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CandidateCount

Enum CandidateCount 

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#[non_exhaustive]
pub enum CandidateCount { Exact(usize), AtLeast(usize), }
Expand description

What the counting probe learned about the candidate set.

The distinction is the point: SQLite has no histograms and sqlite_stat1 carries average rows-per-key, which estimates an equality predicate and not multi-hop reachability. So the count is measured, by running the traversal under a cap — and a probe that hits its cap has not measured anything except that the set is too big to care about the exact size.

The cap became a real one at 0.15.10 (D-252). Until then the traversal ran to completion and the tail was dropped afterwards, so AtLeast recorded that the answer had been trimmed and never that any work had been saved — C-8’s finding that probe_cap “bounds memory, not work”. It is now TraversalBuilder::limit, which stops the recursion, and the variant means what its name always claimed.

Variants (Non-exhaustive)§

This enum is marked as non-exhaustive
Non-exhaustive enums could have additional variants added in future. Therefore, when matching against variants of non-exhaustive enums, an extra wildcard arm must be added to account for any future variants.
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Exact(usize)

The traversal ran to the end of the graph and returned this many ids.

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AtLeast(usize)

The walk stopped at the cap. The true count is at least this.

This is the id count, not the cap, and the two can differ now that the ceiling is on the walk rather than on the list it produced: the walk dedupes on (node, depth) and the projection drops retired concepts, so a walk cut at 10 rows can yield 8 ids. Reporting 8 is the true lower bound; reporting 10 would be a number nothing counted.

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impl CandidateCount

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pub fn lower_bound(self) -> usize

The number to compute with. For a capped probe this understates the true count, which is the safe direction: it makes PreFilterCTE look cheaper than it is, and PreFilterCTE is the exact strategy.

It also now reflects what the traversal was paid for rather than what survived a truncation, which is the half of C-8 the cost model cared about: the estimator was pricing strategies against a candidate count the walk had already exceeded.

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pub fn is_capped(self) -> bool

Trait Implementations§

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impl Clone for CandidateCount

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fn clone(&self) -> CandidateCount

Returns a duplicate of the value. Read more
1.0.0 (const: unstable) · Source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Copy for CandidateCount

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impl Debug for CandidateCount

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

Formats the value using the given formatter. Read more
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impl Eq for CandidateCount

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impl PartialEq for CandidateCount

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fn eq(&self, other: &CandidateCount) -> bool

Equality operator ==. Read more
1.0.0 (const: unstable) · Source§

fn ne(&self, other: &Rhs) -> bool

Inequality operator !=. Read more
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impl StructuralPartialEq for CandidateCount

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impl<T> Any for T
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fn type_id(&self) -> TypeId

Gets the TypeId of self. Read more
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Immutably borrows from an owned value. Read more
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unsafe fn clone_to_uninit(&self, dest: *mut u8)

🔬This is a nightly-only experimental API. (clone_to_uninit)
Performs copy-assignment from self to dest. Read more
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fn equivalent(&self, key: &K) -> bool

Checks if this value is equivalent to the given key. Read more
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fn equivalent(&self, key: &K) -> bool

Compare self to key and return true if they are equal.
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impl<Q, K> Equivalent<K> for Q
where Q: Eq + ?Sized, K: Borrow<Q> + ?Sized,

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fn equivalent(&self, key: &K) -> bool

Checks if this value is equivalent to the given key. Read more
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impl<Q, K> Equivalent<K> for Q
where Q: Eq + ?Sized, K: Borrow<Q> + ?Sized,

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fn equivalent(&self, key: &K) -> bool

Compare self to key and return true if they are equal.
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impl<T> From<T> for T

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Returns the argument unchanged.

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Converts to this type from a reference to the input type.
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