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StepGraph

Struct StepGraph 

Source
pub struct StepGraph { /* private fields */ }
Expand description

A predecessor-governed directed step graph.

§Examples

use automation_structures::StepGraph;

let mut graph = StepGraph::new(2, vec![(0, 1)])?;
assert!(graph.start(0));
assert!(graph.complete(0));
assert!(graph.become_ready(1));

Implementations§

Source§

impl StepGraph

Source

pub fn new( num_nodes: usize, edges: Vec<(usize, usize)>, ) -> Result<Self, StepGraphBuildError>

Validate edges and construct initial readiness states.

§Errors

Returns an error when an endpoint is outside the node universe or an edge is duplicated.

Examples found in repository?
examples/catalog.rs (line 125)
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, 1)?;
111    traversal.visit(0)?;
112    traversal.terminate()?;
113
114    // Execution modalities.
115    let mut sequential = Sequential::new(1, 2, 0)?;
116    assert!(sequential.begin_step());
117    assert!(sequential.complete_step(1));
118
119    let mut fork_join = ForkJoin::new(1, 2, 0)?;
120    assert!(fork_join.start_worker(0));
121    assert!(fork_join.complete_worker(0, 1));
122    assert!(fork_join.barrier());
123    assert!(fork_join.produce_output());
124
125    let mut step_graph = StepGraph::new(1, vec![])?;
126    assert!(step_graph.start(0));
127    assert!(step_graph.complete(0));
128
129    let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
130    assert!(stream_graph.ingest(1));
131    assert!(stream_graph.advance_first());
132    assert_eq!(stream_graph.consume(), Some(1));
133
134    // Connective roles.
135    let mut cursor = Cursor::new(0);
136    cursor.advance_to(1)?;
137
138    let mut accumulator = Accumulator::new(vec![1]);
139    assert_eq!(accumulator.advance(), Some(1));
140    assert_eq!(accumulator.accumulated(0), Some(1));
141
142    let mut marker = Marker::new(false);
143    assert!(marker.set());
144
145    let mut counter = Counter::new(0);
146    assert!(counter.try_increment());
147
148    let mut buffer = Buffer::new(1);
149    assert_eq!(buffer.push(1), Ok(()));
150    assert_eq!(buffer.pop(), Some(1));
151
152    assert!(projection_consistent(true, true));
153    assert!(strictly_before(0, 1));
154
155    assert_debuggable!(
156        budget,
157        hierarchy,
158        registry,
159        hard,
160        exclusive,
161        soft,
162        ranked,
163        actuation,
164        propagation,
165        convergence,
166        audit,
167        backtracking,
168        snapshot,
169        federated,
170        bisection,
171        classes,
172        rate_limit,
173        reduction,
174        graph,
175        sampler,
176        select_then_actuate,
177        signal,
178        traversal,
179        sequential,
180        fork_join,
181        step_graph,
182        stream_graph,
183        cursor,
184        accumulator,
185        marker,
186        counter,
187        buffer,
188    );
189
190    println!("all public automation structures constructed and exercised");
191    Ok(())
192}
Source

pub fn len(&self) -> usize

Number of steps.

Source

pub fn is_empty(&self) -> bool

Whether the graph has no steps.

Source

pub fn edge_count(&self) -> usize

Number of directed predecessor edges.

Source

pub fn edge(&self, index: usize) -> Option<(usize, usize)>

Read one directed predecessor edge.

Source

pub fn state(&self, node: usize) -> Option<StepState>

Read one step lifecycle state.

Source

pub fn become_ready(&mut self, node: usize) -> bool

Promote a blocked node after every predecessor completes.

Source

pub fn start(&mut self, node: usize) -> bool

Start one ready step.

Examples found in repository?
examples/catalog.rs (line 126)
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, 1)?;
111    traversal.visit(0)?;
112    traversal.terminate()?;
113
114    // Execution modalities.
115    let mut sequential = Sequential::new(1, 2, 0)?;
116    assert!(sequential.begin_step());
117    assert!(sequential.complete_step(1));
118
119    let mut fork_join = ForkJoin::new(1, 2, 0)?;
120    assert!(fork_join.start_worker(0));
121    assert!(fork_join.complete_worker(0, 1));
122    assert!(fork_join.barrier());
123    assert!(fork_join.produce_output());
124
125    let mut step_graph = StepGraph::new(1, vec![])?;
126    assert!(step_graph.start(0));
127    assert!(step_graph.complete(0));
128
129    let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
130    assert!(stream_graph.ingest(1));
131    assert!(stream_graph.advance_first());
132    assert_eq!(stream_graph.consume(), Some(1));
133
134    // Connective roles.
135    let mut cursor = Cursor::new(0);
136    cursor.advance_to(1)?;
137
138    let mut accumulator = Accumulator::new(vec![1]);
139    assert_eq!(accumulator.advance(), Some(1));
140    assert_eq!(accumulator.accumulated(0), Some(1));
141
142    let mut marker = Marker::new(false);
143    assert!(marker.set());
144
145    let mut counter = Counter::new(0);
146    assert!(counter.try_increment());
147
148    let mut buffer = Buffer::new(1);
149    assert_eq!(buffer.push(1), Ok(()));
150    assert_eq!(buffer.pop(), Some(1));
151
152    assert!(projection_consistent(true, true));
153    assert!(strictly_before(0, 1));
154
155    assert_debuggable!(
156        budget,
157        hierarchy,
158        registry,
159        hard,
160        exclusive,
161        soft,
162        ranked,
163        actuation,
164        propagation,
165        convergence,
166        audit,
167        backtracking,
168        snapshot,
169        federated,
170        bisection,
171        classes,
172        rate_limit,
173        reduction,
174        graph,
175        sampler,
176        select_then_actuate,
177        signal,
178        traversal,
179        sequential,
180        fork_join,
181        step_graph,
182        stream_graph,
183        cursor,
184        accumulator,
185        marker,
186        counter,
187        buffer,
188    );
189
190    println!("all public automation structures constructed and exercised");
191    Ok(())
192}
Source

pub fn complete(&mut self, node: usize) -> bool

Complete one running step.

Examples found in repository?
examples/catalog.rs (line 127)
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, 1)?;
111    traversal.visit(0)?;
112    traversal.terminate()?;
113
114    // Execution modalities.
115    let mut sequential = Sequential::new(1, 2, 0)?;
116    assert!(sequential.begin_step());
117    assert!(sequential.complete_step(1));
118
119    let mut fork_join = ForkJoin::new(1, 2, 0)?;
120    assert!(fork_join.start_worker(0));
121    assert!(fork_join.complete_worker(0, 1));
122    assert!(fork_join.barrier());
123    assert!(fork_join.produce_output());
124
125    let mut step_graph = StepGraph::new(1, vec![])?;
126    assert!(step_graph.start(0));
127    assert!(step_graph.complete(0));
128
129    let mut stream_graph = StreamGraph::new(3, 1, 1, 2)?;
130    assert!(stream_graph.ingest(1));
131    assert!(stream_graph.advance_first());
132    assert_eq!(stream_graph.consume(), Some(1));
133
134    // Connective roles.
135    let mut cursor = Cursor::new(0);
136    cursor.advance_to(1)?;
137
138    let mut accumulator = Accumulator::new(vec![1]);
139    assert_eq!(accumulator.advance(), Some(1));
140    assert_eq!(accumulator.accumulated(0), Some(1));
141
142    let mut marker = Marker::new(false);
143    assert!(marker.set());
144
145    let mut counter = Counter::new(0);
146    assert!(counter.try_increment());
147
148    let mut buffer = Buffer::new(1);
149    assert_eq!(buffer.push(1), Ok(()));
150    assert_eq!(buffer.pop(), Some(1));
151
152    assert!(projection_consistent(true, true));
153    assert!(strictly_before(0, 1));
154
155    assert_debuggable!(
156        budget,
157        hierarchy,
158        registry,
159        hard,
160        exclusive,
161        soft,
162        ranked,
163        actuation,
164        propagation,
165        convergence,
166        audit,
167        backtracking,
168        snapshot,
169        federated,
170        bisection,
171        classes,
172        rate_limit,
173        reduction,
174        graph,
175        sampler,
176        select_then_actuate,
177        signal,
178        traversal,
179        sequential,
180        fork_join,
181        step_graph,
182        stream_graph,
183        cursor,
184        accumulator,
185        marker,
186        counter,
187        buffer,
188    );
189
190    println!("all public automation structures constructed and exercised");
191    Ok(())
192}
Source

pub fn is_done(&self) -> bool

Whether every step is complete.

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impl StepGraph

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pub fn edges(&self) -> &[(usize, usize)]

Borrow directed predecessor edges in configured order.

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pub fn states(&self) -> &[StepState]

Borrow all current step states by node index.

Trait Implementations§

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impl Debug for StepGraph

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fn fmt(&self, formatter: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more

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impl<T> From<T> for T

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fn from(t: T) -> T

Returns the argument unchanged.

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where U: From<T>,

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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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type Error = !

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Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

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Performs the conversion.