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The Creative Computing Benchmark, also called Ahl's Simple Benchmark, is a computer benchmark that was used to compare the performance of the BASIC programming language on various machines. It was first introduced in the November 1983 issue of Creative Computing magazine with the measures from a number of 8-bit computers that were popular at ...
[1] The aim is to approximate how fast a computer will perform when solving real problems. It is a simplification, since no single computational task can reflect the overall performance of a computer system. Nevertheless, the LINPACK benchmark performance can provide a good correction over the peak performance provided by the manufacturer.
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PCMark is a computer benchmark tool developed by UL (formerly Futuremark) to test the performance of a PC at the system and component level.In most cases, the tests in PCMark are designed to represent typical home user workloads.
Benchmarking is usually associated with assessing performance characteristics of computer hardware, e.g., the floating point operation performance of a CPU, but there are circumstances when the technique is also applicable to software. Software benchmarks are, for example, run against compilers or database management systems.
CoreMark draws on the strengths that made Dhrystone so resilient - it is small, portable, easy to understand, free, and displays a single number benchmark score. Unlike Dhrystone, CoreMark has specific run and reporting rules, and was designed to avoid the well understood issues that have been cited with Dhrystone .
SPECfp is a computer benchmark designed to test the floating-point performance of a computer. It is managed by the Standard Performance Evaluation Corporation. SPECfp is the floating-point performance testing component of the SPEC CPU testing suit. The first standard SPECfp was released in 1989 [1] as SPECfp89. Later it was replaced by SPECfp92 ...
This test ultimately performs the same operations as test 1, but in this case, it uses an explicit test and jump rather than using the built-in FOR-NEXT construct. Generally, this program runs much slower than 1 because most BASICs parse the parameters in the FOR, including the line number, only once when it is first encountered.