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//! Professional face with graphical progress bars.
//!
//! Landscape layout (320x170):
//! ```text
//! endeavour 18:45
//! Up: 5d 12h 34m 2025-01-31
//! IP: 192.168.1.100
//! Temp: 45°C
//! CPU: 45%
//! [████████████░░░░░░░░░░░░░░░░░░]
//! RAM: 67%
//! [██████████████████░░░░░░░░░░░░]
//! DSK: R:12M W:5M
//! [▁▁▂▃▄▅▆▇███▇▆▅▄▃▂▁▁▁▁▁▁▁▁▁▁▁▁]
//! NET: ↓:1.2M ↑:0.8M
//! [▁▁▁▂▂▃▃▄▄▅▅▆▆▇▇████▇▇▆▆▅▅▄▄▃▃]
//! ```
use super::{
complication_names, complication_options, complications, date_formats, draw_mini_analog_clock,
time_formats, Complication, EnabledComplications, Face, Theme,
};
use crate::rendering::Canvas;
use crate::sensors::data::SystemData;
/// Dim a color by mixing it toward the background.
fn dim_color(color: u32, background: u32, factor: f32) -> u32 {
let r1 = ((color >> 16) & 0xFF) as f32;
let g1 = ((color >> 8) & 0xFF) as f32;
let b1 = (color & 0xFF) as f32;
let r2 = ((background >> 16) & 0xFF) as f32;
let g2 = ((background >> 8) & 0xFF) as f32;
let b2 = (background & 0xFF) as f32;
let r = (r1 * factor + r2 * (1.0 - factor)) as u32;
let g = (g1 * factor + g2 * (1.0 - factor)) as u32;
let b = (b1 * factor + b2 * (1.0 - factor)) as u32;
(r << 16) | (g << 8) | b
}
/// Derive colors from theme for the professional face.
struct FaceColors {
/// Primary highlight color (hostname, interface name)
highlight: u32,
/// Main text color
text: u32,
/// Dimmed text color (uptime, IPs)
dim: u32,
/// Progress bar background
bar_bg: u32,
/// CPU bar fill color
bar_cpu: u32,
/// RAM bar fill color
bar_ram: u32,
/// Disk read bar fill color
bar_disk_read: u32,
/// Disk write bar fill color
bar_disk_write: u32,
/// Network receive bar fill color
bar_net_rx: u32,
/// Network transmit bar fill color
bar_net_tx: u32,
}
impl FaceColors {
fn from_theme(theme: &Theme) -> Self {
// Create distinct shades for read/write and rx/tx
let disk_base = dim_color(theme.primary, theme.secondary, 0.5);
let net_base = theme.secondary;
Self {
highlight: theme.primary,
text: theme.text,
dim: dim_color(theme.text, theme.background, 0.7), // Higher for better contrast
bar_bg: dim_color(theme.primary, theme.background, 0.2),
bar_cpu: theme.primary,
bar_ram: theme.secondary,
// Disk: read is brighter, write is dimmer
bar_disk_read: disk_base,
bar_disk_write: dim_color(disk_base, theme.background, 0.6),
// Network: rx (download) is brighter, tx (upload) is dimmer
bar_net_rx: net_base,
bar_net_tx: dim_color(net_base, theme.background, 0.6),
}
}
}
/// Font sizes.
const FONT_LARGE: f32 = 16.0;
const FONT_NORMAL: f32 = 14.0;
const FONT_SMALL: f32 = 12.0;
/// Progress bar dimensions.
const BAR_WIDTH: u32 = 120;
const BAR_HEIGHT: u32 = 10;
/// Graph dimensions.
const GRAPH_HEIGHT: u32 = 16;
/// A professional face with graphical progress bars.
pub struct ProfessionalFace;
impl ProfessionalFace {
/// Creates a new professional face.
pub fn new() -> Self {
Self
}
/// Draws a progress bar.
#[allow(clippy::too_many_arguments)]
fn draw_progress_bar(
canvas: &mut Canvas,
x: i32,
y: i32,
width: u32,
height: u32,
percent: f64,
fill_color: u32,
bg_color: u32,
) {
// Draw background
canvas.fill_rect(x, y, width, height, bg_color);
// Draw filled portion
let fill_width = ((width as f64 * (percent / 100.0)) as u32).min(width);
if fill_width > 0 {
canvas.fill_rect(x, y, fill_width, height, fill_color);
}
}
}
impl Default for ProfessionalFace {
fn default() -> Self {
Self::new()
}
}
impl Face for ProfessionalFace {
fn name(&self) -> &str {
"professional"
}
fn available_complications(&self) -> Vec<Complication> {
vec![
complications::time(true),
complications::date(true, date_formats::ISO),
complications::ip_address(true),
complications::network(true),
complications::disk_io(true),
complications::cpu_temp(true),
]
}
fn render(
&self,
canvas: &mut Canvas,
data: &SystemData,
theme: &Theme,
complications: &EnabledComplications,
) {
let colors = FaceColors::from_theme(theme);
let (width, _height) = canvas.dimensions();
let portrait = width < 200;
let margin = 8;
let mut y = margin;
// Helper to check if a complication is enabled
let is_enabled = |id: &str| -> bool { complications.is_enabled(self.name(), id, true) };
// Get time format option
let time_format = complications
.get_option(
self.name(),
complication_names::TIME,
complication_options::TIME_FORMAT,
)
.map(|s| s.as_str())
.unwrap_or(time_formats::DIGITAL_24H);
// Get date format option
let date_format = complications
.get_option(
self.name(),
complication_names::DATE,
complication_options::DATE_FORMAT,
)
.map(|s| s.as_str())
.unwrap_or(date_formats::ISO);
if portrait {
// Portrait layout - full width bars on own lines, stacked text
let bar_width = (width - (margin * 2) as u32).min(200);
let tall_bar_height = 14_u32; // Taller bars for CPU/RAM
let section_spacing = 6; // Extra spacing between sections
let line_height = canvas.line_height(FONT_SMALL);
// Hostname (always shown)
canvas.draw_text(margin, y, &data.hostname, FONT_LARGE, colors.highlight);
// Complication: Time (right-aligned)
if is_enabled(complication_names::TIME) {
if time_format == time_formats::ANALOGUE {
// Draw small analog clock on the right
let clock_radius = 10_u32;
let clock_cx = width as i32 - margin - clock_radius as i32;
let clock_cy = y + clock_radius as i32;
draw_mini_analog_clock(
canvas,
clock_cx,
clock_cy,
clock_radius,
data.hour,
data.minute,
colors.highlight,
colors.text,
);
} else {
let time_str = data.format_time(time_format);
let time_width = canvas.text_width(&time_str, FONT_LARGE);
canvas.draw_text(
width as i32 - margin - time_width,
y,
&time_str,
FONT_LARGE,
colors.text,
);
}
}
y += canvas.line_height(FONT_LARGE) + 2;
// Complication: Date (right-aligned, under time)
if is_enabled(complication_names::DATE) {
if let Some(date_str) = data.format_date(date_format) {
let date_width = canvas.text_width(&date_str, FONT_SMALL);
canvas.draw_text(
width as i32 - margin - date_width,
y,
&date_str,
FONT_SMALL,
colors.dim,
);
y += line_height;
}
}
// Two lines lower before Uptime
y += line_height * 2;
// Base element: Uptime (always shown)
let uptime_text = format!("Up: {}", data.uptime);
canvas.draw_text(margin, y, &uptime_text, FONT_SMALL, colors.dim);
y += line_height + section_spacing;
// Complication: IP address with label on its own line
if is_enabled(complication_names::IP_ADDRESS) {
if let Some(ref ip) = data.display_ip {
// IP label on its own line
canvas.draw_text(margin, y, "IP:", FONT_SMALL, colors.dim);
y += line_height;
// IP address on next line
let max_width = width as i32 - margin * 2;
let ip_width = canvas.text_width(ip, FONT_SMALL);
if ip_width > max_width && ip.contains(':') {
let mid = ip.len() / 2;
let split_pos = ip[..mid].rfind(':').map(|p| p + 1).unwrap_or(mid);
let (first, second) = ip.split_at(split_pos);
canvas.draw_text(margin, y, first, FONT_SMALL, colors.text);
y += line_height;
canvas.draw_text(margin, y, second, FONT_SMALL, colors.text);
} else {
canvas.draw_text(margin, y, ip, FONT_SMALL, colors.text);
}
y += line_height + section_spacing * 2;
}
}
// Complication: CPU temperature
if is_enabled(complication_names::CPU_TEMP) {
if let Some(temp) = data.cpu_temp {
canvas.draw_text(margin, y, "Temp:", FONT_SMALL, colors.dim);
let temp_val = format!("{:.0}°C", temp);
let temp_w = canvas.text_width(&temp_val, FONT_SMALL);
canvas.draw_text(
width as i32 - margin - temp_w,
y,
&temp_val,
FONT_SMALL,
colors.text,
);
y += line_height + section_spacing;
}
}
// Base element: CPU label on its own line, then bar below
let cpu_label = format!("CPU: {:2.0}%", data.cpu_percent);
canvas.draw_text(margin, y, &cpu_label, FONT_SMALL, colors.dim);
y += line_height;
Self::draw_progress_bar(
canvas,
margin,
y,
bar_width,
tall_bar_height,
data.cpu_percent,
colors.bar_cpu,
colors.bar_bg,
);
y += tall_bar_height as i32 + section_spacing;
// Base element: RAM label on its own line, then bar below
let ram_label = format!("RAM: {:2.0}%", data.ram_percent);
canvas.draw_text(margin, y, &ram_label, FONT_SMALL, colors.dim);
y += line_height;
Self::draw_progress_bar(
canvas,
margin,
y,
bar_width,
tall_bar_height,
data.ram_percent,
colors.bar_ram,
colors.bar_bg,
);
y += tall_bar_height as i32 + section_spacing;
// Complication: Disk I/O graph
if is_enabled(complication_names::DISK_IO) {
let disk_r = SystemData::format_rate_compact(data.disk_read_rate);
let disk_w = SystemData::format_rate_compact(data.disk_write_rate);
canvas.draw_text(margin, y, "DSK:", FONT_SMALL, colors.dim);
// Draw R: and W: in their respective colors
let r_text = format!("R:{}", disk_r);
let w_text = format!(" W:{}", disk_w);
let w_text_w = canvas.text_width(&w_text, FONT_SMALL);
let r_text_w = canvas.text_width(&r_text, FONT_SMALL);
let r_x = width as i32 - margin - w_text_w - r_text_w;
canvas.draw_text(r_x, y, &r_text, FONT_SMALL, colors.bar_disk_read);
canvas.draw_text(
r_x + r_text_w,
y,
&w_text,
FONT_SMALL,
colors.bar_disk_write,
);
y += line_height;
canvas.draw_dual_graph(
margin,
y,
bar_width,
GRAPH_HEIGHT,
&data.disk_read_history,
&data.disk_write_history,
SystemData::compute_graph_scale(&data.disk_history),
colors.bar_disk_read,
colors.bar_disk_write,
colors.bar_bg,
);
y += GRAPH_HEIGHT as i32 + section_spacing;
}
// Complication: Network I/O graph
if is_enabled(complication_names::NETWORK) {
let net_rx = SystemData::format_rate_compact(data.net_rx_rate);
let net_tx = SystemData::format_rate_compact(data.net_tx_rate);
canvas.draw_text(margin, y, "NET:", FONT_SMALL, colors.dim);
// Draw ↓: and ↑: in their respective colors
let rx_text = format!("\u{2193}:{}", net_rx);
let tx_text = format!(" \u{2191}:{}", net_tx);
let tx_text_w = canvas.text_width(&tx_text, FONT_SMALL);
let rx_text_w = canvas.text_width(&rx_text, FONT_SMALL);
let rx_x = width as i32 - margin - tx_text_w - rx_text_w;
canvas.draw_text(rx_x, y, &rx_text, FONT_SMALL, colors.bar_net_rx);
canvas.draw_text(rx_x + rx_text_w, y, &tx_text, FONT_SMALL, colors.bar_net_tx);
y += line_height;
canvas.draw_dual_graph(
margin,
y,
bar_width,
GRAPH_HEIGHT,
&data.net_rx_history,
&data.net_tx_history,
SystemData::compute_graph_scale(&data.net_history),
colors.bar_net_rx,
colors.bar_net_tx,
colors.bar_bg,
);
}
} else {
// Landscape layout - compact with bars on same line as labels
let line_height = canvas.line_height(FONT_SMALL);
let label_width = 70_i32; // Space for "CPU: 99%" or "RAM: 99%"
let bar_x = margin + label_width;
let bar_width = (width as i32 - bar_x - margin - 40) as u32; // Leave room for temp
// Hostname (always shown)
y = 1;
canvas.draw_text(margin, y, &data.hostname, FONT_LARGE, colors.highlight);
// Complication: Time (right-aligned)
if is_enabled(complication_names::TIME) {
if time_format == time_formats::ANALOGUE {
// Draw small analog clock on the right
let clock_radius = 10_u32;
let clock_cx = width as i32 - margin - clock_radius as i32;
let clock_cy = y + clock_radius as i32 + 2;
draw_mini_analog_clock(
canvas,
clock_cx,
clock_cy,
clock_radius,
data.hour,
data.minute,
colors.highlight,
colors.text,
);
} else {
let time_str = data.format_time(time_format);
let time_width = canvas.text_width(&time_str, FONT_LARGE);
canvas.draw_text(
width as i32 - margin - time_width,
y,
&time_str,
FONT_LARGE,
colors.text,
);
}
}
y += canvas.line_height(FONT_LARGE) + 1;
// Complication: Date (right-aligned)
if is_enabled(complication_names::DATE) {
if let Some(date_str) = data.format_date(date_format) {
let date_width = canvas.text_width(&date_str, FONT_SMALL);
canvas.draw_text(
width as i32 - margin - date_width,
y,
&date_str,
FONT_SMALL,
colors.dim,
);
}
}
// Up: on left side
let uptime_text = format!("Up: {}", data.uptime);
canvas.draw_text(margin, y, &uptime_text, FONT_SMALL, colors.dim);
y += line_height + 1;
// IP: label and address on same line, left aligned
if is_enabled(complication_names::IP_ADDRESS) {
if let Some(ref ip) = data.display_ip {
let ip_text = format!("IP: {}", ip);
canvas.draw_text(margin, y, &ip_text, FONT_SMALL, colors.dim);
y += line_height + 2;
}
}
// CPU: label, bar, and temp all on same line
let cpu_label = format!("CPU: {:2.0}%", data.cpu_percent);
canvas.draw_text(margin, y, &cpu_label, FONT_SMALL, colors.dim);
Self::draw_progress_bar(
canvas,
bar_x,
y + 2,
bar_width,
BAR_HEIGHT,
data.cpu_percent,
colors.bar_cpu,
colors.bar_bg,
);
// CPU temp on same line (no label)
if is_enabled(complication_names::CPU_TEMP) {
if let Some(temp) = data.cpu_temp {
let temp_val = format!("{:.0}°C", temp);
let temp_w = canvas.text_width(&temp_val, FONT_SMALL);
canvas.draw_text(
width as i32 - margin - temp_w,
y,
&temp_val,
FONT_SMALL,
colors.text,
);
}
}
y += line_height + 2;
// RAM: label and bar on same line
let ram_label = format!("RAM: {:2.0}%", data.ram_percent);
canvas.draw_text(margin, y, &ram_label, FONT_SMALL, colors.dim);
Self::draw_progress_bar(
canvas,
bar_x,
y + 2,
bar_width,
BAR_HEIGHT,
data.ram_percent,
colors.bar_ram,
colors.bar_bg,
);
y += line_height + 8;
// DSK: label line, then graph on next line
if is_enabled(complication_names::DISK_IO) {
let disk_r = SystemData::format_rate_compact(data.disk_read_rate);
let disk_w = SystemData::format_rate_compact(data.disk_write_rate);
canvas.draw_text(margin, y, "DSK:", FONT_SMALL, colors.dim);
// Draw R: and W: in their respective colors
let r_text = format!("R:{}", disk_r);
let w_text = format!(" W:{}", disk_w);
let w_text_w = canvas.text_width(&w_text, FONT_SMALL);
let r_text_w = canvas.text_width(&r_text, FONT_SMALL);
let r_x = width as i32 - margin - w_text_w - r_text_w;
canvas.draw_text(r_x, y, &r_text, FONT_SMALL, colors.bar_disk_read);
canvas.draw_text(
r_x + r_text_w,
y,
&w_text,
FONT_SMALL,
colors.bar_disk_write,
);
y += line_height + 4;
canvas.draw_dual_graph(
margin,
y,
width - (margin * 2) as u32,
GRAPH_HEIGHT,
&data.disk_read_history,
&data.disk_write_history,
SystemData::compute_graph_scale(&data.disk_history),
colors.bar_disk_read,
colors.bar_disk_write,
colors.bar_bg,
);
y += GRAPH_HEIGHT as i32 + 4;
}
// NET: label line, then graph on next line
if is_enabled(complication_names::NETWORK) {
let net_rx = SystemData::format_rate_compact(data.net_rx_rate);
let net_tx = SystemData::format_rate_compact(data.net_tx_rate);
canvas.draw_text(margin, y, "NET:", FONT_SMALL, colors.dim);
// Draw ↓: and ↑: in their respective colors
let rx_text = format!("\u{2193}:{}", net_rx);
let tx_text = format!(" \u{2191}:{}", net_tx);
let tx_text_w = canvas.text_width(&tx_text, FONT_SMALL);
let rx_text_w = canvas.text_width(&rx_text, FONT_SMALL);
let rx_x = width as i32 - margin - tx_text_w - rx_text_w;
canvas.draw_text(rx_x, y, &rx_text, FONT_SMALL, colors.bar_net_rx);
canvas.draw_text(rx_x + rx_text_w, y, &tx_text, FONT_SMALL, colors.bar_net_tx);
y += line_height + 4;
canvas.draw_dual_graph(
margin,
y,
width - (margin * 2) as u32,
GRAPH_HEIGHT,
&data.net_rx_history,
&data.net_tx_history,
SystemData::compute_graph_scale(&data.net_history),
colors.bar_net_rx,
colors.bar_net_tx,
colors.bar_bg,
);
}
}
// Suppress unused variable warning when all complications are disabled
let _ = y;
}
}