDP.
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Along with "http3" or "quic", you also have to specify "reuseport"
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option [6] to make it work properly with multiple workers.
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To enable address validation:
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quic_retry on;
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To enable 0-RTT:
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ssl_early_data on;
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Make sure that TLS 1.3 is configured which is required for QUIC:
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ssl_protocols TLSv1.3;
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To enable GSO (Generic Segmentation Offloading):
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quic_gso on;
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To limit maximum packet size:
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quic_mtu <size>;
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To set host key for various tokens:
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quic_host_key <filename>;
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By default this Linux-specific optimization [8] is disabled.
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Enable if your network interface is configured to support GSO.
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A number of directives were added that configure HTTP/3:
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http3_stream_buffer_size
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http3_max_concurrent_pushes
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http3_max_concurrent_streams
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http3_push
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http3_push_preload
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http3_hq (requires NGX_HTTP_V3_HQ macro)
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In http, an additional variable is available: $http3.
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The value of $http3 is "h3" for HTTP/3 connections,
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"hq" for hq connections, or an empty string otherwise.
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In stream, an additional variable is available: $quic.
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The value of $quic is "quic" if QUIC connection is used,
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or an empty string otherwise.
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Example configuration:
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http {
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log_format quic '$remote_addr - $remote_user [$time_local] '
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'"$request" $status $body_bytes_sent '
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'"$http_referer" "$http_user_agent" "$http3"';
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access_log logs/access.log quic;
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server {
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# for better compatibility it's recommended
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# to use the same port for quic and https
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listen 8443 http3 reuseport;
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listen 8443 ssl;
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ssl_certificate certs/example.com.crt;
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ssl_certificate_key certs/example.com.key;
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ssl_protocols TLSv1.3;
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location / {
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# required for browsers to direct them into quic port
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add_header Alt-Svc 'h3=":8443"; ma=86400';
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}
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}
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}
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4. Clients
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* Browsers
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Known to work: Firefox 80+ and Chrome 85+ (QUIC draft 29+)
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Beware of strange issues: sometimes browser may decide to ignore QUIC
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Cache clearing/restart might help. Always check access.log and
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error.log to make sure you are using HTTP/3 and not TCP https.
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+ to enable QUIC in Firefox, set the following in 'about:config':
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network.http.http3.enabled = true
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+ to enable QUIC in Chrome, enable it on command line and force it
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on your site:
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$ ./chrome --enable-quic --quic-version=h3-29 \
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--origin-to-force-quic-on=example.com:8443
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* Console clients
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Known to work: ngtcp2, firefox's neqo and chromium's console clients:
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$ examples/client 127.0.0.1 8443 https://example.com:8443/index.html
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$ ./neqo-client https://127.0.0.1:8443/
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$ chromium-build/out/my_build/quic_client http://example.com:8443 \
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--quic_version=h3-29 \
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--allow_unknown_root_cert \
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--disable_certificate_verification
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If you've got it right, in the access log you should see something like:
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127.0.0.1 - - [24/Apr/2020:11:27:29 +0300] "GET / HTTP/3" 200 805 "-"
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"nghttp3/ngtcp2 client" "quic"
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5. Troubleshooting
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Here are some tips that may help you to identify problems:
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+ Ensure you are building with proper SSL library that supports QUIC
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+ Ensure you are using the proper SSL library in runtime
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(`nginx -V` will show you what you are using)
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+ Ensure your client is actually sending QUIC requests
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(see "Clients" section about browsers and cache)
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We recommend to start with simple console client like ngtcp2
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to ensure you've got server configured properly before trying
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with real browsers that may be very picky with certificates,
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for example.
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+ Build nginx with debug support [7] and check your debug log.
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It should contain all details about connection and why it
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failed. All related messages contain "quic " prefix and can
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be easily filtered out.
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+ If you want to investigate deeper, you may want to enable
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additional debugging in src/event/quic/ngx_event_quic_connection.h:
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#define NGX_QUIC_DEBUG_PACKETS
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#define NGX_QUIC_DEBUG_FRAMES
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#define NGX_QUIC_DEBUG_ALLOC
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#define NGX_QUIC_DEBUG_CRYPTO
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6. Contributing
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If you are willing to contribute, please refer to
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http://nginx.org/en/docs/contributing_changes.html
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7. Links
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[1] https://datatracker.ietf.org/doc/html/rfc9000
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[2] https://datatracker.ietf.org/doc/html/draft-ietf-quic-http
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[3] https://mailman.nginx.org/mailman/listinfo/nginx-devel
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[4] https://boringssl.googlesource.com/boringssl/
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[5] https://datatracker.ietf.org/doc/html/rfc9002
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[6] https://nginx.org/en/docs/http/ngx_http_core_module.html#listen
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[7] https://nginx.org/en/docs/debugging_log.html
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[8] http://vger.kernel.org/lpc_net2018_talks/willemdebruijn-lpc2018-udpgso-paper-DRAFT-1.pdf
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[9] https://github.com/quictls/openssl
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