We move the session address to the top-level struct, since it's needed
in a bunch of places. This change is required for the rate-limiting
code that is coming next.
Improve the logic when choosing addresses to connect to. Previously we
would wait much too long, even for good addresses. This was especially a
problem when the reason for disconnection was simply a node restart.
As a starting point, we populate the address book (if empty) with some
bootstrap nodes which are trusted.
To prevent these nodes being connected to during tests (including e2e
tests), we create a new constructor for `Config` that is used in tests.
Note that a `cfg(test)` check is not enough given that e2e tests don't
have that set.
Instead of using a command name plus arguments, we use a new `Command`
enum that is similar to the one in `radicle_node::service`. This way,
we're able to have more complex commands and parsing is simplified.
It turns out that the CRDT formed by the union of Git DAGs
is enough to guarantee everything we need for COBs.
This changes the following things:
* COB operations no longer need to be commutative
* COB histories are traversed in the same deterministic order on all
replicas
* It's now possible to implement RSMs on top of COBs, eg. scripting
* Lamport clocks have been removed
* `radicle-crdt` is no longer a dependency of `radicle`
* COBs are no longer instances of `Semilattice`
* The `Ops` type was removed in favor of having `Op` contain multiple
actions
This commit addresses a workaround previously implemented to
include the SQLite library bundled inside the binary.
The upstream have successfully merged the patch that implements this
solution [1], allowing us to safely incorporate it
into our codebase.
[1] Link to the merged patch: https://github.com/stainless-steel/sqlite/pull/71/files
Fixes: 431a389944
Signed-off-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com>
Help users confirm all their radicle binary versions by providing the
'--version' flag.
Move the print_version function to the radicle crate for use by the node
and remote-rad binaries, and remove tests to confirm the output format
as it is deemed redundant.
Co-Developed-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com>
Instead of asking for the passphrase in `radicle-node`, we expect the
`RAD_PASSPHRASE` env var to be set.
This keeps `radicle-node` simpler and lower level, while the passphrase
prompt is still available via `rad node start`.
This new trait is used when only signing refs is needed, and not general
write access to a repository.
We also implement `ReadRepository` and `SignRepository` for
`DraftStore`.
The tracking database can be opened in read-only or read-write
mode. Knowing which is being used is significant in concurrent
scenarios, e.g. it's safer to have a read-only handle on multiple
threads.
Provide static type information by signifying what kind of database
handle is being worked with, read or read-write.
Signed-off-by: Fintan Halpenny <fintan.halpenny@gmail.com>
X-Clacks-Overhead: GNU Terry Pratchett
This is a fairly substantial change, which adds a new configuration file
to the user's `$RAD_HOME` that includes node configuration, including
the alias, and also makes node aliases required.
When running `rad auth`, the user is now prompted for an alias, which
defaults to `$USER`.
When running `rad self`, the alias is now shown.
If the user runs radicle without a config file, the defaults are loaded,
and `$USER` is used as the alias.
* Add `--home` flag
* Organize the information better
Now looks like this:
DID did🔑z6MknSLrJoTcukLrE435hVNQT4JUhbvWLX4kUzqkEStBU8Vi
└╴Node ID (NID) z6MknSLrJoTcukLrE435hVNQT4JUhbvWLX4kUzqkEStBU8Vi
SSH running (823)
├╴Key (hash) SHA256:UIedaL6Cxm6OUErh9GQUzzglSk7VpQlVTI1TAFB/HWA
└╴Key (full) ssh-ed25519 AAAAC3NzaC1lZDI1NTE5AAAAIHahWSBEpuT1ESZbynOmBNkLBSnR32Ar4woZqSV2YNH1
Home [..]
├╴Storage [..]/storage
├╴Keys [..]/keys
└╴Node [..]/node
For the purposes of debugging running nodes, it's useful to know which
threads are doing what. This allows tools like `htop` to reveal which
threads are running.
We consolidate the setup done by `rad checkout`, `rad clone` and `rad
remote add`, so that they all check for node aliases, and are all
capable of setting up tracking branches etc.
* Return the correct alias from a node announcement, stripping '\0'
bytes.
* Accept `AliasStore` types as references and as owned.
* Store a `null` in the database if the alias received is empty.
Most of the test flakiness was caused by the git-daemon not being able
to bind to a port. It seems like using an RNG was not a good enough
solution.
After this change, tests seem to be passing without issue.
Our build was faking the inclusion of SQLite and dynamically
linking it in the 'radicle' crate and other components.
This patch solves the following error and requires reinstallation
of the `radicle-cli`, `radicle-node`, and, if used, the `radicle-httpd`
```
✗ Sync failed: internal error: malformed database schema (node-policies) - near "strict": syntax error (code 11): malformed database schema (node-policies) - near "strict": syntax error (code 11)
```
Tested-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com>
Signed-off-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com>
Previously, we only sent the announcement when there were external
addresses. But it contains other information like the node alias,
therefore we always send it.
Since the proof-of-work can be expensive to compute everytime, we add
the ability to load the local node announcement from the file system.
We also change the proof-of-work parameters so that they are relaxed
when running in debug mode, instead of when running tests.
Finally, we remove the boolean validation of the PoW. Instead, we store
the work per-node, in the database, to be used in the future in case of
DoS attacks or network congestion.
Previously, only one connection to the node control socket could be
handled at a time. This usually worked fine, but if one connection hangs
for whatever reason, no other process can access the node.
It turns out it's possible to create a deadlock when using
`child.wait()` with `Stdio::piped()`, if we don't read the output while
the child process is running. This is because the pipe has an internal
kernel buffer that will eventually fill up, causing the child process to
block on writing to stdout and never exit.
To remedy this situation, we read the stdout in a thread while the child
process is running.