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Matthias Einwag 80ae2c9180 Add a test for handover from HTTP to Websocket
Motivation:
I was not fully reassured that whether everything works correctly when a websocket client receives the websocket handshake HTTP response and a websocket frame in a single ByteBuf (which can happen when the server sends a response directly or shortly after the connect). In this case some parts of the ByteBuf must be processed by HTTP decoder and the remaining by the websocket decoder.

Modification:
Adding a test that verifies that in this scenaria the handshake and the message are correctly interpreted and delivered by Netty.

Result:
One more test for Netty.
The test succeeds - No problems
2014-10-13 07:23:10 +02:00
all [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
buffer Disable caching of PooledByteBuf for different threads. 2014-09-22 13:39:31 +02:00
codec Fixed typo in LzmaFrameEncoder constructor 2014-09-19 20:09:39 +02:00
codec-dns [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
codec-haproxy [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
codec-http Add a test for handover from HTTP to Websocket 2014-10-13 07:23:10 +02:00
codec-memcache [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
codec-mqtt Change client id validation range in codec-mqtt 2014-10-13 07:17:19 +02:00
codec-socks codec-socks test cleanup 2014-08-20 06:53:37 +02:00
codec-stomp [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
common Don't ignore maxCapacity if it's not a power of 2 2014-08-31 09:06:45 +02:00
example Adding a benchmark for websockets 2014-10-13 07:02:35 +02:00
handler Change the operator order of TrafficCounter to calculate the throughput to get the correct result 2014-10-01 06:37:36 +02:00
license Implemented LZMA frame encoder 2014-09-15 15:05:36 +02:00
microbench [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
tarball [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
testsuite Fix buffer leak in DatagramUnicastTest caused by incorrect usage of CompositeByteBuf 2014-09-10 11:42:26 +02:00
transport [#2586] Use correct EventExecutor to notify for bind failures on late registration 2014-08-20 16:34:57 +02:00
transport-native-epoll [#2926] Fix 1 byte memory leak in native transport 2014-09-22 15:11:53 +02:00
transport-rxtx [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
transport-sctp [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
transport-udt [maven-release-plugin] prepare for next development iteration 2014-08-16 03:27:42 +09:00
.fbprefs Updated Find Bugs configuration 2009-03-04 10:33:09 +00:00
.gitignore Add JVM crash logs to .gitignore 2014-05-18 21:36:54 +09:00
.travis.yml Travis CI branch whitelisting 2013-03-11 09:55:43 +09:00
CONTRIBUTING.md Move the pull request guide to the developer guide 2014-03-12 13:13:58 +09:00
LICENSE.txt Relicensed to Apache License v2 2009-08-28 07:15:49 +00:00
NOTICE.txt Implemented LZMA frame encoder 2014-09-15 15:05:36 +02:00
pom.xml Implemented LZMA frame encoder 2014-09-15 15:05:36 +02:00
README.md Add a link to the 'native transports' page 2014-07-21 12:54:24 -07:00
run-example.sh Overall refactoring of the STOMP codec 2014-06-04 17:09:42 +09:00

Netty Project

Netty is an asynchronous event-driven network application framework for rapid development of maintainable high performance protocol servers & clients.

How to build

For the detailed information about building and developing Netty, please visit the developer guide. This page only gives very basic information.

You require the following to build Netty:

Note that this is build-time requirement. JDK 5 (for 3.x) or 6 (for 4.0+) is enough to run your Netty-based application.

Branches to look

The 'master' branch is where the development of the latest major version lives on. The development of all other versions takes place in each branch whose name is identical to <majorVersion>.<minorVersion>. For example, the development of 3.9 and 4.0 resides in the branch '3.9' and the branch '4.0' respectively.