The pthresh ladder on scrap puts the tube's two thresholds far apart: the
discharge strikes between 2 and 3 percent duty, but nothing lases usefully
below 16 percent (PWMSAR 20), and the rungs between show only a spot at
each line start. $35 ships at 16 (grblhal-glowforge 9466f76, pinned here).
The drill said current lift-off and first mark share a rung; this run
falsifies that, so its docstring and read-the-material text now name both
thresholds and warn that a start-of-line spot is below the threshold, not
at it.
A start-of-line spot is also what a full-power leak at a kernel run start
would look like, so laser_stream_test gains a ladder session (rule 10):
every FIRE tick must ride a commanded duty, and the fire ticks must divide
evenly across rungs. Both hold exactly - six commanded duties, no others,
and 28296 fire ticks on every rung - so the spots are the tube, not the
stream. The harness now derives its expectations from the floor, which
moves the M4 session's S500 plateau from 63 to 73.
laser.power-floor is a new auto acceptance test, the suite's only
non-firing one: a machine must actually carry the commissioned floor,
since stored settings beat freshly baked defaults.
Three cloud cuts of one square at Precision Power 1, 100 and Full Power
show what the analog path is competing with: the power byte is pinned at
127 in all three, dose is FIRE-bit density on a fixed 7-tick period with
the on-count dithered between adjacent integers, and the power setting
never reaches the machine at all. Facts bank and item 17 carry the
numbers; CAMPAIGN-LOG carries both sessions.
Bump the grblHAL pin to the producer lead and margin instrumentation.
Rewrite BRINGUP item 16 to the present state. The scheduling half is
done - the producer runs SCHED_FIFO below the shipper, core_mx carries
priority inheritance, and clamping is reported per run - and two bench
runs 90 s apart on one image show what that does and does not cover: a
nice-5 CPU hog passes clean while the camera streaming clamps 7 runs,
because per-frame cache maintenance over a 4.8 MB non-coherent capture
buffer is kernel-context work no userspace priority can preempt.
Record the margin finding, since it explains why a 4 ms stall was
enough: the queue depth cancels between the shipper's due index and the
producer's base, so the pacing lead is the only slack. Record the
cycle-churn ceiling that caps that lead at 10 ms, and that the re-base
fix is what unlocks more.
Camera gating stays owed, with capture resolution named as the lever
that shortens the stall rather than merely spacing stalls out.
The image has no `nice` binary - BusyBox ships renice only - so
motion.step-timing-under-load could not spawn its CPU hog at all. Set the
niceness from the parent with os.setpriority once the child exists, and
assert the value that actually took: a hog left at nice 0 would be a
harsher test than intended, and one left unset must not pass silently.
Add htop to the dev image for bench diagnostics. The release image is
unchanged - it carries neither forgetest nor htop.
Bump the grblHAL pin to the real-time producer change.
Add motion.step-timing-under-load: the catalog had nothing that
exercised step generation while userspace competed for the single core,
which is exactly the gap that let the condition go unnoticed - the ring
never runs dry, so cnc/underruns reads 0 through it. The test asserts
the producer and the shipper both hold SCHED_FIFO, then drives
2000 mm/min round trips against a deliberate nice-5 CPU hog and requires
the controller to report no clamped events.
Add the pthresh live-fire drill: a constant-power ladder from 2 % to
30 % of full on scrap. Because $35 is a percent of full duty and the
rungs are percents of $30 with $31 = 0, the lowest rung that marks reads
directly as the $35 value. It needs $35 = 0 for the run, or the floor
lifts every rung and hides the threshold.
Record both open items in BRINGUP. The laser one carries the finding
that the factory never uses duty as a power control - all five firing
jobs in the captured pulse files pin the power byte at 127 and modulate
dose by dithering the FIRE bit at 6.5-18.8 % density - so the captures
cannot supply a $35 default, and the duty to optical-power transfer
function of this supply has never been measured.
cloud.lid-abort now proves the park with the machine's own counters
(cloud clears them at every job start, so a completed park reads back
at (0,0)); stale ring bytes replayed ahead of the park would not.
The lid/button/interlock parity change (BRINGUP item 16): the arm wait
and a running job cancel on lid or interlock the factory's way, the
button pauses/resumes, lid_policy and the cloud pause tick settings.
Cloud tests cloud.* and the new motion/laser lid tests cover the
components; the python3-gfhardware / gfutilities pins move with this in
meta-openglow.
The panel moved out of ui.c into src/ui/{index.html,panel.css,panel.js},
bundled into index_html[] by CMake. forgectrl.panel-serves now covers
src/ui/** and checks that the served page carries no external asset
reference - the bundle is what keeps the panel a single self-contained
response, and this is where that would break. Fetch-verified and
cross-built in the build tree (bitbake forgectrl).
The forgectrl commit adds .devcontainer/, .vscode/tasks.json and
.env.example (the panel dev server replaces tools/mock.py, which was
already allowed under tools/**). None of it ships or changes target
behavior, so the coverage lint allows those paths for every component
rather than demanding acceptance coverage for editor setup.
Fetch-verified in the build tree (bitbake -c fetch forgectrl).
A component pin bump counted as a platform change: the layer content hash
in the platform identity covered the recipe carrying the SRCREV, the
platform is folded into every acceptance fingerprint, so every image
that carried any component update invalidated the whole catalog (dev
image 20260816191951: every test domain-changed after a one-line
forgectrl bump; the two manifests differ only in
platform.layers.meta-forgefirm). The component entry already identifies
the pinned source file by file; the pin double-counted it.
Component pins now live in <recipe>-pin.inc (SRCREV and the PV that
moves with it, nothing else) - forgectrl, grblhal-glowforge and
forgefirm-app here, the BSP components in meta-openglow - and
forgefirm-image-manifest.bbclass leaves *-pin.inc out of the layer
content (FORGEFIRM_MANIFEST_PIN_SUFFIX). Recipe bodies, patches, config
fragments, init scripts and third-party pins with no manifest entry stay
layer content; a pin written into a recipe body still hashes (the safe
direction). manifest-from-tree.py mirrors the rule and reads pins
through the recipe's requires; test_tree_manifest.py proves both
(pin bump: hash unchanged; recipe body or inline pin: changed).
Bitbake resolves the same SRCREV/PV for every pinned recipe.
Docs: ACCEPTANCE.md (what layer content is), kas/README.md (the pin
files in the push order), BRINGUP.md (the finding and the bench
consequence: the first image built with the pin files is itself a
platform change, so its campaign is a full one; pin bumps inherit
after it).
No catalog consequence: nothing in the image's behavior changes; the
change is to the acceptance identity computation, proven by the unit
tests and the CI lint on the tree manifest.
Fetch-verified and built in the forge-yocto tree; the binary hot-deployed
on the bench and proven by forgectrl.settings-bounds and
motion.liveness-probe (BRINGUP).
The routing test proves the path every logger takes and stands for the
emitters and relays in every component (fflog in forgectrl and grblHAL,
the SysLogHandler in the Python apps, the supervisor's per-controller
relay, the daemon's fifo relay, the render step): one logger daemon,
rendered rules and the effective record consistent with /logs, the tree,
the daemon's own emitter line, `logger` probes routed by program name in
the ff_line format, a stray program only in system/, kernel lines, relay
processes, nothing written outside the tree. The level-settings test
covers the validators and the configured-vs-effective / pending_reboot
contract. Both PASS on the bench with the existing logs.tree-tail-export
through the real Runner. That test's export call now uses a 300 s client:
the sanitized export took 13.9 s on the target and tripped the 10 s
default. Pin: forgectrl 4d19e9d (the sanitizer skips passes a line
cannot match; 4x faster). Coverage lint enforced: 0 uncovered.
A stdlib-only daemon on the dev image (HTTP :8090) that runs the acceptance
catalog against the machine from a self-contained page, keeps the append-only
result log under /data/forgetest, and exports the release artifact the gate
reads. Tests declare kind (auto / operator / live), hardware (api / takeover),
coverage globs, prerequisites, and core membership; a test's domain
fingerprint is the hash of the manifest files its globs select plus the
platform and its own implementation, so a PASS stays valid exactly while
nothing it covers changed. Campaign rules: a FAIL ends the campaign, the core
(image health, kernel latch and drills, one live emission witness) is never
inherited, invalidate-all forces a full campaign, no SKIP. Live tests need the
operator acknowledgment and the physical arm press through the controller;
takeover tests stop forgectrl for the duration with a crash-recoverable
marker; the tool never touches the laser latch.
Catalog v1: 24 tests ported from the proven bench drills with their recorded
pass criteria (image, kernel K1-K3 and fire A/B/U, forgectrl API and logs,
motion incl. dead-man, cooling, live laser, camera, update, cloud). The bench
tab lists every scripts/bench tool and runs the board-side ones as
subprocesses (takeover tools wrapped). 44 host unit tests, including the gate
verification fixtures. Installed only by forgefirm-image-dev, with the bench
scripts under /usr/share/forgetest/bench.
Every image records the identity of its build inputs. forgefirm-manifest.bbclass
gives a component recipe a per-file source fingerprint (git ls-tree blob ids,
submodules recursed; file:// sources hashed with git hash-object); the kernel
and glowforge.ko publish theirs through do_deploy because kernel-module-split
leaves the module recipe's main package empty. forgefirm-image-manifest.bbclass
assembles the entries with the platform identity - machine, modules directory,
device tree hashes, layer content hashes (meta-forgefirm and the meta-openglow
layers by content, the kas-managed layers by revision) - into
/etc/forgefirm-manifest.json and deploys a copy next to the image. Layer
revisions and dirty flags stay outside the identity, so a rebuild from an
unchanged tree keeps its content hash and the release and dev images of one
build share it. The acceptance tool and the release gate read this file.
rsyslog flagged the fallback action after the include as unreachable (the rendered rules end in stop). The forgefirm-logging init script now writes a default rules file when the render leaves none, and the shipped rsyslog.conf carries only the include.
rsyslog replaces busybox syslogd/klogd (VIRTUAL-RUNTIME_base-utils-syslog,
trimmed PACKAGECONFIG) and becomes the only log writer: the appended
/etc/rsyslog.conf sets the inputs and the ff_line format and includes
the per-logger rules that `forgectrl --render-syslog` renders from the
machine settings at boot. forgefirm-logrotate becomes forgefirm-logging:
render before rsyslog starts (S19), sweep the pre-syslog log files into
/data/forgefirm/legacy-logs once, and rotate the tree at boot and hourly
by rename + HUP instead of copytruncate. Pins bumped to the pushed
forgectrl (syslog emitter, Logs tab, export), grblHAL-glowforge (syslog
emitter) and python3-gfhardware apps (syslog handlers, capture dir);
the CI harnesses set FFLOG_STDERR=1 so failure diagnostics keep the
controller's log lines. BRINGUP carries the bench validation checklist
(Next work item 14); this is an image change and rides the next flash.
SAFETY.md and the safing figure name GPIO4_06 for what it is - the
readback of the chain's HV_ENABLE output through U24 (the factory net
label E-STOP is kept as a note); BRINGUP records the rename, the
device-tree polarity flip that makes bit 4 read as HV_ENABLE itself,
the removal of the estop_halts_motion opt-in, and the bench check for
the flash that ships it. Recipe pins move to forgectrl 801f1f3,
grblHAL-glowforge b629c18 and python3-gfhardware c3d1790 (PV 0.1.5).
docs/SAFETY.md documents the control board's laser safing chain as
reverse-engineered and bench-verified - parts, every net with its SoC pin,
Linux exposure and polarity, the logic, and the software layers ForgeFIRM
stacks on it - with docs/img/safety-chain.svg. Linked from the README.
BRINGUP: Next work item 11 records the interlock-latch finding (an open
loop never tripped the latch; the kernel now drives INTERLOCK_LATCH_RESET)
and the charge-pump watchdog readback, both code-complete and pinned,
bench validation on the next image.
forgectrl ed2934b, grblHAL da4c8eb, forgefirm-app (gfhardware) 6c7534a -
all pushed and fetch-verified, license population checked for the
multi-license recipes.
- kas/README.md: the real-time rationale rests on the feeder's bounded
queue depth, not ring size; the ring is 16 MiB (~84 s at 200 kHz,
~28 min at the 10 kHz cloud tick), a capacity for cloud-mode preload.
- BUILD.md, kas config, release checklist, cold-build workflow: only
forgefirm and meta-openglow (branch scarthgap) are cloned as
siblings; every ForgeFIRM source repo is fetched by pinned SRCREV.
- UPDATE-SYSTEM.md reads as the present-state design: the cloud-mode
compatibility baseline is the cloud client's configured firmware
version, not release metadata; decisions and open items listed
plainly.
- README.md states what GRBL mode still needs the Glowforge service
for (camera-referenced homing) and what runs without it.
- BRINGUP.md: generic build-host and fwup-lab references, the retained
reproductions of the no-fire drill, the System tab.
- LIGHTBURN.md: the arm-window timeouts are machine settings.
- forgefirm-image.bb describes forgectrl as the machine-services
daemon and points at the right backlog entry.
- American spelling throughout.
Pulls in the coarse-pacing fix for parked wait-for-operator states (a
machine left in Door or Hold no longer pins ~28% of the core), plus
P10's grblHAL CI/tests and the mlockall-root-only change. Fetch-verified.
Adds pacing_test.py (dry hold/resume + CPU measurement) and records the
diagnosis and bench validation in BRINGUP.
Pulls in the inverted-doors-bit fix in the liveness probe enclosure
guard (the probe was skipping on every spawn with the lid closed and
would have moved the gantry with it open) plus the P10 -Werror warning
cleanup. Source pushed to origin/main; bitbake -c fetch verified.
forgectrl aa99d30, grblHAL-glowforge e74f53f, and the forgefirm-app
sources at python3-gfhardware c9d602a (PV 0.1.3) - the Phase 1-9
remediation work, pushed and pinned.
- Controllers stop at K80, before forgectrl at K90: runlevel 0/6 no
longer tears down the cooling engine, fire gates, and broker while a
controller may still be executing a job.
- The grblhal/gfcloud init scripts are real emergency levers: stop
routes through the supervisor (POST /controller/stop - a bare pkill
was safed and respawned seconds later), start resumes supervision,
status exists, and the pkill fallback matches full executable paths
instead of truncated names or bare substrings.
- slotmigrate: the partition grow gets the same 2048-sector tolerance
as the filesystem branch (an exact compare rewrote the MBR at S02 on
every boot on disks where the grow cannot land on the last sector),
verifies it made progress, and the resize2fs retry is bounded at
three attempts with the counter kept on p3 itself.
- Installer: archive product/platform are verified after the signature,
and a validly signed OLDER release now requires an explicit yes
instead of installing as a silent downgrade. All predictable /tmp
paths in the installer and ffboot are mktemp now.
- release.sh rejects multiple positional versions (the last one used to
win silently) and a release without factory-era verification dies
unless explicitly bypassed; mkfw.sh refuses to pack when the public
key for the post-sign self-check is missing.
- forgefirm-logrotate: size-capped rotation (boot + hourly) for the
/data logs - a full /data breaks settings, update staging, and the
controllers own writes.
- Bench build scripts derive every path from their own location or
FF_SRC_TOP/FF_BUILD_TOP and log to mktemp files.
- Move the passwordless-root debug-tweaks image feature out of the
shared kas config into forgefirm-image-dev.bb, so the release
forgefirm-image built from the same config is not passwordless-root.
release.sh gains a gate that reads the built rootfs /etc/shadow and
fails on an empty root password, plus a config-level guard that
debug-tweaks is not present in the resolved kas dump. (B-1)
- The installer copies ffboot out of the signature-verified new rootfs
it already mounts, instead of fetching and executing it from a mutable
GitHub raw ref. (B-2)
- Record audit remediation Phase 2 (GATE B) status in BRINGUP.md,
including the bench pass still required to close the gate.
The controller now maps the door pair and the interlock loop onto the core's
safety-door signal, with the e-stop bit behind a machine setting. Records what
is gated and what is deliberately not, the answer to the audit's latch-reset
question, and the bench items the change still needs.
README: replace the stalled REST/GUI roadmap with what the firmware does -
GRBL mode over TCP for LightBurn/UGS/cncjs, optional cloud mode, the web
control panel, cameras, A/B install beside the factory firmware - plus the
supported hardware incl. the 8 MP camera limitation and a real roadmap.
kas/README: xvclk is the board's 24 MHz oscillator; the pin/push rule covers
every source repo; camera and motion sections are hardware-validated, with the
OV8856 caveat spelled out; the device-tree item closes with the control_12v
residue named; forgectrl is the machine-services daemon with two supervised
controllers.
LIGHTBURN.md: drop the pre-first-light status line.
BUILD.md: state the NXP firmware licensing and where the EULA lives on the
machine. The image now installs firmware-imx-lic, so the EULA text ships beside
the VPU/EPDC blobs it covers; a bbappend declares that package at parse time,
which is what makes it installable from an image recipe.
Record the finished shared-services state: forgectrl is the one
machine-services daemon behind both controller modes, both controllers
are cooling-engine clients, and the drill and soak coverage that proves
it. Attribute the cooling policy records to the engine's present home.
Add the remaining polish as Next work item 8 - diagnostics as engine
modes, the rail-policy remainder, cloud per-job fan profile
confirmation, /cool/status cosmetics, and button edge detection.
The controller lifecycle belongs to the forgectrl supervisor (it
spawns the selected controller as a direct child); the init script no
longer starts grblHAL and remains only as a manual emergency stop.
BRINGUP item 2: grbl-mode laser software implemented + bench-verified
without fire (record in the gate list); first light pending.
LIGHTBURN.md: arming/button-press operation, S-max 1000, fire gates.
scripts/bench/laser_stream_test.py: host-side stream-dump contract
verification against the null-sink build.
The cloud-action-surface branches are merged: forgectrl builds from main
(same revision), and the forgefirm-app include pins the python3-gfhardware
master head (adds docs/CLOUD.md and the clean-shutdown gfhome).
gfhome.py, ffmachine.py, and gfcloud.py (with the gfcloud init script
and gfhome conf sample) live in the python3-gfhardware repository's
forgefirm-app/ directory. The three recipes fetch that repo through a
shared include (forgefirm-app.inc) carrying a single pinned SRCREV,
replacing the local file:// copies. Package names, dependencies, and
installed paths are unchanged.