#!/usr/bin/python import sys, string, math, argparse parser = argparse.ArgumentParser() parser.add_argument('-l', '--length', type=int, default=64, help="length of note table") parser.add_argument('-u', '--upper', type=int, default=49, help="upper note # to test") parser.add_argument('-f', '--freq', type=float, default=3579545/32.0, help="base frequency (Hz)") args = parser.parse_args() test_notes = args.upper final_notes = args.length basehz = args.freq results = [] for a440 in range(4300,4500): error = 0 for note in range(1,test_notes): notehz = a440 / 10.0 * math.pow(2.0, (note - 49) / 12.0); period = int(round(basehz / notehz)) tonehz = basehz / period error += abs(notehz-tonehz) #print a440,note,notehz,notehz-tonehz,period #if a440 == 4405: # print '%d,%f,%d' % (note,tonehz-notehz,period) results.append((error, a440)) results.sort() best_error, best_a440 = results[0] best_a440 /= 10.0 print '//', best_a440, best_error, test_notes print "const int note_table[%d] = {" % final_notes for note in range(0,final_notes): notehz = best_a440 * math.pow(2.0, (note - 49) / 12.0); period = int(round(basehz / notehz)) print '%d,' % period, print "};"