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Please read the general instructions for this exercise first. Here are the additional instructions specific to this task:
Implement efficient processing of an LLM prompt using all available single-precision processing power of the CPU.
I will first run all kinds of tests to see that your code works correctly. You can try it out locally by running ./grading test
, but please note that your code has to compile and work correctly not only on your own computer but also on our machines.
If all is fine, I will run the benchmarks. You can try it out on your own computer by running ./grading benchmark
, but of course the precise running time on your own computer might be different from the performance on our grading hardware.
Name | Operations | Parameters |
---|---|---|
benchmarks/1 | 3,472,443,648 | dim = 288, n_heads = 6, n_layers = 6, num_tokens = 127, vocab_size = 2048 |
Process a sequence of 127 tokens with a 6 layer model of width 288 | ||
benchmarks/2 | 58,321,158,400 | dim = 512, n_heads = 8, n_layers = 8, num_tokens = 765, vocab_size = 2048 |
Process a sequence of 765 tokens with a 8 layer model of width 512 | ||
benchmarks/3 | 142,139,200,512 | dim = 768, n_heads = 12, n_layers = 6, num_tokens = 510, vocab_size = 32000 |
Process a sequence of 510 tokens with a 6 layer model of width 768 | ||
benchmarks/4 | 34,244,798,976 | dim = 288, n_heads = 6, n_layers = 6, num_tokens = 2047, vocab_size = 2048 |
Process a sequence of 2047 tokens with a 6 layer model of width 288 | ||
benchmarks/5 | 233,995,901,952 | dim = 768, n_heads = 12, n_layers = 12, num_tokens = 513, vocab_size = 32000 |
Process a sequence of 513 tokens with a 12 layer model of width 768 |
Here “operations” is our rough estimate of how many useful arithmetic operations you will at least need to perform in this benchmark, but of course this will depend on exactly what kind of an algorithm you are using.
In this task your submission will be graded using benchmarks/5: Process a sequence of 513 tokens with a 12 layer model of width 768.
The point thresholds are as follows. If you submit your solution no later than on Sunday, 02 June 2024, at 23:59:59 (Helsinki), your score will be:
Running time | Points |
---|---|
≤ 8.000 sec | 1 |
≤ 6.000 sec | 2 |
≤ 4.000 sec | 3 |
≤ 2.000 sec | 4 |
≤ 1.000 sec | 5 |
For late submissions you will not get any points.
Your submissions to this task will also automatically take part in the contest, and you can receive up to 2 additional points if your code is among the fastest solutions this year!
Running time | Extra points |
---|---|
≤ 1.20 × fastest | 1 |
≤ 1.05 × fastest | 2 |