170 lines
4.3 KiB
Python
170 lines
4.3 KiB
Python
# Copyright 2010 Hakan Kjellerstrand hakank@bonetmail.com
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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"""
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Generic alphametic solver in Google CP Solver.
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This is a generic alphametic solver.
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Usage:
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python alphametic.py
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-> solves SEND+MORE=MONEY in base 10
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python alphametic.py 'SEND+MOST=MONEY' 11
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-> solver SEND+MOST=MONEY in base 11
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python alphametic.py TEST <base>
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-> solve some test problems in base <base>
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(defined in test_problems())
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Assumptions:
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- we only solves problems of the form
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NUMBER<1>+NUMBER<2>...+NUMBER<N-1> = NUMBER<N>
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i.e. the last number is the sum
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- the only nonletter characters are: +, =, \d (which are splitted upon)
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Compare with the following model:
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* Zinc: http://www.hakank.org/minizinc/alphametic.zinc
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This model was created by Hakan Kjellerstrand (hakank@bonetmail.com)
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Also see my other Google CP Solver models:
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http://www.hakank.org/google_or_tools/
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"""
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from __future__ import print_function
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import sys
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import re
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from ortools.constraint_solver import pywrapcp
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def main(problem_str="SEND+MORE=MONEY", base=10):
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# Create the solver.
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solver = pywrapcp.Solver("Send most money")
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# data
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print("\nproblem:", problem_str)
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# convert to array.
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problem = re.split("[\s+=]", problem_str)
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p_len = len(problem)
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print("base:", base)
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# create the lookup table: list of (digit : ix)
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a = sorted(set("".join(problem)))
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n = len(a)
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lookup = dict(list(zip(a, list(range(n)))))
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# length of each number
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lens = list(map(len, problem))
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#
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# declare variables
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#
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# the digits
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x = [solver.IntVar(0, base - 1, "x[%i]" % i) for i in range(n)]
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# the sums of each number (e.g. the three numbers SEND, MORE, MONEY)
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sums = [solver.IntVar(1, 10 ** (lens[i]) - 1) for i in range(p_len)]
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#
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# constraints
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#
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solver.Add(solver.AllDifferent(x))
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ix = 0
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for prob in problem:
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this_len = len(prob)
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# sum all the digits with proper exponents to a number
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solver.Add(sums[ix] == solver.Sum(
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[(base ** i) * x[lookup[prob[this_len - i - 1]]] for i in range(this_len)[::-1]]))
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# leading digits must be > 0
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solver.Add(x[lookup[prob[0]]] > 0)
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ix += 1
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# the last number is the sum of the previous numbers
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solver.Add(solver.Sum([sums[i] for i in range(p_len - 1)]) == sums[-1])
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#
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# solution and search
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#
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solution = solver.Assignment()
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solution.Add(x)
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solution.Add(sums)
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db = solver.Phase(x,
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solver.CHOOSE_FIRST_UNBOUND,
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solver.ASSIGN_MIN_VALUE)
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solver.NewSearch(db)
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num_solutions = 0
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while solver.NextSolution():
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num_solutions += 1
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print("\nsolution #%i" % num_solutions)
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for i in range(n):
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print(a[i], "=", x[i].Value())
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print()
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for prob in problem:
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for p in prob:
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print(p, end=' ')
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print()
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print()
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for prob in problem:
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for p in prob:
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print(x[lookup[p]].Value(), end=' ')
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print()
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print("sums:", [sums[i].Value() for i in range(p_len)])
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print()
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print("\nnum_solutions:", num_solutions)
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print("failures:", solver.Failures())
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print("branches:", solver.Branches())
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print("WallTime:", solver.WallTime())
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def test_problems(base=10):
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problems = [
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"SEND+MORE=MONEY",
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"SEND+MOST=MONEY",
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"VINGT+CINQ+CINQ=TRENTE",
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"EIN+EIN+EIN+EIN=VIER",
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"DONALD+GERALD=ROBERT",
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"SATURN+URANUS+NEPTUNE+PLUTO+PLANETS",
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"WRONG+WRONG=RIGHT"
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]
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for p in problems:
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main(p, base)
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problem = "SEND+MORE=MONEY"
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base = 10
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if __name__ == "__main__":
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if len(sys.argv) > 1:
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problem = sys.argv[1]
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if len(sys.argv) > 2:
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base = int(sys.argv[2])
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if problem == "TEST" or problem == "test":
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test_problems(base)
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else:
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main(problem, base)
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