def ToUpper(s): return s.upper() class Words: def __init__(self): self.word = [] class Library: def __init__(self): # master vector of word self.words_ = Words() self.counts_ = {} # hash table self.word_map_ = {} def IsWord(self, s): return s in self.word_map_ def ComputeStats(self): # assert self.counts == {} for i in range(18): self.counts_[i] = [] for s in self.words_: _len = len(s.word) if _len <= 18: self.counts_[_len-1].append(_len) def PrintStats(self): print("Here are the counts of each word length") for k,v in self.counts_.items(): # print(v) if k != 0: print(f"[{k}] {len(v)}") def GetWord(self, i): assert (i >= 0 and i < len(self.words_)) return self.words_[i] def ReadFromFile(self, filename): with open(filename, 'r') as f: for line in f: line = ToUpper(line.rstrip()) self.words_.word.append(line) self.word_map_[line] = line print(f"Read {len(self.words_.word)} words from file '{filename}'") def DebugBuckets(self): for i, (k,v) in enumerate(self.word_map_.items()): print(f"[{i}] {len(v)}")# {self.word_map_[i]}") class Grid: def __init__(self, n): self.name = n self.lines = [] def rows(self): return len(self.lines) def cols(self): if self.lines == []: return 0 else: return len(self.lines[0]) def LoadFromFile(self, filename): with open(filename, 'r') as f: for line in f: #print(f"{line.rstrip()} ({len(line.rstrip())})") if not line.startswith('#'): self.lines.append(list(line.rstrip())) def Check(self): for s in self.lines: assert len(s) == self.cols() def Print(self): print(f"Grid: {self.name} " f"(rows={self.rows()}," f" cols={self.cols()})") for s in self.lines: print(f" {''.join(s)}") if __name__ == "__main__": lib = Library() lib.ReadFromFile("top_12000.txt") # lib.ComputeStats() # lib.PrintStats() print(lib.IsWord("DOG")) print(lib.IsWord("CAT")) print(lib.IsWord("THANKS")) print(lib.IsWord("TFAFAS")) lib.DebugBuckets() # grid = Grid("MY GRID") # grid.LoadFromFile("test") # grid.Check() # grid.Print()