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Document main and app_state
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parent
7f73219041
commit
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3 changed files with 91 additions and 74 deletions
151
src/app_state.rs
151
src/app_state.rs
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@ -33,6 +33,7 @@ pub enum StateFileStatus {
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NotRead,
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}
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// Parses parts of the output of `cargo metadata`.
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#[derive(Deserialize)]
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struct CargoMetadata {
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target_directory: PathBuf,
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@ -41,14 +42,18 @@ struct CargoMetadata {
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pub struct AppState {
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current_exercise_ind: usize,
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exercises: Vec<Exercise>,
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// Caches the number of done exercises to avoid iterating over all exercises every time.
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n_done: u16,
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final_message: String,
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// Preallocated buffer for reading and writing the state file.
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file_buf: Vec<u8>,
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official_exercises: bool,
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// Cargo's target directory.
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target_dir: PathBuf,
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}
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impl AppState {
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// Update the app state from the state file.
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fn update_from_file(&mut self) -> StateFileStatus {
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self.file_buf.clear();
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self.n_done = 0;
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@ -98,6 +103,7 @@ impl AppState {
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exercise_infos: Vec<ExerciseInfo>,
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final_message: String,
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) -> Result<(Self, StateFileStatus)> {
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// Get the target directory from Cargo.
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let metadata_output = Command::new("cargo")
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.arg("metadata")
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.arg("-q")
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@ -115,6 +121,7 @@ impl AppState {
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)?
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.target_directory;
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// Build exercises from their metadata in the info file.
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let exercises = exercise_infos
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.into_iter()
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.map(|mut exercise_info| {
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@ -184,6 +191,36 @@ impl AppState {
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&self.target_dir
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}
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// Write the state file.
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// The file's format is very simple:
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// - The first line is a comment.
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// - The second line is an empty line.
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// - The third line is the name of the current exercise. It must end with `\n` even if there
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// are no done exercises.
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// - The fourth line is an empty line.
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// - All remaining lines are the names of done exercises.
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fn write(&mut self) -> Result<()> {
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self.file_buf.clear();
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self.file_buf
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.extend_from_slice(b"DON'T EDIT THIS FILE!\n\n");
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self.file_buf
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.extend_from_slice(self.current_exercise().name.as_bytes());
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self.file_buf.push(b'\n');
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for exercise in &self.exercises {
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if exercise.done {
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self.file_buf.push(b'\n');
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self.file_buf.extend_from_slice(exercise.name.as_bytes());
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}
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}
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fs::write(STATE_FILE_NAME, &self.file_buf)
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.with_context(|| format!("Failed to write the state file {STATE_FILE_NAME}"))?;
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Ok(())
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}
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pub fn set_current_exercise_ind(&mut self, ind: usize) -> Result<()> {
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if ind >= self.exercises.len() {
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bail!(BAD_INDEX_ERR);
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@ -218,6 +255,8 @@ impl AppState {
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Ok(())
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}
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// Official exercises: Dump the original file from the binary.
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// Third-party exercises: Reset the exercise file with `git stash`.
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fn reset(&self, ind: usize, dir_name: Option<&str>, path: &str) -> Result<()> {
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if self.official_exercises {
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return EMBEDDED_FILES
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@ -271,6 +310,7 @@ impl AppState {
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Ok(exercise.path)
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}
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// Return the index of the next pending exercise or `None` if all exercises are done.
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fn next_pending_exercise_ind(&self) -> Option<usize> {
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if self.current_exercise_ind == self.exercises.len() - 1 {
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// The last exercise is done.
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@ -293,6 +333,8 @@ impl AppState {
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}
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}
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// Official exercises: Dump the solution file form the binary and return its path.
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// Third-party exercises: Check if a solution file exists and return its path in that case.
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pub fn current_solution_path(&self) -> Result<Option<String>> {
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if DEBUG_PROFILE {
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return Ok(None);
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@ -328,6 +370,9 @@ impl AppState {
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}
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}
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// Mark the current exercise as done and move on to the next pending exercise if one exists.
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// If all exercises are marked as done, run all of them to make sure that they are actually
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// done. If an exercise which is marked as done fails, mark it as pending and continue on it.
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pub fn done_current_exercise(&mut self, writer: &mut StdoutLock) -> Result<ExercisesProgress> {
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let exercise = &mut self.exercises[self.current_exercise_ind];
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if !exercise.done {
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@ -335,78 +380,48 @@ impl AppState {
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self.n_done += 1;
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}
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let Some(ind) = self.next_pending_exercise_ind() else {
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writer.write_all(RERUNNING_ALL_EXERCISES_MSG)?;
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if let Some(ind) = self.next_pending_exercise_ind() {
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self.set_current_exercise_ind(ind)?;
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let mut output = Vec::with_capacity(OUTPUT_CAPACITY);
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for (exercise_ind, exercise) in self.exercises().iter().enumerate() {
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write!(writer, "Running {exercise} ... ")?;
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writer.flush()?;
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let success = exercise.run(&mut output, &self.target_dir)?;
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if !success {
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writeln!(writer, "{}\n", "FAILED".red())?;
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self.current_exercise_ind = exercise_ind;
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// No check if the exercise is done before setting it to pending
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// because no pending exercise was found.
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self.exercises[exercise_ind].done = false;
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self.n_done -= 1;
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self.write()?;
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return Ok(ExercisesProgress::Pending);
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}
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writeln!(writer, "{}", "ok".green())?;
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}
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writer.execute(Clear(ClearType::All))?;
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writer.write_all(FENISH_LINE.as_bytes())?;
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let final_message = self.final_message.trim();
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if !final_message.is_empty() {
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writer.write_all(final_message.as_bytes())?;
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writer.write_all(b"\n")?;
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}
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return Ok(ExercisesProgress::AllDone);
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};
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self.set_current_exercise_ind(ind)?;
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Ok(ExercisesProgress::Pending)
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}
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// Write the state file.
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// The file's format is very simple:
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// - The first line is a comment.
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// - The second line is an empty line.
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// - The third line is the name of the current exercise. It must end with `\n` even if there
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// are no done exercises.
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// - The fourth line is an empty line.
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// - All remaining lines are the names of done exercises.
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fn write(&mut self) -> Result<()> {
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self.file_buf.clear();
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self.file_buf
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.extend_from_slice(b"DON'T EDIT THIS FILE!\n\n");
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self.file_buf
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.extend_from_slice(self.current_exercise().name.as_bytes());
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self.file_buf.push(b'\n');
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for exercise in &self.exercises {
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if exercise.done {
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self.file_buf.push(b'\n');
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self.file_buf.extend_from_slice(exercise.name.as_bytes());
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}
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return Ok(ExercisesProgress::Pending);
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}
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fs::write(STATE_FILE_NAME, &self.file_buf)
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.with_context(|| format!("Failed to write the state file {STATE_FILE_NAME}"))?;
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writer.write_all(RERUNNING_ALL_EXERCISES_MSG)?;
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Ok(())
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let mut output = Vec::with_capacity(OUTPUT_CAPACITY);
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for (exercise_ind, exercise) in self.exercises().iter().enumerate() {
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write!(writer, "Running {exercise} ... ")?;
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writer.flush()?;
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let success = exercise.run(&mut output, &self.target_dir)?;
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if !success {
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writeln!(writer, "{}\n", "FAILED".red())?;
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self.current_exercise_ind = exercise_ind;
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// No check if the exercise is done before setting it to pending
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// because no pending exercise was found.
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self.exercises[exercise_ind].done = false;
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self.n_done -= 1;
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self.write()?;
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return Ok(ExercisesProgress::Pending);
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}
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writeln!(writer, "{}", "ok".green())?;
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}
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writer.execute(Clear(ClearType::All))?;
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writer.write_all(FENISH_LINE.as_bytes())?;
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let final_message = self.final_message.trim();
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if !final_message.is_empty() {
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writer.write_all(final_message.as_bytes())?;
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writer.write_all(b"\n")?;
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}
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Ok(ExercisesProgress::AllDone)
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}
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}
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@ -15,7 +15,7 @@ pub enum DevCommands {
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New {
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/// The path to create the project in
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path: PathBuf,
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/// Don't initialize a Git repository in the project directory
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/// Don't try to initialize a Git repository in the project directory
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#[arg(long)]
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no_git: bool,
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},
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12
src/main.rs
12
src/main.rs
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@ -40,6 +40,11 @@ const DEBUG_PROFILE: bool = {
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debug_profile
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};
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// The current directory is the official Rustligns repository.
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fn in_official_repo() -> bool {
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Path::new("dev/rustlings-repo.txt").exists()
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}
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/// Rustlings is a collection of small exercises to get you used to writing and reading Rust code
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#[derive(Parser)]
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#[command(version)]
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@ -54,7 +59,7 @@ struct Args {
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#[derive(Subcommand)]
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enum Subcommands {
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/// Initialize Rustlings
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/// Initialize the official Rustlings exercises
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Init,
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/// Run a single exercise. Runs the next pending exercise if the exercise name is not specified
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Run {
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@ -76,10 +81,6 @@ enum Subcommands {
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Dev(DevCommands),
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}
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fn in_official_repo() -> bool {
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Path::new("dev/rustlings-repo.txt").exists()
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}
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fn main() -> Result<()> {
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let args = Args::parse();
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@ -123,6 +124,7 @@ fn main() -> Result<()> {
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info_file.final_message.unwrap_or_default(),
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)?;
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// Show the welcome message if the state file doesn't exist yet.
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if let Some(welcome_message) = info_file.welcome_message {
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match state_file_status {
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StateFileStatus::NotRead => {
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