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inbuxa-server/crates/features/src/hold/mod.rs
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jcoffey-dev 68dd749291
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Export what a legal hold keeps as a ZIP (LH-12)
inbuxa:HoldExport/set takes a hold, optionally some of the accounts it
covers, and a reason; the collection runs in the background and get
says when it's ready. The ZIP has, per account, mail as .eml under its
folders, calendars as .ics, contacts as .vcf, files as stored, and the
archived items the hold keeps under archived/; a manifest.csv gives each
entry's account, kind, folder, date, whether it was archived, size and
SHA-256, and manifest.sha256 hashes the manifest. Accounts the hold
doesn't cover are left out, and items outside its date range are too:
live mail by arrival, events by start, and archived items the same way,
so an export doesn't carry deleted items that only another hold keeps.

The finished file is a blob of whoever started the export, so only they
download it, and it lasts as long as any upload (uploadTtl). Exports
are records under the hold (SUBSPACE_INBUXA H/e): never changed or
destroyed, each with its status, counts, size and checksum. Starting
one needs sysLegalHoldExport, an active hold and a reason, and is
recorded in the audit log like the audit log's own export.

The build is in memory and capped at 2 GB; bigger holds fail with a
message saying so, and are split by picking accounts.

Tested: unit tests for safe ZIP names and the manifest and its hash;
the legal_hold system test, on RocksDB, PostgreSQL and MySQL, exports a
hold end to end (live and archived mail, the manifest's hash, an asked-
for account the hold doesn't cover left out) and checks the refusals
(no reason, a user without the permission, a released hold) and the
audit record; and by hand from the console on a local server. Not
covered by a test: the archived-item date range with two holds of
different ranges over one account.
2026-09-27 21:45:52 -07:00

773 lines
26 KiB
Rust

/*
* SPDX-FileCopyrightText: 2026 Coffey Labs
*
* SPDX-License-Identifier: AGPL-3.0-only
*/
//! Legal holds (audit-hold-lock spec, LH-1 to LH-14).
//!
//! A hold names a case and what it covers: accounts, groups, domains,
//! tenants or the whole server, optionally only items dated inside a range.
//! While any active hold covers an item, nothing may destroy it. A hold is
//! never deleted: releasing it keeps it, read-only, for the audit trail.
//!
//! Kept in the fork's subspace (`store::SUBSPACE_INBUXA`). Every key starts
//! with `H`, then one byte for the kind:
//!
//! - `h` + hold id (u32): the hold, as JSON.
//!
//! Numbers are big-endian. There are few holds, so they're read whole.
use registry::schema::{prelude::ObjectInner, structs::Account};
use serde::{Deserialize as SerdeDeserialize, Serialize as SerdeSerialize};
use store::{
Deserialize, IterateParams, SUBSPACE_INBUXA, Serialize, Store, ValueKey,
write::{AnyClass, BatchBuilder, ValueClass, assert::AssertValue},
};
use trc::AddContext;
/// The deadline a held archived item carries: the last second of 9999. It
/// never passes, so every expiry check keeps the item without knowing about
/// holds (LH-4, LH-5); releasing a hold gives it a real deadline (LH-10).
pub const HELD_UNTIL: u64 = 253_402_300_799;
/// Whether an archived item's deadline marks it as held. Anything past the
/// year 9000 counts, so a deadline computed from a hold a moment earlier or
/// later still reads as held.
pub fn is_held_until(until: u64) -> bool {
until >= 221_845_392_000
}
/// A day, in seconds: the slack either side of a range for an event's start,
/// whose time zone isn't known here.
const DAY: u64 = 86_400;
/// How an account's deleted items are kept: its holds' ranges, and the
/// undelete period for whatever no hold covers (LH-3, LH-4).
#[derive(Debug, Clone, Default, PartialEq, Eq)]
pub struct Keeping {
/// `archiveDeletedItemsFor`, in seconds, if undelete is on.
pub retention: Option<u64>,
/// Each active hold's range on this account; `(None, None)` is a whole
/// account. Empty when nothing holds it.
pub ranges: Vec<(Option<u64>, Option<u64>)>,
}
impl Keeping {
pub fn new(retention: Option<u64>, holds: &[Hold]) -> Keeping {
Keeping {
retention,
ranges: holds.iter().map(|h| (h.from, h.to)).collect(),
}
}
/// Whether any hold reaches the account at all.
pub fn is_held(&self) -> bool {
!self.ranges.is_empty()
}
/// Whether deleted items need noting: something may keep them.
pub fn keeps_anything(&self) -> bool {
self.is_held() || self.retention.is_some()
}
/// Whether a hold covers an item dated `date`. No date means the item is
/// held whole, whatever the range (LH-3).
pub fn covers(&self, date: Option<u64>) -> bool {
self.ranges.iter().any(|(from, to)| match date {
None => true,
Some(at) => {
from.is_none_or(|from| at >= from) && to.is_none_or(|to| at <= to)
}
})
}
/// Like `covers`, for an event's start: a day of slack either side, since
/// its time zone isn't known here.
pub fn covers_event(&self, start: Option<u64>) -> bool {
self.ranges.iter().any(|(from, to)| match start {
None => true,
Some(at) => {
from.is_none_or(|from| at + DAY >= from)
&& to.is_none_or(|to| at <= to.saturating_add(DAY))
}
})
}
/// Until when an item deleted at `now` is kept: held, the undelete
/// period, or not at all.
pub fn until(&self, now: u64, held: bool) -> Option<u64> {
if held {
Some(HELD_UNTIL)
} else {
self.retention.map(|retention| now + retention)
}
}
}
const FEATURE: u8 = b'H';
const KIND_HOLD: u8 = b'h';
const KIND_ORIGINAL: u8 = b'o';
const KIND_EXPORT: u8 = b'e';
/// How far a hold export has got (LH-12).
#[derive(Debug, Clone, Copy, PartialEq, Eq, SerdeSerialize, SerdeDeserialize)]
#[serde(rename_all = "camelCase")]
pub enum ExportStatus {
Running,
Ready,
Failed,
}
/// A collection of what a hold keeps, as a ZIP (LH-12).
#[derive(Debug, Clone, PartialEq, Eq, SerdeSerialize, SerdeDeserialize)]
#[serde(rename_all = "camelCase")]
pub struct Export {
pub id: u32,
pub hold_id: u32,
/// The accounts asked for; empty for every account the hold covers.
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub accounts: Vec<u32>,
pub reason: String,
pub created_at: u64,
pub created_by: String,
/// Whose blob the ZIP is, so only they download it.
pub created_by_id: u32,
pub status: ExportStatus,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub finished_at: Option<u64>,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub blob_id: Option<String>,
#[serde(default)]
pub size: u64,
#[serde(default)]
pub items: u64,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub sha256: Option<String>,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub error: Option<String>,
}
/// How many times creating a hold retries when another node took its id.
const CREATE_ATTEMPTS: usize = 5;
/// What a hold covers (LH-1, LH-2). Domains and tenants are resolved live,
/// so an account added to one later is held too.
#[derive(Debug, Clone, Default, PartialEq, Eq, SerdeSerialize, SerdeDeserialize)]
#[serde(rename_all = "camelCase")]
pub struct Scope {
/// Every account on the server.
#[serde(default, skip_serializing_if = "std::ops::Not::not")]
pub server: bool,
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub accounts: Vec<u32>,
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub groups: Vec<u32>,
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub domains: Vec<u32>,
#[serde(default, skip_serializing_if = "Vec::is_empty")]
pub tenants: Vec<u32>,
}
impl Scope {
pub fn is_empty(&self) -> bool {
!self.server
&& self.accounts.is_empty()
&& self.groups.is_empty()
&& self.domains.is_empty()
&& self.tenants.is_empty()
}
/// Whether this scope covers everything `other` does, entry by entry.
/// A scope may only grow (LH-3's rule for ranges, applied to scope):
/// taking something out would free what it held.
pub fn contains(&self, other: &Scope) -> bool {
let all = |mine: &[u32], theirs: &[u32]| theirs.iter().all(|id| mine.contains(id));
(self.server || !other.server)
&& all(&self.accounts, &other.accounts)
&& all(&self.groups, &other.groups)
&& all(&self.domains, &other.domains)
&& all(&self.tenants, &other.tenants)
}
fn normalize(&mut self) {
for list in [
&mut self.accounts,
&mut self.groups,
&mut self.domains,
&mut self.tenants,
] {
list.sort_unstable();
list.dedup();
}
}
}
/// What decides whether a hold's scope reaches an account: the domains of
/// its addresses, its groups and its tenant (LH-2).
#[derive(Debug, Clone, Default, PartialEq, Eq)]
pub struct Member {
pub account: u32,
pub domains: Vec<u32>,
pub groups: Vec<u32>,
pub tenant: Option<u32>,
}
impl Member {
/// A person's account as the registry stores it; `None` for a group,
/// whose own data is held through its members.
pub fn of(account_id: u32, object: &ObjectInner) -> Option<Member> {
let ObjectInner::Account(Account::User(user)) = object else {
return None;
};
let mut domains = vec![user.domain_id.document_id()];
domains.extend(user.aliases.iter().map(|alias| alias.domain_id.document_id()));
domains.sort_unstable();
domains.dedup();
Some(Member {
account: account_id,
domains,
groups: user.member_group_ids.iter().map(|id| id.document_id()).collect(),
tenant: user.member_tenant_id.map(|id| id.document_id()),
})
}
}
impl Scope {
/// Whether this scope reaches `member`, directly or through its domains,
/// groups or tenant, as they are now (LH-2).
pub fn covers(&self, member: &Member) -> bool {
self.server
|| self.accounts.contains(&member.account)
|| member.domains.iter().any(|d| self.domains.contains(d))
|| member.groups.iter().any(|g| self.groups.contains(g))
|| member.tenant.is_some_and(|t| self.tenants.contains(&t))
}
}
/// When and why a hold was released (LH-10).
#[derive(Debug, Clone, PartialEq, Eq, SerdeSerialize, SerdeDeserialize)]
#[serde(rename_all = "camelCase")]
pub struct Release {
pub at: u64,
pub by: String,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub by_id: Option<u32>,
pub reason: String,
}
/// A legal hold (LH-1).
#[derive(Debug, Clone, PartialEq, Eq, SerdeSerialize, SerdeDeserialize)]
#[serde(rename_all = "camelCase")]
pub struct Hold {
pub id: u32,
/// The case name.
pub name: String,
/// A matter or ticket number.
#[serde(default, skip_serializing_if = "Option::is_none")]
pub reference: Option<String>,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub description: Option<String>,
pub scope: Scope,
/// Seconds since the epoch. Items dated before aren't held (LH-3).
#[serde(default, skip_serializing_if = "Option::is_none")]
pub from: Option<u64>,
/// Seconds since the epoch. Items dated after aren't held (LH-3).
#[serde(default, skip_serializing_if = "Option::is_none")]
pub to: Option<u64>,
pub placed_at: u64,
pub placed_by: String,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub placed_by_id: Option<u32>,
#[serde(default, skip_serializing_if = "Option::is_none")]
pub released: Option<Release>,
}
/// Why a change to a hold is refused.
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
pub enum Refusal {
/// A released hold is read-only (LH-1).
Released,
/// The range may only widen (LH-3).
Narrowed,
/// The scope may only grow.
ScopeShrunk,
/// A hold has to cover something.
EmptyScope,
/// `from` after `to`.
Backwards,
}
impl Refusal {
pub fn describe(self) -> &'static str {
match self {
Refusal::Released => "A released hold can't be changed; place a new one instead.",
Refusal::Narrowed => {
"A hold's date range can only be widened. To hold less, release it and place a new hold."
}
Refusal::ScopeShrunk => {
"Nothing can be taken out of a hold's scope. To hold less, release it and place a new hold."
}
Refusal::EmptyScope => "A hold has to cover at least one account, group, domain or tenant, or the whole server.",
Refusal::Backwards => "The range starts after it ends.",
}
}
}
impl Hold {
pub fn is_active(&self) -> bool {
self.released.is_none()
}
/// Whether an item dated `at` (seconds) falls in the hold's range. With
/// no range, everything does (LH-3).
pub fn covers_date(&self, at: u64) -> bool {
self.from.is_none_or(|from| at >= from) && self.to.is_none_or(|to| at <= to)
}
/// Checks a new hold, and tidies its scope.
pub fn check_new(&mut self) -> Result<(), Refusal> {
self.scope.normalize();
if self.scope.is_empty() {
return Err(Refusal::EmptyScope);
}
if let (Some(from), Some(to)) = (self.from, self.to)
&& from > to
{
return Err(Refusal::Backwards);
}
Ok(())
}
/// Checks that `next` is an allowed change of `self`: names and notes
/// may change, the range may only widen, the scope may only grow, and a
/// released hold may not change at all.
pub fn check_update(&self, next: &mut Hold) -> Result<(), Refusal> {
if !self.is_active() {
return Err(Refusal::Released);
}
next.check_new()?;
// An open end can't be closed, and a set end can only move outward
let from_ok = match (self.from, next.from) {
(None, Some(_)) => false,
(Some(old), Some(new)) => new <= old,
(_, None) => true,
};
let to_ok = match (self.to, next.to) {
(None, Some(_)) => false,
(Some(old), Some(new)) => new >= old,
(_, None) => true,
};
if !from_ok || !to_ok {
return Err(Refusal::Narrowed);
}
if !next.scope.contains(&self.scope) {
return Err(Refusal::ScopeShrunk);
}
Ok(())
}
}
struct Json<T>(T);
impl<T: SerdeSerialize> Serialize for Json<T> {
fn serialize(&self) -> trc::Result<Vec<u8>> {
serde_json::to_vec(&self.0).map_err(|err| {
trc::StoreEvent::UnexpectedError
.into_err()
.details("Failed to serialize legal hold")
.reason(err)
})
}
}
impl<T: serde::de::DeserializeOwned + Sync + Send> Deserialize for Json<T> {
fn deserialize(bytes: &[u8]) -> trc::Result<Self> {
serde_json::from_slice(bytes).map(Json).map_err(|err| {
trc::StoreEvent::DataCorruption
.into_err()
.details("Invalid legal hold")
.reason(err)
})
}
}
fn class(id: u32) -> ValueClass {
let mut key = Vec::with_capacity(6);
key.push(FEATURE);
key.push(KIND_HOLD);
key.extend_from_slice(&id.to_be_bytes());
ValueClass::Any(AnyClass {
subspace: SUBSPACE_INBUXA,
key,
})
}
fn key(id: u32) -> ValueKey<ValueClass> {
ValueKey::from(class(id))
}
fn original_class(item_id: u64) -> ValueClass {
let mut key = Vec::with_capacity(10);
key.push(FEATURE);
key.push(KIND_ORIGINAL);
key.extend_from_slice(&item_id.to_be_bytes());
ValueClass::Any(AnyClass {
subspace: SUBSPACE_INBUXA,
key,
})
}
/// LH-10: an archived item's deadline from before a hold froze it, so a
/// release can give it back (or a later one). None for an item held from
/// its deletion, which never had one.
pub async fn original_deadline(data: &Store, item_id: u64) -> trc::Result<Option<u64>> {
data.get_value::<u64>(ValueKey::from(original_class(item_id)))
.await
.caused_by(trc::location!())
}
/// Notes (`Some`) or forgets (`None`) an item's deadline from before it
/// was frozen.
pub async fn set_original_deadline(data: &Store, item_id: u64, until: Option<u64>) -> trc::Result<()> {
let mut batch = BatchBuilder::new();
match until {
Some(until) => batch.set(original_class(item_id), until.to_be_bytes().to_vec()),
None => batch.clear(original_class(item_id)),
};
data.write(batch.build_all())
.await
.caused_by(trc::location!())
.map(|_| ())
}
fn export_class(id: u32) -> ValueClass {
let mut key = Vec::with_capacity(6);
key.push(FEATURE);
key.push(KIND_EXPORT);
key.extend_from_slice(&id.to_be_bytes());
ValueClass::Any(AnyClass {
subspace: SUBSPACE_INBUXA,
key,
})
}
/// Every hold export, oldest first.
pub async fn exports(data: &Store) -> trc::Result<Vec<Export>> {
let mut exports = Vec::new();
data.iterate(
IterateParams::new(ValueKey::from(export_class(0)), ValueKey::from(export_class(u32::MAX))),
|_, value| {
if let Ok(Json(export)) = Json::<Export>::deserialize(value) {
exports.push(export);
}
Ok(true)
},
)
.await
.caused_by(trc::location!())?;
Ok(exports)
}
/// Writes a new export under the next free id, which it returns.
pub async fn create_export(data: &Store, export: &Export) -> trc::Result<u32> {
let mut attempt = 0;
loop {
attempt += 1;
let id = exports(data).await?.iter().map(|e| e.id).max().unwrap_or(0) + 1;
let stored = Export {
id,
..export.clone()
};
let mut batch = BatchBuilder::new();
batch.assert_value(export_class(id), AssertValue::None);
batch.set(export_class(id), Json(&stored).serialize()?);
match data.write(batch.build_all()).await {
Ok(_) => return Ok(id),
Err(err)
if attempt < CREATE_ATTEMPTS
&& matches!(
err.as_ref(),
trc::EventType::Store(trc::StoreEvent::AssertValueFailed)
) => {}
Err(err) => return Err(err.caused_by(trc::location!())),
}
}
}
/// Saves an export's progress.
pub async fn update_export(data: &Store, export: &Export) -> trc::Result<()> {
let mut batch = BatchBuilder::new();
batch.set(export_class(export.id), Json(export).serialize()?);
data.write(batch.build_all())
.await
.caused_by(trc::location!())
.map(|_| ())
}
/// One hold, released or not.
pub async fn get(data: &Store, id: u32) -> trc::Result<Option<Hold>> {
Ok(data
.get_value::<Json<Hold>>(key(id))
.await
.caused_by(trc::location!())?
.map(|Json(hold)| hold))
}
/// Every hold, released ones included, oldest first.
pub async fn all(data: &Store) -> trc::Result<Vec<Hold>> {
let mut holds = Vec::new();
data.iterate(IterateParams::new(key(0), key(u32::MAX)), |_, value| {
if let Ok(Json(hold)) = Json::<Hold>::deserialize(value) {
holds.push(hold);
}
Ok(true)
})
.await
.caused_by(trc::location!())?;
Ok(holds)
}
/// The holds still in force.
pub async fn active(data: &Store) -> trc::Result<Vec<Hold>> {
Ok(all(data).await?.into_iter().filter(Hold::is_active).collect())
}
/// Writes a new hold under the next free id, which it returns. Two nodes
/// placing holds at once can't take the same id: the key must be absent.
pub async fn create(data: &Store, hold: &Hold) -> trc::Result<u32> {
let mut attempt = 0;
loop {
attempt += 1;
let id = all(data).await?.iter().map(|h| h.id).max().unwrap_or(0) + 1;
let stored = Hold {
id,
..hold.clone()
};
let mut batch = BatchBuilder::new();
batch.assert_value(class(id), AssertValue::None);
batch.set(class(id), Json(&stored).serialize()?);
match data.write(batch.build_all()).await {
Ok(_) => return Ok(id),
Err(err)
if attempt < CREATE_ATTEMPTS
&& matches!(
err.as_ref(),
trc::EventType::Store(trc::StoreEvent::AssertValueFailed)
) => {}
Err(err) => return Err(err.caused_by(trc::location!())),
}
}
}
/// The active holds that reach `member` (LH-2, LH-11).
pub async fn covering(data: &Store, member: &Member) -> trc::Result<Vec<Hold>> {
Ok(active(data)
.await?
.into_iter()
.filter(|hold| hold.scope.covers(member))
.collect())
}
/// LH-2: an account a hold reached through its domain, group or tenant stays
/// held when it leaves them: it is added to the hold by name. Called for
/// every change to an account, so no move escapes a hold.
pub async fn keep_moved(data: &Store, before: &Member, after: &Member) -> trc::Result<()> {
if before == after {
return Ok(());
}
for mut hold in active(data).await? {
if hold.scope.covers(before) && !hold.scope.covers(after) {
hold.scope.accounts.push(after.account);
hold.scope.accounts.sort_unstable();
hold.scope.accounts.dedup();
update(data, &hold).await?;
}
}
Ok(())
}
/// LH-8: names `account_id` in every hold that reaches it, so a deleted
/// account, no longer in any domain or tenant, stays held.
pub async fn pin_account(data: &Store, member: &Member) -> trc::Result<()> {
for mut hold in covering(data, member).await? {
if !hold.scope.accounts.contains(&member.account) {
hold.scope.accounts.push(member.account);
hold.scope.accounts.sort_unstable();
update(data, &hold).await?;
}
}
Ok(())
}
/// Replaces a hold that `check_update` allowed.
pub async fn update(data: &Store, hold: &Hold) -> trc::Result<()> {
let mut batch = BatchBuilder::new();
batch.set(class(hold.id), Json(hold).serialize()?);
data.write(batch.build_all())
.await
.caused_by(trc::location!())
.map(|_| ())
}
#[cfg(test)]
mod tests {
use super::*;
fn hold(scope: Scope, from: Option<u64>, to: Option<u64>) -> Hold {
Hold {
id: 1,
name: "Matter 4411".into(),
reference: Some("4411".into()),
description: None,
scope,
from,
to,
placed_at: 10,
placed_by: "admin".into(),
placed_by_id: None,
released: None,
}
}
fn accounts(ids: &[u32]) -> Scope {
Scope {
accounts: ids.to_vec(),
..Default::default()
}
}
#[test]
fn a_hold_needs_a_scope_and_a_forward_range() {
assert_eq!(hold(Scope::default(), None, None).check_new(), Err(Refusal::EmptyScope));
assert_eq!(hold(accounts(&[2]), Some(20), Some(10)).check_new(), Err(Refusal::Backwards));
let mut ok = hold(accounts(&[3, 2, 3]), None, None);
assert_eq!(ok.check_new(), Ok(()));
assert_eq!(ok.scope.accounts, vec![2, 3], "sorted, once each");
}
#[test]
fn the_range_only_widens() {
let current = hold(accounts(&[2]), Some(100), Some(200));
let widened = |from, to| {
let mut next = hold(accounts(&[2]), from, to);
current.check_update(&mut next)
};
assert_eq!(widened(Some(50), Some(300)), Ok(()));
assert_eq!(widened(None, None), Ok(()), "opening both ends widens");
assert_eq!(widened(Some(150), Some(200)), Err(Refusal::Narrowed));
assert_eq!(widened(Some(100), Some(150)), Err(Refusal::Narrowed));
let open = hold(accounts(&[2]), None, None);
let mut closed = hold(accounts(&[2]), Some(1), None);
assert_eq!(open.check_update(&mut closed), Err(Refusal::Narrowed), "an open end stays open");
}
#[test]
fn the_scope_only_grows() {
let current = hold(
Scope {
accounts: vec![2],
domains: vec![7],
..Default::default()
},
None,
None,
);
let mut grown = hold(
Scope {
accounts: vec![2, 3],
domains: vec![7],
tenants: vec![1],
..Default::default()
},
None,
None,
);
assert_eq!(current.check_update(&mut grown), Ok(()));
let mut shrunk = hold(accounts(&[2, 3]), None, None);
assert_eq!(current.check_update(&mut shrunk), Err(Refusal::ScopeShrunk));
let server = hold(Scope { server: true, ..Default::default() }, None, None);
let mut less = hold(accounts(&[2]), None, None);
assert_eq!(server.check_update(&mut less), Err(Refusal::ScopeShrunk));
}
#[test]
fn a_released_hold_is_read_only() {
let mut released = hold(accounts(&[2]), None, None);
released.released = Some(Release {
at: 50,
by: "admin".into(),
by_id: None,
reason: "Settled".into(),
});
let mut next = released.clone();
next.name = "Renamed".into();
assert_eq!(released.check_update(&mut next), Err(Refusal::Released));
assert!(!released.is_active());
}
#[test]
fn dates_in_range() {
let whole = hold(accounts(&[2]), None, None);
assert!(whole.covers_date(0) && whole.covers_date(u64::MAX));
let ranged = hold(accounts(&[2]), Some(100), Some(200));
assert!(ranged.covers_date(100) && ranged.covers_date(200));
assert!(!ranged.covers_date(99) && !ranged.covers_date(201));
let open_ended = hold(accounts(&[2]), Some(100), None);
assert!(open_ended.covers_date(u64::MAX), "no `to` also catches mail still to come");
}
#[test]
fn a_scope_reaches_members_through_domain_group_and_tenant() {
let member = Member {
account: 9,
domains: vec![3, 4],
groups: vec![20],
tenant: Some(7),
};
let reaches = |scope: Scope| scope.covers(&member);
assert!(reaches(accounts(&[9])));
assert!(reaches(Scope { domains: vec![4], ..Default::default() }), "an alias's domain counts");
assert!(reaches(Scope { groups: vec![20], ..Default::default() }));
assert!(reaches(Scope { tenants: vec![7], ..Default::default() }));
assert!(reaches(Scope { server: true, ..Default::default() }));
assert!(!reaches(Scope { domains: vec![5], tenants: vec![8], ..Default::default() }));
// LH-2: leaving the held domain would free it, so the hold must name it
let held = hold(Scope { domains: vec![3], ..Default::default() }, None, None);
let moved = Member { domains: vec![6], ..member.clone() };
assert!(held.scope.covers(&member) && !held.scope.covers(&moved));
}
#[test]
fn keeping_deleted_items() {
let whole = Keeping::new(None, &[hold(accounts(&[2]), None, None)]);
assert!(whole.covers(Some(5)) && whole.covers(None));
assert_eq!(whole.until(100, whole.covers(Some(5))), Some(HELD_UNTIL));
assert!(is_held_until(whole.until(100, true).unwrap()));
// LH-3: a range holds only what's inside it; outside, undelete's rules
let ranged = Keeping::new(Some(30), &[hold(accounts(&[2]), Some(1_000), Some(2_000))]);
assert!(ranged.covers(Some(1_500)) && !ranged.covers(Some(2_500)));
assert!(ranged.covers(None), "contacts, files and scripts are held whole");
assert_eq!(ranged.until(100, ranged.covers(Some(2_500))), Some(130));
assert!(ranged.covers_event(Some(2_000 + 3_600)), "a day of slack for an event");
// Neither held nor undelete: nothing is kept
let none = Keeping::new(None, &[]);
assert!(!none.keeps_anything());
assert_eq!(none.until(100, false), None);
assert!(!is_held_until(100 + 30 * 365 * 86_400));
}
#[test]
fn stored_as_json() {
let current = hold(accounts(&[2]), Some(100), None);
let json = serde_json::to_string(&current).unwrap();
assert_eq!(serde_json::from_str::<Hold>(&json).unwrap(), current);
assert!(json.contains("\"scope\":{\"accounts\":[2]}"), "{json}");
}
}