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Advent-of-code Alternatives
Similar projects and alternatives to advent-of-code
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adventofcode
Advent of Code solutions of 2015, 2016, 2017, 2018, 2019, 2020, 2021, 2022 and 2023 in Scala (by sim642)
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WorkOS
The modern identity platform for B2B SaaS. The APIs are flexible and easy-to-use, supporting authentication, user identity, and complex enterprise features like SSO and SCIM provisioning.
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InfluxDB
Power Real-Time Data Analytics at Scale. Get real-time insights from all types of time series data with InfluxDB. Ingest, query, and analyze billions of data points in real-time with unbounded cardinality.
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AdventOfCode
My Advent of Code solutions. I also upload videos of my solves: https://www.youtube.com/channel/UCuWLIm0l4sDpEe28t41WITA
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advent-of-code-cpp
C++ solutions for the Advent of Code programming puzzles - http://adventofcode.com/
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SaaSHub
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advent-of-code reviews and mentions
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-❄️- 2023 Day 6 Solutions -❄️-
[LANGUAGE: Python]
- How many lines of code was your day 3 solution?
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-🎄- 2022 Day 17 Solutions -🎄-
Python, Part 1 Only
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-🎄- 2022 Day 5 Solutions -🎄-
Python
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-🎄- 2021 Day 3 Solutions -🎄-
Rust Version
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-🎄- 2021 Day 2 Solutions -🎄-
Rust
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[2018 day 9] [C] Fast solution to the marble game
When I get back home after the holiday weekend I'll try benchmarking on my machine properly. But here's my version (in Common Lisp): https://github.com/rabuf/advent-of-code/blob/master/2018/2018.09.org
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Ada and Advent of Code 2021
Rest of 2021
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Programing midlife "crysis"
I'm partial to Common Lisp, but both Scheme and Racket would be good choices as well. There's a few of us who've been using CL the last few years to solve (nearly) every puzzle. If you want to see (not always great) solutions to the puzzles in Common Lisp, here's my repo, of course don't look at days you haven't solved yet unless you want spoilers. But it can give you a feel for how CL can be used to solve the problems. I'd intended to revisit them and clean them up, but never got around to it.
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[2020 Day 10 (Part 2)][C++] Non-memoization solution!
Interestingly, I think that solution is rather near the memoized version in one key regard. It's not memoization, however it's still storing all the results (the count for every joltage adaptor). You can massively reduce its storage by going with something like my solution (C-f for "part 2", there are two solutions one in Common Lisp and one in Ada), which is like the non-memoized iterative fibonacci series (psuedocode, pythonesque):
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