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      1 /*
      2 **
      3 ** Copyright 2010, The Android Open Source Project
      4 **
      5 ** Licensed under the Apache License, Version 2.0 (the "License");
      6 ** you may not use this file except in compliance with the License.
      7 ** You may obtain a copy of the License at
      8 **
      9 **     http://www.apache.org/licenses/LICENSE-2.0
     10 **
     11 ** Unless required by applicable law or agreed to in writing, software
     12 ** distributed under the License is distributed on an "AS IS" BASIS,
     13 ** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     14 ** See the License for the specific language governing permissions and
     15 ** limitations under the License.
     16 */
     17 
     18 
     19 //#define LOG_NDEBUG 0
     20 #define LOG_TAG "Visualizer"
     21 #include <utils/Log.h>
     22 
     23 #include <stdint.h>
     24 #include <sys/types.h>
     25 #include <limits.h>
     26 
     27 #include <media/Visualizer.h>
     28 #include <audio_utils/fixedfft.h>
     29 #include <utils/Thread.h>
     30 
     31 namespace android {
     32 
     33 // ---------------------------------------------------------------------------
     34 
     35 Visualizer::Visualizer (const String16& opPackageName,
     36          int32_t priority,
     37          effect_callback_t cbf,
     38          void* user,
     39          audio_session_t sessionId)
     40     :   AudioEffect(SL_IID_VISUALIZATION, opPackageName, NULL, priority, cbf, user, sessionId),
     41         mCaptureRate(CAPTURE_RATE_DEF),
     42         mCaptureSize(CAPTURE_SIZE_DEF),
     43         mSampleRate(44100000),
     44         mScalingMode(VISUALIZER_SCALING_MODE_NORMALIZED),
     45         mMeasurementMode(MEASUREMENT_MODE_NONE),
     46         mCaptureCallBack(NULL),
     47         mCaptureCbkUser(NULL)
     48 {
     49     initCaptureSize();
     50 }
     51 
     52 Visualizer::~Visualizer()
     53 {
     54     ALOGV("Visualizer::~Visualizer()");
     55     setEnabled(false);
     56     setCaptureCallBack(NULL, NULL, 0, 0);
     57 }
     58 
     59 status_t Visualizer::setEnabled(bool enabled)
     60 {
     61     Mutex::Autolock _l(mCaptureLock);
     62 
     63     sp<CaptureThread> t = mCaptureThread;
     64     if (t != 0) {
     65         if (enabled) {
     66             if (t->exitPending()) {
     67                 if (t->requestExitAndWait() == WOULD_BLOCK) {
     68                     ALOGE("Visualizer::enable() called from thread");
     69                     return INVALID_OPERATION;
     70                 }
     71             }
     72         }
     73         t->mLock.lock();
     74     }
     75 
     76     status_t status = AudioEffect::setEnabled(enabled);
     77 
     78     if (t != 0) {
     79         if (enabled && status == NO_ERROR) {
     80             t->run("Visualizer");
     81         } else {
     82             t->requestExit();
     83         }
     84     }
     85 
     86     if (t != 0) {
     87         t->mLock.unlock();
     88     }
     89 
     90     return status;
     91 }
     92 
     93 status_t Visualizer::setCaptureCallBack(capture_cbk_t cbk, void* user, uint32_t flags,
     94         uint32_t rate)
     95 {
     96     if (rate > CAPTURE_RATE_MAX) {
     97         return BAD_VALUE;
     98     }
     99     Mutex::Autolock _l(mCaptureLock);
    100 
    101     if (mEnabled) {
    102         return INVALID_OPERATION;
    103     }
    104 
    105     if (mCaptureThread != 0) {
    106         mCaptureLock.unlock();
    107         mCaptureThread->requestExitAndWait();
    108         mCaptureLock.lock();
    109     }
    110 
    111     mCaptureThread.clear();
    112     mCaptureCallBack = cbk;
    113     mCaptureCbkUser = user;
    114     mCaptureFlags = flags;
    115     mCaptureRate = rate;
    116 
    117     if (cbk != NULL) {
    118         mCaptureThread = new CaptureThread(*this, rate, ((flags & CAPTURE_CALL_JAVA) != 0));
    119     }
    120     ALOGV("setCaptureCallBack() rate: %d thread %p flags 0x%08x",
    121             rate, mCaptureThread.get(), mCaptureFlags);
    122     return NO_ERROR;
    123 }
    124 
    125 status_t Visualizer::setCaptureSize(uint32_t size)
    126 {
    127     if (size > VISUALIZER_CAPTURE_SIZE_MAX ||
    128         size < VISUALIZER_CAPTURE_SIZE_MIN ||
    129         popcount(size) != 1) {
    130         return BAD_VALUE;
    131     }
    132 
    133     Mutex::Autolock _l(mCaptureLock);
    134     if (mEnabled) {
    135         return INVALID_OPERATION;
    136     }
    137 
    138     uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
    139     effect_param_t *p = (effect_param_t *)buf32;
    140 
    141     p->psize = sizeof(uint32_t);
    142     p->vsize = sizeof(uint32_t);
    143     *(int32_t *)p->data = VISUALIZER_PARAM_CAPTURE_SIZE;
    144     *((int32_t *)p->data + 1)= size;
    145     status_t status = setParameter(p);
    146 
    147     ALOGV("setCaptureSize size %d  status %d p->status %d", size, status, p->status);
    148 
    149     if (status == NO_ERROR) {
    150         status = p->status;
    151         if (status == NO_ERROR) {
    152             mCaptureSize = size;
    153         }
    154     }
    155 
    156     return status;
    157 }
    158 
    159 status_t Visualizer::setScalingMode(uint32_t mode) {
    160     if ((mode != VISUALIZER_SCALING_MODE_NORMALIZED)
    161             && (mode != VISUALIZER_SCALING_MODE_AS_PLAYED)) {
    162         return BAD_VALUE;
    163     }
    164 
    165     Mutex::Autolock _l(mCaptureLock);
    166 
    167     uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
    168     effect_param_t *p = (effect_param_t *)buf32;
    169 
    170     p->psize = sizeof(uint32_t);
    171     p->vsize = sizeof(uint32_t);
    172     *(int32_t *)p->data = VISUALIZER_PARAM_SCALING_MODE;
    173     *((int32_t *)p->data + 1)= mode;
    174     status_t status = setParameter(p);
    175 
    176     ALOGV("setScalingMode mode %d  status %d p->status %d", mode, status, p->status);
    177 
    178     if (status == NO_ERROR) {
    179         status = p->status;
    180         if (status == NO_ERROR) {
    181             mScalingMode = mode;
    182         }
    183     }
    184 
    185     return status;
    186 }
    187 
    188 status_t Visualizer::setMeasurementMode(uint32_t mode) {
    189     if ((mode != MEASUREMENT_MODE_NONE)
    190             //Note: needs to be handled as a mask when more measurement modes are added
    191             && ((mode & MEASUREMENT_MODE_PEAK_RMS) != mode)) {
    192         return BAD_VALUE;
    193     }
    194 
    195     Mutex::Autolock _l(mCaptureLock);
    196 
    197     uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
    198     effect_param_t *p = (effect_param_t *)buf32;
    199 
    200     p->psize = sizeof(uint32_t);
    201     p->vsize = sizeof(uint32_t);
    202     *(int32_t *)p->data = VISUALIZER_PARAM_MEASUREMENT_MODE;
    203     *((int32_t *)p->data + 1)= mode;
    204     status_t status = setParameter(p);
    205 
    206     ALOGV("setMeasurementMode mode %d  status %d p->status %d", mode, status, p->status);
    207 
    208     if (status == NO_ERROR) {
    209         status = p->status;
    210         if (status == NO_ERROR) {
    211             mMeasurementMode = mode;
    212         }
    213     }
    214     return status;
    215 }
    216 
    217 status_t Visualizer::getIntMeasurements(uint32_t type, uint32_t number, int32_t *measurements) {
    218     if (mMeasurementMode == MEASUREMENT_MODE_NONE) {
    219         ALOGE("Cannot retrieve int measurements, no measurement mode set");
    220         return INVALID_OPERATION;
    221     }
    222     if (!(mMeasurementMode & type)) {
    223         // measurement type has not been set on this Visualizer
    224         ALOGE("Cannot retrieve int measurements, requested measurement mode 0x%x not set(0x%x)",
    225                 type, mMeasurementMode);
    226         return INVALID_OPERATION;
    227     }
    228     // only peak+RMS measurement supported
    229     if ((type != MEASUREMENT_MODE_PEAK_RMS)
    230             // for peak+RMS measurement, the results are 2 int32_t values
    231             || (number != 2)) {
    232         ALOGE("Cannot retrieve int measurements, MEASUREMENT_MODE_PEAK_RMS returns 2 ints, not %d",
    233                         number);
    234         return BAD_VALUE;
    235     }
    236 
    237     status_t status = NO_ERROR;
    238     if (mEnabled) {
    239         uint32_t replySize = number * sizeof(int32_t);
    240         status = command(VISUALIZER_CMD_MEASURE,
    241                 sizeof(uint32_t)  /*cmdSize*/,
    242                 &type /*cmdData*/,
    243                 &replySize, measurements);
    244         ALOGV("getMeasurements() command returned %d", status);
    245         if ((status == NO_ERROR) && (replySize == 0)) {
    246             status = NOT_ENOUGH_DATA;
    247         }
    248     } else {
    249         ALOGV("getMeasurements() disabled");
    250         return INVALID_OPERATION;
    251     }
    252     return status;
    253 }
    254 
    255 status_t Visualizer::getWaveForm(uint8_t *waveform)
    256 {
    257     if (waveform == NULL) {
    258         return BAD_VALUE;
    259     }
    260     if (mCaptureSize == 0) {
    261         return NO_INIT;
    262     }
    263 
    264     status_t status = NO_ERROR;
    265     if (mEnabled) {
    266         uint32_t replySize = mCaptureSize;
    267         status = command(VISUALIZER_CMD_CAPTURE, 0, NULL, &replySize, waveform);
    268         ALOGV("getWaveForm() command returned %d", status);
    269         if ((status == NO_ERROR) && (replySize == 0)) {
    270             status = NOT_ENOUGH_DATA;
    271         }
    272     } else {
    273         ALOGV("getWaveForm() disabled");
    274         memset(waveform, 0x80, mCaptureSize);
    275     }
    276     return status;
    277 }
    278 
    279 status_t Visualizer::getFft(uint8_t *fft)
    280 {
    281     if (fft == NULL) {
    282         return BAD_VALUE;
    283     }
    284     if (mCaptureSize == 0) {
    285         return NO_INIT;
    286     }
    287 
    288     status_t status = NO_ERROR;
    289     if (mEnabled) {
    290         uint8_t buf[mCaptureSize];
    291         status = getWaveForm(buf);
    292         if (status == NO_ERROR) {
    293             status = doFft(fft, buf);
    294         }
    295     } else {
    296         memset(fft, 0, mCaptureSize);
    297     }
    298     return status;
    299 }
    300 
    301 status_t Visualizer::doFft(uint8_t *fft, uint8_t *waveform)
    302 {
    303     int32_t workspace[mCaptureSize >> 1];
    304     int32_t nonzero = 0;
    305 
    306     for (uint32_t i = 0; i < mCaptureSize; i += 2) {
    307         workspace[i >> 1] =
    308                 ((waveform[i] ^ 0x80) << 24) | ((waveform[i + 1] ^ 0x80) << 8);
    309         nonzero |= workspace[i >> 1];
    310     }
    311 
    312     if (nonzero) {
    313         fixed_fft_real(mCaptureSize >> 1, workspace);
    314     }
    315 
    316     for (uint32_t i = 0; i < mCaptureSize; i += 2) {
    317         short tmp = workspace[i >> 1] >> 21;
    318         while (tmp > 127 || tmp < -128) tmp >>= 1;
    319         fft[i] = tmp;
    320         tmp = workspace[i >> 1];
    321         tmp >>= 5;
    322         while (tmp > 127 || tmp < -128) tmp >>= 1;
    323         fft[i + 1] = tmp;
    324     }
    325 
    326     return NO_ERROR;
    327 }
    328 
    329 void Visualizer::periodicCapture()
    330 {
    331     Mutex::Autolock _l(mCaptureLock);
    332     ALOGV("periodicCapture() %p mCaptureCallBack %p mCaptureFlags 0x%08x",
    333             this, mCaptureCallBack, mCaptureFlags);
    334     if (mCaptureCallBack != NULL &&
    335         (mCaptureFlags & (CAPTURE_WAVEFORM|CAPTURE_FFT)) &&
    336         mCaptureSize != 0) {
    337         uint8_t waveform[mCaptureSize];
    338         status_t status = getWaveForm(waveform);
    339         if (status != NO_ERROR) {
    340             return;
    341         }
    342         uint8_t fft[mCaptureSize];
    343         if (mCaptureFlags & CAPTURE_FFT) {
    344             status = doFft(fft, waveform);
    345         }
    346         if (status != NO_ERROR) {
    347             return;
    348         }
    349         uint8_t *wavePtr = NULL;
    350         uint8_t *fftPtr = NULL;
    351         uint32_t waveSize = 0;
    352         uint32_t fftSize = 0;
    353         if (mCaptureFlags & CAPTURE_WAVEFORM) {
    354             wavePtr = waveform;
    355             waveSize = mCaptureSize;
    356         }
    357         if (mCaptureFlags & CAPTURE_FFT) {
    358             fftPtr = fft;
    359             fftSize = mCaptureSize;
    360         }
    361         mCaptureCallBack(mCaptureCbkUser, waveSize, wavePtr, fftSize, fftPtr, mSampleRate);
    362     }
    363 }
    364 
    365 uint32_t Visualizer::initCaptureSize()
    366 {
    367     uint32_t buf32[sizeof(effect_param_t) / sizeof(uint32_t) + 2];
    368     effect_param_t *p = (effect_param_t *)buf32;
    369 
    370     p->psize = sizeof(uint32_t);
    371     p->vsize = sizeof(uint32_t);
    372     *(int32_t *)p->data = VISUALIZER_PARAM_CAPTURE_SIZE;
    373     status_t status = getParameter(p);
    374 
    375     if (status == NO_ERROR) {
    376         status = p->status;
    377     }
    378 
    379     uint32_t size = 0;
    380     if (status == NO_ERROR) {
    381         size = *((int32_t *)p->data + 1);
    382     }
    383     mCaptureSize = size;
    384 
    385     ALOGV("initCaptureSize size %d status %d", mCaptureSize, status);
    386 
    387     return size;
    388 }
    389 
    390 void Visualizer::controlStatusChanged(bool controlGranted) {
    391     if (controlGranted) {
    392         // this Visualizer instance regained control of the effect, reset the scaling mode
    393         //   and capture size as has been cached through it.
    394         ALOGV("controlStatusChanged(true) causes effect parameter reset:");
    395         ALOGV("    scaling mode reset to %d", mScalingMode);
    396         setScalingMode(mScalingMode);
    397         ALOGV("    capture size reset to %d", mCaptureSize);
    398         setCaptureSize(mCaptureSize);
    399     }
    400     AudioEffect::controlStatusChanged(controlGranted);
    401 }
    402 
    403 //-------------------------------------------------------------------------
    404 
    405 Visualizer::CaptureThread::CaptureThread(Visualizer& receiver, uint32_t captureRate,
    406         bool bCanCallJava)
    407     : Thread(bCanCallJava), mReceiver(receiver)
    408 {
    409     mSleepTimeUs = 1000000000 / captureRate;
    410     ALOGV("CaptureThread cstor %p captureRate %d mSleepTimeUs %d", this, captureRate, mSleepTimeUs);
    411 }
    412 
    413 bool Visualizer::CaptureThread::threadLoop()
    414 {
    415     ALOGV("CaptureThread %p enter", this);
    416     while (!exitPending())
    417     {
    418         usleep(mSleepTimeUs);
    419         mReceiver.periodicCapture();
    420     }
    421     ALOGV("CaptureThread %p exiting", this);
    422     return false;
    423 }
    424 
    425 } // namespace android
    426