pub struct ExponentialCliffSearcher { /* private fields */ }Expand description
An iterator that determines the maximum supported load for a system by exponential search.
See the crate-level documentation for details.
Implementations§
Source§impl ExponentialCliffSearcher
impl ExponentialCliffSearcher
Sourcepub fn new(start: usize) -> Self
pub fn new(start: usize) -> Self
Perform a load search starting at start, and ending when the maximum load has been
determined to within a range of start / 2.
Sourcepub fn until(start: usize, min_width: usize) -> Self
pub fn until(start: usize, min_width: usize) -> Self
Perform a load search starting at start, and ending when the maximum load has been
determined to within a range of min_width.
Sourcepub fn overloaded(&mut self)
pub fn overloaded(&mut self)
Indicate that the system could not keep up with the previous load factor yielded by
Iterator::next.
This will affect what value the next call to Iterator::next yields.
This provides CliffSearch::overloaded without having to use the trait.
Sourcepub fn estimate(&self) -> Range<usize>
pub fn estimate(&self) -> Range<usize>
Give the current estimate of the maximum load the system-under-test can support.
This provides CliffSearch::estimate without having to use the trait.
Sourcepub fn fill_left(&mut self)
pub fn fill_left(&mut self)
Ensure that samples are taken just before the cliff.
If the system under test supports, say, eight million operations per second, and searches starting at 1M. The searcher will first sample 1M, 2M, 4M, 8M, 16M. When it detects that 16M is overloaded, it’ll perform a binary search from the “right”, running 12M, 10M, and 9M before ultimately deciding that 8M is the lower bound for the cliff.
This evaluation is correct, but may yield strange-looking results when plotting as the system is likely highly loaded at 8M. In particular, a straight line drawn from the 4M sample to the 8M sample may yield a jarring visual image, and will make it hard to see what happens in the system leading up to its capacity.
This method makes the searcher “fill in” extra samples to the left of the lower bound when necessary. In the case above, after finding that 8M is the lower bound, this filling would also sample 6M and 7M.
Filling also respects the minimum search range width if specified with [until].
Trait Implementations§
Source§impl CliffSearch for ExponentialCliffSearcher
impl CliffSearch for ExponentialCliffSearcher
Source§fn overloaded(&mut self)
fn overloaded(&mut self)
Iterator::next. Read moreSource§impl Clone for ExponentialCliffSearcher
impl Clone for ExponentialCliffSearcher
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl Debug for ExponentialCliffSearcher
impl Debug for ExponentialCliffSearcher
Source§impl Iterator for ExponentialCliffSearcher
impl Iterator for ExponentialCliffSearcher
Source§fn next(&mut self) -> Option<Self::Item>
fn next(&mut self) -> Option<Self::Item>
Source§fn next_chunk<const N: usize>(
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fn next_chunk<const N: usize>(
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