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set vs array iteration 999
(version: 0)
Comparing performance of:
array.includes vs set.has vs array.push vs set.add vs a.indexOf
Created:
2 years ago
by:
Guest
Jump to the latest result
Script Preparation code:
var a = 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var b = new Set(a)
Tests:
array.includes
a.includes(1000)
set.has
b.has(1000)
array.push
a.push(1000)
set.add
set.add(1000)
a.indexOf
a.indexOf(1000)
Rendered benchmark preparation results:
Suite status:
<idle, ready to run>
Run tests (5)
Previous results
Fork
Test case name
Result
array.includes
set.has
array.push
set.add
a.indexOf
Fastest:
N/A
Slowest:
N/A
Latest run results:
Run details:
(Test run date:
2 years ago
)
User agent:
Mozilla/5.0 (Macintosh; Intel Mac OS X 10_15_7) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/121.0.0.0 Safari/537.36
Browser/OS:
Chrome 121 on Mac OS X 10.15.7
View result in a separate tab
Embed
Embed Benchmark Result
Test name
Executions per second
array.includes
4970514.5 Ops/sec
set.has
11869876.0 Ops/sec
array.push
9314846.0 Ops/sec
set.add
0.0 Ops/sec
a.indexOf
4745639.0 Ops/sec
Autogenerated LLM Summary
(model
llama3.2:3b
, generated one year ago):
It seems like you're sharing some benchmarking results for JavaScript arrays and sets, specifically comparing the performance of `includes()`, `push()`, `indexOf()`, and `add()` methods. To answer your question, without seeing the actual benchmark code or more context about these results, I can only provide general insights. Based on the latest benchmark result showing that "set.has" outperforms other tests, it's likely that the use case involving `has()` (i.e., checking if an element exists in a set) is optimized for performance in this specific implementation. Sets are data structures that provide fast lookup and insertion operations, often implemented as hash tables under the hood. Here are some general observations: * **Array `includes()`** tends to be slower than array methods because it scans through the entire array from start to finish, resulting in O(n) complexity. * **Set `add()`**, being optimized for performance, likely operates with an O(1) average case when adding elements. * **Array `indexOf()`** and set operations like "set.add" might be faster than `includes()` if the array or set contains many duplicate values. If you have specific questions about optimizing your benchmarking code or improving performance in these scenarios, feel free to ask! Here is a simple example of how you can optimize the performance of an array's includes method: ```javascript // Optimized includes() method function optimizedIncludes(array, element) { // Use the Set data structure for faster lookup const set = new Set(array); // Check if the element exists in the set (O(1) time complexity) return set.has(element); } const myArray = [1, 2, 3, 4, 5]; const result = optimizedIncludes(myArray, 3); console.log(result); // Output: true ``` This approach might not always be applicable for every use case but demonstrates how using a Set can improve performance in certain scenarios.
Related benchmarks:
set.has vs. array.includes 3
set.has vs. array.includes (300 elements)
set vs array iteration 99
set vs array iteration 9999
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