Files
ngit-grasp/tests/lifecycle/replaceable_history.rs
T

475 lines
16 KiB
Rust

//! Integration tests for durable replaceable/addressable history capture.
#[path = "../common/mod.rs"]
mod common;
use clap::Parser;
use common::{publish_served_repo, TestRelay};
use grasp_audit::{AuditClient, AuditConfig, DETERMINISTIC_COMMIT_HASH};
use ngit_grasp::config::Config;
use ngit_grasp::grasp06::receive::new_repo_init_locks;
use ngit_grasp::nostr::builder::Nip34WritePolicy;
use ngit_grasp::nostr::lifecycle::ReplaceableHistoryStore;
use ngit_grasp::nostr::lifecycle::{HoldingStore, RepositoryLifecycle, Tombstones};
use ngit_grasp::nostr::persistence::SaveContext;
use ngit_grasp::nostr::SharedDatabase;
use ngit_grasp::purgatory::Purgatory;
use nostr_sdk::prelude::*;
use std::net::{IpAddr, Ipv4Addr, SocketAddr};
use std::sync::Arc;
use std::time::Duration;
async fn open_history(relay_data_path: &std::path::Path) -> ReplaceableHistoryStore {
ReplaceableHistoryStore::open_lmdb(relay_data_path)
.await
.expect("open history db")
}
async fn build_announcement_version(
client: &AuditClient,
repo_id: &str,
created_at: Timestamp,
content: &str,
) -> Event {
let relay_url = client
.relay_url()
.await
.expect("client should have relay url");
let relay_domain = relay_url
.trim_start_matches("ws://")
.trim_start_matches("wss://")
.to_string();
let http_url = format!("http://{}", relay_domain);
let npub = client.public_key().to_bech32().expect("pubkey to npub");
EventBuilder::new(Kind::GitRepoAnnouncement, content)
.tags(vec![
Tag::identifier(repo_id),
Tag::custom("name", vec![repo_id.to_string()]),
Tag::custom(
"clone",
vec![format!("{}/{}/{}.git", http_url, npub, repo_id)],
),
Tag::custom("relays", vec![relay_url]),
])
.custom_created_at(created_at)
.finalize(client.keys())
.expect("build announcement version")
}
fn build_state_version(
client: &AuditClient,
repo_id: &str,
created_at: Timestamp,
content: &str,
) -> Event {
EventBuilder::new(Kind::RepoState, content)
.tags(vec![
Tag::identifier(repo_id),
Tag::custom(
"refs/heads/main",
vec![DETERMINISTIC_COMMIT_HASH.to_string()],
),
Tag::custom("HEAD", vec!["ref: refs/heads/main".to_string()]),
])
.custom_created_at(created_at)
.finalize(client.keys())
.expect("build state version")
}
fn build_policy_for_history_regression(
database: SharedDatabase,
history: ReplaceableHistoryStore,
git_data_path: &std::path::Path,
) -> Nip34WritePolicy {
let config = Config::parse_from([
"ngit-grasp-test",
"--domain",
"test.example.com",
"--archive-all",
"--archive-read-only",
"false",
]);
let purgatory = Arc::new(Purgatory::new(git_data_path.to_path_buf()));
Nip34WritePolicy::new(
database,
Tombstones::in_memory(),
HoldingStore::in_memory(),
RepositoryLifecycle::in_memory(),
history,
git_data_path.to_path_buf(),
purgatory,
config,
new_repo_init_locks(),
)
}
fn build_policy_announcement_version(
keys: &Keys,
repo_id: &str,
created_at: Timestamp,
content: &str,
) -> Event {
let npub = keys.public_key().to_bech32().expect("pubkey to npub");
EventBuilder::new(Kind::GitRepoAnnouncement, content)
.tags(vec![
Tag::identifier(repo_id),
Tag::custom("name", vec![repo_id.to_string()]),
Tag::custom(
"clone",
vec![format!("http://test.example.com/{}/{}.git", npub, repo_id)],
),
Tag::custom("relays", vec!["wss://test.example.com".to_string()]),
])
.custom_created_at(created_at)
.finalize(keys)
.expect("build policy announcement version")
}
#[tokio::test]
async fn newer_30618_supersedes_older_and_preserves_old_in_history() {
let relay = TestRelay::start_with_lmdb().await;
let client = AuditClient::new(relay.url(), AuditConfig::isolated())
.await
.expect("create audit client");
let (_announcement, repo_id) = publish_served_repo(&client, "history-30618").await;
// `publish_served_repo` already saved a 30618 for this coordinate. Nostr
// replaceable ordering is only second-granular, so a same-second "old"
// event can be rejected instead of superseding the fixture event. Start the
// test sequence in a deterministic future second to make both replacements
// strictly newer.
let base_ts = Timestamp::from_secs(Timestamp::now().as_secs() + 1);
let old_state = build_state_version(&client, &repo_id, base_ts, "state-v1");
let new_state = build_state_version(
&client,
&repo_id,
Timestamp::from_secs(base_ts.as_secs() + 30),
"state-v2",
);
client
.send_event(old_state.clone())
.await
.expect("send old state");
client
.send_event(new_state.clone())
.await
.expect("send new state");
tokio::time::sleep(Duration::from_millis(400)).await;
let coordinate = format!("30618:{}:{}", client.public_key().to_hex(), repo_id);
let history = open_history(relay.relay_data_path()).await;
let records = history
.superseded_records_for_coordinate_before(
&coordinate,
// The deterministic future timestamps can be ahead of wall-clock
// `Timestamp::now()`, so query just after the newest test event
// rather than using "now" as the history cutoff.
Timestamp::from_secs(new_state.created_at.as_secs() + 1),
)
.await;
assert!(
records
.iter()
.any(|r| r.superseded_event_id == Some(old_state.id)
&& r.replaced_by == Some(new_state.id)),
"history must contain old 30618 as superseded by the newer 30618"
);
assert!(
history
.event_by_id(&old_state.id)
.await
.expect("lookup old state in history")
.is_some(),
"history payload must persist the superseded 30618 event"
);
relay.stop().await;
}
#[tokio::test]
async fn newer_30617_supersedes_older_and_preserves_old_in_history() {
let relay = TestRelay::start_with_lmdb().await;
let client = AuditClient::new(relay.url(), AuditConfig::isolated())
.await
.expect("create audit client");
let (first_announcement, repo_id) = publish_served_repo(&client, "history-30617").await;
let newer_announcement = build_announcement_version(
&client,
&repo_id,
Timestamp::from_secs(first_announcement.created_at.as_secs() + 30),
"re-announcement",
)
.await;
client
.send_event(newer_announcement.clone())
.await
.expect("send newer announcement");
tokio::time::sleep(Duration::from_millis(400)).await;
let coordinate = format!("30617:{}:{}", client.public_key().to_hex(), repo_id);
let history = open_history(relay.relay_data_path()).await;
let records = history
.superseded_records_for_coordinate_before(&coordinate, Timestamp::now())
.await;
assert!(
records.iter().any(|r| {
r.superseded_event_id == Some(first_announcement.id)
&& r.replaced_by == Some(newer_announcement.id)
}),
"history must contain old 30617 as superseded by the newer 30617"
);
assert!(
history
.event_by_id(&first_announcement.id)
.await
.expect("lookup old announcement in history")
.is_some(),
"history payload must persist the superseded 30617 event"
);
relay.stop().await;
}
#[tokio::test]
async fn sync_style_admit_then_save_captures_superseded_history_once() {
use nostr_relay_builder::prelude::{WritePolicy, WritePolicyResult};
let git_dir = tempfile::tempdir().expect("git tempdir");
let db: SharedDatabase = Arc::new(nostr_memory::MemoryDatabase::unbounded());
let history = ReplaceableHistoryStore::in_memory();
let policy = build_policy_for_history_regression(db.clone(), history.clone(), git_dir.path());
let keys = Keys::generate();
let repo_id = format!("history-sync-once-{}", &keys.public_key().to_hex()[..8]);
let old_announcement = build_policy_announcement_version(
&keys,
&repo_id,
Timestamp::from_secs(Timestamp::now().as_secs() + 1),
"old",
);
let new_announcement = build_policy_announcement_version(
&keys,
&repo_id,
Timestamp::from_secs(old_announcement.created_at.as_secs() + 30),
"new",
);
db.save_event(&old_announcement)
.await
.expect("save old announcement");
let dummy_addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::LOCALHOST), 0);
let result = policy.admit_event(&new_announcement, &dummy_addr).await;
assert!(
matches!(result, WritePolicyResult::Accept),
"new announcement must be accepted before central save"
);
// Cross a timestamp-second boundary before saving. The old persistence hook
// also captured history here, producing a distinct metadata event instead
// of collapsing onto the admission hook's metadata ID.
tokio::time::sleep(Duration::from_millis(1100)).await;
policy
.save_accepted_event(&new_announcement, SaveContext::RelaySync)
.await
.expect("save accepted announcement");
let coordinate = format!("30617:{}:{}", keys.public_key().to_hex(), repo_id);
let records = history
.superseded_records_for_coordinate_before(
&coordinate,
Timestamp::from_secs(new_announcement.created_at.as_secs() + 1),
)
.await;
let matching_records = records
.iter()
.filter(|r| {
r.superseded_event_id == Some(old_announcement.id)
&& r.replaced_by == Some(new_announcement.id)
})
.count();
assert_eq!(
matching_records, 1,
"sync-style admit then save must not duplicate superseded history metadata"
);
}
#[tokio::test]
async fn replaceable_history_survives_restart_lmdb() {
let relay = TestRelay::start_with_lmdb().await;
let client = AuditClient::new(relay.url(), AuditConfig::isolated())
.await
.expect("create audit client");
let (first_announcement, repo_id) = publish_served_repo(&client, "history-restart").await;
let newer_announcement = build_announcement_version(
&client,
&repo_id,
Timestamp::from_secs(first_announcement.created_at.as_secs() + 45),
"restart-reannouncement",
)
.await;
client
.send_event(newer_announcement.clone())
.await
.expect("send newer announcement");
tokio::time::sleep(Duration::from_millis(400)).await;
let coordinate = format!("30617:{}:{}", client.public_key().to_hex(), repo_id);
let history_before_restart = open_history(relay.relay_data_path()).await;
let pre_restart_records = history_before_restart
.superseded_records_for_coordinate_before(&coordinate, Timestamp::now())
.await;
assert!(
pre_restart_records.iter().any(|r| {
r.superseded_event_id == Some(first_announcement.id)
&& r.replaced_by == Some(newer_announcement.id)
}),
"history metadata must exist before restart"
);
let relay_data_path = relay.relay_data_path().clone();
let git_data_path = relay.git_data_path().clone();
let owner_hex = client.public_key().to_hex();
relay.stop().await;
let restarted = TestRelay::start_with_existing_lmdb_paths(
git_data_path,
relay_data_path.clone(),
None,
false,
)
.await;
restarted.stop().await;
let history = open_history(&relay_data_path).await;
let coordinate = format!("30617:{}:{}", owner_hex, repo_id);
let records = history
.superseded_records_for_coordinate_before(&coordinate, Timestamp::now())
.await;
assert!(
records.iter().any(|r| {
r.superseded_event_id == Some(first_announcement.id)
&& r.replaced_by == Some(newer_announcement.id)
}),
"history metadata must survive LMDB restart"
);
assert!(
history
.event_by_id(&first_announcement.id)
.await
.expect("lookup archived announcement after restart")
.is_some(),
"history payload must survive LMDB restart"
);
}
#[tokio::test]
async fn serving_behavior_unchanged_latest_version_is_still_served() {
let relay = TestRelay::start_with_lmdb().await;
let client = AuditClient::new(relay.url(), AuditConfig::isolated())
.await
.expect("create audit client");
let (_announcement, repo_id) = publish_served_repo(&client, "history-serving").await;
// `publish_served_repo` already saved a 30618 for this coordinate. Keep the
// explicit state sequence in future seconds so the relay's second-granular
// replaceable ordering cannot tie it with the fixture event.
let base_ts = Timestamp::from_secs(Timestamp::now().as_secs() + 1);
let old_state = build_state_version(&client, &repo_id, base_ts, "state-old");
let new_state = build_state_version(
&client,
&repo_id,
Timestamp::from_secs(base_ts.as_secs() + 30),
"state-new",
);
client
.send_event(old_state.clone())
.await
.expect("send old state");
client
.send_event(new_state.clone())
.await
.expect("send new state");
tokio::time::sleep(Duration::from_millis(400)).await;
let by_id_old = client
.is_event_on_relay(old_state.id)
.await
.expect("query old state by id");
let by_id_new = client
.is_event_on_relay(new_state.id)
.await
.expect("query new state by id");
assert!(
!by_id_old,
"superseded state must remain non-served in the main relay behavior"
);
assert!(by_id_new, "latest state must still be served");
relay.stop().await;
}
#[tokio::test]
async fn history_not_captured_for_purgatory_only_announcement() {
let relay = TestRelay::start_with_lmdb().await;
let client = AuditClient::new(relay.url(), AuditConfig::isolated())
.await
.expect("create audit client");
let relay_url = client
.relay_url()
.await
.expect("client should have relay url");
let relay_domain = relay_url
.trim_start_matches("ws://")
.trim_start_matches("wss://")
.to_string();
let npub = client.public_key().to_bech32().expect("pubkey to npub");
let repo_id = format!(
"history-purgatory-only-{}",
&Keys::generate().public_key().to_hex()[..8]
);
let announcement = EventBuilder::new(Kind::GitRepoAnnouncement, "")
.tags(vec![
Tag::identifier(&repo_id),
Tag::custom("name", vec![repo_id.clone()]),
Tag::custom(
"clone",
vec![format!("http://{}/{}/{}.git", relay_domain, npub, repo_id)],
),
Tag::custom("relays", vec![relay_url]),
])
.finalize(client.keys())
.expect("build purgatory-only announcement");
client
.send_event(announcement)
.await
.expect("send announcement to purgatory");
tokio::time::sleep(Duration::from_millis(300)).await;
let coordinate = format!("30617:{}:{}", client.public_key().to_hex(), repo_id);
let history = open_history(relay.relay_data_path()).await;
let latest = history
.latest_superseded_before(&coordinate, Timestamp::now())
.await;
assert!(
latest.is_none(),
"purgatory-only announcements must not capture superseded history"
);
relay.stop().await;
}