Canonical references can not be used to model symbolic references.
Relax this restriction by adding another member to the payload, named
"symbolic". Its key-value/name-target pairs then translate directly to
canonical symbolic references.
Care is taken to not allow circular references, and that there always
is a rule that could generate the target of a symbolic reference
(or a chain of symbolic references). Still, a symbolic reference may
dangle (for example when its target reference cannot be computed
because of divergence), but at least it can be prevented that a
symref *always* dangles, because there is no rule that would produce
its target.
Co-authored-by: Fintan Halpenny <fintan.halpenny@gmail.com>
Update the output of `rad_jj_colocated_patch` so that it passes with the current version of `jj` being used:
```
jj --version
jj 0.35.0
```
Mark `rad_jj_bare` as `ignore` since it currently cannot determine the
RID from the `rad` remote.
Rust (since 1.62) ignores EPIPE by default (see [Rust #62569]),
causing writes to closed pipes to return `io::ErrorKind::BrokenPipe`
errors. The `println!` macro panics on these errors, producing a
confusing backtrace instead of the silent exit expected of Unix CLI
tools.
To avoid the use of `print!` and `println!`, the `radicle-term`
helper functions use `write!` and `writeln!`. This lays the groundwork
for the `rad` CLI to transition to using only `radicle-term`
functions.
There was a first attempt made, which is documented here. A
process-wide SIGPIPE reset (`SIG_DFL`) was ruled out because `rad`
manages child processes via libgit2 pipes and communicates with the
radicle node over Unix sockets. Resetting SIGPIPE globally caused
`rad` itself to be killed during internal pipe operations (e.g. during
`rad remote add --fetch`), producing flaky test failures.
[Rust #62569] https://github.com/rust-lang/rust/issues/62569
Add tests that verify the `rad` binary does not panic when its stdout
is a broken pipe (e.g., `rad config | head -1`).
Rust (since 1.62) ignores SIGPIPE by default (see [Rust #62569]),
causing `println!` to panic with "failed printing to stdout: Broken
pipe" instead of exiting silently. This is the standard Unix behaviour
expected of CLI tools.
These tests currently fail on `rad config` and `rad self`, and are set to `ignore`, to be enabled when fixed.
[Rust #62569]: https://github.com/rust-lang/rust/issues/62569
Instead of passing the signer as an argument to many methods on `Store`,
scope the `Store` itself to a signer.
This further allows to differentiate two different access modes on the
store in `radicle::cob::store::access`: `WriteAs` (which requires signer)
and `ReadOnly` (which does not require a signer).
The caches for issues and patches in `radicle::cob::{issue,patch}::Cache`
are concretised by removing the first type parameter, since it was
specific to issues and patches anyway. This was done in this commit as
it touches very similar usage sites.
Make `Device` less prominent, and instead lean more heavily towards
traits from the `signature` crate, such as `Keypair` and `Verifier`
in addition to `Signer`. Trait bounds regarding `Signer` could be
simplified, but this is left for the future.
In `radicle-cli`, the function `term::cob::patches_mut`, which generates
errors with a hint is used instead of the lower-level `Profile::patches_mut`.
Commands `rad issue cache` and `rad patch cache` now construct a
writeable cache on top of a read-only store.
Many knock-on changes are handled as well, to arrive at a clean state.
Teach the `rad sync` and `rad clone` commands to accept the
`--signed-refs-feature-level` option. This option configures that
fetch to use the minimum feature level provided when fetching from
other nodes. This overrides the value of
`node.fetch.signedReferences.featureLevel.minimum`, and should only be
used in scenarios where it is necessary to downgrade the security of a
fetch for backwards compatibility.
To achieve this, the `Handle::fetch` method introduces an optional
parameter for threading through the `FeatureLevel`.