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randogoth 25d181108e Add a README covering use
SPECS.md says why the tool is built the way it is and TODO.md tracks what is
left; neither tells anyone how to use it. This covers install, the whole
configuration format, routing, the commands, and what the state directory
holds.

The Google section is walked through step by step rather than left to Google's
own documentation, because the parts that actually cost time are the ones it
does not cover: the client has to be a Desktop app, since calcalist redirects
to a loopback port it picks at run time and a Web application client demands a
redirect URI and a verified domain it cannot be given; you have to add yourself
under Test users or authorisation fails with access_denied against your own
account; and a consent screen left in Testing has its refresh tokens expired
after seven days, so a working installation stops with nothing having changed.

Checked against the binary rather than by reading: every documented command and
flag against `--help`, every field against config.rs, and the worked example
run through `doctor` and `status` to confirm it validates and prints the
routing markers the README says it does.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-10 14:18:49 +03:00
src Close the remaining M1 gaps 2026-09-10 14:03:44 +03:00
tests Close the remaining M1 gaps 2026-09-10 14:03:44 +03:00
.gitignore Add Google OAuth, and let feed URLs come from a secret command 2026-09-10 13:01:06 +03:00
Cargo.lock Pull Google calendars into their local vdirs 2026-09-10 13:19:34 +03:00
Cargo.toml Pull Google calendars into their local vdirs 2026-09-10 13:19:34 +03:00
devbox.json Scaffold calcalist: repo, toolchain, config model and doctor 2026-09-10 09:31:32 +03:00
devbox.lock Scaffold calcalist: repo, toolchain, config model and doctor 2026-09-10 09:31:32 +03:00
README.md Add a README covering use 2026-09-10 14:18:49 +03:00
SPECS.md Close the remaining M1 gaps 2026-09-10 14:03:44 +03:00
TODO.md Close the remaining M1 gaps 2026-09-10 14:03:44 +03:00

calcalist

Aggregate several calendars into one, and keep them in step.

calcalist mirrors any number of CalDAV calendars, Google calendars and iCal feeds into a single calendar you subscribe to. The point is to subscribe to one calendar instead of several: an event created or edited in the aggregate travels back to the calendar it came from, so the aggregate is somewhere to work rather than a read-only noticeboard. CalDAV and Google are read/write in both directions; iCal feeds are read-only, because the protocol is.

This is pre-1.0. The command line and the configuration format are settled; there is no web interface yet. SPECS.md covers why it is built this way.

How it works

Every endpoint — the sources and the aggregate's target alike — is mirrored to a directory of .ics files on your machine, and the aggregation engine works purely on those files. One cycle is: pull every remote into its local mirror, reconcile the mirrors against each other, push the results back out.

pimsync carries the CalDAV and iCal legs. calcalist carries the Google leg itself, over the Calendar REST API — pimsync cannot reach Google at all, having no REST storage and only HTTP Basic auth, which Google's CalDAV endpoint has rejected since March 2025.

Install

cargo build --release
# target/release/calcalist

One runtime dependency: pimsync 0.5.x on PATH, needed only if any endpoint is CalDAV or an iCal feed. A Google-only setup needs nothing else. pimsync is in nixpkgs; this repo's devbox.json pins 0.5.11 if you would rather not install it yourself.

Then check the environment:

calcalist doctor

It reports whether pimsync is present and in the supported version series, whether the state directory is writable, whether your configuration is valid, whether pimsync accepts the configuration calcalist generates for it, and whether each Google endpoint still has a usable authorisation.

Configuration

One TOML file at $XDG_CONFIG_HOME/calcalist/calcalist.toml, or wherever --config points.

It holds no secrets and no sync state, so it is safe to copy between machines. Credentials come from *_command fields instead: each is run through sh -c and the first line of its output is used. Point them at secret-tool, pass, gpg -d, or anything else that prints the secret.

version = 1

Endpoints

Each [[endpoint]] is one calendar, with an id you refer to it by elsewhere.

CalDAV

[[endpoint]]
id = "posteo"
type = "caldav"
url = "https://posteo.de:8443/calendars/you/abc123/work/"
username = "you@posteo.de"
secret_command = "secret-tool lookup service posteo user you@posteo.de"

url must name the calendar collection itself, not the server root or your principal — the last path segment is the calendar. A URL with no collection in it is rejected, and calcalist doctor says so.

Google

[[endpoint]]
id = "gcal"
type = "google"
calendar_id = "you@gmail.com"
client_id = "1234-abcd.apps.googleusercontent.com"
client_secret_command = "secret-tool lookup service google-calcalist"
# account = "you@gmail.com"   # only when logged in to more than one account

calendar_id is primary, or the calendar's own address — the "Calendar ID" under the calendar's settings in Google Calendar. See Authorising Google below for client_id and the secret.

iCal feed

[[endpoint]]
id = "holidays"
type = "webcal"
url = "https://example.org/holidays.ics"

Always read-only. Give exactly one of url or url_command — the latter for a feed whose address is itself a credential, Google's "secret address in iCal format" being the case in point, since anyone holding it can read the whole calendar:

url_command = "secret-tool lookup service google-secret-ics"

Aggregates

Each [[aggregate]] composes endpoints: several sources mirrored into one target.

[[aggregate]]
id = "unified"
target = "posteo"
sources = ["gcal", "holidays"]
default_sink = "gcal"

# Defaults, all optional:
conflict = "source_wins"      # the only policy; the origin calendar wins
propagate_deletes = true      # deleting a mirror deletes the original
max_delete_fraction = 0.2     # abort if more of the aggregate than this vanishes

max_delete_fraction guards against a cycle that would remove a large part of your calendars — a mistyped URL, a server answering with an empty collection. It has an absolute floor of three deletions, so removing one or two events is never refused. calcalist sync --force overrides it.

The rules, all checked before anything is synchronised, with every problem reported in one pass:

  • target must exist and be writable, so never an iCal feed.
  • target must not also be one of its own sources.
  • sources must be non-empty, and each must exist and be named once.
  • default_sink, if given, must be one of the sources and must be writable.

A complete example

A Google calendar and a public holiday feed, aggregated into a CalDAV calendar:

version = 1

[[endpoint]]
id = "gcal"
type = "google"
calendar_id = "primary"
client_id = "1234-abcd.apps.googleusercontent.com"
client_secret_command = "secret-tool lookup service google-calcalist"

[[endpoint]]
id = "holidays"
type = "webcal"
url = "https://www.officeholidays.com/ics/germany"

[[endpoint]]
id = "posteo"
type = "caldav"
url = "https://posteo.de:8443/calendars/you/abc123/unified/"
username = "you@posteo.de"
secret_command = "secret-tool lookup service posteo user you@posteo.de"

[[aggregate]]
id = "unified"
target = "posteo"
sources = ["gcal", "holidays"]
default_sink = "gcal"

Authorising Google

Google requires an OAuth client of your own. This is the fiddliest part of the setup, so in full:

  1. At console.cloud.google.com, create a project — any name.

  2. APIs & Services → Library, find Google Calendar API, enable it.

  3. OAuth consent screen: choose External. Fill in the required fields. Under Test users, add your own Google address. Without this, authorising fails with 403: access_denied even though the account is your own.

  4. Credentials → Create credentials → OAuth client ID, and for Application type choose Desktop app.

    Desktop app matters. calcalist listens on a loopback port it picks at run time and hands Google that address as the redirect, so there is no redirect URI to register and no domain to verify. A Web application client asks for both and cannot be made to work here.

  5. Copy the client ID into client_id, and put the client secret somewhere client_secret_command can read it:

    secret-tool store --label="calcalist Google client secret" service google-calcalist
    
  6. Authorise:

    calcalist google login gcal
    

    A browser opens; approve the request. calcalist asks only for https://www.googleapis.com/auth/calendar. The refresh token is written 0600 into the state directory, never into your configuration.

One login covers every endpoint on that account. The authorisation is filed under the account it was granted for, not the endpoint that asked, so a second Google calendar on the same account needs no login of its own. Set account on an endpoint only when calcalist is logged in to more than one account and has to be told which is meant.

While the consent screen is in Testing, Google expires refresh tokens after seven days. An installation that worked last week then stops with nothing having changed locally; calcalist google login again, or publish the consent screen. calcalist doctor reports this rather than letting it surface as an opaque failure.

Routing: getting a new event to the right calendar

Every mirrored event carries where it came from — X-CALCALIST-SOURCE and X-CALCALIST-ORIGIN-UID — and a UID derived from its origin, so an edit made in the aggregate goes back to the calendar that owns the event without any guesswork.

An event you create in the aggregate belongs to nothing yet. It goes to the aggregate's default_sink. To send it somewhere else, put the endpoint's id after an @ on a line of its own in the event's notes:

Dentist, bring the referral

@gcal

The marker is removed before the event reaches the calendar. A whole line is required so that an address or a handle written in prose is not mistaken for an instruction.

calcalist status prints the markers that would actually work, so you do not have to remember what is in the configuration file:

aggregate `unified`
  published to   posteo
  sources        gcal, holidays
  mirroring      42 event(s)
  new events go to `gcal` unless told otherwise
  to choose, put one of these on a line of its own in the event's notes:
      @gcal

Read-only feeds are left out, since they cannot take an event. A marker naming anything else is refused and reported — the event stays where it is rather than being quietly filed under the default, which would put it somewhere you did not ask for.

A category matching an endpoint id works too, that being the field iCalendar intends for this. Be aware that any category on a newly created event is read as a routing instruction, so an event carrying an unrelated category will be refused rather than sent to the default sink. The notes marker is the safer form, and the one every mobile client exposes.

Attendees and alarms

Writing to an aggregate must never mail anyone: the guests were already invited from the original calendar. On a Google target, attendees are kept verbatim and Google is told not to notify. A CalDAV server offers no portable way to be told that, so the guest list is instead carried as inert data — the live ATTENDEE and ORGANIZER properties are dropped, the guests appear in X-CALCALIST-ATTENDEES and in the description, and a meeting you declined is marked free.

Routing works the other way round: an event you created and sent to a source is a meeting you are deliberately organising, so its attendees are preserved and that server invites them for real.

Alarms are always kept, with no option to strip them. The whole point of the tool is that you subscribe to one calendar rather than several, so dropping reminders would silently disarm every one you have.

Commands

calcalist sync [--dry-run] [--force]
calcalist status
calcalist doctor
calcalist prune [--force]
calcalist google login <endpoint>
calcalist aggregate retarget <id> --to <endpoint> [--keep-old | --purge-old]
  • sync runs one cycle. --dry-run pulls from the servers for real, into a throwaway copy of the local mirrors, so what it reports is measured against your calendars as they are now — and nothing outside that copy is written. --force overrides the mass-deletion guard.
  • status lists endpoints and aggregates, how many events each aggregate is mirroring, and the routing markers that would work.
  • doctor checks the environment and configuration. Run it first.
  • prune reports local mirrors belonging to endpoints your configuration no longer names. It only lists them until you pass --force, since an endpoint may just have been renamed.
  • aggregate retarget moves an aggregate to a different target calendar deliberately. sync refuses to run when an aggregate's target has changed under it and points here instead — the new, empty target would otherwise read as an aggregate whose every event had been deleted, and with delete propagation on, that would remove them from every source calendar. Events left on the old target are kept unless you pass --purge-old, which only removes events calcalist put there.

Exit codes: 0 all well, 1 something failed or an endpoint could not be reached, 2 not implemented.

If a Google endpoint cannot be reached — a lapsed token, no network — the cycle does not stop. The endpoint is named, only the aggregates that depend on it stand down, everything else is synchronised as usual, and the run exits 1 so the failure cannot pass unnoticed.

Where things are kept

Everything machine-local lives under $XDG_STATE_HOME/calcalist:

state.json                       event mappings, content hashes, sync cursors
pimsync.conf                     generated on every sync; edits are overwritten
pimsync-status/                  pimsync's own record of what it has seen
vdir/<endpoint-id>/              the local mirror of each endpoint
google/accounts/<account>.json   refresh tokens, 0600

None of this belongs in a backup or a dotfiles repository. The state file is a cache rather than a single point of failure — aggregate UIDs are derived from their origin, so a lost state file is rebuilt by re-deriving it. Copy the configuration between machines; leave this behind.

Running it regularly

There are no packaged units yet. A systemd user timer does the job:

~/.config/systemd/user/calcalist.service

[Unit]
Description=Synchronise calendars with calcalist

[Service]
Type=oneshot
ExecStart=%h/.local/bin/calcalist sync

~/.config/systemd/user/calcalist.timer

[Unit]
Description=Synchronise calendars every 15 minutes

[Timer]
OnBootSec=2m
OnUnitActiveSec=15m
Persistent=true

[Install]
WantedBy=timers.target
systemctl --user enable --now calcalist.timer

A cycle is one-shot, and systemd will not start the service again while a run is still going, so a timer is all the scheduling needed. calcalist takes no lock of its own, though, so avoid running calcalist sync by hand while the timer might fire. If your secrets come from a keyring that needs an unlocked session, the timer will only work while you are logged in.

Not yet

  • The web configuration interface. calcalist serve exits 2.
  • Packaged systemd units, as above.
  • A failing pimsync sync stops the whole CalDAV leg. Google endpoints are isolated from each other, but pimsync is a single process covering every CalDAV and feed pair, and a failure does not say which pair it belongs to.