Add shared axum/reqwest response assertion helpers in fabro-test,
migrate the Rust HTTP test surface to use them, and document the
new rule in the testing strategy.
Phase 2/3 of the std::fs lint initiative (Phase 1 refactors landed in
commit 9d1c0d98c).
clippy.toml additions (appended to disallowed-methods):
std::fs::read, read_to_string, write, read_dir, copy, canonicalize
std::fs::File::open, File::create, File::create_new
std::fs::OpenOptions::open
File::options was deliberately excluded — it returns an OpenOptions
builder with no syscall. OpenOptions::open is where the block happens.
Non-blocking std::fs items (metadata, exists, create_dir_all, remove_*,
rename, and all std::fs types) remain legal.
Annotation policy (per updated plan):
- Mixed async/sync production source: function- or statement-scoped
#[expect(...)] so future accidental Tokio-path regressions in the
same file still fire.
- Fully-sync production source, test modules, integration tests,
build.rs: file-level #![expect(...)].
- Every #[expect] has a specific reason identifying the sync context.
Annotations added in ~90 files across the workspace. Notable narrow
placements: fabro-server server.rs current_server_target,
build_disk_usage_response, create_test_app_state_with_session_key;
fabro-server install.rs read_to_string rollback snapshot;
fabro-sandbox local.rs list_recursive; fabro-agent cli.rs FOLLOW-UP on
the JSON-stdout writer; fabro-llm providers/common.rs FOLLOW-UP for
load_file_as_base64 (7 translator call sites; revisit if file:// URL
usage grows).
build.rs blanket allows: fabro-api/build.rs, fabro-util/build.rs.
Pre-existing unrelated nightly-clippy warnings fixed under scope:
fabro-sandbox sandbox_spec.rs (unused_imports, unused_async),
reconnect.rs (unused_variables, unused_async).
Verified: cargo +nightly-2026-04-14 clippy --workspace --all-targets
-- -D warnings passes; fmt clean; 4129/4131 tests pass (two known
flakes under parallel nextest load, both pass individually and are
unrelated to this change).
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Features like session_sandboxes and retros are server-level capability
flags, not user settings. Expose them on GET /system/info where they
belong alongside other server metadata.
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Replace the internal positional AppState builder with an AppStateConfig
and route both production and test setup through the new config-backed
path. Preserve the in-process test helper behavior while fixing the
ignored max_concurrent_runs argument with a regression test.
Remove the server startup path that inferred dry-run from provider
availability and let run.execution.mode inherit normally from
settings.
Model tests now return skip for unconfigured providers at request
time, completions use the real error path, and the CLI/docs/tests are
updated for the removed server --dry-run flag.
Final mechanical pass: replaces every remaining
`fabro_types::settings::v2::*` import path with
`fabro_types::settings::*` (or the appropriate submodule) across 53
files in 10 crates, then deletes the transitional
`pub mod v2 { pub use super::*; }` alias from
`fabro-types/src/settings/mod.rs`.
No functional changes — all touches are `sed s|settings::v2::|settings::|g`
on import statements and fully-qualified type paths. The v2
namespace is now fully gone; the authoritative module path is
`fabro_types::settings::{accessors, cli, duration, features, interp,
model_ref, project, run, server, size, splice_array, tree, version,
workflow}`.
All 3,758 workspace tests pass. `cargo fmt --check --all` and
`cargo clippy --workspace -- -D warnings` are clean.
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Extends the stage 6.1 WIP into a compiling state across the workspace.
Most crates and their unit/integration tests now read run.* / cli.* /
server.* v2 layers directly or through targeted bridge helpers.
Key moves in this commit:
fabro-server
- AppState.settings: Arc<RwLock<SettingsFile>> -- all helpers,
create_app_state_with_* factories, and tests updated.
- api_server_settings bridges SettingsFile -> legacy Settings via the
transitional bridge so /api/v1/settings still emits the legacy DTO
shape until Stage 6.6 replaces it with an allow-list DTO.
- get_system_info, get_system_df, get_github_repo, webhook startup, and
other read sites use the v2 accessors (github_app_id_str,
server_web, run_sandbox, run_model_*).
- web_auth.rs wraps each oauth / register / setup-status handler in a
local `bridged` helper that produces a legacy Settings from the v2
state, so the complex oauth mutation flow keeps working until its
Stage 6.6 rewrite.
- diagnostics::check_github_app reads via github_*_str accessors;
check_crypto bridges to the legacy shape inline.
- serve.rs: load_settings returns SettingsFile; apply_serve_overrides /
apply_runtime_settings mutate v2 subtrees directly; the config poll
loop and TLS/webhook startup use bridged() for legacy-shape reads.
- Tests in tests/it/{helpers,api/*,scenario/*} rewritten to construct
SettingsFile via ConfigLayer::parse or v2 struct literals.
fabro-workflow
- Every test fixture in pipeline/{finalize,initialize,pull_request,retro,
execute,persist}, operations/{create,rebuild_meta,start}, run_lookup,
runtime_store, handler/manager_loop, and tests/it/{integration,
daytona_integration}.rs now uses SettingsFile.
- start.rs hooks into the bridge helpers directly via use-imports.
- run_graph / run_graph_from_checkpoint / initialize / finalize /
pull_request calls are Box::pin'd to stay under clippy's large-future
threshold after the v2 tree brought RunOptions size up.
- resolve_run_settings writes resolved model/provider back into
run.model as InterpStrings; tests assert via run_model_*_str().
- preprocess_and_validate pulls vars from run_inputs_as_strings().
fabro-cli
- manifest_builder uses ConfigLayer.combine(...).into() to get a v2
SettingsFile for the manifest goal resolution path; file-based
goal_file handling is deferred to 6.6 when the manifest schema catches
up.
- runner::maybe_build_github_app_credentials and
tests/it/cmd/{create,runner}.rs read from v2 accessors.
- commands/config/mod.rs::merged_config returns SettingsFile; the
server-side retrieve_server_settings is bridged via a stopgap
legacy_settings_to_v2 shim that Stage 6.6 replaces.
- commands/store/dump.rs sample_run_record constructs SettingsFile.
fabro-store, fabro-checkpoint
- Test fixtures constructing RunRecord values updated to SettingsFile.
- fabro-checkpoint/src/author.rs stays (v2 From impl landed in a
previous additive commit).
fabro-config
- effective_settings.rs rewrite compiles and passes its unit tests.
- project::resolve_working_directory takes &SettingsFile.
Build status: `cargo build --workspace --tests`, `cargo clippy
--workspace -- -D warnings`, and `cargo fmt --check --all` all pass.
`cargo nextest run --workspace` passes 3,749 of 3,764 tests; the 15
remaining failures are fabro-cli integration tests whose snapshot +
TOML fixture shapes still need manual updates:
- cmd::config::* (seven tests): fixture TOML files still use v1
top-level keys and the snapshot outputs expect the legacy flat JSON
shape.
- cmd::inspect::* (four tests): run-record JSON snapshots embed the
flat Settings shape.
- cmd::run::dry_run_persists_event_history_in_store and
json_run_implies_auto_approve_for_human_gates: check `settings.dry_run
== Some(true)` directly on the v2 file; should assert
dry_run_enabled() instead.
- cmd::attach::attach_json_errors_without_prompting_for_human_input:
unrelated insta snapshot drift caused by the new SettingsFile JSON
shape leaking into an events-log snapshot.
Follow-up work for this stage also includes:
- Rewriting web_auth.rs register flow to emit v2 TOML directly and to
re-parse the written file back into state.settings so in-memory
state doesn't lag the on-disk file.
- Removing the legacy_settings_to_v2 shim in fabro-cli/config once
the server-side settings endpoint returns v2 shapes (Stage 6.6).
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Move subprocess workers fully behind the server-owned run store by
switching worker/server coordination to HTTP-backed run events and
control state. Reconcile stale in-flight runs on boot, terminate live
workers during shutdown, and update process titles to reflect server and
worker lifecycle phases.