1c21a9c2fSMilanka Ringwald#!/usr/bin/env python 2c21a9c2fSMilanka Ringwaldimport numpy as np 3c21a9c2fSMilanka Ringwaldimport wave 4c21a9c2fSMilanka Ringwaldimport struct 5c21a9c2fSMilanka Ringwaldimport sys 6c21a9c2fSMilanka Ringwald 7c21a9c2fSMilanka Ringwald# channel mode 8c21a9c2fSMilanka RingwaldMONO = 0 9c21a9c2fSMilanka RingwaldDUAL_CHANNEL = 1 10c21a9c2fSMilanka RingwaldSTEREO = 2 11c21a9c2fSMilanka RingwaldJOINT_STEREO = 3 12ad470863SMilanka Ringwaldchannel_modes = ["MONO", "DUAL CHANNEL", "STEREO", "JOINT STEREO"] 13c21a9c2fSMilanka Ringwald 14c21a9c2fSMilanka Ringwald# allocation method 15c21a9c2fSMilanka RingwaldLOUDNESS = 0 16c21a9c2fSMilanka RingwaldSNR = 1 17ad470863SMilanka Ringwaldallocation_methods = ["LOUDNESS", "SNR"] 18ad470863SMilanka Ringwald 19ad470863SMilanka Ringwaldsampling_frequencies = [16000, 32000, 44100, 48000] 20ad470863SMilanka Ringwaldnr_blocks = [4, 8, 12, 16] 21ad470863SMilanka Ringwaldnr_subbands = [4, 8] 22ad470863SMilanka Ringwald 23ad470863SMilanka Ringwald 24ad470863SMilanka Ringwalddef allocation_method_to_str(allocation_method): 25ad470863SMilanka Ringwald global allocation_methods 26ad470863SMilanka Ringwald return allocation_methods[allocation_method] 27ad470863SMilanka Ringwald 28ad470863SMilanka Ringwalddef channel_mode_to_str(channel_mode): 29ad470863SMilanka Ringwald global channel_modes 30ad470863SMilanka Ringwald return channel_modes[channel_mode] 31ad470863SMilanka Ringwald 32ad470863SMilanka Ringwalddef sampling_frequency_to_str(sampling_frequency): 33ad470863SMilanka Ringwald global sampling_frequencies 34ad470863SMilanka Ringwald return sampling_frequencies[sampling_frequency] 35ad470863SMilanka Ringwald 36ad470863SMilanka Ringwalddef sampling_frequency_index(sampling_frequency): 37ad470863SMilanka Ringwald global sampling_frequencies 38ad470863SMilanka Ringwald for index, value in enumerate(sampling_frequencies): 39ad470863SMilanka Ringwald if value == sampling_frequency: 40ad470863SMilanka Ringwald return index 41ad470863SMilanka Ringwald return -1 42c21a9c2fSMilanka Ringwald 43c21a9c2fSMilanka RingwaldProto_4_40 = [ 44c21a9c2fSMilanka Ringwald 0.00000000E+00, 5.36548976E-04, 1.49188357E-03, 2.73370904E-03, 45c21a9c2fSMilanka Ringwald 3.83720193E-03, 3.89205149E-03, 1.86581691E-03, -3.06012286E-03, 46c21a9c2fSMilanka Ringwald 1.09137620E-02, 2.04385087E-02, 2.88757392E-02, 3.21939290E-02, 47c21a9c2fSMilanka Ringwald 2.58767811E-02, 6.13245186E-03, -2.88217274E-02, -7.76463494E-02, 48c21a9c2fSMilanka Ringwald 1.35593274E-01, 1.94987841E-01, 2.46636662E-01, 2.81828203E-01, 49c21a9c2fSMilanka Ringwald 2.94315332E-01, 2.81828203E-01, 2.46636662E-01, 1.94987841E-01, 50c21a9c2fSMilanka Ringwald -1.35593274E-01, -7.76463494E-02, -2.88217274E-02, 6.13245186E-03, 51c21a9c2fSMilanka Ringwald 2.58767811E-02, 3.21939290E-02, 2.88757392E-02, 2.04385087E-02, 52c21a9c2fSMilanka Ringwald -1.09137620E-02, -3.06012286E-03, 1.86581691E-03, 3.89205149E-03, 53c21a9c2fSMilanka Ringwald 3.83720193E-03, 2.73370904E-03, 1.49188357E-03, 5.36548976E-04 54c21a9c2fSMilanka Ringwald] 55c21a9c2fSMilanka Ringwald 56c21a9c2fSMilanka RingwaldProto_8_80 = [ 57c21a9c2fSMilanka Ringwald 0.00000000E+00, 1.56575398E-04, 3.43256425E-04, 5.54620202E-04, 58c21a9c2fSMilanka Ringwald 8.23919506E-04, 1.13992507E-03, 1.47640169E-03, 1.78371725E-03, 59c21a9c2fSMilanka Ringwald 2.01182542E-03, 2.10371989E-03, 1.99454554E-03, 1.61656283E-03, 60c21a9c2fSMilanka Ringwald 9.02154502E-04, -1.78805361E-04, -1.64973098E-03, -3.49717454E-03, 61c21a9c2fSMilanka Ringwald 5.65949473E-03, 8.02941163E-03, 1.04584443E-02, 1.27472335E-02, 62c21a9c2fSMilanka Ringwald 1.46525263E-02, 1.59045603E-02, 1.62208471E-02, 1.53184106E-02, 63c21a9c2fSMilanka Ringwald 1.29371806E-02, 8.85757540E-03, 2.92408442E-03, -4.91578024E-03, 64c21a9c2fSMilanka Ringwald -1.46404076E-02, -2.61098752E-02, -3.90751381E-02, -5.31873032E-02, 65c21a9c2fSMilanka Ringwald 6.79989431E-02, 8.29847578E-02, 9.75753918E-02, 1.11196689E-01, 66c21a9c2fSMilanka Ringwald 1.23264548E-01, 1.33264415E-01, 1.40753505E-01, 1.45389847E-01, 67c21a9c2fSMilanka Ringwald 1.46955068E-01, 1.45389847E-01, 1.40753505E-01, 1.33264415E-01, 68c21a9c2fSMilanka Ringwald 1.23264548E-01, 1.11196689E-01, 9.75753918E-02, 8.29847578E-02, 69c21a9c2fSMilanka Ringwald -6.79989431E-02, -5.31873032E-02, -3.90751381E-02, -2.61098752E-02, 70c21a9c2fSMilanka Ringwald -1.46404076E-02, -4.91578024E-03, 2.92408442E-03, 8.85757540E-03, 71c21a9c2fSMilanka Ringwald 1.29371806E-02, 1.53184106E-02, 1.62208471E-02, 1.59045603E-02, 72c21a9c2fSMilanka Ringwald 1.46525263E-02, 1.27472335E-02, 1.04584443E-02, 8.02941163E-03, 73c21a9c2fSMilanka Ringwald -5.65949473E-03, -3.49717454E-03, -1.64973098E-03, -1.78805361E-04, 74c21a9c2fSMilanka Ringwald 9.02154502E-04, 1.61656283E-03, 1.99454554E-03, 2.10371989E-03, 75c21a9c2fSMilanka Ringwald 2.01182542E-03, 1.78371725E-03, 1.47640169E-03, 1.13992507E-03, 76c21a9c2fSMilanka Ringwald 8.23919506E-04, 5.54620202E-04, 3.43256425E-04, 1.56575398E-04 77c21a9c2fSMilanka Ringwald] 78c21a9c2fSMilanka Ringwald 79c21a9c2fSMilanka Ringwaldcrc_table = [ 80c21a9c2fSMilanka Ringwald 0x00, 0x1D, 0x3A, 0x27, 0x74, 0x69, 0x4E, 0x53, 81c21a9c2fSMilanka Ringwald 0xE8, 0xF5, 0xD2, 0xCF, 0x9C, 0x81, 0xA6, 0xBB, 82c21a9c2fSMilanka Ringwald 0xCD, 0xD0, 0xF7, 0xEA, 0xB9, 0xA4, 0x83, 0x9E, 83c21a9c2fSMilanka Ringwald 0x25, 0x38, 0x1F, 0x02, 0x51, 0x4C, 0x6B, 0x76, 84c21a9c2fSMilanka Ringwald 0x87, 0x9A, 0xBD, 0xA0, 0xF3, 0xEE, 0xC9, 0xD4, 85c21a9c2fSMilanka Ringwald 0x6F, 0x72, 0x55, 0x48, 0x1B, 0x06, 0x21, 0x3C, 86c21a9c2fSMilanka Ringwald 0x4A, 0x57, 0x70, 0x6D, 0x3E, 0x23, 0x04, 0x19, 87c21a9c2fSMilanka Ringwald 0xA2, 0xBF, 0x98, 0x85, 0xD6, 0xCB, 0xEC, 0xF1, 88c21a9c2fSMilanka Ringwald 0x13, 0x0E, 0x29, 0x34, 0x67, 0x7A, 0x5D, 0x40, 89c21a9c2fSMilanka Ringwald 0xFB, 0xE6, 0xC1, 0xDC, 0x8F, 0x92, 0xB5, 0xA8, 90c21a9c2fSMilanka Ringwald 0xDE, 0xC3, 0xE4, 0xF9, 0xAA, 0xB7, 0x90, 0x8D, 91c21a9c2fSMilanka Ringwald 0x36, 0x2B, 0x0C, 0x11, 0x42, 0x5F, 0x78, 0x65, 92c21a9c2fSMilanka Ringwald 0x94, 0x89, 0xAE, 0xB3, 0xE0, 0xFD, 0xDA, 0xC7, 93c21a9c2fSMilanka Ringwald 0x7C, 0x61, 0x46, 0x5B, 0x08, 0x15, 0x32, 0x2F, 94c21a9c2fSMilanka Ringwald 0x59, 0x44, 0x63, 0x7E, 0x2D, 0x30, 0x17, 0x0A, 95c21a9c2fSMilanka Ringwald 0xB1, 0xAC, 0x8B, 0x96, 0xC5, 0xD8, 0xFF, 0xE2, 96c21a9c2fSMilanka Ringwald 0x26, 0x3B, 0x1C, 0x01, 0x52, 0x4F, 0x68, 0x75, 97c21a9c2fSMilanka Ringwald 0xCE, 0xD3, 0xF4, 0xE9, 0xBA, 0xA7, 0x80, 0x9D, 98c21a9c2fSMilanka Ringwald 0xEB, 0xF6, 0xD1, 0xCC, 0x9F, 0x82, 0xA5, 0xB8, 99c21a9c2fSMilanka Ringwald 0x03, 0x1E, 0x39, 0x24, 0x77, 0x6A, 0x4D, 0x50, 100c21a9c2fSMilanka Ringwald 0xA1, 0xBC, 0x9B, 0x86, 0xD5, 0xC8, 0xEF, 0xF2, 101c21a9c2fSMilanka Ringwald 0x49, 0x54, 0x73, 0x6E, 0x3D, 0x20, 0x07, 0x1A, 102c21a9c2fSMilanka Ringwald 0x6C, 0x71, 0x56, 0x4B, 0x18, 0x05, 0x22, 0x3F, 103c21a9c2fSMilanka Ringwald 0x84, 0x99, 0xBE, 0xA3, 0xF0, 0xED, 0xCA, 0xD7, 104c21a9c2fSMilanka Ringwald 0x35, 0x28, 0x0F, 0x12, 0x41, 0x5C, 0x7B, 0x66, 105c21a9c2fSMilanka Ringwald 0xDD, 0xC0, 0xE7, 0xFA, 0xA9, 0xB4, 0x93, 0x8E, 106c21a9c2fSMilanka Ringwald 0xF8, 0xE5, 0xC2, 0xDF, 0x8C, 0x91, 0xB6, 0xAB, 107c21a9c2fSMilanka Ringwald 0x10, 0x0D, 0x2A, 0x37, 0x64, 0x79, 0x5E, 0x43, 108c21a9c2fSMilanka Ringwald 0xB2, 0xAF, 0x88, 0x95, 0xC6, 0xDB, 0xFC, 0xE1, 109c21a9c2fSMilanka Ringwald 0x5A, 0x47, 0x60, 0x7D, 0x2E, 0x33, 0x14, 0x09, 110c21a9c2fSMilanka Ringwald 0x7F, 0x62, 0x45, 0x58, 0x0B, 0x16, 0x31, 0x2C, 111c21a9c2fSMilanka Ringwald 0x97, 0x8A, 0xAD, 0xB0, 0xE3, 0xFE, 0xD9, 0xC4 112c21a9c2fSMilanka Ringwald] 113c21a9c2fSMilanka Ringwald# offset table for 4-subbands 114c21a9c2fSMilanka Ringwaldoffset4 = np.array([[ -1, 0, 0, 0 ], 115c21a9c2fSMilanka Ringwald [ -2, 0, 0, 1 ], 116c21a9c2fSMilanka Ringwald [ -2, 0, 0, 1 ], 117c21a9c2fSMilanka Ringwald [ -2, 0, 0, 1 ] 118c21a9c2fSMilanka Ringwald ]) 119c21a9c2fSMilanka Ringwald 120c21a9c2fSMilanka Ringwald# offset tables for 8-subbands 121c21a9c2fSMilanka Ringwaldoffset8 = np.array([[ -2, 0, 0, 0, 0, 0, 0, 1 ], 122c21a9c2fSMilanka Ringwald [ -3, 0, 0, 0, 0, 0, 1, 2 ], 123c21a9c2fSMilanka Ringwald [ -4, 0, 0, 0, 0, 0, 1, 2 ], 124c21a9c2fSMilanka Ringwald [ -4, 0, 0, 0, 0, 0, 1, 2 ] 125c21a9c2fSMilanka Ringwald ]) 126c21a9c2fSMilanka Ringwald 1271522543dSMilanka Ringwalddef calculate_scalefactor(max_subbandsample): 1281522543dSMilanka Ringwald x = 0 1291522543dSMilanka Ringwald while True: 130*57f2bc22SMilanka Ringwald y = (1 << x) + 1 1311522543dSMilanka Ringwald if y > max_subbandsample: 1321522543dSMilanka Ringwald break 1331522543dSMilanka Ringwald x += 1 1341522543dSMilanka Ringwald return (x,y) 1351522543dSMilanka Ringwald 1361522543dSMilanka Ringwald 1371522543dSMilanka Ringwalddef calculate_max_subbandsample(nr_blocks, nr_channels, nr_subbands, sb_sample): 1381522543dSMilanka Ringwald max_subbandsample = np.zeros(shape = (nr_channels, nr_subbands)) 1391522543dSMilanka Ringwald 1401522543dSMilanka Ringwald for blk in range(nr_blocks): 1411522543dSMilanka Ringwald for ch in range(nr_channels): 1421522543dSMilanka Ringwald for sb in range(nr_subbands): 1431522543dSMilanka Ringwald m = abs(sb_sample[blk][ch][sb]) 1441522543dSMilanka Ringwald if max_subbandsample[ch][sb] < m: 1451522543dSMilanka Ringwald max_subbandsample[ch][sb] = m 1461522543dSMilanka Ringwald return max_subbandsample 1471522543dSMilanka Ringwald 1481522543dSMilanka Ringwalddef calculate_scalefactors(nr_blocks, nr_channels, nr_subbands, sb_sample): 1491522543dSMilanka Ringwald scale_factor = np.zeros(shape=(nr_channels, nr_subbands), dtype = np.int32) 1501522543dSMilanka Ringwald scalefactor = np.zeros(shape=(nr_channels, nr_subbands), dtype = np.int32) 1511522543dSMilanka Ringwald 1525c9bef5bSMilanka Ringwald max_subbandsample = calculate_max_subbandsample(nr_blocks, nr_channels, nr_subbands, sb_sample) 1531522543dSMilanka Ringwald for ch in range(nr_channels): 1541522543dSMilanka Ringwald for sb in range(nr_subbands): 1555c9bef5bSMilanka Ringwald (scale_factor[ch][sb], scalefactor[ch][sb]) = calculate_scalefactor(max_subbandsample[ch][sb]) 1561522543dSMilanka Ringwald return scale_factor, scalefactor 1571522543dSMilanka Ringwald 158c9498b12SMilanka Ringwalddef calculate_channel_mode_and_scale_factors(frame): 159c9498b12SMilanka Ringwald frame.scale_factor, frame.scalefactor = calculate_scalefactors(frame.nr_blocks, frame.nr_channels, frame.nr_subbands, frame.sb_sample) 160c9498b12SMilanka Ringwald 1611522543dSMilanka Ringwald if frame.nr_channels == 1: 1621522543dSMilanka Ringwald frame.channel_mode = MONO 163c9498b12SMilanka Ringwald return 164c9498b12SMilanka Ringwald 1655c9bef5bSMilanka Ringwald frame.channel_mode = STEREO 1665c9bef5bSMilanka Ringwald frame.join = np.zeros(frame.nr_subbands, dtype = np.uint8) 1675c9bef5bSMilanka Ringwald return 168*57f2bc22SMilanka Ringwald sb_sample = np.zeros(shape = (frame.nr_blocks,2,frame.nr_subbands), dtype = np.int32) 1691522543dSMilanka Ringwald for blk in range(frame.nr_blocks): 1701522543dSMilanka Ringwald for sb in range(frame.nr_subbands): 171*57f2bc22SMilanka Ringwald sb_sample[blk][0][sb] = (frame.sb_sample[blk][0][sb] + frame.sb_sample[blk][1][sb])/2 172*57f2bc22SMilanka Ringwald sb_sample[blk][1][sb] = (frame.sb_sample[blk][0][sb] - frame.sb_sample[blk][1][sb])/2 1731522543dSMilanka Ringwald 174c9498b12SMilanka Ringwald scale_factor, scalefactor = calculate_scalefactors(frame.nr_blocks, frame.nr_channels, frame.nr_subbands, sb_sample) 1755c9bef5bSMilanka Ringwald 176*57f2bc22SMilanka Ringwald for sb in range(frame.nr_subbands-1): 1775c9bef5bSMilanka Ringwald suma = frame.scale_factor[0][sb] + frame.scale_factor[1][sb] 1785c9bef5bSMilanka Ringwald sumb = scale_factor[0][sb] + scale_factor[1][sb] 1795c9bef5bSMilanka Ringwald 180*57f2bc22SMilanka Ringwald if suma >= sumb: 1811522543dSMilanka Ringwald frame.channel_mode = JOINT_STEREO 1825c9bef5bSMilanka Ringwald frame.join[sb] = 1 1835c9bef5bSMilanka Ringwald 1845c9bef5bSMilanka Ringwald frame.scale_factor[0][sb] = scale_factor[0][sb] 1855c9bef5bSMilanka Ringwald frame.scale_factor[1][sb] = scale_factor[1][sb] 1865c9bef5bSMilanka Ringwald frame.scalefactor[0][sb] = scalefactor[0][sb] 1875c9bef5bSMilanka Ringwald frame.scalefactor[1][sb] = scalefactor[1][sb] 1885c9bef5bSMilanka Ringwald 1895c9bef5bSMilanka Ringwald for blk in range(frame.nr_blocks): 190c9498b12SMilanka Ringwald frame.sb_sample[blk][0][sb] = sb_sample[blk][0][sb] 191c9498b12SMilanka Ringwald frame.sb_sample[blk][1][sb] = sb_sample[blk][1][sb] 1921522543dSMilanka Ringwald 1931522543dSMilanka Ringwald 194c21a9c2fSMilanka Ringwaldclass SBCFrame: 195c21a9c2fSMilanka Ringwald syncword = 0 196c21a9c2fSMilanka Ringwald sampling_frequency = 0 197c21a9c2fSMilanka Ringwald nr_blocks = 0 198c21a9c2fSMilanka Ringwald channel_mode = 0 199c21a9c2fSMilanka Ringwald nr_channels = 0 200c21a9c2fSMilanka Ringwald allocation_method = 0 201c21a9c2fSMilanka Ringwald nr_subbands = 0 202c21a9c2fSMilanka Ringwald bitpool = 0 203c21a9c2fSMilanka Ringwald crc_check = 0 204c21a9c2fSMilanka Ringwald # pro subband - 1 205c21a9c2fSMilanka Ringwald join = np.zeros(8, dtype = np.uint8) 206c21a9c2fSMilanka Ringwald scale_factor = np.zeros(shape=(2, 8), dtype = np.int32) 207c21a9c2fSMilanka Ringwald scalefactor = np.zeros(shape=(2, 8), dtype = np.int32) 208c21a9c2fSMilanka Ringwald audio_sample = np.zeros(shape = (16,2,8), dtype = np.uint16) 209c21a9c2fSMilanka Ringwald sb_sample = np.zeros(shape = (16,2,8), dtype = np.uint16) 210c21a9c2fSMilanka Ringwald X = np.zeros(8, dtype = np.int16) 211c21a9c2fSMilanka Ringwald EX = np.zeros(8) 2121522543dSMilanka Ringwald pcm = np.zeros(shape=(2, 8*16), dtype = np.int16) 213c21a9c2fSMilanka Ringwald bits = np.zeros(shape=(2, 8)) 214c21a9c2fSMilanka Ringwald levels = np.zeros(shape=(2, 8), dtype = np.int32) 215c21a9c2fSMilanka Ringwald 216ad470863SMilanka Ringwald 2175665ea35SMilanka Ringwald def __init__(self, nr_blocks=16, nr_subbands=4, nr_channels=1, bitpool=31, sampling_frequency=44100, allocation_method = 0): 218c21a9c2fSMilanka Ringwald self.nr_blocks = nr_blocks 219c21a9c2fSMilanka Ringwald self.nr_subbands = nr_subbands 220c21a9c2fSMilanka Ringwald self.nr_channels = nr_channels 221ad470863SMilanka Ringwald self.sampling_frequency = sampling_frequency_index(sampling_frequency) 222c21a9c2fSMilanka Ringwald self.bitpool = bitpool 2235665ea35SMilanka Ringwald self.allocation_method = allocation_method 2245c9bef5bSMilanka Ringwald self.init(nr_blocks, nr_subbands, nr_channels) 2255c9bef5bSMilanka Ringwald return 2265c9bef5bSMilanka Ringwald 2275c9bef5bSMilanka Ringwald def init(self, nr_blocks, nr_subbands, nr_channels): 228c21a9c2fSMilanka Ringwald self.scale_factor = np.zeros(shape=(nr_channels, nr_subbands), dtype = np.int32) 229c21a9c2fSMilanka Ringwald self.scalefactor = np.zeros(shape=(nr_channels, nr_subbands), dtype = np.int32) 230c21a9c2fSMilanka Ringwald self.audio_sample = np.zeros(shape=(nr_blocks, nr_channels, nr_subbands), dtype = np.uint16) 231c21a9c2fSMilanka Ringwald self.sb_sample = np.zeros(shape=(nr_blocks, nr_channels, nr_subbands), dtype = np.uint16) 232c21a9c2fSMilanka Ringwald self.levels = np.zeros(shape=(nr_channels, nr_subbands), dtype = np.int32) 2335c9bef5bSMilanka Ringwald self.pcm = np.zeros(shape=(nr_channels, nr_subbands*nr_blocks), dtype = np.int16) 2345c9bef5bSMilanka Ringwald self.join = np.zeros(nr_subbands, dtype = np.uint8) 2355c9bef5bSMilanka Ringwald self.X = np.zeros(nr_subbands, dtype = np.int16) 236c21a9c2fSMilanka Ringwald self.EX = np.zeros(nr_subbands) 237c21a9c2fSMilanka Ringwald 238ad470863SMilanka Ringwald def dump_audio_samples(self, blk, ch): 239ad470863SMilanka Ringwald print self.audio_sample[blk][ch] 240ad470863SMilanka Ringwald 241ad470863SMilanka Ringwald def dump_subband_samples(self, blk, ch): 242ad470863SMilanka Ringwald print self.sb_sample[blk][ch] 243ad470863SMilanka Ringwald 244ad470863SMilanka Ringwald def dump_state(self): 245ad470863SMilanka Ringwald res = "SBCFrameHeader state:" 246ad470863SMilanka Ringwald res += "\n - nr channels %d" % self.nr_channels 247ad470863SMilanka Ringwald res += "\n - nr blocks %d" % self.nr_blocks 248ad470863SMilanka Ringwald res += "\n - nr subbands %d" % self.nr_subbands 249ad470863SMilanka Ringwald res += "\n - scale factors: %s" % self.scale_factor 250ad470863SMilanka Ringwald res += "\n - levels: %s" % self.levels 251ad470863SMilanka Ringwald res += "\n - join: %s" % self.join 252ad470863SMilanka Ringwald res += "\n - bits: %s" % self.bits 253ad470863SMilanka Ringwald print res 254ad470863SMilanka Ringwald 255c21a9c2fSMilanka Ringwald def __str__(self): 256c21a9c2fSMilanka Ringwald res = "SBCFrameHeader:" 257ad470863SMilanka Ringwald res += "\n - syncword %d" % self.syncword 258ad470863SMilanka Ringwald res += "\n - sampling frequency %d Hz" % sampling_frequency_to_str(self.sampling_frequency) 259c21a9c2fSMilanka Ringwald 260ad470863SMilanka Ringwald res += "\n - nr channels %d" % self.nr_channels 261ad470863SMilanka Ringwald res += "\n - nr blocks %d" % self.nr_blocks 262ad470863SMilanka Ringwald res += "\n - nr subbands %d" % self.nr_subbands 263c21a9c2fSMilanka Ringwald 264ad470863SMilanka Ringwald res += "\n - channel mode %s" % channel_mode_to_str(self.channel_mode) 265ad470863SMilanka Ringwald res += "\n - allocation method %s" % allocation_method_to_str(self.allocation_method) 266c21a9c2fSMilanka Ringwald 267ad470863SMilanka Ringwald res += "\n - bitpool %d" % self.bitpool 268ad470863SMilanka Ringwald res += "\n - crc check %d" % self.crc_check 269c21a9c2fSMilanka Ringwald return res 270c21a9c2fSMilanka Ringwald 271c21a9c2fSMilanka Ringwald 2721522543dSMilanka Ringwalddef sbc_bit_allocation_stereo_joint(frame): 2731522543dSMilanka Ringwald bitneed = np.zeros(shape=(frame.nr_channels, frame.nr_subbands), dtype = np.int32) 2741522543dSMilanka Ringwald bits = np.zeros(shape=(frame.nr_channels, frame.nr_subbands), dtype = np.int32) 2751522543dSMilanka Ringwald 276c21a9c2fSMilanka Ringwald loudness = 0 277c21a9c2fSMilanka Ringwald 278c21a9c2fSMilanka Ringwald if frame.allocation_method == SNR: 279c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 280c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 281c21a9c2fSMilanka Ringwald bitneed[ch][sb] = frame.scale_factor[ch][sb] 282c21a9c2fSMilanka Ringwald else: 283c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 284c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 285c21a9c2fSMilanka Ringwald if frame.scale_factor[ch][sb] == 0: 286c21a9c2fSMilanka Ringwald bitneed[ch][sb] = -5 287c21a9c2fSMilanka Ringwald else: 288c21a9c2fSMilanka Ringwald if frame.nr_subbands == 4: 289c9498b12SMilanka Ringwald loudness = frame.scale_factor[ch][sb] - offset4[frame.sampling_frequency][sb] 290c21a9c2fSMilanka Ringwald else: 291c21a9c2fSMilanka Ringwald loudness = frame.scale_factor[ch][sb] - offset8[frame.sampling_frequency][sb] 2921522543dSMilanka Ringwald 293c21a9c2fSMilanka Ringwald if loudness > 0: 294c21a9c2fSMilanka Ringwald bitneed[ch][sb] = loudness/2 295c21a9c2fSMilanka Ringwald else: 296c21a9c2fSMilanka Ringwald bitneed[ch][sb] = loudness 297c21a9c2fSMilanka Ringwald 298c21a9c2fSMilanka Ringwald # search the maximum bitneed index 299c21a9c2fSMilanka Ringwald max_bitneed = 0 300c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 301c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 302c21a9c2fSMilanka Ringwald if bitneed[ch][sb] > max_bitneed: 303c21a9c2fSMilanka Ringwald max_bitneed = bitneed[ch][sb] 304c21a9c2fSMilanka Ringwald 3059462b3daSMilanka Ringwald 306c21a9c2fSMilanka Ringwald # calculate how many bitslices fit into the bitpool 307c21a9c2fSMilanka Ringwald bitcount = 0 308c21a9c2fSMilanka Ringwald slicecount = 0 309c21a9c2fSMilanka Ringwald bitslice = max_bitneed + 1 #/* init just above the largest sf */ 310c21a9c2fSMilanka Ringwald 311c21a9c2fSMilanka Ringwald while True: 3121522543dSMilanka Ringwald bitslice -= 1 3131522543dSMilanka Ringwald bitcount += slicecount 314c21a9c2fSMilanka Ringwald slicecount = 0 315c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 316c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 317c21a9c2fSMilanka Ringwald if (bitneed[ch][sb] > bitslice+1) and (bitneed[ch][sb] < bitslice+16): 3181522543dSMilanka Ringwald slicecount += 1 319c21a9c2fSMilanka Ringwald elif bitneed[ch][sb] == bitslice + 1: 3201522543dSMilanka Ringwald slicecount += 2 321c21a9c2fSMilanka Ringwald if bitcount + slicecount >= frame.bitpool: 322c21a9c2fSMilanka Ringwald break 323c21a9c2fSMilanka Ringwald 324c21a9c2fSMilanka Ringwald if bitcount + slicecount == frame.bitpool: 3251522543dSMilanka Ringwald bitcount += slicecount 3261522543dSMilanka Ringwald bitslice -= 1 327c21a9c2fSMilanka Ringwald 328c21a9c2fSMilanka Ringwald # bits are distributed until the last bitslice is reached 329c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 330c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 331c21a9c2fSMilanka Ringwald if bitneed[ch][sb] < bitslice+2: 332c9498b12SMilanka Ringwald bits[ch][sb]=0 333c21a9c2fSMilanka Ringwald else: 334c21a9c2fSMilanka Ringwald bits[ch][sb] = min(bitneed[ch][sb]-bitslice,16) 335c21a9c2fSMilanka Ringwald 336c21a9c2fSMilanka Ringwald ch = 0 337c21a9c2fSMilanka Ringwald sb = 0 338c21a9c2fSMilanka Ringwald while bitcount < frame.bitpool and sb < frame.nr_subbands: 339c21a9c2fSMilanka Ringwald if bits[ch][sb] >= 2 and bits[ch][sb] < 16: 3401522543dSMilanka Ringwald bits[ch][sb] += 1 3411522543dSMilanka Ringwald bitcount += 1 342c21a9c2fSMilanka Ringwald elif (bitneed[ch][sb] == bitslice+1) and (frame.bitpool > bitcount+1): 343c21a9c2fSMilanka Ringwald bits[ch][sb] = 2 344c21a9c2fSMilanka Ringwald bitcount += 2 345c21a9c2fSMilanka Ringwald if ch == 1: 346c21a9c2fSMilanka Ringwald ch = 0 3471522543dSMilanka Ringwald sb += 1 348c21a9c2fSMilanka Ringwald else: 349c21a9c2fSMilanka Ringwald ch = 1 350c21a9c2fSMilanka Ringwald 351f08a674bSMilanka Ringwald 352f08a674bSMilanka Ringwald ch = 0 353f08a674bSMilanka Ringwald sb = 0 354f08a674bSMilanka Ringwald while bitcount < frame.bitpool and sb < frame.nr_subbands: 355f08a674bSMilanka Ringwald if bits[ch][sb] < 16: 356f08a674bSMilanka Ringwald bits[ch][sb]+=1 357f08a674bSMilanka Ringwald bitcount+=1 358f08a674bSMilanka Ringwald if ch == 1: 359f08a674bSMilanka Ringwald ch = 0 360f08a674bSMilanka Ringwald sb += 1 361f08a674bSMilanka Ringwald else: 362f08a674bSMilanka Ringwald ch = 1 363f08a674bSMilanka Ringwald 364f08a674bSMilanka Ringwald if bits.sum() != frame.bitpool: 365f08a674bSMilanka Ringwald print "bit allocation failed, bitpool %d, allocated %d" % (bits.sum() , frame.bitpool) 366f08a674bSMilanka Ringwald exit(1) 367c21a9c2fSMilanka Ringwald return bits 368c21a9c2fSMilanka Ringwald 369c21a9c2fSMilanka Ringwald 370c21a9c2fSMilanka Ringwalddef sbc_bit_allocation_mono_dual(frame): 371c21a9c2fSMilanka Ringwald #print "Bit allocation for mono/dual channel" 372c21a9c2fSMilanka Ringwald bitneed = np.zeros(shape=(frame.nr_channels, frame.nr_subbands), dtype = np.int32) 373c21a9c2fSMilanka Ringwald bits = np.zeros(shape=(frame.nr_channels, frame.nr_subbands), dtype = np.int32) 374c21a9c2fSMilanka Ringwald loudness = 0 375c21a9c2fSMilanka Ringwald 376c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 377c21a9c2fSMilanka Ringwald # bitneed values are derived from the scale factors 378c21a9c2fSMilanka Ringwald if frame.allocation_method == SNR: 379c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 380c21a9c2fSMilanka Ringwald bitneed[ch][sb] = frame.scale_factor[ch][sb] 381c21a9c2fSMilanka Ringwald else: 382c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 383c21a9c2fSMilanka Ringwald if frame.scale_factor[ch][sb] == 0: 384c21a9c2fSMilanka Ringwald bitneed[ch][sb] = -5 385c21a9c2fSMilanka Ringwald else: 386c21a9c2fSMilanka Ringwald if frame.nr_subbands == 4: 387c21a9c2fSMilanka Ringwald loudness = frame.scale_factor[ch][sb] - offset4[frame.sampling_frequency][sb] 388c21a9c2fSMilanka Ringwald else: 389c21a9c2fSMilanka Ringwald loudness = frame.scale_factor[ch][sb] - offset8[frame.sampling_frequency][sb] 390c21a9c2fSMilanka Ringwald if loudness > 0: 391c21a9c2fSMilanka Ringwald bitneed[ch][sb] = loudness/2 392c21a9c2fSMilanka Ringwald else: 393c21a9c2fSMilanka Ringwald bitneed[ch][sb] = loudness 394c21a9c2fSMilanka Ringwald 395c21a9c2fSMilanka Ringwald # search the maximum bitneed index 396c21a9c2fSMilanka Ringwald max_bitneed = 0 397c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 398c21a9c2fSMilanka Ringwald if bitneed[ch][sb] > max_bitneed: 399c21a9c2fSMilanka Ringwald max_bitneed = bitneed[ch][sb] 400c21a9c2fSMilanka Ringwald 401c21a9c2fSMilanka Ringwald # calculate how many bitslices fit into the bitpool 402c21a9c2fSMilanka Ringwald bitcount = 0 403c21a9c2fSMilanka Ringwald slicecount = 0 40441a4a18dSMilanka Ringwald bitslice = max_bitneed + 1 405c21a9c2fSMilanka Ringwald 406c21a9c2fSMilanka Ringwald while True: 407c21a9c2fSMilanka Ringwald bitslice = bitslice - 1 408c21a9c2fSMilanka Ringwald bitcount = bitcount + slicecount 409c21a9c2fSMilanka Ringwald slicecount = 0 410c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 411c21a9c2fSMilanka Ringwald if (bitneed[ch][sb] > bitslice+1) and (bitneed[ch][sb] < bitslice+16): 412c21a9c2fSMilanka Ringwald slicecount = slicecount + 1 413c21a9c2fSMilanka Ringwald elif bitneed[ch][sb] == bitslice + 1: 414c21a9c2fSMilanka Ringwald slicecount = slicecount + 2 415c21a9c2fSMilanka Ringwald if bitcount + slicecount >= frame.bitpool: 416c21a9c2fSMilanka Ringwald break 417c21a9c2fSMilanka Ringwald 418c21a9c2fSMilanka Ringwald if bitcount + slicecount == frame.bitpool: 419c21a9c2fSMilanka Ringwald bitcount = bitcount + slicecount 420c21a9c2fSMilanka Ringwald bitslice = bitslice - 1 421c21a9c2fSMilanka Ringwald 422c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 423c21a9c2fSMilanka Ringwald if bitneed[ch][sb] < bitslice+2 : 424c21a9c2fSMilanka Ringwald bits[ch][sb]=0; 425c21a9c2fSMilanka Ringwald else: 426c21a9c2fSMilanka Ringwald bits[ch][sb] = min(bitneed[ch][sb]-bitslice,16) 427c21a9c2fSMilanka Ringwald 428c21a9c2fSMilanka Ringwald sb = 0 429c21a9c2fSMilanka Ringwald while bitcount < frame.bitpool and sb < frame.nr_subbands: 430c21a9c2fSMilanka Ringwald if bits[ch][sb] >= 2 and bits[ch][sb] < 16: 431c21a9c2fSMilanka Ringwald bits[ch][sb] = bits[ch][sb] + 1 432c21a9c2fSMilanka Ringwald bitcount = bitcount + 1 433c21a9c2fSMilanka Ringwald 434c21a9c2fSMilanka Ringwald elif (bitneed[ch][sb] == bitslice+1) and (frame.bitpool > bitcount+1): 435c21a9c2fSMilanka Ringwald bits[ch][sb] = 2 436c21a9c2fSMilanka Ringwald bitcount += 2 437c21a9c2fSMilanka Ringwald 438c21a9c2fSMilanka Ringwald sb = sb + 1 439c21a9c2fSMilanka Ringwald 440c21a9c2fSMilanka Ringwald sb = 0 441c21a9c2fSMilanka Ringwald while bitcount < frame.bitpool and sb < frame.nr_subbands: 442c21a9c2fSMilanka Ringwald if bits[ch][sb] < 16: 443c21a9c2fSMilanka Ringwald bits[ch][sb] = bits[ch][sb] + 1 444c21a9c2fSMilanka Ringwald bitcount = bitcount + 1 445c21a9c2fSMilanka Ringwald sb = sb + 1 446c21a9c2fSMilanka Ringwald 447c21a9c2fSMilanka Ringwald return bits 448c21a9c2fSMilanka Ringwald 449c21a9c2fSMilanka Ringwalddef sbc_bit_allocation(frame): 450c21a9c2fSMilanka Ringwald if frame.channel_mode == MONO or frame.channel_mode == DUAL_CHANNEL: 451c21a9c2fSMilanka Ringwald return sbc_bit_allocation_mono_dual(frame) 452c21a9c2fSMilanka Ringwald elif frame.channel_mode == STEREO or frame.channel_mode == JOINT_STEREO: 453c21a9c2fSMilanka Ringwald return sbc_bit_allocation_stereo_joint(frame) 454c21a9c2fSMilanka Ringwald else: 455c21a9c2fSMilanka Ringwald print "Wrong channel mode ", frame.channel_mode 456c21a9c2fSMilanka Ringwald return -1 457c21a9c2fSMilanka Ringwald 458c21a9c2fSMilanka Ringwalddef sbc_sampling_frequency_index(sample_rate): 459c21a9c2fSMilanka Ringwald sbc_sampling_frequency_index = 0 460c21a9c2fSMilanka Ringwald for i in range(len(sampling_frequency)): 461c21a9c2fSMilanka Ringwald if sample_rate == sampling_frequency[i]: 462c21a9c2fSMilanka Ringwald sbc_sampling_frequency_index = i 463c21a9c2fSMilanka Ringwald break 464c21a9c2fSMilanka Ringwald return sbc_sampling_frequency_index 465c21a9c2fSMilanka Ringwald 466c21a9c2fSMilanka Ringwald 467c21a9c2fSMilanka Ringwalddef sbc_crc8(data, data_len): 468c21a9c2fSMilanka Ringwald crc = 0x0f 469c21a9c2fSMilanka Ringwald j = 0 470c21a9c2fSMilanka Ringwald for i in range(data_len / 8): 471c21a9c2fSMilanka Ringwald crc = crc_table[crc ^ data[i]] 472c21a9c2fSMilanka Ringwald j = i + 1 473c21a9c2fSMilanka Ringwald 474c21a9c2fSMilanka Ringwald bits_left = data_len%8 475c21a9c2fSMilanka Ringwald if bits_left: 476c21a9c2fSMilanka Ringwald octet = data[j] 477c21a9c2fSMilanka Ringwald for i in range(data_len%8): 478c21a9c2fSMilanka Ringwald bit = ((octet ^ crc) & 0x80) >> 7 479c21a9c2fSMilanka Ringwald if bit: 480c21a9c2fSMilanka Ringwald bit = 0x1d 481c21a9c2fSMilanka Ringwald crc = ((crc & 0x7f) << 1) ^ bit 482c21a9c2fSMilanka Ringwald octet = octet << 1 483c21a9c2fSMilanka Ringwald return crc 484c21a9c2fSMilanka Ringwald 485c21a9c2fSMilanka Ringwald 486ad470863SMilanka Ringwaldbitstream = None 487c21a9c2fSMilanka Ringwaldbitstream_index = -1 488c21a9c2fSMilanka Ringwaldbitstream_bits_available = 0 489c21a9c2fSMilanka Ringwald 490c21a9c2fSMilanka Ringwalddef init_bitstream(): 491c21a9c2fSMilanka Ringwald global bitstream, bitstream_bits_available, bitstream_index 492c21a9c2fSMilanka Ringwald bitstream = [] 493c21a9c2fSMilanka Ringwald bitstream_index = -1 494c21a9c2fSMilanka Ringwald bitstream_bits_available = 0 495c21a9c2fSMilanka Ringwald 496c21a9c2fSMilanka Ringwalddef add_bit(bit): 497c21a9c2fSMilanka Ringwald global bitstream, bitstream_bits_available, bitstream_index 498c21a9c2fSMilanka Ringwald if bitstream_bits_available == 0: 499c21a9c2fSMilanka Ringwald bitstream.append(0) 500c21a9c2fSMilanka Ringwald bitstream_bits_available = 8 501c21a9c2fSMilanka Ringwald bitstream_index += 1 502c21a9c2fSMilanka Ringwald 503c21a9c2fSMilanka Ringwald bitstream[bitstream_index] |= bit << (bitstream_bits_available - 1) 504c21a9c2fSMilanka Ringwald bitstream_bits_available -= 1 505c21a9c2fSMilanka Ringwald 506c21a9c2fSMilanka Ringwald 507c21a9c2fSMilanka Ringwalddef add_bits(bits, len): 508c21a9c2fSMilanka Ringwald global bitstream, bitstream_bits_available 509c21a9c2fSMilanka Ringwald for i in range(len): 510c21a9c2fSMilanka Ringwald add_bit((bits >> (len-1-i)) & 1) 511c21a9c2fSMilanka Ringwald 512ad470863SMilanka Ringwaldibuffer = None 513ad470863SMilanka Ringwaldibuffer_count = 0 514ad470863SMilanka Ringwald 515ad470863SMilanka Ringwalddef get_bit(fin): 516ad470863SMilanka Ringwald global ibuffer, ibuffer_count 517ad470863SMilanka Ringwald if ibuffer_count == 0: 518ad470863SMilanka Ringwald ibuffer = ord(fin.read(1)) 519ad470863SMilanka Ringwald ibuffer_count = 8 520ad470863SMilanka Ringwald 521ad470863SMilanka Ringwald bit = (ibuffer >> 7) & 1 522ad470863SMilanka Ringwald ibuffer = ibuffer << 1 523ad470863SMilanka Ringwald ibuffer_count = ibuffer_count - 1 524ad470863SMilanka Ringwald return bit 525ad470863SMilanka Ringwald 526ad470863SMilanka Ringwalddef drop_remaining_bits(): 527ad470863SMilanka Ringwald global ibuffer_count 528f08a674bSMilanka Ringwald #print "dropping %d bits" % ibuffer_count 529ad470863SMilanka Ringwald ibuffer_count = 0 530ad470863SMilanka Ringwald 531ad470863SMilanka Ringwalddef get_bits(fin, bit_count): 532ad470863SMilanka Ringwald bits = 0 533ad470863SMilanka Ringwald for i in range(bit_count): 534ad470863SMilanka Ringwald bits = (bits << 1) | get_bit(fin) 535f08a674bSMilanka Ringwald # print "get bits: %d -> %02x" %(bit_count, bits) 536ad470863SMilanka Ringwald return bits 537ad470863SMilanka Ringwald 538c21a9c2fSMilanka Ringwald 539c21a9c2fSMilanka Ringwalddef calculate_crc(frame): 540c21a9c2fSMilanka Ringwald global bitstream, bitstream_bits_available, bitstream_index 541c21a9c2fSMilanka Ringwald init_bitstream() 542c21a9c2fSMilanka Ringwald 543c21a9c2fSMilanka Ringwald add_bits(frame.sampling_frequency, 2) 544c21a9c2fSMilanka Ringwald add_bits(frame.nr_blocks/4-1, 2) 545c21a9c2fSMilanka Ringwald add_bits(frame.channel_mode, 2) 546c21a9c2fSMilanka Ringwald add_bits(frame.allocation_method, 1) 547c21a9c2fSMilanka Ringwald add_bits(frame.nr_subbands/4-1, 1) 548c21a9c2fSMilanka Ringwald add_bits(frame.bitpool, 8) 549c21a9c2fSMilanka Ringwald if frame.channel_mode == JOINT_STEREO: 550c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 551c21a9c2fSMilanka Ringwald add_bits(frame.join[sb],1) 552c21a9c2fSMilanka Ringwald 553c21a9c2fSMilanka Ringwald for ch in range(frame.nr_channels): 554c21a9c2fSMilanka Ringwald for sb in range(frame.nr_subbands): 555c21a9c2fSMilanka Ringwald add_bits(frame.scale_factor[ch][sb], 4) 55641a4a18dSMilanka Ringwald 557c21a9c2fSMilanka Ringwald bitstream_len = (bitstream_index + 1) * 8 558c21a9c2fSMilanka Ringwald if bitstream_bits_available: 5595c9bef5bSMilanka Ringwald bitstream_len -= bitstream_bits_available 5605c9bef5bSMilanka Ringwald 561c21a9c2fSMilanka Ringwald return sbc_crc8(bitstream, bitstream_len) 562c21a9c2fSMilanka Ringwald 563c21a9c2fSMilanka Ringwald 564c21a9c2fSMilanka Ringwald 565ad470863SMilanka Ringwalddef frame_to_bitstream(frame): 566ad470863SMilanka Ringwald global bitstream, bitstream_bits_available, bitstream_index 567ad470863SMilanka Ringwald init_bitstream() 568c21a9c2fSMilanka Ringwald 569ad470863SMilanka Ringwald add_bits(frame.syncword, 8) 570ad470863SMilanka Ringwald add_bits(frame.sampling_frequency, 2) 571ad470863SMilanka Ringwald add_bits(frame.nr_blocks/4-1, 2) 572ad470863SMilanka Ringwald add_bits(frame.channel_mode, 2) 573ad470863SMilanka Ringwald add_bits(frame.allocation_method, 1) 574ad470863SMilanka Ringwald add_bits(frame.nr_subbands/4-1, 1) 575ad470863SMilanka Ringwald add_bits(frame.bitpool, 8) 576ad470863SMilanka Ringwald add_bits(frame.crc_check, 8) 577c21a9c2fSMilanka Ringwald 578ad470863SMilanka Ringwald if frame.channel_mode == JOINT_STEREO: 579ad470863SMilanka Ringwald for sb in range(frame.nr_subbands-1): 580ad470863SMilanka Ringwald add_bits(frame.join[sb],1) 581ad470863SMilanka Ringwald add_bits(0,1) 582ad470863SMilanka Ringwald 583ad470863SMilanka Ringwald for ch in range(frame.nr_channels): 584ad470863SMilanka Ringwald for sb in range(frame.nr_subbands): 585ad470863SMilanka Ringwald add_bits(frame.scale_factor[ch][sb], 4) 586ad470863SMilanka Ringwald 587ad470863SMilanka Ringwald for blk in range(frame.nr_blocks): 588ad470863SMilanka Ringwald for ch in range(frame.nr_channels): 589ad470863SMilanka Ringwald for sb in range(frame.nr_subbands): 590ad470863SMilanka Ringwald add_bits(frame.audio_sample[blk][ch][sb], frame.bits[ch][sb]) 591ad470863SMilanka Ringwald 592ad470863SMilanka Ringwald bitstream_bits_available = 0 593ad470863SMilanka Ringwald return bitstream 594ad470863SMilanka Ringwald 595ad470863SMilanka Ringwalddef mse(a,b): 596ad470863SMilanka Ringwald count = 1 597ad470863SMilanka Ringwald for i in a.shape: 598ad470863SMilanka Ringwald count *= i 599ad470863SMilanka Ringwald delta = a - b 600ad470863SMilanka Ringwald sqr = delta ** 2 601ad470863SMilanka Ringwald res = sqr.sum()*1.0/count 602ad470863SMilanka Ringwald # res = ((a - b) ** 2).mean() 603ad470863SMilanka Ringwald return res 604