use crate::cli::Cli;
use crate::config::Config;
use crate::fetch::SystemInfo;
use crate::fields::{self, Mode};
use crate::logo;
use crate::theme::{colorize_nested, Theme, ACTIVE_IFACE_PREFIX};
fn should_show_logo(
config_show_logo: Option<bool>,
no_logo: bool,
ascii_logo: bool,
stdout_is_tty: bool,
) -> bool {
if no_logo {
return false; }
if ascii_logo {
return true; }
config_show_logo.unwrap_or(true) && stdout_is_tty }
pub fn display(info: &SystemInfo, cli: &Cli, config: &Config) -> anyhow::Result<()> {
let _config = config;
let theme_name = _config.theme.as_deref().or(cli.theme.as_deref());
let mut theme = match theme_name {
Some(name) => Theme::from_name(name),
None => Theme::detect_system_theme(), };
if let Some(custom) = &_config.custom_theme {
theme = Theme::with_custom_overrides(theme, custom);
}
let term_size = terminal_size::terminal_size();
let term_width = if let Some((terminal_size::Width(w), _)) = term_size {
w as usize
} else {
80
};
let stdout_is_tty = std::io::IsTerminal::is_terminal(&std::io::stdout());
let show_logo = should_show_logo(
_config.show_logo,
cli.no_logo,
cli.ascii_logo,
stdout_is_tty,
);
let allowed_fields: Option<Vec<String>> = if cli.full {
Some(fields::fields_for(Mode::Full))
} else if cli.long {
Some(fields::fields_for(Mode::Long))
} else if cli.short {
Some(fields::fields_for(Mode::Short))
} else if let Some(fields) = &_config.fields {
Some(fields.iter().map(|s| s.to_lowercase()).collect())
} else {
Some(fields::fields_for(Mode::Standard))
};
let should_show = |label: &str| -> bool {
match &allowed_fields {
Some(fields) => {
let norm_label = label.to_lowercase().replace(['-', '_'], " ");
let norm_label_no_spaces = norm_label.replace(' ', "");
fields.iter().any(|f| {
let norm_f = f.to_lowercase().replace(['-', '_'], " ");
norm_f == norm_label
|| norm_f.replace(' ', "") == norm_label_no_spaces
|| (norm_label == "dns server" && norm_f == "dns")
|| (norm_label == "memory usage" && norm_f == "memory")
})
}
None => true,
}
};
let label_width = 10;
let mut info_lines = Vec::new();
let mut print_line = |label: &str, value: &str| {
if should_show(label) {
info_lines.push(format!(
"{:>width$}{} {}",
theme.color_label(label),
theme.color_separator(":"),
theme.color_value(value),
width = label_width
));
}
};
print_line("OS", &info.os);
if let Some(kernel) = &info.kernel {
print_line("Kernel", kernel);
}
if let Some(host) = &info.hostname {
print_line("Host", host);
}
if let Some(domain) = &info.domain {
print_line("Domain", domain);
}
if should_show("domain-search") {
for entry in &info.domain_search {
print_line("Domain Search", entry);
}
}
if let Some(chassis) = &info.chassis {
print_line("Chassis", chassis);
}
if let Some(init) = &info.init_system {
print_line("Init", init);
}
if let Some(locale) = &info.locale {
print_line("Locale", locale);
}
print_line("Arch", &info.arch);
if info.users > 0 {
print_line("Users", &info.users.to_string());
}
if let Some(pkgs) = info.packages {
if pkgs > 0 {
print_line("Packages", &pkgs.to_string());
}
}
if let Some(user) = &info.current_user {
print_line("User", user);
}
let uptime_str = format_uptime(&info.uptime);
let boot_display = format!("{} since {}", uptime_str, info.boot_time);
print_line("Uptime", &boot_display);
print_line("CPU", &format!("{} ({})", info.cpu, info.cpu_core_info));
if let Some(freq) = &info.cpu_freq {
print_line("CPU Freq", freq);
}
if let Some(cache) = &info.cpu_cache {
print_line("CPU Cache", cache);
}
if let Some(usage) = &info.cpu_usage {
print_line("CPU Usage", usage);
}
if let Some(motherboard) = &info.motherboard {
print_line("Motherboard", motherboard);
}
if let Some(bios) = &info.bios {
print_line("BIOS", bios);
}
if let Some(bootmgr) = &info.bootmgr {
print_line("Bootmgr", bootmgr);
}
if should_show("GPU") {
for gpu in &info.gpu {
print_line("GPU", gpu);
}
}
if should_show("Display") {
for display in &info.displays {
print_line("Display", display);
}
}
if let Some(brightness) = &info.brightness {
print_line("Brightness", brightness);
}
if let Some(audio) = &info.audio {
print_line("Audio", audio);
}
if should_show("Camera") {
for cam in &info.camera {
print_line("Camera", cam);
}
}
if should_show("Gamepad") {
for gp in &info.gamepad {
print_line("Gamepad", gp);
}
}
if let Some(wifi) = &info.wifi {
print_line("Wi-Fi", wifi);
}
if let Some(bt) = &info.bluetooth {
print_line("Bluetooth", bt);
}
if let Some(bat) = &info.battery {
print_line("Battery", bat);
}
if let Some(power) = &info.power_adapter {
print_line("Power Adapter", power);
}
print_line("Memory Usage", &info.memory);
if let Some(phys_mem) = &info.physical_memory {
print_line("Phys Mem", phys_mem);
}
print_line("Swap", &info.swap);
print_line("Procs", &info.processes.to_string());
if let Some(load) = &info.load_avg {
print_line("Load", load);
}
if should_show("Disk") {
for disk in &info.disks {
print_line("Disk", disk);
}
}
if should_show("Phys Disk") {
for disk in &info.physical_disks {
print_line("Phys Disk", disk);
}
}
if should_show("Btrfs") {
for vol in &info.btrfs {
print_line("Btrfs", vol);
}
}
if should_show("Zpool") {
for pool in &info.zpool {
print_line("Zpool", pool);
}
}
if should_show("Temp") {
if cli.full {
for temp in &info.temps {
print_line("Temp", temp);
}
} else {
for temp in consolidate_temps(&info.temps) {
print_line("Temp", &temp);
}
}
}
if should_show("Net") {
if cli.long || cli.full {
for net in &info.networks {
if let Some(ref active) = info.active_interface {
if net.contains(active) {
print_line("Net", &colorize_nested(net, ACTIVE_IFACE_PREFIX));
}
}
}
for net in &info.networks {
if let Some(ref active) = info.active_interface {
if net.contains(active) {
continue;
}
}
print_line("Net", net);
}
} else {
let mut printed = false;
if let Some(ref active) = info.active_interface {
for net in &info.networks {
if net.contains(active) {
print_line("Net", net);
printed = true;
break;
}
}
}
if !printed {
for net in &info.networks {
if net.contains("[Up]") {
print_line("Net", net);
break;
}
}
}
}
}
if let Some(ip) = &info.public_ip {
print_line("Public IP", ip);
}
if !info.dns.is_empty() {
print_line("DNS Server", &info.dns.join(", "));
}
if let Some(shell) = &info.shell {
print_line("Shell", shell);
}
if let Some(editor) = &info.editor {
print_line("Editor", editor);
}
if let Some(term) = &info.terminal {
print_line("Terminal", term);
}
if let Some(ts) = &info.terminal_size {
print_line("Terminal Size", ts);
}
if let Some(de) = &info.desktop {
print_line("Desktop", de);
}
if let Some(wm) = &info.wm {
let duplicate = info
.desktop
.as_deref()
.map(|de| de.to_lowercase() == wm.to_lowercase())
.unwrap_or(false);
if !duplicate {
print_line("WM", wm);
}
}
if let Some(lm) = &info.login_manager {
print_line("Login Manager", lm);
}
if let Some(ui_theme) = &info.ui_theme {
print_line("Theme", ui_theme);
}
if let Some(icons) = &info.icons {
print_line("Icons", icons);
}
if let Some(cursor) = &info.cursor {
print_line("Cursor", cursor);
}
if let Some(font) = &info.font {
print_line("Font", font);
}
if let Some(term_font) = &info.terminal_font {
print_line("Terminal Font", term_font);
}
if let Some(weather) = &info.weather {
print_line("Weather", weather);
}
enum ActiveLogo {
Lines(Vec<String>),
Kitty(Vec<u8>, usize), Iterm2(Vec<u8>, usize),
Sixel(Vec<u8>, usize),
None,
}
let mut active_logo = ActiveLogo::None;
if show_logo {
let distro_hint = _config.logo.clone().or_else(logo::detect_distro);
let user_logo = if let Some(config_dir) = dirs::config_dir() {
let p = config_dir.join("retch").join("logo.png");
if p.exists() {
Some(p)
} else {
None
}
} else {
None
};
if cli.ascii_logo {
active_logo = ActiveLogo::Lines(logo::get_distro_logo_lines(distro_hint.as_deref()));
} else if _config.chafa.unwrap_or(false) || cli.chafa_logo {
let mut resolved = false;
if logo::chafa_available() {
if let Some(path) = &user_logo {
if let Some(lines) = logo::get_chafa_logo_lines(path) {
active_logo = ActiveLogo::Lines(lines);
resolved = true;
}
} else if let Some(distro) = &distro_hint {
if let Some(bytes) = logo::get_embedded_logo(Some(distro)) {
let temp_path = std::env::temp_dir()
.join(format!("retch_logo_{}.png", std::process::id()));
if std::fs::write(&temp_path, bytes).is_ok() {
if let Some(lines) = logo::get_chafa_logo_lines(&temp_path) {
active_logo = ActiveLogo::Lines(lines);
resolved = true;
}
let _ = std::fs::remove_file(&temp_path);
}
}
}
}
if !resolved {
active_logo =
ActiveLogo::Lines(logo::get_distro_logo_lines(distro_hint.as_deref()));
}
} else {
let mut resolved = false;
#[cfg(feature = "graphics")]
if !resolved && logo::supports_kitty() {
if let Some(path) = &user_logo {
if let Ok(bytes) = std::fs::read(path) {
let h = graphical_logo_height_lines(&bytes);
active_logo = ActiveLogo::Kitty(bytes, h);
resolved = true;
}
} else if let Some(distro) = &distro_hint {
if let Some(bytes) = logo::get_embedded_logo(Some(distro)) {
let h = graphical_logo_height_lines(bytes);
active_logo = ActiveLogo::Kitty(bytes.to_vec(), h);
resolved = true;
}
}
}
#[cfg(feature = "graphics")]
if !resolved && logo::supports_iterm2() {
if let Some(path) = &user_logo {
if let Ok(bytes) = std::fs::read(path) {
let h = graphical_logo_height_lines(&bytes);
active_logo = ActiveLogo::Iterm2(bytes, h);
resolved = true;
}
} else if let Some(distro) = &distro_hint {
if let Some(bytes) = logo::get_embedded_logo(Some(distro)) {
let h = graphical_logo_height_lines(bytes);
active_logo = ActiveLogo::Iterm2(bytes.to_vec(), h);
resolved = true;
}
}
}
#[cfg(feature = "graphics")]
if !resolved && logo::supports_sixel() {
if let Some(path) = &user_logo {
if let Ok(bytes) = std::fs::read(path) {
let h = graphical_logo_height_lines(&bytes);
active_logo = ActiveLogo::Sixel(bytes, h);
resolved = true;
}
} else if let Some(distro) = &distro_hint {
if let Some(bytes) = logo::get_embedded_logo(Some(distro)) {
let h = graphical_logo_height_lines(bytes);
active_logo = ActiveLogo::Sixel(bytes.to_vec(), h);
resolved = true;
}
}
}
if !resolved && logo::chafa_available() {
if let Some(path) = &user_logo {
if let Some(lines) = logo::get_chafa_logo_lines(path) {
active_logo = ActiveLogo::Lines(lines);
resolved = true;
}
} else if let Some(distro) = &distro_hint {
if let Some(bytes) = logo::get_embedded_logo(Some(distro)) {
let temp_path = std::env::temp_dir()
.join(format!("retch_logo_{}.png", std::process::id()));
if std::fs::write(&temp_path, bytes).is_ok() {
if let Some(lines) = logo::get_chafa_logo_lines(&temp_path) {
active_logo = ActiveLogo::Lines(lines);
resolved = true;
}
let _ = std::fs::remove_file(&temp_path);
}
}
}
}
if !resolved {
active_logo =
ActiveLogo::Lines(logo::get_distro_logo_lines(distro_hint.as_deref()));
}
}
}
let visible_len = |s: &str| -> usize {
let mut count = 0;
let mut in_esc = false;
for c in s.chars() {
if c == '\x1b' {
in_esc = true;
} else if in_esc {
if c.is_ascii_alphabetic() {
in_esc = false;
}
} else {
count += 1;
}
}
count
};
let max_text_width = info_lines
.iter()
.map(|line| visible_len(line))
.max()
.unwrap_or(0);
let text_column_width = std::cmp::max(max_text_width + 4, 45);
let max_logo_width = match &active_logo {
ActiveLogo::Lines(logo_lines) => logo_lines
.iter()
.map(|line| visible_len(line))
.max()
.unwrap_or(0),
ActiveLogo::Kitty(_, _) | ActiveLogo::Iterm2(_, _) | ActiveLogo::Sixel(_, _) => 40,
ActiveLogo::None => 0,
};
let side_by_side =
show_logo && term_width >= 95 && term_width >= (text_column_width + max_logo_width);
println!();
if side_by_side {
match active_logo {
ActiveLogo::Lines(logo_lines) => {
let max_lines = std::cmp::max(info_lines.len(), logo_lines.len());
for i in 0..max_lines {
let info_line = info_lines.get(i).cloned().unwrap_or_default();
let logo_line = logo_lines.get(i).cloned().unwrap_or_default();
let vis_len = visible_len(&info_line);
let padding = if vis_len < text_column_width {
" ".repeat(text_column_width - vis_len)
} else {
String::new()
};
println!("{}{}{}", info_line, padding, logo_line);
}
}
ActiveLogo::Kitty(bytes, height_lines) => {
for line in &info_lines {
println!("{}", line);
}
let num_lines = info_lines.len();
print!("\x1b7"); if num_lines > 0 {
print!("\x1b[{}A", num_lines); }
print!("\x1b[{}C", text_column_width); logo::print_graphical_logo(&bytes);
print!("\x1b8"); let overflow = height_lines.saturating_sub(num_lines);
if overflow > 0 {
print!("\x1b[{}B", overflow);
}
}
ActiveLogo::Iterm2(bytes, height_lines) => {
for line in &info_lines {
println!("{}", line);
}
let num_lines = info_lines.len();
print!("\x1b7"); if num_lines > 0 {
print!("\x1b[{}A", num_lines); }
print!("\x1b[{}C", text_column_width); logo::print_iterm2_logo(&bytes);
print!("\x1b8"); let overflow = height_lines.saturating_sub(num_lines);
if overflow > 0 {
print!("\x1b[{}B", overflow);
}
}
ActiveLogo::Sixel(bytes, height_lines) => {
for line in &info_lines {
println!("{}", line);
}
let num_lines = info_lines.len();
print!("\x1b7"); if num_lines > 0 {
print!("\x1b[{}A", num_lines); }
print!("\x1b[{}C", text_column_width); logo::print_sixel_logo(&bytes);
print!("\x1b8"); let overflow = height_lines.saturating_sub(num_lines);
if overflow > 0 {
print!("\x1b[{}B", overflow);
}
}
ActiveLogo::None => {
for line in &info_lines {
println!("{}", line);
}
}
}
} else {
match active_logo {
ActiveLogo::Lines(logo_lines) => {
for line in logo_lines {
println!("{}", line);
}
println!();
}
ActiveLogo::Kitty(bytes, _) => {
logo::print_graphical_logo(&bytes);
println!();
}
ActiveLogo::Iterm2(bytes, _) => {
logo::print_iterm2_logo(&bytes);
println!();
}
ActiveLogo::Sixel(bytes, _) => {
logo::print_sixel_logo(&bytes);
println!();
}
ActiveLogo::None => {}
}
for line in &info_lines {
println!("{}", line);
}
}
Ok(())
}
fn consolidate_temps(temps: &[String]) -> Vec<String> {
fn categorize(label: &str) -> &'static str {
let l = label.to_lowercase();
if l.contains("cpu")
|| l.contains("core")
|| l.contains("k10temp")
|| l.contains("k8temp")
|| l.contains("coretemp")
|| l.contains("tctl")
|| l.contains("tdie")
|| l.contains("tccd")
|| l.contains("package")
{
"CPU"
} else if l.contains("gpu")
|| l.contains("nouveau")
|| l.contains("radeon")
|| l.contains("amdgpu")
{
"GPU"
} else if l.contains("nvme") || l.contains("nand") {
"NVMe"
} else if l.contains("ath")
|| l.contains("wifi")
|| l.contains("wireless")
|| l.contains("wlan")
|| l.contains("iwl")
{
"WiFi"
} else if l.contains("bat") {
"Battery"
} else {
"System"
}
}
let mut max: std::collections::HashMap<&str, f32> = std::collections::HashMap::new();
for s in temps {
if let Some((label_part, val_part)) = s.rsplit_once(':') {
let val_str = val_part.trim().trim_end_matches("°C");
if let Ok(val) = val_str.parse::<f32>() {
let cat = categorize(label_part.trim());
let entry = max.entry(cat).or_insert(f32::NEG_INFINITY);
if val > *entry {
*entry = val;
}
}
}
}
const ORDER: &[&str] = &["CPU", "GPU", "NVMe", "WiFi", "Battery", "System"];
ORDER
.iter()
.filter_map(|cat| max.get(cat).map(|v| format!("{}: {:.0}°C", cat, v)))
.collect()
}
fn format_uptime(uptime: &str) -> String {
let seconds: u64 = uptime.trim_end_matches('s').parse().unwrap_or(0);
let years = seconds / (365 * 24 * 3600);
let days = (seconds % (365 * 24 * 3600)) / (24 * 3600);
let hours = (seconds % (24 * 3600)) / 3600;
let minutes = (seconds % 3600) / 60;
let secs = seconds % 60;
let mut parts = Vec::new();
if years > 0 {
parts.push(format!("{}y", years));
}
if days > 0 {
parts.push(format!("{}d", days));
}
if hours > 0 {
parts.push(format!("{}h", hours));
}
if minutes > 0 {
parts.push(format!("{}m", minutes));
}
if secs > 0 || parts.is_empty() {
parts.push(format!("{}s", secs));
}
parts.join(" ")
}
#[cfg(feature = "graphics")]
fn graphical_logo_height_lines(bytes: &[u8]) -> usize {
let img_h = image::load_from_memory(bytes)
.map(|img| img.height() as usize)
.unwrap_or(384);
let cell_h = terminal_cell_height_px();
img_h.div_ceil(cell_h)
}
fn terminal_cell_height_px() -> usize {
#[cfg(unix)]
{
use std::mem::MaybeUninit;
let mut ws: libc::winsize = unsafe { MaybeUninit::zeroed().assume_init() };
let ret = unsafe { libc::ioctl(libc::STDOUT_FILENO, libc::TIOCGWINSZ, &mut ws) };
if ret == 0 && ws.ws_row > 0 && ws.ws_ypixel > 0 {
return ws.ws_ypixel as usize / ws.ws_row as usize;
}
}
20
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_show_logo_auto_requires_tty() {
assert!(should_show_logo(None, false, false, true));
assert!(!should_show_logo(None, false, false, false));
}
#[test]
fn test_show_logo_ascii_forces_without_tty() {
assert!(should_show_logo(None, false, true, false));
assert!(should_show_logo(None, false, true, true));
}
#[test]
fn test_show_logo_no_logo_always_wins() {
assert!(!should_show_logo(None, true, true, true));
assert!(!should_show_logo(None, true, false, true));
}
#[test]
fn test_show_logo_config_disable() {
assert!(!should_show_logo(Some(false), false, false, true));
assert!(should_show_logo(Some(false), false, true, false));
}
#[test]
fn test_consolidate_temps_basic() {
let raw = vec![
"k10temp Tctl: 83°C".to_string(),
"amdgpu edge: 65°C".to_string(),
"nvme Composite: 62°C".to_string(),
"ath11k_hwmon temp1: 58°C".to_string(),
"acpitz temp1: 77°C".to_string(),
];
let result = consolidate_temps(&raw);
assert_eq!(
result,
vec![
"CPU: 83°C",
"GPU: 65°C",
"NVMe: 62°C",
"WiFi: 58°C",
"System: 77°C"
]
);
}
#[test]
fn test_consolidate_temps_highest_wins() {
let raw = vec![
"thinkpad CPU: 83°C".to_string(),
"k10temp Tctl: 79°C".to_string(),
"nvme Composite: 62°C".to_string(),
"nvme Sensor 1: 59°C".to_string(),
"nvme Sensor 2: 56°C".to_string(),
];
let result = consolidate_temps(&raw);
assert!(result.contains(&"CPU: 83°C".to_string()));
assert!(result.contains(&"NVMe: 62°C".to_string()));
assert!(!result
.iter()
.any(|s| s.contains("79") || s.contains("59") || s.contains("56")));
}
#[test]
fn test_consolidate_temps_order() {
let raw = vec![
"acpitz: 60°C".to_string(),
"nvme: 55°C".to_string(),
"amdgpu edge: 65°C".to_string(),
"k10temp Tctl: 80°C".to_string(),
];
let result = consolidate_temps(&raw);
let cpu_pos = result.iter().position(|s| s.starts_with("CPU"));
let gpu_pos = result.iter().position(|s| s.starts_with("GPU"));
let nvme_pos = result.iter().position(|s| s.starts_with("NVMe"));
let sys_pos = result.iter().position(|s| s.starts_with("System"));
assert!(cpu_pos < gpu_pos);
assert!(gpu_pos < nvme_pos);
assert!(nvme_pos < sys_pos);
}
#[test]
fn test_consolidate_temps_empty() {
assert!(consolidate_temps(&[]).is_empty());
}
#[test]
fn test_format_uptime() {
assert_eq!(format_uptime("60s"), "1m");
assert_eq!(format_uptime("3600s"), "1h");
assert_eq!(format_uptime("3661s"), "1h 1m 1s");
assert_eq!(format_uptime("86400s"), "1d");
assert_eq!(format_uptime("90061s"), "1d 1h 1m 1s");
assert_eq!(format_uptime("31536000s"), "1y");
assert_eq!(format_uptime("31626061s"), "1y 1d 1h 1m 1s");
assert_eq!(format_uptime("0s"), "0s");
}
}