Select the correct statement(s) from the following with regard to the type of schedule in OpenMP for construct. O The overheads of different schedule types are the same. O It is possible that different schedule clauses don't give much performance difference for certain loops. O The default schedule clause works best if each iteration of the loop requires roughly the same amount of work. O The static schedule with large chunksize will probably works best if the cost of the iterations increases linearly.

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**Question:**

Select the correct statement(s) from the following with regard to the type of schedule in OpenMP `for` construct.

**Options:**

1. The overheads of different schedule types are the same.

2. It is possible that different schedule clauses don't give much performance difference for certain loops.

3. The default schedule clause works best if each iteration of the loop requires roughly the same amount of work.

4. The `static` schedule with large chunksize will probably work best if the cost of the iterations increases linearly.

**Explanation:**

This question is designed to test knowledge of scheduling in OpenMP parallel programming, focusing on how different scheduling clauses can affect performance depending on the nature of the loop iterations. It explores the comparative overheads, performance implications, and suitability of scheduling strategies like the default and `static` options in varying contexts.
Transcribed Image Text:**Question:** Select the correct statement(s) from the following with regard to the type of schedule in OpenMP `for` construct. **Options:** 1. The overheads of different schedule types are the same. 2. It is possible that different schedule clauses don't give much performance difference for certain loops. 3. The default schedule clause works best if each iteration of the loop requires roughly the same amount of work. 4. The `static` schedule with large chunksize will probably work best if the cost of the iterations increases linearly. **Explanation:** This question is designed to test knowledge of scheduling in OpenMP parallel programming, focusing on how different scheduling clauses can affect performance depending on the nature of the loop iterations. It explores the comparative overheads, performance implications, and suitability of scheduling strategies like the default and `static` options in varying contexts.
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