1e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung/*
2e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * Copyright (C) 2014 The Android Open Source Project
3e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *
4e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * Licensed under the Apache License, Version 2.0 (the "License");
5e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * you may not use this file except in compliance with the License.
6e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * You may obtain a copy of the License at
7e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *
8e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *      http://www.apache.org/licenses/LICENSE-2.0
9e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *
10e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * Unless required by applicable law or agreed to in writing, software
11e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * distributed under the License is distributed on an "AS IS" BASIS,
12e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * See the License for the specific language governing permissions and
14e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * limitations under the License.
15e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung */
16e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
17e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <stdio.h>
18e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <inttypes.h>
19e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <math.h>
20e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <vector>
21e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <audio_utils/primitives.h>
22e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <audio_utils/sndfile.h>
23e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include <media/AudioBufferProvider.h>
24e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include "AudioMixer.h"
25e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung#include "test_utils.h"
26e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
27e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung/* Testing is typically through creation of an output WAV file from several
28e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * source inputs, to be later analyzed by an audio program such as Audacity.
29e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *
30e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * Sine or chirp functions are typically more useful as input to the mixer
31e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * as they show up as straight lines on a spectrogram if successfully mixed.
32e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung *
33e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung * A sample shell script is provided: mixer_to_wave_tests.sh
34e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung */
35e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
36e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hungusing namespace android;
37e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
38e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hungstatic void usage(const char* name) {
39e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung    fprintf(stderr, "Usage: %s [-f] [-m] [-c channels]"
40e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    " [-s sample-rate] [-o <output-file>] [-a <aux-buffer-file>] [-P csv]"
41e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    " (<input-file> | <command>)+\n", name);
42e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -f    enable floating point input track\n");
43e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -m    enable floating point mixer output\n");
44e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung    fprintf(stderr, "    -c    number of mixer output channels\n");
45e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -s    mixer sample-rate\n");
46e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -o    <output-file> WAV file, pcm16 (or float if -m specified)\n");
47e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -a    <aux-buffer-file>\n");
48e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    -P    # frames provided per call to resample() in CSV format\n");
49e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    <input-file> is a WAV file\n");
50e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "    <command> can be 'sine:<channels>,<frequency>,<samplerate>'\n");
51e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    fprintf(stderr, "                     'chirp:<channels>,<samplerate>'\n");
52e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung}
53e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
54e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hungstatic int writeFile(const char *filename, const void *buffer,
55e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        uint32_t sampleRate, uint32_t channels, size_t frames, bool isBufferFloat) {
56e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (filename == NULL) {
57e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        return 0; // ok to pass in NULL filename
58e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
59e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // write output to file.
60e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    SF_INFO info;
61e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    info.frames = 0;
62e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    info.samplerate = sampleRate;
63e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    info.channels = channels;
64e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    info.format = SF_FORMAT_WAV | (isBufferFloat ? SF_FORMAT_FLOAT : SF_FORMAT_PCM_16);
65a4daf0b4f934b800a49f199fb8c09409391c8fc0Glenn Kasten    printf("saving file:%s  channels:%u  samplerate:%u  frames:%zu\n",
66e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            filename, info.channels, info.samplerate, frames);
67e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    SNDFILE *sf = sf_open(filename, SFM_WRITE, &info);
68e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (sf == NULL) {
69e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        perror(filename);
70e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        return EXIT_FAILURE;
71e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
72e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (isBufferFloat) {
73e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        (void) sf_writef_float(sf, (float*)buffer, frames);
74e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    } else {
75e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        (void) sf_writef_short(sf, (short*)buffer, frames);
76e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
77e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    sf_close(sf);
78e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    return EXIT_SUCCESS;
79e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung}
80e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
81e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hungint main(int argc, char* argv[]) {
82e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const char* const progname = argv[0];
83e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    bool useInputFloat = false;
84e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    bool useMixerFloat = false;
85e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    bool useRamp = true;
86e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    uint32_t outputSampleRate = 48000;
87e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    uint32_t outputChannels = 2; // stereo for now
88e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    std::vector<int> Pvalues;
89e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const char* outputFilename = NULL;
90e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const char* auxFilename = NULL;
91e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    std::vector<int32_t> Names;
92e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    std::vector<SignalProvider> Providers;
93e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
94e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung    for (int ch; (ch = getopt(argc, argv, "fmc:s:o:a:P:")) != -1;) {
95e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        switch (ch) {
96e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 'f':
97e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            useInputFloat = true;
98e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
99e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 'm':
100e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            useMixerFloat = true;
101e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
102e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung        case 'c':
103e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung            outputChannels = atoi(optarg);
104e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung            break;
105e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 's':
106e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            outputSampleRate = atoi(optarg);
107e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
108e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 'o':
109e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            outputFilename = optarg;
110e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
111e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 'a':
112e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            auxFilename = optarg;
113e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
114e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case 'P':
115e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            if (parseCSV(optarg, Pvalues) < 0) {
116e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                fprintf(stderr, "incorrect syntax for -P option\n");
117e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                return EXIT_FAILURE;
118e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            }
119e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            break;
120e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        case '?':
121e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        default:
122e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            usage(progname);
123e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            return EXIT_FAILURE;
124e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
125e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
126e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    argc -= optind;
127e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    argv += optind;
128e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
129e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (argc == 0) {
130e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        usage(progname);
131e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        return EXIT_FAILURE;
132e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
133e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if ((unsigned)argc > AudioMixer::MAX_NUM_TRACKS) {
134e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        fprintf(stderr, "too many tracks: %d > %u", argc, AudioMixer::MAX_NUM_TRACKS);
135e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        return EXIT_FAILURE;
136e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
137e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
138e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    size_t outputFrames = 0;
139e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
140e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // create providers for each track
141e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    Providers.resize(argc);
142e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    for (int i = 0; i < argc; ++i) {
143e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        static const char chirp[] = "chirp:";
144e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        static const char sine[] = "sine:";
145e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        static const double kSeconds = 1;
146e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
147e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        if (!strncmp(argv[i], chirp, strlen(chirp))) {
148e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            std::vector<int> v;
149e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
150e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            parseCSV(argv[i] + strlen(chirp), v);
151e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            if (v.size() == 2) {
152e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                printf("creating chirp(%d %d)\n", v[0], v[1]);
153e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                if (useInputFloat) {
154e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    Providers[i].setChirp<float>(v[0], 0, v[1]/2, v[1], kSeconds);
155e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                } else {
156e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    Providers[i].setChirp<int16_t>(v[0], 0, v[1]/2, v[1], kSeconds);
157e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                }
158e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                Providers[i].setIncr(Pvalues);
159e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            } else {
160e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                fprintf(stderr, "malformed input '%s'\n", argv[i]);
161e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            }
162e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        } else if (!strncmp(argv[i], sine, strlen(sine))) {
163e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            std::vector<int> v;
164e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
165e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            parseCSV(argv[i] + strlen(sine), v);
166e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            if (v.size() == 3) {
167e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                printf("creating sine(%d %d %d)\n", v[0], v[1], v[2]);
168e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                if (useInputFloat) {
169e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    Providers[i].setSine<float>(v[0], v[1], v[2], kSeconds);
170e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                } else {
171e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    Providers[i].setSine<int16_t>(v[0], v[1], v[2], kSeconds);
172e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                }
173e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                Providers[i].setIncr(Pvalues);
174e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            } else {
175e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                fprintf(stderr, "malformed input '%s'\n", argv[i]);
176e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            }
177e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        } else {
178e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            printf("creating filename(%s)\n", argv[i]);
179e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            if (useInputFloat) {
180e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                Providers[i].setFile<float>(argv[i]);
181e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            } else {
182e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                Providers[i].setFile<short>(argv[i]);
183e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            }
184e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            Providers[i].setIncr(Pvalues);
185e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
186e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        // calculate the number of output frames
187e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        size_t nframes = (int64_t) Providers[i].getNumFrames() * outputSampleRate
188e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                / Providers[i].getSampleRate();
189e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        if (i == 0 || outputFrames > nframes) { // choose minimum for outputFrames
190e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            outputFrames = nframes;
191e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
192e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
193e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
194e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // create the output buffer.
195e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const size_t outputFrameSize = outputChannels
196e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            * (useMixerFloat ? sizeof(float) : sizeof(int16_t));
197e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const size_t outputSize = outputFrames * outputFrameSize;
198e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung    const audio_channel_mask_t outputChannelMask =
199e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung            audio_channel_out_mask_from_count(outputChannels);
200e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    void *outputAddr = NULL;
201e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    (void) posix_memalign(&outputAddr, 32, outputSize);
202e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    memset(outputAddr, 0, outputSize);
203e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
204e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // create the aux buffer, if needed.
205e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const size_t auxFrameSize = sizeof(int32_t); // Q4.27 always
206e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const size_t auxSize = outputFrames * auxFrameSize;
207e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    void *auxAddr = NULL;
208e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (auxFilename) {
209e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        (void) posix_memalign(&auxAddr, 32, auxSize);
210e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        memset(auxAddr, 0, auxSize);
211e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
212e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
213e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // create the mixer.
214e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    const size_t mixerFrameCount = 320; // typical numbers may range from 240 or 960
215e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    AudioMixer *mixer = new AudioMixer(mixerFrameCount, outputSampleRate);
216e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    audio_format_t inputFormat = useInputFloat
217e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            ? AUDIO_FORMAT_PCM_FLOAT : AUDIO_FORMAT_PCM_16_BIT;
218e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    audio_format_t mixerFormat = useMixerFloat
219e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            ? AUDIO_FORMAT_PCM_FLOAT : AUDIO_FORMAT_PCM_16_BIT;
220e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    float f = AudioMixer::UNITY_GAIN_FLOAT / Providers.size(); // normalize volume by # tracks
221e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    static float f0; // zero
222e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
223e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // set up the tracks.
224e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    for (size_t i = 0; i < Providers.size(); ++i) {
225e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        //printf("track %d out of %d\n", i, Providers.size());
226e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        uint32_t channelMask = audio_channel_out_mask_from_count(Providers[i].getNumChannels());
227e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        int32_t name = mixer->getTrackName(channelMask,
228e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                inputFormat, AUDIO_SESSION_OUTPUT_MIX);
229e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        ALOG_ASSERT(name >= 0);
230e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        Names.push_back(name);
231e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->setBufferProvider(name, &Providers[i]);
232e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->setParameter(name, AudioMixer::TRACK, AudioMixer::MAIN_BUFFER,
233e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                (void *)outputAddr);
234e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->setParameter(
235e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                name,
236e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                AudioMixer::TRACK,
237e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::MIXER_FORMAT,
238e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                (void *)(uintptr_t)mixerFormat);
239e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung        mixer->setParameter(
240e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                name,
241e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::TRACK,
242e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::FORMAT,
243e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                (void *)(uintptr_t)inputFormat);
244e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->setParameter(
245e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                name,
246e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::TRACK,
247e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::MIXER_CHANNEL_MASK,
248e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                (void *)(uintptr_t)outputChannelMask);
249e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung        mixer->setParameter(
250e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                name,
251e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::TRACK,
252e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                AudioMixer::CHANNEL_MASK,
253e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                (void *)(uintptr_t)channelMask);
254e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung        mixer->setParameter(
255e93b6b7347a7846c8fd746542364ec11b0cd5124Andy Hung                name,
256e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                AudioMixer::RESAMPLE,
257e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                AudioMixer::SAMPLE_RATE,
258e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                (void *)(uintptr_t)Providers[i].getSampleRate());
259e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        if (useRamp) {
260e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::VOLUME, AudioMixer::VOLUME0, &f0);
261e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::VOLUME, AudioMixer::VOLUME1, &f0);
262e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::RAMP_VOLUME, AudioMixer::VOLUME0, &f);
263e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::RAMP_VOLUME, AudioMixer::VOLUME1, &f);
264e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        } else {
265e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::VOLUME, AudioMixer::VOLUME0, &f);
266e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::VOLUME, AudioMixer::VOLUME1, &f);
267e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
268e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        if (auxFilename) {
269e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::TRACK, AudioMixer::AUX_BUFFER,
270e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    (void *) auxAddr);
271e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::VOLUME, AudioMixer::AUXLEVEL, &f0);
272e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(name, AudioMixer::RAMP_VOLUME, AudioMixer::AUXLEVEL, &f);
273e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
274e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->enable(name);
275e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
276e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
277e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // pump the mixer to process data.
278e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    size_t i;
279e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    for (i = 0; i < outputFrames - mixerFrameCount; i += mixerFrameCount) {
280e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        for (size_t j = 0; j < Names.size(); ++j) {
281e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            mixer->setParameter(Names[j], AudioMixer::TRACK, AudioMixer::MAIN_BUFFER,
282e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                    (char *) outputAddr + i * outputFrameSize);
283e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            if (auxFilename) {
284e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                mixer->setParameter(Names[j], AudioMixer::TRACK, AudioMixer::AUX_BUFFER,
285e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung                        (char *) auxAddr + i * auxFrameSize);
286e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            }
287e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        }
288e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        mixer->process(AudioBufferProvider::kInvalidPTS);
289e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
290e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    outputFrames = i; // reset output frames to the data actually produced.
291e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
292e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    // write to files
293e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    writeFile(outputFilename, outputAddr,
294e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung            outputSampleRate, outputChannels, outputFrames, useMixerFloat);
295e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    if (auxFilename) {
296e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        // Aux buffer is always in q4_27 format for now.
297e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        // memcpy_to_i16_from_q4_27(), but with stereo frame count (not sample count)
298e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        ditherAndClamp((int32_t*)auxAddr, (int32_t*)auxAddr, outputFrames >> 1);
299e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung        writeFile(auxFilename, auxAddr, outputSampleRate, 1, outputFrames, false);
300e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    }
301e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung
302e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    delete mixer;
303e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    free(outputAddr);
304e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    free(auxAddr);
305e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung    return EXIT_SUCCESS;
306e4fc42359cdd9786e521054a3a0491d6bc3a9e1cAndy Hung}
307