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Commit4efbb88

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committed
Added days 2019-03, 2019-04, 2019-05
1 parent712a775 commit4efbb88

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3 files changed

+220
-0
lines changed

3 files changed

+220
-0
lines changed

‎2019/03-Crossed Wires.py‎

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# -------------------------------- Input data ---------------------------------------- #
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importos,pathfinding
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fromcomplex_utilsimport*
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test_data= {}
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test=1
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test_data[test]= {
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"input":"""R75,D30,R83,U83,L12,D49,R71,U7,L72
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U62,R66,U55,R34,D71,R55,D58,R83""",
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"expected": ["159","610"],
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}
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test="real"
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input_file=os.path.join(
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os.path.dirname(__file__),
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"Inputs",
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os.path.basename(__file__).replace(".py",".txt"),
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)
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test_data[test]= {
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"input":open(input_file,"r+").read().strip(),
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"expected": ["308","12934"],
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}
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# -------------------------------- Control program execution ------------------------- #
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case_to_test="real"
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part_to_test=2
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# -------------------------------- Initialize some variables ------------------------- #
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puzzle_input=test_data[case_to_test]["input"]
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puzzle_expected_result=test_data[case_to_test]["expected"][part_to_test-1]
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puzzle_actual_result="Unknown"
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# -------------------------------- Actual code execution ----------------------------- #
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wires= []
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foriinrange(len(puzzle_input.split("\n"))):
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wire=puzzle_input.split("\n")[i]
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position=0
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wires.append(list())
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forlineinwire.split(","):
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direction= {"U":north,"D":south,"L":west,"R":east}[line[0]]
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forstepinrange(int(line[1:])):
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position+=direction
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wires[i].append(position)
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common=list(set(wires[0]).intersection(set(wires[1])))
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ifpart_to_test==1:
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common=complex_sort(common,"manhattan")
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puzzle_actual_result=int(manhattan_distance(0,common[0]))
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else:
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min_distance=10**20
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forspotincommon:
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distance= (
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wires[0].index(spot)+wires[1].index(spot)+2
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)# 2 because start is not included
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min_distance=min(min_distance,distance)
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puzzle_actual_result=min_distance
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# -------------------------------- Outputs / results --------------------------------- #
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print("Expected result : "+str(puzzle_expected_result))
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print("Actual result : "+str(puzzle_actual_result))

‎2019/04-Secure Container.py‎

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# -------------------------------- Input data ---------------------------------------- #
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importos,pathfinding
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fromcomplex_utilsimport*
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test_data= {}
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test=1
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test_data[test]= {
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"input":"""112233-112233""",
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"expected": ["1","Unknown"],
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}
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test="real"
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test_data[test]= {
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"input":"273025-767253",
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"expected": ["910","598"],
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}
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# -------------------------------- Control program execution ------------------------- #
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case_to_test="real"
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part_to_test=2
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# -------------------------------- Initialize some variables ------------------------- #
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puzzle_input=test_data[case_to_test]["input"]
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puzzle_expected_result=test_data[case_to_test]["expected"][part_to_test-1]
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puzzle_actual_result="Unknown"
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# -------------------------------- Actual code execution ----------------------------- #
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defhas_double(password):
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password=str(password)
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returnany([Trueforxin"0123456789"ifx+xinpassword])
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defnumbers_increase(password):
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password=str(password)
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returnall([password[i+1]>=password[i]foriinrange(len(password)-1)])
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deflarger_group_test(password):
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password=str(password)
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doubles= [xforxin"0123456789"ifx*2inpassword]
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ifnotdoubles:
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returnTrue
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larger_group= [xforxindoublesforninrange(3,7)ifx*ninpassword]
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returnany([xnotinlarger_groupforxindoubles])
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ifpart_to_test==1:
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start,end=map(int,puzzle_input.split("-"))
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matches=0
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foriinrange(start,end+1):
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ifhas_double(i)andnumbers_increase(i):
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matches+=1
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puzzle_actual_result=matches
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else:
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start,end=map(int,puzzle_input.split("-"))
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matches=0
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foriinrange(start,end+1):
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ifhas_double(i)andnumbers_increase(i)andlarger_group_test(i):
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matches+=1
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puzzle_actual_result=matches
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# -------------------------------- Outputs / results --------------------------------- #
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print("Expected result : "+str(puzzle_expected_result))
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print("Actual result : "+str(puzzle_actual_result))
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# -------------------------------- Input data ---------------------------------------- #
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importos,pathfinding
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fromcomplex_utilsimport*
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fromIntCodeimportIntCode
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test_data= {}
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test=1
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test_data[test]= {
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"input":"""1101,100,-1,4,0""",
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"expected": ["Unknown","Unknown"],
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}
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test+=1
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test_data[test]= {
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"input":"""3,21,1008,21,8,20,1005,20,22,107,8,21,20,1006,20,31,1106,0,36,98,0,0,1002,21,125,20,4,20,1105,1,46,104,999,1105,1,46,1101,1000,1,20,4,20,1105,1,46,98,99""",
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"expected": [
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"Unknown",
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"output 999 if the input value is below 8, output 1000 if the input value is equal to 8, or output 1001 if the input value is greater than 8",
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],
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}
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test="real"
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input_file=os.path.join(
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os.path.dirname(__file__),
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"Inputs",
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os.path.basename(__file__).replace(".py",".txt"),
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)
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test_data[test]= {
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"input":open(input_file,"r+").read().strip(),
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"expected": ["15097178","1558663"],
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}
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# -------------------------------- Control program execution ------------------------- #
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case_to_test="real"
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part_to_test=2
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IntCode.verbose_level=1
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# -------------------------------- Initialize some variables ------------------------- #
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puzzle_input=test_data[case_to_test]["input"]
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puzzle_expected_result=test_data[case_to_test]["expected"][part_to_test-1]
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puzzle_actual_result="Unknown"
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# -------------------------------- Actual code execution ----------------------------- #
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ifpart_to_test==1:
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computer=IntCode(puzzle_input)
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computer.inputs.append(1)
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computer.run()
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ifcomputer.state=="Stopped":
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puzzle_actual_result=computer.outputs[-1]
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else:
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computer=IntCode(puzzle_input)
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computer.inputs.append(5)
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computer.run()
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ifcomputer.state=="Stopped":
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puzzle_actual_result=computer.outputs[-1]
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# -------------------------------- Outputs / results --------------------------------- #
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print("Expected result : "+str(puzzle_expected_result))
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print("Actual result : "+str(puzzle_actual_result))

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