Problem solution · Python

ARC152 A — Seat Occupation

ARC152 A — Seat Occupation: a Python solution using direct simulation. Learn the idea, check the complexity, and read the full code, with credit to KATO-Hiro AtCoder Solutions.

Technique
Direct simulation
Source
KATO-Hiro AtCoder Solutions
Length
26 lines
Start with the idea.

Try the problem first. If you get stuck, read the approach below, then write your own solution. The full code is at the bottom.

Approach

Direct simulation

For ARC152 A — Seat Occupation, the implementation follows the problem’s operations directly while maintaining only the state needed for the next decision.

  1. Translate each rule into one explicit state update.
  2. Maintain the invariant after every processed item.
  3. Return the accumulated state once all relevant input has been handled.

Code notes

  • 26 lines of Python from the credited upstream file arc152_a.py.
  • The implementation visibly relies on sequence storage, ordered lookup.
  • No explicit loop blocks detected.

Complexity

Count the number and nesting of passes over the input, then include the maintained containers in the memory estimate.

Check the problem constraints before deciding whether this complexity will pass.

Source

Code and credit

This code comes from KATO-Hiro AtCoder Solutions by KATO-Hiro and is used under the CC0-1.0 licence.

Full codeARC152 A — Seat Occupation · PythonPython
Use this to learn the idea, then write your own version.
# -*- coding: utf-8 -*-  def main():    import sys     input = sys.stdin.readline     n, l = map(int, input().split())    a = list(map(int, input().split()))     # 1つ席を空けながら前の組から座る    # 2人組が座ろうとしたときに、残りの席が1以下ならNo    for ai in a:        if ai == 2 and l <= 1:            print("No")            exit()         l -= ai + 1     print("Yes")  if __name__ == "__main__":    main() 

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