A busy capture node made the real head-image path fail with the measure
laser armed; the laser ended at 0 and the camera engine recovered
(CAMPAIGN-LOG has the drill). The STATE_FAULT-recovery note leaves the
item by operator decision. What remains is the K-11 case, one bench
slot.
The nRESET and nSLEEP lines are not strapped: glowforge.ko drives them
(reset-gpio gpio3 18, sleep-gpio gpio3 16), confirmed by pad traces to
U20/U21/U22 pins 16 and 17. They move only as a pair in every
enable/disable cycle, together with the rail, so the reset pulse is part
of every recovery attempt and has never shortened the ladder. A logic
reset alone does not clear the wedge.
Diagnostics run as an engine mode behind cool_diag_take/release, the
HTTP surface carries its accept caps with bounded camera setup
children, and the busy-state arbitration is declined with its reasoning
(CAMPAIGN-LOG has the proof runs and the two cross-check lessons the
queue taught). BRINGUP: the item closed, items 4 and up move down one.
97 boots across 16 days of persisted kernel logs carry zero SDIO CRC
failures against the pre-fix baseline of one in 49 minutes; the
factory-exact uSDHC pads hold and the 25 MHz cap stays unneeded.
Items 7 and up move down one.
Limit-switch homing is its one sentence. Cameras holds only the
untested 8 MP sensor's questions; the emulator homing-image smoke moves
to the acceptance follow-through, where the tool work lives. The cloud
item closes as a status recitation: its facts live in CLOUD.md, and the
one open question rides the 8 MP first light. Items 4 and up move down
one.
The factory-shaped watch is implemented, host-tested and bench-proven
with the lamp as the flame stand-in (CAMPAIGN-LOG has the run, the
fault-class mapping and the recorded interpretation). BRINGUP: the item
closed, items 2 to 18 are now 1 to 17, the references follow, and the
facts bank reads the armed posture. Pin forgectrl for its doc fix.
The engine acted correctly on the bench (FLAME, hold, fire blocked) but
the test read the forgectrl log tail one second after the trip, before
rsyslog put the line on disk. The two log checks poll the tail for up
to 8 s (_tail_wait) instead of reading it once.
Both tiers of the factory-shaped fire watch, proven with the lid lamp
as the flame stand-in: a q1 alert under the lamp's reading holds the
session as FLAME and does not survive into a fresh one; a q1 critical
latches FIRE with the laser latch locked; all four thresholds at zero
read as the four flame gates off; restored, the watch reads armed. Pin
forgectrl 77a643441c1c0c745a38aabebc68340d26204ce0 (the watch itself).
TEC handling is implemented, host-tested and proven at the GPIO
(CAMPAIGN-LOG has the run and the CMet/CMdt correction: readings, not
setpoints; the defaults are chosen). BRINGUP: the item closed, items 2
to 19 are now 1 to 18, the five cross-references follow.
The TEC policy at room temperature: declared fitted with its thresholds
under the loop, a run session drives the line on and the session's end
returns it to 0; declared not fitted the line stays 0; the cross-checks
refuse off over on and off under the floor. Pin forgectrl
7d8a58035ca7fadebcae47ea9fd53ef2dd810bac (the TEC drive).
The coolant floor and the warm-up gate are implemented, host-tested and
bench-proven (CAMPAIGN-LOG has both runs, the heater-slug lesson
included). BRINGUP: item 1 closed, items 2 to 20 are now 1 to 19, the
six cross-references follow, and the facts bank carries the slug fact.
The first bench run released in 15 s on the heater slug; the engine now
judges a one-minute rolling minimum, and the test refuses a release
under 60 s. Pin forgectrl 9d0b757f492281d2628da6800db61a1f490fd125.
The catalog case for the two low-side gates: at room temperature the
start gate 1 C above the loop holds the next session in warm-up (heater
on, fans idle, fire blocked) and releases into run at the gate; with the
start gate off, a floor above the loop holds COLD; both at 0 are off and
say so; restored, everything reads as before. Pin forgectrl
5a12f55db6ac632dfc720d9937ca581a7703b7c3 (the gates themselves).
The button latch is SET by lid-open or the SoC lock and RESET by the
button only; the charge-pump watchdog feeds HV_ENABLE, not the latch.
A kernel-run gap inside an armed job drops HV_ENABLE and leaves the
latch alone, and the next run has HV_ENABLE back before its first step.
No keepalive.
laser.emission-witness carries a G4 P2 between the second and third
sides of its square and checks cnc/button_latch clear in every armed
sample, HV_ENABLE dropped across the dwell and back with emission after
it; the operator confirms all four sides.
BRINGUP: item 1 removed, items 2 to 21 are now 1 to 20, the five
cross-references follow, the flow-band sentence is in the facts bank.
CAMPAIGN-LOG: the answer, the retired item, and the unattended set run
green on the hot-deployed board (campaign c-20260831151846).
cooling.aa-offset-calibrate gives the tool 540 s (its 420 s stationary
gate plus the six edges) and says so in its steps. Pin forgectrl
7dbb5e1e55a12e6bd1364d920f46c96a3ae2d4ce (the tool settles at the flow
tools' gate before its first edge).
The factory image carries a register loader that nothing calls, the app
references an apply script the rootfs does not have, and the OV5648
driver has no regs attribute. No shipped machine applies a per-unit
shading table. BRINGUP item 6 drops the claim; CAMPAIGN-LOG has the
search.
CAMPAIGN-LOG: the rail policy homing pass (gfhome homed, jogs after the
resume, one 40V on at boot) and the /cool/status drills (three dark
sessions and an M8/M9 session with no smoke phase, armed false).
CAMPAIGN-LOG: the rail policy, the /cool/status changes, the armed-kill
placement, the image trims with the 20260831130656 manifest, the lid IR
lamp step, the SDIO count, the lens-shading search, the debug-kernel
assessment, and the bench cleanup; the four closed items in the
superseded notes.
BRINGUP: item 18 closed (the trims landed), items 19 to 22 are now 18 to
21; the release rootfs size fact reads the measured 89 MiB.
The release rootfs carried python3-modules (tkinter, idle, 2to3, pydoc,
ensurepip, venv, asyncio, multiprocessing, xmlrpc) through the python3
meta-package, and libgnutls30, nettle, libgmp10, libunistring5 and
libtasn1 through libmicrohttpd (https) and ulfius (GnuTLS). Nothing on
the image uses either. Each Python recipe declares the module packages it
imports; forgetest declares its own, so the dev image carries no module
the release image lacks.
Pins: forgectrl 0e907f7db54b7a4c90b660f198d49e5c66b667b5 (armed shown from a
fresh report only, zero smoke phase for a dark session), grblhal-glowforge
fa9ed7834faab6f48367dc1ca5a5109b474f788d (rail enable only standalone).
BRINGUP: the lid IR lamp response measured over the full range; no camera
register file under /data; the rail policy and the cool status items
closed; laser.armed-kill stays in its domain; the debug-kernel drill
constraints.
Platform change (layer content): the full campaign is owed on the built
image.
The corner rolloff's right value is per machine (this bench settled at
1.5 against the shipped default of 2), so the commissioning item gains
a side-by-side chooser: the same corner-heavy pattern cut at several
settings, the operator picks the best by eye, Apply writes the winner -
with the dose-curve recorder as the first piece of that tool family and
its template. With that, everything the laser power model item held is
answered or homed: its conclusions live in the Laser control section
and the facts bank, its dated record in the CAMPAIGN-LOG, and the
tree-root working file is deleted per its own charter. Next work item
16 closes; the later items renumber down by one.
The stream harness gains rule 20: under M4 with the curve in force, the
accelerate-in head of a line renders less density at the default gamma
of 2 than at gamma 1 (0.317 against 0.537 on the host grid) while the
cruise middle renders identically - the exponent shapes only the
velocity-scaled rolloff, never the programmed level. The panel-serves
covers widen to the whole recorder (src/curverec.*). BRINGUP describes
the rolloff and the one-press recorder; the MOTION table gains
laser_corner_gamma; the panel help explains the knob.
The stream harness gains rule 19: with the bench-default curve in force
a ladder of S rungs renders the curve's densities exactly (half light
lands near 80 percent density), monotonic, floored and ceiled by
$35/$36; every other session pins laser_dose_curve = off so its
S-to-level arithmetic stays exact, and the arm-report checks carry the
curve name. The lifecycle harness asserts the published state file
names the curve in force. The catalog's forgectrl.panel-serves asserts
the curve field in the grbl report, /curve/status and the ladder
G-code, and its covers name the recorder.
BRINGUP describes S-commands-light through the measured curve and the
owner recorder; the MOTION table gains laser_dose_curve; LIGHTBURN
tells the operator power now means light and how to record their own
tube's curve from the panel.
The stream harness keeps the analog rendering as the host-test
conservatism reference (rule 13's mask, the duty ladders) and drops the
M101 switch sessions; rule 18 stays as the derived-floor proof, now
satisfied from boot by the precompute. The lifecycle harness's
state-files scenario asserts the derived floor is in $$ before any arm.
The catalog's laser.power-model-switch goes and laser.power-floor reads
the one floor key with no M-code needed. The mswitch drill goes; the
m4corner drill becomes a single density pass; the dpatch drill returns
to density only.
The CAMPAIGN-LOG records the first rasters (254 and 508 DPI grayscale
wedges: tonality held to ~14 pulse slots per pixel, no dither artifact,
one benign stale-verdict suppression under CPU starvation) and the
decision that ends the analog mode - the strike transient fires a spot
at every beam-on, and the finish comparison found no advantage. BRINGUP,
LIGHTBURN, MOTION and SAFETY describe the density-only present.
The M101 dose-model switch with its derived per-model floors, and the
controller's published state files with their /status echo and panel
card. Both proven host-side and, for the switch, on the bench (the
mswitch drill); the catalog covers the changes through the model-aware
laser.power-floor, laser.power-model-switch and the extended
forgectrl.panel-serves.
The lifecycle harness gains the state-files scenario: with GF_STATE_DIR
at the session workdir, grbl.settings carries the $$ view and follows
the derived floor through an M101 switch and its M2 revert, and
grbl.state follows the sender connection (a reconnect bumps the
generation), the armed window and the dose model, with ts_mono
advancing. The panel-serves catalog test asserts the /status grbl block
in GRBL mode with a live controller (fresh age, state, sender, laser,
modals) and GET /grbl/settings, and its covers name the publisher and
the serial layer; the glowforge_status.c covers entry selects nothing
until the grblHAL pin moves past the commit that adds the file. The
CAMPAIGN-LOG records the build and its proof; BRINGUP describes the
mechanism.
The stream harness gains rules 18 to 21: the floor is derived from the
selected model's config key at the arm and a typed $35 is overwritten;
M101 switches the rendering exactly at the boundary in both directions
with no continuous FIRE at full duty across it; a refused switch (the
spindle on) leaves the stream unchanged, and the harness resyncs with
an empty line because the core skips G-code after an error until the
sender resyncs; M2 reverts a program-scoped switch and Q1 holds. The
analog sessions pin laser_floor_analog at the density floor so the
existing duty expectations stand, and the density ladder's unfloored
run moves from a chained $35 write to the laser_floor_density key.
The catalog's laser.power-floor becomes model-aware: it reads the
configured model and the floor keys from forgectrl, switches to the
configured model with M101 so the derivation runs without a fire, and
expects $35 to be that model's floor. The new laser.power-model-switch
switches to each model with the spindle off, checks the reported
message and $35 after each switch, and checks the M2 revert. The new
mswitch bench drill runs the switch on the machine in one armed run.
Docs follow: BRINGUP's Laser control section describes the switch, the
derived floors and the measured dose response of both models; the
MOTION settings table gains the five keys; LIGHTBURN gains a Power
models section and drops the stale 30 percent floor advice; SAFETY
names the switch's refusal rule; the CAMPAIGN-LOG records the judged
depth-witness runs of 2026-08-30 and the switch's host and bench proof.
The dpatch drill reads laser_power_model and runs row B at 100/80/60/45/30
percent duty under analog, with the thermopile labels from the analog ladder,
so the analog dose response can be judged on material the same way as the
density one. The report names the model's unit in every line.
Bench-only tool; no acceptance catalog consequence.
flow_warm_validate.py warms in rounds (the heater at 50 percent for three
minutes, off, 45 s of circulation, the two sensors' mean read) and judges
the target on that mixed bulk, not on the upstream sensor beside the
heater, which reached any target within two minutes while the bulk had
barely moved. Run with a 28 C target the loop plateaus at 27.2 C in a
20 C room; six checks at 26.2 to 27.2 C read every verdict right, the flow
band under 11.9 C and the no-flow band over 18.0 C against the 14.4 C
limit. CAMPAIGN-LOG records the run; BRINGUP item 1 keeps only the
button-latch check, the flow check's bands holding from 19 to 27 C.
No catalog consequence: a bench tool and documentation.
CAMPAIGN-LOG: aa-offset-calibrate with its 3 s at 8 Hz sampling reads
16.2 counts with a spread of 4.5 over six edges, the value already
applied; the compensation's whole path stands on the bench. BRINGUP item
21 keeps only a second machine's value and the lit-tube toggling.
No catalog consequence: documentation.
The pin carries the calibrate tool's sampling fix (3 s at 8 Hz a side).
aa_offset_check.py proves the correction on a machine: M8 brings the fans
to the run profile, dark, while the raw coolant counts, /status and the
engine's readings are averaged before, during and after; it turns the
flow check off for its session and restores it. On the bench page as
aa-offset-check. CAMPAIGN-LOG records the tool's first run, the applied
value (16 counts) and the proof: the readings held within 0.1 C under
the run profile where they dropped 1.0 C uncorrected. BRINGUP item 21
names what remains.
No catalog consequence: a bench tool and records.
forgectrl 25cf969 lets status.c link without the cooling engine (the
image build compiles the status host tests), so the pin moves to it;
verified with bitbake -c fetch. offset_probe.py joins the bench-page
registry (survey, ladder and jog; the armed dwell stays a hand-run mode)
and takes "survey" as a mode word.
The pin carries the compensation (cool_aa_offset_counts, the
aa-offset-calibrate diagnostic, the panel's Apply); verified with
bitbake -c fetch. The catalog gains cooling.aa-offset-calibrate, which
runs the tool and checks its recommendation and spread.
scripts/bench/offset_probe.py is the differential probe that found the
source: one actuator switched at a time with both sensors at 25 Hz
(survey), the air-assist duty ladder, the gantry jogging under the fan,
and an armed dark dwell. CAMPAIGN-LOG records the four probes and the
result; BRINGUP item 21 names the setting and the calibrate as what
remains on this machine, and item 23 opens the initial commissioning
procedure.
No catalog consequence beyond the new case: a bench tool and records.
A live catalog case: two 30 x 4 mm fills at full power on the press, the
window held open until the engine's flow verdict lands in the forgectrl
log, then M2 and the head brought back. PASS needs a verified line with
the laser's share on it (at least 0.3 C: the window and the fire
overlapped) and the judged rise at least 1 C under cool_flow_rise; an arm
refused by a gate names the gate. Passed on image 20260829190323
(heater rise 11.9 C judged, laser 0.6 off 12.5).
CAMPAIGN-LOG records the run and the day's two air-assist gate holds (a
bench connection, reseated); BRINGUP item 21 names the case.
Catalog: the case covers forgectrl src/cool.* and its neighbors; a new
test, so the manifest's coverage widens rather than moves.
Two live-fire drills in live_fire_drills.py: senderchg drops the sender
mid-line with the tube lit, reconnects and expects the next laser-on to
prompt again; overrun writes a 93-line fill at once into a running job
and expects the report, the alarm, the disarm and a fresh prompt after
$X. Both read hv_current and the thermopile for the instant emission
ends and open their "nothing lit" window 2.5 s after the event, since
laser_on_sampled is a one-second window count. Both passed on image
20260829190323; CAMPAIGN-LOG records the runs.
BRINGUP item 20 (the arm skipped on a stale spindle state) closes: fix on
the image, host and bench proven, covers in place. Its text moves to the
superseded notes; items 21 to 23 are now 20 to 22.
No catalog consequence: bench drills and documentation.
CAMPAIGN-LOG: the three flowload t1 runs on the new image (judged rise
11.3, 11.1 and 11.8 C with the tube lit through most of each window, the
laser's share on the line), and Test 3, the flow check from a warm loop
(23.6 to 24.9 C baselines, 0 of 6 wrong, the 14.4 C limit 2.25 C above the
flow band and 3.67 C below the no-flow band).
flow_warm_validate.py takes the warm target and the warm-up budget as
arguments (defaults 28 C, 20 min), and the bench page passes them; the
warm-up still judges on the upstream sensor beside the heater, which is
why this run's baselines stopped near 25 C (BRINGUP item 1).
BRINGUP: item 1's open half is the loop above 25 C; item 22 holds what
remains of the flow check under load.
No catalog consequence: a bench tool's arguments and documentation; no
runtime behavior of the release image changes.
grblHAL-glowforge a7dcdca: the arm at the first laser-on is decided by the
window alone, and an RX overrun drops the overrunning line whole and stops
the job. forgectrl 2f18b16: the flow check's baseline and end are means,
and the tube's share of the rise is taken off before the limit. Both
verified with bitbake -c fetch.
laser_lifecycle_test.py gains sender-change-mid-job (a laser-on against a
window closed while the spindle was on must prompt again) and rx-overrun
(a job written past the RX ring is reported, stopped in alarm with the
window closed, and a clean job arms after it). The flowload drill's
verdict parser accepts the engine's laser-share suffix.
BRINGUP: item 20 holds only the owed work; item 21 opens the mid-job
sender-change discussion with the Grbl expectation; item 22 is the flow
check under a lit tube; item 23 is the power-good line's meaning.
CAMPAIGN-LOG records the driver fix and the flow-check reading, both
host-proven.
No catalog consequence: harness scenarios and documentation; no runtime
behavior of the release image changes in this commit.
The flowload drill in scripts/bench/live_fire_drills.py runs the two tests
of the flow-check plan: t1 fires two CW fills on the press with the check
at its defaults, t2 fires one fill of a chosen length with the check off,
and fit reads rise against dose over the t2 records with the ADC offset
steps masked. The sampler adds the heater output, /cool/status is polled
at 1 Hz with the fan gates, and every controller reply is kept. The job
is fed against the RX buffer's free count, M5 is acknowledged before a
run, a run is refused while the window is armed, and M2 is acknowledged
and the window's close is waited for.
BRINGUP gets item 20: the arm at the first laser-on is skipped while the
driver's spindle-state record reads on, the record is not cleared on
disarm, and the serial layer drops bytes on a full RX ring, so a job with
a lost M5 lets the next job run unarmed. CAMPAIGN-LOG records the Test 1
and Test 2 runs and their numbers.
No catalog consequence: a bench drill on the dev image and documentation;
no runtime behavior of the release image changes.
Comment only. The edit changes the content hash of meta-forgefirm, which
the acceptance manifest counts as a platform change, so the next image
needs a full campaign. Accepted: a full campaign is planned.
The documentation site, docs.forgefirm.org, is the one home for the
developer documentation. BUILD.md, kas/README.md, and docs/ACCEPTANCE.md
are on the site under Developers, and they are deleted here. Every
reference points at the site: README.md, BRINGUP.md, UPDATE-SYSTEM.md,
the kas configuration comments, release.sh, the CI workflow comments, and
the releases, forgetest, and bench READMEs.
BRINGUP.md: "Next work" item 16, step timing under CPU contention, is
closed; the video work resolved it. The items after it are renumbered.
CAMPAIGN-LOG.md records the closure.
Documentation and comments only. No layer content changes, so the
manifest identity of the next image does not change. No catalog
consequence.
live_fire_drills.py gains dpatch: two rows of small serpentine-filled
patches on scrap. Row A is CW at feeds that give relative doses from 1.0
to 0.25. Row B is density 100, 80, 60, 45, and 30 percent at F600. The
operator matches each row-B patch to the row-A patch of equal depth. That
reads the light fraction of a density off the material, next to the
prediction of the thermopile. The drill samples sysfs at 25 Hz, as pcurve
does, and writes a JSON record to the bench data directory.
Bench tool only, on the dev image; no catalog consequence.