Previously two distance-only clues whose circles didn't actually
intersect (real typewriter data isn't perfectly consistent, a
misplaced spotter or an off-by-a-bit distance reading is enough) just
gave up entirely, even when they were nearly touching.
solver.closest_compromise_point() picks the midpoint between each
circle's point facing the other, the standard notion of the closest
approach between two circles. It stays well-behaved even when the
centers are nearly coincident, unlike projecting along the center
line the way a real intersection's formula does, which diverges as
the centers get close while the radii stay far apart, exactly the
near-coincident case this is for.
The result is flagged rather than treated as a clean fix: Location
gained a field, set whenever solve_location() had to use this
fallback, cleared by any subsequent coord.setter call (manual or
solver), shown in the entity's status label and toasted after a
manual clue edit. Persisted through save/load.
Circle-circle intersection (and the other solvable shapes) already
worked correctly, verified with a direct test: two distance-only
clues resolve to potential_coords whenever the two circles actually
cross. What was missing was feedback when they don't, e.g. two
distances that put one circle entirely inside the other given the
references' real positions looks identical, from the dialog's
perspective, to a reference that's just not placed yet.
solver.explain_unresolved() distinguishes 'waiting on <ref> for a
known position' from 'these two readings are geometrically
inconsistent', wired into _apply_and_refresh's toast after a manual
Description-tab edit.
A ScoutFlight anchors to the center of whatever large grid square the
cursor is in, with its bearing read off where in that square the
cursor actually sits, decoupling a clean anchor point from fine
direction control. The plotted rectangle extends 0.92km back and
13.04km forward along that bearing, 1.21km to each side
(solver.scout_flight_corners), previewed live while placing (see
GridCanvas.start_scout_flight_placement) and drawn as a filled
rectangle once committed.
New 'Scout Flights' header dropdown lists them with replot/hide/remove
per entry, plus a header button to plan a new one. Wired into
Board.clear() and save/load (SAVE_FORMAT_VERSION bumped to 3, old
saves load fine via the new key's default).
Board.clear() drops the Nest position, spotters, reference points, and
targets; wired to a header button behind a confirm dialog since it's
not reversible.
The clipboard-watch toggle connects to Gdk.Clipboard's 'changed'
signal and re-runs the merge-all OCR flow automatically whenever the
clipboard gains new image content, skipping non-image changes (e.g.
text copied elsewhere) so it doesn't spam toasts. Off by default.
Disconnected on window destroy.
'Target is at- Q4 4:2' (no #id, unlike the usual block shape) is how
the game's very first order gives the target. Store it as a fixed
(UNKNOWN, "1") entry since there's only ever one.
Same style fix applied to the README earlier, extended everywhere:
replaced " -- " with commas/colons/periods (picking whichever reads
right per occurrence, splitting into two sentences where the clauses
were independent), fixed a few user-facing strings along the way
(entity list rows, placement/strike toasts, ambiguous-candidate tag,
shell picker button label). Left three intentional non-prose uses
alone: the "unassigned" dash glyph in firing_panel.py (and its
docstring diagram), and ocr.py's dash-variant regex character class,
which needs to literally match em/en-dashes in OCR'd text.
Also caught and fixed a stale models.py docstring claiming "no solver
yet" (solver.py has existed for a while) while touching that
paragraph anyway, and a formatting artifact in coord_dialog.py's
docstring left by the sed pass (misaligned comma from a since-removed
alignment gap).
Verified: py_compile across all files, the 9-screenshot OCR
regression sweep, and a GTK smoke test exercising the edited
toast/placement code paths.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
- src/ironnest_assist/ -> src/fenigma/
- run.sh invokes -m fenigma.app
- APP_ID: eu.dominik-roth.IronNestAssist -> eu.dominik-roth.FeNigma
- window title, IronNestApp class -> FeNigmaApp
- __init__.py docstring, README pgrep hint updated
IRON NEST (the game's own name, e.g. NEST_KEYWORD in ocr.py) is left
untouched, only our own project/app naming changed. Verified: clean
import under the new module path, install.sh still builds the venv
correctly, and the OCR regression sweep (9 known screenshots) still
passes.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>