1. Adds a user-agent string to the node announcement. This lets us keep
track of what software version everyone is running. Especially useful
to see what percentage of the network has upgraded to a new release.
For old nodes, this defaults to the string `/radicle/`.
The user agent format is roughly based on BIP 0014.
2. Advertize protocol version in node announcement.
By advertizing the protocol version, nodes can decide to only connect to
peers with a compatible version. The default and current version is `1`.
We bundle these two changes as they both modify the node announcement
and node database.
3. Swap the order of the fields in announcements to make the message
extensible.
Previously, our advertized inventory was not always correct: when we
stopped seeding a repository, it was still advertised as part of our
inventory until node restart, because the `Storage` type doesn't have
access to seeding policies.
In this change, we remove the concept of inventory from `Storage` and
make the authoritative place for it the routing table in our database.
To make this work, we have to add our node to the database on profile
creation, to not violate the foreign key constraint on the routing
table. Hence, the tests are changed to include our alias which is now
always available.
This is a change to the `config.json` file which removes certain options
that are best not touched and changes some options to make them easier
to work with.
1. We change the default journaling mode to "wal" and remove the config
option.
2. We remove the option to set the peer connection "target", as it's not
a good idea to set this to a different value, as it affects the
network.
3. We combine seeding policy & scope, since there's no need to set the
scope when the policy is "block". In that case, we always want to
block "all" remotes. The new policy configuration has the following
schema:
{ seedingPolicy: { default: "block" | "allow", scope?: "all" | "followed" } }
The "scope" key is not used when "default" is set to "block".
4. We add an `extra` field to the node config for options that are not
recognized. We use this to warn the user.
We use the *staggered broadcast* technique when relaying gossip messages
to reduce message amplification. In our basic simulation, it brings
amplification down from 3.5 to 1.5.
The idea is simply to accumulate gossip messages and relay them after a fixed
interval of time. This has two effects:
1) Old messages that haven't been sent yet are replaced by newer ones,
so only one message is sent after the delay.
2) Because nodes have their own intervals, messages are not all sent at
the same time, which reduces the chance of messages crossing paths.
For now we only turn this on for inventory messages, since this is the
least likely to be noticed by users, and also the most problematic
currently.
The previous banning implementation didn't work, since it included port
numbers in the address value.
Here, we keep a separate table with (node, ip) pairs and update this
table when a node connects or is banned.
When deciding whether or not to fetch a repo based on a refs
announcement, we need to know whether our signed refs are stale or not,
compared to the ones in the announcement. This can be quite expensive as
it requires multiple reads from Git's ODB, which often results in
packfile loading.
To remedy this, we introduce a refs cache in our node database that is
consulted when an announcement is received.
We also remove the logic that generates `info` messages, since they are
rarely needed and introduced more complexity.
Additionally, we revert commit 3ad2b4431f,
which introduced logic to minimze wants and haves with additional logic,
since it potentially also increases the load on the ODB.
We create a system for migrating the our databases, as well as a first
migration, for adding a `penalty` field to the `nodes` table, which we
are going to need soon, as an example.
Instead of having a routing database, and an addresses database,
consolidate that in a single database called `node.db`.
We also simplify database access, by providing a single type for opening
the database, and use traits to access the various functions.
We create a new `seed::Store` that has seed-related methods split out of
the `address::Store`.
Note that tracking is still in its own database currently, as it isn't
ephemeral state. This makes it easy to delete the new `node.db` without
risk of losing any important information.
To avoid renaming all database methods, we create a `Stores` wrapper
that allows us to access routing, addresses, seeds etc. without type
ambiguity.
This is a breaking change and requires `addresses.db` and `routing.db`
to be deleted.