use std::collections::{HashMap, HashSet};
use std::io::{self, Write};
use std::sync::mpsc::{self, Receiver, Sender, TryRecvError};
use std::thread::{self, JoinHandle};
use std::time::{Duration, Instant};
use crossterm::cursor::{Hide, Show};
use crossterm::event::{
self, DisableMouseCapture, EnableMouseCapture, Event, KeyCode, KeyEvent, KeyEventKind,
KeyModifiers, KeyboardEnhancementFlags, MouseEventKind, PopKeyboardEnhancementFlags,
PushKeyboardEnhancementFlags,
};
use crossterm::execute;
use crossterm::terminal::{
disable_raw_mode, enable_raw_mode, EnterAlternateScreen, LeaveAlternateScreen,
};
use ratatui::backend::CrosstermBackend;
use ratatui::layout::{Alignment, Constraint, Direction, Layout, Rect, Size};
use ratatui::prelude::Frame;
use ratatui::style::{Color, Style};
use ratatui::text::{Line, Span};
use ratatui::widgets::{Block, BorderType, Borders, Clear, Paragraph};
use ratatui::Terminal;
use serde_json::Value;
use unicode_width::UnicodeWidthStr;
use crate::app::Harness;
use crate::cancellation::CancellationToken;
use crate::model::{estimate_context_tokens, ChatMessage};
use crate::protocol::{EventSink, ProtocolEvent};
use crate::provider::ProviderModel;
use crate::redaction::redact_secret;
use crate::session::SessionHistoryRecord;
const EVENT_POLL: Duration = Duration::from_millis(50);
const MAX_DISPLAY_INPUT_CHARS: usize = 16 * 1024;
const WORKER_SHUTDOWN_GRACE: Duration = Duration::from_secs(2);
const MAX_INPUT_ROWS: u16 = 12;
const WELCOME_MESSAGE: &str = concat!("Coding Agent Harness LUCY - v", env!("CARGO_PKG_VERSION"),);
const WELCOME_TAGLINE: &str = "An ultra-thin harness for tomorrow's most powerful models";
const WELCOME_START_COLOR: (u8, u8, u8) = (0, 180, 180);
const WELCOME_END_COLOR: (u8, u8, u8) = (255, 215, 0);
const USER_BORDER_COLOR: Color = Color::Rgb(192, 154, 0);
const USER_BORDER_GLYPH: &str = "▌";
const PROMPT_BORDER_START_COLOR: (u8, u8, u8) = (0, 190, 185);
const PROMPT_BORDER_END_COLOR: (u8, u8, u8) = (0, 205, 85);
const PENDING_TOOL_COLOR_RGB: (u8, u8, u8) = (255, 165, 0);
const PENDING_TOOL_COLOR: Color = Color::Rgb(
PENDING_TOOL_COLOR_RGB.0,
PENDING_TOOL_COLOR_RGB.1,
PENDING_TOOL_COLOR_RGB.2,
);
const TOOL_SUCCESS_SWEEP_DURATION: Duration = Duration::from_millis(350);
const TOOL_SUCCESS_SWEEP_WIDTH: f32 = 3.0;
const TOOL_SUCCESS_GREEN_RGB: (u8, u8, u8) = (0, 128, 0);
const QUEUED_MESSAGE_BACKGROUND: Color = Color::Rgb(0, 38, 38);
const QUEUED_MESSAGE_COLOR: Color = Color::Rgb(150, 255, 245);
const WORKING_GRADIENT_COLORS: [(u8, u8, u8); 4] = [
(220, 35, 175), (235, 45, 65), (255, 130, 25), (235, 45, 65), ];
const WORKING_GRADIENT_CYCLE: Duration = Duration::from_millis(5000);
const SKILL_PICKER_MAX_ROWS: usize = 5;
const BUILTIN_COMMANDS: [&str; 2] = ["settings", "exit"];
const SUBAGENT_OVERLAY_BACKGROUND: Color = Color::Rgb(55, 0, 55);
const SUBAGENT_OVERLAY_COLOR: Color = Color::Rgb(255, 0, 255);
const SETTINGS_MIN_WIDTH: u16 = 36;
const SETTINGS_MAX_WIDTH: u16 = 88;
const SETTINGS_MIN_HEIGHT: u16 = 8;
const SETTINGS_MAX_HEIGHT: u16 = 22;
pub(crate) fn run<W: Write>(mut harness: Harness, resumed: bool, stdout: W) -> Result<(), String> {
let secret = harness.provider.api_key().to_owned();
let context_window = harness
.context_window
.or_else(|| harness.provider.context_window());
harness.context_window = context_window;
let context_tokens = estimate_context_tokens(&harness.session.provider_messages());
let skill_names = command_names(
harness
.session
.skills
.iter()
.map(|skill| skill.name.clone())
.collect(),
);
let mut state = UiState::from_history(
&harness.session.history,
&secret,
&harness.session.llm.model,
harness.session.llm.effort.as_deref(),
resumed,
)
.with_attached_agents(harness.attached_agents.clone())
.with_skill_names(skill_names)
.with_context(context_window, context_tokens);
let (request_tx, request_rx) = mpsc::channel::<WorkerRequest>();
let (message_tx, message_rx) = mpsc::channel::<WorkerMessage>();
let stdout = stdout;
enable_raw_mode().map_err(|error| format!("unable to enable terminal input: {error}"))?;
let backend = CrosstermBackend::new(stdout);
let terminal = match Terminal::new(backend) {
Ok(terminal) => terminal,
Err(error) => {
let _ = disable_raw_mode();
return Err(format!("unable to initialize terminal UI: {error}"));
}
};
let mut terminal_guard = TerminalGuard::new(terminal);
let backend = terminal_guard.terminal_mut().backend_mut();
if let Err(error) = execute!(backend, EnterAlternateScreen, EnableMouseCapture, Hide) {
return Err(format!("unable to enter terminal UI: {error}"));
}
if supports_keyboard_enhancement() {
let _ = execute!(
backend,
PushKeyboardEnhancementFlags(
KeyboardEnhancementFlags::DISAMBIGUATE_ESCAPE_CODES
| KeyboardEnhancementFlags::REPORT_EVENT_TYPES,
)
);
terminal_guard.keyboard_enhancement = true;
}
let worker = thread::spawn(move || worker_loop(&mut harness, request_rx, message_tx, resumed));
let result = event_loop(
terminal_guard.terminal_mut(),
&mut state,
&request_tx,
&message_rx,
);
if let Some(token) = state.active_cancel.take() {
let _ = token.cancel();
}
let _ = request_tx.send(WorkerRequest::Shutdown);
wait_for_worker(worker, WORKER_SHUTDOWN_GRACE);
drop(terminal_guard);
result
}
fn worker_loop(
harness: &mut Harness,
requests: Receiver<WorkerRequest>,
messages: Sender<WorkerMessage>,
resumed: bool,
) {
let mut sink = ChannelSink {
sender: messages.clone(),
};
if sink
.emit_event(&ProtocolEvent::Session {
session_id: harness.session.id.clone(),
resumed,
})
.is_err()
{
return;
}
loop {
if let Some(completion) = harness.next_subagent_completion() {
let task_id = completion.task_id.clone();
let result = completion.result.clone();
let notification = Harness::subagent_notification(&completion);
let _ = messages.send(WorkerMessage::SubagentCompleted { task_id, result });
let cancel = CancellationToken::new();
let _ = messages.send(WorkerMessage::Started {
cancel: cancel.clone(),
user_text: None,
});
if let Err(error) = harness.handle_message(¬ification, &mut sink, Some(&cancel)) {
let message = redact_secret(&error, Some(harness.provider.api_key()));
let _ = sink.emit_event(&ProtocolEvent::Error { message });
}
let _ = messages.send(WorkerMessage::Finished);
continue;
}
let request = match requests.recv_timeout(EVENT_POLL) {
Ok(request) => request,
Err(mpsc::RecvTimeoutError::Timeout) => {
if let Some(completion) = harness.next_subagent_completion() {
let task_id = completion.task_id.clone();
let result = completion.result.clone();
let notification = Harness::subagent_notification(&completion);
let _ = messages.send(WorkerMessage::SubagentCompleted { task_id, result });
let cancel = CancellationToken::new();
let _ = messages.send(WorkerMessage::Started {
cancel: cancel.clone(),
user_text: None,
});
if let Err(error) =
harness.handle_message(¬ification, &mut sink, Some(&cancel))
{
let message = redact_secret(&error, Some(harness.provider.api_key()));
let _ = sink.emit_event(&ProtocolEvent::Error { message });
}
let _ = messages.send(WorkerMessage::Finished);
}
continue;
}
Err(mpsc::RecvTimeoutError::Disconnected) => break,
};
match request {
WorkerRequest::Turn { text } => {
let cancel = CancellationToken::new();
let _ = messages.send(WorkerMessage::Started {
cancel: cancel.clone(),
user_text: Some(text.clone()),
});
if let Err(error) = harness.handle_message(&text, &mut sink, Some(&cancel)) {
let message = redact_secret(&error, Some(harness.provider.api_key()));
let _ = sink.emit_event(&ProtocolEvent::Error { message });
}
let _ = messages.send(WorkerMessage::Finished);
}
WorkerRequest::Catalog => {
let _ = messages.send(WorkerMessage::Catalog(
harness.provider.models().map_err(|error| error.to_string()),
));
}
WorkerRequest::ApplySettings { model, effort } => {
let result = harness.apply_settings(&harness.home.clone(), model, effort);
let _ = messages.send(WorkerMessage::SettingsApplied(
result,
harness.session.llm.model.clone(),
harness.session.llm.effort.clone(),
harness.context_window,
));
}
WorkerRequest::Shutdown => break,
}
}
}
fn event_loop<W: Write>(
terminal: &mut Terminal<CrosstermBackend<W>>,
state: &mut UiState,
requests: &Sender<WorkerRequest>,
messages: &Receiver<WorkerMessage>,
) -> Result<(), String> {
let mut quitting = false;
loop {
loop {
match messages.try_recv() {
Ok(WorkerMessage::Event(event)) => state.apply_event(event),
Ok(WorkerMessage::SubagentCompleted { task_id, result }) => {
state.complete_subagent(&task_id, result);
}
Ok(WorkerMessage::Started { cancel, user_text }) => {
if let Some(text) = user_text {
state.start_queued_user(&text);
}
state.active_cancel = Some(cancel);
state.busy = true;
state.set_status("working");
}
Ok(WorkerMessage::Thinking) => state.show_thinking(),
Ok(WorkerMessage::ReasoningCompleted) => state.complete_reasoning(),
Ok(WorkerMessage::SkillInstructionAttached) => {
state.mark_latest_user_skill_attached()
}
Ok(WorkerMessage::ContextUsage(tokens)) => state.context_tokens = tokens,
Ok(WorkerMessage::CompactionStarted) => state.set_status("compacting"),
Ok(WorkerMessage::CompactionFinished {
tokens_before,
tokens_after,
}) => {
state.context_tokens = tokens_after;
state.set_status("working");
state.transcript.push(TranscriptItem::Info(format!(
"↻ context compacted ({} → {})",
format_context_tokens(tokens_before),
format_context_tokens(tokens_after)
)));
}
Ok(WorkerMessage::Catalog(result)) => state.open_catalog(result),
Ok(WorkerMessage::SettingsApplied(result, model, effort, context_window)) => {
state.settings_applied(result, model, effort, context_window)
}
Ok(WorkerMessage::Finished) => {
release_finished_turn(terminal.backend_mut(), state);
match state.status.as_str() {
"cancelling" => state.set_status("사용자 중단"),
"finalizing" => state.set_status("ready"),
_ => {}
}
if quitting {
return Ok(());
}
}
Err(TryRecvError::Empty) => break,
Err(TryRecvError::Disconnected) => {
if state.busy {
return Err("TUI worker stopped unexpectedly".to_owned());
}
return Ok(());
}
}
}
terminal
.draw(|frame| draw(frame, state))
.map_err(|error| format!("unable to render TUI: {error}"))?;
if quitting {
thread::sleep(EVENT_POLL);
continue;
}
if event::poll(EVENT_POLL)
.map_err(|error| format!("unable to read terminal input: {error}"))?
{
let event =
event::read().map_err(|error| format!("unable to read terminal input: {error}"))?;
if let Event::Mouse(mouse) = event {
let size = terminal
.size()
.map_err(|error| format!("unable to read terminal size: {error}"))?;
let max_scroll = max_scroll_for_area(state, size);
handle_mouse_event(state, mouse.kind, max_scroll);
continue;
}
let Event::Key(key) = event else {
continue;
};
if key.kind != KeyEventKind::Press && key.kind != KeyEventKind::Repeat {
continue;
}
if is_ctrl_c(&key) {
if let Some(token) = state.active_cancel.as_ref() {
let _ = token.cancel();
quitting = true;
} else {
return Ok(());
}
continue;
}
if !state.busy && state.settings.is_some() {
if let Some((model, effort)) = state.handle_settings_key(&key) {
state.settings = Some(SettingsState::Applying {
model: model.clone(),
effort: effort.clone(),
});
requests
.send(WorkerRequest::ApplySettings { model, effort })
.map_err(|_| "TUI worker is unavailable".to_owned())?;
}
continue;
}
if key.code == KeyCode::Esc {
if let Some(token) = state.active_cancel.as_ref() {
if token.cancel() {
state.set_status("cancelling");
}
}
continue;
}
match key.code {
KeyCode::Enter => {
if key.modifiers.contains(KeyModifiers::SHIFT)
|| key.modifiers.contains(KeyModifiers::ALT)
{
if state.input.chars().count() < MAX_DISPLAY_INPUT_CHARS {
insert_at_cursor(&mut state.input, &mut state.cursor, '\n');
state.input_changed();
}
continue;
}
let text = if let Some(command) = state.focused_builtin_command() {
state.input.clear();
format!("/{}", command.name())
} else {
if state.select_focused_skill() {
continue;
}
std::mem::take(&mut state.input)
};
state.cursor = 0;
if let Some(command) = builtin_command(&text) {
state.reset_skill_picker();
if state.busy {
state.transcript.push(TranscriptItem::Info(format!(
"/{} is available when the current turn finishes",
command.name()
)));
continue;
}
match command {
BuiltinCommand::Settings => {
state.settings = Some(SettingsState::Loading);
requests
.send(WorkerRequest::Catalog)
.map_err(|_| "TUI worker is unavailable".to_owned())?;
continue;
}
BuiltinCommand::Exit => return Ok(()),
}
}
state.reset_skill_picker();
if text.trim().is_empty() {
continue;
}
state.auto_scroll = true;
state.scroll = 0;
state.submit_user(&text);
state.busy = true;
state.set_status("working");
requests
.send(WorkerRequest::Turn { text })
.map_err(|_| "TUI worker is unavailable".to_owned())?;
}
KeyCode::Tab => {
state.select_focused_skill();
}
KeyCode::Char(character) => {
if state.input.chars().count() < MAX_DISPLAY_INPUT_CHARS {
insert_at_cursor(&mut state.input, &mut state.cursor, character);
state.input_changed();
}
}
KeyCode::Backspace => {
if remove_before_cursor(&mut state.input, &mut state.cursor) {
state.input_changed();
}
}
KeyCode::Left => {
state.cursor = state.cursor.saturating_sub(1);
}
KeyCode::Right => {
state.cursor = (state.cursor + 1).min(state.input.chars().count());
}
KeyCode::Home => {
state.cursor = 0;
}
KeyCode::End => {
state.cursor = state.input.chars().count();
}
KeyCode::Up => {
if !state.move_skill_picker(false) {
let size = terminal
.size()
.map_err(|error| format!("unable to read terminal size: {error}"))?;
let max_scroll = max_scroll_for_area(state, size);
scroll_up(state, max_scroll);
}
}
KeyCode::Down => {
if !state.move_skill_picker(true) {
let size = terminal
.size()
.map_err(|error| format!("unable to read terminal size: {error}"))?;
let max_scroll = max_scroll_for_area(state, size);
scroll_down(state, max_scroll);
}
}
KeyCode::PageUp => {
let size = terminal
.size()
.map_err(|error| format!("unable to read terminal size: {error}"))?;
let max_scroll = max_scroll_for_area(state, size);
scroll_up(state, max_scroll);
}
KeyCode::PageDown => {
let size = terminal
.size()
.map_err(|error| format!("unable to read terminal size: {error}"))?;
let max_scroll = max_scroll_for_area(state, size);
scroll_down(state, max_scroll);
}
_ => {}
}
}
}
}
fn is_ctrl_c(key: &KeyEvent) -> bool {
key.code == KeyCode::Char('c') && key.modifiers.contains(KeyModifiers::CONTROL)
}
fn handle_mouse_event(state: &mut UiState, kind: MouseEventKind, max_scroll: u16) {
match kind {
MouseEventKind::ScrollUp => scroll_up(state, max_scroll),
MouseEventKind::ScrollDown => scroll_down(state, max_scroll),
_ => {}
}
}
fn scroll_up(state: &mut UiState, max_scroll: u16) {
if state.auto_scroll {
state.scroll = max_scroll;
state.auto_scroll = false;
} else {
state.scroll = state.scroll.min(max_scroll);
}
state.scroll = state.scroll.saturating_sub(3);
}
fn scroll_down(state: &mut UiState, max_scroll: u16) {
if state.auto_scroll {
return;
}
state.scroll = state.scroll.saturating_add(3).min(max_scroll);
if state.scroll == max_scroll {
state.auto_scroll = true;
state.scroll = 0;
}
}
fn wait_for_worker(worker: JoinHandle<()>, grace: Duration) {
let deadline = std::time::Instant::now() + grace;
while !worker.is_finished() && std::time::Instant::now() < deadline {
thread::sleep(Duration::from_millis(5));
}
if worker.is_finished() {
let _ = worker.join();
}
}
struct TerminalGuard<W: Write> {
terminal: Option<Terminal<CrosstermBackend<W>>>,
keyboard_enhancement: bool,
}
impl<W: Write> TerminalGuard<W> {
fn new(terminal: Terminal<CrosstermBackend<W>>) -> Self {
Self {
terminal: Some(terminal),
keyboard_enhancement: false,
}
}
fn terminal_mut(&mut self) -> &mut Terminal<CrosstermBackend<W>> {
self.terminal
.as_mut()
.expect("terminal guard is initialized")
}
}
impl<W: Write> Drop for TerminalGuard<W> {
fn drop(&mut self) {
let Some(mut terminal) = self.terminal.take() else {
return;
};
if self.keyboard_enhancement {
let _ = execute!(terminal.backend_mut(), PopKeyboardEnhancementFlags);
}
let _ = terminal.show_cursor();
let _ = disable_raw_mode();
let _ = execute!(
terminal.backend_mut(),
DisableMouseCapture,
LeaveAlternateScreen,
Show
);
let _ = terminal.backend_mut().flush();
}
}
fn supports_keyboard_enhancement() -> bool {
fn env(name: &str) -> Option<String> {
std::env::var(name).ok().map(|value| value.to_lowercase())
}
let term = env("TERM").unwrap_or_default();
let program = env("TERM_PROGRAM").unwrap_or_default();
if term.starts_with("xterm-kitty")
|| term.starts_with("ghostty")
|| term.starts_with("xterm-ghostty")
{
return true;
}
matches!(
program.as_str(),
"ghostty" | "kitty" | "wezterm" | "alacritty" | "foot" | "footclient" | "iterm.app"
)
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
enum TurnNotification {
Completed,
Interrupted,
Failed,
}
impl TurnNotification {
fn body(self) -> &'static str {
match self {
Self::Completed => "Turn complete",
Self::Interrupted => "Turn interrupted",
Self::Failed => "Turn failed",
}
}
}
fn turn_notification_for_status(status: &str) -> TurnNotification {
match status {
"cancelling" | "사용자 중단" => TurnNotification::Interrupted,
"error" => TurnNotification::Failed,
_ => TurnNotification::Completed,
}
}
fn send_turn_notification<W: Write>(
writer: &mut W,
notification: TurnNotification,
) -> io::Result<()> {
writer.write_all(b"\x1b]777;notify;Lucy;")?;
writer.write_all(notification.body().as_bytes())?;
writer.write_all(b"\x07")?;
writer.flush()
}
fn release_finished_turn<W: Write>(writer: &mut W, state: &mut UiState) {
let was_busy = state.busy;
let notification = turn_notification_for_status(&state.status);
state.busy = false;
state.active_cancel = None;
if was_busy {
let _ = send_turn_notification(writer, notification);
}
}
enum WorkerRequest {
Turn {
text: String,
},
Catalog,
ApplySettings {
model: String,
effort: Option<String>,
},
Shutdown,
}
enum WorkerMessage {
Event(ProtocolEvent),
Started {
cancel: CancellationToken,
user_text: Option<String>,
},
Thinking,
ReasoningCompleted,
SkillInstructionAttached,
ContextUsage(usize),
CompactionStarted,
CompactionFinished {
tokens_before: usize,
tokens_after: usize,
},
Catalog(Result<Vec<ProviderModel>, String>),
SettingsApplied(Result<(), String>, String, Option<String>, Option<usize>),
SubagentCompleted {
task_id: String,
result: Value,
},
Finished,
}
struct ChannelSink {
sender: Sender<WorkerMessage>,
}
impl EventSink for ChannelSink {
fn emit_event(&mut self, event: &ProtocolEvent) -> io::Result<()> {
self.sender
.send(WorkerMessage::Event(event.clone()))
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn reasoning_started(&mut self) -> io::Result<()> {
self.sender
.send(WorkerMessage::Thinking)
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn reasoning_completed(&mut self) -> io::Result<()> {
self.sender
.send(WorkerMessage::ReasoningCompleted)
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn skill_instruction_attached(&mut self, _name: &str) -> io::Result<()> {
self.sender
.send(WorkerMessage::SkillInstructionAttached)
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn context_usage(&mut self, tokens: usize) -> io::Result<()> {
self.sender
.send(WorkerMessage::ContextUsage(tokens))
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn compaction_started(&mut self) -> io::Result<()> {
self.sender
.send(WorkerMessage::CompactionStarted)
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
fn compaction_finished(&mut self, tokens_before: usize, tokens_after: usize) -> io::Result<()> {
self.sender
.send(WorkerMessage::CompactionFinished {
tokens_before,
tokens_after,
})
.map_err(|_| io::Error::new(io::ErrorKind::BrokenPipe, "TUI closed"))
}
}
#[derive(Debug, Clone, Copy, PartialEq, Eq)]
enum SubagentStatus {
Queued,
Running,
Failed,
}
#[derive(Debug, Clone, PartialEq)]
struct SubagentTask {
call_id: String,
task_id: Option<String>,
task: String,
model: Option<String>,
effort: Option<String>,
status: SubagentStatus,
result: Option<Value>,
}
#[derive(Debug, Clone)]
struct ActivityTransition {
started_at: Instant,
from_levels: [usize; PULSE_BAR_PERIODS.len()],
to_levels: [usize; PULSE_BAR_PERIODS.len()],
}
struct UiState {
model: String,
effort: Option<String>,
context_window: Option<usize>,
context_tokens: usize,
secret: String,
transcript: Vec<TranscriptItem>,
queued_messages: Vec<String>,
input: String,
cursor: usize,
status: String,
busy: bool,
active_cancel: Option<CancellationToken>,
scroll: u16,
auto_scroll: bool,
tool_animation_epoch: Instant,
activity_started_at: Instant,
activity_transition: Option<ActivityTransition>,
last_active_levels: [usize; PULSE_BAR_PERIODS.len()],
last_active_elapsed: Duration,
welcome_visible: bool,
attached_agents: Vec<String>,
subagents: Vec<SubagentTask>,
completed_subagent_calls: HashSet<String>,
cmd_success_started_at: HashMap<String, Instant>,
skill_names: Vec<String>,
skill_picker_focus: usize,
skill_picker_suppressed: bool,
settings: Option<SettingsState>,
}
impl UiState {
fn from_history(
history: &[SessionHistoryRecord],
secret: &str,
model: &str,
effort: Option<&str>,
resumed: bool,
) -> Self {
let mut state = Self {
model: model.to_owned(),
effort: effort.map(str::to_owned),
context_window: None,
context_tokens: 1,
secret: secret.to_owned(),
transcript: Vec::new(),
queued_messages: Vec::new(),
input: String::new(),
cursor: 0,
status: "ready".to_owned(),
busy: false,
active_cancel: None,
scroll: 0,
auto_scroll: true,
tool_animation_epoch: Instant::now(),
activity_started_at: Instant::now(),
activity_transition: None,
last_active_levels: [0; PULSE_BAR_PERIODS.len()],
last_active_elapsed: Duration::ZERO,
welcome_visible: !resumed && history.is_empty(),
attached_agents: Vec::new(),
subagents: Vec::new(),
completed_subagent_calls: HashSet::new(),
cmd_success_started_at: HashMap::new(),
skill_names: Vec::new(),
skill_picker_focus: 0,
skill_picker_suppressed: false,
settings: None,
};
for record in history {
state.add_history_record(record);
}
state
}
fn with_attached_agents(mut self, attached_agents: Vec<String>) -> Self {
self.attached_agents = attached_agents;
self
}
fn with_skill_names(mut self, skill_names: Vec<String>) -> Self {
self.skill_names = skill_names;
self
}
fn with_context(mut self, context_window: Option<usize>, context_tokens: usize) -> Self {
self.context_window = context_window;
self.context_tokens = context_tokens.max(1);
self
}
fn matching_skill_names(&self) -> Vec<&str> {
matching_skill_names(&self.input, &self.skill_names)
}
fn reset_skill_picker(&mut self) {
self.skill_picker_focus = 0;
self.skill_picker_suppressed = false;
}
fn skill_picker_visible(&self) -> bool {
!self.skill_picker_suppressed && !self.matching_skill_names().is_empty()
}
fn set_status(&mut self, status: impl Into<String>) {
let status = status.into();
if self.status == status {
return;
}
let now = Instant::now();
let current_levels = self.activity_levels_at(now);
let current_elapsed = self.working_elapsed_at(now);
if matches!(self.status.as_str(), "working" | "compacting") {
self.last_active_levels = current_levels;
self.last_active_elapsed = current_elapsed;
}
match status.as_str() {
"working" if !matches!(self.status.as_str(), "working" | "compacting") => {
self.activity_started_at = now;
self.activity_transition = Some(ActivityTransition {
started_at: now,
from_levels: current_levels,
to_levels: pulse_levels_at(PULSE_ENTRY_FRAME),
});
}
"ready" if self.status != "ready" => {
let from_levels = if matches!(self.status.as_str(), "working" | "compacting") {
current_levels
} else {
self.last_active_levels
};
self.activity_transition = Some(ActivityTransition {
started_at: now,
from_levels,
to_levels: [0; PULSE_BAR_PERIODS.len()],
});
}
_ => {}
}
self.status = status;
}
fn activity_levels_at(&self, now: Instant) -> [usize; PULSE_BAR_PERIODS.len()] {
if let Some(transition) = &self.activity_transition {
let elapsed = now.saturating_duration_since(transition.started_at);
if elapsed < ACTIVITY_TRANSITION_DURATION {
return interpolate_pulse_levels(
transition.from_levels,
transition.to_levels,
elapsed,
);
}
}
match self.status.as_str() {
"working" | "compacting" => pulse_levels_at(self.working_elapsed_at(now)),
_ => [0; PULSE_BAR_PERIODS.len()],
}
}
fn working_elapsed_at(&self, now: Instant) -> Duration {
let elapsed = now.saturating_duration_since(self.activity_started_at);
if self.status == "working" && self.activity_transition.is_some() {
PULSE_ENTRY_FRAME
.checked_add(elapsed.saturating_sub(ACTIVITY_TRANSITION_DURATION))
.unwrap_or(PULSE_ENTRY_FRAME)
} else {
elapsed
}
}
fn input_changed(&mut self) {
self.reset_skill_picker();
}
fn move_skill_picker(&mut self, down: bool) -> bool {
let match_count = self.matching_skill_names().len();
if self.skill_picker_suppressed || match_count == 0 {
return false;
}
if down {
self.skill_picker_focus = (self.skill_picker_focus + 1).min(match_count - 1);
} else {
self.skill_picker_focus = self.skill_picker_focus.saturating_sub(1);
}
true
}
fn focused_builtin_command(&self) -> Option<BuiltinCommand> {
let name = *self.matching_skill_names().get(self.skill_picker_focus)?;
builtin_command(&format!("/{name}"))
}
fn select_focused_skill(&mut self) -> bool {
if self.skill_picker_suppressed {
return false;
}
let Some(name) = self
.matching_skill_names()
.get(self.skill_picker_focus)
.map(|name| (*name).to_owned())
else {
return false;
};
self.input = format!("/{name}");
self.cursor = self.input.chars().count();
self.skill_picker_suppressed = true;
true
}
fn open_catalog(&mut self, result: Result<Vec<ProviderModel>, String>) {
self.settings = Some(match result {
Ok(models) => {
let focus = models
.iter()
.position(|model| model.id == self.model)
.unwrap_or(0);
SettingsState::Models {
models,
query: String::new(),
focus,
}
}
Err(error) => SettingsState::Error(error),
});
}
fn settings_applied(
&mut self,
result: Result<(), String>,
model: String,
effort: Option<String>,
context_window: Option<usize>,
) {
match result {
Ok(()) => {
self.model = model;
self.effort = effort;
self.context_window = context_window;
self.settings = None;
self.transcript
.push(TranscriptItem::Info("⚙ settings applied".to_owned()));
}
Err(error) => self.settings = Some(SettingsState::Error(error)),
}
}
fn handle_settings_key(&mut self, key: &KeyEvent) -> Option<(String, Option<String>)> {
let current_effort = self.effort.clone();
match self.settings.as_mut()? {
SettingsState::Loading => {
if key.code == KeyCode::Esc {
self.settings = None;
}
}
SettingsState::Applying { .. } => {}
SettingsState::Error(_) => {
if matches!(key.code, KeyCode::Esc | KeyCode::Enter) {
self.settings = None;
}
}
SettingsState::Models {
models,
query,
focus,
} => match key.code {
KeyCode::Esc => self.settings = None,
KeyCode::Char(c) => {
query.push(c);
*focus = 0;
}
KeyCode::Backspace => {
query.pop();
*focus = 0;
}
KeyCode::Up => *focus = focus.saturating_sub(1),
KeyCode::Down => {
let n = models
.iter()
.filter(|m| m.id.to_lowercase().contains(&query.to_lowercase()))
.count();
*focus = (*focus + 1).min(n.saturating_sub(1));
}
KeyCode::Enter => {
let selected = models
.iter()
.filter(|m| m.id.to_lowercase().contains(&query.to_lowercase()))
.nth(*focus)
.cloned();
if let Some(model) = selected {
let focus = model
.efforts
.as_ref()
.and_then(|efforts| {
current_effort.as_ref().and_then(|current| {
efforts.iter().position(|effort| effort == current)
})
})
.map_or(0, |index| index + 1);
self.settings = Some(SettingsState::Effort {
model,
input: current_effort.unwrap_or_default(),
focus,
});
}
}
_ => {}
},
SettingsState::Effort {
model,
input,
focus,
} => match key.code {
KeyCode::Esc => self.settings = None,
KeyCode::Char(c) if model.efforts.is_none() => input.push(c),
KeyCode::Backspace if model.efforts.is_none() => {
input.pop();
}
KeyCode::Up => *focus = focus.saturating_sub(1),
KeyCode::Down => {
if let Some(efforts) = &model.efforts {
*focus = (*focus + 1).min(efforts.len());
}
}
KeyCode::Enter => {
let effort = match &model.efforts {
Some(efforts) => {
if *focus == 0 {
None
} else {
efforts.get(focus.saturating_sub(1)).cloned()
}
}
None => (!input.trim().is_empty()).then(|| input.trim().to_owned()),
};
return Some((model.id.clone(), effort));
}
_ => {}
},
};
None
}
fn add_history_record(&mut self, record: &SessionHistoryRecord) {
match record {
SessionHistoryRecord::ProviderSettings { model, effort, .. } => {
self.transcript.push(TranscriptItem::Info(format!(
"⚙ {model} ({})",
effort.as_deref().unwrap_or("default")
)))
}
SessionHistoryRecord::Message { message, .. } => self.add_message(message),
SessionHistoryRecord::Interruption {
assistant_text,
tool_calls,
tool_results,
reason,
phase,
..
} => {
if !assistant_text.is_empty() {
self.add_assistant_message(assistant_text);
}
for call in tool_calls {
self.add_tool_call(call);
}
for observation in tool_results {
self.add_tool_result(
&observation.id,
&observation.name,
observation.result.clone(),
);
}
self.transcript
.push(TranscriptItem::Info(format!("! {reason} ({phase})")));
}
SessionHistoryRecord::Compaction(compaction) => {
self.transcript.push(TranscriptItem::Info(format!(
"↻ context compacted ({} before)",
format_context_tokens(compaction.tokens_before)
)));
}
}
}
fn add_message(&mut self, message: &ChatMessage) {
match message.role.as_str() {
"user" => {
let text = message.content.as_deref().unwrap_or("");
if let Some((task_id, result)) = parse_subagent_notification(text) {
self.complete_subagent(&task_id, result);
} else {
let secret = self.secret.clone();
self.add_user(text, &secret);
}
}
"assistant" => {
if let Some(content) = message.content.as_deref() {
self.add_assistant_message(content);
}
for call in &message.tool_calls {
self.add_tool_call(call);
}
}
"tool" => {
let result = message
.content
.as_deref()
.and_then(|content| serde_json::from_str::<Value>(content).ok())
.unwrap_or_else(|| Value::String(message.content.clone().unwrap_or_default()));
self.add_tool_result(
message.tool_call_id.as_deref().unwrap_or(""),
message.name.as_deref().unwrap_or("cmd"),
result,
);
}
_ => {}
}
}
fn submit_user(&mut self, text: &str) {
if self.busy {
self.queue_user(text);
} else {
self.add_user(text, &self.secret.clone());
}
}
fn queue_user(&mut self, text: &str) {
self.queued_messages
.push(redact_secret(text, Some(&self.secret)));
}
fn start_queued_user(&mut self, text: &str) {
let safe = redact_secret(text, Some(&self.secret));
let queued = if self.queued_messages.first() == Some(&safe) {
self.queued_messages.remove(0);
true
} else if let Some(index) = self
.queued_messages
.iter()
.position(|queued| queued == &safe)
{
self.queued_messages.remove(index);
true
} else {
false
};
if queued {
self.add_user(text, &self.secret.clone());
}
}
fn add_user(&mut self, text: &str, secret: &str) {
self.welcome_visible = false;
self.transcript.push(TranscriptItem::User {
text: redact_secret(text, Some(secret)),
skill_instruction_attached: false,
});
}
fn mark_latest_user_skill_attached(&mut self) {
if let Some(TranscriptItem::User {
skill_instruction_attached,
..
}) = self.transcript.last_mut()
{
*skill_instruction_attached = true;
}
}
fn clear_thinking(&mut self) {
if matches!(
self.transcript.last(),
Some(TranscriptItem::Reasoning { complete: false })
) {
self.transcript.pop();
}
}
fn show_thinking(&mut self) {
self.set_status("working");
if !matches!(
self.transcript.last(),
Some(TranscriptItem::Reasoning { complete: false })
) {
self.transcript
.push(TranscriptItem::Reasoning { complete: false });
}
}
fn complete_reasoning(&mut self) {
if let Some(TranscriptItem::Reasoning { complete }) = self.transcript.last_mut() {
*complete = true;
}
}
fn add_assistant(&mut self, text: &str) {
self.clear_thinking();
if let Some(TranscriptItem::Assistant(current)) = self.transcript.last_mut() {
current.push_str(text);
} else {
self.add_assistant_message(text);
}
}
fn add_assistant_message(&mut self, text: &str) {
self.transcript
.push(TranscriptItem::Assistant(text.to_owned()));
}
fn add_tool_call(&mut self, call: &crate::model::ChatToolCall) {
self.clear_thinking();
self.transcript.push(TranscriptItem::ToolCall {
id: call.id.clone(),
name: call.name.clone(),
arguments: call.arguments.clone(),
});
if call.name == "spawn_subagent" {
self.register_subagent_call(&call.id, &call.arguments);
}
}
fn add_tool_result(&mut self, id: &str, name: &str, result: Value) {
self.record_tool_result(id, name, result, false);
}
fn add_live_tool_result(&mut self, id: &str, name: &str, result: Value) {
self.record_tool_result(id, name, result, true);
}
fn record_tool_result(&mut self, id: &str, name: &str, result: Value, animate: bool) {
if name == "spawn_subagent" {
self.update_subagent_queued(id, &result);
}
if animate && name == "cmd" && cmd_result_succeeded(&result) {
self.cmd_success_started_at
.insert(id.to_owned(), Instant::now());
}
self.transcript.push(TranscriptItem::ToolResult {
id: id.to_owned(),
name: name.to_owned(),
result,
});
}
fn register_subagent_call(&mut self, call_id: &str, arguments: &str) {
if self.subagents.iter().any(|task| task.call_id == call_id) {
return;
}
self.completed_subagent_calls.remove(call_id);
let parsed = serde_json::from_str::<Value>(arguments).ok();
let task = parsed
.as_ref()
.and_then(|value| value.get("task"))
.and_then(Value::as_str)
.map(|task| redact_secret(task.trim(), Some(&self.secret)))
.filter(|task| !task.is_empty())
.unwrap_or_else(|| "invalid task".to_owned());
let model = parsed
.as_ref()
.and_then(|value| value.get("model"))
.and_then(Value::as_str)
.map(|value| redact_secret(value, Some(&self.secret)));
let effort = parsed
.as_ref()
.and_then(|value| value.get("effort"))
.and_then(Value::as_str)
.map(|value| redact_secret(value, Some(&self.secret)));
self.subagents.push(SubagentTask {
call_id: call_id.to_owned(),
task_id: None,
task,
model,
effort,
status: SubagentStatus::Queued,
result: None,
});
}
fn update_subagent_queued(&mut self, call_id: &str, result: &Value) {
let Some(task) = self
.subagents
.iter_mut()
.find(|task| task.call_id == call_id)
else {
return;
};
task.task_id = result
.get("task_id")
.and_then(Value::as_str)
.map(str::to_owned);
task.status = if result.get("error").is_some() {
SubagentStatus::Failed
} else {
SubagentStatus::Running
};
task.result = Some(result.clone());
}
fn complete_subagent(&mut self, task_id: &str, _result: Value) {
if let Some(task) = self
.subagents
.iter()
.find(|task| task.task_id.as_deref() == Some(task_id))
{
self.completed_subagent_calls.insert(task.call_id.clone());
}
self.subagents
.retain(|task| task.task_id.as_deref() != Some(task_id));
}
fn apply_event(&mut self, event: ProtocolEvent) {
match event {
ProtocolEvent::Session { .. } => {}
ProtocolEvent::AssistantDelta { text } => self.add_assistant(&text),
ProtocolEvent::ToolCall {
id,
name,
arguments,
} => self.add_tool_call(&crate::model::ChatToolCall {
id,
name,
arguments,
}),
ProtocolEvent::ToolResult { id, name, result } => {
self.add_live_tool_result(&id, &name, result)
}
ProtocolEvent::TurnEnd => {
self.complete_reasoning();
self.set_status("finalizing");
self.transcript
.push(TranscriptItem::Info("✓ turn complete".to_owned()));
}
ProtocolEvent::TurnInterrupted { reason, phase } => {
self.complete_reasoning();
self.set_status("cancelling");
self.transcript
.push(TranscriptItem::Info(format!("! {reason} ({phase})")));
}
ProtocolEvent::Error { message } => {
self.complete_reasoning();
self.set_status("error");
self.transcript.push(TranscriptItem::Error(message));
}
}
}
}
fn parse_subagent_notification(text: &str) -> Option<(String, Value)> {
let prefix = "Background subagent ";
let suffix = " completed. Deliver this result to the user and continue the task: ";
let rest = text.strip_prefix(prefix)?;
let (task_id, encoded_result) = rest.split_once(suffix)?;
if task_id.is_empty() {
return None;
}
Some((
task_id.to_owned(),
serde_json::from_str(encoded_result).ok()?,
))
}
#[derive(Debug, Clone, PartialEq)]
enum TranscriptItem {
User {
text: String,
skill_instruction_attached: bool,
},
Assistant(String),
ToolCall {
id: String,
name: String,
arguments: String,
},
ToolResult {
id: String,
name: String,
result: Value,
},
Error(String),
Info(String),
Reasoning {
complete: bool,
},
}
#[cfg(test)]
fn activity_text(state: &UiState) -> String {
activity_text_at(state, Instant::now())
}
fn activity_text_at(state: &UiState, now: Instant) -> String {
match state.status.as_str() {
"ready" | "working" | "compacting" => pulse_frame(state.activity_levels_at(now)),
_ => format!("● {}", state.status),
}
}
fn tui_viewport(area: Rect) -> Rect {
if area.width > 2 {
Rect::new(area.x + 1, area.y, area.width - 2, area.height)
} else {
area
}
}
fn ui_layout(
state: &UiState,
area: Rect,
) -> (Rect, Option<Rect>, Option<Rect>, Option<Rect>, Rect, Rect) {
let input_rows = input_visible_rows(state, area.width.saturating_sub(2));
let queue_height = message_queue_height(state);
let input_height = input_rows.clamp(1, MAX_INPUT_ROWS) + 2;
let chunks = Layout::default()
.direction(Direction::Vertical)
.constraints([
Constraint::Min(1),
Constraint::Length(queue_height),
Constraint::Length(input_height),
Constraint::Length(1),
])
.split(area);
let picker_height = skill_picker_height(state);
let picker_area = (picker_height > 0).then(|| {
Rect::new(
chunks[1].x,
chunks[1].y.saturating_sub(picker_height),
chunks[1].width,
picker_height,
)
});
let overlay_area = subagent_overlay_area(state, chunks[0]);
let input_area = chunks[2];
let queue_area = (queue_height > 0).then(|| {
Rect::new(
input_area.x.saturating_add(1),
chunks[1].y,
input_area.width.saturating_sub(2),
chunks[1].height,
)
});
(
chunks[0],
picker_area,
overlay_area,
queue_area,
input_area,
chunks[3],
)
}
fn subagent_overlay_area(state: &UiState, area: Rect) -> Option<Rect> {
if state.subagents.is_empty() || area.is_empty() {
return None;
}
let width = area.width / 3;
if width == 0 {
return None;
}
let height = (state.subagents.len().saturating_add(2))
.min(area.height as usize)
.min(u16::MAX as usize) as u16;
(height > 0).then(|| {
Rect::new(
area.x + area.width.saturating_sub(width),
area.y,
width,
height,
)
})
}
fn message_queue_height(state: &UiState) -> u16 {
state.queued_messages.len().min(u16::MAX as usize) as u16
}
fn max_scroll_for_area(state: &UiState, size: Size) -> u16 {
let area = tui_viewport(Rect::new(0, 0, size.width, size.height));
let (chat_chunk, _, _, _, _, _) = ui_layout(state, area);
let chat_height = chat_chunk.height;
let lines = transcript_lines(state, chat_chunk.width);
lines
.len()
.saturating_sub(chat_height as usize)
.min(u16::MAX as usize) as u16
}
fn input_visible_rows(state: &UiState, width: u16) -> u16 {
let width = width as usize;
if width == 0 {
return 1;
}
let prompt = input_display_text(state);
let wrapped = wrap_text(&prompt, width);
wrapped.len().max(1) as u16
}
fn input_prompt(input: &str) -> String {
input.to_owned()
}
fn input_display_text(state: &UiState) -> String {
redact_secret(&input_prompt(&state.input), Some(&state.secret))
}
fn command_names(mut skill_names: Vec<String>) -> Vec<String> {
skill_names.extend(BUILTIN_COMMANDS.into_iter().map(str::to_owned));
skill_names.sort();
skill_names.dedup();
skill_names
}
#[derive(Clone, Copy, Debug, PartialEq, Eq)]
enum BuiltinCommand {
Settings,
Exit,
}
impl BuiltinCommand {
fn name(self) -> &'static str {
match self {
Self::Settings => "settings",
Self::Exit => "exit",
}
}
}
fn builtin_command(input: &str) -> Option<BuiltinCommand> {
match input.split_whitespace().next()? {
"/settings" => Some(BuiltinCommand::Settings),
"/exit" => Some(BuiltinCommand::Exit),
_ => None,
}
}
fn matching_skill_names<'a>(input: &str, skill_names: &'a [String]) -> Vec<&'a str> {
let Some(query) = input.strip_prefix('/') else {
return Vec::new();
};
if query.chars().any(char::is_whitespace) {
return Vec::new();
}
skill_names
.iter()
.map(String::as_str)
.filter(|name| name.starts_with(query))
.collect()
}
fn skill_picker_height(state: &UiState) -> u16 {
if state.skill_picker_visible() {
(state
.matching_skill_names()
.len()
.min(SKILL_PICKER_MAX_ROWS)
+ 3) as u16
} else {
0
}
}
fn skill_picker_range(total: usize, focus: usize) -> std::ops::Range<usize> {
let start = focus
.saturating_add(1)
.saturating_sub(SKILL_PICKER_MAX_ROWS);
start.min(total)..(start + SKILL_PICKER_MAX_ROWS).min(total)
}
fn active_skill_trigger<'a>(input: &'a str, skill_names: &[String]) -> Option<&'a str> {
let invocation = input.strip_prefix('/')?;
let name = invocation
.split_once(char::is_whitespace)
.map_or(invocation, |(name, _)| name);
if name.is_empty() || !skill_names.iter().any(|skill_name| skill_name == name) {
return None;
}
Some(&input[..1 + name.len()])
}
fn styled_text_lines(
input: &str,
active_skill_trigger: Option<&str>,
width: usize,
text_style: Style,
) -> Vec<Line<'static>> {
let trigger_len = active_skill_trigger.map_or(0, |trigger| trigger.chars().count());
let mut char_offset = 0usize;
let mut lines = Vec::new();
for source_line in input.split('\n') {
for row in wrap_line(source_line, width) {
let mut spans = Vec::new();
let mut text = String::new();
let mut highlighted = None;
for character in row.chars() {
let should_highlight = char_offset < trigger_len;
if highlighted != Some(should_highlight) && !text.is_empty() {
spans.push(styled_text_span(
std::mem::take(&mut text),
highlighted.unwrap_or(false),
text_style,
));
}
highlighted = Some(should_highlight);
text.push(character);
char_offset += 1;
}
if !text.is_empty() {
spans.push(styled_text_span(
text,
highlighted.unwrap_or(false),
text_style,
));
}
if spans.is_empty() {
spans.push(Span::styled(String::new(), text_style));
}
lines.push(Line::from(spans));
}
char_offset += 1;
}
lines
}
fn styled_text_span(text: String, highlighted: bool, text_style: Style) -> Span<'static> {
if highlighted {
Span::styled(text, Style::default().fg(Color::Cyan))
} else {
Span::styled(text, text_style)
}
}
fn cursor_row(input: &str, cursor: usize, width: usize) -> u16 {
let prefix: String = input.chars().take(cursor).collect();
wrap_text(&prefix, width)
.len()
.saturating_sub(1)
.min(u16::MAX as usize) as u16
}
fn insert_at_cursor(input: &mut String, cursor: &mut usize, character: char) {
let byte_index = input
.char_indices()
.nth(*cursor)
.map_or(input.len(), |(index, _)| index);
input.insert(byte_index, character);
*cursor += 1;
}
fn remove_before_cursor(input: &mut String, cursor: &mut usize) -> bool {
if *cursor == 0 {
return false;
}
let end = input
.char_indices()
.nth(*cursor)
.map_or(input.len(), |(index, _)| index);
let start = input
.char_indices()
.nth(*cursor - 1)
.map(|(index, _)| index)
.unwrap_or(0);
input.replace_range(start..end, "");
*cursor -= 1;
true
}
fn draw(frame: &mut Frame<'_>, state: &UiState) {
let full_area = frame.area();
frame.render_widget(Clear, full_area);
let area = tui_viewport(full_area);
let (chat_chunk, picker_area, overlay_area, queue_area, input_chunk, status_area) =
ui_layout(state, area);
let visible_chat_area = chat_chunk;
let width = chat_chunk.width;
if state.welcome_visible {
let welcome_lines = welcome_lines(&state.attached_agents);
let welcome_height = (welcome_lines.len() as u16).min(visible_chat_area.height);
let welcome_area = Rect::new(
visible_chat_area.x,
visible_chat_area.y + visible_chat_area.height.saturating_sub(welcome_height) / 2,
visible_chat_area.width,
welcome_height,
);
let welcome = Paragraph::new(welcome_lines).alignment(Alignment::Center);
frame.render_widget(welcome, welcome_area);
} else {
let lines = transcript_lines(state, width);
let available = visible_chat_area.height as usize;
let max_scroll = lines.len().saturating_sub(available).min(u16::MAX as usize) as u16;
let scroll = if state.auto_scroll {
max_scroll
} else {
state.scroll.min(max_scroll)
};
let transcript = Paragraph::new(lines).scroll((scroll, 0));
frame.render_widget(transcript, visible_chat_area);
}
let activity_now = Instant::now();
let activity_text = activity_text_at(state, activity_now);
let activity_elapsed = state.working_elapsed_at(activity_now);
let activity = activity_line_at(state, &activity_text, activity_elapsed, activity_now);
if let Some(picker_area) = picker_area {
draw_skill_picker(frame, state, picker_area);
}
let input_text_style = Style::default().fg(Color::White);
let input_block = Block::default()
.borders(Borders::ALL)
.border_type(ratatui::widgets::BorderType::Plain);
let prompt_area = input_block.inner(input_chunk);
let prompt = input_display_text(state);
let input_rows =
input_visible_rows(state, input_chunk.width.saturating_sub(2)).clamp(1, MAX_INPUT_ROWS);
let wrapped = wrap_text(&prompt, prompt_area.width.max(1) as usize);
let visible = (wrapped.len() as u16).clamp(1, input_rows);
let cursor_row = cursor_row(&prompt, state.cursor, prompt_area.width.max(1) as usize);
let bottom_scroll = (wrapped.len() as u16).saturating_sub(visible);
let cursor_scroll = (cursor_row + 1).saturating_sub(visible);
let input_scroll = bottom_scroll.min(cursor_scroll);
let active_skill_trigger = (!state.busy)
.then(|| active_skill_trigger(&prompt, &state.skill_names))
.flatten();
let input_lines = styled_text_lines(
&prompt,
active_skill_trigger,
prompt_area.width.max(1) as usize,
input_text_style,
);
frame.render_widget(input_block, input_chunk);
if let Some(queue_area) = queue_area {
draw_message_queue(frame, state, queue_area);
}
let input = Paragraph::new(input_lines)
.style(input_text_style)
.scroll((input_scroll, 0));
frame.render_widget(input, prompt_area);
draw_prompt_border_gradient(frame, input_chunk);
let effort = state.effort.as_deref().unwrap_or("default");
let status_text = format!("{} ({effort})", state.model);
let status = Paragraph::new(redact_secret(&status_text, Some(&state.secret)))
.style(Style::default().fg(Color::DarkGray));
frame.render_widget(status, status_area);
let context_text = context_status_text(state);
let context_width = UnicodeWidthStr::width(context_text.as_str()) as u16;
let context_area_width = context_width.min(status_area.width);
if context_area_width > 0 {
let context_area = Rect::new(
status_area
.x
.saturating_add(status_area.width.saturating_sub(context_area_width)),
status_area.y,
context_area_width,
status_area.height,
);
let context = Paragraph::new(context_text)
.alignment(Alignment::Right)
.style(context_status_style(state));
frame.render_widget(context, context_area);
}
frame.render_widget(
Paragraph::new(activity).alignment(Alignment::Center),
status_area,
);
if let Some(overlay_area) = overlay_area {
draw_subagent_overlay(frame, state, overlay_area);
}
if let Some(settings) = &state.settings {
draw_settings(frame, settings, area);
}
if state.settings.is_none() && !prompt_area.is_empty() && visible > 0 {
let cursor_prefix: String = prompt.chars().take(state.cursor).collect();
let cursor_rows = wrap_text(&cursor_prefix, prompt_area.width.max(1) as usize);
let cursor_line = cursor_rows.last().map(String::as_str).unwrap_or("");
let cursor_offset = UnicodeWidthStr::width(cursor_line) as u16;
let cursor_x = prompt_area.x + cursor_offset.min(prompt_area.width.saturating_sub(1));
let cursor_y = prompt_area.y + cursor_row.saturating_sub(input_scroll);
frame.set_cursor_position((cursor_x, cursor_y));
}
}
fn draw_message_queue(frame: &mut Frame<'_>, state: &UiState, area: Rect) {
if area.is_empty() {
return;
}
let total = state.queued_messages.len();
let lines = state
.queued_messages
.iter()
.map(|message| Line::raw(format!("Queued {total}: {}", single_line_preview(message))))
.collect::<Vec<_>>();
frame.render_widget(Clear, area);
frame.render_widget(
Paragraph::new(lines).style(
Style::default()
.fg(QUEUED_MESSAGE_COLOR)
.bg(QUEUED_MESSAGE_BACKGROUND),
),
area,
);
}
fn draw_subagent_overlay(frame: &mut Frame<'_>, state: &UiState, area: Rect) {
if area.is_empty() {
return;
}
let overlay_style = Style::default()
.fg(SUBAGENT_OVERLAY_COLOR)
.bg(SUBAGENT_OVERLAY_BACKGROUND);
let block = Block::default()
.title("Subagents")
.title_alignment(Alignment::Right)
.borders(Borders::ALL)
.style(overlay_style)
.border_style(overlay_style);
let inner = block.inner(area);
let lines = state
.subagents
.iter()
.map(|task| {
let indicator = subagent_status_indicator(task.status, state);
let task_text = redact_secret(&single_line_preview(&task.task), Some(&state.secret));
Line::styled(format!("{indicator} {task_text}"), overlay_style)
})
.collect::<Vec<_>>();
frame.render_widget(Clear, area);
frame.render_widget(block, area);
frame.render_widget(Paragraph::new(lines).style(overlay_style), inner);
}
fn subagent_status_indicator(status: SubagentStatus, state: &UiState) -> String {
match status {
SubagentStatus::Queued => "○".to_owned(),
SubagentStatus::Running => tool_spinner_frame(state),
SubagentStatus::Failed => "×".to_owned(),
}
}
fn single_line_preview(text: &str) -> String {
truncate_output(&text.replace(['\n', '\r'], " ↵ "))
}
fn subagent_status_label(status: SubagentStatus) -> &'static str {
match status {
SubagentStatus::Queued => "queued",
SubagentStatus::Running => "running",
SubagentStatus::Failed => "error",
}
}
fn subagent_status_display(status: SubagentStatus, state: &UiState) -> String {
let label = subagent_status_label(status);
if status == SubagentStatus::Running {
format!("{label} {}", tool_spinner_frame(state))
} else {
label.to_owned()
}
}
fn subagent_status_style(status: SubagentStatus) -> Style {
match status {
SubagentStatus::Queued => Style::default().fg(PENDING_TOOL_COLOR),
SubagentStatus::Running => Style::default().fg(Color::Cyan),
SubagentStatus::Failed => Style::default().fg(Color::Red),
}
}
enum SettingsState {
Loading,
Applying {
model: String,
effort: Option<String>,
},
Error(String),
Models {
models: Vec<ProviderModel>,
query: String,
focus: usize,
},
Effort {
model: ProviderModel,
input: String,
focus: usize,
},
}
fn draw_settings(frame: &mut Frame<'_>, settings: &SettingsState, area: Rect) {
let width = area
.width
.saturating_sub(2)
.min(SETTINGS_MAX_WIDTH)
.max(SETTINGS_MIN_WIDTH.min(area.width));
let height = area
.height
.saturating_sub(2)
.min(SETTINGS_MAX_HEIGHT)
.max(SETTINGS_MIN_HEIGHT.min(area.height));
let popup = Rect::new(
area.x + area.width.saturating_sub(width) / 2,
area.y + area.height.saturating_sub(height) / 2,
width,
height,
);
frame.render_widget(Clear, popup);
let block = Block::default()
.title(" /settings ")
.borders(Borders::ALL)
.border_style(Style::default().fg(Color::Cyan));
let inner = block.inner(popup);
frame.render_widget(block, popup);
let lines = match settings {
SettingsState::Loading => vec![
Line::styled("Loading provider models…", Style::default().fg(Color::Cyan)),
Line::raw(""),
Line::styled("Esc cancel", Style::default().fg(Color::DarkGray)),
],
SettingsState::Applying { model, effort } => vec![
Line::styled("Applying selection…", Style::default().fg(Color::Cyan)),
Line::raw(model.clone()),
Line::raw(format!(
"effort: {}",
effort.as_deref().unwrap_or("default")
)),
],
SettingsState::Error(error) => vec![
Line::styled("Unable to update settings", Style::default().fg(Color::Red)),
Line::raw(""),
Line::raw(error.clone()),
Line::raw(""),
Line::styled("Enter/Esc close", Style::default().fg(Color::DarkGray)),
],
SettingsState::Models {
models,
query,
focus,
} => {
let query_lower = query.to_lowercase();
let filtered = models
.iter()
.filter(|model| model.id.to_lowercase().contains(&query_lower))
.collect::<Vec<_>>();
let focus = (*focus).min(filtered.len().saturating_sub(1));
let list_rows = inner.height.saturating_sub(4) as usize;
let range = selection_range(filtered.len(), focus, list_rows);
let mut lines = vec![
Line::from(vec![
Span::styled("Model ", Style::default().fg(Color::DarkGray)),
Span::styled(
if query.is_empty() {
"type to filter…"
} else {
query
},
Style::default().fg(if query.is_empty() {
Color::DarkGray
} else {
Color::White
}),
),
]),
Line::styled(
format!(
"{} models{}",
filtered.len(),
if filtered.is_empty() {
""
} else {
" · ↑/↓ move · Enter choose"
}
),
Style::default().fg(Color::DarkGray),
),
];
if filtered.is_empty() {
lines.push(Line::styled(
"No matching models",
Style::default().fg(Color::Yellow),
));
} else {
for index in range {
let selected = index == focus;
lines.push(Line::styled(
format!(
"{} {}",
if selected { "›" } else { " " },
filtered[index].id
),
if selected {
Style::default().fg(Color::Black).bg(Color::Cyan)
} else {
Style::default().fg(Color::White)
},
));
}
}
lines.push(Line::styled(
"Esc cancel",
Style::default().fg(Color::DarkGray),
));
lines
}
SettingsState::Effort {
model,
input,
focus,
} => {
let mut lines = vec![
Line::styled(model.id.clone(), Style::default().fg(Color::Cyan)),
Line::styled("Reasoning effort", Style::default().fg(Color::DarkGray)),
];
match &model.efforts {
Some(efforts) => {
let total = efforts.len() + 1;
let focus = (*focus).min(total.saturating_sub(1));
let list_rows = inner.height.saturating_sub(4) as usize;
for index in selection_range(total, focus, list_rows) {
let value = if index == 0 {
"default"
} else {
efforts[index - 1].as_str()
};
let selected = index == focus;
lines.push(Line::styled(
format!("{} {value}", if selected { "›" } else { " " }),
if selected {
Style::default().fg(Color::Black).bg(Color::Cyan)
} else {
Style::default().fg(Color::White)
},
));
}
lines.push(Line::styled(
"↑/↓ move · Enter save · Esc cancel",
Style::default().fg(Color::DarkGray),
));
}
None => {
lines.push(Line::raw("Provider did not advertise allowed efforts."));
lines.push(Line::from(vec![
Span::styled("Value ", Style::default().fg(Color::DarkGray)),
Span::styled(
if input.is_empty() { "default" } else { input },
Style::default().fg(Color::White),
),
]));
lines.push(Line::styled(
"Type a value · Enter save · Esc cancel",
Style::default().fg(Color::DarkGray),
));
}
}
lines
}
};
frame.render_widget(Paragraph::new(lines), inner);
}
fn selection_range(total: usize, focus: usize, max_rows: usize) -> std::ops::Range<usize> {
if total == 0 || max_rows == 0 {
return 0..0;
}
let focus = focus.min(total - 1);
let visible = total.min(max_rows);
let start = focus
.saturating_add(1)
.saturating_sub(visible)
.min(total - visible);
start..start + visible
}
fn draw_skill_picker(frame: &mut Frame<'_>, state: &UiState, area: Rect) {
let matches = state.matching_skill_names();
let total = matches.len();
if total == 0 || area.is_empty() {
return;
}
frame.render_widget(Clear, area);
let block = Block::default()
.borders(Borders::ALL)
.border_type(BorderType::Plain)
.border_style(Style::default().fg(Color::Cyan));
let inner = block.inner(area);
frame.render_widget(block, area);
let focus = state.skill_picker_focus.min(total - 1);
let header = Line::styled(
format!("[{}/{}]", focus + 1, total),
Style::default().fg(Color::DarkGray),
);
frame.render_widget(
Paragraph::new(header),
Rect::new(inner.x, inner.y, inner.width, 1),
);
for (row, index) in skill_picker_range(total, focus).enumerate() {
let style = if index == focus {
Style::default().fg(Color::Cyan)
} else {
Style::default().fg(Color::DarkGray)
};
let skill = Line::styled(format!("/{}", matches[index]), style);
frame.render_widget(
Paragraph::new(skill),
Rect::new(inner.x, inner.y + 1 + row as u16, inner.width, 1),
);
}
}
fn welcome_line() -> Line<'static> {
let character_count = WELCOME_MESSAGE.chars().count();
let spans = WELCOME_MESSAGE
.chars()
.enumerate()
.map(|(index, character)| {
let progress = if character_count <= 1 {
0.0
} else {
index as f32 / (character_count - 1) as f32
};
let color = Color::Rgb(
interpolate_color(WELCOME_START_COLOR.0, WELCOME_END_COLOR.0, progress),
interpolate_color(WELCOME_START_COLOR.1, WELCOME_END_COLOR.1, progress),
interpolate_color(WELCOME_START_COLOR.2, WELCOME_END_COLOR.2, progress),
);
Span::styled(character.to_string(), Style::default().fg(color))
})
.collect::<Vec<_>>();
Line::from(spans)
}
fn interpolate_color(start: u8, end: u8, progress: f32) -> u8 {
(start as f32 + (end as f32 - start as f32) * progress).round() as u8
}
fn welcome_lines(attached_agents: &[String]) -> Vec<Line<'static>> {
let mut lines = vec![
welcome_line(),
Line::styled(WELCOME_TAGLINE, Style::default().fg(Color::DarkGray)),
Line::raw(""),
];
if attached_agents.is_empty() {
lines.push(Line::styled(
"Attached AGENTS.md: none",
Style::default().fg(Color::DarkGray),
));
} else {
lines.push(Line::styled(
"Attached AGENTS.md:",
Style::default().fg(Color::DarkGray),
));
lines.extend(
attached_agents.iter().map(|path| {
Line::styled(format!("• {path}"), Style::default().fg(Color::DarkGray))
}),
);
}
lines
}
fn transcript_lines(state: &UiState, width: u16) -> Vec<Line<'static>> {
let width = width.max(1) as usize;
let mut lines = Vec::new();
let mut rendered_item = false;
for (index, item) in state.transcript.iter().enumerate() {
if is_result_attached_to_call(&state.transcript, index) {
continue;
}
if rendered_item {
lines.push(Line::raw(String::new()));
}
match item {
TranscriptItem::User {
text,
skill_instruction_attached,
} => {
let text = redact_secret(text, Some(&state.secret));
let trigger = skill_instruction_attached
.then(|| active_skill_trigger(&text, &state.skill_names))
.flatten();
push_user_message_block(&mut lines, &text, trigger, width);
}
TranscriptItem::Assistant(text) => {
let text = redact_secret(text, Some(&state.secret));
push_wrapped(&mut lines, &text, width, Style::default());
}
TranscriptItem::ToolCall {
id,
name,
arguments,
} => {
let result = matching_tool_result(&state.transcript, index, id);
let segments = if name == "cmd" {
cmd_tool_segments(id, arguments, result, state)
} else if name == "spawn_subagent" {
subagent_tool_segments(id, arguments, state)
} else {
generic_tool_segments(name, arguments, result, state)
};
push_spans_wrapped(&mut lines, &segments, width);
}
TranscriptItem::ToolResult {
id: _,
name: _,
result,
} => {
let result_text = format_tool_result(result);
let result_text = redact_secret(&result_text, Some(&state.secret));
push_spans_wrapped(&mut lines, &[(result_text, tool_result_style())], width);
}
TranscriptItem::Error(text) => {
let text = redact_secret(text, Some(&state.secret));
push_wrapped(&mut lines, &text, width, error_style());
}
TranscriptItem::Info(text) => {
let text = redact_secret(text, Some(&state.secret));
push_wrapped(&mut lines, &text, width, info_style());
}
TranscriptItem::Reasoning { complete } => {
let text = if *complete {
"Reasoning Complete".to_owned()
} else {
format!("Reasoning... {}", spinner_frame(state))
};
push_wrapped(&mut lines, &text, width, thinking_style());
}
}
rendered_item = true;
}
if lines.is_empty() {
lines.push(Line::raw(""));
}
lines
}
fn running_tool_status(state: &UiState) -> String {
tool_spinner_frame(state)
}
fn cmd_tool_segments(
call_id: &str,
arguments: &str,
result: Option<&Value>,
state: &UiState,
) -> Vec<(String, Style)> {
let command = redact_secret(&command_display(arguments), Some(&state.secret));
if let Some(result) = result {
let (icon, status, status_style) = cmd_result_status(result);
if status == "done" {
return cmd_success_segments(call_id, &format!("{icon} cmd $ {command}"), state);
}
vec![
(format!("{icon} cmd $ {command} → "), status_style),
(status, status_style),
]
} else {
vec![
(format!("· cmd $ {command} "), pending_tool_call_style()),
(running_tool_status(state), pending_tool_call_style()),
]
}
}
fn cmd_success_segments(call_id: &str, text: &str, state: &UiState) -> Vec<(String, Style)> {
let now = Instant::now();
let started_at = state.cmd_success_started_at.get(call_id).copied();
if started_at.is_none_or(|started_at| {
now.saturating_duration_since(started_at) >= TOOL_SUCCESS_SWEEP_DURATION
}) {
return vec![(text.to_owned(), Style::default().fg(Color::Green))];
}
let character_count = text.chars().count();
text.chars()
.enumerate()
.map(|(index, character)| {
(
character.to_string(),
Style::default().fg(cmd_success_color_at(
started_at.expect("active success sweep"),
now,
index,
character_count,
)),
)
})
.collect()
}
fn cmd_success_color_at(
started_at: Instant,
now: Instant,
character_index: usize,
character_count: usize,
) -> Color {
let elapsed = now.saturating_duration_since(started_at);
if elapsed >= TOOL_SUCCESS_SWEEP_DURATION {
return Color::Green;
}
let progress = elapsed.as_secs_f32() / TOOL_SUCCESS_SWEEP_DURATION.as_secs_f32();
let sweep_distance = character_count as f32 + TOOL_SUCCESS_SWEEP_WIDTH - 1.0;
let front = progress * sweep_distance;
let character_progress =
((front - character_index as f32) / TOOL_SUCCESS_SWEEP_WIDTH).clamp(0.0, 1.0);
Color::Rgb(
interpolate_color(
PENDING_TOOL_COLOR_RGB.0,
TOOL_SUCCESS_GREEN_RGB.0,
character_progress,
),
interpolate_color(
PENDING_TOOL_COLOR_RGB.1,
TOOL_SUCCESS_GREEN_RGB.1,
character_progress,
),
interpolate_color(
PENDING_TOOL_COLOR_RGB.2,
TOOL_SUCCESS_GREEN_RGB.2,
character_progress,
),
)
}
fn command_display(arguments: &str) -> String {
serde_json::from_str::<Value>(arguments)
.ok()
.and_then(|value| {
value
.get("command")
.and_then(Value::as_str)
.map(str::to_owned)
})
.map(|command| truncate_output(&command))
.unwrap_or_else(|| truncate_output(arguments))
}
fn cmd_result_succeeded(result: &Value) -> bool {
!result
.get("canceled")
.and_then(Value::as_bool)
.unwrap_or(false)
&& !result
.get("timed_out")
.and_then(Value::as_bool)
.unwrap_or(false)
&& result.get("error").is_none()
&& !matches!(result.get("exit_code").and_then(Value::as_i64), Some(code) if code != 0)
}
fn cmd_result_status(result: &Value) -> (char, String, Style) {
if result
.get("canceled")
.and_then(Value::as_bool)
.unwrap_or(false)
{
return (
'!',
"canceled".to_owned(),
Style::default().fg(Color::Yellow),
);
}
if result
.get("timed_out")
.and_then(Value::as_bool)
.unwrap_or(false)
{
return (
'!',
"timeout".to_owned(),
Style::default().fg(Color::Yellow),
);
}
if result.get("error").is_some() {
return ('×', "error".to_owned(), error_style());
}
match result.get("exit_code").and_then(Value::as_i64) {
Some(0) => ('✓', "done".to_owned(), Style::default().fg(Color::Green)),
Some(code) => ('×', format!("exit {code}"), error_style()),
None => ('✓', "done".to_owned(), Style::default().fg(Color::Green)),
}
}
fn subagent_task_from_arguments(arguments: &str) -> String {
serde_json::from_str::<Value>(arguments)
.ok()
.and_then(|value| value.get("task").and_then(Value::as_str).map(str::to_owned))
.map(|task| truncate_output(&task))
.unwrap_or_else(|| command_display(arguments))
}
fn subagent_tool_segments(call_id: &str, arguments: &str, state: &UiState) -> Vec<(String, Style)> {
let live_task = state.subagents.iter().find(|task| task.call_id == call_id);
let task = live_task
.map(|task| task.task.clone())
.unwrap_or_else(|| subagent_task_from_arguments(arguments));
let task = redact_secret(&truncate_output(&task), Some(&state.secret));
let (status, style) = if let Some(task) = live_task {
let status = if task.status == SubagentStatus::Running {
running_tool_status(state)
} else {
subagent_status_display(task.status, state)
};
(status, subagent_status_style(task.status))
} else if state.completed_subagent_calls.contains(call_id) {
("completed".to_owned(), Style::default().fg(Color::Green))
} else {
("queued".to_owned(), pending_tool_call_style())
};
let separator = if live_task.is_some_and(|task| task.status == SubagentStatus::Running) {
" "
} else {
" → "
};
vec![(format!("↗ subagent {task}{separator}{status}"), style)]
}
fn generic_tool_segments(
name: &str,
arguments: &str,
result: Option<&Value>,
state: &UiState,
) -> Vec<(String, Style)> {
let call_text = redact_secret(
&format!("[tool:{name} {}]", call_arguments(arguments)),
Some(&state.secret),
);
let mut segments = vec![(
call_text,
if result.is_some() {
tool_call_style()
} else {
pending_tool_call_style()
},
)];
if let Some(result) = result {
let result_text = redact_secret(&format_tool_result(result), Some(&state.secret));
segments.push((" > ".to_owned(), Style::default()));
segments.push((result_text, tool_result_style()));
} else {
segments.push((
format!(" {}", tool_spinner_frame(state)),
pending_tool_call_style(),
));
}
segments
}
fn matching_tool_result<'a>(
transcript: &'a [TranscriptItem],
call_index: usize,
call_id: &str,
) -> Option<&'a Value> {
transcript
.iter()
.skip(call_index + 1)
.find_map(|item| match item {
TranscriptItem::ToolResult { id, result, .. } if id == call_id => Some(result),
_ => None,
})
}
fn is_result_attached_to_call(transcript: &[TranscriptItem], result_index: usize) -> bool {
let TranscriptItem::ToolResult { id, .. } = &transcript[result_index] else {
return false;
};
let Some(call_index) = transcript[..result_index].iter().rposition(
|item| matches!(item, TranscriptItem::ToolCall { id: call_id, .. } if call_id == id),
) else {
return false;
};
!transcript[call_index + 1..result_index].iter().any(
|item| matches!(item, TranscriptItem::ToolResult { id: result_id, .. } if result_id == id),
)
}
fn call_arguments(arguments: &str) -> String {
let parsed: Value = match serde_json::from_str(arguments) {
Ok(value) => value,
Err(_) => return truncate_output(arguments),
};
if let Some(command) = parsed.get("command").and_then(Value::as_str) {
return format!("\"{}\"", truncate_output(command));
}
let serialized = serde_json::to_string(&parsed).unwrap_or_else(|_| arguments.to_owned());
truncate_output(&serialized)
}
fn format_tool_result(result: &Value) -> String {
let stdout = result.get("stdout").and_then(Value::as_str).unwrap_or("");
let stderr = result.get("stderr").and_then(Value::as_str).unwrap_or("");
let output = if !stdout.is_empty() { stdout } else { stderr };
let truncated = truncate_output(output);
let json_string = serde_json::to_string(&truncated).unwrap_or_else(|_| "\"\"".to_owned());
format!("[{json_string}]")
}
const RESULT_PREVIEW_CHARS: usize = 50;
fn truncate_output(output: &str) -> String {
let mut result: String = output.chars().take(RESULT_PREVIEW_CHARS).collect();
if output.chars().count() > RESULT_PREVIEW_CHARS {
result.push('…');
}
result
}
fn user_message_style() -> Style {
Style::default().fg(USER_BORDER_COLOR)
}
fn push_user_message_block(
lines: &mut Vec<Line<'static>>,
text: &str,
active_skill_trigger: Option<&str>,
width: usize,
) {
if width < 3 {
lines.extend(styled_text_lines(
text,
active_skill_trigger,
width.max(1),
Style::default().fg(Color::White),
));
return;
}
let border_style = user_message_style();
let rows = styled_text_lines(
text,
active_skill_trigger,
width - 2,
Style::default().fg(Color::White),
);
lines.push(Line::from(Span::styled(USER_BORDER_GLYPH, border_style)));
for row in rows {
let mut spans = Vec::with_capacity(row.spans.len() + 2);
spans.push(Span::styled(USER_BORDER_GLYPH, border_style));
spans.push(Span::styled(" ", Style::default().fg(Color::White)));
spans.extend(row.spans);
lines.push(Line::from(spans));
}
lines.push(Line::from(Span::styled(USER_BORDER_GLYPH, border_style)));
}
fn tool_call_style() -> Style {
Style::default().fg(Color::Magenta)
}
fn pending_tool_call_style() -> Style {
Style::default().fg(PENDING_TOOL_COLOR)
}
fn tool_result_style() -> Style {
Style::default().fg(Color::DarkGray)
}
fn error_style() -> Style {
Style::default().fg(Color::Red)
}
fn info_style() -> Style {
Style::default().fg(Color::DarkGray)
}
fn context_status_text(state: &UiState) -> String {
let used = format_context_tokens(state.context_tokens);
let Some(window) = state.context_window else {
return format!("ctx={used}/? (?%)");
};
let percentage = context_percentage(state.context_tokens, window);
format!(
"ctx={used}/{} ({percentage}%)",
format_context_tokens(window)
)
}
fn context_status_style(state: &UiState) -> Style {
if state
.context_window
.is_some_and(|window| context_over_threshold(state.context_tokens, window))
{
Style::default().fg(PENDING_TOOL_COLOR)
} else {
Style::default().fg(Color::DarkGray)
}
}
fn context_percentage(used: usize, window: usize) -> usize {
if window == 0 {
return 0;
}
((used as u128 * 100).div_ceil(window as u128)) as usize
}
fn context_over_threshold(used: usize, window: usize) -> bool {
window > 0 && (used as u128 * 100) > (window as u128 * 80)
}
fn format_context_tokens(tokens: usize) -> String {
if tokens >= 1_000_000 {
format!("{:.2}M", tokens as f64 / 1_000_000.0)
} else if tokens >= 1_000 {
format!("{:.1}K", tokens as f64 / 1_000.0)
} else {
tokens.to_string()
}
}
fn activity_line_at<'a>(
state: &UiState,
text: &'a str,
elapsed: Duration,
now: Instant,
) -> Line<'a> {
let character_count = text.chars().count().max(1);
match state.status.as_str() {
"working" => Line::from(
text.chars()
.enumerate()
.map(|(index, character)| {
let target = working_gradient_color_at(elapsed, index, character_count);
Span::styled(
character.to_string(),
Style::default().fg(activity_color_at(state, target, now)),
)
})
.collect::<Vec<_>>(),
),
"ready"
if state
.activity_transition
.as_ref()
.is_some_and(|transition| transition_progress(now, transition) < 1.0) =>
{
Line::from(
text.chars()
.enumerate()
.map(|(index, character)| {
let source = working_gradient_color_at(
state.last_active_elapsed,
index,
character_count,
);
Span::styled(
character.to_string(),
Style::default().fg(activity_color_at(state, source, now)),
)
})
.collect::<Vec<_>>(),
)
}
_ => Line::styled(text, activity_style_at_now(state, elapsed, now)),
}
}
#[cfg(test)]
fn activity_style_at(state: &UiState, elapsed: Duration) -> Style {
activity_style_at_now(state, elapsed, Instant::now())
}
fn activity_style_at_now(state: &UiState, elapsed: Duration, now: Instant) -> Style {
let target = if state.status == "working" {
working_gradient_color_at(elapsed, 0, 1)
} else if state.status == "compacting" {
PENDING_TOOL_COLOR
} else {
Color::Cyan
};
Style::default().fg(activity_color_at(state, target, now))
}
fn activity_color_at(state: &UiState, target: Color, now: Instant) -> Color {
let Some(transition) = &state.activity_transition else {
return target;
};
let progress = transition_progress(now, transition);
if progress >= 1.0 {
return target;
}
match state.status.as_str() {
"working" => blend_rgb(Color::Cyan, target, progress),
"ready" => blend_rgb(target, Color::Cyan, progress),
_ => target,
}
}
fn transition_progress(now: Instant, transition: &ActivityTransition) -> f32 {
let elapsed_ticks = now
.saturating_duration_since(transition.started_at)
.as_millis()
/ PULSE_TICK.as_millis();
let transition_ticks = ACTIVITY_TRANSITION_DURATION.as_millis() / PULSE_TICK.as_millis();
(elapsed_ticks as f32 / transition_ticks as f32).min(1.0)
}
fn blend_rgb(from: Color, to: Color, progress: f32) -> Color {
let (from_red, from_green, from_blue) = activity_rgb(from);
let (to_red, to_green, to_blue) = activity_rgb(to);
Color::Rgb(
interpolate_color(from_red, to_red, progress),
interpolate_color(from_green, to_green, progress),
interpolate_color(from_blue, to_blue, progress),
)
}
fn activity_rgb(color: Color) -> (u8, u8, u8) {
match color {
Color::Rgb(red, green, blue) => (red, green, blue),
Color::Cyan => (0, 255, 255),
_ => unreachable!("activity transition colours are cyan or RGB"),
}
}
fn draw_prompt_border_gradient(frame: &mut Frame<'_>, area: Rect) {
if area.is_empty() {
return;
}
let right = area.x + area.width.saturating_sub(1);
let bottom = area.y + area.height.saturating_sub(1);
let buffer = frame.buffer_mut();
for x in area.x..=right {
let style = Style::default().fg(prompt_border_gradient_color_at(x - area.x, area.width));
buffer[(x, area.y)].set_style(style);
buffer[(x, bottom)].set_style(style);
}
for y in area.y..=bottom {
buffer[(area.x, y)].set_style(Style::default().fg(PROMPT_BORDER_START_COLOR.into()));
buffer[(right, y)].set_style(Style::default().fg(PROMPT_BORDER_END_COLOR.into()));
}
}
fn prompt_border_gradient_color_at(column: u16, width: u16) -> Color {
let progress = column as f32 / width.saturating_sub(1).max(1) as f32;
Color::Rgb(
interpolate_color(
PROMPT_BORDER_START_COLOR.0,
PROMPT_BORDER_END_COLOR.0,
progress,
),
interpolate_color(
PROMPT_BORDER_START_COLOR.1,
PROMPT_BORDER_END_COLOR.1,
progress,
),
interpolate_color(
PROMPT_BORDER_START_COLOR.2,
PROMPT_BORDER_END_COLOR.2,
progress,
),
)
}
fn working_gradient_colors_at(position: f64) -> (Color, Color, f64) {
let position = position.rem_euclid(WORKING_GRADIENT_COLORS.len() as f64);
let phase = position.floor() as usize;
let progress = position.fract();
let start = WORKING_GRADIENT_COLORS[phase];
let end = WORKING_GRADIENT_COLORS[(phase + 1) % WORKING_GRADIENT_COLORS.len()];
(
Color::Rgb(start.0, start.1, start.2),
Color::Rgb(end.0, end.1, end.2),
progress,
)
}
fn working_gradient_color_at(
elapsed: Duration,
character_index: usize,
character_count: usize,
) -> Color {
const SWEEP_WIDTH: f64 = 0.35;
let position = elapsed.as_secs_f64() / WORKING_GRADIENT_CYCLE.as_secs_f64()
+ character_index as f64 / character_count.max(1) as f64 * SWEEP_WIDTH;
let (
Color::Rgb(red_start, green_start, blue_start),
Color::Rgb(red_end, green_end, blue_end),
progress,
) = working_gradient_colors_at(position)
else {
unreachable!("working gradient palette always uses RGB colours")
};
Color::Rgb(
interpolate_color(red_start, red_end, progress as f32),
interpolate_color(green_start, green_end, progress as f32),
interpolate_color(blue_start, blue_end, progress as f32),
)
}
fn thinking_style() -> Style {
Style::default().fg(Color::DarkGray)
}
const PULSE_LEVELS: [char; 7] = ['▁', '▂', '▃', '▅', '▆', '▇', '█'];
const PULSE_BAR_PERIODS: [u128; 5] = [12, 16, 20, 24, 15];
const PULSE_BAR_PHASES: [u128; 5] = [0, 5, 13, 9, 3];
const PULSE_TICK: Duration = Duration::from_millis(50);
const TOOL_SPINNER_FRAMES: [char; 4] = ['|', '/', '-', '\\'];
const TOOL_SPINNER_FRAME_DURATION: Duration = Duration::from_millis(100);
const ACTIVITY_TRANSITION_DURATION: Duration = Duration::from_millis(400);
const PULSE_ENTRY_FRAME: Duration = Duration::from_millis(950);
fn spinner_frame(state: &UiState) -> String {
pulse_frame(state.activity_levels_at(Instant::now()))
}
#[cfg(test)]
fn spinner_frame_at(elapsed: Duration) -> String {
pulse_frame(pulse_levels_at(elapsed))
}
fn tool_spinner_frame(state: &UiState) -> String {
tool_spinner_frame_at(state.tool_animation_epoch.elapsed()).to_string()
}
fn tool_spinner_frame_at(elapsed: Duration) -> char {
let frame = (elapsed.as_millis() / TOOL_SPINNER_FRAME_DURATION.as_millis()) as usize;
TOOL_SPINNER_FRAMES[frame % TOOL_SPINNER_FRAMES.len()]
}
fn pulse_frame(levels: [usize; PULSE_BAR_PERIODS.len()]) -> String {
levels
.into_iter()
.map(|level| PULSE_LEVELS[level])
.collect()
}
fn pulse_levels_at(elapsed: Duration) -> [usize; PULSE_BAR_PERIODS.len()] {
let tick = elapsed.as_millis() / PULSE_TICK.as_millis();
std::array::from_fn(|index| {
pulse_level_at(tick, PULSE_BAR_PERIODS[index], PULSE_BAR_PHASES[index])
})
}
fn interpolate_pulse_levels(
from: [usize; PULSE_BAR_PERIODS.len()],
to: [usize; PULSE_BAR_PERIODS.len()],
elapsed: Duration,
) -> [usize; PULSE_BAR_PERIODS.len()] {
let elapsed = elapsed.min(ACTIVITY_TRANSITION_DURATION).as_millis();
let duration = ACTIVITY_TRANSITION_DURATION.as_millis();
std::array::from_fn(|index| {
let start = from[index] as i128;
let distance = to[index] as i128 - start;
(start + distance * elapsed as i128 / duration as i128) as usize
})
}
fn pulse_level_at(tick: u128, period: u128, phase: u128) -> usize {
let position = (tick + phase) % period;
let half_period = period / 2;
let distance_from_floor = if position <= half_period {
position
} else {
period - position
};
(distance_from_floor * (PULSE_LEVELS.len() - 1) as u128 / half_period) as usize
}
fn push_wrapped(lines: &mut Vec<Line<'static>>, text: &str, width: usize, style: Style) {
let mut added = false;
for piece in wrap_text(text, width) {
lines.push(Line::styled(piece, style));
added = true;
}
if !added {
lines.push(Line::styled(String::new(), style));
}
}
fn push_spans_wrapped(lines: &mut Vec<Line<'static>>, segments: &[(String, Style)], width: usize) {
let mut current_spans: Vec<Span<'static>> = Vec::new();
let mut current_width = 0usize;
for (text, style) in segments {
for character in text.chars() {
let char_width = unicode_width::UnicodeWidthChar::width(character).unwrap_or(0);
if current_width + char_width > width && !current_spans.is_empty() {
lines.push(Line::from(std::mem::take(&mut current_spans)));
current_width = 0;
}
let mut buffer = [0u8; 4];
let s = character.encode_utf8(&mut buffer);
current_spans.push(Span::styled(s.to_owned(), *style));
current_width += char_width;
}
}
if current_spans.is_empty() {
current_spans.push(Span::raw(String::new()));
}
lines.push(Line::from(current_spans));
}
fn wrap_text(text: &str, width: usize) -> Vec<String> {
if width == 0 {
return text.lines().map(str::to_owned).collect();
}
let mut rows = Vec::new();
for line in text.split('\n') {
rows.extend(wrap_line(line, width));
}
if rows.is_empty() {
rows.push(String::new());
}
rows
}
fn wrap_line(line: &str, width: usize) -> Vec<String> {
let mut rows = Vec::new();
let mut current = String::new();
let mut current_width = 0usize;
for character in line.chars() {
let char_width = unicode_width::UnicodeWidthChar::width(character).unwrap_or(0);
if current_width + char_width > width && !current.is_empty() {
rows.push(std::mem::take(&mut current));
current_width = 0;
}
current.push(character);
current_width += char_width;
}
rows.push(current);
rows
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn turn_notifications_use_osc_777_with_fixed_secret_safe_messages() {
let cases = [
(TurnNotification::Completed, "Turn complete"),
(TurnNotification::Interrupted, "Turn interrupted"),
(TurnNotification::Failed, "Turn failed"),
];
for (notification, body) in cases {
let mut output = Vec::new();
send_turn_notification(&mut output, notification).expect("notification");
assert_eq!(
output,
format!("\x1b]777;notify;Lucy;{body}\x07").into_bytes()
);
}
}
#[test]
fn turn_notifications_follow_the_terminal_turn_status() {
assert_eq!(
turn_notification_for_status("finalizing"),
TurnNotification::Completed
);
assert_eq!(
turn_notification_for_status("cancelling"),
TurnNotification::Interrupted
);
assert_eq!(
turn_notification_for_status("error"),
TurnNotification::Failed
);
}
struct FailingWriter;
impl Write for FailingWriter {
fn write(&mut self, _buffer: &[u8]) -> io::Result<usize> {
Err(io::Error::other("notification sink unavailable"))
}
fn flush(&mut self) -> io::Result<()> {
Err(io::Error::other("notification sink unavailable"))
}
}
#[test]
fn notification_write_failure_does_not_keep_the_tui_busy() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.busy = true;
state.active_cancel = Some(CancellationToken::new());
let mut writer = FailingWriter;
release_finished_turn(&mut writer, &mut state);
assert!(!state.busy);
assert!(state.active_cancel.is_none());
}
#[test]
fn an_idle_finish_does_not_emit_a_duplicate_notification() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
let mut output = Vec::new();
release_finished_turn(&mut output, &mut state);
assert!(output.is_empty());
}
#[test]
fn context_status_shows_used_window_and_percentage() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_context(Some(100_000), 80_000);
assert_eq!(context_status_text(&state), "ctx=80.0K/100.0K (80%)");
assert_eq!(context_status_style(&state).fg, Some(Color::DarkGray));
state.context_tokens = 80_001;
assert_eq!(context_status_text(&state), "ctx=80.0K/100.0K (81%)");
assert_eq!(context_status_style(&state).fg, Some(PENDING_TOOL_COLOR));
}
#[test]
fn context_status_handles_unknown_window_without_highlighting() {
let state = UiState::from_history(&[], "secret", "model", None, false);
assert_eq!(context_status_text(&state), "ctx=1/? (?%)");
assert_eq!(context_status_style(&state).fg, Some(Color::DarkGray));
}
#[test]
fn tui_viewport_reserves_one_column_on_each_side_when_possible() {
assert_eq!(
tui_viewport(Rect::new(0, 0, 80, 10)),
Rect::new(1, 0, 78, 10)
);
assert_eq!(
tui_viewport(Rect::new(0, 0, 2, 10)),
Rect::new(0, 0, 2, 10),
"a two-column terminal cannot reserve two gutters"
);
}
#[test]
fn context_status_is_right_aligned_and_turns_orange_above_eighty_percent() {
let state =
UiState::from_history(&[], "secret", "model", None, false).with_context(Some(100), 81);
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(60, 10)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw statusline");
let buffer = terminal.backend().buffer();
let status_area = ui_layout(&state, tui_viewport(Rect::new(0, 0, 60, 10))).5;
let context = context_status_text(&state);
let context_start = status_area.x + status_area.width - context.chars().count() as u16;
let context_end = status_area.x + status_area.width - 1;
assert_eq!(buffer[(context_start, status_area.y)].symbol(), "c");
assert_eq!(buffer[(context_end, status_area.y)].symbol(), ")");
assert_eq!(buffer[(context_end, status_area.y)].fg, PENDING_TOOL_COLOR);
}
#[test]
fn activity_indicator_uses_only_contiguous_block_bars() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
assert_eq!(activity_text(&state), "▁▁▁▁▁");
state.set_status("working");
let working = activity_text(&state);
assert_eq!(working.chars().count(), 5);
assert!(working.chars().all(|bar| PULSE_LEVELS.contains(&bar)));
assert!(!working.chars().any(char::is_whitespace));
}
#[test]
fn activity_indicator_ramps_up_and_settles_down_one_level_per_tick() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.set_status("working");
let entry = state
.activity_transition
.clone()
.expect("working begins with a ramp");
let entry_frames = (0..=ACTIVITY_TRANSITION_DURATION.as_millis() / PULSE_TICK.as_millis())
.map(|tick| state.activity_levels_at(entry.started_at + PULSE_TICK * tick as u32))
.collect::<Vec<_>>();
assert_eq!(entry_frames.first(), Some(&[0; PULSE_BAR_PERIODS.len()]));
assert_eq!(entry_frames.last(), Some(&entry.to_levels));
assert_levels_change_gradually(&entry_frames, "working entry");
state.activity_transition = None;
state.activity_started_at = Instant::now() - PULSE_ENTRY_FRAME;
state.set_status("ready");
let exit = state
.activity_transition
.clone()
.expect("ready begins with a settle-down ramp");
let exit_frames = (0..=ACTIVITY_TRANSITION_DURATION.as_millis() / PULSE_TICK.as_millis())
.map(|tick| state.activity_levels_at(exit.started_at + PULSE_TICK * tick as u32))
.collect::<Vec<_>>();
assert_eq!(exit_frames.first(), Some(&exit.from_levels));
assert_eq!(exit_frames.last(), Some(&[0; PULSE_BAR_PERIODS.len()]));
assert_levels_change_gradually(&exit_frames, "ready exit");
assert!(exit_frames.windows(2).all(|pair| {
pair[0]
.iter()
.zip(pair[1])
.all(|(before, after)| after <= *before)
}));
let settled_at = exit.started_at + ACTIVITY_TRANSITION_DURATION;
let settled_text = activity_text_at(&state, settled_at);
let settled = activity_line_at(
&state,
&settled_text,
state.working_elapsed_at(settled_at),
settled_at,
);
assert_eq!(
settled.style.fg,
Some(Color::Cyan),
"the completed settle-down transition restores the ready colour"
);
}
fn assert_levels_change_gradually(
frames: &[[usize; PULSE_BAR_PERIODS.len()]],
transition: &str,
) {
assert!(
frames.windows(2).all(|pair| {
pair[0]
.iter()
.zip(pair[1])
.all(|(before, after)| before.abs_diff(after) <= 1)
}),
"{transition} must not jump more than one pulse level per rendered tick"
);
}
#[test]
fn pulse_spinner_moves_each_bar_one_level_at_a_time() {
let frames = (0..=240)
.map(|tick| spinner_frame_at(PULSE_TICK * tick))
.collect::<Vec<_>>();
assert!(frames.iter().any(|frame| frame != &frames[0]));
assert_eq!(PULSE_TICK, Duration::from_millis(50));
for pair in frames.windows(2) {
let levels = pair
.iter()
.map(|frame| {
frame
.chars()
.map(|bar| {
PULSE_LEVELS
.iter()
.position(|level| *level == bar)
.expect("known pulse level")
})
.collect::<Vec<_>>()
})
.collect::<Vec<_>>();
assert_eq!(levels[0].len(), 5);
assert!(
levels[0]
.iter()
.zip(&levels[1])
.all(|(before, after)| before.abs_diff(*after) <= 1),
"pulse bars must not jump between adjacent ticks: {:?} -> {:?}",
pair[0],
pair[1]
);
}
}
#[test]
fn working_activity_uses_a_continuous_warm_gradient() {
let text = "▁▅▆▆▃";
let colors = text
.chars()
.enumerate()
.map(|(index, _)| {
working_gradient_color_at(Duration::from_millis(2_500), index, text.chars().count())
})
.collect::<Vec<_>>();
assert_eq!(colors.first(), Some(&Color::Rgb(228, 40, 120)));
assert_eq!(colors.last(), Some(&Color::Rgb(232, 43, 89)));
assert!(colors.windows(2).all(|pair| pair[0] != pair[1]));
let (start, end, _) = working_gradient_colors_at(1.0);
assert_eq!(start, Color::Rgb(235, 45, 65));
assert_eq!(end, Color::Rgb(255, 130, 25));
let (start, end, _) = working_gradient_colors_at(3.0);
assert_eq!(start, Color::Rgb(235, 45, 65));
assert_eq!(end, Color::Rgb(220, 35, 175));
}
#[test]
fn queued_messages_render_above_the_prompt_border_with_their_existing_style() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.queue_user("first task");
state.queue_user("second task");
let area = Rect::new(0, 0, 80, 12);
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(area.width, area.height))
.expect("test terminal");
let mut rendered_area = Rect::default();
terminal
.draw(|frame| {
rendered_area = frame.area();
draw(frame, &state);
})
.expect("draw queued message");
let (_, _, _, queue_area, input_area, status_area) =
ui_layout(&state, tui_viewport(rendered_area));
let queue_area = queue_area.expect("message queue area");
assert_eq!(queue_area.x, input_area.x + 1);
assert_eq!(queue_area.y + queue_area.height, input_area.y);
assert_eq!(queue_area.width, input_area.width.saturating_sub(2));
assert_eq!(queue_area.height, 2, "each queued message owns one row");
let buffer = terminal.backend().buffer();
let queued_rows = (queue_area.y..queue_area.y + queue_area.height)
.map(|y| {
(queue_area.x..queue_area.x + queue_area.width)
.map(|x| buffer[(x, y)].symbol())
.collect::<String>()
})
.collect::<Vec<_>>();
let status_row = (status_area.x..status_area.x + status_area.width)
.map(|x| buffer[(x, status_area.y)].symbol())
.collect::<String>();
assert_eq!(buffer[(input_area.x, input_area.y)].symbol(), "┌");
assert_eq!(
buffer[(input_area.x + input_area.width - 1, input_area.y)].symbol(),
"┐"
);
assert!(queued_rows[0].contains("Queued 2: first task"));
assert!(queued_rows[1].contains("Queued 2: second task"));
assert!(queued_rows.iter().all(|row| !row.contains('|')));
for y in queue_area.y..queue_area.y + queue_area.height {
assert_eq!(buffer[(queue_area.x, y)].fg, QUEUED_MESSAGE_COLOR);
assert_eq!(
buffer[(queue_area.x + queue_area.width - 1, y)].bg,
QUEUED_MESSAGE_BACKGROUND,
"the dark teal background fills every queue row"
);
}
assert!(!status_row.contains("first task"));
assert!(!status_row.contains("second task"));
}
#[test]
fn ready_submission_bypasses_queue_and_is_not_added_twice_when_started() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.submit_user("send now");
assert!(state.queued_messages.is_empty());
assert_eq!(state.transcript.len(), 1);
assert!(matches!(
&state.transcript[0],
TranscriptItem::User { text, .. } if text == "send now"
));
state.start_queued_user("send now");
assert_eq!(state.transcript.len(), 1);
}
#[test]
fn busy_submission_remains_queued_until_its_turn_starts() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.busy = true;
state.submit_user("send later");
assert_eq!(state.queued_messages, ["send later"]);
assert!(state.transcript.is_empty());
state.start_queued_user("send later");
assert!(state.queued_messages.is_empty());
assert!(matches!(
&state.transcript[..],
[TranscriptItem::User { text, .. }] if text == "send later"
));
}
#[test]
fn skill_picker_stays_above_a_visible_message_queue() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(vec!["release-notes".to_owned()]);
state.queue_user("next task");
state.input = "/".to_owned();
state.input_changed();
let area = Rect::new(0, 0, 80, 12);
let (_, picker_area, _, queue_area, input_area, _) = ui_layout(&state, tui_viewport(area));
let picker_area = picker_area.expect("skill picker area");
let queue_area = queue_area.expect("message queue area");
assert_eq!(picker_area.y + picker_area.height, queue_area.y);
assert_eq!(queue_area.y + queue_area.height, input_area.y);
assert_eq!(queue_area.x, input_area.x + 1);
}
#[test]
fn fresh_sessions_show_the_versioned_gradient_welcome_message() {
let state = UiState::from_history(&[], "secret", "model", None, false);
assert!(state.welcome_visible);
let line = welcome_line();
assert_eq!(line.to_string(), WELCOME_MESSAGE);
assert_eq!(
line.spans.first().and_then(|span| span.style.fg),
Some(Color::Rgb(
WELCOME_START_COLOR.0,
WELCOME_START_COLOR.1,
WELCOME_START_COLOR.2,
))
);
assert_eq!(
line.spans.last().and_then(|span| span.style.fg),
Some(Color::Rgb(
WELCOME_END_COLOR.0,
WELCOME_END_COLOR.1,
WELCOME_END_COLOR.2,
))
);
}
#[test]
fn welcome_shows_the_tagline_and_attached_agents_paths() {
let state = UiState::from_history(&[], "secret", "model", None, false)
.with_attached_agents(vec![
"/workspace/AGENTS.md".to_owned(),
"/workspace/app/AGENTS.md".to_owned(),
]);
let lines = welcome_lines(&state.attached_agents);
assert_eq!(lines[1].to_string(), WELCOME_TAGLINE);
assert_eq!(lines[1].style.fg, Some(Color::DarkGray));
assert_eq!(lines[3].to_string(), "Attached AGENTS.md:");
assert_eq!(lines[4].to_string(), "• /workspace/AGENTS.md");
assert_eq!(lines[5].to_string(), "• /workspace/app/AGENTS.md");
assert!(lines[3..]
.iter()
.all(|line| line.style.fg == Some(Color::DarkGray)));
}
#[test]
fn welcome_reports_when_no_agents_file_is_attached() {
let lines = welcome_lines(&[]);
assert_eq!(
lines.last().expect("empty context line").to_string(),
"Attached AGENTS.md: none"
);
}
#[test]
fn resumed_sessions_do_not_show_the_welcome_message() {
let state = UiState::from_history(&[], "secret", "model", None, true);
assert!(!state.welcome_visible);
}
#[test]
fn history_replay_keeps_interruption_after_messages() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::user("hello".to_owned()),
},
SessionHistoryRecord::Interruption {
timestamp: 2,
reason: "user_cancelled".to_owned(),
phase: "provider_stream".to_owned(),
assistant_text: "partial".to_owned(),
tool_calls: Vec::new(),
tool_results: Vec::new(),
},
];
let state = UiState::from_history(&history, "provider-secret", "model", None, true);
assert!(matches!(state.transcript[0], TranscriptItem::User { .. }));
assert!(matches!(state.transcript[1], TranscriptItem::Assistant(_)));
assert!(matches!(state.transcript[2], TranscriptItem::Info(_)));
let text = transcript_lines(&state, 80)
.iter()
.map(ToString::to_string)
.collect::<Vec<_>>()
.join("\n");
assert!(!text.contains("choices"));
}
#[test]
fn history_replay_does_not_render_assistant_reasoning_details() {
let mut message = ChatMessage::assistant("visible answer".to_owned(), Vec::new());
message.reasoning_details = Some(vec![serde_json::json!({
"type": "reasoning.text",
"text": "private reasoning"
})]);
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message,
}];
let state = UiState::from_history(&history, "provider-secret", "model", None, true);
let text = transcript_lines(&state, 80)
.iter()
.map(ToString::to_string)
.collect::<Vec<_>>()
.join("\n");
assert!(text.contains("visible answer"));
assert!(!text.contains("private reasoning"));
assert!(!text.contains("reasoning_details"));
}
#[test]
fn history_replay_preserves_repeated_records() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant("same".to_owned(), Vec::new()),
},
SessionHistoryRecord::Interruption {
timestamp: 2,
reason: "user_cancelled".to_owned(),
phase: "provider_stream".to_owned(),
assistant_text: "same".to_owned(),
tool_calls: Vec::new(),
tool_results: Vec::new(),
},
];
let state = UiState::from_history(&history, "provider-secret", "model", None, true);
assert_eq!(
state
.transcript
.iter()
.filter(|item| matches!(item, TranscriptItem::Assistant(text) if text == "same"))
.count(),
2
);
}
#[test]
fn user_messages_have_a_single_block_rule_with_inner_and_vertical_padding() {
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::user("hello\nworld".to_owned()),
}];
let state = UiState::from_history(&history, "provider-secret", "model", None, false);
let lines = transcript_lines(&state, 12);
assert_eq!(UnicodeWidthStr::width(USER_BORDER_GLYPH), 1);
assert_eq!(lines.len(), 4);
assert_eq!(lines[0].to_string(), "▌");
assert_eq!(lines[1].to_string(), "▌ hello");
assert_eq!(lines[2].to_string(), "▌ world");
assert_eq!(lines[3].to_string(), "▌");
for line in &lines {
assert_eq!(line.spans[0].content, USER_BORDER_GLYPH);
assert_eq!(line.spans[0].style.fg, Some(USER_BORDER_COLOR));
assert!(!line.to_string().contains(['┌', '┐', '└', '┘', '│']));
}
for line in &lines[1..3] {
assert_eq!(line.spans[1].content, " ");
assert_eq!(line.spans[1].style.fg, Some(Color::White));
assert_eq!(line.spans[2].style.fg, Some(Color::White));
}
}
#[test]
fn attached_skill_highlights_its_trigger_in_the_user_message_without_a_notice_line() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(vec!["release-notes".to_owned()]);
state.add_user("/release-notes v1.2.0", "secret");
state.mark_latest_user_skill_attached();
let lines = transcript_lines(&state, 40);
assert_eq!(lines.len(), 3);
assert_eq!(lines[1].spans[1].content, " ");
let cyan_text = lines[1]
.spans
.iter()
.filter(|span| span.style.fg == Some(Color::Cyan))
.map(|span| span.content.as_ref())
.collect::<String>();
assert_eq!(cyan_text, "/release-notes");
assert!(!lines
.iter()
.any(|line| line.to_string().contains("instruction attached")));
}
#[test]
fn transcript_rendering_redacts_history_content() {
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant("provider-secret".to_owned(), Vec::new()),
}];
let state = UiState::from_history(&history, "provider-secret", "model", None, false);
let text = transcript_lines(&state, 80)
.iter()
.map(ToString::to_string)
.collect::<Vec<_>>()
.join("\n");
assert!(!text.contains("provider-secret"));
}
#[test]
fn mouse_wheel_disables_following_and_changes_scroll_offset() {
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::user("hello".to_owned()),
}];
let mut state = UiState::from_history(&history, "provider-secret", "model", None, false);
handle_mouse_event(&mut state, MouseEventKind::ScrollUp, 10);
assert!(!state.auto_scroll);
assert_eq!(state.scroll, 7);
handle_mouse_event(&mut state, MouseEventKind::ScrollDown, 10);
assert!(
state.auto_scroll,
"reaching the bottom resumes transcript following"
);
assert_eq!(state.scroll, 0);
scroll_up(&mut state, 10);
assert!(!state.auto_scroll);
assert_eq!(state.scroll, 7);
}
#[test]
fn wrap_text_breaks_long_lines_and_preserves_empty_lines() {
let rows = wrap_text("12345\n\nabc", 3);
assert_eq!(rows, vec!["123", "45", "", "abc"]);
}
#[test]
fn wrap_line_never_returns_an_empty_vec() {
assert_eq!(wrap_line("", 5), vec![""]);
assert_eq!(wrap_line("abc", 5), vec!["abc"]);
}
#[test]
fn completion_event_does_not_release_input_before_worker_finishes() {
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::user("hello".to_owned()),
}];
let mut state = UiState::from_history(&history, "provider-secret", "model", None, false);
state.busy = true;
state.active_cancel = Some(CancellationToken::new());
state.apply_event(ProtocolEvent::TurnEnd);
assert!(state.busy);
assert!(state.active_cancel.is_some());
assert_eq!(state.status, "finalizing");
}
#[test]
fn transcript_inserts_a_blank_line_between_items() {
let history = [
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::user("hi".to_owned()),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::assistant("hello".to_owned(), Vec::new()),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
let lines = transcript_lines(&state, 80);
assert_eq!(lines.len(), 5);
assert_eq!(lines[0].to_string(), "▌");
assert_eq!(lines[1].to_string(), "▌ hi");
assert_eq!(lines[2].to_string(), "▌");
assert_eq!(lines[3].to_string(), "");
assert_eq!(lines[4].to_string(), "hello");
}
#[test]
fn cmd_call_renders_as_a_compact_status_line_without_raw_json() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-1".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"pwd"}"#.to_owned(),
}],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-1".to_owned(),
"cmd".to_owned(),
serde_json::json!({"exit_code": 0, "stdout": "secret output"}).to_string(),
),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
let text = transcript_lines(&state, 80)[0].to_string();
assert_eq!(text, "✓ cmd $ pwd");
assert!(!text.contains("secret output"));
assert!(!text.contains("{\"command\":\"pwd\"}"));
}
#[test]
fn pending_cmd_calls_use_a_compact_running_status() {
let history = [SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-1".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"pwd"}"#.to_owned(),
}],
),
}];
let state = UiState::from_history(&history, "secret", "model", None, false);
let line = &transcript_lines(&state, 80)[0];
let text = line.to_string();
let prefix = "· cmd $ pwd ";
assert!(text.starts_with(prefix));
assert!(!text.contains("→ running"));
let frame = &text[prefix.len()..];
assert_eq!(frame.chars().count(), 1);
assert!(frame
.chars()
.all(|spinner| TOOL_SPINNER_FRAMES.contains(&spinner)));
assert!(line
.spans
.iter()
.all(|span| span.style.fg == Some(PENDING_TOOL_COLOR)));
}
#[test]
fn running_tool_indicators_use_a_traditional_spinner_with_their_own_clock() {
assert_eq!(tool_spinner_frame_at(Duration::ZERO), '|');
assert_eq!(tool_spinner_frame_at(TOOL_SPINNER_FRAME_DURATION), '/');
assert_eq!(tool_spinner_frame_at(TOOL_SPINNER_FRAME_DURATION * 2), '-');
assert_eq!(tool_spinner_frame_at(TOOL_SPINNER_FRAME_DURATION * 3), '\\');
let state = UiState::from_history(&[], "secret", "model", None, false);
let spinner = running_tool_status(&state);
assert_eq!(spinner.chars().count(), 1);
assert!(spinner
.chars()
.all(|spinner| TOOL_SPINNER_FRAMES.contains(&spinner)));
assert!(
subagent_status_display(SubagentStatus::Running, &state).starts_with("running "),
"the background-task list uses the same spinner"
);
}
#[test]
fn successful_cmd_sweeps_from_orange_to_green_left_to_right() {
let started_at = Instant::now();
let character_count = 12;
let halfway = started_at + Duration::from_millis(175);
assert_eq!(
cmd_success_color_at(started_at, started_at, 0, character_count),
PENDING_TOOL_COLOR,
"a new success must retain the pending orange at the sweep start"
);
assert_eq!(
cmd_success_color_at(started_at, halfway, 0, character_count),
Color::Rgb(
TOOL_SUCCESS_GREEN_RGB.0,
TOOL_SUCCESS_GREEN_RGB.1,
TOOL_SUCCESS_GREEN_RGB.2,
),
"the left edge completes before the rest of the line"
);
assert_eq!(
cmd_success_color_at(started_at, halfway, 9, character_count),
PENDING_TOOL_COLOR,
"the right edge remains orange until the sweep reaches it"
);
assert_eq!(
cmd_success_color_at(
started_at,
started_at + TOOL_SUCCESS_SWEEP_DURATION,
9,
character_count,
),
Color::Green,
"the completed sweep settles on the existing success green"
);
}
#[test]
fn only_live_successful_cmd_results_start_a_success_sweep() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
let succeeded = serde_json::json!({"exit_code": 0});
state.add_tool_result("historic", "cmd", succeeded.clone());
state.add_live_tool_result("success", "cmd", succeeded);
state.add_live_tool_result("failed", "cmd", serde_json::json!({"exit_code": 1}));
assert!(!state.cmd_success_started_at.contains_key("historic"));
assert!(state.cmd_success_started_at.contains_key("success"));
assert!(!state.cmd_success_started_at.contains_key("failed"));
}
#[test]
fn cmd_status_distinguishes_nonzero_exit_timeout_and_cancellation() {
let cases = [
(
serde_json::json!({"exit_code": 127}),
"× cmd $ bad → exit 127",
),
(
serde_json::json!({"timed_out": true, "exit_code": null}),
"! cmd $ slow → timeout",
),
(
serde_json::json!({"canceled": true}),
"! cmd $ stop → canceled",
),
];
for (result, expected) in cases {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-1".to_owned(),
name: "cmd".to_owned(),
arguments: serde_json::json!({"command": expected.split("$ ").nth(1).unwrap().split(" ").next().unwrap()}).to_string(),
}],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-1".to_owned(),
"cmd".to_owned(),
result.to_string(),
),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
assert_eq!(transcript_lines(&state, 80)[0].to_string(), expected);
}
}
#[test]
fn cmd_line_truncates_long_commands_but_never_renders_output() {
let command = "a".repeat(80);
let arguments = serde_json::json!({"command": command}).to_string();
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-1".to_owned(),
name: "cmd".to_owned(),
arguments,
}],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-1".to_owned(),
"cmd".to_owned(),
serde_json::json!({"exit_code": 0, "stdout": "output"}).to_string(),
),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
let text = transcript_lines(&state, 200)[0].to_string();
assert!(text.contains(&format!("$ {}…", "a".repeat(50))));
assert!(!text.contains(&"a".repeat(51)));
assert!(!text.contains("output"));
}
#[test]
fn cmd_lines_remain_compact_for_consecutive_calls() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![
crate::model::ChatToolCall {
id: "call-first".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"first"}"#.to_owned(),
},
crate::model::ChatToolCall {
id: "call-second".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"second"}"#.to_owned(),
},
],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-first".to_owned(),
"cmd".to_owned(),
serde_json::json!({"exit_code": 0}).to_string(),
),
},
SessionHistoryRecord::Message {
timestamp: 3,
message: ChatMessage::tool(
"call-second".to_owned(),
"cmd".to_owned(),
serde_json::json!({"exit_code": 0}).to_string(),
),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
let lines = transcript_lines(&state, 200);
assert_eq!(lines[0].to_string(), "✓ cmd $ first");
assert_eq!(lines[2].to_string(), "✓ cmd $ second");
}
#[test]
fn cmd_status_styles_use_success_failure_and_pending_colors() {
assert_eq!(
cmd_result_status(&serde_json::json!({"exit_code": 0})).2.fg,
Some(Color::Green)
);
assert_eq!(
cmd_result_status(&serde_json::json!({"exit_code": 1})).2.fg,
Some(Color::Red)
);
assert_eq!(
cmd_tool_segments(
"call-1",
"{\"command\":\"pwd\"}",
None,
&UiState::from_history(&[], "secret", "model", None, false)
)[0]
.1
.fg,
Some(PENDING_TOOL_COLOR)
);
}
#[test]
fn recognized_skill_trigger_is_highlighted_but_arguments_remain_default_colored() {
let trigger = active_skill_trigger("/release-notes v1.2.0", &["release-notes".to_owned()]);
assert_eq!(trigger, Some("/release-notes"));
let lines = styled_text_lines(
"/release-notes v1.2.0",
trigger,
80,
Style::default().fg(Color::White),
);
assert_eq!(lines.len(), 1);
assert_eq!(lines[0].to_string(), "/release-notes v1.2.0");
assert_eq!(lines[0].spans[0].content, "/release-notes");
assert_eq!(lines[0].spans[0].style.fg, Some(Color::Cyan));
assert_eq!(lines[0].spans[1].content, " v1.2.0");
assert_eq!(lines[0].spans[1].style.fg, Some(Color::White));
}
#[test]
fn draw_renders_an_active_skill_trigger_in_cyan() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(vec!["release-notes".to_owned()]);
state.input = "/release-notes v1.2.0".to_owned();
state.cursor = state.input.chars().count();
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(40, 10)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw input");
let buffer = terminal.backend().buffer();
let (_, _, _, _, input_area, _) = ui_layout(&state, tui_viewport(Rect::new(0, 0, 40, 10)));
let input_x = input_area.x + 1;
let input_y = input_area.y + 1;
assert_eq!(buffer[(input_x, input_y)].fg, Color::Cyan);
assert_eq!(
buffer[(input_x + "/release-notes".chars().count() as u16, input_y)].fg,
Color::White
);
}
#[test]
fn main_agent_status_is_in_the_bottom_status_line_below_the_prompt_gradient() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
let area = Rect::new(0, 0, 80, 10);
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(area.width, area.height))
.expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw ready status");
let (_, _, _, _, input_area, status_area) = ui_layout(&state, tui_viewport(area));
let buffer = terminal.backend().buffer();
let activity_width = UnicodeWidthStr::width(activity_text(&state).as_str()) as u16;
let activity_start = status_area.x
+ status_area
.width
.saturating_sub(activity_width)
.saturating_add(1)
/ 2;
let rendered_status = (activity_start..activity_start + activity_width)
.map(|x| buffer[(x, status_area.y)].symbol())
.collect::<String>();
assert_eq!(rendered_status, activity_text(&state));
let left_status = (status_area.x..activity_start)
.map(|x| buffer[(x, status_area.y)].symbol())
.collect::<String>();
assert!(left_status.contains("model (default)"));
assert_eq!(
buffer[(activity_start - 1, status_area.y)].symbol(),
" ",
"the READY indicator uses five lowest bars without text"
);
let viewport = tui_viewport(area);
assert_eq!(
input_area.x, viewport.x,
"the prompt begins after the left TUI gutter"
);
assert_eq!(input_area.width, viewport.width);
assert_eq!(input_area.y + input_area.height, status_area.y);
assert_eq!(
buffer[(activity_start, status_area.y)].fg,
activity_style_at(&state, Duration::ZERO)
.fg
.expect("ready status colour")
);
state.input = "first\nsecond\nthird".to_owned();
state.cursor = state.input.chars().count();
terminal
.draw(|frame| draw(frame, &state))
.expect("draw multiline ready status");
let (_, _, _, _, input_area, status_area) = ui_layout(&state, tui_viewport(area));
let buffer = terminal.backend().buffer();
assert!(
input_area.height > 3,
"the prompt should have grown vertically"
);
assert_eq!(
(activity_start..activity_start + activity_width)
.map(|x| buffer[(x, status_area.y)].symbol())
.collect::<String>(),
"▁▁▁▁▁",
"the READY bars remain centered as the prompt grows"
);
assert_eq!(input_area.y + input_area.height, status_area.y);
state.set_status("working");
state.busy = true;
terminal
.draw(|frame| draw(frame, &state))
.expect("draw working status");
let (_, _, _, _, _input_area, status_area) = ui_layout(&state, tui_viewport(area));
let buffer = terminal.backend().buffer();
let activity_width = UnicodeWidthStr::width(activity_text(&state).as_str()) as u16;
let activity_start = status_area.x
+ status_area
.width
.saturating_sub(activity_width)
.saturating_add(1)
/ 2;
assert_eq!(
buffer[(activity_start, status_area.y)].fg,
activity_style_at(&state, Duration::ZERO)
.fg
.expect("working status colour")
);
assert!(
PULSE_LEVELS.contains(
&buffer[(activity_start, status_area.y)]
.symbol()
.chars()
.next()
.expect("pulse bar")
),
"the pulse indicator begins at the exact status-line center"
);
}
#[test]
fn cjk_input_keeps_the_terminal_cursor_in_the_prompt_without_resetting_activity() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.set_status("working");
state.busy = true;
state.input = "한글".to_owned();
state.cursor = state.input.chars().count();
let activity_started_at = state.activity_started_at;
let tool_animation_epoch = state.tool_animation_epoch;
let sample_at = Instant::now();
let activity_before = state.activity_levels_at(sample_at);
state.input_changed();
assert_eq!(state.activity_started_at, activity_started_at);
assert_eq!(state.tool_animation_epoch, tool_animation_epoch);
assert_eq!(state.activity_levels_at(sample_at), activity_before);
let area = Rect::new(0, 0, 80, 10);
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(area.width, area.height))
.expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw CJK input while working");
let (_, _, _, _, input_area, status_area) = ui_layout(&state, tui_viewport(area));
assert_ne!(input_area.y, status_area.y);
terminal.backend_mut().assert_cursor_position((
input_area.x + 1 + UnicodeWidthStr::width(state.input.as_str()) as u16,
input_area.y + 1,
));
}
#[test]
fn input_border_has_a_teal_to_green_gradient_and_keeps_the_cursor() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(80, 10)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw ready input");
let (_, _, _, _, input_area, _) = ui_layout(&state, tui_viewport(Rect::new(0, 0, 80, 10)));
let buffer = terminal.backend().buffer();
assert_eq!(buffer[(0, input_area.y)].symbol(), " ");
assert_eq!(buffer[(79, input_area.y)].symbol(), " ");
assert_eq!(
buffer[(input_area.x, input_area.y)].fg,
Color::Rgb(
PROMPT_BORDER_START_COLOR.0,
PROMPT_BORDER_START_COLOR.1,
PROMPT_BORDER_START_COLOR.2,
)
);
assert_eq!(
buffer[(
input_area.x + input_area.width.saturating_sub(1),
input_area.y
)]
.fg,
Color::Rgb(
PROMPT_BORDER_END_COLOR.0,
PROMPT_BORDER_END_COLOR.1,
PROMPT_BORDER_END_COLOR.2,
)
);
assert_eq!(
buffer[(input_area.x, input_area.y + 1)].fg,
Color::Rgb(
PROMPT_BORDER_START_COLOR.0,
PROMPT_BORDER_START_COLOR.1,
PROMPT_BORDER_START_COLOR.2,
),
"the left side uses the teal endpoint"
);
assert_eq!(
buffer[(
input_area.x + input_area.width.saturating_sub(1),
input_area.y + 1,
)]
.fg,
Color::Rgb(
PROMPT_BORDER_END_COLOR.0,
PROMPT_BORDER_END_COLOR.1,
PROMPT_BORDER_END_COLOR.2,
),
"the right side uses the green endpoint"
);
assert_ne!(
prompt_border_gradient_color_at(input_area.width / 2, input_area.width),
Color::Rgb(
PROMPT_BORDER_START_COLOR.0,
PROMPT_BORDER_START_COLOR.1,
PROMPT_BORDER_START_COLOR.2,
),
"middle border cells interpolate away from teal"
);
assert_ne!(
prompt_border_gradient_color_at(input_area.width / 2, input_area.width),
Color::Rgb(
PROMPT_BORDER_END_COLOR.0,
PROMPT_BORDER_END_COLOR.1,
PROMPT_BORDER_END_COLOR.2,
),
"middle border cells interpolate before green"
);
assert_eq!(
buffer[(input_area.x, input_area.y)].symbol(),
"┌",
"the prompt uses square rather than rounded corners"
);
assert_eq!(
buffer[(
input_area.x + input_area.width.saturating_sub(1),
input_area.y + input_area.height.saturating_sub(1),
)]
.symbol(),
"┘"
);
assert_eq!(buffer[(input_area.x + 1, input_area.y + 1)].symbol(), " ");
assert_eq!(input_display_text(&state), "");
terminal
.backend_mut()
.assert_cursor_position((input_area.x + 1, input_area.y + 1));
state.busy = true;
state.set_status("working");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw working input");
let (_, _, _, _, input_area, _) = ui_layout(&state, tui_viewport(Rect::new(0, 0, 80, 10)));
let buffer = terminal.backend().buffer();
assert_eq!(
buffer[(input_area.x, input_area.y)].fg,
Color::Rgb(
PROMPT_BORDER_START_COLOR.0,
PROMPT_BORDER_START_COLOR.1,
PROMPT_BORDER_START_COLOR.2,
),
"working state preserves the teal endpoint"
);
assert_eq!(
buffer[(
input_area.x + input_area.width.saturating_sub(1),
input_area.y
)]
.fg,
Color::Rgb(
PROMPT_BORDER_END_COLOR.0,
PROMPT_BORDER_END_COLOR.1,
PROMPT_BORDER_END_COLOR.2,
),
"working state preserves the green endpoint"
);
state.input = "queued message".to_owned();
assert_eq!(input_display_text(&state), "queued message");
}
#[test]
fn only_known_leading_skill_commands_activate_input_highlighting() {
let skills = ["release-notes".to_owned()];
assert_eq!(
active_skill_trigger("/missing", &skills),
None,
"unknown commands are rejected by the turn engine and must not look active"
);
assert_eq!(
active_skill_trigger("/skill:release-notes", &skills),
None,
"the removed /skill: wrapper must not look active"
);
assert_eq!(
active_skill_trigger("write /release-notes", &skills),
None,
"only the command prefix accepted by the turn engine is active"
);
assert_eq!(active_skill_trigger("/", &skills), None);
}
#[test]
fn highlighted_skill_trigger_remains_styled_when_wrapped() {
let input = "/release-notes argument";
let trigger = active_skill_trigger(input, &["release-notes".to_owned()]);
let lines = styled_text_lines(input, trigger, 8, Style::default().fg(Color::White));
let highlighted = lines
.iter()
.flat_map(|line| line.spans.iter())
.filter(|span| span.style.fg == Some(Color::Cyan))
.map(|span| span.content.as_ref())
.collect::<String>();
assert_eq!(highlighted, "/release-notes");
}
#[test]
fn input_has_no_prompt_marker_and_trailing_newline_is_visible() {
assert_eq!(input_prompt("hello"), "hello");
assert_eq!(wrap_text("hello\n", 80), vec!["hello", ""]);
}
#[test]
fn input_prompt_wraps_to_multiple_rows_when_long() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.input = "abcdefghij".to_owned();
let rows = input_visible_rows(&state, 5);
assert!(rows >= 2);
}
#[test]
fn cursor_editing_moves_by_characters_and_preserves_unicode() {
let mut input = "가나".to_owned();
let mut cursor = input.chars().count();
cursor -= 1;
insert_at_cursor(&mut input, &mut cursor, 'x');
assert_eq!(input, "가x나");
assert_eq!(cursor, 2);
assert!(remove_before_cursor(&mut input, &mut cursor));
assert_eq!(input, "가나");
assert_eq!(cursor, 1);
}
#[test]
fn cursor_row_tracks_newlines_and_wrapping() {
assert_eq!(cursor_row("hello\nworld", 6, 80), 1);
assert_eq!(cursor_row("abcdef", 4, 3), 1);
}
#[test]
fn shift_enter_inserts_at_the_cursor_and_moves_it_to_the_new_row() {
let mut input = "beforeafter".to_owned();
let mut cursor = 6;
insert_at_cursor(&mut input, &mut cursor, '\n');
assert_eq!(input, "before\nafter");
assert_eq!(cursor, 7);
assert_eq!(cursor_row(&input, cursor, 80), 1);
}
#[test]
fn shift_enter_renders_the_cursor_on_the_new_input_row() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.input = "beforeafter".to_owned();
state.cursor = 6;
insert_at_cursor(&mut state.input, &mut state.cursor, '\n');
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(20, 10)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw input cursor");
let (_, _, _, _, input_area, _) = ui_layout(&state, tui_viewport(Rect::new(0, 0, 20, 10)));
terminal
.backend_mut()
.assert_cursor_position((input_area.x + 1, input_area.y + 2));
}
#[test]
fn tool_results_attach_to_their_matching_call_after_consecutive_calls() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![
crate::model::ChatToolCall {
id: "call-first".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"first"}"#.to_owned(),
},
crate::model::ChatToolCall {
id: "call-second".to_owned(),
name: "cmd".to_owned(),
arguments: r#"{"command":"second"}"#.to_owned(),
},
],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-first".to_owned(),
"cmd".to_owned(),
serde_json::json!({"stdout":"first result","stderr":""}).to_string(),
),
},
SessionHistoryRecord::Message {
timestamp: 3,
message: ChatMessage::tool(
"call-second".to_owned(),
"cmd".to_owned(),
serde_json::json!({"stdout":"second result","stderr":""}).to_string(),
),
},
];
let state = UiState::from_history(&history, "secret", "model", None, false);
let lines = transcript_lines(&state, 200);
assert_eq!(
lines.len(),
3,
"only the two call lines and their separator remain"
);
assert_eq!(lines[0].to_string(), "✓ cmd $ first");
assert_eq!(lines[2].to_string(), "✓ cmd $ second");
}
#[test]
fn subagent_tasks_keep_metadata_until_completion_then_leave_live_list() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-worker".to_owned(),
name: "spawn_subagent".to_owned(),
arguments: serde_json::json!({
"task": "Inspect the command UI",
"model": "worker-model",
"effort": "high"
})
.to_string(),
}],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-worker".to_owned(),
"spawn_subagent".to_owned(),
serde_json::json!({"task_id":"subagent-1","status":"queued"}).to_string(),
),
},
];
let mut state = UiState::from_history(&history, "secret", "model", None, false);
assert_eq!(state.subagents.len(), 1);
let task = &state.subagents[0];
assert_eq!(task.task, "Inspect the command UI");
assert_eq!(task.task_id.as_deref(), Some("subagent-1"));
assert_eq!(task.model.as_deref(), Some("worker-model"));
assert_eq!(task.effort.as_deref(), Some("high"));
assert_eq!(task.status, SubagentStatus::Running);
assert!(transcript_lines(&state, 80)[0]
.to_string()
.contains("↗ subagent Inspect the command UI "));
assert!(!transcript_lines(&state, 80)[0]
.to_string()
.contains("→ running"));
state.complete_subagent(
"subagent-1",
serde_json::json!({"model":"worker-model","output":"finished"}),
);
assert!(
state.subagents.is_empty(),
"completed workers are removed from the live background-task list"
);
let completed_line = transcript_lines(&state, 80)[0].to_string();
assert!(completed_line.contains("Inspect the command UI"));
assert!(completed_line.contains("→ completed"));
assert!(!completed_line.contains("{\"task\""));
}
#[test]
fn resumed_subagent_completion_clears_the_live_list_without_rendering_internal_prompt() {
let history = vec![
SessionHistoryRecord::Message {
timestamp: 1,
message: ChatMessage::assistant(
String::new(),
vec![crate::model::ChatToolCall {
id: "call-worker".to_owned(),
name: "spawn_subagent".to_owned(),
arguments: serde_json::json!({"task":"Inspect"}).to_string(),
}],
),
},
SessionHistoryRecord::Message {
timestamp: 2,
message: ChatMessage::tool(
"call-worker".to_owned(),
"spawn_subagent".to_owned(),
serde_json::json!({"task_id":"subagent-1","status":"queued"}).to_string(),
),
},
SessionHistoryRecord::Message {
timestamp: 3,
message: ChatMessage::user(Harness::subagent_notification(
&crate::app::SubagentCompletion {
task_id: "subagent-1".to_owned(),
result: serde_json::json!({"output":"resumed result"}),
},
)),
},
];
let state = UiState::from_history(&history, "secret", "model", None, true);
assert!(
state.subagents.is_empty(),
"a completed worker is not restored into the live background-task list"
);
assert!(!state.transcript.iter().any(|item| {
matches!(item, TranscriptItem::User { text, .. } if text.contains("Background subagent"))
}));
}
#[test]
fn subagent_overlay_is_upper_right_one_third_wide_and_grows_per_task() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
for task_id in ["subagent-1", "subagent-2", "subagent-3"] {
state.subagents.push(SubagentTask {
call_id: format!("call-{task_id}"),
task_id: Some(task_id.to_owned()),
task: format!("Inspect {task_id}"),
model: None,
effort: None,
status: SubagentStatus::Queued,
result: None,
});
}
let area = Rect::new(0, 0, 120, 20);
let overlay = subagent_overlay_area(&state, area).expect("subagent overlay");
assert_eq!(overlay, Rect::new(80, 0, 40, 5));
let (chat, _, layout_overlay, _, input, status) = ui_layout(&state, area);
assert_eq!(layout_overlay, Some(overlay));
assert_eq!(chat.height, 16);
assert_eq!(input.y, 16);
assert_eq!(status.y, 19);
let empty = UiState::from_history(&[], "secret", "model", None, false);
assert_eq!(subagent_overlay_area(&empty, area), None);
}
#[test]
fn subagent_overlay_stays_above_the_picker_without_breaking_its_left_border() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(vec!["alpha".to_owned()]);
state.input = "/".to_owned();
for index in 0..14 {
state.subagents.push(SubagentTask {
call_id: format!("call-{index}"),
task_id: Some(format!("subagent-{index}")),
task: format!("Inspect task {index}"),
model: None,
effort: None,
status: SubagentStatus::Queued,
result: None,
});
}
let full_area = Rect::new(0, 0, 120, 20);
let area = tui_viewport(full_area);
let (_, picker_area, overlay_area, _, _, _) = ui_layout(&state, area);
let picker_area = picker_area.expect("skill picker");
let overlay_area = overlay_area.expect("subagent overlay");
assert!(
picker_area.y > overlay_area.y && picker_area.y < overlay_area.y + overlay_area.height,
"the picker must overlap the task overlay for this layering check"
);
let mut terminal = Terminal::new(ratatui::backend::TestBackend::new(
full_area.width,
full_area.height,
))
.expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw overlapping picker and overlay");
let buffer = terminal.backend().buffer();
assert_eq!(buffer[(overlay_area.x, overlay_area.y)].symbol(), "┌");
assert_eq!(
buffer[(overlay_area.x, picker_area.y)].symbol(),
"│",
"the later picker render must not cut through the overlay left border"
);
assert_eq!(
buffer[(overlay_area.x, picker_area.y)].bg,
SUBAGENT_OVERLAY_BACKGROUND
);
}
#[test]
fn subagent_overlay_uses_magenta_one_line_indicators_without_status_words() {
let mut state = UiState::from_history(&[], "provider-secret", "model", None, false);
state.subagents.push(SubagentTask {
call_id: "call-worker".to_owned(),
task_id: Some("subagent-1".to_owned()),
task: "Inspect the command UI".to_owned(),
model: Some("worker-model".to_owned()),
effort: Some("high".to_owned()),
status: SubagentStatus::Running,
result: None,
});
let full_area = Rect::new(0, 0, 120, 20);
let area = tui_viewport(full_area);
let overlay = subagent_overlay_area(&state, area).expect("subagent overlay");
let mut terminal = Terminal::new(ratatui::backend::TestBackend::new(
full_area.width,
full_area.height,
))
.expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw subagent overlay");
assert_eq!(overlay.width, area.width / 3);
assert_eq!(overlay.x + overlay.width, area.x + area.width);
assert_eq!(overlay.y, area.y);
assert_eq!(overlay.height, 3, "one task plus the two border rows");
let buffer = terminal.backend().buffer();
let screen = buffer
.content()
.iter()
.map(|cell| cell.symbol())
.collect::<String>();
assert!(screen.contains("Subagents"));
assert!(screen.contains("Inspect the command UI"));
assert!(!screen.contains("running"));
assert!(!screen.contains("working"));
assert!(!screen.contains("workers"));
assert!(!screen.contains("subagent-1"));
assert!(!screen.contains("worker-model"));
assert!(!screen.contains("provider-secret"));
assert_eq!(
buffer[(overlay.x + 1, overlay.y + 1)].fg,
SUBAGENT_OVERLAY_COLOR
);
assert_eq!(
buffer[(overlay.x + 1, overlay.y + 1)].bg,
SUBAGENT_OVERLAY_BACKGROUND
);
assert_eq!(
buffer[(overlay.x, overlay.y)].bg,
SUBAGENT_OVERLAY_BACKGROUND
);
assert_eq!(
buffer[(overlay.x, overlay.y)].symbol(),
"┌",
"the upper-left corner remains visible above other TUI layers"
);
assert_eq!(
buffer[(overlay.x, overlay.y + 1)].symbol(),
"│",
"the left border remains continuous below the corner"
);
}
}
#[cfg(test)]
mod skill_picker_tests {
use super::*;
fn skill_names() -> Vec<String> {
["alpha", "beta", "build", "charlie", "deploy", "doctor"]
.into_iter()
.map(str::to_owned)
.collect()
}
#[test]
fn built_in_commands_share_the_slash_catalog_without_becoming_skills() {
assert_eq!(
command_names(vec!["release-notes".to_owned(), "settings".to_owned()]),
vec!["exit", "release-notes", "settings"]
);
assert_eq!(
builtin_command("/settings ignored arguments"),
Some(BuiltinCommand::Settings)
);
assert_eq!(builtin_command(" /exit "), Some(BuiltinCommand::Exit));
assert_eq!(builtin_command("/settings-extra"), None);
}
#[test]
fn settings_viewport_follows_focus_instead_of_truncating_the_catalog_head() {
assert_eq!(selection_range(30, 0, 12), 0..12);
assert_eq!(selection_range(30, 11, 12), 0..12);
assert_eq!(selection_range(30, 12, 12), 1..13);
assert_eq!(selection_range(30, 29, 12), 18..30);
}
#[test]
fn model_selection_uses_advertised_efforts_and_preserves_the_current_choice() {
let mut state = UiState::from_history(&[], "secret", "old", Some("medium"), false);
state.open_catalog(Ok(vec![ProviderModel {
id: "openai/gpt-5.6-sol".to_owned(),
efforts: Some(vec![
"max".to_owned(),
"high".to_owned(),
"medium".to_owned(),
"low".to_owned(),
]),
}]));
state.handle_settings_key(&KeyEvent::new(KeyCode::Enter, KeyModifiers::NONE));
let SettingsState::Effort { model, focus, .. } =
state.settings.as_ref().expect("effort picker")
else {
panic!("model selection should open the effort picker");
};
assert_eq!(model.id, "openai/gpt-5.6-sol");
assert_eq!(*focus, 3, "default occupies index zero before medium");
let selected = state
.handle_settings_key(&KeyEvent::new(KeyCode::Enter, KeyModifiers::NONE))
.expect("effort selection");
assert_eq!(
selected,
("openai/gpt-5.6-sol".to_owned(), Some("medium".to_owned()))
);
}
#[test]
fn effort_default_selection_does_not_shift_to_the_first_advertised_effort() {
let mut state = UiState::from_history(&[], "secret", "old", None, false);
state.open_catalog(Ok(vec![ProviderModel {
id: "model".to_owned(),
efforts: Some(vec!["high".to_owned(), "low".to_owned()]),
}]));
state.handle_settings_key(&KeyEvent::new(KeyCode::Enter, KeyModifiers::NONE));
let selected = state
.handle_settings_key(&KeyEvent::new(KeyCode::Enter, KeyModifiers::NONE))
.expect("default effort selection");
assert_eq!(selected, ("model".to_owned(), None));
}
#[test]
fn reasoning_indicator_changes_to_complete_and_stays_dark_gray() {
let mut state = UiState::from_history(&[], "secret", "model", None, false);
state.show_thinking();
let active_lines = transcript_lines(&state, 80);
let active = active_lines.last().expect("reasoning line");
assert!(active.to_string().starts_with("Reasoning... "));
assert_eq!(active.style.fg, Some(Color::DarkGray));
state.complete_reasoning();
let complete_lines = transcript_lines(&state, 80);
let complete = complete_lines.last().expect("complete line");
assert_eq!(complete.to_string(), "Reasoning Complete");
assert_eq!(complete.style.fg, Some(Color::DarkGray));
}
#[test]
fn slash_picker_filters_only_leading_command_text_and_hides_without_matches() {
let names = skill_names();
assert_eq!(
matching_skill_names("/", &names),
vec!["alpha", "beta", "build", "charlie", "deploy", "doctor"]
);
assert_eq!(matching_skill_names("/b", &names), vec!["beta", "build"]);
assert!(matching_skill_names("/missing", &names).is_empty());
assert!(matching_skill_names("message /b", &names).is_empty());
assert!(matching_skill_names("/beta arguments", &names).is_empty());
}
#[test]
fn slash_picker_focuses_the_top_match_and_moves_within_filtered_results() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(skill_names());
state.input = "/b".to_owned();
state.input_changed();
assert!(state.skill_picker_visible());
assert_eq!(state.skill_picker_focus, 0);
assert!(state.move_skill_picker(true));
assert_eq!(state.skill_picker_focus, 1);
assert!(state.move_skill_picker(true));
assert_eq!(state.skill_picker_focus, 1, "focus does not leave the list");
assert!(state.move_skill_picker(false));
assert_eq!(state.skill_picker_focus, 0);
state.input = "/missing".to_owned();
state.input_changed();
assert!(!state.skill_picker_visible());
assert!(!state.move_skill_picker(true));
}
#[test]
fn focused_builtins_are_distinguished_from_skills() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(command_names(skill_names()));
state.input = "/se".to_owned();
state.input_changed();
assert_eq!(
state.focused_builtin_command(),
Some(BuiltinCommand::Settings)
);
state.input = "/be".to_owned();
state.input_changed();
assert_eq!(state.focused_builtin_command(), None);
}
#[test]
fn selecting_the_focused_skill_leaves_the_completed_command_ready_to_send() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(skill_names());
state.input = "/b".to_owned();
state.input_changed();
state.move_skill_picker(true);
assert!(state.select_focused_skill());
assert_eq!(state.input, "/build");
assert_eq!(state.cursor, "/build".chars().count());
assert!(
!state.skill_picker_visible(),
"the first Enter completes the input rather than sending it"
);
assert!(
!state.select_focused_skill(),
"a second Enter follows the normal send/attachment path"
);
}
#[test]
fn slash_picker_overlays_without_reflowing_the_transcript_when_match_count_changes() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(skill_names());
let area = Rect::new(0, 0, 40, 16);
state.transcript = (0..20)
.map(|index| TranscriptItem::Assistant(format!("message {index}")))
.collect();
state.input = "/a".to_owned();
state.input_changed();
let (narrow_chat, narrow_picker, _, _, narrow_input, _) = ui_layout(&state, area);
let narrow_scroll = max_scroll_for_area(&state, Size::new(area.width, area.height));
state.input = "/".to_owned();
state.input_changed();
let (broad_chat, broad_picker, _, _, broad_input, _) = ui_layout(&state, area);
let broad_scroll = max_scroll_for_area(&state, Size::new(area.width, area.height));
assert_ne!(
narrow_picker, broad_picker,
"the overlay may fit its contents"
);
assert_eq!(narrow_chat, broad_chat);
assert_eq!(narrow_input, broad_input);
assert_eq!(
narrow_scroll, broad_scroll,
"the overlay does not reduce the transcript viewport"
);
}
#[test]
fn slash_picker_keeps_the_focused_item_in_its_five_row_viewport() {
assert_eq!(skill_picker_range(20, 0), 0..5);
assert_eq!(skill_picker_range(20, 4), 0..5);
assert_eq!(skill_picker_range(20, 5), 1..6);
assert_eq!(skill_picker_range(20, 19), 15..20);
}
#[test]
fn slash_picker_leaves_the_ready_indicator_in_the_status_line() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(vec!["a".to_owned(), "b".to_owned()]);
state.input = "/".to_owned();
state.input_changed();
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(40, 12)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw TUI");
let screen = terminal
.backend()
.buffer()
.content()
.iter()
.map(|cell| cell.symbol())
.collect::<String>();
assert!(screen.contains("/a"));
assert!(
screen.contains("▁▁▁▁▁"),
"the READY bars remain in the bottom status line below the picker/input"
);
}
#[test]
fn slash_picker_is_rendered_immediately_above_the_input() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(skill_names());
state.input = "/".to_owned();
state.input_changed();
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(40, 12)).expect("test terminal");
terminal
.draw(|frame| draw(frame, &state))
.expect("draw TUI");
let buffer = terminal.backend().buffer();
let area = tui_viewport(Rect::new(0, 0, 40, 12));
let (_, picker_area, _, _, input_area, _) = ui_layout(&state, area);
let picker_area = picker_area.expect("picker area");
assert_eq!(picker_area.y + picker_area.height, input_area.y);
assert_eq!(buffer[(picker_area.x, picker_area.y)].symbol(), "┌");
assert_eq!(
buffer[(picker_area.x, picker_area.y + picker_area.height - 1)].symbol(),
"└"
);
assert_eq!(buffer[(input_area.x, input_area.y)].symbol(), "┌");
assert_eq!(buffer[(picker_area.x + 1, picker_area.y + 1)].symbol(), "[");
assert_eq!(buffer[(picker_area.x + 1, picker_area.y + 2)].symbol(), "/");
assert_eq!(buffer[(picker_area.x, picker_area.y)].fg, Color::Cyan);
}
#[test]
fn slash_picker_renders_count_and_distinct_focus_colors() {
let mut state = UiState::from_history(&[], "secret", "model", None, false)
.with_skill_names(skill_names());
state.input = "/".to_owned();
state.input_changed();
let mut terminal =
Terminal::new(ratatui::backend::TestBackend::new(30, 8)).expect("test terminal");
terminal
.draw(|frame| draw_skill_picker(frame, &state, Rect::new(0, 0, 30, 8)))
.expect("draw skill picker");
let buffer = terminal.backend().buffer();
assert_eq!(buffer[(0, 0)].symbol(), "┌");
assert_eq!(buffer[(0, 0)].fg, Color::Cyan);
assert_eq!(buffer[(1, 1)].symbol(), "[");
assert_eq!(buffer[(1, 1)].fg, Color::DarkGray);
assert_eq!(buffer[(1, 2)].symbol(), "/");
assert_eq!(buffer[(1, 2)].fg, Color::Cyan);
assert_eq!(buffer[(1, 3)].symbol(), "/");
assert_eq!(buffer[(1, 3)].fg, Color::DarkGray);
}
}