libswresample API use example.
{
    int i;
    struct sample_fmt_entry {
    } sample_fmt_entries[] = {
    };
        struct sample_fmt_entry *entry = &sample_fmt_entries[i];
        if (sample_fmt == entry->sample_fmt) {
            *fmt = 
AV_NE(entry->fmt_be, entry->fmt_le);
            return 0;
        }
    }
    fprintf(stderr,
            "Sample format %s not supported as output format\n",
}
{
    int i, j;
    const double c = 2 * 
M_PI * 440.0;
 
    
    for (i = 0; i < nb_samples; i++) {
        *dstp = sin(c * *t);
            dstp[j] = dstp[0];
        *t += tincr;
    }
}
int main(
int argc, 
char **argv)
 
{
    int src_rate = 48000, dst_rate = 44100;
    int src_nb_channels = 0, dst_nb_channels = 0;
    int src_linesize, dst_linesize;
    int src_nb_samples = 1024, dst_nb_samples, max_dst_nb_samples;
    const char *dst_filename = 
NULL;
 
    FILE *dst_file;
    int dst_bufsize;
    double t;
    int ret;
    if (argc != 2) {
        fprintf(stderr, "Usage: %s output_file\n"
                "API example program to show how to resample an audio stream with libswresample.\n"
                "This program generates a series of audio frames, resamples them to a specified "
                "output format and rate and saves them to an output file named output_file.\n",
            argv[0]);
        exit(1);
    }
    dst_filename = argv[1];
    dst_file = fopen(dst_filename, "wb");
    if (!dst_file) {
        fprintf(stderr, "Could not open destination file %s\n", dst_filename);
        exit(1);
    }
    
    if (!swr_ctx) {
        fprintf(stderr, "Could not allocate resampler context\n");
    }
    
    
        fprintf(stderr, "Failed to initialize the resampling context\n");
    }
    
                                             src_nb_samples, src_sample_fmt, 0);
    if (ret < 0) {
        fprintf(stderr, "Could not allocate source samples\n");
    }
    
    max_dst_nb_samples = dst_nb_samples =
    
                                             dst_nb_samples, dst_sample_fmt, 0);
    if (ret < 0) {
        fprintf(stderr, "Could not allocate destination samples\n");
    }
    t = 0;
    do {
        
        fill_samples((
double *)src_data[0], src_nb_samples, src_nb_channels, src_rate, &t);
 
        
        if (dst_nb_samples > max_dst_nb_samples) {
                                   dst_nb_samples, dst_sample_fmt, 1);
            if (ret < 0)
                break;
            max_dst_nb_samples = dst_nb_samples;
        }
        
        ret = 
swr_convert(swr_ctx, dst_data, dst_nb_samples, (
const uint8_t **)src_data, src_nb_samples);
        if (ret < 0) {
            fprintf(stderr, "Error while converting\n");
        }
                                                 ret, dst_sample_fmt, 1);
        if (dst_bufsize < 0) {
            fprintf(stderr, "Could not get sample buffer size\n");
        }
        printf("t:%f in:%d out:%d\n", t, src_nb_samples, ret);
        fwrite(dst_data[0], 1, dst_bufsize, dst_file);
    } while (t < 10);
    fprintf(stderr, "Resampling succeeded. Play the output file with the command:\n"
            "ffplay -f %s -channel_layout %"PRId64" -channels %d -ar %d %s\n",
            fmt, dst_ch_layout, dst_nb_channels, dst_rate, dst_filename);
    fclose(dst_file);
    if (src_data)
    if (dst_data)
    return ret < 0;
}