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| from collections import OrderedDict
def Complementary(literal1,literal2): end1 = literal1.find('(') end2 = literal2.find('(') if literal2[0] == '~' and literal2[1:end2] == literal1[:end1]: return True if literal1[0] == '~' and literal1[1:end1] == literal2[:end2]: return True return False
def Index(literal_index,clause_index,length): if length == 1: index = str(clause_index+1) else: index = str(clause_index+1) + chr(ord('a')+literal_index) return index
def Parameter(literal): start = literal.find('(') end = literal.find(')') para = literal[start+1:end].split(',') return para
def Unify(para1,para2): variable = {'u','v','w','x','y','z','uu','vv','ww','xx','yy','zz'} unification = {} if para1 == para2: return unification while True: for i,j in zip(para1,para2): if i in variable and j in variable: return None elif i not in variable and j not in variable and i != j: return None elif i in variable and j not in variable: unification[i] = j break elif j in variable and i not in variable: unification[j] = i break para1 = [unification[item] if item in unification else item for item in para1] para2 = [unification[item] if item in unification else item for item in para2] if para1 == para2: break return unification
def Substitute(unification,clause): if unification == {}: return clause newclause = [] for literal in clause: start = literal.find('(') end = literal.find(')') para = literal[start + 1:end].split(',') para = [unification[item] if item in unification else item for item in para] newliteral = literal[:start + 1] + ','.join(para) + literal[end:] newclause.append(newliteral) return tuple(newclause)
def Resolve(clause1,clause2,literal_index1,literal_index2): newclause = list(clause1) + list(clause2) newclause.remove(clause1[literal_index1]) newclause.remove(clause2[literal_index2]) newclause = list(OrderedDict.fromkeys(newclause)) return tuple(newclause)
def Sequence(newclause,unification,index1,index2): string = '' if unification == {}: string += 'R[' + index1 + ',' + index2 + '] = ' else: string += 'R[' + index1 + ',' + index2 + ']{' for key,value in unification.items(): string += key + '=' + value + ',' string = string[:-1] string += '} = ' string += str(newclause) return string
def Refutation(KB): clauseset = list(KB) supportset = [KB[-1]] result = ['归结顺序:'] + KB while True: new_clauseset = [] clause_index1 = 0 for clause1 in clauseset: if clause1 in KB: clause_index2 = 0 for clause2 in clauseset: if clause1 != clause2 and clause2 in supportset: literal_index1 = 0 for literal1 in clause1: literal_index2 = 0 for literal2 in clause2: if Complementary(literal1,literal2): index1 = Index(literal_index1,clause_index1,len(clause1)) index2 = Index(literal_index2,clause_index2,len(clause2)) literal1 = clause1[literal_index1] literal2 = clause2[literal_index2] para1 = Parameter(literal1) para2 = Parameter(literal2) unification = Unify(para1,para2) if unification == None: break newclause1 = Substitute(unification,clause1) newclause2 = Substitute(unification,clause2) newclause = Resolve(newclause1,newclause2,literal_index1,literal_index2) if any([set(newclause)==(set(item)) for item in clauseset]): break if any([set(newclause)==(set(item)) for item in new_clauseset]): break sequence = Sequence(newclause,unification,index1,index2) result.append(sequence) new_clauseset.append(newclause) if newclause == (): return result literal_index2 += 1 literal_index1 += 1 clause_index2 += 1 clause_index1 += 1 clauseset += new_clauseset supportset += new_clauseset
def Number(clause): start = clause.find('[') end = clause.find(']') number = clause[start+1:end].split(',') num1 = int(''.join(item for item in number[0] if not item.isalpha())) num2 = int(''.join(item for item in number[1] if not item.isalpha())) return num1,num2
def Renumber(num,result,useful_process,size): if num <= size: return num sequence = result[num] begin = sequence.find('(') aim_clause = sequence[begin:] for i in range(size+1,len(useful_process)): begin = useful_process[i].find('(') if useful_process[i][begin:] == aim_clause: return i
def Resequence(sequence,num1,num2,newnum1,newnum2): start = sequence.find(num1) end = start + len(num1) sequence = sequence[:start] + newnum1 + sequence[end:] end = start + len(newnum1) start = sequence.find(num2, end) end = start + len(num2) sequence = sequence[:start] + newnum2 + sequence[end:] return sequence
def Simplify(result,size): base_process = result[0:size+1] useful_process = [] number = [len(result)-1] while number != []: number0 = number.pop(0) useful_process.append(result[number0]) num1,num2 = Number(result[number0]) if num1 > size: number.append(num1) if num2 > size: number.append(num2) useful_process.reverse() useful_process = base_process + useful_process for i in range(size+1,len(useful_process)): num1,num2 = Number(useful_process[i]) newnum1 = str(Renumber(num1,result,useful_process,size)) newnum2 = str(Renumber(num2,result,useful_process,size)) useful_process[i] = Resequence(useful_process[i],str(num1),str(num2),newnum1,newnum2) return useful_process
def Print(result): print(result[0]) for i in range(1,len(result)): print(i,result[i])
def ResolutionFOL(KB): result = Refutation(KB) new_result = Simplify(result,len(KB)) Print(new_result)
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