solverforge_solver/phase/construction/
phase.rs1use std::fmt::Debug;
4use std::marker::PhantomData;
5
6use solverforge_core::domain::PlanningSolution;
7use solverforge_scoring::Director;
8use tracing::info;
9
10use crate::heuristic::r#move::Move;
11use crate::phase::construction::{ConstructionForager, EntityPlacer};
12use crate::phase::Phase;
13use crate::scope::ProgressCallback;
14use crate::scope::{PhaseScope, SolverScope, StepScope};
15
16pub struct ConstructionHeuristicPhase<S, M, P, Fo>
27where
28 S: PlanningSolution,
29 M: Move<S>,
30 P: EntityPlacer<S, M>,
31 Fo: ConstructionForager<S, M>,
32{
33 placer: P,
34 forager: Fo,
35 _phantom: PhantomData<fn() -> (S, M)>,
36}
37
38impl<S, M, P, Fo> ConstructionHeuristicPhase<S, M, P, Fo>
39where
40 S: PlanningSolution,
41 M: Move<S>,
42 P: EntityPlacer<S, M>,
43 Fo: ConstructionForager<S, M>,
44{
45 pub fn new(placer: P, forager: Fo) -> Self {
46 Self {
47 placer,
48 forager,
49 _phantom: PhantomData,
50 }
51 }
52}
53
54impl<S, M, P, Fo> Debug for ConstructionHeuristicPhase<S, M, P, Fo>
55where
56 S: PlanningSolution,
57 M: Move<S>,
58 P: EntityPlacer<S, M> + Debug,
59 Fo: ConstructionForager<S, M> + Debug,
60{
61 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
62 f.debug_struct("ConstructionHeuristicPhase")
63 .field("placer", &self.placer)
64 .field("forager", &self.forager)
65 .finish()
66 }
67}
68
69impl<S, D, BestCb, M, P, Fo> Phase<S, D, BestCb> for ConstructionHeuristicPhase<S, M, P, Fo>
70where
71 S: PlanningSolution,
72 D: Director<S>,
73 BestCb: ProgressCallback<S>,
74 M: Move<S>,
75 P: EntityPlacer<S, M>,
76 Fo: ConstructionForager<S, M>,
77{
78 fn solve(&mut self, solver_scope: &mut SolverScope<S, D, BestCb>) {
79 let mut phase_scope = PhaseScope::new(solver_scope, 0);
80 let phase_index = phase_scope.phase_index();
81
82 info!(
83 event = "phase_start",
84 phase = "Construction Heuristic",
85 phase_index = phase_index,
86 );
87
88 let placements = self.placer.get_placements(phase_scope.score_director());
90
91 for mut placement in placements {
92 if phase_scope.solver_scope().should_terminate_construction() {
95 break;
96 }
97
98 let moves_in_placement = placement.moves.len() as u64;
101
102 let mut step_scope = StepScope::new(&mut phase_scope);
103
104 let selected_idx = self
106 .forager
107 .pick_move_index(&placement, step_scope.score_director_mut());
108
109 for i in 0..moves_in_placement {
111 let accepted = selected_idx == Some(i as usize);
112 step_scope
113 .phase_scope_mut()
114 .solver_scope_mut()
115 .stats_mut()
116 .record_move(accepted);
117 }
118
119 if let Some(idx) = selected_idx {
120 let m = placement.take_move(idx);
122
123 m.do_move(step_scope.score_director_mut());
125
126 let step_score = step_scope.calculate_score();
128 step_scope.set_step_score(step_score);
129 }
130
131 step_scope.complete();
132 }
133
134 phase_scope.update_best_solution();
136
137 let best_score = phase_scope
138 .solver_scope()
139 .best_score()
140 .map(|s| format!("{}", s))
141 .unwrap_or_else(|| "none".to_string());
142
143 let duration = phase_scope.elapsed();
144 let steps = phase_scope.step_count();
145 let speed = if duration.as_secs_f64() > 0.0 {
146 (steps as f64 / duration.as_secs_f64()) as u64
147 } else {
148 0
149 };
150 let stats = phase_scope.solver_scope().stats();
151
152 info!(
153 event = "phase_end",
154 phase = "Construction Heuristic",
155 phase_index = phase_index,
156 duration_ms = duration.as_millis() as u64,
157 steps = steps,
158 moves_evaluated = stats.moves_evaluated,
159 moves_accepted = stats.moves_accepted,
160 score_calculations = stats.score_calculations,
161 speed = speed,
162 score = best_score,
163 );
164 }
165
166 fn phase_type_name(&self) -> &'static str {
167 "ConstructionHeuristic"
168 }
169}
170
171#[cfg(test)]
172mod tests {
173 use super::*;
174 use crate::heuristic::selector::{FromSolutionEntitySelector, StaticValueSelector};
175 use crate::phase::construction::{BestFitForager, FirstFitForager, QueuedEntityPlacer};
176 use crate::test_utils::{
177 create_simple_nqueens_director, get_queen_row, set_queen_row, NQueensSolution,
178 };
179
180 fn create_placer(
181 values: Vec<i64>,
182 ) -> QueuedEntityPlacer<
183 NQueensSolution,
184 i64,
185 FromSolutionEntitySelector,
186 StaticValueSelector<NQueensSolution, i64>,
187 > {
188 let es = FromSolutionEntitySelector::new(0);
189 let vs = StaticValueSelector::new(values);
190 QueuedEntityPlacer::new(es, vs, get_queen_row, set_queen_row, 0, "row")
191 }
192
193 #[test]
194 fn test_construction_first_fit() {
195 let director = create_simple_nqueens_director(4);
196 let mut solver_scope = SolverScope::new(director);
197 solver_scope.start_solving();
198
199 let values: Vec<i64> = (0..4).collect();
200 let placer = create_placer(values);
201 let forager = FirstFitForager::new();
202 let mut phase = ConstructionHeuristicPhase::new(placer, forager);
203
204 phase.solve(&mut solver_scope);
205
206 let solution = solver_scope.working_solution();
207 assert_eq!(solution.queens.len(), 4);
208 for queen in &solution.queens {
209 assert!(queen.row.is_some(), "Queen should have a row assigned");
210 }
211
212 assert!(solver_scope.best_solution().is_some());
213 assert!(solver_scope.stats().moves_evaluated > 0);
215 }
216
217 #[test]
218 fn test_construction_best_fit() {
219 let director = create_simple_nqueens_director(4);
220 let mut solver_scope = SolverScope::new(director);
221 solver_scope.start_solving();
222
223 let values: Vec<i64> = (0..4).collect();
224 let placer = create_placer(values);
225 let forager = BestFitForager::new();
226 let mut phase = ConstructionHeuristicPhase::new(placer, forager);
227
228 phase.solve(&mut solver_scope);
229
230 let solution = solver_scope.working_solution();
231 for queen in &solution.queens {
232 assert!(queen.row.is_some(), "Queen should have a row assigned");
233 }
234
235 assert!(solver_scope.best_solution().is_some());
236 assert!(solver_scope.best_score().is_some());
237
238 assert_eq!(solver_scope.stats().moves_evaluated, 16);
240 }
241
242 #[test]
243 fn test_construction_empty_solution() {
244 let director = create_simple_nqueens_director(0);
245 let mut solver_scope = SolverScope::new(director);
246 solver_scope.start_solving();
247
248 let values: Vec<i64> = vec![];
249 let placer = create_placer(values);
250 let forager = FirstFitForager::new();
251 let mut phase = ConstructionHeuristicPhase::new(placer, forager);
252
253 phase.solve(&mut solver_scope);
254
255 assert_eq!(solver_scope.stats().moves_evaluated, 0);
257 }
258}