Two blocking, two major. All four accepted and verified in the code
before the doc changed.
Sharing one cwd resolver between the prompt and the run does not
prevent drift. `pmacs.minibuffer.read` is asynchronous, nothing freezes
the active window while a prompt is open, and `run` re-resolved at
accept time — so the prompt could offer `cargo build` for A and execute
in B. Two calls to the same resolver at two different moments are still
two different answers. The interactive command now captures
`context()` and passes its `cwd` through to `run`. This is Journey
Stage 1a's `commit_to` discipline on a smaller seam: capture at request
time, never re-derive from whatever is ambient when the async work
lands.
No pin crossed the accept boundary. N1-N5 compared values the prompt
and the resolver had already agreed on, so a wrong directory inside
`on_accept` — exactly the defect above — passed every one of them. Two
pins now accept: N3 switches windows between prompt and RET and reads
the directory back two ways, and N4 accepts `cargo build` unedited in a
real Cargo fixture and asserts a clean exit.
N3's old falsifier was not discriminating: `project_root_of_active()`
already returns the innermost root, so re-detecting from it yields the
same kind and the pin would have stayed green. The mixed-fixture pin is
now N5 with a falsifier it actually catches, and says what it does not.
And §6.1 contradicted §3.1 — a Cargo workspace subdirectory holds no
`Cargo.toml` and correctly receives `cargo build`. The predicate is a
detected project, not a file in that one directory.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Lv428Fth9LRtffwJSsqH7T
`COHERENCE.md` §20 Priority 1 names Journey Stage 1b as the golden
journey's remainder and it had no branch, no framing, and no lane —
the only §20 priority with nothing in flight. This frames the first
third of it: journey step 9, build or test the project.
Scope is a global `C-c c` for `compile.run` plus a first prompt
prefilled from the detected project kind instead of empty. Lua, tests
and docs; no Rust change, no protocol change. LSP spawn guidance and
the welcome buffer are separate stages (§7).
Three ground-truth findings the framing rests on:
- `ProjectKind::Cargo` does not exist. COHERENCE names it twice; the
variant is `ProjectKind::Rust` and line 77 is its doc comment. Lua
matches the tag string `pmacs.project.detect` already returns, so
the stage needs no new Rust primitive.
- The compile cwd is resolved inside `run`, after the prompt closes,
so a suggestion built in the command's `fn` would obey a different
rule than the run. The stage extracts one resolution and has both
consume it.
- The last-resort cwd is `std::env::current_dir()` at call time, which
in tests is the pmacs repo root — itself a Cargo project. Negative
pins are built so that fallback is never reached.
Records one limitation rather than fixing it: after `pmacs <dir>` the
active buffer is dired's and pathless, so the cwd falls through to the
process cwd. That needs COHERENCE §8's execution-location model, not a
reach into dired's private handle table.
Adds the journey lane to the active-work ledger.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Lv428Fth9LRtffwJSsqH7T