1#[derive(Debug, Clone)]
3pub enum ScheduleKind {
4 Geometric { rate: f64 },
5 Linear { steps: usize },
6 ReciprocalIter,
7}
8
9impl ScheduleKind {
10 #[must_use]
18 pub fn geometric_rate_from_steps(tau_start: f64, tau_min: f64, steps: usize) -> f64 {
19 let steps = steps.max(1);
20 (tau_min / tau_start).powf(1.0 / steps as f64)
21 }
22}
23
24#[derive(Debug, Clone)]
32pub struct GumbelTemperatureSchedule {
33 pub tau_start: f64,
34 pub tau_min: f64,
35 pub decay: ScheduleKind,
36 pub iter_count: usize,
37}
38
39impl GumbelTemperatureSchedule {
40 #[must_use = "build error must be handled"]
41 pub fn new(tau_start: f64, tau_min: f64, decay: ScheduleKind) -> Result<Self, String> {
42 let sched = Self {
43 tau_start,
44 tau_min,
45 decay,
46 iter_count: 0,
47 };
48 sched.validate()?;
49 Ok(sched)
50 }
51
52 pub fn validate(&self) -> Result<(), String> {
53 if !(self.tau_start.is_finite() && self.tau_start > 0.0) {
54 return Err(format!(
55 "GumbelTemperatureSchedule: tau_start must be finite and positive; got {}",
56 self.tau_start
57 ));
58 }
59 if !(self.tau_min.is_finite() && self.tau_min > 0.0) {
60 return Err(format!(
61 "GumbelTemperatureSchedule: tau_min must be finite and positive; got {}",
62 self.tau_min
63 ));
64 }
65 if self.tau_min > self.tau_start {
66 return Err(format!(
67 "GumbelTemperatureSchedule: tau_min ({}) cannot exceed tau_start ({})",
68 self.tau_min, self.tau_start
69 ));
70 }
71 match self.decay {
72 ScheduleKind::Geometric { rate } => {
73 let no_decay_needed = self.tau_min >= self.tau_start;
84 let rate_ok = rate.is_finite()
85 && rate > 0.0
86 && (rate < 1.0 || (no_decay_needed && rate == 1.0));
87 if !rate_ok {
88 return Err(format!(
89 "GumbelTemperatureSchedule::Geometric: rate must be in (0, 1); got {rate}"
90 ));
91 }
92 }
93 ScheduleKind::Linear { steps } => {
94 if steps == 0 {
95 return Err("GumbelTemperatureSchedule::Linear: steps must be positive".into());
96 }
97 }
98 ScheduleKind::ReciprocalIter => {}
99 }
100 Ok(())
101 }
102
103 pub fn current_tau(&self, iter: usize) -> f64 {
104 let raw = match self.decay {
105 ScheduleKind::Geometric { rate } => self.tau_start * rate.powf(iter as f64),
106 ScheduleKind::Linear { steps } => {
107 if iter >= steps {
108 self.tau_min
109 } else {
110 let frac = iter as f64 / steps as f64;
111 self.tau_start + frac * (self.tau_min - self.tau_start)
112 }
113 }
114 ScheduleKind::ReciprocalIter => self.tau_start / (1.0 + iter as f64),
115 };
116 raw.max(self.tau_min)
117 }
118
119 pub fn step(&mut self) -> f64 {
120 let tau = self.current_tau(self.iter_count);
121 self.iter_count += 1;
122 tau
123 }
124}
125
126
127#[cfg(test)]
128mod tests {
129 use super::*;
130
131 fn geometric(rate: f64) -> GumbelTemperatureSchedule {
132 GumbelTemperatureSchedule::new(1.0, 0.01, ScheduleKind::Geometric { rate }).unwrap()
133 }
134
135 #[test]
138 fn new_ok_for_valid_geometric() {
139 assert!(
140 GumbelTemperatureSchedule::new(1.0, 0.1, ScheduleKind::Geometric { rate: 0.9 }).is_ok()
141 );
142 }
143
144 #[test]
145 fn new_err_for_non_positive_tau_start() {
146 assert!(GumbelTemperatureSchedule::new(0.0, 0.1, ScheduleKind::ReciprocalIter).is_err());
147 assert!(
148 GumbelTemperatureSchedule::new(f64::NAN, 0.1, ScheduleKind::ReciprocalIter).is_err()
149 );
150 }
151
152 #[test]
153 fn new_err_for_tau_min_exceeds_tau_start() {
154 assert!(
155 GumbelTemperatureSchedule::new(0.5, 1.0, ScheduleKind::Geometric { rate: 0.9 })
156 .is_err()
157 );
158 }
159
160 #[test]
161 fn new_err_for_geometric_rate_out_of_range() {
162 assert!(
163 GumbelTemperatureSchedule::new(1.0, 0.1, ScheduleKind::Geometric { rate: 1.0 })
164 .is_err()
165 );
166 assert!(
167 GumbelTemperatureSchedule::new(1.0, 0.1, ScheduleKind::Geometric { rate: 0.0 })
168 .is_err()
169 );
170 }
171
172 #[test]
180 fn new_ok_for_geometric_rate_one_when_no_decay_needed() {
181 let rate = ScheduleKind::geometric_rate_from_steps(0.5, 0.5, 10);
182 assert!((rate - 1.0).abs() < 1e-15, "rate {rate}");
183 let s = GumbelTemperatureSchedule::new(0.5, 0.5, ScheduleKind::Geometric { rate })
184 .expect("tau_min == tau_start must accept the derived rate == 1.0 geometric decay");
185 for iter in [0usize, 1, 10, 1000] {
186 assert!(
187 (s.current_tau(iter) - 0.5).abs() < 1e-15,
188 "tau at iter {iter} should stay pinned at 0.5"
189 );
190 }
191 }
192
193 #[test]
198 fn new_ok_for_explicit_geometric_rate_one_when_no_decay_needed() {
199 assert!(
200 GumbelTemperatureSchedule::new(0.5, 0.5, ScheduleKind::Geometric { rate: 1.0 }).is_ok()
201 );
202 }
203
204 #[test]
205 fn new_err_for_linear_zero_steps() {
206 assert!(
207 GumbelTemperatureSchedule::new(1.0, 0.1, ScheduleKind::Linear { steps: 0 }).is_err()
208 );
209 }
210
211 #[test]
214 fn geometric_iter_zero_returns_tau_start() {
215 let s = geometric(0.5);
216 assert!((s.current_tau(0) - 1.0).abs() < 1e-14);
217 }
218
219 #[test]
220 fn geometric_decays_by_rate_each_step() {
221 let s = geometric(0.5);
222 assert!((s.current_tau(2) - 0.25).abs() < 1e-12);
224 }
225
226 #[test]
227 fn geometric_clamps_at_tau_min() {
228 let s = GumbelTemperatureSchedule::new(1.0, 0.5, ScheduleKind::Geometric { rate: 0.1 })
229 .unwrap();
230 assert!((s.current_tau(5) - 0.5).abs() < 1e-14);
232 }
233
234 #[test]
237 fn linear_iter_zero_returns_tau_start() {
238 let s =
239 GumbelTemperatureSchedule::new(2.0, 0.5, ScheduleKind::Linear { steps: 10 }).unwrap();
240 assert!((s.current_tau(0) - 2.0).abs() < 1e-14);
241 }
242
243 #[test]
244 fn linear_at_steps_returns_tau_min() {
245 let s =
246 GumbelTemperatureSchedule::new(2.0, 0.5, ScheduleKind::Linear { steps: 10 }).unwrap();
247 assert!((s.current_tau(10) - 0.5).abs() < 1e-14);
248 }
249
250 #[test]
253 fn reciprocal_iter_zero_returns_tau_start() {
254 let s = GumbelTemperatureSchedule::new(4.0, 0.1, ScheduleKind::ReciprocalIter).unwrap();
255 assert!((s.current_tau(0) - 4.0).abs() < 1e-14);
256 }
257
258 #[test]
259 fn reciprocal_iter_one_halves_tau_start() {
260 let s = GumbelTemperatureSchedule::new(4.0, 0.1, ScheduleKind::ReciprocalIter).unwrap();
261 assert!((s.current_tau(1) - 2.0).abs() < 1e-14);
262 }
263
264 #[test]
267 fn step_increments_iter_count() {
268 let mut s = geometric(0.5);
269 assert_eq!(s.iter_count, 0);
270 s.step();
271 assert_eq!(s.iter_count, 1);
272 s.step();
273 assert_eq!(s.iter_count, 2);
274 }
275
276}