Files
pulse-trader/src/terminal/formatting.rs
T
2026-07-22 18:08:16 +02:00

252 lines
6.9 KiB
Rust

use pulse_wire::terminal::{
ActivePosition, Alert, AlertLevel, EventLog, InspectTarget, LogKind, MarketOverview, Signal,
SignalKind, Status, WatchListItem,
};
pub trait Formatted {
fn get_formatted(&self) -> Vec<String>;
}
impl Formatted for InspectTarget {
fn get_formatted(&self) -> Vec<String> {
match self {
Self::None => vec!["\x1b[2mnothing to inspect\x1b[0m".to_string()],
Self::Symbol(watch) => vec![
Property("Symbol", format!("\x1b[35m{}\x1b[0m", watch.symbol)),
Property(
"Price",
format!("\x1b[96m{}\x1b[0m", format_f64(watch.price)),
),
Property("Trend", format!("{}", format_f64(watch.trend))),
]
.get_formatted(),
Self::Position(pos) => vec![
Property("Symbol", format!("\x1b[35m{}\x1b[0m", pos.symbol)),
Property("Profit", format!("{:+.2}", pos.profit)),
Property("Amount", format!("{}", pos.amount)),
]
.get_formatted(),
Self::Signal(sig) => vec![
Property("Type", format!("{}", sig.kind)),
Property("Symbol", format!("\x1b[35m{}\x1b[0m", sig.symbol)),
Property("Parameter", format!("{}", sig.param)),
Property("Price", format!("\x1b[96m{}\x1b[0m", format_f64(sig.price))),
]
.get_formatted(),
Self::Alert(alert) => vec![
Property("Level", format!("{}", alert.level)),
Property("Message", alert.message.clone()),
]
.get_formatted(),
}
}
}
impl Formatted for Alert {
fn get_formatted(&self) -> Vec<String> {
vec![
format!(
"{}{}\x1b[0m",
match &self.level {
AlertLevel::Low => "\x1b[34m",
AlertLevel::Medium => "\x1b[33m",
AlertLevel::High => "\x1b[31m",
},
self.level
),
self.message.clone(),
]
}
}
impl Formatted for EventLog {
fn get_formatted(&self) -> Vec<String> {
vec![
format!(
"{}{}\x1b[0m",
match &self.kind {
LogKind::Info => "\x1b[34m",
LogKind::Debug => "\x1b[36m",
LogKind::Err => "\x1b[31m",
LogKind::Warn => "\x1b[33m",
},
self.kind
),
format!("(\x1b[37m{}\x1b[0m)", self.name),
self.message.clone(),
]
}
}
impl Formatted for Signal {
fn get_formatted(&self) -> Vec<String> {
vec![
if matches!(self.kind, SignalKind::Buy) {
format!("\x1b[32m{}\x1b[0m", self.kind)
} else {
format!("\x1b[31m{}\x1b[0m", self.kind)
},
format!("\x1b[35m{}\x1b[0m", self.symbol),
format!("\x1b[34m{}\x1b[0m", self.param),
format_f64(self.price),
]
}
}
impl Formatted for WatchListItem {
fn get_formatted(&self) -> Vec<String> {
vec![
format!("\x1b[35m{}\x1b[0m", self.symbol),
format_f64(self.price),
format!(
"{} {}",
if self.trend.is_sign_positive() {
"\x1b[32m▲\x1b[0m"
} else {
"\x1b[31m▼\x1b[0m"
},
format_f64(self.trend.abs())
),
]
}
}
impl Formatted for ActivePosition {
fn get_formatted(&self) -> Vec<String> {
vec![
format!("\x1b[35m{}\x1b[0m", self.symbol),
format_f64(self.amount),
format!(
"{} {}",
if self.profit.is_sign_positive() {
"\x1b[32m▲\x1b[0m"
} else {
"\x1b[31m▼\x1b[0m"
},
format_f64(self.profit.abs())
),
]
}
}
struct Property(&'static str, String);
impl Formatted for MarketOverview {
fn get_formatted(&self) -> Vec<String> {
vec![
Property("TREND", format!("{}", self.trend)),
Property("VOLATILITY", format!("{}", self.volatility)),
Property(
"PRESSURE",
if self.pressure.is_sign_positive() {
format!("\x1b[32m{:.3}\x1b[0m", self.pressure)
} else {
format!("\x1b[31m{:.3}\x1b[0m", self.pressure)
},
),
]
.get_formatted()
}
}
impl Formatted for Status {
fn get_formatted(&self) -> Vec<String> {
vec![
Property("Feed", format!("{:?}", self.feed)),
Property("Exchange", self.exchange.clone()),
Property("DEX", self.dex.clone()),
Property("Latency", format!("{} ms", self.latency)),
]
.get_formatted()
}
}
impl Formatted for Property {
fn get_formatted(&self) -> Vec<String> {
vec![format!("\x1b[91m{}\x1b[0m", self.0), self.1.clone()]
}
}
impl<T: Formatted> Formatted for Vec<T> {
fn get_formatted(&self) -> Vec<String> {
let mut output = Vec::new();
let rows: Vec<Vec<String>> = self.iter().map(|v| v.get_formatted()).collect();
if rows.is_empty() {
return output;
}
let column_count = rows.iter().map(|r| r.len()).max().unwrap_or(0);
let mut widths = vec![0; column_count];
for row in &rows {
for (i, col) in row.iter().enumerate() {
widths[i] = widths[i].max(col.len());
}
}
for row in rows {
let mut row_out = String::new();
for (col_idx, col) in row.iter().enumerate() {
let width = widths[col_idx];
row_out.push_str(&format!("{:<width$}", col, width = width));
if col_idx + 1 != row.len() {
row_out.push_str(" ");
}
}
output.push(row_out);
}
output
}
}
pub fn apply_padding(mut items: Vec<String>) -> Vec<String> {
for item in &mut items {
item.insert(0, ' ');
}
items
}
pub fn format_f64(value: f64) -> String {
let val = value.to_string();
let parts: Vec<&str> = val.split('.').collect();
let int = parts[0].to_string();
let negative = int.starts_with('-');
let start = if negative { 1 } else { 0 };
let mut result = String::new();
for (i, c) in int[start..].chars().rev().enumerate() {
if i > 0 && i % 3 == 0 {
result.push(',');
}
result.push(c);
}
let mut formatted: String = result.chars().rev().collect();
if negative {
formatted.insert(0, '-');
}
if parts.len() > 1 {
formatted.push('.');
formatted.push_str(parts[1]);
}
formatted
}