1use crate::ohlcv::Candle;
4use crate::traits::Indicator;
5
6#[derive(Debug, Clone, Default)]
45pub struct StalledPattern {
46 c1: Option<Candle>,
47 c2: Option<Candle>,
48 has_emitted: bool,
49}
50
51impl StalledPattern {
52 pub const fn new() -> Self {
54 Self {
55 c1: None,
56 c2: None,
57 has_emitted: false,
58 }
59 }
60}
61
62impl Indicator for StalledPattern {
63 type Input = Candle;
64 type Output = f64;
65
66 fn update(&mut self, candle: Candle) -> Option<f64> {
67 self.has_emitted = true;
68 let bar1 = self.c1;
69 let bar2 = self.c2;
70 self.c1 = self.c2;
71 self.c2 = Some(candle);
72 let (Some(bar1), Some(bar2)) = (bar1, bar2) else {
73 return Some(0.0);
74 };
75 let range1 = bar1.high - bar1.low;
76 let range2 = bar2.high - bar2.low;
77 let range3 = candle.high - candle.low;
78 if range1 <= 0.0 || range2 <= 0.0 || range3 <= 0.0 {
79 return Some(0.0);
80 }
81 if bar1.close <= bar1.open || bar2.close <= bar2.open || candle.close <= candle.open {
83 return Some(0.0);
84 }
85 if candle.close <= bar2.close || bar2.close <= bar1.close {
87 return Some(0.0);
88 }
89 if bar1.close - bar1.open < 0.5 * range1 || bar2.close - bar2.open < 0.5 * range2 {
91 return Some(0.0);
92 }
93 if candle.close - candle.open > 0.3 * range3 {
95 return Some(0.0);
96 }
97 if candle.open >= bar2.close - 0.1 * range2 {
99 return Some(-1.0);
100 }
101 Some(0.0)
102 }
103
104 fn reset(&mut self) {
105 self.c1 = None;
106 self.c2 = None;
107 self.has_emitted = false;
108 }
109
110 fn warmup_period(&self) -> usize {
111 3
112 }
113
114 fn is_ready(&self) -> bool {
115 self.has_emitted
116 }
117
118 fn name(&self) -> &'static str {
119 "StalledPattern"
120 }
121}
122
123#[cfg(test)]
124mod tests {
125 use super::*;
126 use crate::traits::BatchExt;
127
128 fn c(open: f64, high: f64, low: f64, close: f64, ts: i64) -> Candle {
129 Candle::new(open, high, low, close, 1.0, ts).unwrap()
130 }
131
132 #[test]
133 fn accessors_and_metadata() {
134 let t = StalledPattern::new();
135 assert_eq!(t.name(), "StalledPattern");
136 assert_eq!(t.warmup_period(), 3);
137 assert!(!t.is_ready());
138 }
139
140 #[test]
141 fn stalled_pattern_is_minus_one() {
142 let mut t = StalledPattern::new();
143 assert_eq!(t.update(c(10.0, 12.05, 9.9, 12.0, 0)), Some(0.0));
144 assert_eq!(t.update(c(11.0, 14.05, 10.9, 14.0, 1)), Some(0.0));
145 assert_eq!(t.update(c(14.0, 14.6, 13.95, 14.15, 2)), Some(-1.0));
146 }
147
148 #[test]
149 fn first_two_bars_return_zero() {
150 let mut t = StalledPattern::new();
151 assert_eq!(t.update(c(10.0, 12.05, 9.9, 12.0, 0)), Some(0.0));
152 assert_eq!(t.update(c(11.0, 14.05, 10.9, 14.0, 1)), Some(0.0));
153 }
154
155 #[test]
156 fn zero_range_yields_zero() {
157 let mut t = StalledPattern::new();
158 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
159 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
160 assert_eq!(t.update(c(14.0, 14.0, 14.0, 14.0, 2)), Some(0.0));
162 }
163
164 #[test]
165 fn non_white_yields_zero() {
166 let mut t = StalledPattern::new();
167 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
168 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
169 assert_eq!(t.update(c(14.2, 14.6, 13.95, 14.05, 2)), Some(0.0));
171 }
172
173 #[test]
174 fn non_rising_closes_yield_zero() {
175 let mut t = StalledPattern::new();
176 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
177 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
178 assert_eq!(t.update(c(13.5, 14.0, 13.45, 13.6, 2)), Some(0.0));
180 }
181
182 #[test]
183 fn short_first_bodies_yield_zero() {
184 let mut t = StalledPattern::new();
185 t.update(c(11.5, 14.0, 10.0, 12.0, 0));
187 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
188 assert_eq!(t.update(c(14.0, 14.6, 13.95, 14.15, 2)), Some(0.0));
189 }
190
191 #[test]
192 fn large_third_body_yields_zero() {
193 let mut t = StalledPattern::new();
194 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
195 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
196 assert_eq!(t.update(c(14.0, 16.05, 13.95, 16.0, 2)), Some(0.0));
198 }
199
200 #[test]
201 fn third_bar_off_shoulder_yields_zero() {
202 let mut t = StalledPattern::new();
203 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
204 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
205 assert_eq!(t.update(c(13.6, 14.1, 12.55, 14.05, 2)), Some(0.0));
208 }
209
210 #[test]
211 fn batch_equals_streaming() {
212 let candles: Vec<Candle> = (0..40)
213 .map(|i| {
214 let base = 100.0 + i as f64;
215 c(base, base + 2.05, base - 0.1, base + 2.0, i)
216 })
217 .collect();
218 let mut a = StalledPattern::new();
219 let mut b = StalledPattern::new();
220 assert_eq!(
221 a.batch(&candles),
222 candles.iter().map(|x| b.update(*x)).collect::<Vec<_>>()
223 );
224 }
225
226 #[test]
227 fn reset_clears_state() {
228 let mut t = StalledPattern::new();
229 t.update(c(10.0, 12.05, 9.9, 12.0, 0));
230 t.update(c(11.0, 14.05, 10.9, 14.0, 1));
231 t.update(c(14.0, 14.6, 13.95, 14.15, 2));
232 assert!(t.is_ready());
233 t.reset();
234 assert!(!t.is_ready());
235 assert_eq!(t.update(c(10.0, 12.05, 9.9, 12.0, 0)), Some(0.0));
236 }
237}