import sort_serv, time class example_serv( sort_serv.local_server ): def sort ( self, inp ) : ''' This is the main function you will have to implement. Its purpose is to implement the sort. This method returns a list that is the input list, sorted. ''' inp.sort() return inp def get_status( self ): ''' In this funcion you return a string that represents your internal state. This is possible by using your inernal data members. NOTE : In general, in order to keep the state persisten it is needed that you use internal data members to your class, as an example the 'self.temp' list that I use above ''' return_string = 'I am ID ' + str(self.id) + ' and until now my result is' + repr (self.temp) + '\n' return return_string class example_insertion_serv( sort_serv.local_server ): # Find where to start the shifting. # Help method to insertion sort def setInOrder(self, m,input_list): e_m = input_list[m] for j in range(m): e_j = input_list[j] if (e_m < e_j): input_list = self.shift(j,m,input_list) return input_list; # Help method to insertion sort def shift(self, j,m,input_list): e_in = input_list[j] input_list[j]=input_list[m] for k in range(j,m): e_out = input_list[k+1] input_list[k+1] = e_in e_in = e_out return input_list def sort ( self, input_list ) : ''' This is the main function you will have to implement. Its purpose is to implement the sort. This method returns a list that is the input list, sorted. ''' self.checkpoint.running = True print 'Insertion : Still ', self.checkpoint.remaining_time, ' to be slept.' while self.checkpoint.remaining_time > 0 : self.checkpoint.remaining_time = max ( 0, self.checkpoint.remaining_time - 3 ) print 'I am about sleeping for ', self.checkpoint.remaining_time time.sleep( self.sort_time ) # Insertion sort for i in range(len(input_list)-1): e0 = input_list[i] e1 = input_list[i+1] if (e0 > e1): input_list = self.setInOrder(i+1,input_list) return input_list def get_status( self ): ''' In this funcion you return a string that represents your internal state. This is possible by using your inernal data members. NOTE : In general, in order to keep the state persisten it is needed that you use internal data members to your class, as an example the 'self.temp' list that I use above ''' return_string = 'I am ID ' + str(self.id) + ' and until now my result is blablaba \n' return return_string class example_bubble_serv( sort_serv.local_server ): def sort ( self, input_list ) : ''' This is the main function you will have to implement. Its purpose is to implement the sort. This method returns a list that is the input list, sorted. ''' self.checkpoint.running = True print 'Bubble : still ', self.checkpoint.remaining_time, ' to be slept.' while self.checkpoint.remaining_time > 0 : self.checkpoint.remaining_time = max ( 0, self.checkpoint.remaining_time - 3 ) print 'I am about sleeping for ', self.checkpoint.remaining_time time.sleep( self.sort_time ) # Bubble sort sortedness = 0 self.temp = input_list for i in range(len(input_list)-1): e0 = input_list[i] e1 = input_list[i+1] if (e0 > e1): input_list[i] = e1 input_list[i+1] = e0 sortedness = 0 else: sortedness += 1 if (sortedness < (len(input_list)-1)): self.sort(input_list) else: print self.get_status() return input_list def get_status( self ): ''' In this funcion you return a string that represents your internal state. This is possible by using your inernal data members. NOTE : In general, in order to keep the state persisten it is needed that you use internal data members to your class, as an example the 'self.temp' list that I use above ''' return_string = 'I am ID ' + str(self.id) + ' and until now my result is temporary.\n' return return_string