wickra_core/indicators/
elder_ray.rs1use crate::error::Result;
4use crate::indicators::ema::Ema;
5use crate::ohlcv::Candle;
6use crate::traits::Indicator;
7
8#[derive(Debug, Clone, Copy, PartialEq)]
10pub struct ElderRayOutput {
11 pub bull_power: f64,
13 pub bear_power: f64,
16}
17
18#[derive(Debug, Clone)]
52pub struct ElderRay {
53 period: usize,
54 ema: Ema,
55}
56
57impl ElderRay {
58 pub fn new(period: usize) -> Result<Self> {
64 Ok(Self {
65 period,
66 ema: Ema::new(period)?,
67 })
68 }
69
70 pub const fn period(&self) -> usize {
72 self.period
73 }
74}
75
76impl Indicator for ElderRay {
77 type Input = Candle;
78 type Output = ElderRayOutput;
79
80 #[inline]
81 fn update(&mut self, candle: Candle) -> Option<ElderRayOutput> {
82 let ema = self.ema.update(candle.close)?;
83 Some(ElderRayOutput {
84 bull_power: candle.high - ema,
85 bear_power: candle.low - ema,
86 })
87 }
88
89 fn reset(&mut self) {
90 self.ema.reset();
91 }
92
93 #[inline]
94 fn warmup_period(&self) -> usize {
95 self.period
96 }
97
98 #[inline]
99 fn is_ready(&self) -> bool {
100 self.ema.is_ready()
101 }
102
103 #[inline]
104 fn name(&self) -> &'static str {
105 "ElderRay"
106 }
107}
108
109#[cfg(test)]
110mod tests {
111 use super::*;
112 use crate::traits::BatchExt;
113 use approx::assert_relative_eq;
114
115 fn candle(high: f64, low: f64, close: f64) -> Candle {
116 Candle::new(close, high, low, close, 1.0, 0).unwrap()
117 }
118
119 #[test]
120 fn rejects_zero_period() {
121 assert!(ElderRay::new(0).is_err());
122 }
123
124 #[test]
127 fn accessors_and_metadata() {
128 let er = ElderRay::new(13).unwrap();
129 assert_eq!(er.period(), 13);
130 assert_eq!(er.warmup_period(), 13);
131 assert_eq!(er.name(), "ElderRay");
132 }
133
134 #[test]
135 fn warmup_then_known_value() {
136 let mut er = ElderRay::new(3).unwrap();
139 assert_eq!(er.update(candle(11.0, 9.0, 10.0)), None);
140 assert_eq!(er.update(candle(13.0, 11.0, 12.0)), None);
141 let v = er.update(candle(16.0, 13.0, 14.0)).unwrap();
142 assert_relative_eq!(v.bull_power, 4.0, epsilon = 1e-12);
143 assert_relative_eq!(v.bear_power, 1.0, epsilon = 1e-12);
144 }
145
146 #[test]
147 fn matches_manual_ema() {
148 let bars: Vec<Candle> = (0..40)
149 .map(|i| {
150 let base = 100.0 + (f64::from(i) * 0.3).sin() * 5.0;
151 candle(base + 2.0, base - 2.0, base)
152 })
153 .collect();
154 let mut er = ElderRay::new(13).unwrap();
155 let mut ema = Ema::new(13).unwrap();
156 for (i, c) in bars.iter().enumerate() {
157 let got = er.update(*c);
158 let want = ema.update(c.close).map(|e| (c.high - e, c.low - e));
159 assert_eq!(got.is_some(), want.is_some(), "readiness mismatch at {i}");
160 if let (Some(g), Some((b, be))) = (got, want) {
161 assert_relative_eq!(g.bull_power, b, epsilon = 1e-9);
162 assert_relative_eq!(g.bear_power, be, epsilon = 1e-9);
163 }
164 }
165 }
166
167 #[test]
168 fn reset_clears_state() {
169 let mut er = ElderRay::new(5).unwrap();
170 er.batch(
171 &(0..20)
172 .map(|i| candle(f64::from(i) + 1.0, f64::from(i) - 1.0, f64::from(i)))
173 .collect::<Vec<_>>(),
174 );
175 assert!(er.is_ready());
176 er.reset();
177 assert!(!er.is_ready());
178 assert_eq!(er.update(candle(2.0, 0.0, 1.0)), None);
179 }
180
181 #[test]
182 fn batch_equals_streaming() {
183 let bars: Vec<Candle> = (0..30)
184 .map(|i| {
185 let base = 50.0 + f64::from(i);
186 candle(base + 1.5, base - 1.5, base)
187 })
188 .collect();
189 let mut a = ElderRay::new(7).unwrap();
190 let mut b = ElderRay::new(7).unwrap();
191 assert_eq!(
192 a.batch(&bars),
193 bars.iter().map(|c| b.update(*c)).collect::<Vec<_>>()
194 );
195 }
196}