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use std::sync::atomic::{AtomicBool, Ordering};
use std::thread::{self, JoinHandle};
use std::time::{Duration, Instant};
use anyhow::Result;
use colored::Colorize;
use forge_domain::ConsoleWriter;
use rand::RngExt;
mod progress_bar;
pub use progress_bar::*;
const TICK_DURATION_MS: u64 = 60;
const TICKS: &[&str; 10] = &["⠋", "⠙", "⠹", "⠸", "⠼", "⠴", "⠦", "⠧", "⠇", "⠏"];
const MIN_TERMINAL_WIDTH: usize = 12;
const WRAP_GUARD_COLUMNS: usize = 8;
fn terminal_width() -> usize {
terminal_size::terminal_size()
.map(|(width, _)| width.0 as usize)
.unwrap_or(80)
}
fn visible_width(value: &str) -> usize {
console::measure_text_width(value)
}
fn truncate_to_visible_width(value: &str, max_width: usize) -> String {
let mut output = value.to_string();
while visible_width(&output) > max_width {
if output.pop().is_none() {
break;
}
}
output
}
fn styled_loader_line(
tick: &str,
message: &str,
elapsed: Duration,
terminal_width: usize,
) -> String {
let elapsed = format_elapsed_time(elapsed);
let suffix = "· Ctrl+C to interrupt";
let max_width = terminal_width
.saturating_sub(WRAP_GUARD_COLUMNS)
.max(MIN_TERMINAL_WIDTH);
let tick = tick.green().to_string();
let elapsed = elapsed.white().to_string();
let suffix = suffix.white().dimmed().to_string();
let fixed = format!("{tick} {elapsed} {suffix}");
let message_width = max_width.saturating_sub(visible_width(&fixed)).max(1);
let message = truncate_to_visible_width(message, message_width)
.green()
.bold()
.to_string();
let styled = format!("{tick} {message} {elapsed} {suffix}");
truncate_to_visible_width(&styled, max_width)
}
struct ActiveSpinner<P: ConsoleWriter> {
stop: Arc<AtomicBool>,
paused: Arc<AtomicBool>,
handle: Option<JoinHandle<()>>,
started_at: Instant,
accumulated_elapsed: Duration,
printer: Arc<P>,
}
impl<P: ConsoleWriter + 'static> ActiveSpinner<P> {
fn start(printer: Arc<P>, accumulated_elapsed: Duration, message: String) -> Self {
let stop = Arc::new(AtomicBool::new(false));
let paused = Arc::new(AtomicBool::new(false));
let stop_signal = Arc::clone(&stop);
let paused_signal = Arc::clone(&paused);
let thread_printer = Arc::clone(&printer);
let started_at = Instant::now();
let handle = thread::spawn(move || {
loop {
if stop_signal.load(Ordering::Acquire) {
break;
}
if paused_signal.load(Ordering::Acquire) {
thread::park_timeout(Duration::from_millis(TICK_DURATION_MS));
continue;
}
let elapsed = accumulated_elapsed + started_at.elapsed();
let tick_index = ((elapsed.as_millis() / TICK_DURATION_MS as u128)
% TICKS.len() as u128) as usize;
let tick = TICKS.get(tick_index).unwrap_or(&"⠋");
let line = styled_loader_line(tick, &message, elapsed, terminal_width());
if !stop_signal.load(Ordering::Acquire) && !paused_signal.load(Ordering::Acquire) {
let _ = thread_printer.write_err(format!("\r\x1b[2K{line}").as_bytes());
let _ = thread_printer.flush_err();
}
thread::park_timeout(Duration::from_millis(TICK_DURATION_MS));
}
});
Self {
stop,
paused,
handle: Some(handle),
started_at,
accumulated_elapsed,
printer,
}
}
}
impl<P: ConsoleWriter> ActiveSpinner<P> {
fn elapsed(&self) -> Duration {
self.accumulated_elapsed + self.started_at.elapsed()
}
fn pause(&self) {
let was_paused = self.paused.swap(true, Ordering::AcqRel);
if !was_paused {
self.clear_line();
}
if let Some(handle) = &self.handle {
handle.thread().unpark();
}
}
fn resume(&self) {
self.paused.store(false, Ordering::Release);
if let Some(handle) = &self.handle {
handle.thread().unpark();
}
}
fn clear_line(&self) {
let _ = self.printer.write_err(b"\r\x1b[2K");
let _ = self.printer.flush_err();
}
fn finish(&mut self) -> Duration {
self.stop.store(true, Ordering::Release);
if let Some(handle) = &self.handle {
handle.thread().unpark();
}
if let Some(handle) = self.handle.take() {
let _ = handle.join();
}
let elapsed = self.elapsed();
self.clear_line();
elapsed
}
}
impl<P: ConsoleWriter> Drop for ActiveSpinner<P> {
fn drop(&mut self) {
self.stop.store(true, Ordering::Release);
if let Some(handle) = &self.handle {
handle.thread().unpark();
}
if let Some(handle) = self.handle.take() {
let _ = handle.join();
}
self.clear_line();
}
}
/// Formats elapsed time into a compact string representation.
///
/// # Arguments
///
/// * `duration` - The elapsed time duration
///
/// # Returns
///
/// A formatted string:
/// - Less than 1 minute: "01s", "02s", etc.
/// - Less than 1 hour: "1:01m", "1:59m", etc.
/// - 1 hour or more: "1:01h", "2:30h", etc.
fn format_elapsed_time(duration: Duration) -> String {
let total_seconds = duration.as_secs();
if total_seconds < 60 {
format!("{:02}s", total_seconds)
} else if total_seconds < 3600 {
let minutes = total_seconds / 60;
let seconds = total_seconds % 60;
format!("{}:{:02}m", minutes, seconds)
} else {
let hours = total_seconds / 3600;
let minutes = (total_seconds % 3600) / 60;
format!("{}:{:02}h", hours, minutes)
}
}
/// Manages spinner functionality for the UI.
///
/// Renders the loader through a resize-safe manual terminal writer that clears
/// and redraws a single truncated line on each tick. Accumulated time is
/// preserved across start/stop cycles so paused output can resume without
/// resetting the elapsed timer.
pub struct SpinnerManager<P: ConsoleWriter> {
spinner: Option<ActiveSpinner<P>>,
accumulated_elapsed: Duration,
word_index: Option<usize>,
message: Option<String>,
printer: Arc<P>,
}
impl<P: ConsoleWriter + 'static> SpinnerManager<P> {
/// Creates a new SpinnerManager with the given output printer.
pub fn new(printer: Arc<P>) -> Self {
Self {
spinner: None,
accumulated_elapsed: Duration::ZERO,
word_index: None,
message: None,
printer,
}
}
/// Start the spinner with a message
pub fn start(&mut self, message: Option<&str>) -> Result<()> {
self.stop(None)?;
let words = [
"Thinking",
"Processing",
"Analyzing",
"Forging",
"Researching",
"Synthesizing",
"Reasoning",
"Contemplating",
];
// Use a random word from the list, caching the index for consistency
let word = match message {
Some(msg) => msg.to_string(),
None => {
let idx = *self
.word_index
.get_or_insert_with(|| rand::rng().random_range(0..words.len()));
words.get(idx).unwrap_or(&"Loading").to_string()
}
};
self.message = Some(word.clone());
let spinner = ActiveSpinner::start(self.printer.clone(), self.accumulated_elapsed, word);
self.spinner = Some(spinner);
Ok(())
}
/// Pauses the active spinner without stopping its render thread.
pub fn pause(&mut self) {
if let Some(spinner) = &self.spinner {
spinner.pause();
}
}
/// Resumes a previously paused spinner.
pub fn resume(&mut self) {
if let Some(spinner) = &self.spinner {
spinner.resume();
}
}
/// Stop the active spinner if any
pub fn stop(&mut self, message: Option<String>) -> Result<()> {
if let Some(mut spinner) = self.spinner.take() {
// Capture elapsed time before finishing
self.accumulated_elapsed = spinner.finish();
if let Some(msg) = message {
self.println(&msg);
}
} else if let Some(message) = message {
self.println(&message);
}
self.message = None;
Ok(())
}
/// Updates the spinner's displayed message.
pub fn set_message(&mut self, message: &str) -> Result<()> {
self.message = Some(message.to_owned());
if self.spinner.is_some() {
self.stop(None)?;
self.start(Some(message))?;
}
Ok(())
}
/// Resets the elapsed time to zero.
/// Call this when starting a completely new task/conversation.
pub fn reset(&mut self) {
self.accumulated_elapsed = Duration::ZERO;
self.word_index = None;
self.message = None;
}
/// Writes a line to stdout, suspending the spinner if active.
pub fn write_ln(&mut self, message: impl ToString) -> Result<()> {
let msg = message.to_string();
let was_active = self.spinner.is_some();
if was_active {
self.pause();
}
self.println(&msg);
if was_active {
self.resume();
}
Ok(())
}
/// Writes a line to stderr, suspending the spinner if active.
pub fn ewrite_ln(&mut self, message: impl ToString) -> Result<()> {
let msg = message.to_string();
let was_active = self.spinner.is_some();
if was_active {
self.pause();
}
self.eprintln(&msg);
if was_active {
self.resume();
}
Ok(())
}
/// Prints a line to stdout through the printer.
fn println(&self, msg: &str) {
let line = format!("{msg}\n");
let _ = self.printer.write(line.as_bytes());
let _ = self.printer.flush();
}
/// Prints a line to stderr through the printer.
fn eprintln(&self, msg: &str) {
let line = format!("{msg}\n");
let _ = self.printer.write_err(line.as_bytes());
let _ = self.printer.flush_err();
}
}
impl<P: ConsoleWriter> Drop for SpinnerManager<P> {
fn drop(&mut self) {
// Stop spinner before flushing to ensure finish_and_clear() is called.
if let Some(mut spinner) = self.spinner.take() {
self.accumulated_elapsed = spinner.finish();
}
// Flush both stdout and stderr to ensure all output is visible
// This prevents race conditions with shell prompt resets
let _ = self.printer.flush();
let _ = self.printer.flush_err();
}
}
#[cfg(test)]
mod tests {
use std::io::Write;
use std::sync::Arc;
use std::sync::atomic::Ordering;
use std::time::Duration;
use forge_domain::ConsoleWriter;
use pretty_assertions::assert_eq;
use super::{SpinnerManager, format_elapsed_time};
/// A simple printer that writes directly to stdout/stderr.
/// Used for testing when synchronized output is not needed.
#[derive(Clone, Copy)]
struct DirectPrinter;
impl ConsoleWriter for DirectPrinter {
fn write(&self, buf: &[u8]) -> std::io::Result<usize> {
std::io::stdout().write(buf)
}
fn write_err(&self, buf: &[u8]) -> std::io::Result<usize> {
std::io::stderr().write(buf)
}
fn flush(&self) -> std::io::Result<()> {
std::io::stdout().flush()
}
fn flush_err(&self) -> std::io::Result<()> {
std::io::stderr().flush()
}
}
fn fixture_spinner() -> SpinnerManager<DirectPrinter> {
SpinnerManager::new(Arc::new(DirectPrinter))
}
#[test]
fn test_spinner_reset_clears_accumulated_time() {
let mut fixture_spinner = fixture_spinner();
// Simulate some accumulated time
fixture_spinner.accumulated_elapsed = std::time::Duration::from_secs(100);
// Reset should clear accumulated time
fixture_spinner.reset();
let actual = fixture_spinner.accumulated_elapsed;
let expected = std::time::Duration::ZERO;
assert_eq!(actual, expected);
}
#[test]
fn test_spinner_reset_clears_word_index() {
let mut fixture_spinner = fixture_spinner();
// Set a word index
fixture_spinner.word_index = Some(3);
// Reset should clear it
fixture_spinner.reset();
let actual = fixture_spinner.word_index;
let expected = None;
assert_eq!(actual, expected);
}
#[test]
fn test_spinner_reset_clears_message() {
let mut fixture_spinner = fixture_spinner();
// Set a message
fixture_spinner.message = Some("Test".to_string());
// Reset should clear it
fixture_spinner.reset();
let actual = fixture_spinner.message.clone();
let expected = None;
assert_eq!(actual, expected);
}
#[tokio::test]
async fn test_word_index_caching_behavior() {
let mut fixture_spinner = fixture_spinner();
// Start spinner without message multiple times
fixture_spinner.start(None).unwrap();
let first_index = fixture_spinner.word_index;
fixture_spinner.stop(None).unwrap();
fixture_spinner.start(None).unwrap();
let second_index = fixture_spinner.word_index;
fixture_spinner.stop(None).unwrap();
// Word index should be identical because it's cached
assert_eq!(first_index, second_index);
}
#[test]
fn test_spinner_pause_resume_keeps_same_active_spinner() {
let mut fixture_spinner = fixture_spinner();
fixture_spinner.start(Some("Thinking")).unwrap();
fixture_spinner.pause();
let was_paused = fixture_spinner
.spinner
.as_ref()
.map(|spinner| spinner.paused.load(Ordering::Acquire));
fixture_spinner.resume();
let was_resumed = fixture_spinner
.spinner
.as_ref()
.map(|spinner| !spinner.paused.load(Ordering::Acquire));
let actual = (was_paused, was_resumed);
fixture_spinner.stop(None).unwrap();
let expected = (Some(true), Some(true));
assert_eq!(actual, expected);
}
#[test]
fn test_format_elapsed_time_seconds_only() {
let actual = format_elapsed_time(Duration::from_secs(5));
let expected = "05s";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(59));
let expected = "59s";
assert_eq!(actual, expected);
}
#[test]
fn test_format_elapsed_time_minutes_and_seconds() {
let actual = format_elapsed_time(Duration::from_secs(60));
let expected = "1:00m";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(125));
let expected = "2:05m";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(3599));
let expected = "59:59m";
assert_eq!(actual, expected);
}
#[test]
fn test_format_elapsed_time_hours_and_minutes() {
let actual = format_elapsed_time(Duration::from_secs(3600));
let expected = "1:00h";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(3661));
let expected = "1:01h";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(7200));
let expected = "2:00h";
assert_eq!(actual, expected);
let actual = format_elapsed_time(Duration::from_secs(9000));
let expected = "2:30h";
assert_eq!(actual, expected);
}
#[test]
fn test_format_elapsed_time_zero() {
let actual = format_elapsed_time(Duration::ZERO);
let expected = "00s";
assert_eq!(actual, expected);
}
}
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