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Refactor check_solutions
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parent
c7590dd752
commit
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@ -1,13 +1,10 @@
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use anyhow::{anyhow, bail, Context, Result};
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use anyhow::{anyhow, bail, Context, Error, Result};
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use std::{
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cmp::Ordering,
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fs::{self, read_dir, OpenOptions},
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io::{self, Read, Write},
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path::{Path, PathBuf},
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sync::{
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atomic::{self, AtomicBool},
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Mutex,
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},
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sync::atomic::{self, AtomicBool},
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thread,
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};
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@ -213,56 +210,76 @@ fn check_exercises(info_file: &InfoFile, cmd_runner: &CmdRunner) -> Result<()> {
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check_exercises_unsolved(info_file, cmd_runner)
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}
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enum SolutionCheck {
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Success { sol_path: String },
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MissingRequired,
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MissingOptional,
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RunFailure { output: Vec<u8> },
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Err(Error),
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}
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fn check_solutions(
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require_solutions: bool,
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info_file: &InfoFile,
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cmd_runner: &CmdRunner,
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) -> Result<()> {
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let paths = Mutex::new(hashbrown::HashSet::with_capacity(info_file.exercises.len()));
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let error_occurred = AtomicBool::new(false);
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println!("Running all solutions. This may take a while…\n");
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thread::scope(|s| {
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for exercise_info in &info_file.exercises {
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s.spawn(|| {
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let error = |e| {
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let mut stderr = io::stderr().lock();
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stderr.write_all(e).unwrap();
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stderr
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.write_all(b"\nFailed to run the solution of the exercise ")
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.unwrap();
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stderr.write_all(exercise_info.name.as_bytes()).unwrap();
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stderr.write_all(SEPARATOR).unwrap();
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error_occurred.store(true, atomic::Ordering::Relaxed);
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};
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let sol_paths = thread::scope(|s| {
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let handles = info_file
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.exercises
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.iter()
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.map(|exercise_info| {
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s.spawn(|| {
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let sol_path = exercise_info.sol_path();
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if !Path::new(&sol_path).exists() {
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if require_solutions {
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return SolutionCheck::MissingRequired;
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}
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let path = exercise_info.sol_path();
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if !Path::new(&path).exists() {
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if require_solutions {
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error(b"Solution missing");
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return SolutionCheck::MissingOptional;
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}
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// No solution to check.
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return;
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}
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let mut output = Vec::with_capacity(OUTPUT_CAPACITY);
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match exercise_info.run_solution(Some(&mut output), cmd_runner) {
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Ok(true) => {
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paths.lock().unwrap().insert(PathBuf::from(path));
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let mut output = Vec::with_capacity(OUTPUT_CAPACITY);
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match exercise_info.run_solution(Some(&mut output), cmd_runner) {
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Ok(true) => SolutionCheck::Success { sol_path },
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Ok(false) => SolutionCheck::RunFailure { output },
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Err(e) => SolutionCheck::Err(e),
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}
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Ok(false) => error(&output),
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Err(e) => error(e.to_string().as_bytes()),
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})
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})
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.collect::<Vec<_>>();
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let mut sol_paths = hashbrown::HashSet::with_capacity(info_file.exercises.len());
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for (exercise_name, handle) in info_file
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.exercises
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.iter()
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.map(|exercise_info| &exercise_info.name)
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.zip(handles)
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{
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match handle.join() {
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Ok(SolutionCheck::Success { sol_path }) => {
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sol_paths.insert(PathBuf::from(sol_path));
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}
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});
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Ok(SolutionCheck::MissingRequired) => {
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bail!("The solution of the exercise {exercise_name} is missing");
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}
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Ok(SolutionCheck::MissingOptional) => (),
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Ok(SolutionCheck::RunFailure { output }) => {
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io::stderr().lock().write_all(&output)?;
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bail!("Running the solution of the exercise {exercise_name} failed with the error above");
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}
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Ok(SolutionCheck::Err(e)) => return Err(e),
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Err(_) => {
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bail!("Panic while trying to run the solution of the exericse {exercise_name}");
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}
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}
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}
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});
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if error_occurred.load(atomic::Ordering::Relaxed) {
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bail!("At least one solution failed. See the output above.");
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}
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Ok(sol_paths)
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})?;
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check_unexpected_files("solutions", &paths.into_inner().unwrap())?;
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check_unexpected_files("solutions", &sol_paths)?;
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Ok(())
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}
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