A one-time event opened for editing said "this is a recurring event —
changes apply to the whole series", and deleting one offered to delete
all occurrences of an event that has exactly one.
Three places asked whether an event had a baseEventId and took that for
recurrence. It isn't: the calendar loads its range with expandRecurrences,
and Stalwart puts a baseEventId on everything it returns that way, a
one-off pointing at itself included. The mock never sets the field at
all, which is why this only showed up against a real server.
They now share isRecurring(), which asks about recurrence rules, and
treats a base that is some other event as an occurrence of a series too
— so an expanded instance that travels without its rules is still
described honestly on the way to being deleted.
Fixes#25
Scheduled send, which the README listed as needing server support that
Stalwart has had all along. The delay cannot be asked for directly --
RFC 8621 makes `sendAt` read-only and server-derived -- so it goes on the
envelope as an RFC 4865 `HOLDUNTIL` parameter, and the server reports back
the time it settled on.
Stalwart advertises this in the *account* capability, not the session-level
one (which is empty): `maxDelayedSend` of thirty days and `FUTURERELEASE`
among its `submissionExtensions`. The composer offers scheduling only when
both are there, and never offers a time the server would refuse.
A held message goes to a Scheduled folder rather than Sent, because
`onSuccessUpdateEmail` would otherwise file it as sent the moment the
submission is created, and it has not been sent. Nothing moves it out when
the hold expires, so the folder is reconciled on the way in: released
messages to Sent, cancelled ones back to Drafts. Cancelling uses a separate
`Email/set` rather than `onSuccessUpdateEmail`, whose key Stalwart reads as
an Email id and not, as the RFC says, a submission id.
The mock grows the whole lifecycle, and learns to resolve creation
references while it is there -- it had been quietly declining to create any
submission at all, since sending names its message as `#m`. Because
Stalwart's own `futureRelease` setting defaults to off and then drops the
hold in silence, `npm run dev:mock:no-future-release` reproduces that.
Verified end to end against the mock; not yet against the live server.
Emptying Deleted Items back-referenced one Email/query straight into one
Email/set, so every id in the folder arrived in a single call. Stalwart
refuses the whole call over maxObjectsInSet with requestTooLarge, which
left a folder of 5192 messages impossible to empty at all.
Walk the folder a page at a time instead: the filter re-runs each pass,
so the next page is whatever is still there. A pass that destroys nothing
stops the loop and reports the server's error rather than spinning.
The same defect sat in two neighbours. Delete-forever on a large
selection sent every id in one Email/set, and mark-all-read fed up to
5000 ids into an Email/get that only echoed them back - past
maxObjectsInGet, and for no gain, since the query already returned them.
Both now page through the same ceiling, read from the session rather than
hardcoded.
The mock advertised maxObjectsInSet but never enforced it, so none of
this could fail in a test. It now rejects oversized get and set calls the
way Stalwart does.
While here, restrict emptying to Deleted Items. It was offered on Junk
too, where a permanent one-shot clear is harder to justify; Junk is now
select-all plus Delete, which takes the batched path.
Every message ihasmail sent set cc, bcc and replyTo to null when unused, and
inReplyTo/references likewise on a new message. Stalwart parses those
properties with try_into_address_list, which returns None for null, and the
create is rejected outright:
if let Some(addresses) = value.try_into_address_list() { ... }
else { response.invalid_property_create(id, header); continue 'create; }
So every send failed with "Invalid property or value.", new messages and
replies alike, regardless of attachments or signature. The mock server
accepts anything, which is why this only showed up against a real server.
Empty header properties are now omitted. On a create there is no previous
value to clear, so null was never needed - only the properties actually being
set belong in the object.
buildEmailObject is exported so the shape can be tested directly, with a
regression test that no property is ever null.