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AutoCode: LLMs as Problem Setters for Competitive Programming
by
Xie, Saining
, Li, Dongruixuan
, Hansen, He
, Chai, Wenhao
, Chen, Zexing
, Henderson, Peter
, Zheng, Zihan
, Liu, Kaiyuan
, Yao, Jianzhu
, Liu, Zhuang
, Jaques, Natasha
, Korolova, Aleksandra
, Fu, Tianfu
, Shen, Zeyu
, Mao, Huanzhi
, Li, Beichen
, Cheng, Zerui
, Mang, Qiuyang
, Shang, Jingbo
, Zhou, Shang
, Viswanath, Pramod
in
Competition
/ Data structures
/ Dynamic programming
/ Large language models
2025
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AutoCode: LLMs as Problem Setters for Competitive Programming
by
Xie, Saining
, Li, Dongruixuan
, Hansen, He
, Chai, Wenhao
, Chen, Zexing
, Henderson, Peter
, Zheng, Zihan
, Liu, Kaiyuan
, Yao, Jianzhu
, Liu, Zhuang
, Jaques, Natasha
, Korolova, Aleksandra
, Fu, Tianfu
, Shen, Zeyu
, Mao, Huanzhi
, Li, Beichen
, Cheng, Zerui
, Mang, Qiuyang
, Shang, Jingbo
, Zhou, Shang
, Viswanath, Pramod
in
Competition
/ Data structures
/ Dynamic programming
/ Large language models
2025
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AutoCode: LLMs as Problem Setters for Competitive Programming
by
Xie, Saining
, Li, Dongruixuan
, Hansen, He
, Chai, Wenhao
, Chen, Zexing
, Henderson, Peter
, Zheng, Zihan
, Liu, Kaiyuan
, Yao, Jianzhu
, Liu, Zhuang
, Jaques, Natasha
, Korolova, Aleksandra
, Fu, Tianfu
, Shen, Zeyu
, Mao, Huanzhi
, Li, Beichen
, Cheng, Zerui
, Mang, Qiuyang
, Shang, Jingbo
, Zhou, Shang
, Viswanath, Pramod
in
Competition
/ Data structures
/ Dynamic programming
/ Large language models
2025
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AutoCode: LLMs as Problem Setters for Competitive Programming
Paper
AutoCode: LLMs as Problem Setters for Competitive Programming
2025
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Overview
Writing competitive programming problems is exacting. Authors must: set constraints, input distributions, and edge cases that rule out shortcuts; target specific algorithms (e.g., max-flow, dynamic programming, data structures); and calibrate complexity beyond the reach of most competitors. We argue that this makes for an ideal test of general large language model capabilities and study whether they can do this reliably. We introduce AutoCode, which uses multiple rounds of validation to yield competition-grade problem statements and test cases. On held-out problems, AutoCode test suites approach 99% consistency with official judgments, a significant improvement over current state-of-the-art methods like HardTests, which achieve less than 81%. Furthermore, starting with a random seed problem, AutoCode can create novel variants with reference and brute-force solutions. By cross-verifying these generated solutions against test cases, we can further filter out malformed problems. Our system ensures high correctness, as verified by human experts. AutoCode successfully produces novel problems judged by Grandmaster-level (top 0.3%) competitive programmers to be of contest quality.
Publisher
Cornell University Library, arXiv.org
Subject
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