Added 2025 day9
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@@ -0,0 +1,86 @@
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#!/bin/python3
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import sys,time,re,os,copy
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from pprint import pprint
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sys.path.insert(0, '../../')
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from fred import *
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start_time = time.time()
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if sys.argv[1] == 'test':
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input_f = 'test'
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elif sys.argv[1] == 'input':
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input_f = 'input'
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else:
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print('No argv provided')
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exit()
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#########################################
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# #
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# Part 1 #
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# #
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#########################################
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def area(cords1,cords2):
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width = abs(cords1[0]-cords2[0])+1
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height = abs(cords1[1]-cords2[1])+1
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return width*height
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def part1():
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score = 0
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lines = loadFile(input_f,',')
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heap = []
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for i in range(len(lines)):
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for j in range(i+1,len(lines)):
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cords1 = (list2int(lines[i]))
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cords2 = (list2int(lines[j]))
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a = area(cords1,cords2)
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heapq.heappush(heap, (a,cords1,cords2)) #only needed for part 2
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if a > score:
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score = a
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return score,heap # heap only for part 2
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start_time = time.time()
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p1,heap = part1()
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print('Part 1:',p1, '\t\t', round((time.time() - start_time)*1000), 'ms')
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#########################################
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# #
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# Part 2 #
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# #
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#########################################
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def part2(heap):
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from shapely.geometry import Polygon, box
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lines = loadFile(input_f,',')
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for l in range(len(lines)):
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lines[l] = tuple(list2int(lines[l]))
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shape = Polygon(lines)
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heapq._heapify_max(heap)
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score = 0
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while heap:
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area,cords1,cords2 = heapq._heappop_max(heap)
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x1,y1 = cords1
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x2,y2 = cords2
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rect = box(min(x1, x2), min(y1, y2), max(x1, x2), max(y1, y2))
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if shape.contains(rect):
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score = area
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break
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return score
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start_time = time.time()
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p2 = part2(heap)
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print('Part 2:',p2, '', round((time.time() - start_time)*1000), 'ms')
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@@ -20,6 +20,9 @@
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|&%;]__[]_[]_[]__<>| | |H_/|\ \\\\\\ | | | 7 **
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'...|<>__|H__|_\__|_____|_[_O_|
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| 8 **
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/ ______ __ | _________________O__
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[ |(__) [ ] \ |__| [ ] '''''' | | 9 **
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## 2024
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.-----. .------------------.
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@@ -13,12 +13,13 @@ def findInGrid(grid:list,x:str) -> set:
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if char == x:
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return (r,c)
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def loadFile(input_f):
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def loadFile(input_f, s:str=None):
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"""
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Loads a file and returns its lines as a list.
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Args:
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input_f (str): The file path to read from.
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s (str, optional): Delimiter to split lines by. Defaults to None.
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Returns:
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list: A list of lines from the file, with each line stripped of trailing newlines.
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@@ -31,7 +32,10 @@ def loadFile(input_f):
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try:
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with open(input_f) as file:
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for line in file:
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lines.append(line.rstrip()) # Removes trailing newline from each line
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if s == None:
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lines.append(line.rstrip()) # Removes trailing newline from each line
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else:
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lines.append(line.rstrip().split(s))
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except FileNotFoundError:
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raise FileNotFoundError(f"The file '{input_f}' was not found.")
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except IOError as e:
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@@ -816,4 +820,4 @@ def a_star(graph, start, end, heuristic):
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end = previous_nodes[end]
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path.reverse()
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return path, g_scores[path[-1]]
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return path, g_scores[path[-1]]
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