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Add documentation
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@ -16,7 +16,7 @@ build_script:
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- bash -c '~/.cargo/bin/sccache -s'
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- bash -c '~/.cargo/bin/sccache -s'
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- ps: $env:BUILD_NAME="naiveproxy-$env:APPVEYOR_REPO_TAG_NAME-win64"
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- ps: $env:BUILD_NAME="naiveproxy-$env:APPVEYOR_REPO_TAG_NAME-win64"
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- bash -c 'mkdir $BUILD_NAME'
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- bash -c 'mkdir $BUILD_NAME'
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- bash -c 'cp src/out/Release/naive.exe src/config.json LICENSE $BUILD_NAME'
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- bash -c 'cp src/out/Release/naive.exe src/config.json LICENSE USAGE.txt $BUILD_NAME'
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- bash -c '7z a $BUILD_NAME.zip $BUILD_NAME'
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- bash -c '7z a $BUILD_NAME.zip $BUILD_NAME'
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test_script:
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test_script:
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- bash -c './tests/basic.sh src/out/Release/naive'
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- bash -c './tests/basic.sh src/out/Release/naive'
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@ -28,7 +28,7 @@ script:
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- ./tests/basic.sh src/out/Release/naive
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- ./tests/basic.sh src/out/Release/naive
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- export BUILD_NAME="naiveproxy-$TRAVIS_BRANCH-$TRAVIS_OS_NAME"
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- export BUILD_NAME="naiveproxy-$TRAVIS_BRANCH-$TRAVIS_OS_NAME"
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- mkdir $BUILD_NAME
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- mkdir $BUILD_NAME
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- cp src/out/Release/naive src/config.json LICENSE $BUILD_NAME
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- cp src/out/Release/naive src/config.json LICENSE USAGE.txt $BUILD_NAME
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- tar cJf $BUILD_NAME.tar.xz $BUILD_NAME
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- tar cJf $BUILD_NAME.tar.xz $BUILD_NAME
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deploy:
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deploy:
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provider: releases
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provider: releases
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65
README.md
65
README.md
@ -1,20 +1,69 @@
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# NaiveProxy
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# NaiveProxy [![Build Status](https://travis-ci.com/klzgrad/naiveproxy.svg?branch=master)](https://travis-ci.com/klzgrad/naiveproxy) [![Build status](https://ci.appveyor.com/api/projects/status/ohpyaf49baihmxa9?svg=true)](https://ci.appveyor.com/project/klzgrad/naiveproxy)
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A secure, analysis-resistent proxy framework.
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A secure, analysis-resistent proxy framework.
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The primary security goal is availability in presence of pervasive censorship. Nevertheless, privacy and integrity are simultaneously achieved through implementations of TLS best practices.
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The main goal is to improve censorship resistence by reducing distinguishable traffic features. Privacy and integrity are simultaneously achieved through implementations of TLS best practices.
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The main attacks considered:
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The following attacks are mitigated:
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* Website fingerprinting / traffic classification: [mitigated](https://arxiv.org/abs/1707.00641) by traffic multiplexing in HTTP/2.
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* Website fingerprinting / traffic classification: [mitigated](https://arxiv.org/abs/1707.00641) by traffic multiplexing in HTTP/2.
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* [TLS parameter fingerprinting](https://arxiv.org/abs/1607.01639): defeated by using identical behaviors from [Chromium's network stack](https://www.chromium.org/developers/design-documents/network-stack).
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* [TLS parameter fingerprinting](https://arxiv.org/abs/1607.01639): defeated by using identical behaviors from [Chromium's network stack](https://www.chromium.org/developers/design-documents/network-stack).
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* [Active probing](https://ensa.fi/active-probing/): defeated by application fronting, using a common frontend with application-layer routing capability, e.g. HAProxy.
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* [Active probing](https://ensa.fi/active-probing/): defeated by application fronting, using a common frontend with application-layer routing capability, e.g. HAProxy.
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* Length-based traffic analysis: mitigated by length padding.
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* Length-based traffic analysis: mitigated by length padding.
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There are three setups:
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## Download
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* The portable setup doesn't ask you to build any code or run anything client-side, but it is prone to traffic analysis due to lack of length padding. See [Linux Quick HOWTO](https://github.com/klzgrad/naiveproxy/wiki/Linux-Quick-HOWTO).
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See [latest release](https://github.com/klzgrad/naiveproxy/releases/latest).
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* The fast setup improves performance by having a client. See "Fast client" in [Linux HOWTO](https://github.com/klzgrad/naiveproxy/wiki/Linux-HOWTO).
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* The resistent setup implements length padding upon the fast setup by requiring an extra server. See "Obfuscated tunnel" in [Linux HOWTO](https://github.com/klzgrad/naiveproxy/wiki/Linux-HOWTO).
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The application is entirely based on Chromium's code base and build system. The master branch contains a minimal set of files that are changed from Chromium stable, for ease of code review. The version branches contain a minimized but still large buildable codebase with the same changes.
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Note: On Linux libnss3 must be installed before using the prebuilt binary.
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## Build
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If you don't like to use downloaded binaries, you can build it.
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* Prerequisites:
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* Ubuntu (apt-get install): git, python2, ninja-build (>= 1.7), pkg-config, libnss3-dev, ccache (optional)
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* MacOS (brew install): git, ninja, ccache (optional)
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* Windows ([choco install](https://chocolatey.org/)): git, python2, ninja, visualstudio2017community. See [Chromium's page](https://chromium.googlesource.com/chromium/src/+/master/docs/windows_build_instructions.md#Visual-Studio) for detail on Visual Studio setup requirements.
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Build it:
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```
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git clone https://github.com/klzgrad/naiveproxy.git
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cd naiveproxy/src
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./get-clang.sh
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./build.sh
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```
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The build scripts download tools from Google servers with curl. If there is trouble try to set a proxy environment variable for curl, e.g.: `export ALL_PROXY=socks5h://127.0.0.1:1080`.
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Verify:
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```
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./out/Release/naive --log &
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curl -v --proxy socks5h://127.0.0.1:1080 google.com
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```
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## Setup
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Server setup is required first, see [Server Setup](https://github.com/klzgrad/naiveproxy/wiki/Server-Setup).
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There are three tiers of client setup:
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* The portable setup is clientless: point your browser directly to the server as an HTTPS proxy. You don't need to download, build, or run anything client-side, but this setup is prone to traffic analysis due to lack of obfuscation.
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* The fast setup improves performance by running Naive client locally as a SOCKS5 proxy. Point your browser to the address of Naive client. You don't need to run Naive server in this setup.
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* The full setup obfuscates traffic by running both Naive client and server. Point your browser to the local SOCKS5 proxy provided by Naive client.
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To run Naive client:
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```
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./naive --proxy=https://user:pass@domainname.example
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```
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You can also store the config in `config.json`, example:
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```
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{
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"proxy": "https://user:pass@domainname.example"
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}
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```
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Naive client will detect and read from `config.json` by default. The default listening port is 1080 as SOCKS5.
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For more information on parameter usage and Naive server, see USAGE.txt.
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See also [Parameter Tuning](https://github.com/klzgrad/naiveproxy/wiki/Parameter-Tuning) to improve client-side performance.
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72
USAGE.txt
Normal file
72
USAGE.txt
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Usage: naive { OPTIONS | [/path/to/config.json] }
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Description:
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naive is a proxy to transport traffic as Chromium traffic. It can be
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used as both the client and the server or together.
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There are two ways to specify options. The first is through command
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line flags: naive OPTIONS. The second is through a JSON
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configuration file. If there are no command line flags or path
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specified, it will try to read from "config.json" by default.
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The syntax of config.json fields are mapped exactly to command line
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flags, e.g.
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{
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"proxy": "https://user:pass@example.org"
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}
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is exactly the same as --proxy=https://user:pass@example.org. All
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command line flags must have string values in config.json, except if
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the flags are boolean then they must have boolean values too.
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Options:
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-h, --help
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Shows help message.
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--version
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Prints version
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--listen=<proto>://[addr][:port]
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Listens at addr:port with protocol <proto>. Allowed values for
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proto: "socks", "http". The default proto is socks. The default
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addr is 0.0.0.0. The default port is 1080.
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--proxy=<proto>://[<user>:<pass>@]<hostname>[:<port>]
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Routes traffic via the proxy server. Allowed values for proto:
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"https", "quic". The value of port is inferred from proto if not
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specified. If hostname is an IP address, an internal host
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resolver rule is setup to resolve "example" to it to make TLS
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certificate validation work.
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If this option is not set, connects to origin server directly.
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--padding
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Obfuscates traffic by adding length paddings.
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--host-resolver-rules=...
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This is the same as Chromium's flag of the same name. Google it
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as the full description is too technical.
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--log=[<path>]
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Saves log to the file at <path>. If <path> is empty, prints to
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console.
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If this option is not set, no log is saved for privacy.
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--log-net-log=<path>
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Saves NetLog. View at https://netlog-viewer.appspot.com/.
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--ssl-key-log-file=<path>
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Saves SSL keys for Wireshark inspection.
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