| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210 | 
							- /* Copyright (c) 2007-2008 CSIRO
 
-    Copyright (c) 2007-2009 Xiph.Org Foundation
 
-    Written by Jean-Marc Valin */
 
- /*
 
-    Redistribution and use in source and binary forms, with or without
 
-    modification, are permitted provided that the following conditions
 
-    are met:
 
-    - Redistributions of source code must retain the above copyright
 
-    notice, this list of conditions and the following disclaimer.
 
-    - Redistributions in binary form must reproduce the above copyright
 
-    notice, this list of conditions and the following disclaimer in the
 
-    documentation and/or other materials provided with the distribution.
 
-    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
 
-    ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
 
-    LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
 
-    A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER
 
-    OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
 
-    EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
 
-    PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
 
-    PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
 
-    LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
 
-    NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
 
-    SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
 
- */
 
- #ifdef HAVE_CONFIG_H
 
- #include "config.h"
 
- #endif
 
- #include "opus_custom.h"
 
- #include "arch.h"
 
- #include <stdio.h>
 
- #include <stdlib.h>
 
- #include <math.h>
 
- #include <string.h>
 
- #define MAX_PACKET 1275
 
- int main(int argc, char *argv[])
 
- {
 
-    int err;
 
-    char *inFile, *outFile;
 
-    FILE *fin, *fout;
 
-    OpusCustomMode *mode=NULL;
 
-    OpusCustomEncoder *enc;
 
-    OpusCustomDecoder *dec;
 
-    int len;
 
-    opus_int32 frame_size, channels, rate;
 
-    int bytes_per_packet;
 
-    unsigned char data[MAX_PACKET];
 
-    int complexity;
 
- #if !(defined (FIXED_POINT) && !defined(CUSTOM_MODES)) && defined(RESYNTH)
 
-    int i;
 
-    double rmsd = 0;
 
- #endif
 
-    int count = 0;
 
-    opus_int32 skip;
 
-    opus_int16 *in, *out;
 
-    if (argc != 9 && argc != 8 && argc != 7)
 
-    {
 
-       fprintf (stderr, "Usage: test_opus_custom <rate> <channels> <frame size> "
 
-                " <bytes per packet> [<complexity> [packet loss rate]] "
 
-                "<input> <output>\n");
 
-       return 1;
 
-    }
 
-    rate = (opus_int32)atol(argv[1]);
 
-    channels = atoi(argv[2]);
 
-    frame_size = atoi(argv[3]);
 
-    mode = opus_custom_mode_create(rate, frame_size, NULL);
 
-    if (mode == NULL)
 
-    {
 
-       fprintf(stderr, "failed to create a mode\n");
 
-       return 1;
 
-    }
 
-    bytes_per_packet = atoi(argv[4]);
 
-    if (bytes_per_packet < 0 || bytes_per_packet > MAX_PACKET)
 
-    {
 
-       fprintf (stderr, "bytes per packet must be between 0 and %d\n",
 
-                         MAX_PACKET);
 
-       return 1;
 
-    }
 
-    inFile = argv[argc-2];
 
-    fin = fopen(inFile, "rb");
 
-    if (!fin)
 
-    {
 
-       fprintf (stderr, "Could not open input file %s\n", argv[argc-2]);
 
-       return 1;
 
-    }
 
-    outFile = argv[argc-1];
 
-    fout = fopen(outFile, "wb+");
 
-    if (!fout)
 
-    {
 
-       fprintf (stderr, "Could not open output file %s\n", argv[argc-1]);
 
-       fclose(fin);
 
-       return 1;
 
-    }
 
-    enc = opus_custom_encoder_create(mode, channels, &err);
 
-    if (err != 0)
 
-    {
 
-       fprintf(stderr, "Failed to create the encoder: %s\n", opus_strerror(err));
 
-       fclose(fin);
 
-       fclose(fout);
 
-       return 1;
 
-    }
 
-    dec = opus_custom_decoder_create(mode, channels, &err);
 
-    if (err != 0)
 
-    {
 
-       fprintf(stderr, "Failed to create the decoder: %s\n", opus_strerror(err));
 
-       fclose(fin);
 
-       fclose(fout);
 
-       return 1;
 
-    }
 
-    opus_custom_decoder_ctl(dec, OPUS_GET_LOOKAHEAD(&skip));
 
-    if (argc>7)
 
-    {
 
-       complexity=atoi(argv[5]);
 
-       opus_custom_encoder_ctl(enc,OPUS_SET_COMPLEXITY(complexity));
 
-    }
 
-    in = (opus_int16*)malloc(frame_size*channels*sizeof(opus_int16));
 
-    out = (opus_int16*)malloc(frame_size*channels*sizeof(opus_int16));
 
-    while (!feof(fin))
 
-    {
 
-       int ret;
 
-       err = fread(in, sizeof(short), frame_size*channels, fin);
 
-       if (feof(fin))
 
-          break;
 
-       len = opus_custom_encode(enc, in, frame_size, data, bytes_per_packet);
 
-       if (len <= 0)
 
-          fprintf (stderr, "opus_custom_encode() failed: %s\n", opus_strerror(len));
 
-       /* This is for simulating bit errors */
 
- #if 0
 
-       int errors = 0;
 
-       int eid = 0;
 
-       /* This simulates random bit error */
 
-       for (i=0;i<len*8;i++)
 
-       {
 
-          if (rand()%atoi(argv[8])==0)
 
-          {
 
-             if (i<64)
 
-             {
 
-                errors++;
 
-                eid = i;
 
-             }
 
-             data[i/8] ^= 1<<(7-(i%8));
 
-          }
 
-       }
 
-       if (errors == 1)
 
-          data[eid/8] ^= 1<<(7-(eid%8));
 
-       else if (errors%2 == 1)
 
-          data[rand()%8] ^= 1<<rand()%8;
 
- #endif
 
- #if 1 /* Set to zero to use the encoder's output instead */
 
-       /* This is to simulate packet loss */
 
-       if (argc==9 && rand()%1000<atoi(argv[argc-3]))
 
-       /*if (errors && (errors%2==0))*/
 
-          ret = opus_custom_decode(dec, NULL, len, out, frame_size);
 
-       else
 
-          ret = opus_custom_decode(dec, data, len, out, frame_size);
 
-       if (ret < 0)
 
-          fprintf(stderr, "opus_custom_decode() failed: %s\n", opus_strerror(ret));
 
- #else
 
-       for (i=0;i<ret*channels;i++)
 
-          out[i] = in[i];
 
- #endif
 
- #if !(defined (FIXED_POINT) && !defined(CUSTOM_MODES)) && defined(RESYNTH)
 
-       for (i=0;i<ret*channels;i++)
 
-       {
 
-          rmsd += (in[i]-out[i])*1.0*(in[i]-out[i]);
 
-          /*out[i] -= in[i];*/
 
-       }
 
- #endif
 
-       count++;
 
-       fwrite(out+skip*channels, sizeof(short), (ret-skip)*channels, fout);
 
-       skip = 0;
 
-    }
 
-    PRINT_MIPS(stderr);
 
-    opus_custom_encoder_destroy(enc);
 
-    opus_custom_decoder_destroy(dec);
 
-    fclose(fin);
 
-    fclose(fout);
 
-    opus_custom_mode_destroy(mode);
 
-    free(in);
 
-    free(out);
 
- #if !(defined (FIXED_POINT) && !defined(CUSTOM_MODES)) && defined(RESYNTH)
 
-    if (rmsd > 0)
 
-    {
 
-       rmsd = sqrt(rmsd/(1.0*frame_size*channels*count));
 
-       fprintf (stderr, "Error: encoder doesn't match decoder\n");
 
-       fprintf (stderr, "RMS mismatch is %f\n", rmsd);
 
-       return 1;
 
-    } else {
 
-       fprintf (stderr, "Encoder matches decoder!!\n");
 
-    }
 
- #endif
 
-    return 0;
 
- }
 
 
  |