pub struct QualityHierarchy { /* private fields */ }Expand description
A checked refinement forest over levels, costs, parents, and child edges.
§Examples
use automation_structures::QualityHierarchy;
let mut hierarchy = QualityHierarchy::new(2, 3);
hierarchy.set_node_properties(0, 2, 1)?;
hierarchy.set_node_properties(1, 1, 2)?;
hierarchy.add_child(0, 1)?;
assert_eq!(hierarchy.parent(1), Some(0));Implementations§
Source§impl QualityHierarchy
impl QualityHierarchy
Sourcepub fn new(num_nodes: usize, max_level: u64) -> Self
pub fn new(num_nodes: usize, max_level: u64) -> Self
Construct a discrete hierarchy with no parent-child edges.
Examples found in repository?
examples/catalog.rs (line 27)
21fn main() -> Result<(), Box<dyn Error>> {
22 // Primitives.
23 let mut budget = Budget::new(8);
24 assert!(budget.try_reserve(3));
25 budget.commit_reservation(3)?;
26
27 let mut hierarchy = QualityHierarchy::new(2, 2);
28 hierarchy.set_node_properties(0, 2, 1)?;
29 hierarchy.set_node_properties(1, 1, 2)?;
30 hierarchy.add_child(0, 1)?;
31
32 let mut registry = ResourceRegistry::new();
33 registry.insert(1, 10);
34 assert_eq!(registry.get(1), Some(10));
35
36 let mut hard = CompetitiveSelectionHard::new(2)?;
37 hard.update_score(0, 2)?;
38 hard.update_score(1, 1)?;
39 assert_eq!(hard.evaluate(), 0);
40
41 let mut exclusive = CompetitiveSelectionHardExclusive::new(1, 2, 2)?;
42 exclusive.update_score(0, 0, 2)?;
43 exclusive.update_score(0, 1, 1)?;
44 assert_eq!(exclusive.evaluate(0)?, 0);
45
46 let mut soft = CompetitiveSelectionSoft::begin(vec![3, 1], 4, 3)?;
47 assert_eq!(soft.assign_next()?, 0);
48
49 let mut ranked = CompetitiveSelectionRanked::new(vec![2, 1], 1, 2)?;
50 ranked.select();
51 assert_eq!(ranked.is_selected(0), Some(true));
52
53 let mut actuation = ActuationPass::new(vec![Some(7)]);
54 actuation.actuate(0)?;
55 actuation.finish()?;
56
57 let mut propagation = PropagationPass::new(1, 2, vec![], vec![0])?;
58 propagation.start_round()?;
59 propagation.update_node(0)?;
60 propagation.end_round()?;
61
62 let mut convergence = ConvergenceGovernor::new(2, 6, 2, 10)?;
63 assert_eq!(convergence.update(1)?, 1);
64
65 let mut audit = AuditSink::new(1);
66 assert!(audit.try_record(7));
67 assert!(audit.validate());
68
69 let mut backtracking = BacktrackingTraversal::new(2, 1, 0)?;
70 backtracking.descend(1, 1)?;
71 backtracking.visit()?;
72
73 // Named compositions.
74 let mut snapshot = AllocationSnapshot::new(3, 1);
75 snapshot.accept(0, 3)?;
76
77 let mut federated = FederatedBudget::new(4, 1);
78 assert!(federated.try_delegate(0, 4));
79 assert!(federated.try_allocate(0, 2));
80
81 let mut bisection = Bisection::new(4, 2)?;
82 bisection.converge();
83 assert!(bisection.is_converged());
84
85 let mut classes = EquivalenceClass::new(2, 1);
86 assert!(classes.union(0, 1)?);
87
88 let mut rate_limit = RateLimit::new(1, 1, 1)?;
89 assert!(rate_limit.try_acquire());
90
91 let mut reduction = Reduction::new(vec![2, 3])?;
92 reduction.process_next()?;
93
94 let mut graph = RelationshipGraph::new(2, 1);
95 assert!(graph.add_edge(0, 1, 1)?);
96
97 let mut sampler = Sampler::new(vec![1, 1], 1);
98 sampler.sample(0)?;
99
100 let mut select_then_actuate = SelectThenActuate::new(1, 2)?;
101 select_then_actuate.update_score(0, 0, 1)?;
102 assert_eq!(select_then_actuate.evaluate(0)?, 0);
103 select_then_actuate.actuate(0)?;
104 select_then_actuate.finish()?;
105
106 let mut signal = Signal::new(0, 2, 1)?;
107 assert!(signal.set_value(1)?);
108 signal.notify(0)?;
109
110 let mut traversal = TraversalEngine::new(1, 0, 2)?;
111 traversal.visit(0)?;
112 assert_eq!(traversal.accepted_cost(), 2);
113 traversal.terminate()?;
114
115 // Execution modalities.
116 let mut sequential = Sequential::new(1, 2, 0)?;
117 assert!(sequential.begin_step());
118 assert!(sequential.complete_step(1));
119
120 let mut fork_join = ForkJoin::new(1, 2, 0)?;
121 assert!(fork_join.start_worker(0));
122 assert!(fork_join.complete_worker(0, 1));
123 assert!(fork_join.barrier());
124 assert!(fork_join.produce_output());
125
126 let mut step_graph = StepGraph::new(1, vec![])?;
127 assert!(step_graph.start(0));
128 assert!(step_graph.complete(0));
129
130 let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
131 assert!(stream_graph.ingest(1));
132 assert!(stream_graph.advance_first());
133 assert_eq!(stream_graph.consume(), Some(1));
134
135 // Connective roles.
136 let mut cursor = Cursor::new(0);
137 cursor.advance_to(1)?;
138
139 let mut accumulator = Accumulator::new(vec![1]);
140 assert_eq!(accumulator.advance(), Some(1));
141 assert_eq!(accumulator.accumulated(0), Some(1));
142
143 let mut marker = Marker::new(false);
144 assert!(marker.set());
145
146 let mut counter = Counter::new(0);
147 assert!(counter.try_increment());
148
149 let mut buffer = Buffer::new(1);
150 assert_eq!(buffer.push(1), Ok(()));
151 assert_eq!(buffer.pop(), Some(1));
152
153 assert!(projection_consistent(true, true));
154 assert!(strictly_before(0, 1));
155
156 assert_debuggable!(
157 budget,
158 hierarchy,
159 registry,
160 hard,
161 exclusive,
162 soft,
163 ranked,
164 actuation,
165 propagation,
166 convergence,
167 audit,
168 backtracking,
169 snapshot,
170 federated,
171 bisection,
172 classes,
173 rate_limit,
174 reduction,
175 graph,
176 sampler,
177 select_then_actuate,
178 signal,
179 traversal,
180 sequential,
181 fork_join,
182 step_graph,
183 stream_graph,
184 cursor,
185 accumulator,
186 marker,
187 counter,
188 buffer,
189 );
190
191 println!("all public automation structures constructed and exercised");
192 Ok(())
193}Sourcepub fn parent(&self, node: usize) -> Option<usize>
pub fn parent(&self, node: usize) -> Option<usize>
Read one parent, returning None for a root or an invalid node.
Sourcepub fn edge_count(&self) -> usize
pub fn edge_count(&self) -> usize
Number of retained parent-child edges.
Sourcepub fn edge(&self, index: usize) -> Option<(usize, usize)>
pub fn edge(&self, index: usize) -> Option<(usize, usize)>
Read one parent-child edge by deterministic carrier order.
Sourcepub fn set_node_properties(
&mut self,
node: usize,
level: u64,
cost: u64,
) -> Result<(), QualityHierarchyError>
pub fn set_node_properties( &mut self, node: usize, level: u64, cost: u64, ) -> Result<(), QualityHierarchyError>
Set the level and cost of an isolated node.
§Errors
Returns QualityHierarchyError for an invalid node, invalid value, or non-isolated node.
Examples found in repository?
examples/catalog.rs (line 28)
21fn main() -> Result<(), Box<dyn Error>> {
22 // Primitives.
23 let mut budget = Budget::new(8);
24 assert!(budget.try_reserve(3));
25 budget.commit_reservation(3)?;
26
27 let mut hierarchy = QualityHierarchy::new(2, 2);
28 hierarchy.set_node_properties(0, 2, 1)?;
29 hierarchy.set_node_properties(1, 1, 2)?;
30 hierarchy.add_child(0, 1)?;
31
32 let mut registry = ResourceRegistry::new();
33 registry.insert(1, 10);
34 assert_eq!(registry.get(1), Some(10));
35
36 let mut hard = CompetitiveSelectionHard::new(2)?;
37 hard.update_score(0, 2)?;
38 hard.update_score(1, 1)?;
39 assert_eq!(hard.evaluate(), 0);
40
41 let mut exclusive = CompetitiveSelectionHardExclusive::new(1, 2, 2)?;
42 exclusive.update_score(0, 0, 2)?;
43 exclusive.update_score(0, 1, 1)?;
44 assert_eq!(exclusive.evaluate(0)?, 0);
45
46 let mut soft = CompetitiveSelectionSoft::begin(vec![3, 1], 4, 3)?;
47 assert_eq!(soft.assign_next()?, 0);
48
49 let mut ranked = CompetitiveSelectionRanked::new(vec![2, 1], 1, 2)?;
50 ranked.select();
51 assert_eq!(ranked.is_selected(0), Some(true));
52
53 let mut actuation = ActuationPass::new(vec![Some(7)]);
54 actuation.actuate(0)?;
55 actuation.finish()?;
56
57 let mut propagation = PropagationPass::new(1, 2, vec![], vec![0])?;
58 propagation.start_round()?;
59 propagation.update_node(0)?;
60 propagation.end_round()?;
61
62 let mut convergence = ConvergenceGovernor::new(2, 6, 2, 10)?;
63 assert_eq!(convergence.update(1)?, 1);
64
65 let mut audit = AuditSink::new(1);
66 assert!(audit.try_record(7));
67 assert!(audit.validate());
68
69 let mut backtracking = BacktrackingTraversal::new(2, 1, 0)?;
70 backtracking.descend(1, 1)?;
71 backtracking.visit()?;
72
73 // Named compositions.
74 let mut snapshot = AllocationSnapshot::new(3, 1);
75 snapshot.accept(0, 3)?;
76
77 let mut federated = FederatedBudget::new(4, 1);
78 assert!(federated.try_delegate(0, 4));
79 assert!(federated.try_allocate(0, 2));
80
81 let mut bisection = Bisection::new(4, 2)?;
82 bisection.converge();
83 assert!(bisection.is_converged());
84
85 let mut classes = EquivalenceClass::new(2, 1);
86 assert!(classes.union(0, 1)?);
87
88 let mut rate_limit = RateLimit::new(1, 1, 1)?;
89 assert!(rate_limit.try_acquire());
90
91 let mut reduction = Reduction::new(vec![2, 3])?;
92 reduction.process_next()?;
93
94 let mut graph = RelationshipGraph::new(2, 1);
95 assert!(graph.add_edge(0, 1, 1)?);
96
97 let mut sampler = Sampler::new(vec![1, 1], 1);
98 sampler.sample(0)?;
99
100 let mut select_then_actuate = SelectThenActuate::new(1, 2)?;
101 select_then_actuate.update_score(0, 0, 1)?;
102 assert_eq!(select_then_actuate.evaluate(0)?, 0);
103 select_then_actuate.actuate(0)?;
104 select_then_actuate.finish()?;
105
106 let mut signal = Signal::new(0, 2, 1)?;
107 assert!(signal.set_value(1)?);
108 signal.notify(0)?;
109
110 let mut traversal = TraversalEngine::new(1, 0, 2)?;
111 traversal.visit(0)?;
112 assert_eq!(traversal.accepted_cost(), 2);
113 traversal.terminate()?;
114
115 // Execution modalities.
116 let mut sequential = Sequential::new(1, 2, 0)?;
117 assert!(sequential.begin_step());
118 assert!(sequential.complete_step(1));
119
120 let mut fork_join = ForkJoin::new(1, 2, 0)?;
121 assert!(fork_join.start_worker(0));
122 assert!(fork_join.complete_worker(0, 1));
123 assert!(fork_join.barrier());
124 assert!(fork_join.produce_output());
125
126 let mut step_graph = StepGraph::new(1, vec![])?;
127 assert!(step_graph.start(0));
128 assert!(step_graph.complete(0));
129
130 let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
131 assert!(stream_graph.ingest(1));
132 assert!(stream_graph.advance_first());
133 assert_eq!(stream_graph.consume(), Some(1));
134
135 // Connective roles.
136 let mut cursor = Cursor::new(0);
137 cursor.advance_to(1)?;
138
139 let mut accumulator = Accumulator::new(vec![1]);
140 assert_eq!(accumulator.advance(), Some(1));
141 assert_eq!(accumulator.accumulated(0), Some(1));
142
143 let mut marker = Marker::new(false);
144 assert!(marker.set());
145
146 let mut counter = Counter::new(0);
147 assert!(counter.try_increment());
148
149 let mut buffer = Buffer::new(1);
150 assert_eq!(buffer.push(1), Ok(()));
151 assert_eq!(buffer.pop(), Some(1));
152
153 assert!(projection_consistent(true, true));
154 assert!(strictly_before(0, 1));
155
156 assert_debuggable!(
157 budget,
158 hierarchy,
159 registry,
160 hard,
161 exclusive,
162 soft,
163 ranked,
164 actuation,
165 propagation,
166 convergence,
167 audit,
168 backtracking,
169 snapshot,
170 federated,
171 bisection,
172 classes,
173 rate_limit,
174 reduction,
175 graph,
176 sampler,
177 select_then_actuate,
178 signal,
179 traversal,
180 sequential,
181 fork_join,
182 step_graph,
183 stream_graph,
184 cursor,
185 accumulator,
186 marker,
187 counter,
188 buffer,
189 );
190
191 println!("all public automation structures constructed and exercised");
192 Ok(())
193}Sourcepub fn add_child(
&mut self,
parent: usize,
child: usize,
) -> Result<(), QualityHierarchyError>
pub fn add_child( &mut self, parent: usize, child: usize, ) -> Result<(), QualityHierarchyError>
Add one admitted parent-child relation.
§Errors
Returns QualityHierarchyError when the edge would violate the refinement forest.
Examples found in repository?
examples/catalog.rs (line 30)
21fn main() -> Result<(), Box<dyn Error>> {
22 // Primitives.
23 let mut budget = Budget::new(8);
24 assert!(budget.try_reserve(3));
25 budget.commit_reservation(3)?;
26
27 let mut hierarchy = QualityHierarchy::new(2, 2);
28 hierarchy.set_node_properties(0, 2, 1)?;
29 hierarchy.set_node_properties(1, 1, 2)?;
30 hierarchy.add_child(0, 1)?;
31
32 let mut registry = ResourceRegistry::new();
33 registry.insert(1, 10);
34 assert_eq!(registry.get(1), Some(10));
35
36 let mut hard = CompetitiveSelectionHard::new(2)?;
37 hard.update_score(0, 2)?;
38 hard.update_score(1, 1)?;
39 assert_eq!(hard.evaluate(), 0);
40
41 let mut exclusive = CompetitiveSelectionHardExclusive::new(1, 2, 2)?;
42 exclusive.update_score(0, 0, 2)?;
43 exclusive.update_score(0, 1, 1)?;
44 assert_eq!(exclusive.evaluate(0)?, 0);
45
46 let mut soft = CompetitiveSelectionSoft::begin(vec![3, 1], 4, 3)?;
47 assert_eq!(soft.assign_next()?, 0);
48
49 let mut ranked = CompetitiveSelectionRanked::new(vec![2, 1], 1, 2)?;
50 ranked.select();
51 assert_eq!(ranked.is_selected(0), Some(true));
52
53 let mut actuation = ActuationPass::new(vec![Some(7)]);
54 actuation.actuate(0)?;
55 actuation.finish()?;
56
57 let mut propagation = PropagationPass::new(1, 2, vec![], vec![0])?;
58 propagation.start_round()?;
59 propagation.update_node(0)?;
60 propagation.end_round()?;
61
62 let mut convergence = ConvergenceGovernor::new(2, 6, 2, 10)?;
63 assert_eq!(convergence.update(1)?, 1);
64
65 let mut audit = AuditSink::new(1);
66 assert!(audit.try_record(7));
67 assert!(audit.validate());
68
69 let mut backtracking = BacktrackingTraversal::new(2, 1, 0)?;
70 backtracking.descend(1, 1)?;
71 backtracking.visit()?;
72
73 // Named compositions.
74 let mut snapshot = AllocationSnapshot::new(3, 1);
75 snapshot.accept(0, 3)?;
76
77 let mut federated = FederatedBudget::new(4, 1);
78 assert!(federated.try_delegate(0, 4));
79 assert!(federated.try_allocate(0, 2));
80
81 let mut bisection = Bisection::new(4, 2)?;
82 bisection.converge();
83 assert!(bisection.is_converged());
84
85 let mut classes = EquivalenceClass::new(2, 1);
86 assert!(classes.union(0, 1)?);
87
88 let mut rate_limit = RateLimit::new(1, 1, 1)?;
89 assert!(rate_limit.try_acquire());
90
91 let mut reduction = Reduction::new(vec![2, 3])?;
92 reduction.process_next()?;
93
94 let mut graph = RelationshipGraph::new(2, 1);
95 assert!(graph.add_edge(0, 1, 1)?);
96
97 let mut sampler = Sampler::new(vec![1, 1], 1);
98 sampler.sample(0)?;
99
100 let mut select_then_actuate = SelectThenActuate::new(1, 2)?;
101 select_then_actuate.update_score(0, 0, 1)?;
102 assert_eq!(select_then_actuate.evaluate(0)?, 0);
103 select_then_actuate.actuate(0)?;
104 select_then_actuate.finish()?;
105
106 let mut signal = Signal::new(0, 2, 1)?;
107 assert!(signal.set_value(1)?);
108 signal.notify(0)?;
109
110 let mut traversal = TraversalEngine::new(1, 0, 2)?;
111 traversal.visit(0)?;
112 assert_eq!(traversal.accepted_cost(), 2);
113 traversal.terminate()?;
114
115 // Execution modalities.
116 let mut sequential = Sequential::new(1, 2, 0)?;
117 assert!(sequential.begin_step());
118 assert!(sequential.complete_step(1));
119
120 let mut fork_join = ForkJoin::new(1, 2, 0)?;
121 assert!(fork_join.start_worker(0));
122 assert!(fork_join.complete_worker(0, 1));
123 assert!(fork_join.barrier());
124 assert!(fork_join.produce_output());
125
126 let mut step_graph = StepGraph::new(1, vec![])?;
127 assert!(step_graph.start(0));
128 assert!(step_graph.complete(0));
129
130 let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
131 assert!(stream_graph.ingest(1));
132 assert!(stream_graph.advance_first());
133 assert_eq!(stream_graph.consume(), Some(1));
134
135 // Connective roles.
136 let mut cursor = Cursor::new(0);
137 cursor.advance_to(1)?;
138
139 let mut accumulator = Accumulator::new(vec![1]);
140 assert_eq!(accumulator.advance(), Some(1));
141 assert_eq!(accumulator.accumulated(0), Some(1));
142
143 let mut marker = Marker::new(false);
144 assert!(marker.set());
145
146 let mut counter = Counter::new(0);
147 assert!(counter.try_increment());
148
149 let mut buffer = Buffer::new(1);
150 assert_eq!(buffer.push(1), Ok(()));
151 assert_eq!(buffer.pop(), Some(1));
152
153 assert!(projection_consistent(true, true));
154 assert!(strictly_before(0, 1));
155
156 assert_debuggable!(
157 budget,
158 hierarchy,
159 registry,
160 hard,
161 exclusive,
162 soft,
163 ranked,
164 actuation,
165 propagation,
166 convergence,
167 audit,
168 backtracking,
169 snapshot,
170 federated,
171 bisection,
172 classes,
173 rate_limit,
174 reduction,
175 graph,
176 sampler,
177 select_then_actuate,
178 signal,
179 traversal,
180 sequential,
181 fork_join,
182 step_graph,
183 stream_graph,
184 cursor,
185 accumulator,
186 marker,
187 counter,
188 buffer,
189 );
190
191 println!("all public automation structures constructed and exercised");
192 Ok(())
193}Source§impl QualityHierarchy
impl QualityHierarchy
Sourcepub fn encoded_parents(&self) -> &[usize]
pub fn encoded_parents(&self) -> &[usize]
Borrow encoded parent identifiers by node index.
The sentinel self.len() represents a node without a parent.
Sourcepub fn has_children(&self, node: usize) -> Option<bool>
pub fn has_children(&self, node: usize) -> Option<bool>
Whether an in-range node has at least one child.
Trait Implementations§
Auto Trait Implementations§
impl Freeze for QualityHierarchy
impl RefUnwindSafe for QualityHierarchy
impl Send for QualityHierarchy
impl Sync for QualityHierarchy
impl Unpin for QualityHierarchy
impl UnsafeUnpin for QualityHierarchy
impl UnwindSafe for QualityHierarchy
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more