Installer rewritten around a preflight: distro, package manager, display manager, window manager, terminal, tmux, cargo, git, screen locker, touch device, device permissions and free disk are all checked BEFORE anything is installed, and the total cost is printed once for a single confirmation. Prompts read /dev/tty so they still work when the script is piped from curl, and fall back to defaults with a notice when there is no terminal at all. Several "[ test ] && action" statements were set -e landmines: under set -e an AND-OR list that ends up false aborts the script, so a box with no lightdm, no i3 or nothing to install would have exited silently partway through detection -- which is exactly the fresh-Debian case the installer exists for. Rewritten as if-statements and verified against a stripped PATH with no tmux, cargo, git or package manager present. Also fixed cargo detection reporting blank instead of NOT INSTALLED: the status of `cargo --version | cut` is cut's, and cut succeeds on empty input, so the fallback never fired. Device access now defaults to a udev rule matching touchscreens only, rather than the input group, which grants access to every input device including the keyboard and needs a full logout. README rewritten for someone who has not seen the project: what the photo shows, the hardware, install, then a config built up step by step, each step with the YAML and the resulting map. Every example is verified verbatim against the binary, and every relative link resolves. The mechanism and the reasoning move to notes/: DESIGN.md, HARDWARE-NOTES.md, V1-BASH.md, TODO.md. cad/README.md was a verbatim copy of the one inside geeekpi_rack_adapter_release_v1/, so every path in it -- including the screenshot -- was broken from where it sits. Corrected to its own level, and it now states once that the 9-inch screen, the 10-inch mini-rack mount and the 19-inch rack are three different measurements. The v1 shell implementation is removed; it stays recoverable at tag v1.2 and notes/V1-BASH.md carries the setting-by-setting migration table. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
6.2 KiB
Design notes
Why the thing is built the way it is. The README says what to do; this says why, so neither has to carry both jobs.
The carousel is tmux pane zoom, not extra processes
There is exactly one monitor process per host. Zooming calls
tmux resize-pane -Z, which makes one pane fill the window and sends SIGWINCH
so the program repaints at the new size.
Three reasons that matters:
- Half the processes. Separate full-screen instances would mean N extra processes and double the polling load on the monitored hosts. On a 1.9 GB display host that is the difference between comfortable and not.
- No reconnect delay. Hidden panes keep running and stay connected, so swiping back shows current data, not a stale snapshot with a spinner.
- Constant load. The monitored hosts see the same connections regardless of what is on screen.
Why the grid is sparse ordinals
The obvious design is that a coordinate names a physical slot. It falls apart on
the first socktop group: a group of four hosts is five screens, so putting
anything to its right means writing 0x5, and adding a fifth host means
renumbering the rest of the row.
Making coordinates pure ordering removes that entirely. Only the sort order
matters, so 0x1 and 0x5 are the same thing, and a group grows without
disturbing its neighbours. The cost is that the file is not a literal map of the
screen — which is what socktop-swipe validate is for.
Why return memory beats spatial snapping
Vertical movement had two plausible rules and they disagree. Purely spatial: from
0x1, up to -1x0, down again lands on 0x0. Return memory: it lands back on
0x1.
Return memory won because the thing you actually do with a wall display is glance away and glance back. Losing your place on every glance is the worse failure, and snapping is only ever needed to decide the first entry into a row. A layout where every row has a cell in the same column never snaps at all.
Why evdev instead of lisgd
libinput deliberately emits gesture events only for touchpads, never for
touchscreens, so libinput-gestures and everything built on it cannot work here
at all. Something has to read raw touch events. v1 used
lisgd; v2 does it in-process.
What that bought:
- No C toolchain in the install path. No
libinput-dev, nolibX11-dev, nogit cloneandmake. On the Wyse's 8 GB of eMMC that is not a small thing. grab: truereplaces the X ignore rule.EVIOCGRABtakes the device exclusively, so X never sees the touches — which is what v1'sOption "Ignore"InputClass was faking, except this needs no X restart and no logout. The X rule is still documented in the README as a fallback for anyone who wants touch to reach other applications.- One process, so the double-instance bug cannot happen. lisgd does not grab the device, so two copies made every swipe fire twice and the carousel appeared to skip. Now the second copy fails to grab and says so.
- The contact-count workaround became honest. Instead of binding three
separate lisgd gestures per direction, the peak contact count is a field on the
detected swipe, and
doctorprints it in English.
Averaging rather than summing the contacts' travel matters here: a panel reporting one physical finger as three contacts must not look like three times the displacement. There is a test for exactly that.
Why panes are addressed by id, and kept alive
Pane indices renumber when a pane dies. Pane ids (%12) do not, so every
lookup uses them.
That leaves the question of what happens when a monitor exits — a typo in a
generic command, a socktop that cannot reach its agent. tmux destroys a window
when its last pane goes, which during construction breaks the next
split-window with a baffling "no current target", and afterwards silently
reshuffles the display.
v1 used remain-on-exit, which cannot actually do the job: it is a per-window
option that new windows do not inherit, so there is always a gap between creating
a window and setting it. v2 wraps each command instead:
<command>; s=$?; printf '\n[%s exited: status %s]\n' <name> "$s"; while :; do sleep 86400; done
The pane outlives the command, and the failure is visible on the wall display
with its exit status — which is what a wall display is for. tmux already runs
each command under sh, so this costs one shell that stays resident per pane
rather than one that execs away.
Why at: "0x0" must be quoted
YAML reads an unquoted 0x0 as the hexadecimal number 0. The nasty part is that
1x0 is not valid hex and arrives as a string, so only the row-0 entries break
and the failure looks arbitrary. Deserialization catches the integer case and
prints the fix rather than a type error.
Multiplexer: tmux, with zellij shelved
src/session/ is a Multiplexer trait with a tmux implementation behind it, so
the question is cheap to reopen. It was shelved rather than rejected, for reasons
worth recording so it is not re-litigated:
- "Available as a crate" is not an embedding API.
zellij-server,zellij-clientandzellij-utilsare published, but they are workspace crates for the binary, not a supported library surface. Realistic integration is the CLI or a WASM plugin — so it would still be a subprocess driven over a CLI, exactly like tmux. - Addressability is what we depend on. The grid needs "focus cell 0x1,
sub-screen 3, zoomed" as one deterministic call. tmux gives that directly
(
select-pane -t %12,resize-pane -Z). zellij's CLI is direction-oriented (move-focus left), which would mean counting relative moves and tracking state we cannot verify. - Footprint runs the wrong way. zellij is a client/server async multiplexer
with a wasmtime plugin runtime, heavier at idle than tmux's C implementation.
On 2 GB boxes that is the binding constraint, and
apt install tmuxversus a zellij source build on an Atom is a much worse story for the install guide.
The one idea worth keeping on the shelf: running the navigation state machine as
a WASM plugin inside zellij via zellij-tile, which would give real event
subscriptions instead of driving a CLI. Revisit only if tmux becomes the
bottleneck.