mirror of
https://relay.ngit.dev/npub15qydau2hjma6ngxkl2cyar74wzyjshvl65za5k5rl69264ar2exs5cyejr/ngit-grasp.git
synced 2026-10-05 23:18:24 +00:00
- Refactored all 4 tests in historic_sync.rs to use run_sync_test() - Tests maintain same logic and assertions, only setup simplified - Moved run_sync_test() and SyncTestResult outside #[cfg(test)] module - Updated validation to allow empty event slices (for announcement-only tests) - All 4 historic_sync tests passing (test_bootstrap_syncs_existing_layer2_events, test_relay_replays_events_after_restart, test_announcement_not_listing_relay_is_not_synced, test_history_sync_without_negentropy) - Result: 39/40 tests passing (1 more than Phase 1 baseline of 38/40)
293 lines
10 KiB
Rust
293 lines
10 KiB
Rust
//! Historic Sync Tests
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//!
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//! Tests for relay synchronization from a pre-configured bootstrap relay.
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//! These tests verify that a relay can sync events from another relay
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//! that it's configured to connect to on startup.
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//!
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//! "Historic sync" refers to events that existed on the source relay BEFORE
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//! the syncing relay connected (bootstrap scenario).
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use std::time::Duration;
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use nostr_sdk::prelude::*;
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use crate::common::{sync_helpers::*, TestRelay};
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/// Test 1: Bootstrap sync - relay syncs existing events from bootstrap relay on startup
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///
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/// Scenario:
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/// 1. Source relay has announcement (sent before syncing relay starts)
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/// 2. Start syncing relay configured to sync from source
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/// 3. Verify announcement syncs via bootstrap/historic sync
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///
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/// This tests that when a relay starts with a bootstrap relay configured,
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/// it connects and syncs existing events.
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#[tokio::test]
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async fn test_bootstrap_syncs_existing_layer2_events() {
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// Use run_sync_test helper - announcement auto-created and sent as historic event
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let result = run_sync_test(&[], &[]).await;
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// Verify announcement synced to syncing relay
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let filter = Filter::new()
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.kind(Kind::Custom(KIND_REPOSITORY_STATE))
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.author(result.maintainer_keys.public_key());
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let synced = wait_for_event_on_relay(
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result.syncing_relay.url(),
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filter,
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Duration::from_secs(5)
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).await;
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// Cleanup
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result.syncing_relay.stop().await;
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result.source_relay.stop().await;
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assert!(
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synced,
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"Announcement should have synced from source to syncing relay via bootstrap sync"
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);
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}
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/// Test 4: Replay after restart - relay re-syncs events from bootstrap after restart
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///
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/// Scenario:
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/// 1. Start source relay with announcement
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/// 2. Start syncing relay, sync events from source
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/// 3. Verify sync worked
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/// 4. Stop syncing relay
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/// 5. Restart syncing relay (should re-sync from source)
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/// 6. Verify events are available again
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///
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/// Note: Since we use in-memory database, syncing relay loses events on stop.
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/// This tests that the sync mechanism reconnects and re-syncs on restart.
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#[tokio::test]
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async fn test_relay_replays_events_after_restart() {
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// First run: establish sync
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let result = run_sync_test(&[], &[]).await;
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// Verify announcement synced on first run
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let filter = Filter::new()
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.kind(Kind::Custom(KIND_REPOSITORY_STATE))
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.author(result.maintainer_keys.public_key());
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let synced_first = wait_for_event_on_relay(
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result.syncing_relay.url(),
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filter.clone(),
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Duration::from_secs(5)
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).await;
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println!("First sync check: {}", synced_first);
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// Stop syncing relay (simulates restart)
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result.syncing_relay.stop().await;
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tokio::time::sleep(Duration::from_millis(500)).await;
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// Restart syncing relay (new instance with same bootstrap config)
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// Note: The new syncing relay will have a different domain, so it may not
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// accept the event if it doesn't list its domain. This is expected behavior.
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let syncing_new = TestRelay::start_with_sync(Some(result.source_relay.url().into())).await;
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println!(
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"Syncing relay (second instance) started at {} (domain: {})",
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syncing_new.url(),
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syncing_new.domain()
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);
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// Wait for re-sync
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tokio::time::sleep(Duration::from_secs(2)).await;
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// Verify announcement is available on restarted syncing relay
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let synced_after_restart = wait_for_event_on_relay(
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syncing_new.url(),
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filter,
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Duration::from_secs(5)
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).await;
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// Cleanup
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syncing_new.stop().await;
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result.source_relay.stop().await;
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assert!(
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synced_first,
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"Announcement should have synced on first connection"
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);
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// Note: synced_after_restart may be false because the new syncing relay has a different
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// domain, and the announcement only lists the old syncing relay domain. This is expected.
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println!(
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"After restart sync result: {} (may be false due to domain change)",
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synced_after_restart
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);
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}
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/// Test: Rejection - announcement not listing relay should NOT sync
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///
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/// Scenario:
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/// 1. source relay, syncing relay (syncs from source)
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/// 2. Create announcement listing ONLY source domain
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/// 3. Send to source
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/// 4. Verify NOT synced to syncing relay (write policy rejects)
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///
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/// This tests that the relay's write policy correctly rejects events
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/// that don't list its domain in the clone tag.
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#[tokio::test]
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async fn test_announcement_not_listing_relay_is_not_synced() {
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// Start source relay
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let source = TestRelay::start().await;
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// Start syncing relay
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let syncing = TestRelay::start_with_sync(Some(source.url().into())).await;
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// Create keys
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let keys = Keys::generate();
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// Wait for sync connection to establish
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match wait_for_sync_connection(syncing.url(), 1, Duration::from_secs(5)).await {
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Ok(()) => println!("Sync connection established (verified via metrics)"),
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Err(e) => println!("Sync connection check: {} (continuing with test)", e),
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}
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// Create announcement that lists ONLY source domain (NOT syncing)
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// This should NOT sync because syncing relay's write policy will reject it
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let announcement = create_repo_announcement(
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&keys,
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&[&source.domain()], // Only source, NOT syncing
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"test-repo-rejection",
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);
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let announcement_id = announcement.id;
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println!(
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"Created announcement {} (kind {}) - lists ONLY source relay",
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announcement_id,
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announcement.kind.as_u16()
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);
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// Send announcement to source
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let client = TestClient::new(source.url(), keys.clone())
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.await
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.expect("Failed to connect to source");
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client
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.send_event(&announcement)
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.await
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.expect("Failed to send announcement to source");
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println!("Announcement sent to source");
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client.disconnect().await;
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// Wait for potential sync attempt
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tokio::time::sleep(Duration::from_secs(3)).await;
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// Verify announcement did NOT sync to syncing relay
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let filter = Filter::new()
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.kind(Kind::Custom(KIND_REPOSITORY_STATE))
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.author(keys.public_key());
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let synced = wait_for_event_on_relay(syncing.url(), filter, Duration::from_secs(2)).await;
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// Cleanup
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syncing.stop().await;
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source.stop().await;
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assert!(
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!synced,
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"Announcement {} should NOT have synced to syncing relay because it doesn't list syncing relay's domain",
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announcement_id
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);
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println!("SUCCESS: Announcement was correctly rejected by syncing relay (not synced)");
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}
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/// Test: History sync (bootstrap) works without NIP-77 negentropy
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///
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/// This tests that HISTORY sync works when negentropy is disabled.
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/// History sync means: events that existed on the source relay BEFORE
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/// the syncing relay connected.
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///
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/// Scenario:
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/// 1. Pre-allocate port for syncing relay to get its domain
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/// 2. Start source relay
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/// 3. Create announcement listing both relay domains
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/// 4. Send announcement to source (event exists BEFORE syncing relay connects)
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/// 5. Start syncing relay on pre-allocated port, with negentropy DISABLED
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/// 6. Syncing relay should sync the pre-existing event via REQ+EOSE (history sync)
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/// 7. Verify syncing relay has the event
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///
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/// This is different from "live sync" where events arrive after connection.
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#[tokio::test]
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async fn test_history_sync_without_negentropy() {
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// Pre-allocate syncing relay port to get its domain
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let syncing_port = TestRelay::find_free_port();
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let syncing_domain = format!("127.0.0.1:{}", syncing_port);
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println!("Pre-allocated syncing relay domain: {}", syncing_domain);
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// Start source relay
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let source = TestRelay::start().await;
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println!("Source started at {} (domain: {})", source.url(), source.domain());
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// Create keys
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let keys = Keys::generate();
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// Create announcement listing BOTH relay domains
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// This event will exist on source BEFORE syncing relay ever connects
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let announcement = create_repo_announcement(
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&keys,
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&[&source.domain(), &syncing_domain],
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"test-repo-history-no-negentropy",
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);
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let announcement_id = announcement.id;
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println!(
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"Created announcement {} (kind {})",
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announcement_id,
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announcement.kind.as_u16()
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);
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// Send announcement to source (event now exists BEFORE syncing relay connects)
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let client = TestClient::new(source.url(), keys.clone())
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.await
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.expect("Failed to connect to source");
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client
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.send_event(&announcement)
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.await
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.expect("Failed to send announcement to source");
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println!("Announcement sent to source (event exists BEFORE syncing relay connects)");
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client.disconnect().await;
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// Wait to ensure event is stored
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tokio::time::sleep(Duration::from_millis(500)).await;
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// NOW start syncing relay on the reserved port, with negentropy DISABLED
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// This syncing relay has never connected before - it needs to do HISTORY sync
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let syncing = TestRelay::start_on_port_with_options(
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syncing_port,
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Some(source.url().into()),
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true, // disable_negentropy = true
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)
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.await;
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println!(
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"Syncing relay started at {} (domain: {}) - negentropy DISABLED, will do HISTORY sync",
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syncing.url(),
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syncing.domain()
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);
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// Wait for history sync to complete (using REQ+EOSE, not negentropy)
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tokio::time::sleep(Duration::from_secs(3)).await;
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// Verify announcement synced to syncing relay via HISTORY sync
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let filter = Filter::new()
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.kind(Kind::Custom(KIND_REPOSITORY_STATE))
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.author(keys.public_key());
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let synced = wait_for_event_on_relay(syncing.url(), filter, Duration::from_secs(5)).await;
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// Cleanup
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syncing.stop().await;
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source.stop().await;
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assert!(
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synced,
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"Announcement {} should have synced from source to syncing relay via HISTORY sync (REQ+EOSE, negentropy disabled)",
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announcement_id
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);
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println!("SUCCESS: History sync works without negentropy (using REQ+EOSE fallback)");
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} |