The arm64 (apple-silicon) target assumed a native macOS runner, which
does not exist on the forge. There is one self-hosted runner, ws-brn,
registered linux-amd64:host -- jobs run directly on the host as brn,
with no docker. So cross-rs cannot run (no container engine), and it
cannot target apple-darwin from Linux regardless.
Build arm64 by native cross-compilation instead: rustup target add
aarch64-unknown-linux-gnu plus the host's aarch64-linux-gnu-gcc linker.
Same arm64 binary, no docker. The asset is now aarch64-linux.
Also drop the host-incompatible setup steps surfaced by running it on
the real runner: hurl is already installed (the sudo dpkg step failed,
brn has no passwordless sudo) and the aarch64 linker is already present.
Split a single test gate (test + hurl) from the per-target build matrix.
Pass inputs.tag via env to the staging step (sie review note, ANW-30).
Forgejo-side counterpart to the GitHub release.yml (ANW-29). Driven by
workflow_dispatch (UI or API) rather than a release-published event, so a
build can be triggered for a test. Builds the release binary natively per
target, runs the test suite first, and publishes the assets to a Forgejo
release via actions/forgejo-release.
Assumed runner labels linux-amd64 / macos-arm64 must match the forge's
act_runner registration; arm64 needs a native Apple Silicon runner. Flagged
to aav -- correct if the topology differs.
Replace the placeholder README with the full public-facing README, and
switch licensing to BSD 3-Clause per aav's decision on ANW-28: add a single
LICENSE file, drop the dual LICENSE-MIT / LICENSE-APACHE, and update the
Cargo.toml license field to match. README/LICENSE content authored by kaa,
landed verbatim.
Assumed: dropping the old MIT/Apache files and updating Cargo.toml
license = BSD-3-Clause is the consistent completion of aav's BSD decision
(v0.0.0, nothing released relied on the old grant); flag if the dual
license was meant to stay.
On a published GitHub Release, for each target (amd64 Linux, arm macOS) run
the Rust test suite and the hurl HTTP contract tests, build the release
binary on a stable toolchain, and upload it as a target-named asset on the
triggering release. Trigger is release:published per ANW-29 -- aav creates
the release and tag in the UI; the workflow never creates them.
Thin local front-end over ANW-26's merge engine (query::execute_merge):
walk the vault once (vault::scan, same as doctor), evaluate the --query
string, assemble the merged document, write it to stdout. No HTTP, no
watcher, no index. Byte-identical to the HTTP merge mode for the same
vault and query.
Accept: text/markdown on /query concatenates matched note bodies into one
markdown document, each fragment preceded by an HTML-comment source marker.
Adds __anw-order (frontmatter-key ordering, asc/desc, missing-key-last) and
__anw-kind (homogeneity guard, 400 on a mixed merge). Both evaluate over the
full matched set before __anw-limit truncates. Merge mode uses its own
body-cloning projection; the JSON path is unchanged (no body clone).