143 lines
4.1 KiB
Python
143 lines
4.1 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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Crypto problem in Google CP Solver.
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Prolog benchmark problem GNU Prolog (crypta.pl)
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'''
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Name : crypta.pl
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Title : crypt-arithmetic
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Original Source: P. Van Hentenryck's book
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Adapted by : Daniel Diaz - INRIA France
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Date : September 1992
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Solve the operation:
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B A I J J A J I I A H F C F E B B J E A
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+ D H F G A B C D I D B I F F A G F E J E
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-----------------------------------------
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= G J E G A C D D H F A F J B F I H E E F
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'''
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Compare with the following models:
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* MiniZinc: http://www.hakank.org/minizinc/crypta.mzn
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* Comet : http://www.hakank.org/comet/crypta.co
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* ECLiPSe : http://www.hakank.org/eclipse/crypta.ecl
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* SICStus : http://hakank.org/sicstus/crypta.pl
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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: http://www.hakank.org/google_or_tools/
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"""
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from ortools.constraint_solver import pywrapcp
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def main():
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# Create the solver.
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solver = pywrapcp.Solver('Crypto problem')
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#
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# data
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#
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num_letters = 26
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BALLET = 45
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CELLO = 43
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CONCERT = 74
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FLUTE = 30
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FUGUE = 50
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GLEE = 66
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JAZZ = 58
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LYRE = 47
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OBOE = 53
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OPERA = 65
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POLKA = 59
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QUARTET = 50
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SAXOPHONE = 134
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SCALE = 51
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SOLO = 37
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SONG = 61
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SOPRANO = 82
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THEME = 72
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VIOLIN = 100
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WALTZ = 34
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#
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# variables
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#
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LD = [solver.IntVar(1, num_letters, 'LD[%i]' % i) for i in range(num_letters)]
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A,B,C,D,E,F,G,H,I,J,K,L,M,N,O,P,Q,R,S,T,U,V,W,X,Y,Z = LD
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#
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# constraints
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#
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solver.Add(solver.AllDifferent(LD))
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solver.Add( B + A + L + L + E + T == BALLET)
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solver.Add( C + E + L + L + O == CELLO)
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solver.Add( C + O + N + C + E + R + T == CONCERT)
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solver.Add( F + L + U + T + E == FLUTE)
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solver.Add( F + U + G + U + E == FUGUE)
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solver.Add( G + L + E + E == GLEE)
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solver.Add( J + A + Z + Z == JAZZ)
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solver.Add( L + Y + R + E == LYRE)
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solver.Add( O + B + O + E == OBOE)
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solver.Add( O + P + E + R + A == OPERA)
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solver.Add( P + O + L + K + A == POLKA)
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solver.Add( Q + U + A + R + T + E + T == QUARTET)
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solver.Add(S + A + X + O + P + H + O + N + E == SAXOPHONE)
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solver.Add( S + C + A + L + E == SCALE)
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solver.Add( S + O + L + O == SOLO)
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solver.Add( S + O + N + G == SONG)
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solver.Add( S + O + P + R + A + N + O == SOPRANO)
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solver.Add( T + H + E + M + E == THEME)
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solver.Add( V + I + O + L + I + N == VIOLIN)
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solver.Add( W + A + L + T + Z == WALTZ)
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#
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# search and result
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#
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db = solver.Phase(LD,
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solver.CHOOSE_MIN_SIZE_LOWEST_MIN,
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solver.ASSIGN_CENTER_VALUE)
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solver.NewSearch(db)
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num_solutions = 0
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str = "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
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while solver.NextSolution():
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num_solutions += 1
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for (letter, val) in [(str[i], LD[i].Value()) for i in range(num_letters)]:
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print "%s: %i" % (letter, val)
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print
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solver.EndSearch()
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print
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print "num_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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if __name__ == '__main__':
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main()
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