301 lines
6.9 KiB
Rust
301 lines
6.9 KiB
Rust
use crossterm::{
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cursor,
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event::{Event, KeyCode, KeyEvent, KeyModifiers},
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execute,
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style::{Color, Print, PrintStyledContent, SetForegroundColor, Stylize},
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terminal::{Clear, ClearType, EnterAlternateScreen, LeaveAlternateScreen},
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QueueableCommand,
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};
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use secrecy::SecretString;
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use std::collections::HashSet;
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use std::io::{stderr, stdout, Write};
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use steamguard::Confirmation;
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/// Prompt the user for text input.
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pub(crate) fn prompt() -> String {
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stdout().flush().expect("failed to flush stdout");
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stderr().flush().expect("failed to flush stderr");
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let mut line = String::new();
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while let Event::Key(KeyEvent { code, .. }) = crossterm::event::read().unwrap() {
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match code {
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KeyCode::Enter => {
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break;
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}
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KeyCode::Char(c) => {
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line.push(c);
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}
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_ => {}
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}
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}
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line
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}
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/// Prompt the user for a single character response. Useful for asking yes or no questions.
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///
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/// `chars` should be all lowercase characters, with at most 1 uppercase character. The uppercase character is the default answer if no answer is provided.
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pub(crate) fn prompt_char(text: &str, chars: &str) -> char {
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loop {
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let _ = stderr().queue(Print(format!("{} [{}] ", text, chars)));
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let _ = stderr().flush();
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let input = prompt();
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if let Ok(c) = prompt_char_impl(input, chars) {
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return c;
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}
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}
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}
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fn prompt_char_impl<T>(input: T, chars: &str) -> anyhow::Result<char>
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where
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T: Into<String>,
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{
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let uppers = chars.replace(char::is_lowercase, "");
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if uppers.len() > 1 {
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panic!("Invalid chars for prompt_char. Maximum 1 uppercase letter is allowed.");
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}
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let default_answer: Option<char> = if uppers.len() == 1 {
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Some(uppers.chars().collect::<Vec<char>>()[0].to_ascii_lowercase())
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} else {
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None
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};
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let answer: String = input.into().to_ascii_lowercase();
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if answer.is_empty() {
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if let Some(a) = default_answer {
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return Ok(a);
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} else {
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bail!("no valid answer")
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}
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} else if answer.len() > 1 {
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bail!("answer too long")
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}
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let answer_char = answer.chars().collect::<Vec<char>>()[0];
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if chars.to_ascii_lowercase().contains(answer_char) {
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return Ok(answer_char);
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}
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bail!("no valid answer")
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}
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/// Returns a tuple of (accepted, denied). Ignored confirmations are not included.
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pub(crate) fn prompt_confirmation_menu(
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confirmations: Vec<Confirmation>,
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) -> anyhow::Result<(Vec<Confirmation>, Vec<Confirmation>)> {
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if confirmations.is_empty() {
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return Ok((vec![], vec![]));
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}
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let mut to_accept_idx: HashSet<usize> = HashSet::new();
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let mut to_deny_idx: HashSet<usize> = HashSet::new();
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execute!(stdout(), EnterAlternateScreen)?;
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crossterm::terminal::enable_raw_mode()?;
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let mut selected_idx = 0;
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loop {
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execute!(
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stdout(),
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Clear(ClearType::All),
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cursor::MoveTo(1, 1),
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PrintStyledContent(
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"arrow keys to select, [a]ccept, [d]eny, [i]gnore, [enter] confirm choices\n\n"
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.white()
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),
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)?;
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for (i, conf) in confirmations.iter().enumerate() {
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stdout().queue(Print("\r"))?;
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if selected_idx == i {
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stdout().queue(SetForegroundColor(Color::Yellow))?;
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stdout().queue(Print(" >"))?;
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} else {
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stdout().queue(SetForegroundColor(Color::White))?;
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stdout().queue(Print(" "))?;
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}
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if to_accept_idx.contains(&i) {
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stdout().queue(SetForegroundColor(Color::Green))?;
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stdout().queue(Print("[a]"))?;
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} else if to_deny_idx.contains(&i) {
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stdout().queue(SetForegroundColor(Color::Red))?;
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stdout().queue(Print("[d]"))?;
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} else {
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stdout().queue(Print("[ ]"))?;
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}
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if selected_idx == i {
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stdout().queue(SetForegroundColor(Color::Yellow))?;
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}
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stdout().queue(Print(format!(" {}\n", conf.description())))?;
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}
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stdout().flush()?;
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match crossterm::event::read()? {
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Event::Resize(_, _) => continue,
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Event::Key(KeyEvent {
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code: KeyCode::Char('a'),
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..
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}) => {
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to_accept_idx.insert(selected_idx);
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to_deny_idx.remove(&selected_idx);
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}
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Event::Key(KeyEvent {
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code: KeyCode::Char('d'),
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..
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}) => {
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to_accept_idx.remove(&selected_idx);
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to_deny_idx.insert(selected_idx);
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}
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Event::Key(KeyEvent {
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code: KeyCode::Char('i'),
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..
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}) => {
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to_accept_idx.remove(&selected_idx);
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to_deny_idx.remove(&selected_idx);
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}
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Event::Key(KeyEvent {
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code: KeyCode::Char('A'),
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..
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}) => {
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(0..confirmations.len()).for_each(|i| {
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to_accept_idx.insert(i);
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to_deny_idx.remove(&i);
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});
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}
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Event::Key(KeyEvent {
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code: KeyCode::Char('D'),
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..
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}) => {
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(0..confirmations.len()).for_each(|i| {
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to_accept_idx.remove(&i);
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to_deny_idx.insert(i);
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});
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}
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Event::Key(KeyEvent {
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code: KeyCode::Char('I'),
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..
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}) => {
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(0..confirmations.len()).for_each(|i| {
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to_accept_idx.remove(&i);
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to_deny_idx.remove(&i);
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});
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}
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Event::Key(KeyEvent {
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code: KeyCode::Up, ..
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}) if selected_idx > 0 => {
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selected_idx -= 1;
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}
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Event::Key(KeyEvent {
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code: KeyCode::Down,
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..
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}) if selected_idx < confirmations.len() - 1 => {
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selected_idx += 1;
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}
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Event::Key(KeyEvent {
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code: KeyCode::Enter,
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..
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}) => {
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break;
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}
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Event::Key(KeyEvent {
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code: KeyCode::Esc, ..
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})
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| Event::Key(KeyEvent {
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code: KeyCode::Char('c'),
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modifiers: KeyModifiers::CONTROL,
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}) => {
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return Ok((vec![], vec![]));
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}
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_ => {}
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}
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}
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execute!(stdout(), LeaveAlternateScreen)?;
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crossterm::terminal::disable_raw_mode()?;
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return Ok((
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to_accept_idx
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.iter()
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.map(|i| confirmations[*i].clone())
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.collect(),
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to_deny_idx
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.iter()
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.map(|i| confirmations[*i].clone())
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.collect(),
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));
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}
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pub(crate) fn pause() {
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let _ = write!(stderr(), "Press enter to continue...");
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let _ = stderr().flush();
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loop {
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match crossterm::event::read().expect("could not read terminal events") {
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Event::Key(KeyEvent {
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code: KeyCode::Enter,
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..
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}) => break,
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_ => continue,
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}
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}
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}
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pub(crate) fn prompt_passkey() -> std::io::Result<SecretString> {
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loop {
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let raw = rpassword::prompt_password_stdout("Enter encryption passkey: ")?;
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if !raw.is_empty() {
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return Ok(SecretString::new(raw));
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}
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}
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}
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pub(crate) fn prompt_password() -> std::io::Result<SecretString> {
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loop {
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let raw = rpassword::prompt_password_stdout("Password: ")?;
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if !raw.is_empty() {
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return Ok(SecretString::new(raw));
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}
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}
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}
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#[cfg(test)]
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mod prompt_char_tests {
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use super::*;
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#[test]
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fn test_gives_answer() {
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let answer = prompt_char_impl("y", "yn").unwrap();
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assert_eq!(answer, 'y');
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}
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#[test]
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fn test_gives_default() {
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let answer = prompt_char_impl("", "Yn").unwrap();
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assert_eq!(answer, 'y');
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}
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#[test]
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fn test_should_not_give_default() {
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let answer = prompt_char_impl("n", "Yn").unwrap();
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assert_eq!(answer, 'n');
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}
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#[test]
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fn test_should_not_give_invalid() {
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let answer = prompt_char_impl("g", "yn");
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assert!(matches!(answer, Err(_)));
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let answer = prompt_char_impl("n", "yn").unwrap();
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assert_eq!(answer, 'n');
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}
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#[test]
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fn test_should_not_give_multichar() {
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let answer = prompt_char_impl("yy", "yn");
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assert!(matches!(answer, Err(_)));
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}
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}
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