The prior commit only captured the file renames (a botched `git add`
dropped the actual edits). This commit carries the real diff: Aravis
GObject-introspection backend in base_integration/camera.py, renamed
class/config references, and the rewritten README.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Replaces the vendor-SDK-based vmbpy backend with Aravis, an open-source
GenICam/GigE Vision library that implements the network protocol itself,
so no Allied Vision account/license/SDK download is needed - just
PyGObject plus the system-packaged Aravis library. Renames
AlliedVisionVmbCamera -> AlliedVisionAravisCamera (and matching
file/sim/test names) to reflect the new backend; low-level Camera
wrapper keeps the same public interface, only its internals changed.
README rewritten with Aravis install steps and camera-ID discovery via
arv-tool-0.8 / Aravis.get_device_id().
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Adds AlliedVisionVmbCamera, talking to the Alvium G1-507m directly over
GigE Vision via vmbpy (Vimba X SDK) instead of the existing dead EPICS
IOC-based AlliedVisionCamera, which is left in place for now. Includes
the low-level Camera wrapper, simulation backend, device config example,
tests, and a README covering setup/testing/vmbpy install steps.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
test_lamni_account_change_reset.py and test_lamni_tomo_angles.py set
builtins.__dict__["bec"] directly with no cleanup, so a leaked fake
account ("e22222") from an earlier test file was still in place when
test_x_ray_eye_align.py later constructed a real LamNI(), tripping
_maybe_reset_params_on_account_change()'s interactive yesno() prompt
and failing under pytest's captured stdin. Use monkeypatch.setitem so
pytest reverts the global after each test, matching the pattern already
used in test_lamni_tomo_alignment_scan.py.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
LamNI's tomo_scan() wrote a separate scilog entry ("Starting subtomo:
N...") every time the sub-tomogram number changed -- 8 extra entries
per tomo_type-1 scan, and one per sub-tomogram traversed for types 2/3
-- leftover behavior carried over from omny.py during the flomni->lamni
port. Flomni itself never does this: it only writes at scan start (PDF
report) and scan end (timing summary). Removed the three
_write_subtomo_to_scilog() call sites and the now-unused method so
LamNI's scilog behavior matches Flomni's.
Also fixed a stale test (test_tomo_queue_reacquire_rejects_when_another_job_is_incomplete)
that encoded the old, buggy tomo_queue_reacquire() invariant (rejecting
on ANY other job being incomplete/running) rather than the fixed one
from the prior commit (only an EARLIER job is a real conflict) --
split it into two tests covering both directions.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
register_at_each_angle_hook() stores a function object by reference, so
editing a hook's def and forgetting to re-register left the old version
running silently -- easy to miss mid-beamtime. Detect it via
func.__globals__ (a redefined top-level def, or a reloaded module,
mutates the same namespace dict in place) and auto-adopt the new
definition with a printed note instead of failing or staying stale.
Centralizes the shared lookup/error logic (previously duplicated in
lamni.py and flomni.py) into TomoQueueMixin._resolve_at_each_angle_hook().
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Replaces the awkward documented workaround (configure a full tomo_type
1 setup with 96 projections, then launch just sub_tomo_scan(1, 0)) with
a dedicated command, ported from flomni's tomo_alignment_scan(): adjust
tomo_parameters() (FOV/step/counting time), then call
lamni.tomo_alignment_scan() directly -- no tomo_type/sub-tomogram
bookkeeping involved, matching flomni's clean two-step workflow.
Runs 12 points evenly spaced across the full 360 degrees (lamni has no
180-degree symmetry the way flomni does, so unlike flomni's 5-point/
180-degree scan, this covers the full circle -- point count matches
what the old workaround's docs defaulted to, endpoint=False since
360==0 degrees). Aborts if x-ray-eye alignment hasn't been done yet
(tomo_fit_xray_eye unset), mirroring flomni's equivalent guard.
write_alignment_scan_numbers() writes the same 4-line scan-number/
angle/offset log flomni's version does, to
~/data/raw/logs/ptychotomoalign_scannum.txt for SPEC_ptycho_align.m,
also printed at the console (flomni's own console-print equivalent is
dead/commented-out code; lamni's actually prints).
Scope note: flomni's version conditionally skips its eye-out/optics-in
transition when already in measurement condition with feedback
running, to avoid an unneeded interferometer reset -- lamni has no
equivalent helpers for that check, so this calls leye_out()
unconditionally instead. Left as a possible follow-up, not in scope
here.
Item 6 of csaxs_bec/bec_ipython_client/plugins/LamNI/AI_docs/
FLOMNI_LAMNI_FEATURE_GAPS_2026-07.md. Documented in
docs/user/ptychography/lamni.md's "Fine alignment" section.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Ports flomni's ffzp_info() OSA collision-clearance section (compares
live losaz against nominal "in" position and a collision-boundary
constant, warns if closer to collision than nominal or reports
clearance at IN) -- same formula shape and sign convention as flomni
(motion directions confirmed identical between the two setups).
lamni's collision-boundary constant has never been measured, so it's
read from loptz's device config (userParameter.collision_offset) via
a new _get_user_param_optional() helper -- unlike the existing
_get_user_param_safe(), it returns None instead of raising when the
parameter is undefined (as it currently is for every lamni device
config, including the simulated one), since absence here means
"not yet commissioned" rather than a config error. lfzp_info() prints
a clear warning and skips the numeric estimate entirely until someone
adds the real measured value to the config -- deliberately not a
CLI-settable/global-var parameter, since this is deployment-level
hardware calibration.
Item 7 of csaxs_bec/bec_ipython_client/plugins/LamNI/AI_docs/
FLOMNI_LAMNI_FEATURE_GAPS_2026-07.md.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Ports flomni's ffzp_in()/fosa_in() "skip the move (and, for the FZP,
the expensive feedback-disable + reset-enable cycle) if already there"
optimization to lamni's lfzp_in()/losa_in(). Also adds the same
skip-if-already-there check to losa_out(), which has no flomni
equivalent to mirror (fosa_out() always moves unconditionally there)
-- added as a lamni-side enhancement per discussion.
Checked every existing caller of lfzp_in()/loptics_in() before making
this change, since a skip changes behavior for callers that used to
get an unconditional reset. Found one real risk:
x_ray_eye_align.py's "Step 0: FZP centre" (the start of a fresh
alignment run) had its manual feedback disable/enable calls already
commented out, meaning it relied entirely on lfzp_in()'s old
unconditional reset to establish a correct interferometer zero.
flomni's equivalent call site doesn't have this problem because
flomni's alignment flow does its own explicit
feedback_enable_with_reset() independently beforehand -- lamni's
doesn't. Fixed by passing force_feedback_reset=True at that one call
site so it keeps its current always-reset behavior; no other lamni
caller needed this.
Item 4 of csaxs_bec/bec_ipython_client/plugins/LamNI/AI_docs/
FLOMNI_LAMNI_FEATURE_GAPS_2026-07.md.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Ports flomni's _maybe_reset_params_on_account_change()/
_set_default_tomo_params() to lamni: at LamNI.__init__, if the active
BEC account differs from the one defaults were last applied for
(persisted via defaults_applied_for_account), interactively offer to
reset tomo params to defaults -- preventing a new experiment silently
inheriting the previous one's tuned FOV/stitch/etc. Same account is a
silent no-op, so restarting a client mid-experiment never disturbs
tuned parameters.
_set_default_tomo_params() is a direct port adapted to lamni's own
param names (tomo_circfov/lamni_stitch_x/y/lamni_piezo_range_x/y
instead of fovx/fovy/stitch_x/y, no tomo_angle_range/
single_point_random_shift_max -- lamni has neither concept). Per-
sample alignment state is deliberately not touched, matching flomni.
Item 2 of csaxs_bec/bec_ipython_client/plugins/LamNI/AI_docs/
FLOMNI_LAMNI_FEATURE_GAPS_2026-07.md.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Ports flomni's per-projection/tomogram JSONL timing log
(~/data/raw/logs/timing_statistics/*.jsonl, feeding a future scan-time
prediction model) and the scilog_last_ptycho_scans(n) user command to
lamni. Direct port adapted only for lamni's own param names (no
fovx/fovy/stitch_x/stitch_y/single_point_instead_of_fermat_scan --
uses tomo_circfov/lamni_stitch_x/y/lamni_piezo_range_x/y instead, no
single-point concept at all).
_log_projection_timing() is only called on a clean (non-error_caught)
completion of _tomo_scan_at_angle()'s retry loop, so an
AlarmBase/TimeoutError attempt (no reliable duration measurement)
doesn't pollute the log.
Item 1 of csaxs_bec/bec_ipython_client/plugins/LamNI/AI_docs/
FLOMNI_LAMNI_FEATURE_GAPS_2026-07.md.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Ports flomni's zero_deg_reference_at_each_subtomo to lamni's "8 equally
spaced sub-tomograms" mode: an extra dedicated projection at exactly 0
degrees before every sub-tomogram where the rotation naturally passes
back through 0, plus one final shot once the tomogram completes, for
tracking radiation damage over a long acquisition. lamni's tomo_type
2/3 already had the equivalent (golden_projections_at_0_deg_for_damage_estimation,
byte-for-byte identical to flomni's) -- only tomo_type 1 was missing.
_subtomo_starts_near_zero() uses subtomo_number % 2 (every odd
sub-tomogram) rather than flomni's 360-mode subtomo_number % 4 == 1 --
confirmed against lamni's actual rotation behavior rather than derived
from the position-array math, which doesn't cleanly split odd/even.
The GUI (tomo_params.py) needed no new UI code: _build_type1_section()
already gated this control on a per-setup has_zero_deg_reference flag,
so enabling it for lamni was just flipping that flag plus adding the
param name/default, mirroring flomni's entries exactly.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
FlomniFermatScan/LamNIFermatScan already refuse to run with fewer than
20 positions (_check_min_positions(), raises ScanAbortion), but only
once the scan actually starts -- too late for an unattended tomo-queue
run, where the job just aborts mid-run and pauses the queue. Surface
the same prediction earlier instead, as a non-blocking warning:
- Extracted the position-generating methods on both scan classes
(get_flomni_fermat_spiral_pos, and lamni's chain --
_lamni_compute_scan_center, _lamni_compute_stitch_center,
_compute_total_shift, _lamni_check_pos_in_fov_range_and_circ_fov,
get_lamni_fermat_spiral_pos) into pure @staticmethods, so the exact
same algorithm the scan server runs can also be called from
client-side code without a live scan session. Behavior-preserving --
verified against the existing exact-position/instruction assertion
tests for both classes. Lifted the hardcoded "20" into a _MIN_POSITIONS
class attribute on each, so client code references the same threshold.
- lamni.py/flomni.py: new _expected_fermat_position_count() calls the
real scan-class algorithm with the live tomo parameters and prints a
warning line in tomo_parameters() when below the minimum.
- tomo_params.py: a new live-updating "Estimated Fermat scan points"
field (mirroring the existing achievable-step preview's styling),
wired to the fov/step/stitch/piezo-range fields, flagged orange below
the minimum -- never blocks Submit/Add-to-queue.
lamni's circular-FOV crop is angle/stitch-dependent, so the estimate is
representative (center tile, angle 0 for the CLI; the live stitch tile
for the GUI, which has those fields right there) rather than an exact
per-projection guarantee -- documented as such in both places.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Add tomo_queue_reacquire(job_index, projection_number) to the shared
TomoQueueMixin: reopens any queue job (even an already-"done" one) at
an earlier projection than its own recorded progress, and resets every
job queued after it -- tomo and command jobs alike -- to "pending", so
a following tomo_queue_resume() (a new alias for tomo_queue_execute(),
added for naming symmetry with tomo_scan_resume()) re-runs everything
from there forward in order. Reuses the existing tomo_scan_resume()
machinery by writing the requested resume point into the shared
progress global var, rather than adding new parameters to
tomo_scan()/tomo_queue_execute(). Guards against clobbering another
job's progress if one is already "incomplete"/"running" elsewhere in
the queue.
A flat projection number is used as the resume-point unit for all
three tomo_types, including type 1 (8 equally-spaced sub-tomograms),
via a new per-setup _resolve_type1_projection() that maps it to
(subtomo_start, start_angle). flomni's version reuses its existing
_subtomo_angle_plan(); lamni's inline angle math in sub_tomo_scan() was
extracted into an analogous _subtomo_angle_plan() static method first
(behavior-preserving -- verified against the existing angle-math test
suite) so both setups share the same pattern.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Port two flomni tomo_scan() behaviors lamni was missing: an end-of-scan
timing overview (total time, time excluding gaps, time lost to gaps,
sample/hook info) printed and written to scilog, and automatic repeat
of an entire projection when the beamline interlock trips mid-scan.
The latter needed two pieces together: enabling
bec.builtin_actors.scan_interlock at tomo_scan() start (previously
never enabled for lamni), and wrapping _tomo_scan_at_angle in
@scan_repeat so the resulting ScanRestart (or any other transient
exception) redoes the whole projection instead of aborting the scan.
A new LamNIError marks the one non-retryable case (unregistered
at_each_angle_hook), replacing a plain ValueError there.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Mirrors two fixes already made to Flomni.tomo_scan(): LamNI.tomo_scan()
never opened the progress GUI automatically, and left a stale "busy"
heartbeat for up to 120s after a scan had already finished (or crashed),
since it was only ever reset at the start of the next scan.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
bec.active_account.decode() crashed on every real tomo_scan() call --
active_account is a plain str, not bytes. Flomni's equivalent never had
the .decode() call and already guards an empty active_account (e.g. a
dev/sim session) by skipping sample-database registration instead of
crashing. Same bug fixed in DataDrivenLamNI.tomo_scan() (extra_tomo.py),
which had an identical inline copy.
write_pdf_report() read a nonexistent "mokev" device; the real device is
ccm_energy. Reads it for real now, wrapped in a broad try/except falling
back to "N/A" if unavailable, rather than a hardcoded placeholder.
write_pdf_report()'s logbook/scilog write crashed when scilog isn't
configured -- lamni.py already had this exact tolerance pattern one
method over, in write_to_scilog(); applied the same try/except here.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Generalize TomoParamsWidget to lamni via a SETUP_PROFILES mechanism
(setup detection, per-setup field lists/order, a new Offsets section,
a setup-agnostic "Duplicate job" queue button), fixing two latent
TomoQueueDialog bugs that silently mishandled lamni jobs along the way.
While verifying the GUI's projection-count preview against the CLI,
found two real, pre-existing bugs in LamNI.sub_tomo_scan() unrelated
to the GUI itself: a duplicate closing angle every sub-tomogram
(360=0 degrees), and a phase offset computed from the raw stepsize
instead of the achievable one, breaking the equally-spaced-when-
combined guarantee for sub-tomogram pairs/quads/the full set. Both
fixed to mirror Flomni's existing, correct equivalents.
Also fills in lamni's user documentation with the queue/command-job/
at-each-angle-hook system, which it previously lacked entirely,
mirroring flomni.md's coverage.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Extract the tomo-queue/at-each-angle-hook backend (job proxy, hook
registry, command-job dispatch) out of flomni.py into a new shared
TomoQueueMixin (OMNY_shared/tomo_queue_mixin.py) so it can be reused
instead of duplicated, avoiding the same param-name-mirror drift
already flagged for tomo_params.py. Flomni's refactor is behavior-
preserving; LamNI is the new consumer, with its own param names
(tomo_circfov, lamni_stitch_x/y, ...) and no 180-degree/single-point
concepts, since lamni doesn't have them. Also adds LamNI.tomo_scan_resume(),
required for tomo_queue_execute()'s resume-after-crash path but not
previously present.
Verified via a new unit test suite (test_lamni_tomo_queue.py) plus live
checks against the running simulated flomni and lamni deployments,
documented in LamNI/AI_docs/TOMO_QUEUE_PORT.md.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Supersedes the complementary even/odd-eighths tables from 900c810 with
a single shared phase_eighths table used in both 180 and 360 mode, so
subtomo N carries the same phase-tier role regardless of
tomo_angle_range. The complementary property of the low/high phase
sets now falls out as a consequence of the original table's structure
instead of needing a separately derived table.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Two independent fixes:
- GUI "beamline busy" indicators (TomoParamsWidget's banner,
FlomniWebpageGenerator's status page) purely wait for
progress["heartbeat"] to go stale (120s / 90s respectively) - there was
no explicit "scan finished" signal to react to instead, since
tomo_scan() wrote a heartbeat at the start of every projection but
never cleared it on exit. Wrapped the scan loop in try/finally so
heartbeat is cleared on every exit path (normal completion, exception,
or interrupt/abort), not just at the next scan's start - both
busy-detectors now see this on their very next poll instead of waiting
out the timeout. Live-verified: heartbeat is None immediately after
tomo_scan() returns.
- Found while investigating a related report ("angular step of the final
combined tomogram shown different between 180 and 360 mode, although
it has to be identical" + "GUI shows projection count doubling when
switching 180->360"): TomoParamsWidget's _compute_type1()/
_requested_to_stepsize() (tomo_params.py) and the generated status
webpage's calcProjections() JS (flomni_webpage_generator.py) are both
independent, un-synced duplicates of the exact old N=int(angle_range/
stepsize) formula fixed in flomni.py's own _tomo_type1_actual_grid()
two commits ago - they were never updated when that fix landed, so the
GUI and webpage kept reporting double the projection count for 360
mode. Fixed both to match flomni.py: N/step/total are always computed
against a fixed 180 degrees, independent of angle_range. Also fixed
the "angular step of the final (combined) tomogram" CLI/wizard lines
in flomni.py itself, which used tomo_angle_range/total_projections
(correct for 180 mode by coincidence, wrong for 360 mode - the true
combined resolution is always 180/total_projections, identical
between modes). Added a regression test asserting the widget's
formulas match flomni.py's for both modes, to catch this exact kind of
drift if it recurs. Live-verified against the running sim: both modes
now report identical total_projections and combined-tomogram step for
the same stepsize.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The previous commit's 360-degree phase assignment gave the low and high
halves the SAME phase per pair (1,2)/(3,4)/(5,6)/(7,8), so each pair
concatenated into one continuous evenly-spaced range -- but that means
every low-half angle is exactly 180deg from a high-half angle, which is
exactly the redundant-measurement bug this was supposed to fix, just
reintroduced between subtomos instead of within one.
Corrected: the low half (subtomos 1,4,5,8) now uses the even eighths of
the original 8-way phase_eighths table, and the high half (2,3,6,7) uses
the odd eighths -- complementary, not shared. Folded mod 180, the two
halves interleave into exactly the same 8-way, step/8 grid that 180-mode
itself produces: every position is measured exactly once, using its full
0-360 physical range, with zero redundant measurements anywhere. Total
projection count is unchanged (still identical to 180 mode for a given
tomo_angle_stepsize).
Verified: pure-math unit tests confirm the 360-mode combined set, folded
mod 180, is an exact set match (same count, no repeated residue) against
180-mode's own set. Live-verified against the running flomni sim: real
motor motion for both modes, folding the observed 360-mode angles mod
180 exactly reproduces the observed 180-mode angles.
Also updated the two "angular step of the final combined tomogram"
CLI/parameter-wizard print statements to additionally report the
effective mod-180 reconstruction resolution for 360 mode, since it's
now finer than the raw per-half spacing they already printed.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Three independent fixes:
- sub_tomo_scan(): in 360-degree tomo_type-1 mode, every sub-tomogram used
to sweep the full 0-360 range, so each one's own fine grid contained
angle pairs exactly 180deg apart -- redundant tomographic information.
Sub-tomograms now each cover a 180deg span, split into low/high halves
by subtomo_number % 4 with a bit-reversal-of-4 phase table, so adjacent
pairs (1,2)/(3,4)/(5,6)/(7,8), either quartet, and all 8 combined each
independently form a complete, evenly-spaced 360deg tomogram at
successively finer spacing. Total projection count for a given
tomo_angle_stepsize is now identical between 180 and 360 mode (same N,
no longer doubled). Updated the 4 other consumers of the old N/step
formula (zero-deg reference gating, _tomo_type1_actual_grid, the
parameter wizard, the PDF report) to match. 180-degree mode is
unchanged. Live-verified against the running flomni sim: real motor
motion traces the expected boustrophedon path with no duplicate or
180deg-apart angles.
- Sample storage: added an owner field, packed into the same EPICS DESC
field as the sample name ("name | owner", via new sample_desc_codec.py)
since there's no separate PV for it. Wired through
FlomniSampleStorage, the CLI (flomni_modify_storage_non_interactive,
ftransfer_modify_storage), the two transfer routines that forward a
raw DESC value across a gripper move (now unpacked/repacked so owner
survives the move instead of being dropped or double-packed), and
SampleStorageWidget. Scoped to flomni only this session; OMNY's
storage/transfer mixin is unchanged.
- ConsoleButtonsWidget's ABORT button used to send SIGINT then, 500ms
later, a stop_devices() broadcast to ALL devices with no stop_id --
an un-suppressed error from that broadcast landing on a queue-tracked
instruction could kill the scan worker thread outright, requiring a
full BEC restart. Replaced with: queue.request_scan_abortion() (safe
no-op if idle, but registers a stop_id so expected errors are
suppressed), then SIGINT, then a direct, immediate Galil hard stop via
new GalilController.hard_abort_and_restore_positioning_mode() -- the
same method ftransfer_abort() now delegates to, so the CLI and GUI
paths can't drift apart again. SIGINT is sent before the hard stop:
live testing showed that if the hard stop's mntprgs-clearing side
effect lands first, a same-session polling loop can mistake it for
normal completion and fall through into ensure_gripper_up(), which
must not happen mid-transfer -- sending SIGINT first (near-instant)
gives that loop's own KeyboardInterrupt handler a head start before
the hard stop's own multi-step sequence completes. The button is
labeled per beamline (e.g. "Flomni Motion Stop") and disabled rather
than silently inert when no hard-stop device is configured/enabled.
Scoped to flomni only this session (OMNY/LamNI wiring deferred).
Live-verified against the running sim, including the exact
stop-lands-mid-queued-instruction scenario that previously crashed
the scan worker.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Type-tags queue jobs with a "kind" field (back-compat: missing kind
defaults to "tomo"), and adds "command" jobs that reconfigure the
beamline (currently: absolute moves on an allow-listed device, plus an
optimize_idgap stub) between tomograms instead of running a scan.
Command jobs are added via tomo_queue_add_command() against a curated
named-action registry (_TOMO_QUEUE_ACTIONS) - not arbitrary code - so
every queued action is auditable and safe to persist across a kernel
restart. Validation is two-layer: schema checks at add time, and each
action re-checks its own arguments against live hardware at execution
time, which is the actual safety boundary. Crash-resume for a command
job re-runs the whole step sequence from the top if every step is
idempotent, or prompts the operator otherwise.
flomni_webpage_generator.py is guarded against command jobs, which
have no "params" key.
See AI_docs/TOMO_QUEUE_COMMAND_JOBS_PLAN.md for the full design.
Sections A-C of TOMO_QUEUE_TESTING.md's checklist, run against a live sim
session: params-restored-per-job, legacy queue migration, empty/all-done
no-ops, start_index semantics, exception/SIGKILL crash-resume, resume-
before-fresh ordering, and concurrent queue edits from a second client.
All 10 tests pass together with no cross-test interference.
The flomni_sim fixture and _bootstrap.py factor out what it takes to
construct a live Flomni against the sim (builtins/reload bootstrap,
side-effect neutralization, RT-feedback/fsamx setup) for reuse by both
in-process tests and the SIGKILL-based subprocess tests.
Also adds the AI_docs/ handoff docs (testing checklist results, command-
jobs plan with the action-registry decisions) that this work updated.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
XrayEyeAlign.gui is a property delegating to lamni.xeyegui and has no
setter. Mock lamni.xeyegui in the update_frame tests; drop the redundant
alignment_images reset, which __init__ already handles.
Drop test_save_frame (method no longer exists). Rewrite test_update_frame
against dev.fsh/dev.cam_xeye instead of the removed LamNI.alignment module.
Patch the module-level umv in test_tomo_rotate rather than builtins.