Files
socktop-swipe/README.md
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jasonwitty 9226224507 Set window options per window; label panes where programs cannot clobber them
Two bugs found deploying to the LattePanda, both of which v1 also had.

Window options do not propagate from the session and new windows do not
inherit them. `set-option -t <session> pane-border-status` quietly applies to
whichever window happens to be current, so only ONE window ever got pane
borders -- v1's rack display has had unlabeled borders on two of its three
windows this whole time and nobody noticed, because the window that got them
was the one usually on screen. This is the same trap that makes remain-on-exit
useless here. pane-border-status, pane-border-format and allow-rename are now
set per window in place(), and a test asserts every window has them.

Pane labels no longer use `select-pane -T`. The pane *title* is writable by
whatever runs in the pane: unifly probes for Kitty graphics support on startup
and tmux consumed part of that probe as a title change, so the border read
"Gi=31,s=1,v=1,a=q,t=d,f=24;AAAA" instead of "unifly". Labels now live in a
pane-scoped user option, @socktop_label, which no escape sequence can reach;
pane-border-format falls back to the title if it is somehow unset.

Also: `terminal:` now expands a leading ~/ like `binaries:` already did. A
window manager's PATH rarely includes ~/.cargo/bin, so a full path is the usual
answer there and should not have to be spelled out longhand.

Build cost corrected from guesses to measurements on the LattePanda (Atom
x5-Z8350, 4 cores, 1.9 GB, no swap, toolchain already present): 108 seconds,
peak 1.1 GB, 103 MB target directory, 946 KB binary. The README said twenty
minutes and the installer budgeted 600 MB; both were wrong.

Integration tests now use one tmux session name each -- cargo runs them in
parallel and they were tearing down each other's server state.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-09 13:24:16 -07:00

351 lines
14 KiB
Markdown

# socktop-swipe
A rack-mounted touchscreen you swipe through to see what your machines are doing.
Terminal dashboards are arranged in a grid. Swipe left and right to move along a
row; swipe up and down to move between rows. A group of hosts is one place in
that grid: it shows them tiled together first, then each one full-screen as you
keep swiping.
![The touch panel mounted in the rack, showing four Raspberry Pis tiled together](media/rack-display.jpg)
<video controls src="media/swipe-demo.mp4"></video>
Built for a 9" panel bolted into a 19" server rack, driven by a low-power x86 box
running i3 on X11.
## What you're looking at
The photo is a 9" touchscreen in a 19" rack, showing four Raspberry Pis at once
via [socktop](https://github.com/jasonwitty/socktop). It is a wall display: no
keyboard, no mouse, nothing to log into. It comes back by itself after a power
cut and it never blanks.
Everything on it is a terminal program. socktop-swipe does not draw anything
itself — it decides what is on screen and reads your finger.
```
unifly -1x0
(UniFi network)
┌──────────────────────────────┐ ┌──────────────────┐
│ 4 Raspberry Pis │→ │ 2 more machines │ row 0
│ tiled, then each full-screen│ │ │
└──────────────────────────────┘ └──────────────────┘
0x0 0x1
uptime kuma 1x0
(service status)
```
Swipe forward through row 0 and you get: all four Pis tiled, then `rpi-master`
full-screen, then each of the others, then on to the next group. Swipe up at any
point for the UniFi network view; swipe back down and you are on the exact host
you left.
## Hardware
| Part | What was used | Notes |
| --- | --- | --- |
| Display host | LattePanda (Atom x5-Z8350, 1.9 GB) | Debian 11, i3 on X11 |
| Display host | Dell Wyse 3040 (Atom x5-Z8350, 2 GB) | ~$35 used; 8/16 GB eMMC, DP out |
| Panel | GeeekPi 9" 1280x720 3U touchscreen | ILITEK USB touch |
| Mounting | [`cad/`](cad) — 19" rack adapter | 3D-print or laser-cut aluminium |
Any Linux box with a USB or DSI touchscreen will do. It is deliberately modest
hardware: the whole point is a display that idles at a few watts.
The panel is sold as a **10-inch mini-rack** part. [`cad/`](cad) has a pair of
side adapters — OpenSCAD source, STLs with tested print settings, and
SendCutSend-ready DXFs — that mount it in a standard **19-inch** rack, with three
keystone jack positions on each side. The geometry has been physically tested.
## Install
```sh
curl -fsSL https://gt.wittyoneoff.com/jason/socktop-swipe/raw/branch/main/install.sh | sh
```
It checks everything first and prints the whole cost — packages, toolchain, disk
— before changing anything. Then it asks, one thing at a time:
- which touch device to use (it looks for one and offers it)
- how to grant access to it: a udev rule for touchscreens only, or the `input`
group
- whether to install socktop, uptime-kuma-status or unifly
- whether to stop the screen blanking, sleeping and locking
- whether to autostart on login
- whether to log straight in at boot, so it comes back after a power cut
Every answer has a sensible default and nothing is required. Piping into `sh`
leaves no keyboard on standard input, so the script reads your terminal directly;
if there is no terminal at all it takes the defaults and says so. `--yes` skips
the questions.
There are no prebuilt binaries yet — it builds from source, so a Rust toolchain
is installed if you do not have one.
Measured on the LattePanda (Atom x5-Z8350, 4 cores, 1.9 GB RAM, no swap), with a
toolchain already present: **108 seconds**, peaking at 1.1 GB of the 1.9 GB and
leaving a 103 MB build directory. The 946 KB binary is the only thing installed.
Add roughly 1.2 GB and a few minutes if rustup has to be fetched too. The
installer checks free space first and tells you if it will not fit.
<details>
<summary>From a checkout instead</summary>
```sh
git clone https://gt.wittyoneoff.com/jason/socktop-swipe
cd socktop-swipe
./install.sh
```
</details>
## Your first config
The config lives at `~/.config/socktop-swipe/config.yaml`. The installer writes a
starting point; this section builds one up from nothing.
**Check every edit** with:
```sh
socktop-swipe validate
```
which resolves the grid, prints the map, and tells you if a program it would run
is not actually there.
### One group of hosts
```yaml
touch:
device: /dev/input/by-id/usb-ILITEK_ILITEK-TOUCH-event-if00
width: 1280
height: 720
screens:
- at: "0x0"
type: socktop
socktop_group: [rpi-master, rpi-worker-1, rpi-worker-2, rpi-worker-3]
```
That is five screens: the four hosts tiled, then each one full-screen.
```
0x0 tiled → rpi-master → rpi-worker-1 → rpi-worker-2 → rpi-worker-3
```
> **Quote the coordinate.** Unquoted, YAML reads `0x0` as the hexadecimal number
> zero. `socktop-swipe validate` will tell you so if you forget.
### Something above it
```yaml
- at: "-1x0"
type: unifly
```
Row `-1` is above row `0`. Now swiping up from any of those five screens shows
the UniFi TUI, and swiping down returns you to the exact host you were on.
### Something below, and more hosts alongside
```yaml
- at: "0x1"
type: socktop
socktop_group: "orangepi, trixie"
layout: even-vertical
- at: "1x0"
type: uptime-kuma-status
url: https://status.example.com/status/mine
```
`0x1` sits to the right of `0x0`, so you reach it by swiping forward past the
last Pi. `1x0` is below.
Full worked example with every option commented:
[`config.example.yaml`](config.example.yaml).
## How the grid works
**Row increases downward.** `-1x0` is above `0x0`; `1x0` is below it. Column
increases rightward. You start at `0x0`.
**Coordinates are ordering, not slots.** Only their sort order matters, so `0x1`
and `0x5` are interchangeable. You never have to count how many screens a group
produces in order to place something next to it — add a host to a group and
nothing else needs renumbering.
**A group of hosts is one place in the grid.** Swiping forward walks its screens
— tiled overview, then each host — and only moves on to the next place after the
last one. Coming back from the right lands you on that group's *last* host, not
its overview, so the row reads as one continuous strip.
**Swiping up or down returns you to where you were.** Each row remembers its
position. If you glance at the network view and come back, you are on the same
host, still zoomed.
**Nothing wraps around.** Swiping past either end of a row does nothing. On a
wall display, wrapping makes it impossible to tell where you are.
If a row has no screen in your current column, you land on the nearest one —
`0x3` swiping up with only `-1x0` above goes there. That only happens the first
time; after that the row remembers.
## Monitor types
Every type also accepts `command:` to replace the generated command outright, and
`title:` to change the label on the pane border.
| `type:` | Parameters | What it runs |
| --- | --- | --- |
| `socktop` | `socktop_group` (list, or comma-separated string), `layout` | one [socktop](https://github.com/jasonwitty/socktop) per host |
| `uptime-kuma-status` | `url` | [uptime-kuma-status](https://github.com/jasonwitty/uptime-kuma-status) against a public [Uptime Kuma](https://github.com/louislam/uptime-kuma) status page |
| `unifly` | *(none yet)* | [unifly](https://github.com/jasonwitty/unifly) `tui` |
| `generic` | `command`, `title` | anything you like |
`layout` takes any tmux layout name: `tiled` (the default), `even-horizontal`,
`even-vertical`, `main-horizontal`, `main-vertical`.
```yaml
- at: "1x1"
type: generic
title: k3s
command: journalctl -f -u k3s-agent
```
## Configuration reference
| Key | Default | What it does |
| --- | --- | --- |
| `session` | `socktop-swipe` | tmux session name |
| `terminal` | *(none)* | Terminal that `run` opens the dashboard in. Unset attaches in the current one |
| `indicator` | `false` | Show position — what is above, where you are, what is below — in the status line |
| `binaries.socktop` etc. | looked up on `PATH` | Full path to each program. `~/` is expanded |
| `touch.device` | — | **Always a `/dev/input/by-id/` path**; `eventN` numbers change on reboot |
| `touch.width` / `.height` | — | The **panel's** resolution, not the X screen |
| `touch.grab` | `true` | Take the panel exclusively so X never sees the touches |
| `touch.threshold` | `80` | Pixels of travel before a drag counts as a swipe |
| `touch.leniency` | `30` | Degrees off-axis tolerated, max 45 |
| `touch.fingers` | `[1, 2, 3]` | Contact counts accepted. **The setting most likely to need changing** |
| `gestures.forward` / `.back` | `RL` / `LR` | Named by finger motion. Swap to reverse |
| `gestures.up` / `.down` | `DU` / `UD` | |
### Commands
| Command | |
| --- | --- |
| `socktop-swipe run` | Build the session, open it in a terminal, read the panel. The one thing to autostart |
| `socktop-swipe validate` | Check the config and print the grid map |
| `socktop-swipe doctor` | Swipe, and be told what the panel reported |
| `socktop-swipe doctor --list` | List touch devices — works before any config exists |
| `socktop-swipe forward` / `back` / `up` / `down` | Move a running instance. For keybindings, or a box with no panel |
| `socktop-swipe build` / `attach` / `daemon` | The pieces of `run`, separately, for a systemd split |
## Unattended operation
A wall display has to survive a power cut with nobody in the room.
**Never blank.** The installer writes an Xorg `ServerFlags` snippet with all four
timeouts at zero, which covers every session including the display manager's
greeter and survives reboots, *and* adds an `xset` line to the session autostart,
because a session can re-enable blanking after X starts. Both are needed. Check
with `xset q | grep -A1 -E 'Screen Saver|DPMS'` — you want `timeout: 0`,
`prefer blanking: no`, `DPMS is Disabled`.
**Come back by itself.** Without autologin, a reboot leaves the panel at a login
prompt and nothing starts. The installer offers a lightdm drop-in. It is opt-in
and defaults to no, because **anyone with physical access to the panel gets that
user's session** — only do it where the account is nothing but the dashboard.
Delete `/etc/lightdm/lightdm.conf.d/50-autologin-socktop-swipe.conf` to undo it.
**Autostart.** `socktop-swipe run` is a single process that builds the session,
opens the terminal and reads the panel, so one line in your window manager's
autostart is enough. For a systemd user session,
[`packaging/socktop-swipe.service`](packaging/socktop-swipe.service) splits it up.
## Troubleshooting
Start here:
```sh
socktop-swipe doctor
```
It watches the panel and says what it saw in English — direction, contact count,
and why a gesture was ignored.
### Swipes are detected but nothing happens
`doctor` will say `saw 2 contact(s), config accepts [1]`. Many multipoint panels
report two or even three contacts for a physically one-finger swipe. Add them to
`touch.fingers`. This is the single most common problem on new hardware.
### Nothing is detected at all
In order: is the device path right (`socktop-swipe doctor --list`)? Can you read
it — is the udev rule installed, or are you in the `input` group and did you log
out and back in? Is the panel plugged in?
### Swipes work, but the terminal also reacts — text zooming, panes resizing
X is delivering touch to whatever is on screen as well. `touch.grab: true` (the
default) prevents this by taking the device exclusively. If you have set it to
`false` because you want touch in other applications, tell X to ignore the panel
instead:
```sh
sudo tee /etc/X11/xorg.conf.d/99-ignore-touch-socktop-swipe.conf >/dev/null <<'EOF'
Section "InputClass"
Identifier "ignore touchscreen (socktop-swipe)"
MatchProduct "ILITEK"
MatchIsTouchscreen "on"
Option "Ignore" "on"
EndSection
EOF
```
Adjust `MatchProduct` to your panel, and restart X.
### A pane shows `[... exited: status 1]`
That monitor program stopped. The pane is deliberately kept so the layout does
not reshuffle and you can see what happened. Check the path under `binaries:`,
and that the program works when you run it by hand.
### The dashboard is on a screen that isn't there
Some boards report an output with no panel behind it, and X will happily put the
dashboard on it — everything looks fine over ssh while the real panel shows an
empty desktop. See [`notes/HARDWARE-NOTES.md`](notes/HARDWARE-NOTES.md).
## Uninstall
```sh
./uninstall.sh # binary, config, udev rule, X snippets, autologin
./uninstall.sh --keep-config # keep your settings
```
The Rust toolchain, tmux, the monitor programs and your `input` group membership
are left alone; the script prints how to remove each.
## Notes
Design decisions and the reasoning behind them are in [`notes/`](notes):
- [`DESIGN.md`](notes/DESIGN.md) — why tmux, why evdev, why the grid works this way
- [`HARDWARE-NOTES.md`](notes/HARDWARE-NOTES.md) — panel quirks, phantom outputs, the `sudo xset` trap
- [`V1-BASH.md`](notes/V1-BASH.md) — the shell implementation this replaced, and how to migrate
- [`TODO.md`](notes/TODO.md)
## Related
- [socktop](https://github.com/jasonwitty/socktop) — the host monitor this was built around
- [uptime-kuma-status](https://github.com/jasonwitty/uptime-kuma-status) — Uptime Kuma status pages in a terminal
- [unifly](https://github.com/jasonwitty/unifly) — UniFi network TUI
## License
Apache-2.0.