Sun, 22 Dec 2024 14:54:46 -0500
Extra reflexivity and hilbert-like requirements for Euclidean. Fuse Dot into Euclidean.
5 | 1 | /*! |
2 | Aggregation / summarisation of information in branches of bisection trees. | |
3 | */ | |
4 | ||
0 | 5 | use crate::types::*; |
6 | use crate::sets::Set; | |
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f7b87d84864d
Extra reflexivity and hilbert-like requirements for Euclidean. Fuse Dot into Euclidean.
Tuomo Valkonen <tuomov@iki.fi>
parents:
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7 | use crate::instance::Instance; |
0 | 8 | |
5 | 9 | /// Trait for aggregating information about a branch of a [bisection tree][super::BT]. |
10 | /// | |
11 | /// Currently [`Bounds`] is the only provided aggregator. | |
12 | /// It keeps track of upper and lower bounds of a function representeed by the `BT` by | |
13 | /// summing [`Bounds`] produced by [`LocalAnalysis`][super::support::LocalAnalysis] of the | |
14 | /// [`Support`][super::support::Support]s of the data stored in the tree. | |
15 | /// For the `Bounds` aggregator: | |
16 | /// * [`Self::aggregate`] sums input bounds to the current bound. This provides a conservative | |
17 | /// estimate of the upper and lower bounds of a sum of functions. | |
18 | /// * [`Self::summarise`] takes the maximum of the input bounds. This calculates the bounds | |
19 | /// of a function on a greater domain from bounds on subdomains | |
20 | /// (in practise [`Cube`][crate::sets::Cube]s). | |
21 | /// | |
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4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
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22 | pub trait Aggregator : Clone + Sync + Send + 'static + std::fmt::Debug { |
5 | 23 | /// Aggregate a new data to current state. |
0 | 24 | fn aggregate<I>(&mut self, aggregates : I) |
25 | where I : Iterator<Item=Self>; | |
26 | ||
5 | 27 | /// Summarise several other aggregators, resetting current state. |
0 | 28 | fn summarise<'a, I>(&'a mut self, aggregates : I) |
29 | where I : Iterator<Item=&'a Self>; | |
30 | ||
5 | 31 | /// Create a new “empty” aggregate data. |
0 | 32 | fn new() -> Self; |
33 | } | |
34 | ||
35 | /// An [`Aggregator`] that doesn't aggregate anything. | |
36 | #[derive(Clone,Debug)] | |
37 | pub struct NullAggregator; | |
38 | ||
39 | impl Aggregator for NullAggregator { | |
40 | fn aggregate<I>(&mut self, _aggregates : I) | |
41 | where I : Iterator<Item=Self> {} | |
42 | ||
43 | fn summarise<'a, I>(&'a mut self, _aggregates : I) | |
44 | where I : Iterator<Item=&'a Self> {} | |
45 | ||
46 | fn new() -> Self { NullAggregator } | |
47 | } | |
48 | ||
49 | /// Upper and lower bounds on an `F`-valued function. | |
50 | #[derive(Copy,Clone,Debug)] | |
5 | 51 | pub struct Bounds<F>( |
52 | /// Lower bound | |
53 | pub F, | |
54 | /// Upper bound | |
55 | pub F | |
56 | ); | |
0 | 57 | |
5 | 58 | impl<F : Copy> Bounds<F> { |
0 | 59 | /// Returns the lower bound |
60 | #[inline] | |
61 | pub fn lower(&self) -> F { self.0 } | |
62 | ||
63 | /// Returns the upper bound | |
64 | #[inline] | |
65 | pub fn upper(&self) -> F { self.1 } | |
66 | } | |
67 | ||
68 | impl<F : Float> Bounds<F> { | |
5 | 69 | /// Returns a uniform bound. |
70 | /// | |
71 | /// This is maximum over the absolute values of the upper and lower bound. | |
0 | 72 | #[inline] |
73 | pub fn uniform(&self) -> F { | |
74 | let &Bounds(lower, upper) = self; | |
75 | lower.abs().max(upper.abs()) | |
76 | } | |
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4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
5
diff
changeset
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77 | |
4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
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78 | /// Construct a bounds, making sure `lower` bound is less than `upper` |
4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
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79 | #[inline] |
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80 | pub fn corrected(lower : F, upper : F) -> Self { |
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81 | if lower <= upper { |
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82 | Bounds(lower, upper) |
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parents:
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83 | } else { |
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parents:
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84 | Bounds(upper, lower) |
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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85 | } |
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86 | } |
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parents:
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87 | |
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88 | /// Refine the lower bound |
4e09b7829b51
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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89 | #[inline] |
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90 | pub fn refine_lower(&self, lower : F) -> Self { |
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91 | let &Bounds(l, u) = self; |
4e09b7829b51
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92 | debug_assert!(l <= u); |
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93 | Bounds(l.max(lower), u.max(lower)) |
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94 | } |
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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95 | |
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96 | /// Refine the lower bound |
4e09b7829b51
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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97 | #[inline] |
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98 | pub fn refine_upper(&self, upper : F) -> Self { |
4e09b7829b51
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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99 | let &Bounds(l, u) = self; |
4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
5
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changeset
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100 | debug_assert!(l <= u); |
4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
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101 | Bounds(l.min(upper), u.min(upper)) |
4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
5
diff
changeset
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102 | } |
0 | 103 | } |
104 | ||
105 | impl<'a, F : Float> std::ops::Add<Self> for Bounds<F> { | |
106 | type Output = Self; | |
107 | #[inline] | |
108 | fn add(self, Bounds(l2, u2) : Self) -> Self::Output { | |
109 | let Bounds(l1, u1) = self; | |
110 | debug_assert!(l1 <= u1 && l2 <= u2); | |
111 | Bounds(l1 + l2, u1 + u2) | |
112 | } | |
113 | } | |
114 | ||
115 | impl<'a, F : Float> std::ops::Mul<Self> for Bounds<F> { | |
116 | type Output = Self; | |
117 | #[inline] | |
118 | fn mul(self, Bounds(l2, u2) : Self) -> Self::Output { | |
119 | let Bounds(l1, u1) = self; | |
120 | debug_assert!(l1 <= u1 && l2 <= u2); | |
121 | let a = l1 * l2; | |
122 | let b = u1 * u2; | |
123 | // The order may flip when negative numbers are involved, so need min/max | |
124 | Bounds(a.min(b), a.max(b)) | |
125 | } | |
126 | } | |
127 | ||
128 | impl<F : Float> std::iter::Product for Bounds<F> { | |
129 | #[inline] | |
130 | fn product<I>(mut iter: I) -> Self | |
131 | where I: Iterator<Item = Self> { | |
132 | match iter.next() { | |
133 | None => Bounds(F::ZERO, F::ZERO), | |
134 | Some(init) => iter.fold(init, |a, b| a*b) | |
135 | } | |
136 | } | |
137 | } | |
138 | ||
139 | impl<F : Float> Set<F> for Bounds<F> { | |
63
f7b87d84864d
Extra reflexivity and hilbert-like requirements for Euclidean. Fuse Dot into Euclidean.
Tuomo Valkonen <tuomov@iki.fi>
parents:
8
diff
changeset
|
140 | fn contains<I : Instance<F>>(&self, item : I) -> bool { |
f7b87d84864d
Extra reflexivity and hilbert-like requirements for Euclidean. Fuse Dot into Euclidean.
Tuomo Valkonen <tuomov@iki.fi>
parents:
8
diff
changeset
|
141 | let v = item.own(); |
0 | 142 | let &Bounds(l, u) = self; |
143 | debug_assert!(l <= u); | |
63
f7b87d84864d
Extra reflexivity and hilbert-like requirements for Euclidean. Fuse Dot into Euclidean.
Tuomo Valkonen <tuomov@iki.fi>
parents:
8
diff
changeset
|
144 | l <= v && v <= u |
0 | 145 | } |
146 | } | |
147 | ||
148 | impl<F : Float> Bounds<F> { | |
149 | /// Calculate a common bound (glb, lub) for two bounds. | |
150 | #[inline] | |
151 | pub fn common(&self, &Bounds(l2, u2) : &Self) -> Self { | |
152 | let &Bounds(l1, u1) = self; | |
153 | debug_assert!(l1 <= u1 && l2 <= u2); | |
154 | Bounds(l1.min(l2), u1.max(u2)) | |
155 | } | |
156 | ||
5 | 157 | /// Indicates whether `Self` is a superset of the argument bound. |
0 | 158 | #[inline] |
159 | pub fn superset(&self, &Bounds(l2, u2) : &Self) -> bool { | |
160 | let &Bounds(l1, u1) = self; | |
161 | debug_assert!(l1 <= u1 && l2 <= u2); | |
162 | l1 <= l2 && u2 <= u1 | |
163 | } | |
164 | ||
5 | 165 | /// Returns the greatest bound contained by both argument bounds, if one exists. |
0 | 166 | #[inline] |
167 | pub fn glb(&self, &Bounds(l2, u2) : &Self) -> Option<Self> { | |
168 | let &Bounds(l1, u1) = self; | |
169 | debug_assert!(l1 <= u1 && l2 <= u2); | |
170 | let l = l1.max(l2); | |
171 | let u = u1.min(u2); | |
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4e09b7829b51
Multithreaded bisection tree operations
Tuomo Valkonen <tuomov@iki.fi>
parents:
5
diff
changeset
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172 | debug_assert!(l <= u); |
0 | 173 | if l < u { |
174 | Some(Bounds(l, u)) | |
175 | } else { | |
176 | None | |
177 | } | |
178 | } | |
179 | } | |
180 | ||
181 | impl<F : Float> Aggregator for Bounds<F> { | |
182 | #[inline] | |
183 | fn aggregate<I>(&mut self, aggregates : I) | |
184 | where I : Iterator<Item=Self> { | |
185 | *self = aggregates.fold(*self, |a, b| a + b); | |
186 | } | |
187 | ||
188 | #[inline] | |
189 | fn summarise<'a, I>(&'a mut self, mut aggregates : I) | |
190 | where I : Iterator<Item=&'a Self> { | |
191 | *self = match aggregates.next() { | |
192 | None => Bounds(F::ZERO, F::ZERO), // No parts in this cube; the function is zero | |
193 | Some(&bounds) => { | |
194 | aggregates.fold(bounds, |a, b| a.common(b)) | |
195 | } | |
196 | } | |
197 | } | |
198 | ||
199 | #[inline] | |
200 | fn new() -> Self { | |
201 | Bounds(F::ZERO, F::ZERO) | |
202 | } | |
203 | } |