cargo_e/e_runall.rs
1use crate::e_cli::RunAll;
2use crate::e_command_builder::CargoCommandBuilder;
3use crate::e_processmanager::ProcessManager;
4use crate::e_target::{CargoTarget, TargetKind};
5use anyhow::{Context, Result};
6use std::path::PathBuf;
7use std::sync::atomic::{AtomicBool, Ordering};
8use std::sync::Arc;
9use std::time::Duration;
10use std::time::Instant;
11
12#[cfg(unix)]
13use nix::sys::signal::{kill, Signal};
14#[cfg(unix)]
15use nix::unistd::Pid;
16
17// #[cfg(target_os = "windows")]
18// use std::os::windows::process::CommandExt;
19
20// #[cfg(target_os = "windows")]
21// const CREATE_NEW_PROCESS_GROUP: u32 = 0x00000200;
22
23// #[cfg(target_os = "windows")]
24// fn send_ctrl_c(child: &mut Child) -> Result<()> {
25// println!("Sending CTRL-C to child process...");
26// use windows::Win32::System::Console::{GenerateConsoleCtrlEvent, CTRL_C_EVENT};
27
28// // Send CTRL+C to the child process group.
29// // The child must have been spawned with CREATE_NEW_PROCESS_GROUP.
30// let result = unsafe { GenerateConsoleCtrlEvent(CTRL_C_EVENT, child.id()) };
31// if result.is_err() {
32// return Err(anyhow::anyhow!("Failed to send CTRL_C_EVENT on Windows"));
33// }
34
35// // Allow some time for the child to handle the signal gracefully.
36// std::thread::sleep(std::time::Duration::from_millis(1000));
37
38// Ok(())
39// }
40
41#[cfg(not(target_os = "windows"))]
42pub fn send_ctrl_c(child: &mut std::process::Child) -> Result<()> {
43 // On Unix, send SIGINT to the child.
44 kill(Pid::from_raw(child.id() as i32), Signal::SIGINT).context("Failed to send SIGINT")?;
45 // Wait briefly to allow graceful shutdown.
46 std::thread::sleep(Duration::from_millis(2000));
47 Ok(())
48}
49
50/// Runs all filtered targets with prebuild, child process management, and timeoutābased termination.
51///
52/// If the CLI flag `pre_build` is enabled, this function first prebuilds all targets by invoking
53/// `cargo build` with the appropriate flags (using `--example` or `--bin` and, for extended targets,
54/// the `--manifest-path` flag). Then it spawns a child process for each target using `cargo run`,
55/// waits for the duration specified by `cli.wait`, kills the child process, and then checks its output.
56///
57/// # Parameters
58///
59/// - `cli`: A reference to the CLI configuration (containing flags like `pre_build`, `wait`, and extra arguments).
60/// - `filtered_targets`: A slice of `Example` instances representing the targets to run.
61///
62/// # Errors
63///
64/// Returns an error if the prebuild step fails or if any child process fails to spawn or complete.
65pub fn run_all_examples(
66 manager: Arc<ProcessManager>,
67 cli: &crate::Cli,
68 filtered_targets: &[CargoTarget],
69) -> Result<bool> {
70 // Adjust RUSTFLAGS if --quiet was provided.
71 set_rustflags_if_quiet(cli.quiet);
72
73 // Prebuild targets if requested.
74 if cli.pre_build {
75 crate::e_prebuild::prebuild_examples(filtered_targets)
76 .context("Prebuild of targets failed")?;
77 }
78
79 let mut targets = filtered_targets.to_vec();
80 targets.sort_by(|a, b| a.display_name.cmp(&b.display_name));
81
82 let user_requested_quit = Arc::new(AtomicBool::new(false));
83
84 let chunk_size = cli.run_at_a_time;
85 let mut idx = 0;
86 while idx < targets.len() {
87 let chunk = &targets[idx..std::cmp::min(idx + chunk_size, targets.len())];
88 let mut handles = vec![];
89
90 for (chunk_idx, target) in chunk.iter().enumerate() {
91 let manager = Arc::clone(&manager);
92 let cli = cli.clone();
93 let target = target.clone();
94 let targets_len = targets.len();
95 let idx = idx + chunk_idx;
96 let user_requested_quit_thread = Arc::clone(&user_requested_quit);
97
98 // Spawn a thread for each target in the chunk
99 let handle = std::thread::spawn(move || {
100 // --- Begin: original per-target logic ---
101 let current_bin = env!("CARGO_PKG_NAME");
102 // Skip running our own binary.
103 if target.kind == TargetKind::Binary && target.name == current_bin {
104 return Ok(()) as Result<()>;
105 }
106
107 let manifest_path = PathBuf::from(target.manifest_path.clone());
108 let builder = CargoCommandBuilder::new(
109 &target.name,
110 &manifest_path,
111 &cli.subcommand,
112 cli.filter,
113 cli.cached,
114 cli.default_binary_is_runner,
115 cli.quiet || cli.json_all_targets,
116 cli.detached,
117 )
118 .with_target(&target)
119 .with_cli(&cli)
120 .with_extra_args(&cli.extra);
121
122 builder.print_command();
123
124 let maybe_backup =
125 crate::e_manifest::maybe_patch_manifest_for_run(&target.manifest_path)
126 .context("Failed to patch manifest for run")?;
127
128 // let system = Arc::new(Mutex::new(System::new_all()));
129 // std::thread::sleep(sysinfo::MINIMUM_CPU_UPDATE_INTERVAL);
130 // let mut system_guard = system.lock().unwrap();
131 // system_guard.refresh_processes_specifics(
132 // ProcessesToUpdate::All,
133 // true,
134 // ProcessRefreshKind::nothing().with_cpu(),
135 // );
136 // drop(system_guard);
137
138 let start = Arc::new(std::sync::Mutex::new(None));
139 let start_for_callback = Arc::clone(&start);
140 let pid = Arc::new(builder).run({
141 let manager_ref = Arc::clone(&manager);
142 let t = target.clone();
143 let len = targets_len;
144 let start = Arc::clone(&start_for_callback);
145 // let system_clone = system.clone();
146 move |pid, handle| {
147 let stats = {
148 let handle_guard = handle.lock().unwrap();
149 let stats = handle_guard.stats.lock().unwrap().clone();
150 stats
151 };
152 let runtime_start = if stats.is_comiler_target {
153 stats.build_finished_time
154 } else {
155 stats.start_time
156 };
157 let mut start_guard = start.lock().unwrap();
158 if start_guard.is_none() {
159 *start_guard = Some(Instant::now());
160 }
161 if !cli.no_status_lines {
162 let status_display = ProcessManager::format_process_status(
163 pid,
164 runtime_start,
165 &t,
166 (idx + 1, len),
167 );
168 ProcessManager::update_status_line(&status_display, true).ok();
169 }
170 manager_ref.register(pid, handle);
171 }
172 })?;
173
174 let timeout = match cli.run_all {
175 RunAll::Timeout(secs) => Duration::from_secs(secs),
176 RunAll::Forever => Duration::from_secs(u64::MAX),
177 RunAll::NotSpecified => Duration::from_secs(cli.wait),
178 };
179
180 // Use an Arc<Mutex<Option<Instant>>> so it can be set in the run callback and accessed in the main loop.
181 let start_for_callback = Arc::clone(&start);
182 // let target_name_for_timeout = target.name.clone();
183 // let timeout_thread = std::thread::spawn({
184 // let manager = Arc::clone(&manager);
185 // let pid = pid.clone();
186 // move || {
187 // // Wait until `start` is Some, i.e., the process has started running
188 // while start.is_none() {
189 // println!(
190 // "Waiting for process {} to start before applying timeout...",
191 // pid
192 // );
193 // std::thread::sleep(Duration::from_millis(50));
194 // }
195 // let start_time = start.expect("start should have been set");
196 // while start_time.elapsed() < timeout {
197 // std::thread::sleep(Duration::from_millis(500));
198 // if manager.try_wait(pid).is_ok() {
199 // return; // Process finished naturally
200 // }
201 // println!(
202 // "Process {} is still running, waiting for timeout...",
203 // pid
204 // );
205 // }
206 // // Timeout reached, kill the process
207 // println!(
208 // "\nTimeout reached for target {}. Killing child process {}.",
209 // target_name_for_timeout, pid
210 // );
211 // manager.kill_by_pid(pid).ok();
212 // manager.remove(pid);
213 // }
214 // });
215
216 // Main thread continues to monitor the process
217 loop {
218 if manager.is_alive(pid) {
219 std::thread::sleep(Duration::from_millis(500));
220 match manager.try_wait(pid) {
221 Ok(Some(status)) => {
222 println!("Process {} finished naturally. {:?}", pid, status);
223 let hold = cli.detached_hold.unwrap_or(0);
224 if cli.detached_hold.is_some() && hold > 0 {
225 println!("holding for the duration (detached_hold enabled). Sleeping for {} seconds...", hold);
226 std::thread::sleep(std::time::Duration::from_secs(hold as u64));
227 }
228 // manager.e_window_kill(pid);
229 // manager.remove(pid);
230 break;
231 }
232 _ => {
233 // Process is still running.
234 // We can check for timeout here as well.
235 if let Ok(start_guard) = start_for_callback.lock() {
236 if let Some(start_time) = *start_guard {
237 if start_time.elapsed() >= timeout {
238 println!(
239 "\nTimeout reached for target {}. Killing child process {}.",
240 target.name,pid);
241 let hold = cli.detached_hold.unwrap_or(0);
242 if cli.detached_hold.is_some() && hold > 0 {
243 println!("holding for the duration (detached_hold enabled). Sleeping for {} seconds...", hold);
244 std::thread::sleep(std::time::Duration::from_secs(
245 hold as u64,
246 ));
247 }
248 manager.kill_by_pid(pid).ok();
249 // manager.remove(pid);
250 // user_requested_kill_thread.store(true, Ordering::SeqCst);
251 // pids_to_kill_thread.lock().push(pid);
252 break;
253 }
254 }
255 }
256 std::thread::sleep(Duration::from_millis(100));
257 }
258 }
259 if manager.has_signalled() > 0 {
260 println!("Detected Ctrl+C. {}", manager.has_signalled());
261 manager.remove(pid); // Clean up the process handle
262
263 if manager.has_signalled() > 1 {
264 if let Some(dur) = manager.time_between_signals() {
265 if dur < Duration::from_millis(350) {
266 println!("User requested quit two times quickly (<350ms).");
267 user_requested_quit_thread.store(true, Ordering::SeqCst);
268 break;
269 }
270 }
271 }
272 println!("Dectected Ctrl+C, coninuing to next target.");
273 manager.reset_signalled();
274 break;
275 }
276
277 // let (_stats, runtime_start, end_time, status_display) = {
278 // let (stats, runtime_start, end_time) =
279 // if let Some(process_handle) = manager.get(pid) {
280 // if let Ok(handle) = process_handle.lock() {
281 // let stats =
282 // handle.stats.lock().map(|s| s.clone()).unwrap_or_default();
283 // let runtime_start = if stats.is_comiler_target {
284 // stats.build_finished_time
285 // } else {
286 // stats.start_time
287 // };
288 // let end_time = handle.result.end_time;
289 // (stats, runtime_start, end_time)
290 // } else {
291 // // If we can't lock, fallback to defaults
292 // (Default::default(), None, None)
293 // }
294 // } else {
295 // // If process handle not found, fallback to defaults
296 // (Default::default(), None, None)
297 // };
298 // let status_display = if !cli.no_status_lines {
299 // ProcessManager::format_process_status(
300 // pid,
301 // runtime_start,
302 // &target,
303 // (idx + 1, targets_len),
304 // )
305 // } else {
306 // String::new()
307 // };
308 // (stats, runtime_start, end_time, status_display)
309 // };
310
311 // if cli.filter && !cli.no_status_lines {
312 // // let mut system_guard = system.lock().unwrap();
313 // // system_guard.refresh_processes_specifics(
314 // // ProcessesToUpdate::All,
315 // // true,
316 // // ProcessRefreshKind::nothing().with_cpu(),
317 // // );
318 // // drop(system_guard);
319 // ProcessManager::update_status_line(&status_display, true).ok();
320 // }
321 // if runtime_start.is_some() {
322 // // let mut start_guard = start_for_callback.lock().unwrap();
323 // // if start_guard.is_none() {
324 // // *start_guard = Some(Instant::now());
325 // // }
326 // if let Some(start_time) = *start_for_callback.lock().unwrap() {
327 // if start_time.elapsed() >= timeout {
328 // println!(
329 // "\nTimeout reached for target {} after {:.2?}. Killing child process {}.",
330 // target.name,
331 // start_time.elapsed(),
332 // pid
333 // );
334 // manager.e_window_kill(pid);
335 // manager.remove(pid);
336 // manager.kill_by_pid(pid).ok();
337 // break;
338 // }
339 // }
340 // // std::thread::sleep(Duration::from_millis(500));
341 // } else if end_time.is_some() {
342 // println!("Process finished naturally.");
343 // manager.e_window_kill(pid);
344 // manager.remove(pid);
345 // break;
346 // }
347 std::thread::sleep(Duration::from_millis(100));
348 }
349 }
350
351 // Wait for the timeout thread to finish
352 // let _ = timeout_thread.join();
353
354 if let Some(original) = maybe_backup {
355 fs::write(&target.manifest_path, original)
356 .context("Failed to restore patched manifest")?;
357 }
358 manager.generate_report(cli.gist);
359
360 Ok(())
361 // --- End: original per-target logic ---
362 });
363 if user_requested_quit.load(Ordering::SeqCst) {
364 break;
365 }
366 handles.push(handle);
367 }
368 // Check if the user requested to quit.
369 if user_requested_quit.load(Ordering::SeqCst) {
370 break;
371 }
372 // Wait for all threads in this chunk to finish
373 for handle in handles {
374 let _ = handle.join();
375 }
376 manager.e_window_kill_all();
377 idx += chunk_size;
378 }
379
380 Ok(Arc::clone(&user_requested_quit).load(Ordering::SeqCst))
381}
382
383// pub fn run_all_examples(cli: &Cli, filtered_targets: &[CargoTarget]) -> Result<()> {
384// // If --quiet was provided, adjust RUSTFLAGS.
385// set_rustflags_if_quiet(cli.quiet);
386
387// // Factor out the prebuild logic.
388// if cli.pre_build {
389// crate::e_prebuild::prebuild_examples(filtered_targets)
390// .context("Prebuild of targets failed")?;
391// }
392// let mut targets = filtered_targets.to_vec();
393// targets.sort_by(|a, b| a.display_name.cmp(&b.display_name));
394// // For each filtered target, run it with child process management.
395// for target in targets {
396// // Clear the screen before running each target.
397
398// // use crossterm::{execute, terminal::{Clear, ClearType}};
399// // use std::io::{stdout, Write};
400// // execute!(stdout(), Clear(ClearType::All), crossterm::cursor::MoveTo(0, 0))?;
401// // std::io::Write::flush(&mut std::io::stdout()).unwrap();
402// println!("Running target: {}", target.name);
403
404// // Retrieve the current package name (or binary name) at compile time.
405// let current_bin = env!("CARGO_PKG_NAME");
406// // Avoid running our own binary if the target's name is the same.
407// if target.kind == TargetKind::Binary && target.name == current_bin {
408// continue;
409// }
410
411// // Determine the run flag and whether we need to pass the manifest path.
412// let (run_flag, needs_manifest) = match target.kind {
413// TargetKind::Example => ("--example", false),
414// TargetKind::ExtendedExample => ("--example", true),
415// TargetKind::Binary => ("--bin", false),
416// TargetKind::ExtendedBinary => ("--bin", true),
417// TargetKind::ManifestTauri => ("", true),
418// TargetKind::ManifestTauriExample => ("", true),
419// TargetKind::Test => ("--test", true),
420// TargetKind::Manifest => ("", true),
421// TargetKind::ManifestDioxus => ("", true),
422// TargetKind::ManifestDioxusExample => ("", true),
423// TargetKind::Bench => ("", true),
424// };
425// let mut cmd_parts = vec!["cargo".to_string()];
426// cmd_parts.push("run".to_string());
427// if cli.release {
428// cmd_parts.push("--release".to_string());
429// }
430// // Pass --quiet if requested.
431// if cli.quiet {
432// cmd_parts.push("--quiet".to_string());
433// }
434// cmd_parts.push(run_flag.to_string());
435// cmd_parts.push(target.name.clone());
436// if needs_manifest {
437// cmd_parts.push("--manifest-path".to_string());
438// cmd_parts.push(
439// target
440// .manifest_path
441// .clone()
442// .to_str()
443// .unwrap_or_default()
444// .to_owned(),
445// );
446// }
447// cmd_parts.extend(cli.extra.clone());
448
449// // // Build a vector of command parts for logging.
450// // let mut cmd_parts = vec!["cargo".to_string(), "run".to_string(), run_flag.to_string(), target.name.clone()];
451// // if needs_manifest {
452// // cmd_parts.push("--manifest-path".to_string());
453// // cmd_parts.push(target.manifest_path.clone());
454// // }
455// // // Append any extra CLI arguments.
456// // cmd_parts.extend(cli.extra.clone());
457
458// // Print out the full command that will be run.
459// let key = prompt(&format!("Full command: {}", cmd_parts.join(" ")), 2)?;
460// if let Some('q') = key {
461// println!("User requested quit.");
462// break;
463// }
464
465// // Clear the screen before running each target.
466// //println!("\x1B[2J\x1B[H");
467
468// // Build the command for execution.
469// let mut command = Command::new("cargo");
470// command.arg("run");
471// if cli.release {
472// command.arg("--release");
473// }
474// if cli.quiet {
475// command.arg("--quiet");
476// }
477// command.arg(run_flag).arg(&target.name);
478// if needs_manifest {
479// command.args(&[
480// "--manifest-path",
481// &target.manifest_path.to_str().unwrap_or_default().to_owned(),
482// ]);
483// }
484
485// // --- Inject required-features support using our helper ---
486// if let Some(features) = crate::e_manifest::get_required_features_from_manifest(
487// std::path::Path::new(&target.manifest_path),
488// &target.kind,
489// &target.name,
490// ) {
491// command.args(&["--features", &features]);
492// }
493// // --- End required-features support ---
494
495// // Append any extra CLI arguments.
496// command.args(&cli.extra);
497
498// // Spawn the child process.
499// let child = command
500// .spawn()
501// .with_context(|| format!("Failed to spawn cargo run for target {}", target.name))?;
502// {
503// let mut global = crate::e_runner::GLOBAL_CHILD.lock().unwrap();
504// *global = Some(child);
505// }
506// // Let the target run for the specified duration.
507// let run_duration = Duration::from_secs(cli.wait);
508// thread::sleep(run_duration);
509
510// // Kill the process (ignoring errors if it already terminated).
511
512// // Decide on the run duration per target and use it accordingly:
513// // Determine behavior based on the run_all flag:
514// let output = {
515// let mut global = crate::e_runner::GLOBAL_CHILD.lock().unwrap();
516// if let Some(mut child) = global.take() {
517// match cli.run_all {
518// RunAll::Timeout(timeout_secs) => {
519// let message = format!(
520// "Press any key to continue (timeout in {} seconds)...",
521// timeout_secs
522// );
523// let key = prompt(&message, timeout_secs)?;
524// if let Some('q') = key {
525// println!("User requested quit.");
526// // Terminate the process and break out of the loop.
527// child.kill().ok();
528// break;
529// }
530// child.kill().ok();
531// child.wait_with_output().with_context(|| {
532// format!("Failed to wait on cargo run for target {}", target.name)
533// })?
534// }
535// RunAll::Forever => {
536// let key = prompt(&"", 0)?;
537// if let Some('q') = key {
538// println!("User requested quit.");
539// // Terminate the process and break out of the loop.
540// child.kill().ok();
541// break;
542// } // Run until natural termination.
543// child.wait_with_output().with_context(|| {
544// format!("Failed to wait on cargo run for target {}", target.name)
545// })?
546// }
547// RunAll::NotSpecified => {
548// let key = prompt(&"", cli.wait)?;
549// if let Some('q') = key {
550// println!("User requested quit.");
551// // Terminate the process and break out of the loop.
552// child.kill().ok();
553// break;
554// }
555// child.kill().ok();
556// child.wait_with_output().with_context(|| {
557// format!("Failed to wait on cargo run for target {}", target.name)
558// })?
559// }
560// }
561// } else {
562// return Err(anyhow::anyhow!("No child process found"));
563// }
564// };
565
566// if !output.stderr.is_empty() {
567// eprintln!(
568// "Target '{}' produced errors:\n{}",
569// target.name,
570// String::from_utf8_lossy(&output.stderr)
571// );
572// }
573// }
574// Ok(())
575// }
576
577use std::{env, fs};
578
579/// If quiet mode is enabled, ensure that RUSTFLAGS contains "-Awarnings".
580/// If RUSTFLAGS is already set, and it does not contain "-Awarnings", then append it.
581pub fn set_rustflags_if_quiet(quiet: bool) {
582 if quiet {
583 let current_flags = env::var("RUSTFLAGS").unwrap_or_else(|_| "".to_string());
584 if !current_flags.contains("-Awarnings") {
585 let new_flags = if current_flags.trim().is_empty() {
586 "-Awarnings".to_string()
587 } else {
588 format!("{} -Awarnings", current_flags)
589 };
590 env::set_var("RUSTFLAGS", new_flags);
591 }
592 }
593}