First row for Intel Core i7-930, DDR3 2000 MT/s he should be getting at most 16GB/s for reading from DRAM modules (not cache), but he's actually getting 18.4 GB/s, big 15% more. Maybe more cores were used, then the theoretical limit of that processor is 25.6GB/s, and the result is not that great.
But then for i5-520M, 1066MT/s he should be getting 8.5GB/s per core, but he's getting less, only 7.1GB/s.
Maybe contact the author (his email is in README.txt) and ask for clarifications on these discrepancies and help on your problem.
I think there is a problem somewhere with your system/measurements. With 6000 MT/s, there's no way getting 25GB/s is fine - that's what DDR4 3200MT/s should able to do. You should be getting close below 48 GB/s on one core, and 89.6GB/s multicore. And writes should be slower than reads.
Comments
Oh, you might be right. Not sure what you mean by TLC. But indeed the charts lack an explanation, so I've looked instead into this table:
https://zsmith.co/bw-table.php
First row for Intel Core i7-930, DDR3 2000 MT/s he should be getting at most 16GB/s for reading from DRAM modules (not cache), but he's actually getting 18.4 GB/s, big 15% more. Maybe more cores were used, then the theoretical limit of that processor is 25.6GB/s, and the result is not that great.
But then for i5-520M, 1066MT/s he should be getting 8.5GB/s per core, but he's getting less, only 7.1GB/s.
Maybe contact the author (his email is in README.txt) and ask for clarifications on these discrepancies and help on your problem.
I think there is a problem somewhere with your system/measurements. With 6000 MT/s, there's no way getting 25GB/s is fine - that's what DDR4 3200MT/s should able to do. You should be getting close below 48 GB/s on one core, and 89.6GB/s multicore. And writes should be slower than reads.