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| disbot | <frostcod> interesting github.com/ash/rakupp | 04:16 | |
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| ugexe | the unfortunate thing is the roast is hardly a measure of what to implement | 04:22 | |
| compared to the ecosystem its almost insignificant even | |||
| although they could download the ecosystem and be able to infer a lot without needing to run it all | 04:28 | ||
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| Voldenet | This is actually nice, hot code in theory could be optimized into cpp libs with no rewrites | 05:25 | |
| in practice, I've tried and almost none of my code works except trivial examples | 05:35 | ||
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| Voldenet | but when it does work it's certainly fast | 05:40 | |
| AH, it's actually slower – compile step is blazingly fast so it appears faster | 05:57 | ||
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| wayland76 | Sorry to hear that. But maybe someday it'll pick up speed. | 07:17 | |
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| Voldenet | well, raku needs plenty of runtime optimizations, otherwise code will stay very dynamic | 08:16 | |
| e.g. rakupp thinks treats <123> as Int, but <123 abc> gets two Str | 08:18 | ||
| s/thinks// | |||
| <123 456> is two strings too | |||
| though markdowns say what in rakupp is faster, but it requires specific code style – why would I bother writing it in raku if I wanted to use C syntax | 08:22 | ||
| and of course, it's only faster on m1 chip which is kinda rare | 08:27 | ||
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| hwj | Voldenet, do you mean m1 specifically, or Apple silicon in general? | 11:22 | |
| Voldenet | What I meant was that moarvm raku has no jit on apple silicon, so it's rakupp can be faster | 12:42 | |
| s/it's// | |||
| and on intel-x64 I can't reproduce piece of code actually being faster | 12:43 | ||
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