Rewrite integration test with 6 scenarios: - Single file each direction (basic sanity) - Rapid burst 25 files A→B with mixed sizes (12MB+ large files) - Rapid burst 25 files B→A with mixed sizes - Simultaneous burst: 25 files on EACH side at the same time - Final full-mirror verification (102 assets, perfect match) Throughput measured at ~20 MB/s per direction, ~31 MB/s bidirectional. All tests pass including simultaneous ingestion of 162 MB across 50 files with zero conflicts or missing assets. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
1045 lines
36 KiB
Rust
1045 lines
36 KiB
Rust
//! Integration + stress test for CAN Sync v2
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//!
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//! Starts two CAN service instances + two sync agents, then runs increasingly
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//! aggressive sync scenarios:
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//! 1. Single file A→B
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//! 2. Single file B→A
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//! 3. Rapid burst 25 files A→B (mixed sizes, some 10MB+)
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//! 4. Rapid burst 25 files B→A (mixed sizes, some 10MB+)
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//! 5. Simultaneous burst: 25 files on EACH side at the same time
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//! 6. Final full-mirror verification
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//!
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//! Usage:
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//! cargo run --bin sync-test
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//!
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//! Prerequisites:
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//! CAN service must be built: `cargo build` in the CanService root
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use std::collections::HashSet;
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use std::path::{Path, PathBuf};
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use std::process::{Child, Command, Stdio};
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use std::sync::{Arc, Mutex};
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use std::time::{Duration, Instant};
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use rand::Rng;
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use serde_json::Value;
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use tempfile::TempDir;
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// ── Configuration ────────────────────────────────────────────────────────
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const CAN_A_PORT: u16 = 13210;
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const CAN_B_PORT: u16 = 13220;
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const SYNC_KEY: &str = "test-sync-key-42";
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const SYNC_PASSPHRASE: &str = "integration-test-passphrase";
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const SYNC_TIMEOUT: Duration = Duration::from_secs(120); // longer for large files
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const POLL_INTERVAL: Duration = Duration::from_millis(500);
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// Stress test tuning
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const BURST_COUNT: usize = 25;
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const LARGE_FILE_SIZE: usize = 12 * 1024 * 1024; // 12 MB
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const MEDIUM_FILE_SIZE: usize = 2 * 1024 * 1024; // 2 MB
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const SMALL_FILE_SIZE: usize = 4096; // 4 KB
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// ── Process management ───────────────────────────────────────────────────
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struct ManagedProcess {
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child: Child,
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name: String,
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}
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impl ManagedProcess {
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fn spawn(
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name: &str,
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cmd: &str,
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args: &[&str],
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envs: &[(&str, &str)],
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log_dir: &Path,
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) -> Self {
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println!(" Starting {} ...", name);
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let mut command = Command::new(cmd);
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let log_file = std::fs::File::create(log_dir.join(format!("{}.log", name)))
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.expect("create log file");
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let log_file_clone = log_file.try_clone().expect("clone log file handle");
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command
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.args(args)
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.stdout(Stdio::from(log_file))
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.stderr(Stdio::from(log_file_clone))
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.env("RUST_LOG", "can_sync=debug,can_service=debug,iroh=info,iroh_gossip=info");
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for (k, v) in envs {
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command.env(k, v);
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}
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let child = command
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.spawn()
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.unwrap_or_else(|e| panic!("Failed to start {}: {}", name, e));
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println!(" {} started (pid={})", name, child.id());
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Self {
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child,
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name: name.to_string(),
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}
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}
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fn kill(&mut self) {
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let _ = self.child.kill();
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let _ = self.child.wait();
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println!(" {} stopped", self.name);
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}
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}
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impl Drop for ManagedProcess {
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fn drop(&mut self) {
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self.kill();
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}
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}
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// ── Test harness ─────────────────────────────────────────────────────────
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struct TestHarness {
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_can_a: ManagedProcess,
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_can_b: ManagedProcess,
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_sync_a: ManagedProcess,
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_sync_b: ManagedProcess,
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_tmp_a: TempDir,
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_tmp_b: TempDir,
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_tmp_sync_a: TempDir,
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_tmp_sync_b: TempDir,
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log_dir: TempDir,
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can_a_url: String,
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can_b_url: String,
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}
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impl TestHarness {
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fn new(can_service_bin: &Path) -> Self {
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println!("\n=== Setting up test harness ===\n");
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// Create temp directories
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let tmp_a = TempDir::new().expect("create temp dir A");
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let tmp_b = TempDir::new().expect("create temp dir B");
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let tmp_sync_a = TempDir::new().expect("create temp dir sync A");
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let tmp_sync_b = TempDir::new().expect("create temp dir sync B");
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let log_dir = TempDir::new().expect("create log dir");
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println!(" Logs: {}", log_dir.path().display());
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println!(" CAN A storage: {}", tmp_a.path().display());
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println!(" CAN B storage: {}", tmp_b.path().display());
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// Write CAN service configs
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let config_a = tmp_a.path().join("config.yaml");
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let config_b = tmp_b.path().join("config.yaml");
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write_can_config(&config_a, tmp_a.path(), SYNC_KEY);
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write_can_config(&config_b, tmp_b.path(), SYNC_KEY);
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// Start CAN services
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let can_a = ManagedProcess::spawn(
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"CAN-A",
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can_service_bin.to_str().unwrap(),
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&[config_a.to_str().unwrap()],
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&[("CAN_PORT", &CAN_A_PORT.to_string())],
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log_dir.path(),
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);
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let can_b = ManagedProcess::spawn(
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"CAN-B",
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can_service_bin.to_str().unwrap(),
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&[config_b.to_str().unwrap()],
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&[("CAN_PORT", &CAN_B_PORT.to_string())],
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log_dir.path(),
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);
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let can_a_url = format!("http://127.0.0.1:{}", CAN_A_PORT);
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let can_b_url = format!("http://127.0.0.1:{}", CAN_B_PORT);
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// Wait for CAN services to be ready
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println!("\n Waiting for CAN services to start...");
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wait_for_http(&can_a_url, Duration::from_secs(10), log_dir.path(), "CAN-A");
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wait_for_http(&can_b_url, Duration::from_secs(10), log_dir.path(), "CAN-B");
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println!(" Both CAN services ready!");
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// Find can-sync binary
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let manifest_dir = PathBuf::from(env!("CARGO_MANIFEST_DIR"));
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let can_sync_bin = manifest_dir
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.join("target")
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.join("debug")
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.join("can-sync")
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.with_extension(std::env::consts::EXE_EXTENSION);
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assert!(
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can_sync_bin.exists(),
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"can-sync binary not found at {}",
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can_sync_bin.display()
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);
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println!(" Using can-sync: {}", can_sync_bin.display());
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// Ticket file paths for direct peer connection
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let ticket_a = tmp_sync_a.path().join("ticket_a.json");
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let ticket_a_str = ticket_a.to_str().unwrap().replace('\\', "/");
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// Write sync agent configs with ticket file exchange
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let sync_config_a = tmp_sync_a.path().join("config.yaml");
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let sync_config_b = tmp_sync_b.path().join("config.yaml");
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write_sync_config_with_tickets(
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&sync_config_a,
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&can_a_url,
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SYNC_KEY,
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SYNC_PASSPHRASE,
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Some(&ticket_a_str),
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None,
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);
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write_sync_config_with_tickets(
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&sync_config_b,
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&can_b_url,
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SYNC_KEY,
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SYNC_PASSPHRASE,
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None,
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Some(&ticket_a_str),
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);
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// Start Sync-A first (it writes the ticket)
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let sync_a = ManagedProcess::spawn(
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"Sync-A",
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can_sync_bin.to_str().unwrap(),
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&[sync_config_a.to_str().unwrap()],
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&[],
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log_dir.path(),
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);
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// Wait for Sync-A to write its ticket file
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println!(" Waiting for Sync-A to write ticket...");
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let ticket_start = Instant::now();
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loop {
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if ticket_start.elapsed() > Duration::from_secs(15) {
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print_log(log_dir.path(), "Sync-A");
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panic!("Timeout waiting for Sync-A ticket file");
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}
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if let Ok(contents) = std::fs::read_to_string(&ticket_a) {
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if !contents.trim().is_empty() {
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println!(" Sync-A ticket ready ({} bytes)", contents.len());
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break;
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}
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}
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std::thread::sleep(Duration::from_millis(100));
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}
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// Start Sync-B
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let sync_b = ManagedProcess::spawn(
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"Sync-B",
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can_sync_bin.to_str().unwrap(),
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&[sync_config_b.to_str().unwrap()],
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&[],
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log_dir.path(),
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);
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// Wait for peers to connect
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println!(" Waiting for sync agents to connect...");
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std::thread::sleep(Duration::from_secs(5));
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println!(" Test harness ready!\n");
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Self {
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_can_a: can_a,
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_can_b: can_b,
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_sync_a: sync_a,
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_sync_b: sync_b,
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_tmp_a: tmp_a,
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_tmp_b: tmp_b,
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_tmp_sync_a: tmp_sync_a,
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_tmp_sync_b: tmp_sync_b,
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log_dir,
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can_a_url,
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can_b_url,
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}
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}
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fn print_logs(&self) {
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println!("\n=== Process Logs ===");
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for name in &["Sync-A", "Sync-B", "CAN-A", "CAN-B"] {
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print_log(self.log_dir.path(), name);
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}
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}
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}
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// ── Config writers ───────────────────────────────────────────────────────
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fn write_can_config(path: &Path, storage_root: &Path, sync_key: &str) {
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let storage_str = storage_root.to_str().unwrap().replace('\\', "/");
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let content = format!(
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r#"storage_root: "{}"
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admin_token: "test-admin-token"
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enable_thumbnail_cache: false
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sync_api_key: "{}"
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"#,
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storage_str, sync_key
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);
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std::fs::write(path, content).expect("write CAN config");
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}
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fn write_sync_config_with_tickets(
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path: &Path,
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can_url: &str,
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sync_key: &str,
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passphrase: &str,
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ticket_file: Option<&str>,
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connect_ticket_file: Option<&str>,
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) {
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let mut content = format!(
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r#"can_service_url: "{}"
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sync_api_key: "{}"
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sync_passphrase: "{}"
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poll_interval_secs: 2
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"#,
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can_url, sync_key, passphrase
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);
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if let Some(tf) = ticket_file {
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content.push_str(&format!("ticket_file: \"{}\"\n", tf));
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}
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if let Some(ctf) = connect_ticket_file {
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content.push_str(&format!("connect_ticket_file: \"{}\"\n", ctf));
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}
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std::fs::write(path, content).expect("write sync config");
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}
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// ── Logging helpers ─────────────────────────────────────────────────────
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fn print_log(log_dir: &Path, name: &str) {
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let log_path = log_dir.join(format!("{}.log", name));
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if let Ok(contents) = std::fs::read_to_string(&log_path) {
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let lines: Vec<&str> = contents.lines().collect();
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let show = if lines.len() > 80 { &lines[lines.len() - 80..] } else { &lines };
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println!("\n--- {} (last {} of {} lines) ---", name, show.len(), lines.len());
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for line in show {
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println!(" {}", line);
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}
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} else {
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println!("\n--- {} (no log file) ---", name);
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}
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}
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// ── HTTP helpers ─────────────────────────────────────────────────────────
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fn wait_for_http(base_url: &str, timeout: Duration, log_dir: &Path, name: &str) {
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let client = reqwest::blocking::Client::new();
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let start = Instant::now();
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let url = format!("{}/api/v1/can/0/list?limit=1", base_url);
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loop {
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if start.elapsed() > timeout {
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print_log(log_dir, name);
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panic!("Timeout waiting for {} to become ready", base_url);
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}
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match client.get(&url).timeout(Duration::from_secs(1)).send() {
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Ok(resp) if resp.status().is_success() => return,
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_ => std::thread::sleep(Duration::from_millis(200)),
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}
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}
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}
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/// Ingest a file into a CAN service instance. Returns the asset hash.
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fn ingest_file(base_url: &str, filename: &str, content: &[u8], mime_type: &str) -> String {
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let client = reqwest::blocking::Client::new();
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let url = format!("{}/api/v1/can/0/ingest", base_url);
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let part = reqwest::blocking::multipart::Part::bytes(content.to_vec())
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.file_name(filename.to_string())
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.mime_str(mime_type)
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.unwrap();
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let form = reqwest::blocking::multipart::Form::new()
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.part("file", part)
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.text("mime_type", mime_type.to_string());
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let resp = client
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.post(&url)
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.multipart(form)
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.timeout(Duration::from_secs(30))
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.send()
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.expect("ingest request failed");
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assert!(
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resp.status().is_success(),
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"Ingest failed with status {}",
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resp.status()
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);
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let body: Value = resp.json().expect("parse ingest response");
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body["data"]["hash"]
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.as_str()
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.expect("no hash in response")
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.to_string()
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}
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/// List all assets from a CAN service. Returns list of hashes.
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fn list_hashes(base_url: &str) -> Vec<String> {
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let client = reqwest::blocking::Client::new();
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let url = format!("{}/api/v1/can/0/list?limit=10000", base_url);
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let resp = client
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.get(&url)
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.timeout(Duration::from_secs(5))
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.send()
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.expect("list request failed");
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if !resp.status().is_success() {
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return vec![];
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}
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let body: Value = resp.json().expect("parse list response");
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body["data"]["items"]
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.as_array()
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.unwrap_or(&vec![])
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.iter()
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.filter_map(|item| item["hash"].as_str().map(String::from))
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.collect()
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}
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/// Wait for a specific hash to appear on a CAN service.
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fn wait_for_hash(base_url: &str, hash: &str, timeout: Duration) -> bool {
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let start = Instant::now();
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while start.elapsed() < timeout {
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let hashes = list_hashes(base_url);
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if hashes.contains(&hash.to_string()) {
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return true;
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}
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std::thread::sleep(POLL_INTERVAL);
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}
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false
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}
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/// Wait for ALL given hashes to appear on a CAN service.
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/// Returns (found_count, total, elapsed).
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fn wait_for_all_hashes(
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base_url: &str,
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expected: &[String],
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timeout: Duration,
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) -> (usize, usize, Duration) {
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let start = Instant::now();
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let expected_set: HashSet<&String> = expected.iter().collect();
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loop {
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let current = list_hashes(base_url);
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let current_set: HashSet<String> = current.into_iter().collect();
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let found = expected_set
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.iter()
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.filter(|h| current_set.contains(**h))
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.count();
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if found == expected.len() {
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return (found, expected.len(), start.elapsed());
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}
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if start.elapsed() >= timeout {
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return (found, expected.len(), start.elapsed());
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}
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std::thread::sleep(POLL_INTERVAL);
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}
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}
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|
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/// Generate random file content of given size.
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fn random_content(size: usize) -> Vec<u8> {
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let mut rng = rand::rng();
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let mut buf = vec![0u8; size];
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rng.fill(&mut buf[..]);
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buf
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}
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|
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/// Human-readable byte size.
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fn human_size(bytes: usize) -> String {
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if bytes >= 1024 * 1024 {
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format!("{:.1} MB", bytes as f64 / (1024.0 * 1024.0))
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} else if bytes >= 1024 {
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format!("{:.1} KB", bytes as f64 / 1024.0)
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} else {
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format!("{} B", bytes)
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}
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}
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|
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/// Generate a mixed-size file list for stress tests.
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/// Returns Vec<(filename, content)> with a mix of small, medium, and large files.
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fn generate_burst_files(prefix: &str, count: usize) -> Vec<(String, Vec<u8>)> {
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let mut files = Vec::with_capacity(count);
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let mut total_bytes: usize = 0;
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|
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for i in 0..count {
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let size = match i % 5 {
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0 => LARGE_FILE_SIZE + (i * 1024 * 100), // ~12-14 MB (every 5th file)
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1 => MEDIUM_FILE_SIZE + (i * 1024 * 50), // ~2-3 MB
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2 => SMALL_FILE_SIZE + (i * 100), // ~4-6 KB
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3 => 512 * 1024 + (i * 1024 * 10), // ~500 KB - 750 KB
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_ => 64 * 1024 + (i * 1024), // ~64-90 KB
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};
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let filename = format!("{}_{:03}.bin", prefix, i);
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let content = random_content(size);
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total_bytes += content.len();
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files.push((filename, content));
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}
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|
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println!(
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" Generated {} files, total {}",
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count,
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human_size(total_bytes)
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);
|
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|
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// Print size breakdown
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let large = files.iter().filter(|(_, c)| c.len() >= 10 * 1024 * 1024).count();
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let medium = files.iter().filter(|(_, c)| c.len() >= 1024 * 1024 && c.len() < 10 * 1024 * 1024).count();
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let small = files.iter().filter(|(_, c)| c.len() < 1024 * 1024).count();
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println!(
|
|
" Breakdown: {} large (10MB+), {} medium (1-10MB), {} small (<1MB)",
|
|
large, medium, small
|
|
);
|
|
|
|
files
|
|
}
|
|
|
|
/// Ingest a batch of files as fast as possible (sequentially, but no delays).
|
|
/// Returns list of hashes.
|
|
fn rapid_ingest(base_url: &str, files: &[(String, Vec<u8>)]) -> Vec<String> {
|
|
let mut hashes = Vec::with_capacity(files.len());
|
|
let start = Instant::now();
|
|
|
|
for (i, (filename, content)) in files.iter().enumerate() {
|
|
let hash = ingest_file(base_url, filename, content, "application/octet-stream");
|
|
if i < 3 || i == files.len() - 1 || content.len() >= 10 * 1024 * 1024 {
|
|
println!(
|
|
" [{}/{}] Ingested {} ({}) → {}",
|
|
i + 1,
|
|
files.len(),
|
|
filename,
|
|
human_size(content.len()),
|
|
&hash[..16]
|
|
);
|
|
} else if i == 3 {
|
|
println!(" ... ingesting remaining files ...");
|
|
}
|
|
hashes.push(hash);
|
|
}
|
|
|
|
let elapsed = start.elapsed();
|
|
let total_bytes: usize = files.iter().map(|(_, c)| c.len()).sum();
|
|
println!(
|
|
" Ingested {} files ({}) in {:.1}s ({}/s)",
|
|
files.len(),
|
|
human_size(total_bytes),
|
|
elapsed.as_secs_f64(),
|
|
human_size((total_bytes as f64 / elapsed.as_secs_f64()) as usize)
|
|
);
|
|
|
|
hashes
|
|
}
|
|
|
|
/// Ingest files from two threads simultaneously, return (hashes_a, hashes_b).
|
|
fn parallel_ingest(
|
|
url_a: &str,
|
|
files_a: &[(String, Vec<u8>)],
|
|
url_b: &str,
|
|
files_b: &[(String, Vec<u8>)],
|
|
) -> (Vec<String>, Vec<String>) {
|
|
let url_a = url_a.to_string();
|
|
let url_b = url_b.to_string();
|
|
|
|
// Clone the file data for the threads
|
|
let files_a: Vec<(String, Vec<u8>)> = files_a.to_vec();
|
|
let files_b: Vec<(String, Vec<u8>)> = files_b.to_vec();
|
|
|
|
let hashes_a = Arc::new(Mutex::new(Vec::new()));
|
|
let hashes_b = Arc::new(Mutex::new(Vec::new()));
|
|
|
|
let ha = hashes_a.clone();
|
|
let hb = hashes_b.clone();
|
|
|
|
// Spawn two threads that ingest simultaneously
|
|
let thread_a = std::thread::spawn(move || {
|
|
let mut results = Vec::with_capacity(files_a.len());
|
|
for (filename, content) in &files_a {
|
|
let hash = ingest_file(&url_a, filename, content, "application/octet-stream");
|
|
results.push(hash);
|
|
}
|
|
*ha.lock().unwrap() = results;
|
|
});
|
|
|
|
let thread_b = std::thread::spawn(move || {
|
|
let mut results = Vec::with_capacity(files_b.len());
|
|
for (filename, content) in &files_b {
|
|
let hash = ingest_file(&url_b, filename, content, "application/octet-stream");
|
|
results.push(hash);
|
|
}
|
|
*hb.lock().unwrap() = results;
|
|
});
|
|
|
|
thread_a.join().expect("ingest thread A panicked");
|
|
thread_b.join().expect("ingest thread B panicked");
|
|
|
|
let a = hashes_a.lock().unwrap().clone();
|
|
let b = hashes_b.lock().unwrap().clone();
|
|
(a, b)
|
|
}
|
|
|
|
// ── Test runner ──────────────────────────────────────────────────────────
|
|
|
|
fn find_can_service_bin() -> PathBuf {
|
|
let self_exe = std::env::current_exe().expect("get current exe path");
|
|
let target_dir = self_exe.parent().unwrap();
|
|
|
|
let bin_name = if cfg!(windows) {
|
|
"can-service.exe"
|
|
} else {
|
|
"can-service"
|
|
};
|
|
|
|
let candidate = target_dir.join(bin_name);
|
|
if candidate.exists() {
|
|
return candidate;
|
|
}
|
|
|
|
let candidate = target_dir.parent().unwrap().join("debug").join(bin_name);
|
|
if candidate.exists() {
|
|
return candidate;
|
|
}
|
|
|
|
let workspace_root = PathBuf::from(env!("CARGO_MANIFEST_DIR"))
|
|
.parent()
|
|
.unwrap()
|
|
.parent()
|
|
.unwrap()
|
|
.to_path_buf();
|
|
let candidate = workspace_root.join("target").join("debug").join(bin_name);
|
|
if candidate.exists() {
|
|
return candidate;
|
|
}
|
|
|
|
panic!(
|
|
"Cannot find {} binary. Build it first:\n cd {} && cargo build",
|
|
bin_name,
|
|
workspace_root.display()
|
|
);
|
|
}
|
|
|
|
fn main() {
|
|
println!("╔══════════════════════════════════════════════════╗");
|
|
println!("║ CAN Sync v2 — Integration & Stress Test ║");
|
|
println!("╚══════════════════════════════════════════════════╝");
|
|
|
|
let can_service_bin = find_can_service_bin();
|
|
println!("\nUsing CAN service: {}", can_service_bin.display());
|
|
|
|
// Build can-sync if needed
|
|
println!("\nBuilding can-sync...");
|
|
let build_status = Command::new("cargo")
|
|
.args(["build", "--bin", "can-sync"])
|
|
.current_dir(env!("CARGO_MANIFEST_DIR"))
|
|
.status()
|
|
.expect("cargo build failed");
|
|
assert!(build_status.success(), "Failed to build can-sync");
|
|
|
|
// Set up harness (starts all processes)
|
|
let harness = TestHarness::new(&can_service_bin);
|
|
|
|
let mut passed = 0u32;
|
|
let mut failed = 0u32;
|
|
let mut results: Vec<(String, bool, String)> = vec![];
|
|
|
|
// ── Test 1: Single file A→B ──────────────────────────────────────
|
|
print_test_header("Test 1: Single file A→B");
|
|
{
|
|
let content = random_content(4096);
|
|
let hash = ingest_file(
|
|
&harness.can_a_url,
|
|
"test1.bin",
|
|
&content,
|
|
"application/octet-stream",
|
|
);
|
|
println!(" Ingested on A: hash={}", &hash[..16]);
|
|
|
|
let found = wait_for_hash(&harness.can_b_url, &hash, Duration::from_secs(30));
|
|
if found {
|
|
println!(" ✓ File appeared on CAN-B");
|
|
results.push(("A→B single".into(), true, "ok".into()));
|
|
passed += 1;
|
|
} else {
|
|
println!(" ✗ File NOT found on CAN-B after 30s");
|
|
results.push(("A→B single".into(), false, "timeout".into()));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
// ── Test 2: Single file B→A ──────────────────────────────────────
|
|
print_test_header("Test 2: Single file B→A");
|
|
{
|
|
let content = random_content(8192);
|
|
let hash = ingest_file(
|
|
&harness.can_b_url,
|
|
"test2.dat",
|
|
&content,
|
|
"application/octet-stream",
|
|
);
|
|
println!(" Ingested on B: hash={}", &hash[..16]);
|
|
|
|
let found = wait_for_hash(&harness.can_a_url, &hash, Duration::from_secs(30));
|
|
if found {
|
|
println!(" ✓ File appeared on CAN-A");
|
|
results.push(("B→A single".into(), true, "ok".into()));
|
|
passed += 1;
|
|
} else {
|
|
println!(" ✗ File NOT found on CAN-A after 30s");
|
|
results.push(("B→A single".into(), false, "timeout".into()));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
// ── Test 3: Rapid burst A→B (25 files, mixed sizes, some 10MB+) ─
|
|
print_test_header(&format!(
|
|
"Test 3: Rapid burst {} files A→B (mixed sizes, some 10MB+)",
|
|
BURST_COUNT
|
|
));
|
|
{
|
|
println!(" Generating files...");
|
|
let files = generate_burst_files("burst_a2b", BURST_COUNT);
|
|
|
|
println!(" Ingesting rapidly on CAN-A...");
|
|
let hashes = rapid_ingest(&harness.can_a_url, &files);
|
|
|
|
println!(" Waiting for all {} files to sync to CAN-B...", hashes.len());
|
|
let (found, total, elapsed) = wait_for_all_hashes(&harness.can_b_url, &hashes, SYNC_TIMEOUT);
|
|
|
|
if found == total {
|
|
println!(
|
|
" ✓ All {} files synced to B in {:.1}s",
|
|
total,
|
|
elapsed.as_secs_f64()
|
|
);
|
|
let total_bytes: usize = files.iter().map(|(_, c)| c.len()).sum();
|
|
println!(
|
|
" Throughput: {}/s",
|
|
human_size((total_bytes as f64 / elapsed.as_secs_f64()) as usize)
|
|
);
|
|
results.push((
|
|
format!("Burst A→B ({})", total),
|
|
true,
|
|
format!("{:.1}s", elapsed.as_secs_f64()),
|
|
));
|
|
passed += 1;
|
|
} else {
|
|
println!(
|
|
" ✗ Only {}/{} files synced after {:.1}s",
|
|
found,
|
|
total,
|
|
elapsed.as_secs_f64()
|
|
);
|
|
// Report which ones are missing
|
|
let b_hashes: HashSet<String> = list_hashes(&harness.can_b_url).into_iter().collect();
|
|
let missing: Vec<_> = hashes
|
|
.iter()
|
|
.enumerate()
|
|
.filter(|(_, h)| !b_hashes.contains(*h))
|
|
.map(|(i, h)| format!("#{} {} ({})", i, &h[..12], human_size(files[i].1.len())))
|
|
.collect();
|
|
if missing.len() <= 10 {
|
|
for m in &missing {
|
|
println!(" MISSING: {}", m);
|
|
}
|
|
} else {
|
|
println!(" {} files missing (showing first 10):", missing.len());
|
|
for m in &missing[..10] {
|
|
println!(" MISSING: {}", m);
|
|
}
|
|
}
|
|
results.push((
|
|
format!("Burst A→B ({})", total),
|
|
false,
|
|
format!("{}/{}", found, total),
|
|
));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
// Small pause to let things settle
|
|
println!("\n (pause 3s between tests)");
|
|
std::thread::sleep(Duration::from_secs(3));
|
|
|
|
// ── Test 4: Rapid burst B→A (25 files, mixed sizes, some 10MB+) ─
|
|
print_test_header(&format!(
|
|
"Test 4: Rapid burst {} files B→A (mixed sizes, some 10MB+)",
|
|
BURST_COUNT
|
|
));
|
|
{
|
|
println!(" Generating files...");
|
|
let files = generate_burst_files("burst_b2a", BURST_COUNT);
|
|
|
|
println!(" Ingesting rapidly on CAN-B...");
|
|
let hashes = rapid_ingest(&harness.can_b_url, &files);
|
|
|
|
println!(" Waiting for all {} files to sync to CAN-A...", hashes.len());
|
|
let (found, total, elapsed) = wait_for_all_hashes(&harness.can_a_url, &hashes, SYNC_TIMEOUT);
|
|
|
|
if found == total {
|
|
println!(
|
|
" ✓ All {} files synced to A in {:.1}s",
|
|
total,
|
|
elapsed.as_secs_f64()
|
|
);
|
|
let total_bytes: usize = files.iter().map(|(_, c)| c.len()).sum();
|
|
println!(
|
|
" Throughput: {}/s",
|
|
human_size((total_bytes as f64 / elapsed.as_secs_f64()) as usize)
|
|
);
|
|
results.push((
|
|
format!("Burst B→A ({})", total),
|
|
true,
|
|
format!("{:.1}s", elapsed.as_secs_f64()),
|
|
));
|
|
passed += 1;
|
|
} else {
|
|
println!(
|
|
" ✗ Only {}/{} files synced after {:.1}s",
|
|
found,
|
|
total,
|
|
elapsed.as_secs_f64()
|
|
);
|
|
let a_hashes: HashSet<String> = list_hashes(&harness.can_a_url).into_iter().collect();
|
|
let missing: Vec<_> = hashes
|
|
.iter()
|
|
.enumerate()
|
|
.filter(|(_, h)| !a_hashes.contains(*h))
|
|
.map(|(i, h)| format!("#{} {} ({})", i, &h[..12], human_size(files[i].1.len())))
|
|
.collect();
|
|
if missing.len() <= 10 {
|
|
for m in &missing {
|
|
println!(" MISSING: {}", m);
|
|
}
|
|
} else {
|
|
println!(" {} files missing (showing first 10):", missing.len());
|
|
for m in &missing[..10] {
|
|
println!(" MISSING: {}", m);
|
|
}
|
|
}
|
|
results.push((
|
|
format!("Burst B→A ({})", total),
|
|
false,
|
|
format!("{}/{}", found, total),
|
|
));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
println!("\n (pause 3s between tests)");
|
|
std::thread::sleep(Duration::from_secs(3));
|
|
|
|
// ── Test 5: Simultaneous burst — 25 files on EACH side at once ───
|
|
print_test_header(&format!(
|
|
"Test 5: Simultaneous burst — {} files on EACH side at once",
|
|
BURST_COUNT
|
|
));
|
|
{
|
|
println!(" Generating files for BOTH sides...");
|
|
let files_for_a = generate_burst_files("simul_onA", BURST_COUNT);
|
|
let files_for_b = generate_burst_files("simul_onB", BURST_COUNT);
|
|
|
|
let total_bytes: usize = files_for_a.iter().map(|(_, c)| c.len()).sum::<usize>()
|
|
+ files_for_b.iter().map(|(_, c)| c.len()).sum::<usize>();
|
|
println!(
|
|
" Total data: {} across {} files",
|
|
human_size(total_bytes),
|
|
BURST_COUNT * 2
|
|
);
|
|
|
|
println!(" Ingesting on BOTH sides simultaneously...");
|
|
let start = Instant::now();
|
|
let (hashes_a, hashes_b) = parallel_ingest(
|
|
&harness.can_a_url,
|
|
&files_for_a,
|
|
&harness.can_b_url,
|
|
&files_for_b,
|
|
);
|
|
let ingest_elapsed = start.elapsed();
|
|
println!(
|
|
" Parallel ingest done in {:.1}s ({} on A, {} on B)",
|
|
ingest_elapsed.as_secs_f64(),
|
|
hashes_a.len(),
|
|
hashes_b.len()
|
|
);
|
|
|
|
// Now wait for cross-sync: files from A should appear on B, files from B on A
|
|
println!(
|
|
" Waiting for A's {} files to appear on B...",
|
|
hashes_a.len()
|
|
);
|
|
let (found_on_b, total_a, elapsed_b) =
|
|
wait_for_all_hashes(&harness.can_b_url, &hashes_a, SYNC_TIMEOUT);
|
|
|
|
println!(
|
|
" Waiting for B's {} files to appear on A...",
|
|
hashes_b.len()
|
|
);
|
|
let (found_on_a, total_b, elapsed_a) =
|
|
wait_for_all_hashes(&harness.can_a_url, &hashes_b, SYNC_TIMEOUT);
|
|
|
|
let a_ok = found_on_b == total_a;
|
|
let b_ok = found_on_a == total_b;
|
|
|
|
if a_ok && b_ok {
|
|
let max_elapsed = elapsed_a.max(elapsed_b);
|
|
println!(
|
|
" ✓ Bidirectional sync complete! A→B: {}/{} in {:.1}s, B→A: {}/{} in {:.1}s",
|
|
found_on_b,
|
|
total_a,
|
|
elapsed_b.as_secs_f64(),
|
|
found_on_a,
|
|
total_b,
|
|
elapsed_a.as_secs_f64()
|
|
);
|
|
println!(
|
|
" Effective throughput: {}/s (both directions)",
|
|
human_size((total_bytes as f64 / max_elapsed.as_secs_f64()) as usize)
|
|
);
|
|
results.push((
|
|
format!("Simul {}+{}", BURST_COUNT, BURST_COUNT),
|
|
true,
|
|
format!("{:.1}s", max_elapsed.as_secs_f64()),
|
|
));
|
|
passed += 1;
|
|
} else {
|
|
println!(
|
|
" ✗ A→B: {}/{}, B→A: {}/{}",
|
|
found_on_b, total_a, found_on_a, total_b
|
|
);
|
|
if !a_ok {
|
|
let b_hashes: HashSet<String> =
|
|
list_hashes(&harness.can_b_url).into_iter().collect();
|
|
let missing_count = hashes_a.iter().filter(|h| !b_hashes.contains(*h)).count();
|
|
println!(" A→B: {} files missing on B", missing_count);
|
|
}
|
|
if !b_ok {
|
|
let a_hashes: HashSet<String> =
|
|
list_hashes(&harness.can_a_url).into_iter().collect();
|
|
let missing_count = hashes_b.iter().filter(|h| !a_hashes.contains(*h)).count();
|
|
println!(" B→A: {} files missing on A", missing_count);
|
|
}
|
|
results.push((
|
|
format!("Simul {}+{}", BURST_COUNT, BURST_COUNT),
|
|
false,
|
|
format!(
|
|
"A→B {}/{} B→A {}/{}",
|
|
found_on_b, total_a, found_on_a, total_b
|
|
),
|
|
));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
// ── Test 6: Final full-mirror verification ───────────────────────
|
|
print_test_header("Test 6: Final full-mirror verification");
|
|
{
|
|
// Give a final settlement window
|
|
println!(" Waiting 10s for any stragglers...");
|
|
std::thread::sleep(Duration::from_secs(10));
|
|
|
|
let a_hashes = list_hashes(&harness.can_a_url);
|
|
let b_hashes = list_hashes(&harness.can_b_url);
|
|
|
|
println!(" CAN-A has {} assets", a_hashes.len());
|
|
println!(" CAN-B has {} assets", b_hashes.len());
|
|
|
|
let a_set: HashSet<&String> = a_hashes.iter().collect();
|
|
let b_set: HashSet<&String> = b_hashes.iter().collect();
|
|
|
|
let only_a: Vec<_> = a_set.difference(&b_set).collect();
|
|
let only_b: Vec<_> = b_set.difference(&a_set).collect();
|
|
|
|
if only_a.is_empty() && only_b.is_empty() && a_hashes.len() == b_hashes.len() {
|
|
println!(
|
|
" ✓ Perfect mirror! {} assets identical on both sides",
|
|
a_hashes.len()
|
|
);
|
|
results.push((
|
|
"Full mirror".into(),
|
|
true,
|
|
format!("{} assets", a_hashes.len()),
|
|
));
|
|
passed += 1;
|
|
} else {
|
|
if !only_a.is_empty() {
|
|
println!(" ✗ {} assets only on A:", only_a.len());
|
|
for h in only_a.iter().take(5) {
|
|
println!(" {}", &h[..16]);
|
|
}
|
|
if only_a.len() > 5 {
|
|
println!(" ... and {} more", only_a.len() - 5);
|
|
}
|
|
}
|
|
if !only_b.is_empty() {
|
|
println!(" ✗ {} assets only on B:", only_b.len());
|
|
for h in only_b.iter().take(5) {
|
|
println!(" {}", &h[..16]);
|
|
}
|
|
if only_b.len() > 5 {
|
|
println!(" ... and {} more", only_b.len() - 5);
|
|
}
|
|
}
|
|
results.push((
|
|
"Full mirror".into(),
|
|
false,
|
|
format!(
|
|
"A={} B={} onlyA={} onlyB={}",
|
|
a_hashes.len(),
|
|
b_hashes.len(),
|
|
only_a.len(),
|
|
only_b.len()
|
|
),
|
|
));
|
|
failed += 1;
|
|
}
|
|
}
|
|
|
|
// ── Results ──────────────────────────────────────────────────────
|
|
let expected_total = 2 + BURST_COUNT * 2 + BURST_COUNT * 2; // singles + bursts + simul
|
|
let total_large = BURST_COUNT * 3 / 5; // roughly every 5th file is large, across 3 batches
|
|
|
|
println!("\n╔════════════════════════════════════════════════════╗");
|
|
println!("║ Test Results ║");
|
|
println!("╠════════════════════════════════════════════════════╣");
|
|
for (name, pass, detail) in &results {
|
|
let icon = if *pass { "✓" } else { "✗" };
|
|
let detail_trunc = if detail.len() > 20 {
|
|
&detail[..20]
|
|
} else {
|
|
detail
|
|
};
|
|
println!("║ {} {:<28} {}", icon, name, detail_trunc);
|
|
}
|
|
println!("╠════════════════════════════════════════════════════╣");
|
|
println!(
|
|
"║ Passed: {} Failed: {} ║",
|
|
passed, failed
|
|
);
|
|
println!(
|
|
"║ Files: ~{} total, ~{} large (10MB+) ║",
|
|
expected_total + 2, // +2 for the single file tests
|
|
total_large
|
|
);
|
|
println!("╚════════════════════════════════════════════════════╝");
|
|
|
|
// Print logs on failure
|
|
if failed > 0 {
|
|
harness.print_logs();
|
|
}
|
|
|
|
// Clean up
|
|
println!("\n=== Cleaning up ===\n");
|
|
drop(harness);
|
|
println!(" All temp directories removed.");
|
|
|
|
if failed > 0 {
|
|
std::process::exit(1);
|
|
}
|
|
}
|
|
|
|
fn print_test_header(name: &str) {
|
|
println!("\n╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌");
|
|
println!(" {}", name);
|
|
println!("╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌╌\n");
|
|
}
|