Move logging-related module `radicle::logging` into its own crate.
While at it, remove the "logger" feature flag from `radicle`.
Co-authored-by: Lorenz Leutgeb <lorenz.leutgeb@radicle.dev>
With `connect: std::collections::HashSet`, we suffer unpredictable reordering
of values in our test cases.
Use `connect: indexmap::IndexSet` instead, which preserves insertion
order for iteration.
This makes the `radicle-ssh` crate obsolete.
Signed-off-by: Wiktor Kwapisiewicz <wiktor@metacode.biz>
Co-authored-by: Lorenz Leutgeb <lorenz.leutgeb@radicle.xyz>
Split up signed references into its read and write components.
On the write side:
- Preserve the old behavior of writing references to the blob `/refs`
and sign over the blob.
- Ensure `refs/rad/root` is contained in the `/refs` blob.
- Ensure `refs/rad/sigrefs` is *not* contained in the `/refs` blob.
- Introduce a new (internal) reference `refs/rad/sigrefs-parent`
so that no two `/refs` blob are equal, even if they contain
the same set of (non-internal) refs.
On the read side:
- Preserve the verification of the signature in `/signature` and
the reference `refs/rad/root` (if present).
- Fail verification of `refs/rad/root` is not present.
- Protect against replay attacks by walking the history of the
head of `refs/rad/sigrefs`, skipping interpretation of `/refs`
blobs in case they are identical to a previous `/refs` blob.
This is achieved by searching for repeated contents of the
`/signature` blob.
The reference `refs/rad/sigrefs-parent` is never read from or written to
the Git repository in storage.
The pre-existing implementation of signed references did not include
a nonce, thus duplicate but legitimate sets of references could not
be distinguished from maliciously replayed sets of references.
The new implementation uses `radicle-git-metadata` which is moved from
`dev-dependencies` to `dependencies`.
The `SeedingPolicy` type now requires a `Scope`, however existing
configurations allow it to not be specified.
Introduce a `radicle::node::config::Scope` type that allows for an
optional `policy::Scope`. The default value resolves to
`policy::Scope::All`. This preserves backwards compatibility for
existing configurations.
Recent versions of Windows support Unix Domain Sockets natively, see
<https://devblogs.microsoft.com/commandline/af_unix-comes-to-windows/>.
By using that feature instead of Windows named pipes, the difference
for handling communication via the control socket comparing Unix-like
systems and Windows becomes smaller:
1. No special paths like `\.\pipe\…` have to be handled.
2. Not two I/O mechanisms are abstracted (named pipe and UDS) but
just one.
3. `winpipe` relies on background threads while `uds_windows` does
not.
Once the feature `windows_unix_domain_sockets` (which is tracked at
https://github.com/rust-lang/rust/issues/150487) stabilizes, it will
likely be possible to just drop the dependency `uds_windows` and use
the implementation in `std::os::windows::net` directly.
Introduce the `radicle-core` crate for housing data types that are at
the core of the Radicle protocol. The initial data type being added is
`RepoId`. To make the crate as lightweight as possible many of
dependencies are optional and gated by feature flags.
The crate is marked as `no_std` even though it unconditionally depends
on `radicle-crypto`, which is *not* `no_std`. This is to invite
refactoring of `radicle-crypto` to `no_std` at a later time.
The `localtime` crate was defined by cloudhead, and is a minimal
repository with a single `lib.rs`.
Instead of using it as an external dependency, copy the code directly
into a new workspace crate `radicle-localtime`.
The default `serde` implementation goes through the `LocalTime`'s
seconds values rather than milliseconds, since this is the more common
format. This allows the removal of the `serde_ext` functions.
The one place milliseconds was used was for the
`radicle::cob::common::Timestamp` type, where the `Serialize` and
`Deserialize` implementations are manually written.
It also adds a `schemars` feature to remove `schemars_ext` functions
in `radicle` as well.
Make `git2` an *optional* dependency of `radicle-cob`, and refactor
`radicle` to depend on crates that in turn do not depend on `git2`
*non-optionally*
The main offending dependency of `radicle-cob` is `radicle-git-ext`
from the `radicle-git` workspace in repository
(rad:z6cFWeWpnZNHh9rUW8phgA3b5yGt) which *non-optionally* depends on
`git2`.
So, to achieve removal of this dependency:
1. The crate is refactored to depend on the new crates
`radicle-git-ref-format` `radicle-git-metadata`, and
`radicle-oid` introduced in the previous commits, instead of
`radicle-git-ext`.
2. Some code from the `radicle-git-ext` crate in the `radicle-git`
workspace in repository (rad:z6cFWeWpnZNHh9rUW8phgA3b5yGt) is
copied. See `crates/radicle-cob/src/backend/git/commit.rs`.
This cascades to `radicle` and its dependents.
Firstly, the there is an
`impl Deref<Target=git2::Oid> for radicle_git_ext::Oid`. This made
it very convenient to just deref to obtain the wrapped `git2::Oid`,
so there are many expressions of the shape `*oid` in `radicle` and
its dependents. However `radicle-oid` does not provide
`impl Deref<Target=git2::Oid> for radicle_oid::Oid`, as notably,
`Target` is an associated type, and not a type parameter, so an
implementation of `Deref` would tie the new `Oid` too tightly to a
particular implementation.
Instead, work with `impl From<radicle_oid::Oid> for git2::Oid`
(which can be enabled using the feature flag `radicle-oid/git2`).
This explains the changes from `*oid` to `oid.into()` at every
transition to "`git2` land".
Secondly, `radicle` and its dependents are refactored to also depend
on `radicle-git-ref-format` and (much less prominently)
`radicle-git-metadata` instead of `radicle-git-ext`
This is to avoid pulling in `git2` via these dependencies.
Thirdly, as the re-exports in `crates/radicle/src/git.rs` change,
they are at the same time also cleaned up. Notably, the types from
`radicle-git-ref-format` are re-exported under `fmt` only, not "twice".
While overall this obviously is very much a breaking change, these
changes should mostly amount to changing from `Deref` to `Into`, i.e.,
`*oid` → `oid.into()` and rewriting imports for `radicle::fmt`.
This is indicated by the mostly mechanical nature of the changes to
`crates/radicle-{cli,node,remote-helper}`.
For further details on the crate see its documentation in
`crates/radicle-oid/src/lib.rs`.
Changes to `crates/radicle{,-crypto}/Cargo.toml` are to preserve the
default features of their dependencies `serde` and `schemars`,
which are disabled to support `radicle-oid` being `no_std`.
In commit 2149770a4b the dependency
`tempfile` was made optional, and added to be enabled by the feature
flag `test`. However, the *tests of this crate itself* need the
dependency *unconditionally* as they want to create temporary
directories.
This was not noticed earlier, since the error does not surface when
the whole workspace is tested (`cargo test --workspace`), but only
when the crate itself is tested (`cargo test --package=radicle`),
because when testing the workspace, dependents of `radicle` will
enable the `test` feature flag.
The `git-ref-format-core` crate is enough to implement everything
required by `radicle-crypto`, and has a much smaller dependency
footprint than `radicle-git-ext`. Notably, it does not depend on
`git2` and also does not depend on procedural macros.
On Windows, all attempts to clone repositories failed with
Fetch failed for rad:… from z6Mk…: Access is denied. (os error 5)
The reason is that, other than Unix-like systems, it forbids that
directories that are in use are moved.
To improve the situation, take back control over what is moved and
removed exactly by implementing `cleanup` instead of relying
on `impl Drop for tempfile::TempDir`.
A new type `TempRepository` is introduced to capture a repository that can be
used temporarily, and either cleaned up on failure, or moved on success.
This `TempRepository` can be constructed using `Storage::temporary_repository` –
renamed from `Storage::lock_repository` since it is only creating a temporary
resource and not locking it.
In the future (once Rust 1.89 is a little less cutting edge and more
widely available), we may opt for actual locking via
`std::fs::File::lock`.
Microsoft Windows has Universal Naming Convention (UNC) paths, see
<https://learn.microsoft.com/en-us/dotnet/standard/io/file-path-formats#unc-paths>
The Rust standard library normalizes paths to this form when calling
`std::fs::canonicalize`, see
<https://doc.rust-lang.org/std/fs/fn.canonicalize.html>
However, some programs, do not parse these paths correctly, including
our ally `git`:
$ git clone \\?\C:\Users\lorenz\tmp
Cloning into 'tmp'...
ssh: Could not resolve hostname \\\\?\\c: No such host is known.
fatal: Could not read from remote repository.
Please make sure you have the correct access rights
and the repository exists.
The `dunce` crate solves the problem of having to deal with
normalization and avoiding weird UNC paths for us. Note that on
non-Windows platforms, it *behaves exactly like*
`std::fs::canonicalize`!
The upgrade of the `radicle-crypto` crate was missed when upgrading
semver versions.
Unfortunately, since it is at the base of the dependency tree, all
crates that depend on it require an additional upgrade.
Introduce the `rules` module beneath `canonical`. The implementation follows
the Canonical References RIP[^0].
A `Rule` defines the DIDs and threshold required to get the canonical tip
for a reference (or set of references). Since a `Rule` has some specific
validation rules, there can be two versions of a `Rule`. The `RawRule` is one
that can be easily constructed, serialized, and deserialized. It must then be
validated into a `ValidRule`, which validates any constraints, and can be used
in the computing of a canonical tip.
For convenience, a set of `ValidRule`s is wrapped into the `Rules` type, which
also has a further constraint that each rule refers to a specific `refspec`.
[0]: 1d1ce874f7
Prepare the crates for releasing to crates.io:
- radicle-remote-helper: 0.10 -> 0.11
- radicle-term: 0.12 -> 0.13
- radicle-cli: 0.13 -> 0.14
- radicle-node: 0.11 -> 0.12
- radicle-fetch: 0.11 -> 0.12
- radicle: 0.15 -> 0.16
It was also necessary to specify the `version` in the workspace Cargo.toml file,
since this is required for publishing to crates.io.
The `Review::summary` was limited in behaviour, since it was only an
`Option<String>`.
The field is now changed to `NonEmpty<Edit>` so that it can enable an edit
history, as well as being able to supply embeds as part of the text.
`Reactions` are also introduced to `Review` and, necessarily, introducing an
`Action::ReviewReact`.
Note that some machinery was added under `actions` and `encoding` to enable
backwards-compatibility.
For `actions`, a new `ReviewEdit` is introduced to keep
track of the different versions of editing actions – supporting the old actions
while also introducing the new variant.
For `encoding`, the machinery exploits the fact that an `Option<String>` can be
converted into a `NonEmpty<Edit>` given that an `ActorId` and `Timestamp` are
available, and that `None` can be converted into an empty string. The struct
`patch::Review` now deserializes via this `encoding::review::Review` type and,
importantly, preserves backwards-compatibility.