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Bump time from 0.3.25 to 0.3.26 #685

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@dependabot dependabot bot commented on behalf of github Aug 21, 2023

Bumps time from 0.3.25 to 0.3.26.

Release notes

Sourced from time's releases.

v0.3.26

See the changelog for details.

Changelog

Sourced from time's changelog.

0.3.26 [2023-08-18]

This release contains only a single change. serde is required to be a version prior to 1.0.171. This is due to the decision by the maintainer of serde to include pre-built binaries that are executed without the end user's knowledge. As of the time of publishing, the included binary has not even been reproduced. This is a security risk, and the time project strongly opposes this decision. While this may break some users' builds due to conflicting versions, it is a necessary step to ensure the security.

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Bumps [time](https://github.com/time-rs/time) from 0.3.25 to 0.3.26.
- [Release notes](https://github.com/time-rs/time/releases)
- [Changelog](https://github.com/time-rs/time/blob/main/CHANGELOG.md)
- [Commits](time-rs/time@v0.3.25...v0.3.26)

---
updated-dependencies:
- dependency-name: time
  dependency-type: direct:production
  update-type: version-update:semver-patch
...

Signed-off-by: dependabot[bot] <[email protected]>
@dependabot dependabot bot added the dependencies Pull requests that update a dependency file label Aug 21, 2023
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Regression Detector Results

Run ID: 2466a587-6fb1-4485-a0c8-f3d8d48dcf06
Baseline: b6b94f5
Comparison: c1ef36a
Total lading-target CPUs: 4

Explanation

A regression test is an integrated performance test for lading-target in a repeatable rig, with varying configuration for lading-target. What follows is a statistical summary of a brief lading-target run for each configuration across SHAs given above. The goal of these tests are to determine quickly if lading-target performance is changed and to what degree by a pull request.

Because a target's optimization goal performance in each experiment will vary somewhat each time it is run, we can only estimate mean differences in optimization goal relative to the baseline target. We express these differences as a percentage change relative to the baseline target, denoted "Δ mean %". These estimates are made to a precision that balances accuracy and cost control. We represent this precision as a 90.00% confidence interval denoted "Δ mean % CI": there is a 90.00% chance that the true value of "Δ mean %" is in that interval.

We decide whether a change in performance is a "regression" -- a change worth investigating further -- if both of the following two criteria are true:

  1. The estimated |Δ mean %| ≥ 5.00%. This criterion intends to answer the question "Does the estimated change in mean optimization goal performance have a meaningful impact on your customers?". We assume that when |Δ mean %| < 5.00%, the impact on your customers is not meaningful. We also assume that a performance change in optimization goal is worth investigating whether it is an increase or decrease, so long as the magnitude of the change is sufficiently large.

  2. Zero is not in the 90.00% confidence interval "Δ mean % CI" about "Δ mean %". This statement is equivalent to saying that there is at least a 90.00% chance that the mean difference in optimization goal is not zero. This criterion intends to answer the question, "Is there a statistically significant difference in mean optimization goal performance?". It also means there is no more than a 10.00% chance this criterion reports a statistically significant difference when the true difference in mean optimization goal is zero -- a "false positive". We assume you are willing to accept a 10.00% chance of inaccurately detecting a change in performance when no true difference exists.

The table below, if present, lists those experiments that have experienced a statistically significant change in mean optimization goal performance between baseline and comparison SHAs with 90.00% confidence OR have been detected as newly erratic. Negative values of "Δ mean %" mean that baseline is faster, whereas positive values of "Δ mean %" mean that comparison is faster. Results that do not exhibit more than a ±5.00% change in their mean optimization goal are discarded. An experiment is erratic if its coefficient of variation is greater than 0.1. The abbreviated table will be omitted if no interesting change is observed.

No interesting changes in experiment optimization goals with confidence ≥ 90.00% and |Δ mean %| ≥ 5.00%.

Fine details of change detection per experiment.
experiment goal Δ mean % Δ mean % CI confidence
blackhole_from_apache_common_http ingress throughput -0.11 [-0.16, -0.06] 99.38%
apache_common_http_both_directions_this_doesnt_make_sense ingress throughput -0.37 [-0.39, -0.34] 100.00%

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dependabot bot commented on behalf of github Aug 23, 2023

Superseded by #688.

@dependabot dependabot bot closed this Aug 23, 2023
@dependabot dependabot bot deleted the dependabot/cargo/time-0.3.26 branch August 23, 2023 08:46
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