# ESPresso Frame Server Pulls photos from an [Immich](https://immich.app) album, resizes/dithers/quantizes them to the E Ink Spectra 6 panel's exact 6-color format, and serves the frame a ready-to-display image once an hour. All the image processing happens here so the ESP32 never has to decode a JPEG or run a dithering algorithm itself -- it just streams the response straight to the panel. ## Setup 1. **Copy the compose file and run the server**: ``` cp docker-compose.yml.example docker-compose.yml docker compose up -d ``` 2. **First-run setup**: open `http://:8420/` -- you'll be walked through creating the admin account. Every user has their own login; the admin can enroll more from the Admin page (family members can also self-enroll through the frame-claim flow, below). 3. **Connect your Immich library** (per user, in Settings): your Immich URL and an API key. The key needs read access to albums/assets/faces, plus `sharedLink.create` (for the on-frame "scan to download" QR, which creates a temporary public share link) -- a plain read-only key will 403 on that one feature while everything else works. Frames you own pull from *your* library. (`IMMICH_URL`/`IMMICH_API_KEY` env vars in `docker-compose.yml` still work as an operator-level fallback and seed the first admin's settings when migrating an older deployment.) 4. **Provision a frame**: power it on, join its `ESPRESSO_XXXXXX` WiFi (instructions show on the panel), fill in your WiFi details and this server's address (**Tools Server**, e.g. `:8420`). After saving, your browser is redirected to this server's claim page and the frame links to your account -- creating an account on the spot if you don't have one (a valid frame is the invitation). The server speaks plain HTTP itself -- for HTTPS, put a TLS-terminating reverse proxy in front and enter the proxy's `https://` address instead (see `firmware/README.md`'s HTTPS section). 5. **Each frame gets its own device token automatically** -- the server issues it on the frame's first check-in, so there's nothing to configure. The captive portal's **Access Token** field only matters when pointing new firmware at an old (pre-multi-frame) server. `MANAGEMENT_TOKEN` in `docker-compose.yml` is likewise now only the *migration* credential: a frame flashed with pre-multi-frame firmware authenticates with it until it's updated and bound (the Admin page shows the migration state per frame and a "Close legacy window" button for when it's done). 6. **Optional: auto-update firmware from Gitea releases.** If you're pushing this repo to a Gitea instance, `.gitea/workflows/firmware-release-build.yml` builds both supported boards and publishes them as release assets (`firmware-xiao.bin`/`firmware-devkit.bin`) whenever `firmware/version.txt` changes on `main`. In a frame's **Configuration** tab, set the **Gitea repo URL**; if the repo is private, also set `GITEA_FIRMWARE_TOKEN` (a read-only PAT) in `docker-compose.yml`. Which board's build to fetch is learned from the frame itself (its `X-Frame-Board` header) -- nothing to pick by hand. The server then periodically checks for a newer release and either shows an "Update frame" button or, with **Automatically apply updates** checked, stages it itself -- either way the frame only actually updates on its own next wake. ## Users, frames, and control - **Users** log in with a session cookie; passwords are scrypt-hashed; mutating requests are CSRF-protected. Sign-up paths: first-run setup (admin #1), admin enrollment (Admin page), or the claim flow (a valid unclaimed frame's `device_id` gates self-service signup). - **Frames** identify themselves by `?id=` (MAC-derived) on every request and authenticate with a per-frame device token the server issues at first check-in. Unknown frames self-register as unclaimed; claiming (via `/claim?device_id=...`) sets the owner -- whose Immich library the frame renders from -- and links the account. Admins can link additional users to any frame; every linked user sees it in their sidebar. - **Control** is a soft lock per frame: everyone linked can *view*; changing settings/queue requires holding control, and "Take control" always succeeds (the 409 error names the current holder). The physical buttons on the frame ignore all of this. - **The on-frame manage QR** opens a limited no-login page (`/m/`): view current + upcoming, "show next", advance, back -- nothing else. The share QR stays public (it creates a 30-minute Immich share link for exactly the photo shown). - **Email (optional).** An admin sets an SMTP server once (`/admin` -- server, port, username/password, from address, STARTTLS on/off; a "send test email to myself" button, delivered to the admin's own email); each user sets their own email in Settings. Once both are in place: **"Forgot password?"** on the login page emails a one-hour reset link (a generic "check your email" response either way, so the endpoint can't be used to enumerate accounts), and a frame's Configuration tab can set a **battery-alert threshold** -- an email to the frame's owner the first time a report drops to or below it, not again until a recharge is detected and it crosses again. No SMTP configured, or no email on the relevant account, and both features silently no-op rather than erroring. ## Endpoints Pages: `/` (routing hub), `/setup`, `/login`, `/claim`, `/settings`, `/admin`, `/frames/{id}` (Photos), `/frames/{id}/config`, `/frames/{id}/stats`, `/m/{manage_token}`. ### Device protocol (`/frame/*` -- paths frozen; auth = `?id=` + `?token=`) - `GET /frame/image` -- the frame's current image, pre-processed into the panel's raw 800x480, 4-bit-per-pixel, 2-pixels-per-byte format (`application/octet-stream`, exactly 192,000 bytes). **Side-effect-free** by default: it only actually advances once `refresh_interval_s` has elapsed since the current photo was set, so an unexpected reboot just redisplays the same photo. An unclaimed or not-yet-configured frame gets a rendered instruction placeholder (with a claim QR) instead of an error, so a fresh device never error-loops. - `POST /frame/advance` / `POST /frame/back` -- the next/back photo buttons: force an immediate move (mirror images of each other; back pops a bounded 20-entry history and pushes the displaced photo onto the front of the queue). Same response shape as `/frame/image`. - `GET /frame/config` -- `{"refresh_interval_s": ..., "firmware_version": ... | null, "device_token": ...?}`, polled each wake. Captures the `X-Frame-Version`/`X-Frame-Board` headers (running firmware + board variant). `device_token` appears only during the one-time identity handshake -- until the device authenticates with its issued token once -- and the flat firmware parser's 512-byte buffer bounds how big this response may grow. - `GET /frame/photo-info` -- location/date overlay text for the manage menu (city + abbreviated US/CAN region or country, `MM/DD/YY`). - `GET /frame/share/{asset_id}` -- creates a 30-minute public Immich share link and 302s to it; scoped to the photo currently showing or queued on *this* frame only. - `GET /frame/face-labels` -- up to 4 named faces with 800x480 positions, flattened (`name_0`/`x_0`/`y_0`, ...) for the device's flat-scalar parser. - `POST /frame/battery` -- `{"percent": 0-100}`; per-discharge-cycle history (feeds the runtime estimate) plus a permanent per-frame battery log (the Stats chart). Only sent on battery power. Also where the battery-alert threshold (below) is checked and, at most once per discharge cycle, emailed to the owner. - `GET /frame/firmware` -- streams the frame's staged OTA image. ### Web API (`/api/frames/{id}/...` -- session auth; *view* for reads, *control* for writes) - `GET .../queue` -- current + upcoming (each entry id + thumbnail URL), the control state (`{"controller": name, "you": bool}`), and the device telemetry block (`last_seen`, `overdue` -- quiet-hours aware -- firmware versions, battery + runtime estimate). - `POST .../queue/reorder|promote|remove` -- reorder is drift-tolerant (stale ids dropped, missing ids appended); promote is "Show next"; remove permanently excludes from this frame's rotation (never touches Immich) and advances if it was current. - `GET .../albums` -- the owner's Immich albums. - `POST .../config` -- **partial** update: only provided fields change (`name`, `album_id` -- resets queue/history on change --, `order`, `refresh_interval_s`, `display_mode` (`crop_fill`/`crop_faces`/ `stretch_fill`/`letterbox`, see `image_pipeline.DISPLAY_MODES`), `queue_target_len`, `orientation` (composed logically then rotated server-side; the on-device manage overlay still renders native, a known limitation), `quiet_hours_*` + `timezone` (a pure server-side decision shaping what `refresh_interval_s` gets handed to the device), `firmware_update_repo_url`, `firmware_auto_update`, `battery_alert_threshold_pct` -- percent, or `-1`/blank to disable --, `palette` -- exactly 6 `#rrggbb` values in black/white/yellow/red/ blue/green order --, `palette_reset` -- `true` clears back to the default palette --, `color_boost`/`contrast_boost` -- PIL `ImageEnhance` factors, 0-2, 1 = unchanged --, `dither_strength` -- 0-1, blends toward a flat/undithered quantization before running Floyd-Steinberg, so 0 = no dithering texture and 1 = full strength). - `GET .../preview/original`, `GET .../preview/rendered` -- the before/after comparison on the Configuration tab: the current photo's Immich preview untouched (JPEG), and that same photo run through this frame's actual saved rendering pipeline (PNG, upright logical orientation, not packed device bytes) -- reflects saved settings, not unsaved slider positions. - `POST .../take-control` -- always succeeds for a linked user. - `GET .../stats`, `GET .../battery-log`, `GET .../thumbnail/{asset_id}`. - `POST .../firmware` (manual .bin upload, esp_app_desc_t-validated), `GET .../firmware/check` (throttled 15 min; `?force=true` bypasses), `POST .../firmware/apply-latest`. ### Manage-QR API (`/api/m/{manage_token}/...` -- token in path, no login) - `GET queue`, `POST promote`, `POST advance`, `POST back`, `GET thumbnail/{asset_id}` (scoped to this frame's current/queued photos). Nothing else. - `GET /health` -- liveness check, always open. ## Notes - All state (settings, current photo, upcoming queue, battery history, stats) lives in a SQLite database at `./data/espresso.db` on the host via the compose volume mount (`DATABASE_URL` env var to override -- any SQLAlchemy URL works, so a future move to Postgres is a config change). A pre-database deployment's `./data/config.json` is imported automatically on first boot (it becomes frame #1) and left untouched afterwards as the rollback path. `IMMICH_URL`/`IMMICH_API_KEY` env vars (see Setup above) still take precedence when present. - The upcoming queue is a bounded lookahead, not the whole album -- "Upcoming photos to show" in the config UI (`queue_target_len`, 5-50, default 20) controls its size and takes effect immediately (the queue is topped up or trimmed the next time the page loads, not lazily over future advances). It's topped up automatically as photos are consumed, in sequential or shuffle order per the Order setting. Dragging photos in the web UI (or using "Show next") only rearranges what's already in that lookahead; it doesn't add or remove photos from the album. - Auth in one breath: browsers use sessions (+CSRF), devices use per-frame tokens (`?id=` + `?token=`), the manage QR uses its own limited token, and `MANAGEMENT_TOKEN` survives only as the migration credential for pre-multi-frame firmware. `/frame/share` stays scoped to photos this frame is actually showing or has queued, not any Immich asset ID someone might guess -- a second layer a leaked device token alone wouldn't bypass. - Calendar frame mode (`app/calendar_feed.py`) expands recurring events (RRULE/EXDATE/DST) via [`recurring-ical-events`](https://pypi.org/project/recurring-ical-events/), which is LGPL-3.0-or-later -- the only non-permissively-licensed dependency here. It's used as an ordinary `pip install` runtime import, never vendored or modified, so this project's own code stays under its own license; LGPL's copyleft terms apply to that library itself, not to code that merely links against it dynamically. - CalDAV account support (`app/caldav_client.py`, alongside the plain ICS subscription) wraps the `caldav` PyPI package. `caldav` itself is dual-licensed GPL-3.0-or-later/Apache-2.0, but it hard-depends on `icalendar-searcher`, which is **AGPL-3.0-or-later** -- the strongest copyleft in this project's dependency tree, and the one whose network-use clause is written specifically for server applications like this one (not just "don't vendor/modify it," which was enough reasoning for the LGPL dependency above). Taking this on was an explicit, informed call by the project owner, not a default -- anyone redistributing this project (vs. just self-hosting it) should re-evaluate that tradeoff for their own situation before doing so. - Calendar event titles can contain emoji, which `ImageFont.load_default()` (used for every other bit of text this project renders) has no glyphs for -- PIL/FreeType substitute a visible ".notdef" tofu box rather than skipping the codepoint. `app/calendar_render.py` draws emoji runs with a vendored monochrome font instead (`app/fonts/NotoEmoji.ttf`, Google's Noto Emoji, OFL-1.1 -- license text alongside it at `app/fonts/NotoEmoji-OFL.txt`), the one deliberate exception to this project's usual "no new font/icon assets" default elsewhere in calendar_render.py -- there's no way to hand-draw arbitrary emoji with primitives the way the weather icons are. Monochrome rather than a color emoji font on purpose: reliably rendering COLR/CBDT color glyphs depends on how Pillow's FreeType was built, which isn't something this project controls in every deployment environment, and solid black reads cleanly against everything else this module draws in black. - The 6-color palette RGB values in `app/image_pipeline.py` (`DEFAULT_PALETTE_RGB`) are approximations, not measured values (Waveshare doesn't publish exact color primaries for this panel). Each frame's Configuration tab has an **Advanced configuration** section (collapsed by default) with a color picker per ink color -- tune them once you can compare a rendered photo against the real panel, and "Reset to defaults" to go back. Different panel units can vary enough to be worth calibrating per frame. ## Deploying a pre-built image Every push to `main` that touches `server/` triggers a Gitea Actions workflow (`.gitea/workflows/server-docker-build.yml`) that builds this image and pushes it to this repo's Gitea Container Registry at `git.thumeit.com/tfaour/espresso-frame-server`. `docker-compose.yml` (copied from `docker-compose.yml.example`, see Setup above) already points at that image, so a deploy host doesn't need this repo's build context at all -- just the compose file: ``` docker compose pull docker compose up -d ``` `docker compose build` (or `up --build`) still works too, for local iteration against your own Dockerfile changes. ## Local development (without Docker) ``` python3 -m venv .venv source .venv/bin/activate pip install -r requirements.txt CONFIG_PATH=./data/config.json uvicorn app.main:app --reload --host 0.0.0.0 --port 8420 ``` `--host 0.0.0.0` matters here: without it, uvicorn defaults to `127.0.0.1` (localhost-only), which the ESP32 can't reach over the LAN. The Docker image already binds `0.0.0.0` by default.