feat(analysis): add technical analysis module and stocks technical command

- Add analysis module: SMA, EMA, RSI(14), MACD(12,26,9), volume ratio
- Add signal interpretation: bullish/bearish/neutral with consensus voting
- Wire up 'stocks technical <SYMBOL>' CLI subcommand
- Table output with colored signals + JSON output support
- Cache/offline/stale-cache fallback (same pattern as quote/history)
- Fetch 1 year of daily data for SMA200 coverage (~250 trading days)
- Add TechnicalReport, MacdSnapshot, VolumeSnapshot structs
- Add 4 new unit tests + 3 integration tests (30 total passing)
This commit is contained in:
Ciphercat 2026-03-05 21:27:38 +00:00
commit 9182f25a01
8 changed files with 723 additions and 6 deletions

2
src/analysis/mod.rs Normal file
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@ -0,0 +1,2 @@
pub mod signals;
pub mod technical;

102
src/analysis/signals.rs Normal file
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@ -0,0 +1,102 @@
use serde::{Deserialize, Serialize};
#[derive(Debug, Clone, Copy, PartialEq, Eq, Serialize, Deserialize)]
pub enum Signal {
Bullish,
Bearish,
Neutral,
}
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct TechnicalSignal {
pub rsi: Signal,
pub macd: Signal,
pub trend: Signal,
pub overall: Signal,
}
pub fn interpret_rsi(value: f64) -> Signal {
if value > 70.0 {
Signal::Bearish
} else if value < 30.0 {
Signal::Bullish
} else {
Signal::Neutral
}
}
pub fn interpret_macd(histogram: f64, prev_histogram: Option<f64>) -> Signal {
if let Some(prev) = prev_histogram {
if histogram > 0.0 && histogram > prev {
Signal::Bullish
} else if histogram < 0.0 && histogram < prev {
Signal::Bearish
} else {
Signal::Neutral
}
} else {
Signal::Neutral
}
}
pub fn interpret_trend(price: f64, sma50: Option<f64>, sma200: Option<f64>) -> Signal {
match (sma50, sma200) {
(Some(s50), Some(s200)) if price > s50 && price > s200 => Signal::Bullish,
(Some(s50), Some(s200)) if price < s50 && price < s200 => Signal::Bearish,
_ => Signal::Neutral,
}
}
pub fn overall_signal(rsi: Signal, macd: Signal, trend: Signal) -> Signal {
let signals = [rsi, macd, trend];
let bullish = signals.iter().filter(|&&s| s == Signal::Bullish).count();
let bearish = signals.iter().filter(|&&s| s == Signal::Bearish).count();
if bullish >= 2 {
Signal::Bullish
} else if bearish >= 2 {
Signal::Bearish
} else {
Signal::Neutral
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn interpret_rsi_thresholds() {
assert_eq!(interpret_rsi(75.0), Signal::Bearish);
assert_eq!(interpret_rsi(25.0), Signal::Bullish);
assert_eq!(interpret_rsi(50.0), Signal::Neutral);
}
#[test]
fn interpret_trend_thresholds() {
assert_eq!(
interpret_trend(120.0, Some(100.0), Some(110.0)),
Signal::Bullish
);
assert_eq!(
interpret_trend(80.0, Some(100.0), Some(90.0)),
Signal::Bearish
);
}
#[test]
fn overall_majority_vote() {
assert_eq!(
overall_signal(Signal::Bullish, Signal::Bullish, Signal::Neutral),
Signal::Bullish
);
assert_eq!(
overall_signal(Signal::Bearish, Signal::Neutral, Signal::Bearish),
Signal::Bearish
);
assert_eq!(
overall_signal(Signal::Bullish, Signal::Bearish, Signal::Neutral),
Signal::Neutral
);
}
}

212
src/analysis/technical.rs Normal file
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@ -0,0 +1,212 @@
use serde::Serialize;
#[derive(Debug, Clone, Serialize)]
pub struct MacdResult {
pub macd_line: Vec<Option<f64>>,
pub signal_line: Vec<Option<f64>>,
pub histogram: Vec<Option<f64>>,
}
pub fn sma(data: &[f64], period: usize) -> Vec<Option<f64>> {
let mut result = vec![None; data.len()];
if period == 0 || period > data.len() {
return result;
}
let mut window_sum: f64 = data[..period].iter().sum();
result[period - 1] = Some(window_sum / period as f64);
for idx in period..data.len() {
window_sum += data[idx] - data[idx - period];
result[idx] = Some(window_sum / period as f64);
}
result
}
pub fn ema(data: &[f64], period: usize) -> Vec<Option<f64>> {
let mut result = vec![None; data.len()];
if period == 0 || period > data.len() {
return result;
}
let multiplier = 2.0 / (period as f64 + 1.0);
let seed = data[..period].iter().sum::<f64>() / period as f64;
result[period - 1] = Some(seed);
let mut prev = seed;
for idx in period..data.len() {
let current = ((data[idx] - prev) * multiplier) + prev;
result[idx] = Some(current);
prev = current;
}
result
}
pub fn rsi(closes: &[f64], period: usize) -> Vec<Option<f64>> {
let mut result = vec![None; closes.len()];
if period == 0 || closes.len() <= period {
return result;
}
let mut gains = 0.0;
let mut losses = 0.0;
for idx in 1..=period {
let change = closes[idx] - closes[idx - 1];
if change >= 0.0 {
gains += change;
} else {
losses += -change;
}
}
let mut avg_gain = gains / period as f64;
let mut avg_loss = losses / period as f64;
result[period] = Some(rsi_from_averages(avg_gain, avg_loss));
for idx in (period + 1)..closes.len() {
let change = closes[idx] - closes[idx - 1];
let gain = if change > 0.0 { change } else { 0.0 };
let loss = if change < 0.0 { -change } else { 0.0 };
avg_gain = ((avg_gain * (period as f64 - 1.0)) + gain) / period as f64;
avg_loss = ((avg_loss * (period as f64 - 1.0)) + loss) / period as f64;
result[idx] = Some(rsi_from_averages(avg_gain, avg_loss));
}
result
}
fn rsi_from_averages(avg_gain: f64, avg_loss: f64) -> f64 {
if avg_loss == 0.0 {
return 100.0;
}
let rs = avg_gain / avg_loss;
100.0 - (100.0 / (1.0 + rs))
}
pub fn macd(closes: &[f64], fast: usize, slow: usize, signal: usize) -> MacdResult {
let len = closes.len();
let mut macd_line = vec![None; len];
let mut signal_line = vec![None; len];
let mut histogram = vec![None; len];
if len == 0 || fast == 0 || slow == 0 || signal == 0 {
return MacdResult {
macd_line,
signal_line,
histogram,
};
}
let fast_ema = ema(closes, fast);
let slow_ema = ema(closes, slow);
for idx in 0..len {
if let (Some(f), Some(s)) = (fast_ema[idx], slow_ema[idx]) {
macd_line[idx] = Some(f - s);
}
}
let mut signal_seed = Vec::new();
let signal_multiplier = 2.0 / (signal as f64 + 1.0);
let mut prev_signal = None;
for idx in 0..len {
if let Some(value) = macd_line[idx] {
if prev_signal.is_none() {
signal_seed.push(value);
if signal_seed.len() == signal {
let seed = signal_seed.iter().sum::<f64>() / signal as f64;
signal_line[idx] = Some(seed);
prev_signal = Some(seed);
histogram[idx] = Some(value - seed);
}
} else if let Some(prev) = prev_signal {
let current = ((value - prev) * signal_multiplier) + prev;
signal_line[idx] = Some(current);
prev_signal = Some(current);
histogram[idx] = Some(value - current);
}
}
}
MacdResult {
macd_line,
signal_line,
histogram,
}
}
pub fn volume_ratio(volumes: &[f64], period: usize) -> Option<f64> {
if period == 0 || volumes.len() < period {
return None;
}
let start = volumes.len() - period;
let avg = volumes[start..].iter().sum::<f64>() / period as f64;
if avg == 0.0 {
return None;
}
volumes.last().map(|last| *last / avg)
}
#[cfg(test)]
mod tests {
use super::*;
fn approx_eq(left: f64, right: f64, eps: f64) {
assert!((left - right).abs() <= eps, "left={left}, right={right}");
}
#[test]
fn sma_returns_expected_values() {
let data = [1.0, 2.0, 3.0, 4.0, 5.0];
let values = sma(&data, 3);
assert_eq!(values, vec![None, None, Some(2.0), Some(3.0), Some(4.0)]);
}
#[test]
fn rsi_returns_seeded_none_and_known_value() {
// Classic Wilder example dataset; RSI(14) first computed value ~= 70.46.
let closes = [
44.34, 44.09, 44.15, 43.61, 44.33, 44.83, 45.10, 45.42, 45.84, 46.08, 45.89, 46.03,
45.61, 46.28, 46.28,
];
let period = 14;
let values = rsi(&closes, period);
assert_eq!(values.len(), closes.len());
assert!(values.iter().take(period).all(Option::is_none));
let rsi_14 = values[period].expect("expected first RSI value");
approx_eq(rsi_14, 70.46, 0.05);
}
#[test]
fn macd_shapes_are_correct() {
let closes: Vec<f64> = (1..=60).map(|n| n as f64).collect();
let result = macd(&closes, 12, 26, 9);
assert_eq!(result.macd_line.len(), closes.len());
let macd_nones = result.macd_line.iter().filter(|v| v.is_none()).count();
let signal_nones = result.signal_line.iter().filter(|v| v.is_none()).count();
assert!(signal_nones > macd_nones);
}
#[test]
fn volume_ratio_checks() {
let volumes = [100.0, 120.0, 130.0, 150.0];
let ratio = volume_ratio(&volumes, 3).expect("ratio should exist");
approx_eq(ratio, 150.0 / ((120.0 + 130.0 + 150.0) / 3.0), 1e-10);
assert_eq!(volume_ratio(&volumes, 5), None);
}
}

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@ -1,11 +1,15 @@
use clap::{Args, Subcommand}; use clap::{Args, Subcommand};
use crate::analysis::signals::{self, Signal, TechnicalSignal};
use crate::analysis::technical;
use crate::api::MarketDataProvider; use crate::api::MarketDataProvider;
use crate::api::types::{Interval, Period}; use crate::api::types::{Interval, Ohlc, Period};
use crate::cache::Cache; use crate::cache::Cache;
use crate::config::IdxConfig; use crate::config::IdxConfig;
use crate::error::IdxError; use crate::error::IdxError;
use crate::output::{render_history, render_quotes}; use crate::output::{
MacdSnapshot, TechnicalReport, VolumeSnapshot, render_history, render_quotes, render_technical,
};
#[derive(Debug, Args)] #[derive(Debug, Args)]
#[command(about = "Stock data and analysis")] #[command(about = "Stock data and analysis")]
@ -36,6 +40,14 @@ pub enum StocksSubcommand {
#[arg(long, value_enum, default_value_t = Interval::Day)] #[arg(long, value_enum, default_value_t = Interval::Day)]
interval: Interval, interval: Interval,
}, },
#[command(
about = "Run technical analysis on a stock",
after_help = "Examples:\n idx stocks technical BBCA\n idx -o json stocks technical BBCA"
)]
Technical {
/// Single ticker symbol (e.g. BBCA).
symbol: String,
},
} }
pub fn handle( pub fn handle(
@ -134,5 +146,155 @@ pub fn handle(
} }
} }
} }
StocksSubcommand::Technical { symbol } => {
let resolved = crate::api::resolve_symbol(symbol, &config.exchange);
if !no_cache
&& let Some(report) = cache.get::<TechnicalReport>("technical", &resolved)?
{
return render_technical(&report, &config.output, config.no_color);
}
if offline {
let stale = cache
.get_stale::<TechnicalReport>("technical", &resolved)?
.ok_or_else(|| IdxError::CacheMiss(format!("technical/{resolved}")))?;
return render_technical(&stale, &config.output, config.no_color);
}
match provider.history(&resolved, &Period::OneYear, &Interval::Day) {
Ok(history) => {
let report = build_technical_report(&resolved, &history)?;
if !no_cache {
cache.put("technical", &resolved, &report, config.quote_ttl)?;
}
render_technical(&report, &config.output, config.no_color)
}
Err(err) => {
if !no_cache
&& let Some(stale) =
cache.get_stale::<TechnicalReport>("technical", &resolved)?
{
eprintln!("warning: network failed, serving stale cache for {resolved}");
return render_technical(&stale, &config.output, config.no_color);
}
Err(err)
}
}
}
}
}
fn build_technical_report(symbol: &str, history: &[Ohlc]) -> Result<TechnicalReport, IdxError> {
let latest = history
.last()
.ok_or_else(|| IdxError::ParseError(format!("no history available for {symbol}")))?;
let closes: Vec<f64> = history.iter().map(|item| item.close as f64).collect();
let volumes: Vec<f64> = history.iter().map(|item| item.volume as f64).collect();
let sma20 = last_value(&technical::sma(&closes, 20));
let sma50 = last_value(&technical::sma(&closes, 50));
let sma200 = last_value(&technical::sma(&closes, 200));
let rsi14 = last_value(&technical::rsi(&closes, 14));
let macd = technical::macd(&closes, 12, 26, 9);
let macd_line = last_value(&macd.macd_line);
let signal_line = last_value(&macd.signal_line);
let histogram = last_value(&macd.histogram);
let previous_histogram = previous_value(&macd.histogram);
let average_volume20 = average_last(&volumes, 20);
let volume_ratio20 = technical::volume_ratio(&volumes, 20);
let rsi_signal = rsi14.map_or(Signal::Neutral, signals::interpret_rsi);
let macd_signal = histogram
.map(|value| signals::interpret_macd(value, previous_histogram))
.unwrap_or(Signal::Neutral);
let trend_signal = signals::interpret_trend(latest.close as f64, sma50, sma200);
let overall = signals::overall_signal(rsi_signal, macd_signal, trend_signal);
Ok(TechnicalReport {
symbol: symbol.to_string(),
as_of: latest.date,
current_price: latest.close,
sma20,
sma50,
sma200,
rsi14,
macd: MacdSnapshot {
line: macd_line,
signal: signal_line,
histogram,
},
volume: VolumeSnapshot {
current: latest.volume,
average20: average_volume20,
ratio20: volume_ratio20,
},
signals: TechnicalSignal {
rsi: rsi_signal,
macd: macd_signal,
trend: trend_signal,
overall,
},
})
}
fn last_value(values: &[Option<f64>]) -> Option<f64> {
values.iter().rev().find_map(|value| *value)
}
fn previous_value(values: &[Option<f64>]) -> Option<f64> {
let mut seen_latest = false;
for value in values.iter().rev() {
if value.is_some() {
if seen_latest {
return *value;
}
seen_latest = true;
}
}
None
}
fn average_last(values: &[f64], period: usize) -> Option<f64> {
if period == 0 || values.len() < period {
return None;
}
let start = values.len() - period;
Some(values[start..].iter().sum::<f64>() / period as f64)
}
#[cfg(test)]
mod tests {
use chrono::{Days, NaiveDate};
use super::build_technical_report;
use crate::analysis::signals::Signal;
use crate::api::types::Ohlc;
#[test]
fn technical_report_uses_latest_values() {
let start = NaiveDate::from_ymd_opt(2025, 1, 1).expect("valid date");
let history: Vec<Ohlc> = (0..60)
.map(|idx| Ohlc {
date: start
.checked_add_days(Days::new(idx as u64))
.expect("valid offset"),
open: 100 + idx as i64,
high: 101 + idx as i64,
low: 99 + idx as i64,
close: 100 + idx as i64,
volume: 1_000 + idx as u64 * 10,
})
.collect();
let report = build_technical_report("BBCA.JK", &history).expect("report should build");
assert_eq!(report.symbol, "BBCA.JK");
assert_eq!(report.current_price, 159);
assert!(report.sma20.is_some());
assert!(report.sma50.is_some());
assert_eq!(report.sma200, None);
assert!(report.rsi14.is_some());
assert!(report.volume.ratio20.is_some());
assert_eq!(report.signals.trend, Signal::Neutral);
} }
} }

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@ -1,3 +1,4 @@
pub mod analysis;
mod api; mod api;
mod cache; mod cache;
mod cli; mod cli;

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@ -1,9 +1,11 @@
pub mod json; pub mod json;
pub mod table; pub mod table;
use chrono::NaiveDate;
use clap::ValueEnum; use clap::ValueEnum;
use serde::Serialize; use serde::{Deserialize, Serialize};
use crate::analysis::signals::TechnicalSignal;
use crate::api::types::{Ohlc, Quote}; use crate::api::types::{Ohlc, Quote};
use crate::error::IdxError; use crate::error::IdxError;
@ -15,6 +17,34 @@ pub enum OutputFormat {
Json, Json,
} }
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct TechnicalReport {
pub symbol: String,
pub as_of: NaiveDate,
pub current_price: i64,
pub sma20: Option<f64>,
pub sma50: Option<f64>,
pub sma200: Option<f64>,
pub rsi14: Option<f64>,
pub macd: MacdSnapshot,
pub volume: VolumeSnapshot,
pub signals: TechnicalSignal,
}
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct MacdSnapshot {
pub line: Option<f64>,
pub signal: Option<f64>,
pub histogram: Option<f64>,
}
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct VolumeSnapshot {
pub current: u64,
pub average20: Option<f64>,
pub ratio20: Option<f64>,
}
pub fn render_quotes( pub fn render_quotes(
quotes: &[Quote], quotes: &[Quote],
format: &OutputFormat, format: &OutputFormat,
@ -37,6 +67,17 @@ pub fn render_history(
} }
} }
pub fn render_technical(
report: &TechnicalReport,
format: &OutputFormat,
no_color: bool,
) -> Result<(), IdxError> {
match format {
OutputFormat::Table => table::print_technical(report, no_color),
OutputFormat::Json => json::print_json(report),
}
}
pub fn emit_error(err: &IdxError, format: &OutputFormat) { pub fn emit_error(err: &IdxError, format: &OutputFormat) {
match format { match format {
OutputFormat::Table => eprintln!("Error: {err}"), OutputFormat::Table => eprintln!("Error: {err}"),

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@ -1,8 +1,10 @@
use comfy_table::{Cell, Color, ContentArrangement, Table, presets::UTF8_FULL}; use comfy_table::{Cell, Color, ContentArrangement, Table, presets::UTF8_FULL};
use owo_colors::OwoColorize; use owo_colors::OwoColorize;
use crate::analysis::signals::Signal;
use crate::api::types::{Ohlc, Quote}; use crate::api::types::{Ohlc, Quote};
use crate::error::IdxError; use crate::error::IdxError;
use crate::output::TechnicalReport;
pub fn format_idr(value: i64) -> String { pub fn format_idr(value: i64) -> String {
let chars: Vec<char> = value.to_string().chars().rev().collect(); let chars: Vec<char> = value.to_string().chars().rev().collect();
@ -94,13 +96,160 @@ pub fn print_history(symbol: &str, history: &[Ohlc]) -> Result<(), IdxError> {
Ok(()) Ok(())
} }
pub fn print_technical(report: &TechnicalReport, no_color: bool) -> Result<(), IdxError> {
println!(
"{}",
format!(
"Technical Analysis for {} ({})",
report.symbol, report.as_of
)
.bold()
);
let mut table = Table::new();
table
.load_preset(UTF8_FULL)
.set_content_arrangement(ContentArrangement::Dynamic)
.set_header(vec!["METRIC", "VALUE", "SIGNAL"]);
table.add_row(vec![
Cell::new("Current Price"),
Cell::new(format_idr(report.current_price)),
Cell::new("-"),
]);
table.add_row(vec![
Cell::new("SMA 20"),
Cell::new(format_idr_option(report.sma20)),
Cell::new("-"),
]);
table.add_row(vec![
Cell::new("SMA 50"),
Cell::new(format_idr_option(report.sma50)),
Cell::new("-"),
]);
table.add_row(vec![
Cell::new("SMA 200"),
Cell::new(format_idr_option(report.sma200)),
Cell::new("-"),
]);
table.add_row(vec![
Cell::new("RSI (14)"),
Cell::new(format_float(report.rsi14, 2)),
Cell::new(format_signal(report.signals.rsi, no_color, false)),
]);
table.add_row(vec![
Cell::new("MACD (12,26,9)"),
Cell::new(format!(
"{}/{}/{}",
format_float(report.macd.line, 2),
format_float(report.macd.signal, 2),
format_float(report.macd.histogram, 2)
)),
Cell::new(format_signal(report.signals.macd, no_color, false)),
]);
table.add_row(vec![
Cell::new("Trend"),
Cell::new(trend_context(report)),
Cell::new(format_signal(report.signals.trend, no_color, false)),
]);
table.add_row(vec![
Cell::new("Volume Ratio (20)"),
Cell::new(format_volume_ratio(report)),
Cell::new("-"),
]);
table.add_row(vec![
Cell::new("Overall Signal"),
Cell::new("-"),
Cell::new(format_signal(report.signals.overall, no_color, true)),
]);
println!("{table}");
Ok(())
}
fn format_idr_option(value: Option<f64>) -> String {
value
.map(|v| format_idr(v.round() as i64))
.unwrap_or_else(|| "-".to_string())
}
fn format_float(value: Option<f64>, precision: usize) -> String {
value
.map(|v| format!("{v:.prec$}", prec = precision))
.unwrap_or_else(|| "-".to_string())
}
fn format_signal(signal: Signal, no_color: bool, uppercase: bool) -> String {
let label = if uppercase {
signal_label_upper(signal)
} else {
signal_label(signal)
};
if no_color {
return label.to_string();
}
match signal {
Signal::Bullish => label.green().to_string(),
Signal::Bearish => label.red().to_string(),
Signal::Neutral => label.yellow().to_string(),
}
}
fn signal_label(signal: Signal) -> &'static str {
match signal {
Signal::Bullish => "Bullish",
Signal::Bearish => "Bearish",
Signal::Neutral => "Neutral",
}
}
fn signal_label_upper(signal: Signal) -> &'static str {
match signal {
Signal::Bullish => "BULLISH",
Signal::Bearish => "BEARISH",
Signal::Neutral => "NEUTRAL",
}
}
fn trend_context(report: &TechnicalReport) -> String {
match (report.sma50, report.sma200) {
(Some(sma50), Some(sma200)) => format!(
"{} vs SMA50 {}, SMA200 {}",
format_idr(report.current_price),
format_idr(sma50.round() as i64),
format_idr(sma200.round() as i64)
),
_ => "Insufficient data".to_string(),
}
}
fn format_volume_ratio(report: &TechnicalReport) -> String {
match (report.volume.ratio20, report.volume.average20) {
(Some(ratio), Some(avg)) => format!(
"{ratio:.2}x ({} vs {} avg)",
format_u64(report.volume.current),
format_u64(avg.round() as u64)
),
_ => "-".to_string(),
}
}
#[cfg(test)] #[cfg(test)]
mod tests { mod tests {
use super::{format_idr, format_u64}; use super::{format_idr, format_signal, format_u64};
use crate::analysis::signals::Signal;
#[test] #[test]
fn formats_idr_numbers() { fn formats_idr_numbers() {
assert_eq!(format_idr(9875), "9,875"); assert_eq!(format_idr(9875), "9,875");
assert_eq!(format_u64(1_215_200_000_000_000), "1,215,200,000,000,000"); assert_eq!(format_u64(1_215_200_000_000_000), "1,215,200,000,000,000");
} }
#[test]
fn formats_plain_signal_labels() {
assert_eq!(format_signal(Signal::Bullish, true, false), "Bullish");
assert_eq!(format_signal(Signal::Bearish, true, true), "BEARISH");
}
} }

View file

@ -1,10 +1,10 @@
use std::fs; use std::fs;
use assert_cmd::{Command, cargo::cargo_bin}; use assert_cmd::Command;
use predicates::prelude::*; use predicates::prelude::*;
fn bin() -> Command { fn bin() -> Command {
Command::new(cargo_bin("idx-cli")) Command::new(assert_cmd::cargo::cargo_bin!("idx-cli"))
} }
fn test_env_dir(name: &str) -> std::path::PathBuf { fn test_env_dir(name: &str) -> std::path::PathBuf {
@ -64,6 +64,30 @@ fn history_with_mock_provider_table_contains_columns() {
.stdout(predicate::str::contains("VOLUME")); .stdout(predicate::str::contains("VOLUME"));
} }
#[test]
fn technical_with_mock_provider_table_contains_expected_rows() {
bin()
.env("IDX_USE_MOCK_PROVIDER", "1")
.args(["stocks", "technical", "BBCA"])
.assert()
.success()
.stdout(predicate::str::contains("Technical Analysis for"))
.stdout(predicate::str::contains("RSI (14)"))
.stdout(predicate::str::contains("Overall Signal"));
}
#[test]
fn technical_with_mock_provider_json_contains_fields() {
bin()
.env("IDX_USE_MOCK_PROVIDER", "1")
.args(["-o", "json", "stocks", "technical", "BBCA"])
.assert()
.success()
.stdout(predicate::str::contains("\"symbol\""))
.stdout(predicate::str::contains("\"sma20\""))
.stdout(predicate::str::contains("\"signals\""));
}
#[test] #[test]
fn config_path_prints_path() { fn config_path_prints_path() {
bin() bin()
@ -129,6 +153,30 @@ fn serves_stale_cache_on_provider_failure_with_warning() {
.stderr(predicate::str::contains("warning: network failed")); .stderr(predicate::str::contains("warning: network failed"));
} }
#[test]
fn technical_serves_stale_cache_on_provider_failure_with_warning() {
let root = test_env_dir("technical-stale");
let cache_home = root.join("cache");
bin()
.env("XDG_CACHE_HOME", &cache_home)
.env("IDX_USE_MOCK_PROVIDER", "1")
.env("IDX_CACHE_QUOTE_TTL", "0")
.args(["stocks", "technical", "BBCA"])
.assert()
.success();
bin()
.env("XDG_CACHE_HOME", &cache_home)
.env("IDX_USE_MOCK_PROVIDER", "1")
.env("IDX_CACHE_QUOTE_TTL", "0")
.env("IDX_MOCK_ERROR", "1")
.args(["stocks", "technical", "BBCA"])
.assert()
.success()
.stderr(predicate::str::contains("warning: network failed"));
}
#[test] #[test]
fn invalid_symbol_returns_non_zero() { fn invalid_symbol_returns_non_zero() {
bin() bin()