Caleb James DeLisle 3fe55c4187 Merged UDPbcastInterface into UDPInterface and made it beacon on a different port 6 年之前
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bugs 630f163505 Fix link for expired domain 6 年之前
cjdns 74c61fcd84 Undocument the optionality of the login. 7 年之前
faq a1fcc91ee2 Fixed 2 broken links in faq/peering 6 年之前
install a330c7a0c6 Update osx instructions 6 年之前
man 74c61fcd84 Undocument the optionality of the login. 7 年之前
meshlocals 5b0a5d3143 Merge branch 'patch-5' of git://github.com/BurnBeforeReading/cjdns into crashey 8 年之前
notes c49cc24869 links update 7 年之前
CjdnsModules.odg 016fac012c Moved ControlHandler up above UpperDistributor in order to make CTRL frames tappable and also updated schematic 7 年之前
CjdnsModules.png 016fac012c Moved ControlHandler up above UpperDistributor in order to make CTRL frames tappable and also updated schematic 7 年之前
README.md adb476eac6 Added spanish translation and links to same, thanks @rjmalagon for the work. 7 年之前
README_ES.md adb476eac6 Added spanish translation and links to same, thanks @rjmalagon for the work. 7 年之前
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SmartOS.md acc6a5f20c doc: add SmartOS 10 年之前
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achievements.md c49cc24869 links update 7 年之前
admin-api.md 73d049ef90 doc/admin-api: match ordering within description to working example 6 年之前
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configure.md 3fe55c4187 Merged UDPbcastInterface into UDPInterface and made it beacon on a different port 6 年之前
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djc_layer_model.md f106779615 Further defined the next protocol version 9 年之前
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network-services.md 4ab2d81e25 documentation on looking at open ports 9 年之前
non-root-user.md d2c025bf11 Add documentation to run as normal user 9 年之前
non-root-user_ru.md a18758dac4 Update translation 8 年之前
open-indiana.md 9caa52321b doc: factored OpenIndiana install into file 10 年之前
projectGoals.md acd2e00619 Fix missing link to distributed hash table wikipedia entry 6 年之前
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shorewall_and_vpn_gateway_howto.md 2a22979661 Fix Markdown formatting 6 年之前
switchfun.txt 3f7f1c98f6 Documenting how to walk the network using keypings 9 年之前
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README.md

Hyperboria/docs

Español

What is Hyperboria?

Hyperboria is test network built of cjdns nodes.

What is cjdns?

Cjdns is an experimental, cryptographic mesh networking suite.

What is notable about cjdns? Why should I use it?

Cjdns builds an end-to-end encrypted IPv6 mesh network that utilizes the fc00::/8 address space.

Encryption

Cjdns provides an encrypted tunnel which utilizes a private/public keypair to encrypt everything that passes through it with the SALSA20 stream cypher, which affords the user perfect forward secrecy.

Address Allocation

The ipv6 assigned to the TUN interface is composed of the first 16 bytes of the SHA512 hash of the SHA512 hash of your public key. Keypairs are generated via a brute force method until a corresponding address is found with a starting byte FC. The FC00::/8 address space has been allocated as a Unique Local Address space, and so these addresses should not conflict with ICANN assigned IPv6 addresses or any other conventional internet operation.

Hybrid topology

Cjdns was designed to be used with a friend of a friend topology. It builds an overlay network which traverses NAT (Network Address Translation), exposing all ports of every node to every other node within the network. Those who are used to relying on NAT to protect their devices may find this troublesome.

At one point it was expected that each person who peered would do so with only trusted friends. You need not trust relaying nodes with the confidentiality or integrity of your packets, however, if you wish to restrict access to certain services, it is your responsibility to implement effective access control rules.

Links between nodes may be established over deliberate UDP links across the internet, or over deliberate or automatic connections across Ethernet, Wireless access points, Ad-hoc connections, or various system-specific transmission and addressing protocols.

Cryptographic verification and routing

Establishing a link between two nodes includes a cryptographic authorization process, after which other nodes within the network can establish a connection with the new node.

Due to the relationship between each node's public key and its ipv6, and the fact that this relationship is verified upon connecting to a node, a user can be sure that if it connects to an IPv6 address and receives a response then the node that responded possesses the requisite private key to decrypt the response.

If you are able to connect at all over cjdns, then you can be quite sure that the node you connected to possesses the private key that corresponds to the IPv6.

How can I get involved?

If you are totally new to cjdns, you'll want to start by installing it somewhere and familiarizing yourself with how it works. Take notes of anything that you find difficult, unintuitive, or poorly documented, and share your knowledge so the next person who installs cjdns after reading the documentation has an easier time.

Also, read our contributing document for notes on our policies for accepting contributions.