pub struct ArrayOfDoublesUnionBuilder { /* private fields */ }Expand description
Builder for ArrayOfDoublesUnion, mirroring upstream’s
array_of_doubles_union::builder. lg_k defaults to 12,
resize_factor to ResizeFactor::X8, p to 1.0 (no sampling), and
num_values to 1. As with
ArrayOfDoublesSketchBuilder, the
seed is never exposed.
Implementations§
Source§impl ArrayOfDoublesUnionBuilder
impl ArrayOfDoublesUnionBuilder
Sourcepub fn new() -> Self
pub fn new() -> Self
Creates a new builder with default settings (lg_k = 12,
resize_factor = X8, p = 1.0, num_values = 1).
Examples found in repository?
14fn main() {
15 // Two sketches of user IDs, each carrying [sessions, revenue] per user.
16 let mut day1 = ArrayOfDoublesSketchBuilder::new()
17 .lg_k(12)
18 .num_values(2)
19 .build()
20 .unwrap();
21 for id in 0..10_000u64 {
22 day1.update_u64(id, &[1.0, 2.50]).unwrap();
23 }
24
25 let mut day2 = ArrayOfDoublesSketchBuilder::new()
26 .lg_k(12)
27 .num_values(2)
28 .build()
29 .unwrap();
30 for id in 5_000..15_000u64 {
31 day2.update_u64(id, &[1.0, 4.00]).unwrap();
32 }
33
34 println!("Day 1 unique users (estimate): {:.0}", day1.get_estimate());
35 println!("Day 2 unique users (estimate): {:.0}", day2.get_estimate());
36 println!("Values per entry: {}", day1.get_num_values());
37
38 // Union: unique users across both days, with per-user values summed for
39 // anyone who appeared on both.
40 let mut union = ArrayOfDoublesUnionBuilder::new()
41 .lg_k(12)
42 .num_values(2)
43 .build()
44 .unwrap();
45 union.update(&day1).unwrap();
46 union.update(&day2).unwrap();
47 let combined = union.get_result(true);
48 println!(
49 "Total unique users (union estimate): {:.0}",
50 combined.get_estimate()
51 );
52
53 // Per-entry access is what distinguishes Tuple sketches from HLL/Theta/CPC:
54 // scale the retained sample's revenue back up by 1/theta to estimate the
55 // full population total.
56 let retained_revenue: f64 = combined.entries().map(|(_, values)| values[1]).sum();
57 println!(
58 "Estimated total revenue: {:.2} (from {} retained entries, theta = {:.4})",
59 retained_revenue / combined.get_theta(),
60 combined.get_num_retained(),
61 combined.get_theta()
62 );
63
64 // Intersection: users who came back on day 2.
65 let mut intersection = ArrayOfDoublesIntersection::new(2).unwrap();
66 intersection.update(&day1).unwrap();
67 intersection.update(&day2).unwrap();
68 match intersection.get_result(true) {
69 Ok(returning) => println!(
70 "Returning users (intersection estimate): {:.0}",
71 returning.get_estimate()
72 ),
73 Err(e) => println!("No intersection result: {e}"),
74 }
75
76 // A-not-b: users who only came on day 1.
77 let a_not_b = ArrayOfDoublesAnotB::new();
78 let day1_only = a_not_b.compute(&day1, &day2, true).unwrap();
79 println!(
80 "Day-1-only users (a-not-b estimate): {:.0}",
81 day1_only.get_estimate()
82 );
83
84 // Jaccard similarity of the two days' audiences.
85 let similarity = array_of_doubles_jaccard_similarity(&day1, &day2).unwrap();
86 println!(
87 "Jaccard similarity: {:.3} (range [{:.3}, {:.3}])",
88 similarity.estimate, similarity.lower_bound, similarity.upper_bound
89 );
90
91 // Serialize a compact sketch for storage/transmission, then restore it.
92 let compact = day1.compact(true);
93 let bytes = compact.serialize();
94 println!("Serialized day-1 sketch: {} bytes", bytes.len());
95 let restored = CompactArrayOfDoublesSketch::deserialize(&bytes).unwrap();
96 println!(
97 "Restored estimate: {:.0} ({} values per entry)",
98 restored.get_estimate(),
99 restored.get_num_values()
100 );
101}Sourcepub fn lg_k(self, lg_k: u8) -> Self
pub fn lg_k(self, lg_k: u8) -> Self
Sets the base-2 log of the target number of retained entries in the union’s result.
Examples found in repository?
14fn main() {
15 // Two sketches of user IDs, each carrying [sessions, revenue] per user.
16 let mut day1 = ArrayOfDoublesSketchBuilder::new()
17 .lg_k(12)
18 .num_values(2)
19 .build()
20 .unwrap();
21 for id in 0..10_000u64 {
22 day1.update_u64(id, &[1.0, 2.50]).unwrap();
23 }
24
25 let mut day2 = ArrayOfDoublesSketchBuilder::new()
26 .lg_k(12)
27 .num_values(2)
28 .build()
29 .unwrap();
30 for id in 5_000..15_000u64 {
31 day2.update_u64(id, &[1.0, 4.00]).unwrap();
32 }
33
34 println!("Day 1 unique users (estimate): {:.0}", day1.get_estimate());
35 println!("Day 2 unique users (estimate): {:.0}", day2.get_estimate());
36 println!("Values per entry: {}", day1.get_num_values());
37
38 // Union: unique users across both days, with per-user values summed for
39 // anyone who appeared on both.
40 let mut union = ArrayOfDoublesUnionBuilder::new()
41 .lg_k(12)
42 .num_values(2)
43 .build()
44 .unwrap();
45 union.update(&day1).unwrap();
46 union.update(&day2).unwrap();
47 let combined = union.get_result(true);
48 println!(
49 "Total unique users (union estimate): {:.0}",
50 combined.get_estimate()
51 );
52
53 // Per-entry access is what distinguishes Tuple sketches from HLL/Theta/CPC:
54 // scale the retained sample's revenue back up by 1/theta to estimate the
55 // full population total.
56 let retained_revenue: f64 = combined.entries().map(|(_, values)| values[1]).sum();
57 println!(
58 "Estimated total revenue: {:.2} (from {} retained entries, theta = {:.4})",
59 retained_revenue / combined.get_theta(),
60 combined.get_num_retained(),
61 combined.get_theta()
62 );
63
64 // Intersection: users who came back on day 2.
65 let mut intersection = ArrayOfDoublesIntersection::new(2).unwrap();
66 intersection.update(&day1).unwrap();
67 intersection.update(&day2).unwrap();
68 match intersection.get_result(true) {
69 Ok(returning) => println!(
70 "Returning users (intersection estimate): {:.0}",
71 returning.get_estimate()
72 ),
73 Err(e) => println!("No intersection result: {e}"),
74 }
75
76 // A-not-b: users who only came on day 1.
77 let a_not_b = ArrayOfDoublesAnotB::new();
78 let day1_only = a_not_b.compute(&day1, &day2, true).unwrap();
79 println!(
80 "Day-1-only users (a-not-b estimate): {:.0}",
81 day1_only.get_estimate()
82 );
83
84 // Jaccard similarity of the two days' audiences.
85 let similarity = array_of_doubles_jaccard_similarity(&day1, &day2).unwrap();
86 println!(
87 "Jaccard similarity: {:.3} (range [{:.3}, {:.3}])",
88 similarity.estimate, similarity.lower_bound, similarity.upper_bound
89 );
90
91 // Serialize a compact sketch for storage/transmission, then restore it.
92 let compact = day1.compact(true);
93 let bytes = compact.serialize();
94 println!("Serialized day-1 sketch: {} bytes", bytes.len());
95 let restored = CompactArrayOfDoublesSketch::deserialize(&bytes).unwrap();
96 println!(
97 "Restored estimate: {:.0} ({} values per entry)",
98 restored.get_estimate(),
99 restored.get_num_values()
100 );
101}Sourcepub fn resize_factor(self, resize_factor: ResizeFactor) -> Self
pub fn resize_factor(self, resize_factor: ResizeFactor) -> Self
Sets the hash table’s growth ResizeFactor.
Sourcepub fn p(self, p: f32) -> Self
pub fn p(self, p: f32) -> Self
Sets the sampling probability. 1.0 (the default) disables sampling.
Sourcepub fn num_values(self, num_values: u8) -> Self
pub fn num_values(self, num_values: u8) -> Self
Sets the fixed number of f64 values per entry. Must be at least 1,
and must match every sketch later passed to
ArrayOfDoublesUnion::update.
Examples found in repository?
14fn main() {
15 // Two sketches of user IDs, each carrying [sessions, revenue] per user.
16 let mut day1 = ArrayOfDoublesSketchBuilder::new()
17 .lg_k(12)
18 .num_values(2)
19 .build()
20 .unwrap();
21 for id in 0..10_000u64 {
22 day1.update_u64(id, &[1.0, 2.50]).unwrap();
23 }
24
25 let mut day2 = ArrayOfDoublesSketchBuilder::new()
26 .lg_k(12)
27 .num_values(2)
28 .build()
29 .unwrap();
30 for id in 5_000..15_000u64 {
31 day2.update_u64(id, &[1.0, 4.00]).unwrap();
32 }
33
34 println!("Day 1 unique users (estimate): {:.0}", day1.get_estimate());
35 println!("Day 2 unique users (estimate): {:.0}", day2.get_estimate());
36 println!("Values per entry: {}", day1.get_num_values());
37
38 // Union: unique users across both days, with per-user values summed for
39 // anyone who appeared on both.
40 let mut union = ArrayOfDoublesUnionBuilder::new()
41 .lg_k(12)
42 .num_values(2)
43 .build()
44 .unwrap();
45 union.update(&day1).unwrap();
46 union.update(&day2).unwrap();
47 let combined = union.get_result(true);
48 println!(
49 "Total unique users (union estimate): {:.0}",
50 combined.get_estimate()
51 );
52
53 // Per-entry access is what distinguishes Tuple sketches from HLL/Theta/CPC:
54 // scale the retained sample's revenue back up by 1/theta to estimate the
55 // full population total.
56 let retained_revenue: f64 = combined.entries().map(|(_, values)| values[1]).sum();
57 println!(
58 "Estimated total revenue: {:.2} (from {} retained entries, theta = {:.4})",
59 retained_revenue / combined.get_theta(),
60 combined.get_num_retained(),
61 combined.get_theta()
62 );
63
64 // Intersection: users who came back on day 2.
65 let mut intersection = ArrayOfDoublesIntersection::new(2).unwrap();
66 intersection.update(&day1).unwrap();
67 intersection.update(&day2).unwrap();
68 match intersection.get_result(true) {
69 Ok(returning) => println!(
70 "Returning users (intersection estimate): {:.0}",
71 returning.get_estimate()
72 ),
73 Err(e) => println!("No intersection result: {e}"),
74 }
75
76 // A-not-b: users who only came on day 1.
77 let a_not_b = ArrayOfDoublesAnotB::new();
78 let day1_only = a_not_b.compute(&day1, &day2, true).unwrap();
79 println!(
80 "Day-1-only users (a-not-b estimate): {:.0}",
81 day1_only.get_estimate()
82 );
83
84 // Jaccard similarity of the two days' audiences.
85 let similarity = array_of_doubles_jaccard_similarity(&day1, &day2).unwrap();
86 println!(
87 "Jaccard similarity: {:.3} (range [{:.3}, {:.3}])",
88 similarity.estimate, similarity.lower_bound, similarity.upper_bound
89 );
90
91 // Serialize a compact sketch for storage/transmission, then restore it.
92 let compact = day1.compact(true);
93 let bytes = compact.serialize();
94 println!("Serialized day-1 sketch: {} bytes", bytes.len());
95 let restored = CompactArrayOfDoublesSketch::deserialize(&bytes).unwrap();
96 println!(
97 "Restored estimate: {:.0} ({} values per entry)",
98 restored.get_estimate(),
99 restored.get_num_values()
100 );
101}Sourcepub fn build(self) -> Result<ArrayOfDoublesUnion, SketchError>
pub fn build(self) -> Result<ArrayOfDoublesUnion, SketchError>
Builds the union. Returns SketchError::InvalidConfig if lg_k is
out of range, p is outside (0, 1], or num_values is 0.
Examples found in repository?
14fn main() {
15 // Two sketches of user IDs, each carrying [sessions, revenue] per user.
16 let mut day1 = ArrayOfDoublesSketchBuilder::new()
17 .lg_k(12)
18 .num_values(2)
19 .build()
20 .unwrap();
21 for id in 0..10_000u64 {
22 day1.update_u64(id, &[1.0, 2.50]).unwrap();
23 }
24
25 let mut day2 = ArrayOfDoublesSketchBuilder::new()
26 .lg_k(12)
27 .num_values(2)
28 .build()
29 .unwrap();
30 for id in 5_000..15_000u64 {
31 day2.update_u64(id, &[1.0, 4.00]).unwrap();
32 }
33
34 println!("Day 1 unique users (estimate): {:.0}", day1.get_estimate());
35 println!("Day 2 unique users (estimate): {:.0}", day2.get_estimate());
36 println!("Values per entry: {}", day1.get_num_values());
37
38 // Union: unique users across both days, with per-user values summed for
39 // anyone who appeared on both.
40 let mut union = ArrayOfDoublesUnionBuilder::new()
41 .lg_k(12)
42 .num_values(2)
43 .build()
44 .unwrap();
45 union.update(&day1).unwrap();
46 union.update(&day2).unwrap();
47 let combined = union.get_result(true);
48 println!(
49 "Total unique users (union estimate): {:.0}",
50 combined.get_estimate()
51 );
52
53 // Per-entry access is what distinguishes Tuple sketches from HLL/Theta/CPC:
54 // scale the retained sample's revenue back up by 1/theta to estimate the
55 // full population total.
56 let retained_revenue: f64 = combined.entries().map(|(_, values)| values[1]).sum();
57 println!(
58 "Estimated total revenue: {:.2} (from {} retained entries, theta = {:.4})",
59 retained_revenue / combined.get_theta(),
60 combined.get_num_retained(),
61 combined.get_theta()
62 );
63
64 // Intersection: users who came back on day 2.
65 let mut intersection = ArrayOfDoublesIntersection::new(2).unwrap();
66 intersection.update(&day1).unwrap();
67 intersection.update(&day2).unwrap();
68 match intersection.get_result(true) {
69 Ok(returning) => println!(
70 "Returning users (intersection estimate): {:.0}",
71 returning.get_estimate()
72 ),
73 Err(e) => println!("No intersection result: {e}"),
74 }
75
76 // A-not-b: users who only came on day 1.
77 let a_not_b = ArrayOfDoublesAnotB::new();
78 let day1_only = a_not_b.compute(&day1, &day2, true).unwrap();
79 println!(
80 "Day-1-only users (a-not-b estimate): {:.0}",
81 day1_only.get_estimate()
82 );
83
84 // Jaccard similarity of the two days' audiences.
85 let similarity = array_of_doubles_jaccard_similarity(&day1, &day2).unwrap();
86 println!(
87 "Jaccard similarity: {:.3} (range [{:.3}, {:.3}])",
88 similarity.estimate, similarity.lower_bound, similarity.upper_bound
89 );
90
91 // Serialize a compact sketch for storage/transmission, then restore it.
92 let compact = day1.compact(true);
93 let bytes = compact.serialize();
94 println!("Serialized day-1 sketch: {} bytes", bytes.len());
95 let restored = CompactArrayOfDoublesSketch::deserialize(&bytes).unwrap();
96 println!(
97 "Restored estimate: {:.0} ({} values per entry)",
98 restored.get_estimate(),
99 restored.get_num_values()
100 );
101}Trait Implementations§
Source§impl Clone for ArrayOfDoublesUnionBuilder
impl Clone for ArrayOfDoublesUnionBuilder
Source§fn clone(&self) -> ArrayOfDoublesUnionBuilder
fn clone(&self) -> ArrayOfDoublesUnionBuilder
1.0.0 (const: unstable) · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read more