OMXCodec.cpp revision f89a87ab3708e75c406b2abcb7e69dc1b076868a
1/*
2 * Copyright (C) 2009 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 *      http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17//#define LOG_NDEBUG 0
18#define LOG_TAG "OMXCodec"
19#include <utils/Log.h>
20
21#include "include/AACEncoder.h"
22
23#include "include/ESDS.h"
24
25#include <binder/IServiceManager.h>
26#include <binder/MemoryDealer.h>
27#include <binder/ProcessState.h>
28#include <HardwareAPI.h>
29#include <media/stagefright/foundation/ADebug.h>
30#include <media/IMediaPlayerService.h>
31#include <media/stagefright/MediaBuffer.h>
32#include <media/stagefright/MediaBufferGroup.h>
33#include <media/stagefright/MediaDefs.h>
34#include <media/stagefright/MediaCodecList.h>
35#include <media/stagefright/MediaExtractor.h>
36#include <media/stagefright/MetaData.h>
37#include <media/stagefright/OMXCodec.h>
38#include <media/stagefright/Utils.h>
39#include <media/stagefright/SkipCutBuffer.h>
40#include <utils/Vector.h>
41
42#include <OMX_Audio.h>
43#include <OMX_Component.h>
44
45#include "include/avc_utils.h"
46
47namespace android {
48
49// Treat time out as an error if we have not received any output
50// buffers after 3 seconds.
51const static int64_t kBufferFilledEventTimeOutNs = 3000000000LL;
52
53// OMX Spec defines less than 50 color formats. If the query for
54// color format is executed for more than kMaxColorFormatSupported,
55// the query will fail to avoid looping forever.
56// 1000 is more than enough for us to tell whether the omx
57// component in question is buggy or not.
58const static uint32_t kMaxColorFormatSupported = 1000;
59
60#define FACTORY_CREATE_ENCODER(name) \
61static sp<MediaSource> Make##name(const sp<MediaSource> &source, const sp<MetaData> &meta) { \
62    return new name(source, meta); \
63}
64
65#define FACTORY_REF(name) { #name, Make##name },
66
67FACTORY_CREATE_ENCODER(AACEncoder)
68
69static sp<MediaSource> InstantiateSoftwareEncoder(
70        const char *name, const sp<MediaSource> &source,
71        const sp<MetaData> &meta) {
72    struct FactoryInfo {
73        const char *name;
74        sp<MediaSource> (*CreateFunc)(const sp<MediaSource> &, const sp<MetaData> &);
75    };
76
77    static const FactoryInfo kFactoryInfo[] = {
78        FACTORY_REF(AACEncoder)
79    };
80    for (size_t i = 0;
81         i < sizeof(kFactoryInfo) / sizeof(kFactoryInfo[0]); ++i) {
82        if (!strcmp(name, kFactoryInfo[i].name)) {
83            return (*kFactoryInfo[i].CreateFunc)(source, meta);
84        }
85    }
86
87    return NULL;
88}
89
90#undef FACTORY_CREATE_ENCODER
91#undef FACTORY_REF
92
93#define CODEC_LOGI(x, ...) ALOGI("[%s] "x, mComponentName, ##__VA_ARGS__)
94#define CODEC_LOGV(x, ...) ALOGV("[%s] "x, mComponentName, ##__VA_ARGS__)
95#define CODEC_LOGE(x, ...) ALOGE("[%s] "x, mComponentName, ##__VA_ARGS__)
96
97struct OMXCodecObserver : public BnOMXObserver {
98    OMXCodecObserver() {
99    }
100
101    void setCodec(const sp<OMXCodec> &target) {
102        mTarget = target;
103    }
104
105    // from IOMXObserver
106    virtual void onMessage(const omx_message &msg) {
107        sp<OMXCodec> codec = mTarget.promote();
108
109        if (codec.get() != NULL) {
110            Mutex::Autolock autoLock(codec->mLock);
111            codec->on_message(msg);
112            codec.clear();
113        }
114    }
115
116protected:
117    virtual ~OMXCodecObserver() {}
118
119private:
120    wp<OMXCodec> mTarget;
121
122    OMXCodecObserver(const OMXCodecObserver &);
123    OMXCodecObserver &operator=(const OMXCodecObserver &);
124};
125
126template<class T>
127static void InitOMXParams(T *params) {
128    params->nSize = sizeof(T);
129    params->nVersion.s.nVersionMajor = 1;
130    params->nVersion.s.nVersionMinor = 0;
131    params->nVersion.s.nRevision = 0;
132    params->nVersion.s.nStep = 0;
133}
134
135static bool IsSoftwareCodec(const char *componentName) {
136    if (!strncmp("OMX.google.", componentName, 11)) {
137        return true;
138    }
139
140    if (!strncmp("OMX.", componentName, 4)) {
141        return false;
142    }
143
144    return true;
145}
146
147// A sort order in which OMX software codecs are first, followed
148// by other (non-OMX) software codecs, followed by everything else.
149static int CompareSoftwareCodecsFirst(
150        const String8 *elem1, const String8 *elem2) {
151    bool isOMX1 = !strncmp(elem1->string(), "OMX.", 4);
152    bool isOMX2 = !strncmp(elem2->string(), "OMX.", 4);
153
154    bool isSoftwareCodec1 = IsSoftwareCodec(elem1->string());
155    bool isSoftwareCodec2 = IsSoftwareCodec(elem2->string());
156
157    if (isSoftwareCodec1) {
158        if (!isSoftwareCodec2) { return -1; }
159
160        if (isOMX1) {
161            if (isOMX2) { return 0; }
162
163            return -1;
164        } else {
165            if (isOMX2) { return 0; }
166
167            return 1;
168        }
169
170        return -1;
171    }
172
173    if (isSoftwareCodec2) {
174        return 1;
175    }
176
177    return 0;
178}
179
180// static
181void OMXCodec::findMatchingCodecs(
182        const char *mime,
183        bool createEncoder, const char *matchComponentName,
184        uint32_t flags,
185        Vector<String8> *matchingCodecs,
186        Vector<uint32_t> *matchingCodecQuirks) {
187    matchingCodecs->clear();
188
189    if (matchingCodecQuirks) {
190        matchingCodecQuirks->clear();
191    }
192
193    const MediaCodecList *list = MediaCodecList::getInstance();
194    if (list == NULL) {
195        return;
196    }
197
198    size_t index = 0;
199    for (;;) {
200        ssize_t matchIndex =
201            list->findCodecByType(mime, createEncoder, index);
202
203        if (matchIndex < 0) {
204            break;
205        }
206
207        index = matchIndex + 1;
208
209        const char *componentName = list->getCodecName(matchIndex);
210
211        // If a specific codec is requested, skip the non-matching ones.
212        if (matchComponentName && strcmp(componentName, matchComponentName)) {
213            continue;
214        }
215
216        // When requesting software-only codecs, only push software codecs
217        // When requesting hardware-only codecs, only push hardware codecs
218        // When there is request neither for software-only nor for
219        // hardware-only codecs, push all codecs
220        if (((flags & kSoftwareCodecsOnly) &&   IsSoftwareCodec(componentName)) ||
221            ((flags & kHardwareCodecsOnly) &&  !IsSoftwareCodec(componentName)) ||
222            (!(flags & (kSoftwareCodecsOnly | kHardwareCodecsOnly)))) {
223
224            matchingCodecs->push(String8(componentName));
225
226            if (matchingCodecQuirks) {
227                matchingCodecQuirks->push(getComponentQuirks(list, matchIndex));
228            }
229        }
230    }
231
232    if (flags & kPreferSoftwareCodecs) {
233        matchingCodecs->sort(CompareSoftwareCodecsFirst);
234    }
235}
236
237// static
238uint32_t OMXCodec::getComponentQuirks(
239        const MediaCodecList *list, size_t index) {
240    uint32_t quirks = 0;
241    if (list->codecHasQuirk(
242                index, "requires-allocate-on-input-ports")) {
243        quirks |= kRequiresAllocateBufferOnInputPorts;
244    }
245    if (list->codecHasQuirk(
246                index, "requires-allocate-on-output-ports")) {
247        quirks |= kRequiresAllocateBufferOnOutputPorts;
248    }
249    if (list->codecHasQuirk(
250                index, "output-buffers-are-unreadable")) {
251        quirks |= kOutputBuffersAreUnreadable;
252    }
253
254    return quirks;
255}
256
257// static
258bool OMXCodec::findCodecQuirks(const char *componentName, uint32_t *quirks) {
259    const MediaCodecList *list = MediaCodecList::getInstance();
260
261    if (list == NULL) {
262        return false;
263    }
264
265    ssize_t index = list->findCodecByName(componentName);
266
267    if (index < 0) {
268        return false;
269    }
270
271    *quirks = getComponentQuirks(list, index);
272
273    return true;
274}
275
276// static
277sp<MediaSource> OMXCodec::Create(
278        const sp<IOMX> &omx,
279        const sp<MetaData> &meta, bool createEncoder,
280        const sp<MediaSource> &source,
281        const char *matchComponentName,
282        uint32_t flags,
283        const sp<ANativeWindow> &nativeWindow) {
284    int32_t requiresSecureBuffers;
285    if (source->getFormat()->findInt32(
286                kKeyRequiresSecureBuffers,
287                &requiresSecureBuffers)
288            && requiresSecureBuffers) {
289        flags |= kIgnoreCodecSpecificData;
290        flags |= kUseSecureInputBuffers;
291    }
292
293    const char *mime;
294    bool success = meta->findCString(kKeyMIMEType, &mime);
295    CHECK(success);
296
297    Vector<String8> matchingCodecs;
298    Vector<uint32_t> matchingCodecQuirks;
299    findMatchingCodecs(
300            mime, createEncoder, matchComponentName, flags,
301            &matchingCodecs, &matchingCodecQuirks);
302
303    if (matchingCodecs.isEmpty()) {
304        return NULL;
305    }
306
307    sp<OMXCodecObserver> observer = new OMXCodecObserver;
308    IOMX::node_id node = 0;
309
310    for (size_t i = 0; i < matchingCodecs.size(); ++i) {
311        const char *componentNameBase = matchingCodecs[i].string();
312        uint32_t quirks = matchingCodecQuirks[i];
313        const char *componentName = componentNameBase;
314
315        AString tmp;
316        if (flags & kUseSecureInputBuffers) {
317            tmp = componentNameBase;
318            tmp.append(".secure");
319
320            componentName = tmp.c_str();
321        }
322
323        if (createEncoder) {
324            sp<MediaSource> softwareCodec =
325                InstantiateSoftwareEncoder(componentName, source, meta);
326
327            if (softwareCodec != NULL) {
328                ALOGV("Successfully allocated software codec '%s'", componentName);
329
330                return softwareCodec;
331            }
332        }
333
334        ALOGV("Attempting to allocate OMX node '%s'", componentName);
335
336        if (!createEncoder
337                && (quirks & kOutputBuffersAreUnreadable)
338                && (flags & kClientNeedsFramebuffer)) {
339            if (strncmp(componentName, "OMX.SEC.", 8)) {
340                // For OMX.SEC.* decoders we can enable a special mode that
341                // gives the client access to the framebuffer contents.
342
343                ALOGW("Component '%s' does not give the client access to "
344                     "the framebuffer contents. Skipping.",
345                     componentName);
346
347                continue;
348            }
349        }
350
351        status_t err = omx->allocateNode(componentName, observer, &node);
352        if (err == OK) {
353            ALOGV("Successfully allocated OMX node '%s'", componentName);
354
355            sp<OMXCodec> codec = new OMXCodec(
356                    omx, node, quirks, flags,
357                    createEncoder, mime, componentName,
358                    source, nativeWindow);
359
360            observer->setCodec(codec);
361
362            err = codec->configureCodec(meta);
363
364            if (err == OK) {
365                if (!strcmp("OMX.Nvidia.mpeg2v.decode", componentName)) {
366                    codec->mFlags |= kOnlySubmitOneInputBufferAtOneTime;
367                }
368
369                return codec;
370            }
371
372            ALOGV("Failed to configure codec '%s'", componentName);
373        }
374    }
375
376    return NULL;
377}
378
379status_t OMXCodec::parseAVCCodecSpecificData(
380        const void *data, size_t size,
381        unsigned *profile, unsigned *level) {
382    const uint8_t *ptr = (const uint8_t *)data;
383
384    // verify minimum size and configurationVersion == 1.
385    if (size < 7 || ptr[0] != 1) {
386        return ERROR_MALFORMED;
387    }
388
389    *profile = ptr[1];
390    *level = ptr[3];
391
392    // There is decodable content out there that fails the following
393    // assertion, let's be lenient for now...
394    // CHECK((ptr[4] >> 2) == 0x3f);  // reserved
395
396    size_t lengthSize = 1 + (ptr[4] & 3);
397
398    // commented out check below as H264_QVGA_500_NO_AUDIO.3gp
399    // violates it...
400    // CHECK((ptr[5] >> 5) == 7);  // reserved
401
402    size_t numSeqParameterSets = ptr[5] & 31;
403
404    ptr += 6;
405    size -= 6;
406
407    for (size_t i = 0; i < numSeqParameterSets; ++i) {
408        if (size < 2) {
409            return ERROR_MALFORMED;
410        }
411
412        size_t length = U16_AT(ptr);
413
414        ptr += 2;
415        size -= 2;
416
417        if (size < length) {
418            return ERROR_MALFORMED;
419        }
420
421        addCodecSpecificData(ptr, length);
422
423        ptr += length;
424        size -= length;
425    }
426
427    if (size < 1) {
428        return ERROR_MALFORMED;
429    }
430
431    size_t numPictureParameterSets = *ptr;
432    ++ptr;
433    --size;
434
435    for (size_t i = 0; i < numPictureParameterSets; ++i) {
436        if (size < 2) {
437            return ERROR_MALFORMED;
438        }
439
440        size_t length = U16_AT(ptr);
441
442        ptr += 2;
443        size -= 2;
444
445        if (size < length) {
446            return ERROR_MALFORMED;
447        }
448
449        addCodecSpecificData(ptr, length);
450
451        ptr += length;
452        size -= length;
453    }
454
455    return OK;
456}
457
458status_t OMXCodec::configureCodec(const sp<MetaData> &meta) {
459    ALOGV("configureCodec protected=%d",
460         (mFlags & kEnableGrallocUsageProtected) ? 1 : 0);
461
462    if (!(mFlags & kIgnoreCodecSpecificData)) {
463        uint32_t type;
464        const void *data;
465        size_t size;
466        if (meta->findData(kKeyESDS, &type, &data, &size)) {
467            ESDS esds((const char *)data, size);
468            CHECK_EQ(esds.InitCheck(), (status_t)OK);
469
470            const void *codec_specific_data;
471            size_t codec_specific_data_size;
472            esds.getCodecSpecificInfo(
473                    &codec_specific_data, &codec_specific_data_size);
474
475            addCodecSpecificData(
476                    codec_specific_data, codec_specific_data_size);
477        } else if (meta->findData(kKeyAVCC, &type, &data, &size)) {
478            // Parse the AVCDecoderConfigurationRecord
479
480            unsigned profile, level;
481            status_t err;
482            if ((err = parseAVCCodecSpecificData(
483                            data, size, &profile, &level)) != OK) {
484                ALOGE("Malformed AVC codec specific data.");
485                return err;
486            }
487
488            CODEC_LOGI(
489                    "AVC profile = %u (%s), level = %u",
490                    profile, AVCProfileToString(profile), level);
491        } else if (meta->findData(kKeyVorbisInfo, &type, &data, &size)) {
492            addCodecSpecificData(data, size);
493
494            CHECK(meta->findData(kKeyVorbisBooks, &type, &data, &size));
495            addCodecSpecificData(data, size);
496        }
497    }
498
499    int32_t bitRate = 0;
500    if (mIsEncoder) {
501        CHECK(meta->findInt32(kKeyBitRate, &bitRate));
502    }
503    if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_AMR_NB, mMIME)) {
504        setAMRFormat(false /* isWAMR */, bitRate);
505    } else if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_AMR_WB, mMIME)) {
506        setAMRFormat(true /* isWAMR */, bitRate);
507    } else if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_AAC, mMIME)) {
508        int32_t numChannels, sampleRate, aacProfile;
509        CHECK(meta->findInt32(kKeyChannelCount, &numChannels));
510        CHECK(meta->findInt32(kKeySampleRate, &sampleRate));
511
512        if (!meta->findInt32(kKeyAACProfile, &aacProfile)) {
513            aacProfile = OMX_AUDIO_AACObjectNull;
514        }
515
516        int32_t isADTS;
517        if (!meta->findInt32(kKeyIsADTS, &isADTS)) {
518            isADTS = false;
519        }
520
521        status_t err = setAACFormat(numChannels, sampleRate, bitRate, aacProfile, isADTS);
522        if (err != OK) {
523            CODEC_LOGE("setAACFormat() failed (err = %d)", err);
524            return err;
525        }
526    } else if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_G711_ALAW, mMIME)
527            || !strcasecmp(MEDIA_MIMETYPE_AUDIO_G711_MLAW, mMIME)) {
528        // These are PCM-like formats with a fixed sample rate but
529        // a variable number of channels.
530
531        int32_t numChannels;
532        CHECK(meta->findInt32(kKeyChannelCount, &numChannels));
533
534        setG711Format(numChannels);
535    } else if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_RAW, mMIME)) {
536        CHECK(!mIsEncoder);
537
538        int32_t numChannels, sampleRate;
539        CHECK(meta->findInt32(kKeyChannelCount, &numChannels));
540        CHECK(meta->findInt32(kKeySampleRate, &sampleRate));
541
542        setRawAudioFormat(kPortIndexInput, sampleRate, numChannels);
543    }
544
545    if (!strncasecmp(mMIME, "video/", 6)) {
546
547        if (mIsEncoder) {
548            setVideoInputFormat(mMIME, meta);
549        } else {
550            int32_t width, height;
551            bool success = meta->findInt32(kKeyWidth, &width);
552            success = success && meta->findInt32(kKeyHeight, &height);
553            CHECK(success);
554            status_t err = setVideoOutputFormat(
555                    mMIME, width, height);
556
557            if (err != OK) {
558                return err;
559            }
560        }
561    }
562
563    int32_t maxInputSize;
564    if (meta->findInt32(kKeyMaxInputSize, &maxInputSize)) {
565        setMinBufferSize(kPortIndexInput, (OMX_U32)maxInputSize);
566    }
567
568    initOutputFormat(meta);
569
570    if ((mFlags & kClientNeedsFramebuffer)
571            && !strncmp(mComponentName, "OMX.SEC.", 8)) {
572        OMX_INDEXTYPE index;
573
574        status_t err =
575            mOMX->getExtensionIndex(
576                    mNode,
577                    "OMX.SEC.index.ThumbnailMode",
578                    &index);
579
580        if (err != OK) {
581            return err;
582        }
583
584        OMX_BOOL enable = OMX_TRUE;
585        err = mOMX->setConfig(mNode, index, &enable, sizeof(enable));
586
587        if (err != OK) {
588            CODEC_LOGE("setConfig('OMX.SEC.index.ThumbnailMode') "
589                       "returned error 0x%08x", err);
590
591            return err;
592        }
593
594        mQuirks &= ~kOutputBuffersAreUnreadable;
595    }
596
597    if (mNativeWindow != NULL
598        && !mIsEncoder
599        && !strncasecmp(mMIME, "video/", 6)
600        && !strncmp(mComponentName, "OMX.", 4)) {
601        status_t err = initNativeWindow();
602        if (err != OK) {
603            return err;
604        }
605    }
606
607    return OK;
608}
609
610void OMXCodec::setMinBufferSize(OMX_U32 portIndex, OMX_U32 size) {
611    OMX_PARAM_PORTDEFINITIONTYPE def;
612    InitOMXParams(&def);
613    def.nPortIndex = portIndex;
614
615    status_t err = mOMX->getParameter(
616            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
617    CHECK_EQ(err, (status_t)OK);
618
619    if ((portIndex == kPortIndexInput && (mQuirks & kInputBufferSizesAreBogus))
620        || (def.nBufferSize < size)) {
621        def.nBufferSize = size;
622    }
623
624    err = mOMX->setParameter(
625            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
626    CHECK_EQ(err, (status_t)OK);
627
628    err = mOMX->getParameter(
629            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
630    CHECK_EQ(err, (status_t)OK);
631
632    // Make sure the setting actually stuck.
633    if (portIndex == kPortIndexInput
634            && (mQuirks & kInputBufferSizesAreBogus)) {
635        CHECK_EQ(def.nBufferSize, size);
636    } else {
637        CHECK(def.nBufferSize >= size);
638    }
639}
640
641status_t OMXCodec::setVideoPortFormatType(
642        OMX_U32 portIndex,
643        OMX_VIDEO_CODINGTYPE compressionFormat,
644        OMX_COLOR_FORMATTYPE colorFormat) {
645    OMX_VIDEO_PARAM_PORTFORMATTYPE format;
646    InitOMXParams(&format);
647    format.nPortIndex = portIndex;
648    format.nIndex = 0;
649    bool found = false;
650
651    OMX_U32 index = 0;
652    for (;;) {
653        format.nIndex = index;
654        status_t err = mOMX->getParameter(
655                mNode, OMX_IndexParamVideoPortFormat,
656                &format, sizeof(format));
657
658        if (err != OK) {
659            return err;
660        }
661
662        // The following assertion is violated by TI's video decoder.
663        // CHECK_EQ(format.nIndex, index);
664
665#if 1
666        CODEC_LOGV("portIndex: %ld, index: %ld, eCompressionFormat=%d eColorFormat=%d",
667             portIndex,
668             index, format.eCompressionFormat, format.eColorFormat);
669#endif
670
671        if (format.eCompressionFormat == compressionFormat
672                && format.eColorFormat == colorFormat) {
673            found = true;
674            break;
675        }
676
677        ++index;
678        if (index >= kMaxColorFormatSupported) {
679            CODEC_LOGE("color format %d or compression format %d is not supported",
680                colorFormat, compressionFormat);
681            return UNKNOWN_ERROR;
682        }
683    }
684
685    if (!found) {
686        return UNKNOWN_ERROR;
687    }
688
689    CODEC_LOGV("found a match.");
690    status_t err = mOMX->setParameter(
691            mNode, OMX_IndexParamVideoPortFormat,
692            &format, sizeof(format));
693
694    return err;
695}
696
697static size_t getFrameSize(
698        OMX_COLOR_FORMATTYPE colorFormat, int32_t width, int32_t height) {
699    switch (colorFormat) {
700        case OMX_COLOR_FormatYCbYCr:
701        case OMX_COLOR_FormatCbYCrY:
702            return width * height * 2;
703
704        case OMX_COLOR_FormatYUV420Planar:
705        case OMX_COLOR_FormatYUV420SemiPlanar:
706        case OMX_TI_COLOR_FormatYUV420PackedSemiPlanar:
707        /*
708        * FIXME: For the Opaque color format, the frame size does not
709        * need to be (w*h*3)/2. It just needs to
710        * be larger than certain minimum buffer size. However,
711        * currently, this opaque foramt has been tested only on
712        * YUV420 formats. If that is changed, then we need to revisit
713        * this part in the future
714        */
715        case OMX_COLOR_FormatAndroidOpaque:
716            return (width * height * 3) / 2;
717
718        default:
719            CHECK(!"Should not be here. Unsupported color format.");
720            break;
721    }
722}
723
724status_t OMXCodec::findTargetColorFormat(
725        const sp<MetaData>& meta, OMX_COLOR_FORMATTYPE *colorFormat) {
726    ALOGV("findTargetColorFormat");
727    CHECK(mIsEncoder);
728
729    *colorFormat = OMX_COLOR_FormatYUV420SemiPlanar;
730    int32_t targetColorFormat;
731    if (meta->findInt32(kKeyColorFormat, &targetColorFormat)) {
732        *colorFormat = (OMX_COLOR_FORMATTYPE) targetColorFormat;
733    }
734
735    // Check whether the target color format is supported.
736    return isColorFormatSupported(*colorFormat, kPortIndexInput);
737}
738
739status_t OMXCodec::isColorFormatSupported(
740        OMX_COLOR_FORMATTYPE colorFormat, int portIndex) {
741    ALOGV("isColorFormatSupported: %d", static_cast<int>(colorFormat));
742
743    // Enumerate all the color formats supported by
744    // the omx component to see whether the given
745    // color format is supported.
746    OMX_VIDEO_PARAM_PORTFORMATTYPE portFormat;
747    InitOMXParams(&portFormat);
748    portFormat.nPortIndex = portIndex;
749    OMX_U32 index = 0;
750    portFormat.nIndex = index;
751    while (true) {
752        if (OMX_ErrorNone != mOMX->getParameter(
753                mNode, OMX_IndexParamVideoPortFormat,
754                &portFormat, sizeof(portFormat))) {
755            break;
756        }
757        // Make sure that omx component does not overwrite
758        // the incremented index (bug 2897413).
759        CHECK_EQ(index, portFormat.nIndex);
760        if (portFormat.eColorFormat == colorFormat) {
761            CODEC_LOGV("Found supported color format: %d", portFormat.eColorFormat);
762            return OK;  // colorFormat is supported!
763        }
764        ++index;
765        portFormat.nIndex = index;
766
767        if (index >= kMaxColorFormatSupported) {
768            CODEC_LOGE("More than %ld color formats are supported???", index);
769            break;
770        }
771    }
772
773    CODEC_LOGE("color format %d is not supported", colorFormat);
774    return UNKNOWN_ERROR;
775}
776
777void OMXCodec::setVideoInputFormat(
778        const char *mime, const sp<MetaData>& meta) {
779
780    int32_t width, height, frameRate, bitRate, stride, sliceHeight;
781    bool success = meta->findInt32(kKeyWidth, &width);
782    success = success && meta->findInt32(kKeyHeight, &height);
783    success = success && meta->findInt32(kKeyFrameRate, &frameRate);
784    success = success && meta->findInt32(kKeyBitRate, &bitRate);
785    success = success && meta->findInt32(kKeyStride, &stride);
786    success = success && meta->findInt32(kKeySliceHeight, &sliceHeight);
787    CHECK(success);
788    CHECK(stride != 0);
789
790    OMX_VIDEO_CODINGTYPE compressionFormat = OMX_VIDEO_CodingUnused;
791    if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_AVC, mime)) {
792        compressionFormat = OMX_VIDEO_CodingAVC;
793    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_MPEG4, mime)) {
794        compressionFormat = OMX_VIDEO_CodingMPEG4;
795    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_H263, mime)) {
796        compressionFormat = OMX_VIDEO_CodingH263;
797    } else {
798        ALOGE("Not a supported video mime type: %s", mime);
799        CHECK(!"Should not be here. Not a supported video mime type.");
800    }
801
802    OMX_COLOR_FORMATTYPE colorFormat;
803    CHECK_EQ((status_t)OK, findTargetColorFormat(meta, &colorFormat));
804
805    status_t err;
806    OMX_PARAM_PORTDEFINITIONTYPE def;
807    OMX_VIDEO_PORTDEFINITIONTYPE *video_def = &def.format.video;
808
809    //////////////////////// Input port /////////////////////////
810    CHECK_EQ(setVideoPortFormatType(
811            kPortIndexInput, OMX_VIDEO_CodingUnused,
812            colorFormat), (status_t)OK);
813
814    InitOMXParams(&def);
815    def.nPortIndex = kPortIndexInput;
816
817    err = mOMX->getParameter(
818            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
819    CHECK_EQ(err, (status_t)OK);
820
821    def.nBufferSize = getFrameSize(colorFormat,
822            stride > 0? stride: -stride, sliceHeight);
823
824    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainVideo);
825
826    video_def->nFrameWidth = width;
827    video_def->nFrameHeight = height;
828    video_def->nStride = stride;
829    video_def->nSliceHeight = sliceHeight;
830    video_def->xFramerate = (frameRate << 16);  // Q16 format
831    video_def->eCompressionFormat = OMX_VIDEO_CodingUnused;
832    video_def->eColorFormat = colorFormat;
833
834    err = mOMX->setParameter(
835            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
836    CHECK_EQ(err, (status_t)OK);
837
838    //////////////////////// Output port /////////////////////////
839    CHECK_EQ(setVideoPortFormatType(
840            kPortIndexOutput, compressionFormat, OMX_COLOR_FormatUnused),
841            (status_t)OK);
842    InitOMXParams(&def);
843    def.nPortIndex = kPortIndexOutput;
844
845    err = mOMX->getParameter(
846            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
847
848    CHECK_EQ(err, (status_t)OK);
849    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainVideo);
850
851    video_def->nFrameWidth = width;
852    video_def->nFrameHeight = height;
853    video_def->xFramerate = 0;      // No need for output port
854    video_def->nBitrate = bitRate;  // Q16 format
855    video_def->eCompressionFormat = compressionFormat;
856    video_def->eColorFormat = OMX_COLOR_FormatUnused;
857    if (mQuirks & kRequiresLargerEncoderOutputBuffer) {
858        // Increases the output buffer size
859        def.nBufferSize = ((def.nBufferSize * 3) >> 1);
860    }
861
862    err = mOMX->setParameter(
863            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
864    CHECK_EQ(err, (status_t)OK);
865
866    /////////////////// Codec-specific ////////////////////////
867    switch (compressionFormat) {
868        case OMX_VIDEO_CodingMPEG4:
869        {
870            CHECK_EQ(setupMPEG4EncoderParameters(meta), (status_t)OK);
871            break;
872        }
873
874        case OMX_VIDEO_CodingH263:
875            CHECK_EQ(setupH263EncoderParameters(meta), (status_t)OK);
876            break;
877
878        case OMX_VIDEO_CodingAVC:
879        {
880            CHECK_EQ(setupAVCEncoderParameters(meta), (status_t)OK);
881            break;
882        }
883
884        default:
885            CHECK(!"Support for this compressionFormat to be implemented.");
886            break;
887    }
888}
889
890static OMX_U32 setPFramesSpacing(int32_t iFramesInterval, int32_t frameRate) {
891    if (iFramesInterval < 0) {
892        return 0xFFFFFFFF;
893    } else if (iFramesInterval == 0) {
894        return 0;
895    }
896    OMX_U32 ret = frameRate * iFramesInterval;
897    CHECK(ret > 1);
898    return ret;
899}
900
901status_t OMXCodec::setupErrorCorrectionParameters() {
902    OMX_VIDEO_PARAM_ERRORCORRECTIONTYPE errorCorrectionType;
903    InitOMXParams(&errorCorrectionType);
904    errorCorrectionType.nPortIndex = kPortIndexOutput;
905
906    status_t err = mOMX->getParameter(
907            mNode, OMX_IndexParamVideoErrorCorrection,
908            &errorCorrectionType, sizeof(errorCorrectionType));
909    if (err != OK) {
910        ALOGW("Error correction param query is not supported");
911        return OK;  // Optional feature. Ignore this failure
912    }
913
914    errorCorrectionType.bEnableHEC = OMX_FALSE;
915    errorCorrectionType.bEnableResync = OMX_TRUE;
916    errorCorrectionType.nResynchMarkerSpacing = 256;
917    errorCorrectionType.bEnableDataPartitioning = OMX_FALSE;
918    errorCorrectionType.bEnableRVLC = OMX_FALSE;
919
920    err = mOMX->setParameter(
921            mNode, OMX_IndexParamVideoErrorCorrection,
922            &errorCorrectionType, sizeof(errorCorrectionType));
923    if (err != OK) {
924        ALOGW("Error correction param configuration is not supported");
925    }
926
927    // Optional feature. Ignore the failure.
928    return OK;
929}
930
931status_t OMXCodec::setupBitRate(int32_t bitRate) {
932    OMX_VIDEO_PARAM_BITRATETYPE bitrateType;
933    InitOMXParams(&bitrateType);
934    bitrateType.nPortIndex = kPortIndexOutput;
935
936    status_t err = mOMX->getParameter(
937            mNode, OMX_IndexParamVideoBitrate,
938            &bitrateType, sizeof(bitrateType));
939    CHECK_EQ(err, (status_t)OK);
940
941    bitrateType.eControlRate = OMX_Video_ControlRateVariable;
942    bitrateType.nTargetBitrate = bitRate;
943
944    err = mOMX->setParameter(
945            mNode, OMX_IndexParamVideoBitrate,
946            &bitrateType, sizeof(bitrateType));
947    CHECK_EQ(err, (status_t)OK);
948    return OK;
949}
950
951status_t OMXCodec::getVideoProfileLevel(
952        const sp<MetaData>& meta,
953        const CodecProfileLevel& defaultProfileLevel,
954        CodecProfileLevel &profileLevel) {
955    CODEC_LOGV("Default profile: %ld, level %ld",
956            defaultProfileLevel.mProfile, defaultProfileLevel.mLevel);
957
958    // Are the default profile and level overwriten?
959    int32_t profile, level;
960    if (!meta->findInt32(kKeyVideoProfile, &profile)) {
961        profile = defaultProfileLevel.mProfile;
962    }
963    if (!meta->findInt32(kKeyVideoLevel, &level)) {
964        level = defaultProfileLevel.mLevel;
965    }
966    CODEC_LOGV("Target profile: %d, level: %d", profile, level);
967
968    // Are the target profile and level supported by the encoder?
969    OMX_VIDEO_PARAM_PROFILELEVELTYPE param;
970    InitOMXParams(&param);
971    param.nPortIndex = kPortIndexOutput;
972    for (param.nProfileIndex = 0;; ++param.nProfileIndex) {
973        status_t err = mOMX->getParameter(
974                mNode, OMX_IndexParamVideoProfileLevelQuerySupported,
975                &param, sizeof(param));
976
977        if (err != OK) break;
978
979        int32_t supportedProfile = static_cast<int32_t>(param.eProfile);
980        int32_t supportedLevel = static_cast<int32_t>(param.eLevel);
981        CODEC_LOGV("Supported profile: %d, level %d",
982            supportedProfile, supportedLevel);
983
984        if (profile == supportedProfile &&
985            level <= supportedLevel) {
986            // We can further check whether the level is a valid
987            // value; but we will leave that to the omx encoder component
988            // via OMX_SetParameter call.
989            profileLevel.mProfile = profile;
990            profileLevel.mLevel = level;
991            return OK;
992        }
993    }
994
995    CODEC_LOGE("Target profile (%d) and level (%d) is not supported",
996            profile, level);
997    return BAD_VALUE;
998}
999
1000status_t OMXCodec::setupH263EncoderParameters(const sp<MetaData>& meta) {
1001    int32_t iFramesInterval, frameRate, bitRate;
1002    bool success = meta->findInt32(kKeyBitRate, &bitRate);
1003    success = success && meta->findInt32(kKeyFrameRate, &frameRate);
1004    success = success && meta->findInt32(kKeyIFramesInterval, &iFramesInterval);
1005    CHECK(success);
1006    OMX_VIDEO_PARAM_H263TYPE h263type;
1007    InitOMXParams(&h263type);
1008    h263type.nPortIndex = kPortIndexOutput;
1009
1010    status_t err = mOMX->getParameter(
1011            mNode, OMX_IndexParamVideoH263, &h263type, sizeof(h263type));
1012    CHECK_EQ(err, (status_t)OK);
1013
1014    h263type.nAllowedPictureTypes =
1015        OMX_VIDEO_PictureTypeI | OMX_VIDEO_PictureTypeP;
1016
1017    h263type.nPFrames = setPFramesSpacing(iFramesInterval, frameRate);
1018    if (h263type.nPFrames == 0) {
1019        h263type.nAllowedPictureTypes = OMX_VIDEO_PictureTypeI;
1020    }
1021    h263type.nBFrames = 0;
1022
1023    // Check profile and level parameters
1024    CodecProfileLevel defaultProfileLevel, profileLevel;
1025    defaultProfileLevel.mProfile = h263type.eProfile;
1026    defaultProfileLevel.mLevel = h263type.eLevel;
1027    err = getVideoProfileLevel(meta, defaultProfileLevel, profileLevel);
1028    if (err != OK) return err;
1029    h263type.eProfile = static_cast<OMX_VIDEO_H263PROFILETYPE>(profileLevel.mProfile);
1030    h263type.eLevel = static_cast<OMX_VIDEO_H263LEVELTYPE>(profileLevel.mLevel);
1031
1032    h263type.bPLUSPTYPEAllowed = OMX_FALSE;
1033    h263type.bForceRoundingTypeToZero = OMX_FALSE;
1034    h263type.nPictureHeaderRepetition = 0;
1035    h263type.nGOBHeaderInterval = 0;
1036
1037    err = mOMX->setParameter(
1038            mNode, OMX_IndexParamVideoH263, &h263type, sizeof(h263type));
1039    CHECK_EQ(err, (status_t)OK);
1040
1041    CHECK_EQ(setupBitRate(bitRate), (status_t)OK);
1042    CHECK_EQ(setupErrorCorrectionParameters(), (status_t)OK);
1043
1044    return OK;
1045}
1046
1047status_t OMXCodec::setupMPEG4EncoderParameters(const sp<MetaData>& meta) {
1048    int32_t iFramesInterval, frameRate, bitRate;
1049    bool success = meta->findInt32(kKeyBitRate, &bitRate);
1050    success = success && meta->findInt32(kKeyFrameRate, &frameRate);
1051    success = success && meta->findInt32(kKeyIFramesInterval, &iFramesInterval);
1052    CHECK(success);
1053    OMX_VIDEO_PARAM_MPEG4TYPE mpeg4type;
1054    InitOMXParams(&mpeg4type);
1055    mpeg4type.nPortIndex = kPortIndexOutput;
1056
1057    status_t err = mOMX->getParameter(
1058            mNode, OMX_IndexParamVideoMpeg4, &mpeg4type, sizeof(mpeg4type));
1059    CHECK_EQ(err, (status_t)OK);
1060
1061    mpeg4type.nSliceHeaderSpacing = 0;
1062    mpeg4type.bSVH = OMX_FALSE;
1063    mpeg4type.bGov = OMX_FALSE;
1064
1065    mpeg4type.nAllowedPictureTypes =
1066        OMX_VIDEO_PictureTypeI | OMX_VIDEO_PictureTypeP;
1067
1068    mpeg4type.nPFrames = setPFramesSpacing(iFramesInterval, frameRate);
1069    if (mpeg4type.nPFrames == 0) {
1070        mpeg4type.nAllowedPictureTypes = OMX_VIDEO_PictureTypeI;
1071    }
1072    mpeg4type.nBFrames = 0;
1073    mpeg4type.nIDCVLCThreshold = 0;
1074    mpeg4type.bACPred = OMX_TRUE;
1075    mpeg4type.nMaxPacketSize = 256;
1076    mpeg4type.nTimeIncRes = 1000;
1077    mpeg4type.nHeaderExtension = 0;
1078    mpeg4type.bReversibleVLC = OMX_FALSE;
1079
1080    // Check profile and level parameters
1081    CodecProfileLevel defaultProfileLevel, profileLevel;
1082    defaultProfileLevel.mProfile = mpeg4type.eProfile;
1083    defaultProfileLevel.mLevel = mpeg4type.eLevel;
1084    err = getVideoProfileLevel(meta, defaultProfileLevel, profileLevel);
1085    if (err != OK) return err;
1086    mpeg4type.eProfile = static_cast<OMX_VIDEO_MPEG4PROFILETYPE>(profileLevel.mProfile);
1087    mpeg4type.eLevel = static_cast<OMX_VIDEO_MPEG4LEVELTYPE>(profileLevel.mLevel);
1088
1089    err = mOMX->setParameter(
1090            mNode, OMX_IndexParamVideoMpeg4, &mpeg4type, sizeof(mpeg4type));
1091    CHECK_EQ(err, (status_t)OK);
1092
1093    CHECK_EQ(setupBitRate(bitRate), (status_t)OK);
1094    CHECK_EQ(setupErrorCorrectionParameters(), (status_t)OK);
1095
1096    return OK;
1097}
1098
1099status_t OMXCodec::setupAVCEncoderParameters(const sp<MetaData>& meta) {
1100    int32_t iFramesInterval, frameRate, bitRate;
1101    bool success = meta->findInt32(kKeyBitRate, &bitRate);
1102    success = success && meta->findInt32(kKeyFrameRate, &frameRate);
1103    success = success && meta->findInt32(kKeyIFramesInterval, &iFramesInterval);
1104    CHECK(success);
1105
1106    OMX_VIDEO_PARAM_AVCTYPE h264type;
1107    InitOMXParams(&h264type);
1108    h264type.nPortIndex = kPortIndexOutput;
1109
1110    status_t err = mOMX->getParameter(
1111            mNode, OMX_IndexParamVideoAvc, &h264type, sizeof(h264type));
1112    CHECK_EQ(err, (status_t)OK);
1113
1114    h264type.nAllowedPictureTypes =
1115        OMX_VIDEO_PictureTypeI | OMX_VIDEO_PictureTypeP;
1116
1117    // Check profile and level parameters
1118    CodecProfileLevel defaultProfileLevel, profileLevel;
1119    defaultProfileLevel.mProfile = h264type.eProfile;
1120    defaultProfileLevel.mLevel = h264type.eLevel;
1121    err = getVideoProfileLevel(meta, defaultProfileLevel, profileLevel);
1122    if (err != OK) return err;
1123    h264type.eProfile = static_cast<OMX_VIDEO_AVCPROFILETYPE>(profileLevel.mProfile);
1124    h264type.eLevel = static_cast<OMX_VIDEO_AVCLEVELTYPE>(profileLevel.mLevel);
1125
1126    // XXX
1127    if (h264type.eProfile != OMX_VIDEO_AVCProfileBaseline) {
1128        ALOGW("Use baseline profile instead of %d for AVC recording",
1129            h264type.eProfile);
1130        h264type.eProfile = OMX_VIDEO_AVCProfileBaseline;
1131    }
1132
1133    if (h264type.eProfile == OMX_VIDEO_AVCProfileBaseline) {
1134        h264type.nSliceHeaderSpacing = 0;
1135        h264type.bUseHadamard = OMX_TRUE;
1136        h264type.nRefFrames = 1;
1137        h264type.nBFrames = 0;
1138        h264type.nPFrames = setPFramesSpacing(iFramesInterval, frameRate);
1139        if (h264type.nPFrames == 0) {
1140            h264type.nAllowedPictureTypes = OMX_VIDEO_PictureTypeI;
1141        }
1142        h264type.nRefIdx10ActiveMinus1 = 0;
1143        h264type.nRefIdx11ActiveMinus1 = 0;
1144        h264type.bEntropyCodingCABAC = OMX_FALSE;
1145        h264type.bWeightedPPrediction = OMX_FALSE;
1146        h264type.bconstIpred = OMX_FALSE;
1147        h264type.bDirect8x8Inference = OMX_FALSE;
1148        h264type.bDirectSpatialTemporal = OMX_FALSE;
1149        h264type.nCabacInitIdc = 0;
1150    }
1151
1152    if (h264type.nBFrames != 0) {
1153        h264type.nAllowedPictureTypes |= OMX_VIDEO_PictureTypeB;
1154    }
1155
1156    h264type.bEnableUEP = OMX_FALSE;
1157    h264type.bEnableFMO = OMX_FALSE;
1158    h264type.bEnableASO = OMX_FALSE;
1159    h264type.bEnableRS = OMX_FALSE;
1160    h264type.bFrameMBsOnly = OMX_TRUE;
1161    h264type.bMBAFF = OMX_FALSE;
1162    h264type.eLoopFilterMode = OMX_VIDEO_AVCLoopFilterEnable;
1163
1164    err = mOMX->setParameter(
1165            mNode, OMX_IndexParamVideoAvc, &h264type, sizeof(h264type));
1166    CHECK_EQ(err, (status_t)OK);
1167
1168    CHECK_EQ(setupBitRate(bitRate), (status_t)OK);
1169
1170    return OK;
1171}
1172
1173status_t OMXCodec::setVideoOutputFormat(
1174        const char *mime, OMX_U32 width, OMX_U32 height) {
1175    CODEC_LOGV("setVideoOutputFormat width=%ld, height=%ld", width, height);
1176
1177    OMX_VIDEO_CODINGTYPE compressionFormat = OMX_VIDEO_CodingUnused;
1178    if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_AVC, mime)) {
1179        compressionFormat = OMX_VIDEO_CodingAVC;
1180    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_MPEG4, mime)) {
1181        compressionFormat = OMX_VIDEO_CodingMPEG4;
1182    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_H263, mime)) {
1183        compressionFormat = OMX_VIDEO_CodingH263;
1184    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_VPX, mime)) {
1185        compressionFormat = OMX_VIDEO_CodingVPX;
1186    } else if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_MPEG2, mime)) {
1187        compressionFormat = OMX_VIDEO_CodingMPEG2;
1188    } else {
1189        ALOGE("Not a supported video mime type: %s", mime);
1190        CHECK(!"Should not be here. Not a supported video mime type.");
1191    }
1192
1193    status_t err = setVideoPortFormatType(
1194            kPortIndexInput, compressionFormat, OMX_COLOR_FormatUnused);
1195
1196    if (err != OK) {
1197        return err;
1198    }
1199
1200#if 1
1201    {
1202        OMX_VIDEO_PARAM_PORTFORMATTYPE format;
1203        InitOMXParams(&format);
1204        format.nPortIndex = kPortIndexOutput;
1205        format.nIndex = 0;
1206
1207        status_t err = mOMX->getParameter(
1208                mNode, OMX_IndexParamVideoPortFormat,
1209                &format, sizeof(format));
1210        CHECK_EQ(err, (status_t)OK);
1211        CHECK_EQ((int)format.eCompressionFormat, (int)OMX_VIDEO_CodingUnused);
1212
1213        CHECK(format.eColorFormat == OMX_COLOR_FormatYUV420Planar
1214               || format.eColorFormat == OMX_COLOR_FormatYUV420SemiPlanar
1215               || format.eColorFormat == OMX_COLOR_FormatCbYCrY
1216               || format.eColorFormat == OMX_TI_COLOR_FormatYUV420PackedSemiPlanar
1217               || format.eColorFormat == OMX_QCOM_COLOR_FormatYVU420SemiPlanar
1218               || format.eColorFormat == OMX_QCOM_COLOR_FormatYUV420PackedSemiPlanar64x32Tile2m8ka);
1219
1220        err = mOMX->setParameter(
1221                mNode, OMX_IndexParamVideoPortFormat,
1222                &format, sizeof(format));
1223
1224        if (err != OK) {
1225            return err;
1226        }
1227    }
1228#endif
1229
1230    OMX_PARAM_PORTDEFINITIONTYPE def;
1231    InitOMXParams(&def);
1232    def.nPortIndex = kPortIndexInput;
1233
1234    OMX_VIDEO_PORTDEFINITIONTYPE *video_def = &def.format.video;
1235
1236    err = mOMX->getParameter(
1237            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1238
1239    CHECK_EQ(err, (status_t)OK);
1240
1241#if 1
1242    // XXX Need a (much) better heuristic to compute input buffer sizes.
1243    const size_t X = 64 * 1024;
1244    if (def.nBufferSize < X) {
1245        def.nBufferSize = X;
1246    }
1247#endif
1248
1249    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainVideo);
1250
1251    video_def->nFrameWidth = width;
1252    video_def->nFrameHeight = height;
1253
1254    video_def->eCompressionFormat = compressionFormat;
1255    video_def->eColorFormat = OMX_COLOR_FormatUnused;
1256
1257    err = mOMX->setParameter(
1258            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1259
1260    if (err != OK) {
1261        return err;
1262    }
1263
1264    ////////////////////////////////////////////////////////////////////////////
1265
1266    InitOMXParams(&def);
1267    def.nPortIndex = kPortIndexOutput;
1268
1269    err = mOMX->getParameter(
1270            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1271    CHECK_EQ(err, (status_t)OK);
1272    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainVideo);
1273
1274#if 0
1275    def.nBufferSize =
1276        (((width + 15) & -16) * ((height + 15) & -16) * 3) / 2;  // YUV420
1277#endif
1278
1279    video_def->nFrameWidth = width;
1280    video_def->nFrameHeight = height;
1281
1282    err = mOMX->setParameter(
1283            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1284
1285    return err;
1286}
1287
1288OMXCodec::OMXCodec(
1289        const sp<IOMX> &omx, IOMX::node_id node,
1290        uint32_t quirks, uint32_t flags,
1291        bool isEncoder,
1292        const char *mime,
1293        const char *componentName,
1294        const sp<MediaSource> &source,
1295        const sp<ANativeWindow> &nativeWindow)
1296    : mOMX(omx),
1297      mOMXLivesLocally(omx->livesLocally(node, getpid())),
1298      mNode(node),
1299      mQuirks(quirks),
1300      mFlags(flags),
1301      mIsEncoder(isEncoder),
1302      mIsVideo(!strncasecmp("video/", mime, 6)),
1303      mMIME(strdup(mime)),
1304      mComponentName(strdup(componentName)),
1305      mSource(source),
1306      mCodecSpecificDataIndex(0),
1307      mState(LOADED),
1308      mInitialBufferSubmit(true),
1309      mSignalledEOS(false),
1310      mNoMoreOutputData(false),
1311      mOutputPortSettingsHaveChanged(false),
1312      mSeekTimeUs(-1),
1313      mSeekMode(ReadOptions::SEEK_CLOSEST_SYNC),
1314      mTargetTimeUs(-1),
1315      mOutputPortSettingsChangedPending(false),
1316      mSkipCutBuffer(NULL),
1317      mLeftOverBuffer(NULL),
1318      mPaused(false),
1319      mNativeWindow(
1320              (!strncmp(componentName, "OMX.google.", 11)
1321              || !strcmp(componentName, "OMX.Nvidia.mpeg2v.decode"))
1322                        ? NULL : nativeWindow) {
1323    mPortStatus[kPortIndexInput] = ENABLED;
1324    mPortStatus[kPortIndexOutput] = ENABLED;
1325
1326    setComponentRole();
1327}
1328
1329// static
1330void OMXCodec::setComponentRole(
1331        const sp<IOMX> &omx, IOMX::node_id node, bool isEncoder,
1332        const char *mime) {
1333    struct MimeToRole {
1334        const char *mime;
1335        const char *decoderRole;
1336        const char *encoderRole;
1337    };
1338
1339    static const MimeToRole kMimeToRole[] = {
1340        { MEDIA_MIMETYPE_AUDIO_MPEG,
1341            "audio_decoder.mp3", "audio_encoder.mp3" },
1342        { MEDIA_MIMETYPE_AUDIO_MPEG_LAYER_I,
1343            "audio_decoder.mp1", "audio_encoder.mp1" },
1344        { MEDIA_MIMETYPE_AUDIO_MPEG_LAYER_II,
1345            "audio_decoder.mp2", "audio_encoder.mp2" },
1346        { MEDIA_MIMETYPE_AUDIO_AMR_NB,
1347            "audio_decoder.amrnb", "audio_encoder.amrnb" },
1348        { MEDIA_MIMETYPE_AUDIO_AMR_WB,
1349            "audio_decoder.amrwb", "audio_encoder.amrwb" },
1350        { MEDIA_MIMETYPE_AUDIO_AAC,
1351            "audio_decoder.aac", "audio_encoder.aac" },
1352        { MEDIA_MIMETYPE_AUDIO_VORBIS,
1353            "audio_decoder.vorbis", "audio_encoder.vorbis" },
1354        { MEDIA_MIMETYPE_AUDIO_G711_MLAW,
1355            "audio_decoder.g711mlaw", "audio_encoder.g711mlaw" },
1356        { MEDIA_MIMETYPE_AUDIO_G711_ALAW,
1357            "audio_decoder.g711alaw", "audio_encoder.g711alaw" },
1358        { MEDIA_MIMETYPE_VIDEO_AVC,
1359            "video_decoder.avc", "video_encoder.avc" },
1360        { MEDIA_MIMETYPE_VIDEO_MPEG4,
1361            "video_decoder.mpeg4", "video_encoder.mpeg4" },
1362        { MEDIA_MIMETYPE_VIDEO_H263,
1363            "video_decoder.h263", "video_encoder.h263" },
1364        { MEDIA_MIMETYPE_VIDEO_VPX,
1365            "video_decoder.vpx", "video_encoder.vpx" },
1366        { MEDIA_MIMETYPE_AUDIO_RAW,
1367            "audio_decoder.raw", "audio_encoder.raw" },
1368        { MEDIA_MIMETYPE_AUDIO_FLAC,
1369            "audio_decoder.flac", "audio_encoder.flac" },
1370    };
1371
1372    static const size_t kNumMimeToRole =
1373        sizeof(kMimeToRole) / sizeof(kMimeToRole[0]);
1374
1375    size_t i;
1376    for (i = 0; i < kNumMimeToRole; ++i) {
1377        if (!strcasecmp(mime, kMimeToRole[i].mime)) {
1378            break;
1379        }
1380    }
1381
1382    if (i == kNumMimeToRole) {
1383        return;
1384    }
1385
1386    const char *role =
1387        isEncoder ? kMimeToRole[i].encoderRole
1388                  : kMimeToRole[i].decoderRole;
1389
1390    if (role != NULL) {
1391        OMX_PARAM_COMPONENTROLETYPE roleParams;
1392        InitOMXParams(&roleParams);
1393
1394        strncpy((char *)roleParams.cRole,
1395                role, OMX_MAX_STRINGNAME_SIZE - 1);
1396
1397        roleParams.cRole[OMX_MAX_STRINGNAME_SIZE - 1] = '\0';
1398
1399        status_t err = omx->setParameter(
1400                node, OMX_IndexParamStandardComponentRole,
1401                &roleParams, sizeof(roleParams));
1402
1403        if (err != OK) {
1404            ALOGW("Failed to set standard component role '%s'.", role);
1405        }
1406    }
1407}
1408
1409void OMXCodec::setComponentRole() {
1410    setComponentRole(mOMX, mNode, mIsEncoder, mMIME);
1411}
1412
1413OMXCodec::~OMXCodec() {
1414    mSource.clear();
1415
1416    CHECK(mState == LOADED || mState == ERROR || mState == LOADED_TO_IDLE);
1417
1418    status_t err = mOMX->freeNode(mNode);
1419    CHECK_EQ(err, (status_t)OK);
1420
1421    mNode = NULL;
1422    setState(DEAD);
1423
1424    clearCodecSpecificData();
1425
1426    free(mComponentName);
1427    mComponentName = NULL;
1428
1429    free(mMIME);
1430    mMIME = NULL;
1431}
1432
1433status_t OMXCodec::init() {
1434    // mLock is held.
1435
1436    CHECK_EQ((int)mState, (int)LOADED);
1437
1438    status_t err;
1439    if (!(mQuirks & kRequiresLoadedToIdleAfterAllocation)) {
1440        err = mOMX->sendCommand(mNode, OMX_CommandStateSet, OMX_StateIdle);
1441        CHECK_EQ(err, (status_t)OK);
1442        setState(LOADED_TO_IDLE);
1443    }
1444
1445    err = allocateBuffers();
1446    if (err != (status_t)OK) {
1447        return err;
1448    }
1449
1450    if (mQuirks & kRequiresLoadedToIdleAfterAllocation) {
1451        err = mOMX->sendCommand(mNode, OMX_CommandStateSet, OMX_StateIdle);
1452        CHECK_EQ(err, (status_t)OK);
1453
1454        setState(LOADED_TO_IDLE);
1455    }
1456
1457    while (mState != EXECUTING && mState != ERROR) {
1458        mAsyncCompletion.wait(mLock);
1459    }
1460
1461    return mState == ERROR ? UNKNOWN_ERROR : OK;
1462}
1463
1464// static
1465bool OMXCodec::isIntermediateState(State state) {
1466    return state == LOADED_TO_IDLE
1467        || state == IDLE_TO_EXECUTING
1468        || state == EXECUTING_TO_IDLE
1469        || state == IDLE_TO_LOADED
1470        || state == RECONFIGURING;
1471}
1472
1473status_t OMXCodec::allocateBuffers() {
1474    status_t err = allocateBuffersOnPort(kPortIndexInput);
1475
1476    if (err != OK) {
1477        return err;
1478    }
1479
1480    return allocateBuffersOnPort(kPortIndexOutput);
1481}
1482
1483status_t OMXCodec::allocateBuffersOnPort(OMX_U32 portIndex) {
1484    if (mNativeWindow != NULL && portIndex == kPortIndexOutput) {
1485        return allocateOutputBuffersFromNativeWindow();
1486    }
1487
1488    if ((mFlags & kEnableGrallocUsageProtected) && portIndex == kPortIndexOutput) {
1489        ALOGE("protected output buffers must be stent to an ANativeWindow");
1490        return PERMISSION_DENIED;
1491    }
1492
1493    status_t err = OK;
1494    if ((mFlags & kStoreMetaDataInVideoBuffers)
1495            && portIndex == kPortIndexInput) {
1496        err = mOMX->storeMetaDataInBuffers(mNode, kPortIndexInput, OMX_TRUE);
1497        if (err != OK) {
1498            ALOGE("Storing meta data in video buffers is not supported");
1499            return err;
1500        }
1501    }
1502
1503    OMX_PARAM_PORTDEFINITIONTYPE def;
1504    InitOMXParams(&def);
1505    def.nPortIndex = portIndex;
1506
1507    err = mOMX->getParameter(
1508            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1509
1510    if (err != OK) {
1511        return err;
1512    }
1513
1514    CODEC_LOGV("allocating %lu buffers of size %lu on %s port",
1515            def.nBufferCountActual, def.nBufferSize,
1516            portIndex == kPortIndexInput ? "input" : "output");
1517
1518    size_t totalSize = def.nBufferCountActual * def.nBufferSize;
1519    mDealer[portIndex] = new MemoryDealer(totalSize, "OMXCodec");
1520
1521    for (OMX_U32 i = 0; i < def.nBufferCountActual; ++i) {
1522        sp<IMemory> mem = mDealer[portIndex]->allocate(def.nBufferSize);
1523        CHECK(mem.get() != NULL);
1524
1525        BufferInfo info;
1526        info.mData = NULL;
1527        info.mSize = def.nBufferSize;
1528
1529        IOMX::buffer_id buffer;
1530        if (portIndex == kPortIndexInput
1531                && ((mQuirks & kRequiresAllocateBufferOnInputPorts)
1532                    || (mFlags & kUseSecureInputBuffers))) {
1533            if (mOMXLivesLocally) {
1534                mem.clear();
1535
1536                err = mOMX->allocateBuffer(
1537                        mNode, portIndex, def.nBufferSize, &buffer,
1538                        &info.mData);
1539            } else {
1540                err = mOMX->allocateBufferWithBackup(
1541                        mNode, portIndex, mem, &buffer);
1542            }
1543        } else if (portIndex == kPortIndexOutput
1544                && (mQuirks & kRequiresAllocateBufferOnOutputPorts)) {
1545            if (mOMXLivesLocally) {
1546                mem.clear();
1547
1548                err = mOMX->allocateBuffer(
1549                        mNode, portIndex, def.nBufferSize, &buffer,
1550                        &info.mData);
1551            } else {
1552                err = mOMX->allocateBufferWithBackup(
1553                        mNode, portIndex, mem, &buffer);
1554            }
1555        } else {
1556            err = mOMX->useBuffer(mNode, portIndex, mem, &buffer);
1557        }
1558
1559        if (err != OK) {
1560            ALOGE("allocate_buffer_with_backup failed");
1561            return err;
1562        }
1563
1564        if (mem != NULL) {
1565            info.mData = mem->pointer();
1566        }
1567
1568        info.mBuffer = buffer;
1569        info.mStatus = OWNED_BY_US;
1570        info.mMem = mem;
1571        info.mMediaBuffer = NULL;
1572
1573        if (portIndex == kPortIndexOutput) {
1574            if (!(mOMXLivesLocally
1575                        && (mQuirks & kRequiresAllocateBufferOnOutputPorts)
1576                        && (mQuirks & kDefersOutputBufferAllocation))) {
1577                // If the node does not fill in the buffer ptr at this time,
1578                // we will defer creating the MediaBuffer until receiving
1579                // the first FILL_BUFFER_DONE notification instead.
1580                info.mMediaBuffer = new MediaBuffer(info.mData, info.mSize);
1581                info.mMediaBuffer->setObserver(this);
1582            }
1583        }
1584
1585        mPortBuffers[portIndex].push(info);
1586
1587        CODEC_LOGV("allocated buffer %p on %s port", buffer,
1588             portIndex == kPortIndexInput ? "input" : "output");
1589    }
1590
1591    if (portIndex == kPortIndexOutput) {
1592
1593        sp<MetaData> meta = mSource->getFormat();
1594        int32_t delay = 0;
1595        if (!meta->findInt32(kKeyEncoderDelay, &delay)) {
1596            delay = 0;
1597        }
1598        int32_t padding = 0;
1599        if (!meta->findInt32(kKeyEncoderPadding, &padding)) {
1600            padding = 0;
1601        }
1602        int32_t numchannels = 0;
1603        if (delay + padding) {
1604            if (mOutputFormat->findInt32(kKeyChannelCount, &numchannels)) {
1605                size_t frameSize = numchannels * sizeof(int16_t);
1606                if (mSkipCutBuffer != NULL) {
1607                    size_t prevbuffersize = mSkipCutBuffer->size();
1608                    if (prevbuffersize != 0) {
1609                        ALOGW("Replacing SkipCutBuffer holding %d bytes", prevbuffersize);
1610                    }
1611                }
1612                mSkipCutBuffer = new SkipCutBuffer(delay * frameSize, padding * frameSize);
1613            }
1614        }
1615    }
1616
1617    // dumpPortStatus(portIndex);
1618
1619    if (portIndex == kPortIndexInput && (mFlags & kUseSecureInputBuffers)) {
1620        Vector<MediaBuffer *> buffers;
1621        for (size_t i = 0; i < def.nBufferCountActual; ++i) {
1622            const BufferInfo &info = mPortBuffers[kPortIndexInput].itemAt(i);
1623
1624            MediaBuffer *mbuf = new MediaBuffer(info.mData, info.mSize);
1625            buffers.push(mbuf);
1626        }
1627
1628        status_t err = mSource->setBuffers(buffers);
1629
1630        if (err != OK) {
1631            for (size_t i = 0; i < def.nBufferCountActual; ++i) {
1632                buffers.editItemAt(i)->release();
1633            }
1634            buffers.clear();
1635
1636            CODEC_LOGE(
1637                    "Codec requested to use secure input buffers but "
1638                    "upstream source didn't support that.");
1639
1640            return err;
1641        }
1642    }
1643
1644    return OK;
1645}
1646
1647status_t OMXCodec::applyRotation() {
1648    sp<MetaData> meta = mSource->getFormat();
1649
1650    int32_t rotationDegrees;
1651    if (!meta->findInt32(kKeyRotation, &rotationDegrees)) {
1652        rotationDegrees = 0;
1653    }
1654
1655    uint32_t transform;
1656    switch (rotationDegrees) {
1657        case 0: transform = 0; break;
1658        case 90: transform = HAL_TRANSFORM_ROT_90; break;
1659        case 180: transform = HAL_TRANSFORM_ROT_180; break;
1660        case 270: transform = HAL_TRANSFORM_ROT_270; break;
1661        default: transform = 0; break;
1662    }
1663
1664    status_t err = OK;
1665
1666    if (transform) {
1667        err = native_window_set_buffers_transform(
1668                mNativeWindow.get(), transform);
1669    }
1670
1671    return err;
1672}
1673
1674status_t OMXCodec::allocateOutputBuffersFromNativeWindow() {
1675    // Get the number of buffers needed.
1676    OMX_PARAM_PORTDEFINITIONTYPE def;
1677    InitOMXParams(&def);
1678    def.nPortIndex = kPortIndexOutput;
1679
1680    status_t err = mOMX->getParameter(
1681            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1682    if (err != OK) {
1683        return err;
1684    }
1685
1686    err = native_window_set_buffers_geometry(
1687            mNativeWindow.get(),
1688            def.format.video.nFrameWidth,
1689            def.format.video.nFrameHeight,
1690            def.format.video.eColorFormat);
1691
1692    if (err != 0) {
1693        ALOGE("native_window_set_buffers_geometry failed: %s (%d)",
1694                strerror(-err), -err);
1695        return err;
1696    }
1697
1698    err = applyRotation();
1699    if (err != OK) {
1700        return err;
1701    }
1702
1703    // Set up the native window.
1704    OMX_U32 usage = 0;
1705    err = mOMX->getGraphicBufferUsage(mNode, kPortIndexOutput, &usage);
1706    if (err != 0) {
1707        ALOGW("querying usage flags from OMX IL component failed: %d", err);
1708        // XXX: Currently this error is logged, but not fatal.
1709        usage = 0;
1710    }
1711    if (mFlags & kEnableGrallocUsageProtected) {
1712        usage |= GRALLOC_USAGE_PROTECTED;
1713    }
1714
1715    // Make sure to check whether either Stagefright or the video decoder
1716    // requested protected buffers.
1717    if (usage & GRALLOC_USAGE_PROTECTED) {
1718        // Verify that the ANativeWindow sends images directly to
1719        // SurfaceFlinger.
1720        int queuesToNativeWindow = 0;
1721        err = mNativeWindow->query(
1722                mNativeWindow.get(), NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER,
1723                &queuesToNativeWindow);
1724        if (err != 0) {
1725            ALOGE("error authenticating native window: %d", err);
1726            return err;
1727        }
1728        if (queuesToNativeWindow != 1) {
1729            ALOGE("native window could not be authenticated");
1730            return PERMISSION_DENIED;
1731        }
1732    }
1733
1734    ALOGV("native_window_set_usage usage=0x%lx", usage);
1735    err = native_window_set_usage(
1736            mNativeWindow.get(), usage | GRALLOC_USAGE_HW_TEXTURE | GRALLOC_USAGE_EXTERNAL_DISP);
1737    if (err != 0) {
1738        ALOGE("native_window_set_usage failed: %s (%d)", strerror(-err), -err);
1739        return err;
1740    }
1741
1742    int minUndequeuedBufs = 0;
1743    err = mNativeWindow->query(mNativeWindow.get(),
1744            NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &minUndequeuedBufs);
1745    if (err != 0) {
1746        ALOGE("NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS query failed: %s (%d)",
1747                strerror(-err), -err);
1748        return err;
1749    }
1750
1751    // XXX: Is this the right logic to use?  It's not clear to me what the OMX
1752    // buffer counts refer to - how do they account for the renderer holding on
1753    // to buffers?
1754    if (def.nBufferCountActual < def.nBufferCountMin + minUndequeuedBufs) {
1755        OMX_U32 newBufferCount = def.nBufferCountMin + minUndequeuedBufs;
1756        def.nBufferCountActual = newBufferCount;
1757        err = mOMX->setParameter(
1758                mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
1759        if (err != OK) {
1760            CODEC_LOGE("setting nBufferCountActual to %lu failed: %d",
1761                    newBufferCount, err);
1762            return err;
1763        }
1764    }
1765
1766    err = native_window_set_buffer_count(
1767            mNativeWindow.get(), def.nBufferCountActual);
1768    if (err != 0) {
1769        ALOGE("native_window_set_buffer_count failed: %s (%d)", strerror(-err),
1770                -err);
1771        return err;
1772    }
1773
1774    CODEC_LOGV("allocating %lu buffers from a native window of size %lu on "
1775            "output port", def.nBufferCountActual, def.nBufferSize);
1776
1777    // Dequeue buffers and send them to OMX
1778    for (OMX_U32 i = 0; i < def.nBufferCountActual; i++) {
1779        ANativeWindowBuffer* buf;
1780        err = mNativeWindow->dequeueBuffer(mNativeWindow.get(), &buf);
1781        if (err != 0) {
1782            ALOGE("dequeueBuffer failed: %s (%d)", strerror(-err), -err);
1783            break;
1784        }
1785
1786        sp<GraphicBuffer> graphicBuffer(new GraphicBuffer(buf, false));
1787        BufferInfo info;
1788        info.mData = NULL;
1789        info.mSize = def.nBufferSize;
1790        info.mStatus = OWNED_BY_US;
1791        info.mMem = NULL;
1792        info.mMediaBuffer = new MediaBuffer(graphicBuffer);
1793        info.mMediaBuffer->setObserver(this);
1794        mPortBuffers[kPortIndexOutput].push(info);
1795
1796        IOMX::buffer_id bufferId;
1797        err = mOMX->useGraphicBuffer(mNode, kPortIndexOutput, graphicBuffer,
1798                &bufferId);
1799        if (err != 0) {
1800            CODEC_LOGE("registering GraphicBuffer with OMX IL component "
1801                    "failed: %d", err);
1802            break;
1803        }
1804
1805        mPortBuffers[kPortIndexOutput].editItemAt(i).mBuffer = bufferId;
1806
1807        CODEC_LOGV("registered graphic buffer with ID %p (pointer = %p)",
1808                bufferId, graphicBuffer.get());
1809    }
1810
1811    OMX_U32 cancelStart;
1812    OMX_U32 cancelEnd;
1813    if (err != 0) {
1814        // If an error occurred while dequeuing we need to cancel any buffers
1815        // that were dequeued.
1816        cancelStart = 0;
1817        cancelEnd = mPortBuffers[kPortIndexOutput].size();
1818    } else {
1819        // Return the last two buffers to the native window.
1820        cancelStart = def.nBufferCountActual - minUndequeuedBufs;
1821        cancelEnd = def.nBufferCountActual;
1822    }
1823
1824    for (OMX_U32 i = cancelStart; i < cancelEnd; i++) {
1825        BufferInfo *info = &mPortBuffers[kPortIndexOutput].editItemAt(i);
1826        cancelBufferToNativeWindow(info);
1827    }
1828
1829    return err;
1830}
1831
1832status_t OMXCodec::cancelBufferToNativeWindow(BufferInfo *info) {
1833    CHECK_EQ((int)info->mStatus, (int)OWNED_BY_US);
1834    CODEC_LOGV("Calling cancelBuffer on buffer %p", info->mBuffer);
1835    int err = mNativeWindow->cancelBuffer(
1836        mNativeWindow.get(), info->mMediaBuffer->graphicBuffer().get());
1837    if (err != 0) {
1838      CODEC_LOGE("cancelBuffer failed w/ error 0x%08x", err);
1839
1840      setState(ERROR);
1841      return err;
1842    }
1843    info->mStatus = OWNED_BY_NATIVE_WINDOW;
1844    return OK;
1845}
1846
1847OMXCodec::BufferInfo* OMXCodec::dequeueBufferFromNativeWindow() {
1848    // Dequeue the next buffer from the native window.
1849    ANativeWindowBuffer* buf;
1850    int err = mNativeWindow->dequeueBuffer(mNativeWindow.get(), &buf);
1851    if (err != 0) {
1852      CODEC_LOGE("dequeueBuffer failed w/ error 0x%08x", err);
1853
1854      setState(ERROR);
1855      return 0;
1856    }
1857
1858    // Determine which buffer we just dequeued.
1859    Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexOutput];
1860    BufferInfo *bufInfo = 0;
1861    for (size_t i = 0; i < buffers->size(); i++) {
1862      sp<GraphicBuffer> graphicBuffer = buffers->itemAt(i).
1863          mMediaBuffer->graphicBuffer();
1864      if (graphicBuffer->handle == buf->handle) {
1865        bufInfo = &buffers->editItemAt(i);
1866        break;
1867      }
1868    }
1869
1870    if (bufInfo == 0) {
1871        CODEC_LOGE("dequeued unrecognized buffer: %p", buf);
1872
1873        setState(ERROR);
1874        return 0;
1875    }
1876
1877    // The native window no longer owns the buffer.
1878    CHECK_EQ((int)bufInfo->mStatus, (int)OWNED_BY_NATIVE_WINDOW);
1879    bufInfo->mStatus = OWNED_BY_US;
1880
1881    return bufInfo;
1882}
1883
1884status_t OMXCodec::pushBlankBuffersToNativeWindow() {
1885    status_t err = NO_ERROR;
1886    ANativeWindowBuffer* anb = NULL;
1887    int numBufs = 0;
1888    int minUndequeuedBufs = 0;
1889
1890    // We need to reconnect to the ANativeWindow as a CPU client to ensure that
1891    // no frames get dropped by SurfaceFlinger assuming that these are video
1892    // frames.
1893    err = native_window_api_disconnect(mNativeWindow.get(),
1894            NATIVE_WINDOW_API_MEDIA);
1895    if (err != NO_ERROR) {
1896        ALOGE("error pushing blank frames: api_disconnect failed: %s (%d)",
1897                strerror(-err), -err);
1898        return err;
1899    }
1900
1901    err = native_window_api_connect(mNativeWindow.get(),
1902            NATIVE_WINDOW_API_CPU);
1903    if (err != NO_ERROR) {
1904        ALOGE("error pushing blank frames: api_connect failed: %s (%d)",
1905                strerror(-err), -err);
1906        return err;
1907    }
1908
1909    err = native_window_set_buffers_geometry(mNativeWindow.get(), 1, 1,
1910            HAL_PIXEL_FORMAT_RGBX_8888);
1911    if (err != NO_ERROR) {
1912        ALOGE("error pushing blank frames: set_buffers_geometry failed: %s (%d)",
1913                strerror(-err), -err);
1914        goto error;
1915    }
1916
1917    err = native_window_set_usage(mNativeWindow.get(),
1918            GRALLOC_USAGE_SW_WRITE_OFTEN);
1919    if (err != NO_ERROR) {
1920        ALOGE("error pushing blank frames: set_usage failed: %s (%d)",
1921                strerror(-err), -err);
1922        goto error;
1923    }
1924
1925    err = native_window_set_scaling_mode(mNativeWindow.get(),
1926            NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW);
1927    if (err != OK) {
1928        ALOGE("error pushing blank frames: set_scaling_mode failed: %s (%d)",
1929                strerror(-err), -err);
1930        goto error;
1931    }
1932
1933    err = mNativeWindow->query(mNativeWindow.get(),
1934            NATIVE_WINDOW_MIN_UNDEQUEUED_BUFFERS, &minUndequeuedBufs);
1935    if (err != NO_ERROR) {
1936        ALOGE("error pushing blank frames: MIN_UNDEQUEUED_BUFFERS query "
1937                "failed: %s (%d)", strerror(-err), -err);
1938        goto error;
1939    }
1940
1941    numBufs = minUndequeuedBufs + 1;
1942    err = native_window_set_buffer_count(mNativeWindow.get(), numBufs);
1943    if (err != NO_ERROR) {
1944        ALOGE("error pushing blank frames: set_buffer_count failed: %s (%d)",
1945                strerror(-err), -err);
1946        goto error;
1947    }
1948
1949    // We  push numBufs + 1 buffers to ensure that we've drawn into the same
1950    // buffer twice.  This should guarantee that the buffer has been displayed
1951    // on the screen and then been replaced, so an previous video frames are
1952    // guaranteed NOT to be currently displayed.
1953    for (int i = 0; i < numBufs + 1; i++) {
1954        err = mNativeWindow->dequeueBuffer(mNativeWindow.get(), &anb);
1955        if (err != NO_ERROR) {
1956            ALOGE("error pushing blank frames: dequeueBuffer failed: %s (%d)",
1957                    strerror(-err), -err);
1958            goto error;
1959        }
1960
1961        sp<GraphicBuffer> buf(new GraphicBuffer(anb, false));
1962        err = mNativeWindow->lockBuffer(mNativeWindow.get(),
1963                buf->getNativeBuffer());
1964        if (err != NO_ERROR) {
1965            ALOGE("error pushing blank frames: lockBuffer failed: %s (%d)",
1966                    strerror(-err), -err);
1967            goto error;
1968        }
1969
1970        // Fill the buffer with the a 1x1 checkerboard pattern ;)
1971        uint32_t* img = NULL;
1972        err = buf->lock(GRALLOC_USAGE_SW_WRITE_OFTEN, (void**)(&img));
1973        if (err != NO_ERROR) {
1974            ALOGE("error pushing blank frames: lock failed: %s (%d)",
1975                    strerror(-err), -err);
1976            goto error;
1977        }
1978
1979        *img = 0;
1980
1981        err = buf->unlock();
1982        if (err != NO_ERROR) {
1983            ALOGE("error pushing blank frames: unlock failed: %s (%d)",
1984                    strerror(-err), -err);
1985            goto error;
1986        }
1987
1988        err = mNativeWindow->queueBuffer(mNativeWindow.get(),
1989                buf->getNativeBuffer());
1990        if (err != NO_ERROR) {
1991            ALOGE("error pushing blank frames: queueBuffer failed: %s (%d)",
1992                    strerror(-err), -err);
1993            goto error;
1994        }
1995
1996        anb = NULL;
1997    }
1998
1999error:
2000
2001    if (err != NO_ERROR) {
2002        // Clean up after an error.
2003        if (anb != NULL) {
2004            mNativeWindow->cancelBuffer(mNativeWindow.get(), anb);
2005        }
2006
2007        native_window_api_disconnect(mNativeWindow.get(),
2008                NATIVE_WINDOW_API_CPU);
2009        native_window_api_connect(mNativeWindow.get(),
2010                NATIVE_WINDOW_API_MEDIA);
2011
2012        return err;
2013    } else {
2014        // Clean up after success.
2015        err = native_window_api_disconnect(mNativeWindow.get(),
2016                NATIVE_WINDOW_API_CPU);
2017        if (err != NO_ERROR) {
2018            ALOGE("error pushing blank frames: api_disconnect failed: %s (%d)",
2019                    strerror(-err), -err);
2020            return err;
2021        }
2022
2023        err = native_window_api_connect(mNativeWindow.get(),
2024                NATIVE_WINDOW_API_MEDIA);
2025        if (err != NO_ERROR) {
2026            ALOGE("error pushing blank frames: api_connect failed: %s (%d)",
2027                    strerror(-err), -err);
2028            return err;
2029        }
2030
2031        return NO_ERROR;
2032    }
2033}
2034
2035int64_t OMXCodec::getDecodingTimeUs() {
2036    CHECK(mIsEncoder && mIsVideo);
2037
2038    if (mDecodingTimeList.empty()) {
2039        CHECK(mSignalledEOS || mNoMoreOutputData);
2040        // No corresponding input frame available.
2041        // This could happen when EOS is reached.
2042        return 0;
2043    }
2044
2045    List<int64_t>::iterator it = mDecodingTimeList.begin();
2046    int64_t timeUs = *it;
2047    mDecodingTimeList.erase(it);
2048    return timeUs;
2049}
2050
2051void OMXCodec::on_message(const omx_message &msg) {
2052    if (mState == ERROR) {
2053        /*
2054         * only drop EVENT messages, EBD and FBD are still
2055         * processed for bookkeeping purposes
2056         */
2057        if (msg.type == omx_message::EVENT) {
2058            ALOGW("Dropping OMX EVENT message - we're in ERROR state.");
2059            return;
2060        }
2061    }
2062
2063    switch (msg.type) {
2064        case omx_message::EVENT:
2065        {
2066            onEvent(
2067                 msg.u.event_data.event, msg.u.event_data.data1,
2068                 msg.u.event_data.data2);
2069
2070            break;
2071        }
2072
2073        case omx_message::EMPTY_BUFFER_DONE:
2074        {
2075            IOMX::buffer_id buffer = msg.u.extended_buffer_data.buffer;
2076
2077            CODEC_LOGV("EMPTY_BUFFER_DONE(buffer: %p)", buffer);
2078
2079            Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexInput];
2080            size_t i = 0;
2081            while (i < buffers->size() && (*buffers)[i].mBuffer != buffer) {
2082                ++i;
2083            }
2084
2085            CHECK(i < buffers->size());
2086            if ((*buffers)[i].mStatus != OWNED_BY_COMPONENT) {
2087                ALOGW("We already own input buffer %p, yet received "
2088                     "an EMPTY_BUFFER_DONE.", buffer);
2089            }
2090
2091            BufferInfo* info = &buffers->editItemAt(i);
2092            info->mStatus = OWNED_BY_US;
2093
2094            // Buffer could not be released until empty buffer done is called.
2095            if (info->mMediaBuffer != NULL) {
2096                if (mIsEncoder &&
2097                    (mQuirks & kAvoidMemcopyInputRecordingFrames)) {
2098                    // If zero-copy mode is enabled this will send the
2099                    // input buffer back to the upstream source.
2100                    restorePatchedDataPointer(info);
2101                }
2102
2103                info->mMediaBuffer->release();
2104                info->mMediaBuffer = NULL;
2105            }
2106
2107            if (mPortStatus[kPortIndexInput] == DISABLING) {
2108                CODEC_LOGV("Port is disabled, freeing buffer %p", buffer);
2109
2110                status_t err = freeBuffer(kPortIndexInput, i);
2111                CHECK_EQ(err, (status_t)OK);
2112            } else if (mState != ERROR
2113                    && mPortStatus[kPortIndexInput] != SHUTTING_DOWN) {
2114                CHECK_EQ((int)mPortStatus[kPortIndexInput], (int)ENABLED);
2115
2116                if (mFlags & kUseSecureInputBuffers) {
2117                    drainAnyInputBuffer();
2118                } else {
2119                    drainInputBuffer(&buffers->editItemAt(i));
2120                }
2121            }
2122            break;
2123        }
2124
2125        case omx_message::FILL_BUFFER_DONE:
2126        {
2127            IOMX::buffer_id buffer = msg.u.extended_buffer_data.buffer;
2128            OMX_U32 flags = msg.u.extended_buffer_data.flags;
2129
2130            CODEC_LOGV("FILL_BUFFER_DONE(buffer: %p, size: %ld, flags: 0x%08lx, timestamp: %lld us (%.2f secs))",
2131                 buffer,
2132                 msg.u.extended_buffer_data.range_length,
2133                 flags,
2134                 msg.u.extended_buffer_data.timestamp,
2135                 msg.u.extended_buffer_data.timestamp / 1E6);
2136
2137            Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexOutput];
2138            size_t i = 0;
2139            while (i < buffers->size() && (*buffers)[i].mBuffer != buffer) {
2140                ++i;
2141            }
2142
2143            CHECK(i < buffers->size());
2144            BufferInfo *info = &buffers->editItemAt(i);
2145
2146            if (info->mStatus != OWNED_BY_COMPONENT) {
2147                ALOGW("We already own output buffer %p, yet received "
2148                     "a FILL_BUFFER_DONE.", buffer);
2149            }
2150
2151            info->mStatus = OWNED_BY_US;
2152
2153            if (mPortStatus[kPortIndexOutput] == DISABLING) {
2154                CODEC_LOGV("Port is disabled, freeing buffer %p", buffer);
2155
2156                status_t err = freeBuffer(kPortIndexOutput, i);
2157                CHECK_EQ(err, (status_t)OK);
2158
2159#if 0
2160            } else if (mPortStatus[kPortIndexOutput] == ENABLED
2161                       && (flags & OMX_BUFFERFLAG_EOS)) {
2162                CODEC_LOGV("No more output data.");
2163                mNoMoreOutputData = true;
2164                mBufferFilled.signal();
2165#endif
2166            } else if (mPortStatus[kPortIndexOutput] != SHUTTING_DOWN) {
2167                CHECK_EQ((int)mPortStatus[kPortIndexOutput], (int)ENABLED);
2168
2169                if (info->mMediaBuffer == NULL) {
2170                    CHECK(mOMXLivesLocally);
2171                    CHECK(mQuirks & kRequiresAllocateBufferOnOutputPorts);
2172                    CHECK(mQuirks & kDefersOutputBufferAllocation);
2173
2174                    // The qcom video decoders on Nexus don't actually allocate
2175                    // output buffer memory on a call to OMX_AllocateBuffer
2176                    // the "pBuffer" member of the OMX_BUFFERHEADERTYPE
2177                    // structure is only filled in later.
2178
2179                    info->mMediaBuffer = new MediaBuffer(
2180                            msg.u.extended_buffer_data.data_ptr,
2181                            info->mSize);
2182                    info->mMediaBuffer->setObserver(this);
2183                }
2184
2185                MediaBuffer *buffer = info->mMediaBuffer;
2186                bool isGraphicBuffer = buffer->graphicBuffer() != NULL;
2187
2188                if (!isGraphicBuffer
2189                    && msg.u.extended_buffer_data.range_offset
2190                        + msg.u.extended_buffer_data.range_length
2191                            > buffer->size()) {
2192                    CODEC_LOGE(
2193                            "Codec lied about its buffer size requirements, "
2194                            "sending a buffer larger than the originally "
2195                            "advertised size in FILL_BUFFER_DONE!");
2196                }
2197                buffer->set_range(
2198                        msg.u.extended_buffer_data.range_offset,
2199                        msg.u.extended_buffer_data.range_length);
2200
2201                buffer->meta_data()->clear();
2202
2203                buffer->meta_data()->setInt64(
2204                        kKeyTime, msg.u.extended_buffer_data.timestamp);
2205
2206                if (msg.u.extended_buffer_data.flags & OMX_BUFFERFLAG_SYNCFRAME) {
2207                    buffer->meta_data()->setInt32(kKeyIsSyncFrame, true);
2208                }
2209                bool isCodecSpecific = false;
2210                if (msg.u.extended_buffer_data.flags & OMX_BUFFERFLAG_CODECCONFIG) {
2211                    buffer->meta_data()->setInt32(kKeyIsCodecConfig, true);
2212                    isCodecSpecific = true;
2213                }
2214
2215                if (isGraphicBuffer || mQuirks & kOutputBuffersAreUnreadable) {
2216                    buffer->meta_data()->setInt32(kKeyIsUnreadable, true);
2217                }
2218
2219                buffer->meta_data()->setPointer(
2220                        kKeyPlatformPrivate,
2221                        msg.u.extended_buffer_data.platform_private);
2222
2223                buffer->meta_data()->setPointer(
2224                        kKeyBufferID,
2225                        msg.u.extended_buffer_data.buffer);
2226
2227                if (msg.u.extended_buffer_data.flags & OMX_BUFFERFLAG_EOS) {
2228                    CODEC_LOGV("No more output data.");
2229                    mNoMoreOutputData = true;
2230                }
2231
2232                if (mIsEncoder && mIsVideo) {
2233                    int64_t decodingTimeUs = isCodecSpecific? 0: getDecodingTimeUs();
2234                    buffer->meta_data()->setInt64(kKeyDecodingTime, decodingTimeUs);
2235                }
2236
2237                if (mTargetTimeUs >= 0) {
2238                    CHECK(msg.u.extended_buffer_data.timestamp <= mTargetTimeUs);
2239
2240                    if (msg.u.extended_buffer_data.timestamp < mTargetTimeUs) {
2241                        CODEC_LOGV(
2242                                "skipping output buffer at timestamp %lld us",
2243                                msg.u.extended_buffer_data.timestamp);
2244
2245                        fillOutputBuffer(info);
2246                        break;
2247                    }
2248
2249                    CODEC_LOGV(
2250                            "returning output buffer at target timestamp "
2251                            "%lld us",
2252                            msg.u.extended_buffer_data.timestamp);
2253
2254                    mTargetTimeUs = -1;
2255                }
2256
2257                mFilledBuffers.push_back(i);
2258                mBufferFilled.signal();
2259                if (mIsEncoder) {
2260                    sched_yield();
2261                }
2262            }
2263
2264            break;
2265        }
2266
2267        default:
2268        {
2269            CHECK(!"should not be here.");
2270            break;
2271        }
2272    }
2273}
2274
2275// Has the format changed in any way that the client would have to be aware of?
2276static bool formatHasNotablyChanged(
2277        const sp<MetaData> &from, const sp<MetaData> &to) {
2278    if (from.get() == NULL && to.get() == NULL) {
2279        return false;
2280    }
2281
2282    if ((from.get() == NULL && to.get() != NULL)
2283        || (from.get() != NULL && to.get() == NULL)) {
2284        return true;
2285    }
2286
2287    const char *mime_from, *mime_to;
2288    CHECK(from->findCString(kKeyMIMEType, &mime_from));
2289    CHECK(to->findCString(kKeyMIMEType, &mime_to));
2290
2291    if (strcasecmp(mime_from, mime_to)) {
2292        return true;
2293    }
2294
2295    if (!strcasecmp(mime_from, MEDIA_MIMETYPE_VIDEO_RAW)) {
2296        int32_t colorFormat_from, colorFormat_to;
2297        CHECK(from->findInt32(kKeyColorFormat, &colorFormat_from));
2298        CHECK(to->findInt32(kKeyColorFormat, &colorFormat_to));
2299
2300        if (colorFormat_from != colorFormat_to) {
2301            return true;
2302        }
2303
2304        int32_t width_from, width_to;
2305        CHECK(from->findInt32(kKeyWidth, &width_from));
2306        CHECK(to->findInt32(kKeyWidth, &width_to));
2307
2308        if (width_from != width_to) {
2309            return true;
2310        }
2311
2312        int32_t height_from, height_to;
2313        CHECK(from->findInt32(kKeyHeight, &height_from));
2314        CHECK(to->findInt32(kKeyHeight, &height_to));
2315
2316        if (height_from != height_to) {
2317            return true;
2318        }
2319
2320        int32_t left_from, top_from, right_from, bottom_from;
2321        CHECK(from->findRect(
2322                    kKeyCropRect,
2323                    &left_from, &top_from, &right_from, &bottom_from));
2324
2325        int32_t left_to, top_to, right_to, bottom_to;
2326        CHECK(to->findRect(
2327                    kKeyCropRect,
2328                    &left_to, &top_to, &right_to, &bottom_to));
2329
2330        if (left_to != left_from || top_to != top_from
2331                || right_to != right_from || bottom_to != bottom_from) {
2332            return true;
2333        }
2334    } else if (!strcasecmp(mime_from, MEDIA_MIMETYPE_AUDIO_RAW)) {
2335        int32_t numChannels_from, numChannels_to;
2336        CHECK(from->findInt32(kKeyChannelCount, &numChannels_from));
2337        CHECK(to->findInt32(kKeyChannelCount, &numChannels_to));
2338
2339        if (numChannels_from != numChannels_to) {
2340            return true;
2341        }
2342
2343        int32_t sampleRate_from, sampleRate_to;
2344        CHECK(from->findInt32(kKeySampleRate, &sampleRate_from));
2345        CHECK(to->findInt32(kKeySampleRate, &sampleRate_to));
2346
2347        if (sampleRate_from != sampleRate_to) {
2348            return true;
2349        }
2350    }
2351
2352    return false;
2353}
2354
2355void OMXCodec::onEvent(OMX_EVENTTYPE event, OMX_U32 data1, OMX_U32 data2) {
2356    switch (event) {
2357        case OMX_EventCmdComplete:
2358        {
2359            onCmdComplete((OMX_COMMANDTYPE)data1, data2);
2360            break;
2361        }
2362
2363        case OMX_EventError:
2364        {
2365            CODEC_LOGE("ERROR(0x%08lx, %ld)", data1, data2);
2366
2367            setState(ERROR);
2368            break;
2369        }
2370
2371        case OMX_EventPortSettingsChanged:
2372        {
2373            CODEC_LOGV("OMX_EventPortSettingsChanged(port=%ld, data2=0x%08lx)",
2374                       data1, data2);
2375
2376            if (data2 == 0 || data2 == OMX_IndexParamPortDefinition) {
2377                // There is no need to check whether mFilledBuffers is empty or not
2378                // when the OMX_EventPortSettingsChanged is not meant for reallocating
2379                // the output buffers.
2380                if (data1 == kPortIndexOutput) {
2381                    CHECK(mFilledBuffers.empty());
2382                }
2383                onPortSettingsChanged(data1);
2384            } else if (data1 == kPortIndexOutput &&
2385                        (data2 == OMX_IndexConfigCommonOutputCrop ||
2386                         data2 == OMX_IndexConfigCommonScale)) {
2387
2388                sp<MetaData> oldOutputFormat = mOutputFormat;
2389                initOutputFormat(mSource->getFormat());
2390
2391                if (data2 == OMX_IndexConfigCommonOutputCrop &&
2392                    formatHasNotablyChanged(oldOutputFormat, mOutputFormat)) {
2393                    mOutputPortSettingsHaveChanged = true;
2394
2395                } else if (data2 == OMX_IndexConfigCommonScale) {
2396                    OMX_CONFIG_SCALEFACTORTYPE scale;
2397                    InitOMXParams(&scale);
2398                    scale.nPortIndex = kPortIndexOutput;
2399
2400                    // Change display dimension only when necessary.
2401                    if (OK == mOMX->getConfig(
2402                                        mNode,
2403                                        OMX_IndexConfigCommonScale,
2404                                        &scale, sizeof(scale))) {
2405                        int32_t left, top, right, bottom;
2406                        CHECK(mOutputFormat->findRect(kKeyCropRect,
2407                                                      &left, &top,
2408                                                      &right, &bottom));
2409
2410                        // The scale is in 16.16 format.
2411                        // scale 1.0 = 0x010000. When there is no
2412                        // need to change the display, skip it.
2413                        ALOGV("Get OMX_IndexConfigScale: 0x%lx/0x%lx",
2414                                scale.xWidth, scale.xHeight);
2415
2416                        if (scale.xWidth != 0x010000) {
2417                            mOutputFormat->setInt32(kKeyDisplayWidth,
2418                                    ((right - left +  1) * scale.xWidth)  >> 16);
2419                            mOutputPortSettingsHaveChanged = true;
2420                        }
2421
2422                        if (scale.xHeight != 0x010000) {
2423                            mOutputFormat->setInt32(kKeyDisplayHeight,
2424                                    ((bottom  - top + 1) * scale.xHeight) >> 16);
2425                            mOutputPortSettingsHaveChanged = true;
2426                        }
2427                    }
2428                }
2429            }
2430            break;
2431        }
2432
2433#if 0
2434        case OMX_EventBufferFlag:
2435        {
2436            CODEC_LOGV("EVENT_BUFFER_FLAG(%ld)", data1);
2437
2438            if (data1 == kPortIndexOutput) {
2439                mNoMoreOutputData = true;
2440            }
2441            break;
2442        }
2443#endif
2444
2445        default:
2446        {
2447            CODEC_LOGV("EVENT(%d, %ld, %ld)", event, data1, data2);
2448            break;
2449        }
2450    }
2451}
2452
2453void OMXCodec::onCmdComplete(OMX_COMMANDTYPE cmd, OMX_U32 data) {
2454    switch (cmd) {
2455        case OMX_CommandStateSet:
2456        {
2457            onStateChange((OMX_STATETYPE)data);
2458            break;
2459        }
2460
2461        case OMX_CommandPortDisable:
2462        {
2463            OMX_U32 portIndex = data;
2464            CODEC_LOGV("PORT_DISABLED(%ld)", portIndex);
2465
2466            CHECK(mState == EXECUTING || mState == RECONFIGURING);
2467            CHECK_EQ((int)mPortStatus[portIndex], (int)DISABLING);
2468            CHECK_EQ(mPortBuffers[portIndex].size(), 0u);
2469
2470            mPortStatus[portIndex] = DISABLED;
2471
2472            if (mState == RECONFIGURING) {
2473                CHECK_EQ(portIndex, (OMX_U32)kPortIndexOutput);
2474
2475                sp<MetaData> oldOutputFormat = mOutputFormat;
2476                initOutputFormat(mSource->getFormat());
2477
2478                // Don't notify clients if the output port settings change
2479                // wasn't of importance to them, i.e. it may be that just the
2480                // number of buffers has changed and nothing else.
2481                bool formatChanged = formatHasNotablyChanged(oldOutputFormat, mOutputFormat);
2482                if (!mOutputPortSettingsHaveChanged) {
2483                    mOutputPortSettingsHaveChanged = formatChanged;
2484                }
2485
2486                status_t err = enablePortAsync(portIndex);
2487                if (err != OK) {
2488                    CODEC_LOGE("enablePortAsync(%ld) failed (err = %d)", portIndex, err);
2489                    setState(ERROR);
2490                } else {
2491                    err = allocateBuffersOnPort(portIndex);
2492                    if (err != OK) {
2493                        CODEC_LOGE("allocateBuffersOnPort (%s) failed "
2494                                   "(err = %d)",
2495                                   portIndex == kPortIndexInput
2496                                        ? "input" : "output",
2497                                   err);
2498
2499                        setState(ERROR);
2500                    }
2501                }
2502            }
2503            break;
2504        }
2505
2506        case OMX_CommandPortEnable:
2507        {
2508            OMX_U32 portIndex = data;
2509            CODEC_LOGV("PORT_ENABLED(%ld)", portIndex);
2510
2511            CHECK(mState == EXECUTING || mState == RECONFIGURING);
2512            CHECK_EQ((int)mPortStatus[portIndex], (int)ENABLING);
2513
2514            mPortStatus[portIndex] = ENABLED;
2515
2516            if (mState == RECONFIGURING) {
2517                CHECK_EQ(portIndex, (OMX_U32)kPortIndexOutput);
2518
2519                setState(EXECUTING);
2520
2521                fillOutputBuffers();
2522            }
2523            break;
2524        }
2525
2526        case OMX_CommandFlush:
2527        {
2528            OMX_U32 portIndex = data;
2529
2530            CODEC_LOGV("FLUSH_DONE(%ld)", portIndex);
2531
2532            CHECK_EQ((int)mPortStatus[portIndex], (int)SHUTTING_DOWN);
2533            mPortStatus[portIndex] = ENABLED;
2534
2535            CHECK_EQ(countBuffersWeOwn(mPortBuffers[portIndex]),
2536                     mPortBuffers[portIndex].size());
2537
2538            if (mSkipCutBuffer != NULL && mPortStatus[kPortIndexOutput] == ENABLED) {
2539                mSkipCutBuffer->clear();
2540            }
2541
2542            if (mState == RECONFIGURING) {
2543                CHECK_EQ(portIndex, (OMX_U32)kPortIndexOutput);
2544
2545                disablePortAsync(portIndex);
2546            } else if (mState == EXECUTING_TO_IDLE) {
2547                if (mPortStatus[kPortIndexInput] == ENABLED
2548                    && mPortStatus[kPortIndexOutput] == ENABLED) {
2549                    CODEC_LOGV("Finished flushing both ports, now completing "
2550                         "transition from EXECUTING to IDLE.");
2551
2552                    mPortStatus[kPortIndexInput] = SHUTTING_DOWN;
2553                    mPortStatus[kPortIndexOutput] = SHUTTING_DOWN;
2554
2555                    status_t err =
2556                        mOMX->sendCommand(mNode, OMX_CommandStateSet, OMX_StateIdle);
2557                    CHECK_EQ(err, (status_t)OK);
2558                }
2559            } else {
2560                // We're flushing both ports in preparation for seeking.
2561
2562                if (mPortStatus[kPortIndexInput] == ENABLED
2563                    && mPortStatus[kPortIndexOutput] == ENABLED) {
2564                    CODEC_LOGV("Finished flushing both ports, now continuing from"
2565                         " seek-time.");
2566
2567                    // We implicitly resume pulling on our upstream source.
2568                    mPaused = false;
2569
2570                    drainInputBuffers();
2571                    fillOutputBuffers();
2572                }
2573
2574                if (mOutputPortSettingsChangedPending) {
2575                    CODEC_LOGV(
2576                            "Honoring deferred output port settings change.");
2577
2578                    mOutputPortSettingsChangedPending = false;
2579                    onPortSettingsChanged(kPortIndexOutput);
2580                }
2581            }
2582
2583            break;
2584        }
2585
2586        default:
2587        {
2588            CODEC_LOGV("CMD_COMPLETE(%d, %ld)", cmd, data);
2589            break;
2590        }
2591    }
2592}
2593
2594void OMXCodec::onStateChange(OMX_STATETYPE newState) {
2595    CODEC_LOGV("onStateChange %d", newState);
2596
2597    switch (newState) {
2598        case OMX_StateIdle:
2599        {
2600            CODEC_LOGV("Now Idle.");
2601            if (mState == LOADED_TO_IDLE) {
2602                status_t err = mOMX->sendCommand(
2603                        mNode, OMX_CommandStateSet, OMX_StateExecuting);
2604
2605                CHECK_EQ(err, (status_t)OK);
2606
2607                setState(IDLE_TO_EXECUTING);
2608            } else {
2609                CHECK_EQ((int)mState, (int)EXECUTING_TO_IDLE);
2610
2611                if (countBuffersWeOwn(mPortBuffers[kPortIndexInput]) !=
2612                    mPortBuffers[kPortIndexInput].size()) {
2613                    ALOGE("Codec did not return all input buffers "
2614                          "(received %d / %d)",
2615                            countBuffersWeOwn(mPortBuffers[kPortIndexInput]),
2616                            mPortBuffers[kPortIndexInput].size());
2617                    TRESPASS();
2618                }
2619
2620                if (countBuffersWeOwn(mPortBuffers[kPortIndexOutput]) !=
2621                    mPortBuffers[kPortIndexOutput].size()) {
2622                    ALOGE("Codec did not return all output buffers "
2623                          "(received %d / %d)",
2624                            countBuffersWeOwn(mPortBuffers[kPortIndexOutput]),
2625                            mPortBuffers[kPortIndexOutput].size());
2626                    TRESPASS();
2627                }
2628
2629                status_t err = mOMX->sendCommand(
2630                        mNode, OMX_CommandStateSet, OMX_StateLoaded);
2631
2632                CHECK_EQ(err, (status_t)OK);
2633
2634                err = freeBuffersOnPort(kPortIndexInput);
2635                CHECK_EQ(err, (status_t)OK);
2636
2637                err = freeBuffersOnPort(kPortIndexOutput);
2638                CHECK_EQ(err, (status_t)OK);
2639
2640                mPortStatus[kPortIndexInput] = ENABLED;
2641                mPortStatus[kPortIndexOutput] = ENABLED;
2642
2643                if ((mFlags & kEnableGrallocUsageProtected) &&
2644                        mNativeWindow != NULL) {
2645                    // We push enough 1x1 blank buffers to ensure that one of
2646                    // them has made it to the display.  This allows the OMX
2647                    // component teardown to zero out any protected buffers
2648                    // without the risk of scanning out one of those buffers.
2649                    pushBlankBuffersToNativeWindow();
2650                }
2651
2652                setState(IDLE_TO_LOADED);
2653            }
2654            break;
2655        }
2656
2657        case OMX_StateExecuting:
2658        {
2659            CHECK_EQ((int)mState, (int)IDLE_TO_EXECUTING);
2660
2661            CODEC_LOGV("Now Executing.");
2662
2663            mOutputPortSettingsChangedPending = false;
2664
2665            setState(EXECUTING);
2666
2667            // Buffers will be submitted to the component in the first
2668            // call to OMXCodec::read as mInitialBufferSubmit is true at
2669            // this point. This ensures that this on_message call returns,
2670            // releases the lock and ::init can notice the state change and
2671            // itself return.
2672            break;
2673        }
2674
2675        case OMX_StateLoaded:
2676        {
2677            CHECK_EQ((int)mState, (int)IDLE_TO_LOADED);
2678
2679            CODEC_LOGV("Now Loaded.");
2680
2681            setState(LOADED);
2682            break;
2683        }
2684
2685        case OMX_StateInvalid:
2686        {
2687            setState(ERROR);
2688            break;
2689        }
2690
2691        default:
2692        {
2693            CHECK(!"should not be here.");
2694            break;
2695        }
2696    }
2697}
2698
2699// static
2700size_t OMXCodec::countBuffersWeOwn(const Vector<BufferInfo> &buffers) {
2701    size_t n = 0;
2702    for (size_t i = 0; i < buffers.size(); ++i) {
2703        if (buffers[i].mStatus != OWNED_BY_COMPONENT) {
2704            ++n;
2705        }
2706    }
2707
2708    return n;
2709}
2710
2711status_t OMXCodec::freeBuffersOnPort(
2712        OMX_U32 portIndex, bool onlyThoseWeOwn) {
2713    Vector<BufferInfo> *buffers = &mPortBuffers[portIndex];
2714
2715    status_t stickyErr = OK;
2716
2717    for (size_t i = buffers->size(); i-- > 0;) {
2718        BufferInfo *info = &buffers->editItemAt(i);
2719
2720        if (onlyThoseWeOwn && info->mStatus == OWNED_BY_COMPONENT) {
2721            continue;
2722        }
2723
2724        CHECK(info->mStatus == OWNED_BY_US
2725                || info->mStatus == OWNED_BY_NATIVE_WINDOW);
2726
2727        CODEC_LOGV("freeing buffer %p on port %ld", info->mBuffer, portIndex);
2728
2729        status_t err = freeBuffer(portIndex, i);
2730
2731        if (err != OK) {
2732            stickyErr = err;
2733        }
2734
2735    }
2736
2737    CHECK(onlyThoseWeOwn || buffers->isEmpty());
2738
2739    return stickyErr;
2740}
2741
2742status_t OMXCodec::freeBuffer(OMX_U32 portIndex, size_t bufIndex) {
2743    Vector<BufferInfo> *buffers = &mPortBuffers[portIndex];
2744
2745    BufferInfo *info = &buffers->editItemAt(bufIndex);
2746
2747    status_t err = mOMX->freeBuffer(mNode, portIndex, info->mBuffer);
2748
2749    if (err == OK && info->mMediaBuffer != NULL) {
2750        CHECK_EQ(portIndex, (OMX_U32)kPortIndexOutput);
2751        info->mMediaBuffer->setObserver(NULL);
2752
2753        // Make sure nobody but us owns this buffer at this point.
2754        CHECK_EQ(info->mMediaBuffer->refcount(), 0);
2755
2756        // Cancel the buffer if it belongs to an ANativeWindow.
2757        sp<GraphicBuffer> graphicBuffer = info->mMediaBuffer->graphicBuffer();
2758        if (info->mStatus == OWNED_BY_US && graphicBuffer != 0) {
2759            err = cancelBufferToNativeWindow(info);
2760        }
2761
2762        info->mMediaBuffer->release();
2763        info->mMediaBuffer = NULL;
2764    }
2765
2766    if (err == OK) {
2767        buffers->removeAt(bufIndex);
2768    }
2769
2770    return err;
2771}
2772
2773void OMXCodec::onPortSettingsChanged(OMX_U32 portIndex) {
2774    CODEC_LOGV("PORT_SETTINGS_CHANGED(%ld)", portIndex);
2775
2776    CHECK_EQ((int)mState, (int)EXECUTING);
2777    CHECK_EQ(portIndex, (OMX_U32)kPortIndexOutput);
2778    CHECK(!mOutputPortSettingsChangedPending);
2779
2780    if (mPortStatus[kPortIndexOutput] != ENABLED) {
2781        CODEC_LOGV("Deferring output port settings change.");
2782        mOutputPortSettingsChangedPending = true;
2783        return;
2784    }
2785
2786    setState(RECONFIGURING);
2787
2788    if (mQuirks & kNeedsFlushBeforeDisable) {
2789        if (!flushPortAsync(portIndex)) {
2790            onCmdComplete(OMX_CommandFlush, portIndex);
2791        }
2792    } else {
2793        disablePortAsync(portIndex);
2794    }
2795}
2796
2797bool OMXCodec::flushPortAsync(OMX_U32 portIndex) {
2798    CHECK(mState == EXECUTING || mState == RECONFIGURING
2799            || mState == EXECUTING_TO_IDLE);
2800
2801    CODEC_LOGV("flushPortAsync(%ld): we own %d out of %d buffers already.",
2802         portIndex, countBuffersWeOwn(mPortBuffers[portIndex]),
2803         mPortBuffers[portIndex].size());
2804
2805    CHECK_EQ((int)mPortStatus[portIndex], (int)ENABLED);
2806    mPortStatus[portIndex] = SHUTTING_DOWN;
2807
2808    if ((mQuirks & kRequiresFlushCompleteEmulation)
2809        && countBuffersWeOwn(mPortBuffers[portIndex])
2810                == mPortBuffers[portIndex].size()) {
2811        // No flush is necessary and this component fails to send a
2812        // flush-complete event in this case.
2813
2814        return false;
2815    }
2816
2817    status_t err =
2818        mOMX->sendCommand(mNode, OMX_CommandFlush, portIndex);
2819    CHECK_EQ(err, (status_t)OK);
2820
2821    return true;
2822}
2823
2824void OMXCodec::disablePortAsync(OMX_U32 portIndex) {
2825    CHECK(mState == EXECUTING || mState == RECONFIGURING);
2826
2827    CHECK_EQ((int)mPortStatus[portIndex], (int)ENABLED);
2828    mPortStatus[portIndex] = DISABLING;
2829
2830    CODEC_LOGV("sending OMX_CommandPortDisable(%ld)", portIndex);
2831    status_t err =
2832        mOMX->sendCommand(mNode, OMX_CommandPortDisable, portIndex);
2833    CHECK_EQ(err, (status_t)OK);
2834
2835    freeBuffersOnPort(portIndex, true);
2836}
2837
2838status_t OMXCodec::enablePortAsync(OMX_U32 portIndex) {
2839    CHECK(mState == EXECUTING || mState == RECONFIGURING);
2840
2841    CHECK_EQ((int)mPortStatus[portIndex], (int)DISABLED);
2842    mPortStatus[portIndex] = ENABLING;
2843
2844    CODEC_LOGV("sending OMX_CommandPortEnable(%ld)", portIndex);
2845    return mOMX->sendCommand(mNode, OMX_CommandPortEnable, portIndex);
2846}
2847
2848void OMXCodec::fillOutputBuffers() {
2849    CHECK_EQ((int)mState, (int)EXECUTING);
2850
2851    // This is a workaround for some decoders not properly reporting
2852    // end-of-output-stream. If we own all input buffers and also own
2853    // all output buffers and we already signalled end-of-input-stream,
2854    // the end-of-output-stream is implied.
2855    if (mSignalledEOS
2856            && countBuffersWeOwn(mPortBuffers[kPortIndexInput])
2857                == mPortBuffers[kPortIndexInput].size()
2858            && countBuffersWeOwn(mPortBuffers[kPortIndexOutput])
2859                == mPortBuffers[kPortIndexOutput].size()) {
2860        mNoMoreOutputData = true;
2861        mBufferFilled.signal();
2862
2863        return;
2864    }
2865
2866    Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexOutput];
2867    for (size_t i = 0; i < buffers->size(); ++i) {
2868        BufferInfo *info = &buffers->editItemAt(i);
2869        if (info->mStatus == OWNED_BY_US) {
2870            fillOutputBuffer(&buffers->editItemAt(i));
2871        }
2872    }
2873}
2874
2875void OMXCodec::drainInputBuffers() {
2876    CHECK(mState == EXECUTING || mState == RECONFIGURING);
2877
2878    if (mFlags & kUseSecureInputBuffers) {
2879        Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexInput];
2880        for (size_t i = 0; i < buffers->size(); ++i) {
2881            if (!drainAnyInputBuffer()
2882                    || (mFlags & kOnlySubmitOneInputBufferAtOneTime)) {
2883                break;
2884            }
2885        }
2886    } else {
2887        Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexInput];
2888        for (size_t i = 0; i < buffers->size(); ++i) {
2889            BufferInfo *info = &buffers->editItemAt(i);
2890
2891            if (info->mStatus != OWNED_BY_US) {
2892                continue;
2893            }
2894
2895            if (!drainInputBuffer(info)) {
2896                break;
2897            }
2898
2899            if (mFlags & kOnlySubmitOneInputBufferAtOneTime) {
2900                break;
2901            }
2902        }
2903    }
2904}
2905
2906bool OMXCodec::drainAnyInputBuffer() {
2907    return drainInputBuffer((BufferInfo *)NULL);
2908}
2909
2910OMXCodec::BufferInfo *OMXCodec::findInputBufferByDataPointer(void *ptr) {
2911    Vector<BufferInfo> *infos = &mPortBuffers[kPortIndexInput];
2912    for (size_t i = 0; i < infos->size(); ++i) {
2913        BufferInfo *info = &infos->editItemAt(i);
2914
2915        if (info->mData == ptr) {
2916            CODEC_LOGV(
2917                    "input buffer data ptr = %p, buffer_id = %p",
2918                    ptr,
2919                    info->mBuffer);
2920
2921            return info;
2922        }
2923    }
2924
2925    TRESPASS();
2926}
2927
2928OMXCodec::BufferInfo *OMXCodec::findEmptyInputBuffer() {
2929    Vector<BufferInfo> *infos = &mPortBuffers[kPortIndexInput];
2930    for (size_t i = 0; i < infos->size(); ++i) {
2931        BufferInfo *info = &infos->editItemAt(i);
2932
2933        if (info->mStatus == OWNED_BY_US) {
2934            return info;
2935        }
2936    }
2937
2938    TRESPASS();
2939}
2940
2941bool OMXCodec::drainInputBuffer(BufferInfo *info) {
2942    if (info != NULL) {
2943        CHECK_EQ((int)info->mStatus, (int)OWNED_BY_US);
2944    }
2945
2946    if (mSignalledEOS) {
2947        return false;
2948    }
2949
2950    if (mCodecSpecificDataIndex < mCodecSpecificData.size()) {
2951        CHECK(!(mFlags & kUseSecureInputBuffers));
2952
2953        const CodecSpecificData *specific =
2954            mCodecSpecificData[mCodecSpecificDataIndex];
2955
2956        size_t size = specific->mSize;
2957
2958        if (!strcasecmp(MEDIA_MIMETYPE_VIDEO_AVC, mMIME)
2959                && !(mQuirks & kWantsNALFragments)) {
2960            static const uint8_t kNALStartCode[4] =
2961                    { 0x00, 0x00, 0x00, 0x01 };
2962
2963            CHECK(info->mSize >= specific->mSize + 4);
2964
2965            size += 4;
2966
2967            memcpy(info->mData, kNALStartCode, 4);
2968            memcpy((uint8_t *)info->mData + 4,
2969                   specific->mData, specific->mSize);
2970        } else {
2971            CHECK(info->mSize >= specific->mSize);
2972            memcpy(info->mData, specific->mData, specific->mSize);
2973        }
2974
2975        mNoMoreOutputData = false;
2976
2977        CODEC_LOGV("calling emptyBuffer with codec specific data");
2978
2979        status_t err = mOMX->emptyBuffer(
2980                mNode, info->mBuffer, 0, size,
2981                OMX_BUFFERFLAG_ENDOFFRAME | OMX_BUFFERFLAG_CODECCONFIG,
2982                0);
2983        CHECK_EQ(err, (status_t)OK);
2984
2985        info->mStatus = OWNED_BY_COMPONENT;
2986
2987        ++mCodecSpecificDataIndex;
2988        return true;
2989    }
2990
2991    if (mPaused) {
2992        return false;
2993    }
2994
2995    status_t err;
2996
2997    bool signalEOS = false;
2998    int64_t timestampUs = 0;
2999
3000    size_t offset = 0;
3001    int32_t n = 0;
3002
3003
3004    for (;;) {
3005        MediaBuffer *srcBuffer;
3006        if (mSeekTimeUs >= 0) {
3007            if (mLeftOverBuffer) {
3008                mLeftOverBuffer->release();
3009                mLeftOverBuffer = NULL;
3010            }
3011
3012            MediaSource::ReadOptions options;
3013            options.setSeekTo(mSeekTimeUs, mSeekMode);
3014
3015            mSeekTimeUs = -1;
3016            mSeekMode = ReadOptions::SEEK_CLOSEST_SYNC;
3017            mBufferFilled.signal();
3018
3019            err = mSource->read(&srcBuffer, &options);
3020
3021            if (err == OK) {
3022                int64_t targetTimeUs;
3023                if (srcBuffer->meta_data()->findInt64(
3024                            kKeyTargetTime, &targetTimeUs)
3025                        && targetTimeUs >= 0) {
3026                    CODEC_LOGV("targetTimeUs = %lld us", targetTimeUs);
3027                    mTargetTimeUs = targetTimeUs;
3028                } else {
3029                    mTargetTimeUs = -1;
3030                }
3031            }
3032        } else if (mLeftOverBuffer) {
3033            srcBuffer = mLeftOverBuffer;
3034            mLeftOverBuffer = NULL;
3035
3036            err = OK;
3037        } else {
3038            err = mSource->read(&srcBuffer);
3039        }
3040
3041        if (err != OK) {
3042            signalEOS = true;
3043            mFinalStatus = err;
3044            mSignalledEOS = true;
3045            mBufferFilled.signal();
3046            break;
3047        }
3048
3049        if (mFlags & kUseSecureInputBuffers) {
3050            info = findInputBufferByDataPointer(srcBuffer->data());
3051            CHECK(info != NULL);
3052        }
3053
3054        size_t remainingBytes = info->mSize - offset;
3055
3056        if (srcBuffer->range_length() > remainingBytes) {
3057            if (offset == 0) {
3058                CODEC_LOGE(
3059                     "Codec's input buffers are too small to accomodate "
3060                     "buffer read from source (info->mSize = %d, srcLength = %d)",
3061                     info->mSize, srcBuffer->range_length());
3062
3063                srcBuffer->release();
3064                srcBuffer = NULL;
3065
3066                setState(ERROR);
3067                return false;
3068            }
3069
3070            mLeftOverBuffer = srcBuffer;
3071            break;
3072        }
3073
3074        bool releaseBuffer = true;
3075        if (mIsEncoder && (mQuirks & kAvoidMemcopyInputRecordingFrames)) {
3076            CHECK(mOMXLivesLocally && offset == 0);
3077
3078            OMX_BUFFERHEADERTYPE *header =
3079                (OMX_BUFFERHEADERTYPE *)info->mBuffer;
3080
3081            CHECK(header->pBuffer == info->mData);
3082
3083            header->pBuffer =
3084                (OMX_U8 *)srcBuffer->data() + srcBuffer->range_offset();
3085
3086            releaseBuffer = false;
3087            info->mMediaBuffer = srcBuffer;
3088        } else {
3089            if (mFlags & kStoreMetaDataInVideoBuffers) {
3090                releaseBuffer = false;
3091                info->mMediaBuffer = srcBuffer;
3092            }
3093
3094            if (mFlags & kUseSecureInputBuffers) {
3095                // Data in "info" is already provided at this time.
3096
3097                releaseBuffer = false;
3098
3099                CHECK(info->mMediaBuffer == NULL);
3100                info->mMediaBuffer = srcBuffer;
3101            } else {
3102                CHECK(srcBuffer->data() != NULL) ;
3103                memcpy((uint8_t *)info->mData + offset,
3104                        (const uint8_t *)srcBuffer->data()
3105                            + srcBuffer->range_offset(),
3106                        srcBuffer->range_length());
3107            }
3108        }
3109
3110        int64_t lastBufferTimeUs;
3111        CHECK(srcBuffer->meta_data()->findInt64(kKeyTime, &lastBufferTimeUs));
3112        CHECK(lastBufferTimeUs >= 0);
3113        if (mIsEncoder && mIsVideo) {
3114            mDecodingTimeList.push_back(lastBufferTimeUs);
3115        }
3116
3117        if (offset == 0) {
3118            timestampUs = lastBufferTimeUs;
3119        }
3120
3121        offset += srcBuffer->range_length();
3122
3123        if (!strcasecmp(MEDIA_MIMETYPE_AUDIO_VORBIS, mMIME)) {
3124            CHECK(!(mQuirks & kSupportsMultipleFramesPerInputBuffer));
3125            CHECK_GE(info->mSize, offset + sizeof(int32_t));
3126
3127            int32_t numPageSamples;
3128            if (!srcBuffer->meta_data()->findInt32(
3129                        kKeyValidSamples, &numPageSamples)) {
3130                numPageSamples = -1;
3131            }
3132
3133            memcpy((uint8_t *)info->mData + offset,
3134                   &numPageSamples,
3135                   sizeof(numPageSamples));
3136
3137            offset += sizeof(numPageSamples);
3138        }
3139
3140        if (releaseBuffer) {
3141            srcBuffer->release();
3142            srcBuffer = NULL;
3143        }
3144
3145        ++n;
3146
3147        if (!(mQuirks & kSupportsMultipleFramesPerInputBuffer)) {
3148            break;
3149        }
3150
3151        int64_t coalescedDurationUs = lastBufferTimeUs - timestampUs;
3152
3153        if (coalescedDurationUs > 250000ll) {
3154            // Don't coalesce more than 250ms worth of encoded data at once.
3155            break;
3156        }
3157    }
3158
3159    if (n > 1) {
3160        ALOGV("coalesced %d frames into one input buffer", n);
3161    }
3162
3163    OMX_U32 flags = OMX_BUFFERFLAG_ENDOFFRAME;
3164
3165    if (signalEOS) {
3166        flags |= OMX_BUFFERFLAG_EOS;
3167    } else {
3168        mNoMoreOutputData = false;
3169    }
3170
3171    if (info == NULL) {
3172        CHECK(mFlags & kUseSecureInputBuffers);
3173        CHECK(signalEOS);
3174
3175        // This is fishy, there's still a MediaBuffer corresponding to this
3176        // info available to the source at this point even though we're going
3177        // to use it to signal EOS to the codec.
3178        info = findEmptyInputBuffer();
3179    }
3180
3181    CODEC_LOGV("Calling emptyBuffer on buffer %p (length %d), "
3182               "timestamp %lld us (%.2f secs)",
3183               info->mBuffer, offset,
3184               timestampUs, timestampUs / 1E6);
3185
3186    err = mOMX->emptyBuffer(
3187            mNode, info->mBuffer, 0, offset,
3188            flags, timestampUs);
3189
3190    if (err != OK) {
3191        setState(ERROR);
3192        return false;
3193    }
3194
3195    info->mStatus = OWNED_BY_COMPONENT;
3196
3197    return true;
3198}
3199
3200void OMXCodec::fillOutputBuffer(BufferInfo *info) {
3201    CHECK_EQ((int)info->mStatus, (int)OWNED_BY_US);
3202
3203    if (mNoMoreOutputData) {
3204        CODEC_LOGV("There is no more output data available, not "
3205             "calling fillOutputBuffer");
3206        return;
3207    }
3208
3209    if (info->mMediaBuffer != NULL) {
3210        sp<GraphicBuffer> graphicBuffer = info->mMediaBuffer->graphicBuffer();
3211        if (graphicBuffer != 0) {
3212            // When using a native buffer we need to lock the buffer before
3213            // giving it to OMX.
3214            CODEC_LOGV("Calling lockBuffer on %p", info->mBuffer);
3215            int err = mNativeWindow->lockBuffer(mNativeWindow.get(),
3216                    graphicBuffer.get());
3217            if (err != 0) {
3218                CODEC_LOGE("lockBuffer failed w/ error 0x%08x", err);
3219
3220                setState(ERROR);
3221                return;
3222            }
3223        }
3224    }
3225
3226    CODEC_LOGV("Calling fillBuffer on buffer %p", info->mBuffer);
3227    status_t err = mOMX->fillBuffer(mNode, info->mBuffer);
3228
3229    if (err != OK) {
3230        CODEC_LOGE("fillBuffer failed w/ error 0x%08x", err);
3231
3232        setState(ERROR);
3233        return;
3234    }
3235
3236    info->mStatus = OWNED_BY_COMPONENT;
3237}
3238
3239bool OMXCodec::drainInputBuffer(IOMX::buffer_id buffer) {
3240    Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexInput];
3241    for (size_t i = 0; i < buffers->size(); ++i) {
3242        if ((*buffers)[i].mBuffer == buffer) {
3243            return drainInputBuffer(&buffers->editItemAt(i));
3244        }
3245    }
3246
3247    CHECK(!"should not be here.");
3248
3249    return false;
3250}
3251
3252void OMXCodec::fillOutputBuffer(IOMX::buffer_id buffer) {
3253    Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexOutput];
3254    for (size_t i = 0; i < buffers->size(); ++i) {
3255        if ((*buffers)[i].mBuffer == buffer) {
3256            fillOutputBuffer(&buffers->editItemAt(i));
3257            return;
3258        }
3259    }
3260
3261    CHECK(!"should not be here.");
3262}
3263
3264void OMXCodec::setState(State newState) {
3265    mState = newState;
3266    mAsyncCompletion.signal();
3267
3268    // This may cause some spurious wakeups but is necessary to
3269    // unblock the reader if we enter ERROR state.
3270    mBufferFilled.signal();
3271}
3272
3273status_t OMXCodec::waitForBufferFilled_l() {
3274
3275    if (mIsEncoder) {
3276        // For timelapse video recording, the timelapse video recording may
3277        // not send an input frame for a _long_ time. Do not use timeout
3278        // for video encoding.
3279        return mBufferFilled.wait(mLock);
3280    }
3281    status_t err = mBufferFilled.waitRelative(mLock, kBufferFilledEventTimeOutNs);
3282    if (err != OK) {
3283        CODEC_LOGE("Timed out waiting for output buffers: %d/%d",
3284            countBuffersWeOwn(mPortBuffers[kPortIndexInput]),
3285            countBuffersWeOwn(mPortBuffers[kPortIndexOutput]));
3286    }
3287    return err;
3288}
3289
3290void OMXCodec::setRawAudioFormat(
3291        OMX_U32 portIndex, int32_t sampleRate, int32_t numChannels) {
3292
3293    // port definition
3294    OMX_PARAM_PORTDEFINITIONTYPE def;
3295    InitOMXParams(&def);
3296    def.nPortIndex = portIndex;
3297    status_t err = mOMX->getParameter(
3298            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
3299    CHECK_EQ(err, (status_t)OK);
3300    def.format.audio.eEncoding = OMX_AUDIO_CodingPCM;
3301    CHECK_EQ(mOMX->setParameter(mNode, OMX_IndexParamPortDefinition,
3302            &def, sizeof(def)), (status_t)OK);
3303
3304    // pcm param
3305    OMX_AUDIO_PARAM_PCMMODETYPE pcmParams;
3306    InitOMXParams(&pcmParams);
3307    pcmParams.nPortIndex = portIndex;
3308
3309    err = mOMX->getParameter(
3310            mNode, OMX_IndexParamAudioPcm, &pcmParams, sizeof(pcmParams));
3311
3312    CHECK_EQ(err, (status_t)OK);
3313
3314    pcmParams.nChannels = numChannels;
3315    pcmParams.eNumData = OMX_NumericalDataSigned;
3316    pcmParams.bInterleaved = OMX_TRUE;
3317    pcmParams.nBitPerSample = 16;
3318    pcmParams.nSamplingRate = sampleRate;
3319    pcmParams.ePCMMode = OMX_AUDIO_PCMModeLinear;
3320
3321    CHECK_EQ(getOMXChannelMapping(
3322                numChannels, pcmParams.eChannelMapping), (status_t)OK);
3323
3324    err = mOMX->setParameter(
3325            mNode, OMX_IndexParamAudioPcm, &pcmParams, sizeof(pcmParams));
3326
3327    CHECK_EQ(err, (status_t)OK);
3328}
3329
3330static OMX_AUDIO_AMRBANDMODETYPE pickModeFromBitRate(bool isAMRWB, int32_t bps) {
3331    if (isAMRWB) {
3332        if (bps <= 6600) {
3333            return OMX_AUDIO_AMRBandModeWB0;
3334        } else if (bps <= 8850) {
3335            return OMX_AUDIO_AMRBandModeWB1;
3336        } else if (bps <= 12650) {
3337            return OMX_AUDIO_AMRBandModeWB2;
3338        } else if (bps <= 14250) {
3339            return OMX_AUDIO_AMRBandModeWB3;
3340        } else if (bps <= 15850) {
3341            return OMX_AUDIO_AMRBandModeWB4;
3342        } else if (bps <= 18250) {
3343            return OMX_AUDIO_AMRBandModeWB5;
3344        } else if (bps <= 19850) {
3345            return OMX_AUDIO_AMRBandModeWB6;
3346        } else if (bps <= 23050) {
3347            return OMX_AUDIO_AMRBandModeWB7;
3348        }
3349
3350        // 23850 bps
3351        return OMX_AUDIO_AMRBandModeWB8;
3352    } else {  // AMRNB
3353        if (bps <= 4750) {
3354            return OMX_AUDIO_AMRBandModeNB0;
3355        } else if (bps <= 5150) {
3356            return OMX_AUDIO_AMRBandModeNB1;
3357        } else if (bps <= 5900) {
3358            return OMX_AUDIO_AMRBandModeNB2;
3359        } else if (bps <= 6700) {
3360            return OMX_AUDIO_AMRBandModeNB3;
3361        } else if (bps <= 7400) {
3362            return OMX_AUDIO_AMRBandModeNB4;
3363        } else if (bps <= 7950) {
3364            return OMX_AUDIO_AMRBandModeNB5;
3365        } else if (bps <= 10200) {
3366            return OMX_AUDIO_AMRBandModeNB6;
3367        }
3368
3369        // 12200 bps
3370        return OMX_AUDIO_AMRBandModeNB7;
3371    }
3372}
3373
3374void OMXCodec::setAMRFormat(bool isWAMR, int32_t bitRate) {
3375    OMX_U32 portIndex = mIsEncoder ? kPortIndexOutput : kPortIndexInput;
3376
3377    OMX_AUDIO_PARAM_AMRTYPE def;
3378    InitOMXParams(&def);
3379    def.nPortIndex = portIndex;
3380
3381    status_t err =
3382        mOMX->getParameter(mNode, OMX_IndexParamAudioAmr, &def, sizeof(def));
3383
3384    CHECK_EQ(err, (status_t)OK);
3385
3386    def.eAMRFrameFormat = OMX_AUDIO_AMRFrameFormatFSF;
3387
3388    def.eAMRBandMode = pickModeFromBitRate(isWAMR, bitRate);
3389    err = mOMX->setParameter(mNode, OMX_IndexParamAudioAmr, &def, sizeof(def));
3390    CHECK_EQ(err, (status_t)OK);
3391
3392    ////////////////////////
3393
3394    if (mIsEncoder) {
3395        sp<MetaData> format = mSource->getFormat();
3396        int32_t sampleRate;
3397        int32_t numChannels;
3398        CHECK(format->findInt32(kKeySampleRate, &sampleRate));
3399        CHECK(format->findInt32(kKeyChannelCount, &numChannels));
3400
3401        setRawAudioFormat(kPortIndexInput, sampleRate, numChannels);
3402    }
3403}
3404
3405status_t OMXCodec::setAACFormat(
3406        int32_t numChannels, int32_t sampleRate, int32_t bitRate, int32_t aacProfile, bool isADTS) {
3407    if (numChannels > 2) {
3408        ALOGW("Number of channels: (%d) \n", numChannels);
3409    }
3410
3411    if (mIsEncoder) {
3412        if (isADTS) {
3413            return -EINVAL;
3414        }
3415
3416        //////////////// input port ////////////////////
3417        setRawAudioFormat(kPortIndexInput, sampleRate, numChannels);
3418
3419        //////////////// output port ////////////////////
3420        // format
3421        OMX_AUDIO_PARAM_PORTFORMATTYPE format;
3422        InitOMXParams(&format);
3423        format.nPortIndex = kPortIndexOutput;
3424        format.nIndex = 0;
3425        status_t err = OMX_ErrorNone;
3426        while (OMX_ErrorNone == err) {
3427            CHECK_EQ(mOMX->getParameter(mNode, OMX_IndexParamAudioPortFormat,
3428                    &format, sizeof(format)), (status_t)OK);
3429            if (format.eEncoding == OMX_AUDIO_CodingAAC) {
3430                break;
3431            }
3432            format.nIndex++;
3433        }
3434        CHECK_EQ((status_t)OK, err);
3435        CHECK_EQ(mOMX->setParameter(mNode, OMX_IndexParamAudioPortFormat,
3436                &format, sizeof(format)), (status_t)OK);
3437
3438        // port definition
3439        OMX_PARAM_PORTDEFINITIONTYPE def;
3440        InitOMXParams(&def);
3441        def.nPortIndex = kPortIndexOutput;
3442        CHECK_EQ(mOMX->getParameter(mNode, OMX_IndexParamPortDefinition,
3443                &def, sizeof(def)), (status_t)OK);
3444        def.format.audio.bFlagErrorConcealment = OMX_TRUE;
3445        def.format.audio.eEncoding = OMX_AUDIO_CodingAAC;
3446        CHECK_EQ(mOMX->setParameter(mNode, OMX_IndexParamPortDefinition,
3447                &def, sizeof(def)), (status_t)OK);
3448
3449        // profile
3450        OMX_AUDIO_PARAM_AACPROFILETYPE profile;
3451        InitOMXParams(&profile);
3452        profile.nPortIndex = kPortIndexOutput;
3453        CHECK_EQ(mOMX->getParameter(mNode, OMX_IndexParamAudioAac,
3454                &profile, sizeof(profile)), (status_t)OK);
3455        profile.nChannels = numChannels;
3456        profile.eChannelMode = (numChannels == 1?
3457                OMX_AUDIO_ChannelModeMono: OMX_AUDIO_ChannelModeStereo);
3458        profile.nSampleRate = sampleRate;
3459        profile.nBitRate = bitRate;
3460        profile.nAudioBandWidth = 0;
3461        profile.nFrameLength = 0;
3462        profile.nAACtools = OMX_AUDIO_AACToolAll;
3463        profile.nAACERtools = OMX_AUDIO_AACERNone;
3464        profile.eAACProfile = (OMX_AUDIO_AACPROFILETYPE) aacProfile;
3465        profile.eAACStreamFormat = OMX_AUDIO_AACStreamFormatMP4FF;
3466        err = mOMX->setParameter(mNode, OMX_IndexParamAudioAac,
3467                &profile, sizeof(profile));
3468
3469        if (err != OK) {
3470            CODEC_LOGE("setParameter('OMX_IndexParamAudioAac') failed "
3471                       "(err = %d)",
3472                       err);
3473            return err;
3474        }
3475    } else {
3476        OMX_AUDIO_PARAM_AACPROFILETYPE profile;
3477        InitOMXParams(&profile);
3478        profile.nPortIndex = kPortIndexInput;
3479
3480        status_t err = mOMX->getParameter(
3481                mNode, OMX_IndexParamAudioAac, &profile, sizeof(profile));
3482        CHECK_EQ(err, (status_t)OK);
3483
3484        profile.nChannels = numChannels;
3485        profile.nSampleRate = sampleRate;
3486
3487        profile.eAACStreamFormat =
3488            isADTS
3489                ? OMX_AUDIO_AACStreamFormatMP4ADTS
3490                : OMX_AUDIO_AACStreamFormatMP4FF;
3491
3492        err = mOMX->setParameter(
3493                mNode, OMX_IndexParamAudioAac, &profile, sizeof(profile));
3494
3495        if (err != OK) {
3496            CODEC_LOGE("setParameter('OMX_IndexParamAudioAac') failed "
3497                       "(err = %d)",
3498                       err);
3499            return err;
3500        }
3501    }
3502
3503    return OK;
3504}
3505
3506void OMXCodec::setG711Format(int32_t numChannels) {
3507    CHECK(!mIsEncoder);
3508    setRawAudioFormat(kPortIndexInput, 8000, numChannels);
3509}
3510
3511void OMXCodec::setImageOutputFormat(
3512        OMX_COLOR_FORMATTYPE format, OMX_U32 width, OMX_U32 height) {
3513    CODEC_LOGV("setImageOutputFormat(%ld, %ld)", width, height);
3514
3515#if 0
3516    OMX_INDEXTYPE index;
3517    status_t err = mOMX->get_extension_index(
3518            mNode, "OMX.TI.JPEG.decode.Config.OutputColorFormat", &index);
3519    CHECK_EQ(err, (status_t)OK);
3520
3521    err = mOMX->set_config(mNode, index, &format, sizeof(format));
3522    CHECK_EQ(err, (status_t)OK);
3523#endif
3524
3525    OMX_PARAM_PORTDEFINITIONTYPE def;
3526    InitOMXParams(&def);
3527    def.nPortIndex = kPortIndexOutput;
3528
3529    status_t err = mOMX->getParameter(
3530            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
3531    CHECK_EQ(err, (status_t)OK);
3532
3533    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainImage);
3534
3535    OMX_IMAGE_PORTDEFINITIONTYPE *imageDef = &def.format.image;
3536
3537    CHECK_EQ((int)imageDef->eCompressionFormat, (int)OMX_IMAGE_CodingUnused);
3538    imageDef->eColorFormat = format;
3539    imageDef->nFrameWidth = width;
3540    imageDef->nFrameHeight = height;
3541
3542    switch (format) {
3543        case OMX_COLOR_FormatYUV420PackedPlanar:
3544        case OMX_COLOR_FormatYUV411Planar:
3545        {
3546            def.nBufferSize = (width * height * 3) / 2;
3547            break;
3548        }
3549
3550        case OMX_COLOR_FormatCbYCrY:
3551        {
3552            def.nBufferSize = width * height * 2;
3553            break;
3554        }
3555
3556        case OMX_COLOR_Format32bitARGB8888:
3557        {
3558            def.nBufferSize = width * height * 4;
3559            break;
3560        }
3561
3562        case OMX_COLOR_Format16bitARGB4444:
3563        case OMX_COLOR_Format16bitARGB1555:
3564        case OMX_COLOR_Format16bitRGB565:
3565        case OMX_COLOR_Format16bitBGR565:
3566        {
3567            def.nBufferSize = width * height * 2;
3568            break;
3569        }
3570
3571        default:
3572            CHECK(!"Should not be here. Unknown color format.");
3573            break;
3574    }
3575
3576    def.nBufferCountActual = def.nBufferCountMin;
3577
3578    err = mOMX->setParameter(
3579            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
3580    CHECK_EQ(err, (status_t)OK);
3581}
3582
3583void OMXCodec::setJPEGInputFormat(
3584        OMX_U32 width, OMX_U32 height, OMX_U32 compressedSize) {
3585    OMX_PARAM_PORTDEFINITIONTYPE def;
3586    InitOMXParams(&def);
3587    def.nPortIndex = kPortIndexInput;
3588
3589    status_t err = mOMX->getParameter(
3590            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
3591    CHECK_EQ(err, (status_t)OK);
3592
3593    CHECK_EQ((int)def.eDomain, (int)OMX_PortDomainImage);
3594    OMX_IMAGE_PORTDEFINITIONTYPE *imageDef = &def.format.image;
3595
3596    CHECK_EQ((int)imageDef->eCompressionFormat, (int)OMX_IMAGE_CodingJPEG);
3597    imageDef->nFrameWidth = width;
3598    imageDef->nFrameHeight = height;
3599
3600    def.nBufferSize = compressedSize;
3601    def.nBufferCountActual = def.nBufferCountMin;
3602
3603    err = mOMX->setParameter(
3604            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
3605    CHECK_EQ(err, (status_t)OK);
3606}
3607
3608void OMXCodec::addCodecSpecificData(const void *data, size_t size) {
3609    CodecSpecificData *specific =
3610        (CodecSpecificData *)malloc(sizeof(CodecSpecificData) + size - 1);
3611
3612    specific->mSize = size;
3613    memcpy(specific->mData, data, size);
3614
3615    mCodecSpecificData.push(specific);
3616}
3617
3618void OMXCodec::clearCodecSpecificData() {
3619    for (size_t i = 0; i < mCodecSpecificData.size(); ++i) {
3620        free(mCodecSpecificData.editItemAt(i));
3621    }
3622    mCodecSpecificData.clear();
3623    mCodecSpecificDataIndex = 0;
3624}
3625
3626status_t OMXCodec::start(MetaData *meta) {
3627    Mutex::Autolock autoLock(mLock);
3628
3629    if (mState != LOADED) {
3630        return UNKNOWN_ERROR;
3631    }
3632
3633    sp<MetaData> params = new MetaData;
3634    if (mQuirks & kWantsNALFragments) {
3635        params->setInt32(kKeyWantsNALFragments, true);
3636    }
3637    if (meta) {
3638        int64_t startTimeUs = 0;
3639        int64_t timeUs;
3640        if (meta->findInt64(kKeyTime, &timeUs)) {
3641            startTimeUs = timeUs;
3642        }
3643        params->setInt64(kKeyTime, startTimeUs);
3644    }
3645    status_t err = mSource->start(params.get());
3646
3647    if (err != OK) {
3648        return err;
3649    }
3650
3651    mCodecSpecificDataIndex = 0;
3652    mInitialBufferSubmit = true;
3653    mSignalledEOS = false;
3654    mNoMoreOutputData = false;
3655    mOutputPortSettingsHaveChanged = false;
3656    mSeekTimeUs = -1;
3657    mSeekMode = ReadOptions::SEEK_CLOSEST_SYNC;
3658    mTargetTimeUs = -1;
3659    mFilledBuffers.clear();
3660    mPaused = false;
3661
3662    return init();
3663}
3664
3665status_t OMXCodec::stop() {
3666    CODEC_LOGV("stop mState=%d", mState);
3667
3668    Mutex::Autolock autoLock(mLock);
3669
3670    while (isIntermediateState(mState)) {
3671        mAsyncCompletion.wait(mLock);
3672    }
3673
3674    bool isError = false;
3675    switch (mState) {
3676        case LOADED:
3677            break;
3678
3679        case ERROR:
3680        {
3681            if (mPortStatus[kPortIndexOutput] == ENABLING) {
3682                // Codec is in a wedged state (technical term)
3683                // We've seen an output port settings change from the codec,
3684                // We've disabled the output port, then freed the output
3685                // buffers, initiated re-enabling the output port but
3686                // failed to reallocate the output buffers.
3687                // There doesn't seem to be a way to orderly transition
3688                // from executing->idle and idle->loaded now that the
3689                // output port hasn't been reenabled yet...
3690                // Simply free as many resources as we can and pretend
3691                // that we're in LOADED state so that the destructor
3692                // will free the component instance without asserting.
3693                freeBuffersOnPort(kPortIndexInput, true /* onlyThoseWeOwn */);
3694                freeBuffersOnPort(kPortIndexOutput, true /* onlyThoseWeOwn */);
3695                setState(LOADED);
3696                break;
3697            } else {
3698                OMX_STATETYPE state = OMX_StateInvalid;
3699                status_t err = mOMX->getState(mNode, &state);
3700                CHECK_EQ(err, (status_t)OK);
3701
3702                if (state != OMX_StateExecuting) {
3703                    break;
3704                }
3705                // else fall through to the idling code
3706            }
3707
3708            isError = true;
3709        }
3710
3711        case EXECUTING:
3712        {
3713            setState(EXECUTING_TO_IDLE);
3714
3715            if (mQuirks & kRequiresFlushBeforeShutdown) {
3716                CODEC_LOGV("This component requires a flush before transitioning "
3717                     "from EXECUTING to IDLE...");
3718
3719                bool emulateInputFlushCompletion =
3720                    !flushPortAsync(kPortIndexInput);
3721
3722                bool emulateOutputFlushCompletion =
3723                    !flushPortAsync(kPortIndexOutput);
3724
3725                if (emulateInputFlushCompletion) {
3726                    onCmdComplete(OMX_CommandFlush, kPortIndexInput);
3727                }
3728
3729                if (emulateOutputFlushCompletion) {
3730                    onCmdComplete(OMX_CommandFlush, kPortIndexOutput);
3731                }
3732            } else {
3733                mPortStatus[kPortIndexInput] = SHUTTING_DOWN;
3734                mPortStatus[kPortIndexOutput] = SHUTTING_DOWN;
3735
3736                status_t err =
3737                    mOMX->sendCommand(mNode, OMX_CommandStateSet, OMX_StateIdle);
3738                CHECK_EQ(err, (status_t)OK);
3739            }
3740
3741            while (mState != LOADED && mState != ERROR) {
3742                mAsyncCompletion.wait(mLock);
3743            }
3744
3745            if (isError) {
3746                // We were in the ERROR state coming in, so restore that now
3747                // that we've idled the OMX component.
3748                setState(ERROR);
3749            }
3750
3751            break;
3752        }
3753
3754        default:
3755        {
3756            CHECK(!"should not be here.");
3757            break;
3758        }
3759    }
3760
3761    if (mLeftOverBuffer) {
3762        mLeftOverBuffer->release();
3763        mLeftOverBuffer = NULL;
3764    }
3765
3766    mSource->stop();
3767
3768    CODEC_LOGV("stopped in state %d", mState);
3769
3770    return OK;
3771}
3772
3773sp<MetaData> OMXCodec::getFormat() {
3774    Mutex::Autolock autoLock(mLock);
3775
3776    return mOutputFormat;
3777}
3778
3779status_t OMXCodec::read(
3780        MediaBuffer **buffer, const ReadOptions *options) {
3781    status_t err = OK;
3782    *buffer = NULL;
3783
3784    Mutex::Autolock autoLock(mLock);
3785
3786    if (mState != EXECUTING && mState != RECONFIGURING) {
3787        return UNKNOWN_ERROR;
3788    }
3789
3790    bool seeking = false;
3791    int64_t seekTimeUs;
3792    ReadOptions::SeekMode seekMode;
3793    if (options && options->getSeekTo(&seekTimeUs, &seekMode)) {
3794        seeking = true;
3795    }
3796
3797    if (mInitialBufferSubmit) {
3798        mInitialBufferSubmit = false;
3799
3800        if (seeking) {
3801            CHECK(seekTimeUs >= 0);
3802            mSeekTimeUs = seekTimeUs;
3803            mSeekMode = seekMode;
3804
3805            // There's no reason to trigger the code below, there's
3806            // nothing to flush yet.
3807            seeking = false;
3808            mPaused = false;
3809        }
3810
3811        drainInputBuffers();
3812
3813        if (mState == EXECUTING) {
3814            // Otherwise mState == RECONFIGURING and this code will trigger
3815            // after the output port is reenabled.
3816            fillOutputBuffers();
3817        }
3818    }
3819
3820    if (seeking) {
3821        while (mState == RECONFIGURING) {
3822            if ((err = waitForBufferFilled_l()) != OK) {
3823                return err;
3824            }
3825        }
3826
3827        if (mState != EXECUTING) {
3828            return UNKNOWN_ERROR;
3829        }
3830
3831        CODEC_LOGV("seeking to %lld us (%.2f secs)", seekTimeUs, seekTimeUs / 1E6);
3832
3833        mSignalledEOS = false;
3834
3835        CHECK(seekTimeUs >= 0);
3836        mSeekTimeUs = seekTimeUs;
3837        mSeekMode = seekMode;
3838
3839        mFilledBuffers.clear();
3840
3841        CHECK_EQ((int)mState, (int)EXECUTING);
3842
3843        bool emulateInputFlushCompletion = !flushPortAsync(kPortIndexInput);
3844        bool emulateOutputFlushCompletion = !flushPortAsync(kPortIndexOutput);
3845
3846        if (emulateInputFlushCompletion) {
3847            onCmdComplete(OMX_CommandFlush, kPortIndexInput);
3848        }
3849
3850        if (emulateOutputFlushCompletion) {
3851            onCmdComplete(OMX_CommandFlush, kPortIndexOutput);
3852        }
3853
3854        while (mSeekTimeUs >= 0) {
3855            if ((err = waitForBufferFilled_l()) != OK) {
3856                return err;
3857            }
3858        }
3859    }
3860
3861    while (mState != ERROR && !mNoMoreOutputData && mFilledBuffers.empty()) {
3862        if ((err = waitForBufferFilled_l()) != OK) {
3863            return err;
3864        }
3865    }
3866
3867    if (mState == ERROR) {
3868        return UNKNOWN_ERROR;
3869    }
3870
3871    if (mFilledBuffers.empty()) {
3872        return mSignalledEOS ? mFinalStatus : ERROR_END_OF_STREAM;
3873    }
3874
3875    if (mOutputPortSettingsHaveChanged) {
3876        mOutputPortSettingsHaveChanged = false;
3877
3878        return INFO_FORMAT_CHANGED;
3879    }
3880
3881    size_t index = *mFilledBuffers.begin();
3882    mFilledBuffers.erase(mFilledBuffers.begin());
3883
3884    BufferInfo *info = &mPortBuffers[kPortIndexOutput].editItemAt(index);
3885    CHECK_EQ((int)info->mStatus, (int)OWNED_BY_US);
3886    info->mStatus = OWNED_BY_CLIENT;
3887
3888    info->mMediaBuffer->add_ref();
3889    if (mSkipCutBuffer != NULL) {
3890        mSkipCutBuffer->submit(info->mMediaBuffer);
3891    }
3892    *buffer = info->mMediaBuffer;
3893
3894    return OK;
3895}
3896
3897void OMXCodec::signalBufferReturned(MediaBuffer *buffer) {
3898    Mutex::Autolock autoLock(mLock);
3899
3900    Vector<BufferInfo> *buffers = &mPortBuffers[kPortIndexOutput];
3901    for (size_t i = 0; i < buffers->size(); ++i) {
3902        BufferInfo *info = &buffers->editItemAt(i);
3903
3904        if (info->mMediaBuffer == buffer) {
3905            CHECK_EQ((int)mPortStatus[kPortIndexOutput], (int)ENABLED);
3906            CHECK_EQ((int)info->mStatus, (int)OWNED_BY_CLIENT);
3907
3908            info->mStatus = OWNED_BY_US;
3909
3910            if (buffer->graphicBuffer() == 0) {
3911                fillOutputBuffer(info);
3912            } else {
3913                sp<MetaData> metaData = info->mMediaBuffer->meta_data();
3914                int32_t rendered = 0;
3915                if (!metaData->findInt32(kKeyRendered, &rendered)) {
3916                    rendered = 0;
3917                }
3918                if (!rendered) {
3919                    status_t err = cancelBufferToNativeWindow(info);
3920                    if (err < 0) {
3921                        return;
3922                    }
3923                }
3924
3925                info->mStatus = OWNED_BY_NATIVE_WINDOW;
3926
3927                // Dequeue the next buffer from the native window.
3928                BufferInfo *nextBufInfo = dequeueBufferFromNativeWindow();
3929                if (nextBufInfo == 0) {
3930                    return;
3931                }
3932
3933                // Give the buffer to the OMX node to fill.
3934                fillOutputBuffer(nextBufInfo);
3935            }
3936            return;
3937        }
3938    }
3939
3940    CHECK(!"should not be here.");
3941}
3942
3943static const char *imageCompressionFormatString(OMX_IMAGE_CODINGTYPE type) {
3944    static const char *kNames[] = {
3945        "OMX_IMAGE_CodingUnused",
3946        "OMX_IMAGE_CodingAutoDetect",
3947        "OMX_IMAGE_CodingJPEG",
3948        "OMX_IMAGE_CodingJPEG2K",
3949        "OMX_IMAGE_CodingEXIF",
3950        "OMX_IMAGE_CodingTIFF",
3951        "OMX_IMAGE_CodingGIF",
3952        "OMX_IMAGE_CodingPNG",
3953        "OMX_IMAGE_CodingLZW",
3954        "OMX_IMAGE_CodingBMP",
3955    };
3956
3957    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
3958
3959    if (type < 0 || (size_t)type >= numNames) {
3960        return "UNKNOWN";
3961    } else {
3962        return kNames[type];
3963    }
3964}
3965
3966static const char *colorFormatString(OMX_COLOR_FORMATTYPE type) {
3967    static const char *kNames[] = {
3968        "OMX_COLOR_FormatUnused",
3969        "OMX_COLOR_FormatMonochrome",
3970        "OMX_COLOR_Format8bitRGB332",
3971        "OMX_COLOR_Format12bitRGB444",
3972        "OMX_COLOR_Format16bitARGB4444",
3973        "OMX_COLOR_Format16bitARGB1555",
3974        "OMX_COLOR_Format16bitRGB565",
3975        "OMX_COLOR_Format16bitBGR565",
3976        "OMX_COLOR_Format18bitRGB666",
3977        "OMX_COLOR_Format18bitARGB1665",
3978        "OMX_COLOR_Format19bitARGB1666",
3979        "OMX_COLOR_Format24bitRGB888",
3980        "OMX_COLOR_Format24bitBGR888",
3981        "OMX_COLOR_Format24bitARGB1887",
3982        "OMX_COLOR_Format25bitARGB1888",
3983        "OMX_COLOR_Format32bitBGRA8888",
3984        "OMX_COLOR_Format32bitARGB8888",
3985        "OMX_COLOR_FormatYUV411Planar",
3986        "OMX_COLOR_FormatYUV411PackedPlanar",
3987        "OMX_COLOR_FormatYUV420Planar",
3988        "OMX_COLOR_FormatYUV420PackedPlanar",
3989        "OMX_COLOR_FormatYUV420SemiPlanar",
3990        "OMX_COLOR_FormatYUV422Planar",
3991        "OMX_COLOR_FormatYUV422PackedPlanar",
3992        "OMX_COLOR_FormatYUV422SemiPlanar",
3993        "OMX_COLOR_FormatYCbYCr",
3994        "OMX_COLOR_FormatYCrYCb",
3995        "OMX_COLOR_FormatCbYCrY",
3996        "OMX_COLOR_FormatCrYCbY",
3997        "OMX_COLOR_FormatYUV444Interleaved",
3998        "OMX_COLOR_FormatRawBayer8bit",
3999        "OMX_COLOR_FormatRawBayer10bit",
4000        "OMX_COLOR_FormatRawBayer8bitcompressed",
4001        "OMX_COLOR_FormatL2",
4002        "OMX_COLOR_FormatL4",
4003        "OMX_COLOR_FormatL8",
4004        "OMX_COLOR_FormatL16",
4005        "OMX_COLOR_FormatL24",
4006        "OMX_COLOR_FormatL32",
4007        "OMX_COLOR_FormatYUV420PackedSemiPlanar",
4008        "OMX_COLOR_FormatYUV422PackedSemiPlanar",
4009        "OMX_COLOR_Format18BitBGR666",
4010        "OMX_COLOR_Format24BitARGB6666",
4011        "OMX_COLOR_Format24BitABGR6666",
4012    };
4013
4014    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4015
4016    if (type == OMX_TI_COLOR_FormatYUV420PackedSemiPlanar) {
4017        return "OMX_TI_COLOR_FormatYUV420PackedSemiPlanar";
4018    } else if (type == OMX_QCOM_COLOR_FormatYVU420SemiPlanar) {
4019        return "OMX_QCOM_COLOR_FormatYVU420SemiPlanar";
4020    } else if (type < 0 || (size_t)type >= numNames) {
4021        return "UNKNOWN";
4022    } else {
4023        return kNames[type];
4024    }
4025}
4026
4027static const char *videoCompressionFormatString(OMX_VIDEO_CODINGTYPE type) {
4028    static const char *kNames[] = {
4029        "OMX_VIDEO_CodingUnused",
4030        "OMX_VIDEO_CodingAutoDetect",
4031        "OMX_VIDEO_CodingMPEG2",
4032        "OMX_VIDEO_CodingH263",
4033        "OMX_VIDEO_CodingMPEG4",
4034        "OMX_VIDEO_CodingWMV",
4035        "OMX_VIDEO_CodingRV",
4036        "OMX_VIDEO_CodingAVC",
4037        "OMX_VIDEO_CodingMJPEG",
4038    };
4039
4040    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4041
4042    if (type < 0 || (size_t)type >= numNames) {
4043        return "UNKNOWN";
4044    } else {
4045        return kNames[type];
4046    }
4047}
4048
4049static const char *audioCodingTypeString(OMX_AUDIO_CODINGTYPE type) {
4050    static const char *kNames[] = {
4051        "OMX_AUDIO_CodingUnused",
4052        "OMX_AUDIO_CodingAutoDetect",
4053        "OMX_AUDIO_CodingPCM",
4054        "OMX_AUDIO_CodingADPCM",
4055        "OMX_AUDIO_CodingAMR",
4056        "OMX_AUDIO_CodingGSMFR",
4057        "OMX_AUDIO_CodingGSMEFR",
4058        "OMX_AUDIO_CodingGSMHR",
4059        "OMX_AUDIO_CodingPDCFR",
4060        "OMX_AUDIO_CodingPDCEFR",
4061        "OMX_AUDIO_CodingPDCHR",
4062        "OMX_AUDIO_CodingTDMAFR",
4063        "OMX_AUDIO_CodingTDMAEFR",
4064        "OMX_AUDIO_CodingQCELP8",
4065        "OMX_AUDIO_CodingQCELP13",
4066        "OMX_AUDIO_CodingEVRC",
4067        "OMX_AUDIO_CodingSMV",
4068        "OMX_AUDIO_CodingG711",
4069        "OMX_AUDIO_CodingG723",
4070        "OMX_AUDIO_CodingG726",
4071        "OMX_AUDIO_CodingG729",
4072        "OMX_AUDIO_CodingAAC",
4073        "OMX_AUDIO_CodingMP3",
4074        "OMX_AUDIO_CodingSBC",
4075        "OMX_AUDIO_CodingVORBIS",
4076        "OMX_AUDIO_CodingWMA",
4077        "OMX_AUDIO_CodingRA",
4078        "OMX_AUDIO_CodingMIDI",
4079    };
4080
4081    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4082
4083    if (type < 0 || (size_t)type >= numNames) {
4084        return "UNKNOWN";
4085    } else {
4086        return kNames[type];
4087    }
4088}
4089
4090static const char *audioPCMModeString(OMX_AUDIO_PCMMODETYPE type) {
4091    static const char *kNames[] = {
4092        "OMX_AUDIO_PCMModeLinear",
4093        "OMX_AUDIO_PCMModeALaw",
4094        "OMX_AUDIO_PCMModeMULaw",
4095    };
4096
4097    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4098
4099    if (type < 0 || (size_t)type >= numNames) {
4100        return "UNKNOWN";
4101    } else {
4102        return kNames[type];
4103    }
4104}
4105
4106static const char *amrBandModeString(OMX_AUDIO_AMRBANDMODETYPE type) {
4107    static const char *kNames[] = {
4108        "OMX_AUDIO_AMRBandModeUnused",
4109        "OMX_AUDIO_AMRBandModeNB0",
4110        "OMX_AUDIO_AMRBandModeNB1",
4111        "OMX_AUDIO_AMRBandModeNB2",
4112        "OMX_AUDIO_AMRBandModeNB3",
4113        "OMX_AUDIO_AMRBandModeNB4",
4114        "OMX_AUDIO_AMRBandModeNB5",
4115        "OMX_AUDIO_AMRBandModeNB6",
4116        "OMX_AUDIO_AMRBandModeNB7",
4117        "OMX_AUDIO_AMRBandModeWB0",
4118        "OMX_AUDIO_AMRBandModeWB1",
4119        "OMX_AUDIO_AMRBandModeWB2",
4120        "OMX_AUDIO_AMRBandModeWB3",
4121        "OMX_AUDIO_AMRBandModeWB4",
4122        "OMX_AUDIO_AMRBandModeWB5",
4123        "OMX_AUDIO_AMRBandModeWB6",
4124        "OMX_AUDIO_AMRBandModeWB7",
4125        "OMX_AUDIO_AMRBandModeWB8",
4126    };
4127
4128    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4129
4130    if (type < 0 || (size_t)type >= numNames) {
4131        return "UNKNOWN";
4132    } else {
4133        return kNames[type];
4134    }
4135}
4136
4137static const char *amrFrameFormatString(OMX_AUDIO_AMRFRAMEFORMATTYPE type) {
4138    static const char *kNames[] = {
4139        "OMX_AUDIO_AMRFrameFormatConformance",
4140        "OMX_AUDIO_AMRFrameFormatIF1",
4141        "OMX_AUDIO_AMRFrameFormatIF2",
4142        "OMX_AUDIO_AMRFrameFormatFSF",
4143        "OMX_AUDIO_AMRFrameFormatRTPPayload",
4144        "OMX_AUDIO_AMRFrameFormatITU",
4145    };
4146
4147    size_t numNames = sizeof(kNames) / sizeof(kNames[0]);
4148
4149    if (type < 0 || (size_t)type >= numNames) {
4150        return "UNKNOWN";
4151    } else {
4152        return kNames[type];
4153    }
4154}
4155
4156void OMXCodec::dumpPortStatus(OMX_U32 portIndex) {
4157    OMX_PARAM_PORTDEFINITIONTYPE def;
4158    InitOMXParams(&def);
4159    def.nPortIndex = portIndex;
4160
4161    status_t err = mOMX->getParameter(
4162            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
4163    CHECK_EQ(err, (status_t)OK);
4164
4165    printf("%s Port = {\n", portIndex == kPortIndexInput ? "Input" : "Output");
4166
4167    CHECK((portIndex == kPortIndexInput && def.eDir == OMX_DirInput)
4168          || (portIndex == kPortIndexOutput && def.eDir == OMX_DirOutput));
4169
4170    printf("  nBufferCountActual = %ld\n", def.nBufferCountActual);
4171    printf("  nBufferCountMin = %ld\n", def.nBufferCountMin);
4172    printf("  nBufferSize = %ld\n", def.nBufferSize);
4173
4174    switch (def.eDomain) {
4175        case OMX_PortDomainImage:
4176        {
4177            const OMX_IMAGE_PORTDEFINITIONTYPE *imageDef = &def.format.image;
4178
4179            printf("\n");
4180            printf("  // Image\n");
4181            printf("  nFrameWidth = %ld\n", imageDef->nFrameWidth);
4182            printf("  nFrameHeight = %ld\n", imageDef->nFrameHeight);
4183            printf("  nStride = %ld\n", imageDef->nStride);
4184
4185            printf("  eCompressionFormat = %s\n",
4186                   imageCompressionFormatString(imageDef->eCompressionFormat));
4187
4188            printf("  eColorFormat = %s\n",
4189                   colorFormatString(imageDef->eColorFormat));
4190
4191            break;
4192        }
4193
4194        case OMX_PortDomainVideo:
4195        {
4196            OMX_VIDEO_PORTDEFINITIONTYPE *videoDef = &def.format.video;
4197
4198            printf("\n");
4199            printf("  // Video\n");
4200            printf("  nFrameWidth = %ld\n", videoDef->nFrameWidth);
4201            printf("  nFrameHeight = %ld\n", videoDef->nFrameHeight);
4202            printf("  nStride = %ld\n", videoDef->nStride);
4203
4204            printf("  eCompressionFormat = %s\n",
4205                   videoCompressionFormatString(videoDef->eCompressionFormat));
4206
4207            printf("  eColorFormat = %s\n",
4208                   colorFormatString(videoDef->eColorFormat));
4209
4210            break;
4211        }
4212
4213        case OMX_PortDomainAudio:
4214        {
4215            OMX_AUDIO_PORTDEFINITIONTYPE *audioDef = &def.format.audio;
4216
4217            printf("\n");
4218            printf("  // Audio\n");
4219            printf("  eEncoding = %s\n",
4220                   audioCodingTypeString(audioDef->eEncoding));
4221
4222            if (audioDef->eEncoding == OMX_AUDIO_CodingPCM) {
4223                OMX_AUDIO_PARAM_PCMMODETYPE params;
4224                InitOMXParams(&params);
4225                params.nPortIndex = portIndex;
4226
4227                err = mOMX->getParameter(
4228                        mNode, OMX_IndexParamAudioPcm, &params, sizeof(params));
4229                CHECK_EQ(err, (status_t)OK);
4230
4231                printf("  nSamplingRate = %ld\n", params.nSamplingRate);
4232                printf("  nChannels = %ld\n", params.nChannels);
4233                printf("  bInterleaved = %d\n", params.bInterleaved);
4234                printf("  nBitPerSample = %ld\n", params.nBitPerSample);
4235
4236                printf("  eNumData = %s\n",
4237                       params.eNumData == OMX_NumericalDataSigned
4238                        ? "signed" : "unsigned");
4239
4240                printf("  ePCMMode = %s\n", audioPCMModeString(params.ePCMMode));
4241            } else if (audioDef->eEncoding == OMX_AUDIO_CodingAMR) {
4242                OMX_AUDIO_PARAM_AMRTYPE amr;
4243                InitOMXParams(&amr);
4244                amr.nPortIndex = portIndex;
4245
4246                err = mOMX->getParameter(
4247                        mNode, OMX_IndexParamAudioAmr, &amr, sizeof(amr));
4248                CHECK_EQ(err, (status_t)OK);
4249
4250                printf("  nChannels = %ld\n", amr.nChannels);
4251                printf("  eAMRBandMode = %s\n",
4252                        amrBandModeString(amr.eAMRBandMode));
4253                printf("  eAMRFrameFormat = %s\n",
4254                        amrFrameFormatString(amr.eAMRFrameFormat));
4255            }
4256
4257            break;
4258        }
4259
4260        default:
4261        {
4262            printf("  // Unknown\n");
4263            break;
4264        }
4265    }
4266
4267    printf("}\n");
4268}
4269
4270status_t OMXCodec::initNativeWindow() {
4271    // Enable use of a GraphicBuffer as the output for this node.  This must
4272    // happen before getting the IndexParamPortDefinition parameter because it
4273    // will affect the pixel format that the node reports.
4274    status_t err = mOMX->enableGraphicBuffers(mNode, kPortIndexOutput, OMX_TRUE);
4275    if (err != 0) {
4276        return err;
4277    }
4278
4279    return OK;
4280}
4281
4282void OMXCodec::initNativeWindowCrop() {
4283    int32_t left, top, right, bottom;
4284
4285    CHECK(mOutputFormat->findRect(
4286                        kKeyCropRect,
4287                        &left, &top, &right, &bottom));
4288
4289    android_native_rect_t crop;
4290    crop.left = left;
4291    crop.top = top;
4292    crop.right = right + 1;
4293    crop.bottom = bottom + 1;
4294
4295    // We'll ignore any errors here, if the surface is
4296    // already invalid, we'll know soon enough.
4297    native_window_set_crop(mNativeWindow.get(), &crop);
4298}
4299
4300void OMXCodec::initOutputFormat(const sp<MetaData> &inputFormat) {
4301    mOutputFormat = new MetaData;
4302    mOutputFormat->setCString(kKeyDecoderComponent, mComponentName);
4303    if (mIsEncoder) {
4304        int32_t timeScale;
4305        if (inputFormat->findInt32(kKeyTimeScale, &timeScale)) {
4306            mOutputFormat->setInt32(kKeyTimeScale, timeScale);
4307        }
4308    }
4309
4310    OMX_PARAM_PORTDEFINITIONTYPE def;
4311    InitOMXParams(&def);
4312    def.nPortIndex = kPortIndexOutput;
4313
4314    status_t err = mOMX->getParameter(
4315            mNode, OMX_IndexParamPortDefinition, &def, sizeof(def));
4316    CHECK_EQ(err, (status_t)OK);
4317
4318    switch (def.eDomain) {
4319        case OMX_PortDomainImage:
4320        {
4321            OMX_IMAGE_PORTDEFINITIONTYPE *imageDef = &def.format.image;
4322            CHECK_EQ((int)imageDef->eCompressionFormat,
4323                     (int)OMX_IMAGE_CodingUnused);
4324
4325            mOutputFormat->setCString(kKeyMIMEType, MEDIA_MIMETYPE_VIDEO_RAW);
4326            mOutputFormat->setInt32(kKeyColorFormat, imageDef->eColorFormat);
4327            mOutputFormat->setInt32(kKeyWidth, imageDef->nFrameWidth);
4328            mOutputFormat->setInt32(kKeyHeight, imageDef->nFrameHeight);
4329            break;
4330        }
4331
4332        case OMX_PortDomainAudio:
4333        {
4334            OMX_AUDIO_PORTDEFINITIONTYPE *audio_def = &def.format.audio;
4335
4336            if (audio_def->eEncoding == OMX_AUDIO_CodingPCM) {
4337                OMX_AUDIO_PARAM_PCMMODETYPE params;
4338                InitOMXParams(&params);
4339                params.nPortIndex = kPortIndexOutput;
4340
4341                err = mOMX->getParameter(
4342                        mNode, OMX_IndexParamAudioPcm, &params, sizeof(params));
4343                CHECK_EQ(err, (status_t)OK);
4344
4345                CHECK_EQ((int)params.eNumData, (int)OMX_NumericalDataSigned);
4346                CHECK_EQ(params.nBitPerSample, 16u);
4347                CHECK_EQ((int)params.ePCMMode, (int)OMX_AUDIO_PCMModeLinear);
4348
4349                int32_t numChannels, sampleRate;
4350                inputFormat->findInt32(kKeyChannelCount, &numChannels);
4351                inputFormat->findInt32(kKeySampleRate, &sampleRate);
4352
4353                if ((OMX_U32)numChannels != params.nChannels) {
4354                    ALOGV("Codec outputs a different number of channels than "
4355                         "the input stream contains (contains %d channels, "
4356                         "codec outputs %ld channels).",
4357                         numChannels, params.nChannels);
4358                }
4359
4360                if (sampleRate != (int32_t)params.nSamplingRate) {
4361                    ALOGV("Codec outputs at different sampling rate than "
4362                         "what the input stream contains (contains data at "
4363                         "%d Hz, codec outputs %lu Hz)",
4364                         sampleRate, params.nSamplingRate);
4365                }
4366
4367                mOutputFormat->setCString(
4368                        kKeyMIMEType, MEDIA_MIMETYPE_AUDIO_RAW);
4369
4370                // Use the codec-advertised number of channels, as some
4371                // codecs appear to output stereo even if the input data is
4372                // mono. If we know the codec lies about this information,
4373                // use the actual number of channels instead.
4374                mOutputFormat->setInt32(
4375                        kKeyChannelCount,
4376                        (mQuirks & kDecoderLiesAboutNumberOfChannels)
4377                            ? numChannels : params.nChannels);
4378
4379                mOutputFormat->setInt32(kKeySampleRate, params.nSamplingRate);
4380            } else if (audio_def->eEncoding == OMX_AUDIO_CodingAMR) {
4381                OMX_AUDIO_PARAM_AMRTYPE amr;
4382                InitOMXParams(&amr);
4383                amr.nPortIndex = kPortIndexOutput;
4384
4385                err = mOMX->getParameter(
4386                        mNode, OMX_IndexParamAudioAmr, &amr, sizeof(amr));
4387                CHECK_EQ(err, (status_t)OK);
4388
4389                CHECK_EQ(amr.nChannels, 1u);
4390                mOutputFormat->setInt32(kKeyChannelCount, 1);
4391
4392                if (amr.eAMRBandMode >= OMX_AUDIO_AMRBandModeNB0
4393                    && amr.eAMRBandMode <= OMX_AUDIO_AMRBandModeNB7) {
4394                    mOutputFormat->setCString(
4395                            kKeyMIMEType, MEDIA_MIMETYPE_AUDIO_AMR_NB);
4396                    mOutputFormat->setInt32(kKeySampleRate, 8000);
4397                } else if (amr.eAMRBandMode >= OMX_AUDIO_AMRBandModeWB0
4398                            && amr.eAMRBandMode <= OMX_AUDIO_AMRBandModeWB8) {
4399                    mOutputFormat->setCString(
4400                            kKeyMIMEType, MEDIA_MIMETYPE_AUDIO_AMR_WB);
4401                    mOutputFormat->setInt32(kKeySampleRate, 16000);
4402                } else {
4403                    CHECK(!"Unknown AMR band mode.");
4404                }
4405            } else if (audio_def->eEncoding == OMX_AUDIO_CodingAAC) {
4406                mOutputFormat->setCString(
4407                        kKeyMIMEType, MEDIA_MIMETYPE_AUDIO_AAC);
4408                int32_t numChannels, sampleRate, bitRate;
4409                inputFormat->findInt32(kKeyChannelCount, &numChannels);
4410                inputFormat->findInt32(kKeySampleRate, &sampleRate);
4411                inputFormat->findInt32(kKeyBitRate, &bitRate);
4412                mOutputFormat->setInt32(kKeyChannelCount, numChannels);
4413                mOutputFormat->setInt32(kKeySampleRate, sampleRate);
4414                mOutputFormat->setInt32(kKeyBitRate, bitRate);
4415            } else {
4416                CHECK(!"Should not be here. Unknown audio encoding.");
4417            }
4418            break;
4419        }
4420
4421        case OMX_PortDomainVideo:
4422        {
4423            OMX_VIDEO_PORTDEFINITIONTYPE *video_def = &def.format.video;
4424
4425            if (video_def->eCompressionFormat == OMX_VIDEO_CodingUnused) {
4426                mOutputFormat->setCString(
4427                        kKeyMIMEType, MEDIA_MIMETYPE_VIDEO_RAW);
4428            } else if (video_def->eCompressionFormat == OMX_VIDEO_CodingMPEG4) {
4429                mOutputFormat->setCString(
4430                        kKeyMIMEType, MEDIA_MIMETYPE_VIDEO_MPEG4);
4431            } else if (video_def->eCompressionFormat == OMX_VIDEO_CodingH263) {
4432                mOutputFormat->setCString(
4433                        kKeyMIMEType, MEDIA_MIMETYPE_VIDEO_H263);
4434            } else if (video_def->eCompressionFormat == OMX_VIDEO_CodingAVC) {
4435                mOutputFormat->setCString(
4436                        kKeyMIMEType, MEDIA_MIMETYPE_VIDEO_AVC);
4437            } else {
4438                CHECK(!"Unknown compression format.");
4439            }
4440
4441            mOutputFormat->setInt32(kKeyWidth, video_def->nFrameWidth);
4442            mOutputFormat->setInt32(kKeyHeight, video_def->nFrameHeight);
4443            mOutputFormat->setInt32(kKeyColorFormat, video_def->eColorFormat);
4444
4445            if (!mIsEncoder) {
4446                OMX_CONFIG_RECTTYPE rect;
4447                InitOMXParams(&rect);
4448                rect.nPortIndex = kPortIndexOutput;
4449                status_t err =
4450                        mOMX->getConfig(
4451                            mNode, OMX_IndexConfigCommonOutputCrop,
4452                            &rect, sizeof(rect));
4453
4454                CODEC_LOGI(
4455                        "video dimensions are %ld x %ld",
4456                        video_def->nFrameWidth, video_def->nFrameHeight);
4457
4458                if (err == OK) {
4459                    CHECK_GE(rect.nLeft, 0);
4460                    CHECK_GE(rect.nTop, 0);
4461                    CHECK_GE(rect.nWidth, 0u);
4462                    CHECK_GE(rect.nHeight, 0u);
4463                    CHECK_LE(rect.nLeft + rect.nWidth - 1, video_def->nFrameWidth);
4464                    CHECK_LE(rect.nTop + rect.nHeight - 1, video_def->nFrameHeight);
4465
4466                    mOutputFormat->setRect(
4467                            kKeyCropRect,
4468                            rect.nLeft,
4469                            rect.nTop,
4470                            rect.nLeft + rect.nWidth - 1,
4471                            rect.nTop + rect.nHeight - 1);
4472
4473                    CODEC_LOGI(
4474                            "Crop rect is %ld x %ld @ (%ld, %ld)",
4475                            rect.nWidth, rect.nHeight, rect.nLeft, rect.nTop);
4476                } else {
4477                    mOutputFormat->setRect(
4478                            kKeyCropRect,
4479                            0, 0,
4480                            video_def->nFrameWidth - 1,
4481                            video_def->nFrameHeight - 1);
4482                }
4483
4484                if (mNativeWindow != NULL) {
4485                     initNativeWindowCrop();
4486                }
4487            }
4488            break;
4489        }
4490
4491        default:
4492        {
4493            CHECK(!"should not be here, neither audio nor video.");
4494            break;
4495        }
4496    }
4497
4498    // If the input format contains rotation information, flag the output
4499    // format accordingly.
4500
4501    int32_t rotationDegrees;
4502    if (mSource->getFormat()->findInt32(kKeyRotation, &rotationDegrees)) {
4503        mOutputFormat->setInt32(kKeyRotation, rotationDegrees);
4504    }
4505}
4506
4507status_t OMXCodec::pause() {
4508    Mutex::Autolock autoLock(mLock);
4509
4510    mPaused = true;
4511
4512    return OK;
4513}
4514
4515////////////////////////////////////////////////////////////////////////////////
4516
4517status_t QueryCodecs(
4518        const sp<IOMX> &omx,
4519        const char *mime, bool queryDecoders, bool hwCodecOnly,
4520        Vector<CodecCapabilities> *results) {
4521    Vector<String8> matchingCodecs;
4522    results->clear();
4523
4524    OMXCodec::findMatchingCodecs(mime,
4525            !queryDecoders /*createEncoder*/,
4526            NULL /*matchComponentName*/,
4527            hwCodecOnly ? OMXCodec::kHardwareCodecsOnly : 0 /*flags*/,
4528            &matchingCodecs);
4529
4530    for (size_t c = 0; c < matchingCodecs.size(); c++) {
4531        const char *componentName = matchingCodecs.itemAt(c).string();
4532
4533        results->push();
4534        CodecCapabilities *caps = &results->editItemAt(results->size() - 1);
4535
4536        status_t err =
4537            QueryCodec(omx, componentName, mime, !queryDecoders, caps);
4538
4539        if (err != OK) {
4540            results->removeAt(results->size() - 1);
4541        }
4542    }
4543
4544    return OK;
4545}
4546
4547status_t QueryCodec(
4548        const sp<IOMX> &omx,
4549        const char *componentName, const char *mime,
4550        bool isEncoder,
4551        CodecCapabilities *caps) {
4552    if (strncmp(componentName, "OMX.", 4)) {
4553        // Not an OpenMax component but a software codec.
4554
4555        caps->mComponentName = componentName;
4556        return OK;
4557    }
4558
4559    sp<OMXCodecObserver> observer = new OMXCodecObserver;
4560    IOMX::node_id node;
4561    status_t err = omx->allocateNode(componentName, observer, &node);
4562
4563    if (err != OK) {
4564        return err;
4565    }
4566
4567    OMXCodec::setComponentRole(omx, node, isEncoder, mime);
4568
4569    caps->mComponentName = componentName;
4570
4571    OMX_VIDEO_PARAM_PROFILELEVELTYPE param;
4572    InitOMXParams(&param);
4573
4574    param.nPortIndex = !isEncoder ? 0 : 1;
4575
4576    for (param.nProfileIndex = 0;; ++param.nProfileIndex) {
4577        err = omx->getParameter(
4578                node, OMX_IndexParamVideoProfileLevelQuerySupported,
4579                &param, sizeof(param));
4580
4581        if (err != OK) {
4582            break;
4583        }
4584
4585        CodecProfileLevel profileLevel;
4586        profileLevel.mProfile = param.eProfile;
4587        profileLevel.mLevel = param.eLevel;
4588
4589        caps->mProfileLevels.push(profileLevel);
4590    }
4591
4592    // Color format query
4593    OMX_VIDEO_PARAM_PORTFORMATTYPE portFormat;
4594    InitOMXParams(&portFormat);
4595    portFormat.nPortIndex = !isEncoder ? 1 : 0;
4596    for (portFormat.nIndex = 0;; ++portFormat.nIndex)  {
4597        err = omx->getParameter(
4598                node, OMX_IndexParamVideoPortFormat,
4599                &portFormat, sizeof(portFormat));
4600        if (err != OK) {
4601            break;
4602        }
4603        caps->mColorFormats.push(portFormat.eColorFormat);
4604    }
4605
4606    CHECK_EQ(omx->freeNode(node), (status_t)OK);
4607
4608    return OK;
4609}
4610
4611status_t QueryCodecs(
4612        const sp<IOMX> &omx,
4613        const char *mimeType, bool queryDecoders,
4614        Vector<CodecCapabilities> *results) {
4615    return QueryCodecs(omx, mimeType, queryDecoders, false /*hwCodecOnly*/, results);
4616}
4617
4618void OMXCodec::restorePatchedDataPointer(BufferInfo *info) {
4619    CHECK(mIsEncoder && (mQuirks & kAvoidMemcopyInputRecordingFrames));
4620    CHECK(mOMXLivesLocally);
4621
4622    OMX_BUFFERHEADERTYPE *header = (OMX_BUFFERHEADERTYPE *)info->mBuffer;
4623    header->pBuffer = (OMX_U8 *)info->mData;
4624}
4625
4626// These are supposed be equivalent to the logic in
4627// "audio_channel_out_mask_from_count".
4628status_t getOMXChannelMapping(size_t numChannels, OMX_AUDIO_CHANNELTYPE map[]) {
4629    switch (numChannels) {
4630        case 1:
4631            map[0] = OMX_AUDIO_ChannelCF;
4632            break;
4633        case 2:
4634            map[0] = OMX_AUDIO_ChannelLF;
4635            map[1] = OMX_AUDIO_ChannelRF;
4636            break;
4637        case 3:
4638            map[0] = OMX_AUDIO_ChannelLF;
4639            map[1] = OMX_AUDIO_ChannelRF;
4640            map[2] = OMX_AUDIO_ChannelCF;
4641            break;
4642        case 4:
4643            map[0] = OMX_AUDIO_ChannelLF;
4644            map[1] = OMX_AUDIO_ChannelRF;
4645            map[2] = OMX_AUDIO_ChannelLR;
4646            map[3] = OMX_AUDIO_ChannelRR;
4647            break;
4648        case 5:
4649            map[0] = OMX_AUDIO_ChannelLF;
4650            map[1] = OMX_AUDIO_ChannelRF;
4651            map[2] = OMX_AUDIO_ChannelCF;
4652            map[3] = OMX_AUDIO_ChannelLR;
4653            map[4] = OMX_AUDIO_ChannelRR;
4654            break;
4655        case 6:
4656            map[0] = OMX_AUDIO_ChannelLF;
4657            map[1] = OMX_AUDIO_ChannelRF;
4658            map[2] = OMX_AUDIO_ChannelCF;
4659            map[3] = OMX_AUDIO_ChannelLFE;
4660            map[4] = OMX_AUDIO_ChannelLR;
4661            map[5] = OMX_AUDIO_ChannelRR;
4662            break;
4663        case 7:
4664            map[0] = OMX_AUDIO_ChannelLF;
4665            map[1] = OMX_AUDIO_ChannelRF;
4666            map[2] = OMX_AUDIO_ChannelCF;
4667            map[3] = OMX_AUDIO_ChannelLFE;
4668            map[4] = OMX_AUDIO_ChannelLR;
4669            map[5] = OMX_AUDIO_ChannelRR;
4670            map[6] = OMX_AUDIO_ChannelCS;
4671            break;
4672        case 8:
4673            map[0] = OMX_AUDIO_ChannelLF;
4674            map[1] = OMX_AUDIO_ChannelRF;
4675            map[2] = OMX_AUDIO_ChannelCF;
4676            map[3] = OMX_AUDIO_ChannelLFE;
4677            map[4] = OMX_AUDIO_ChannelLR;
4678            map[5] = OMX_AUDIO_ChannelRR;
4679            map[6] = OMX_AUDIO_ChannelLS;
4680            map[7] = OMX_AUDIO_ChannelRS;
4681            break;
4682        default:
4683            return -EINVAL;
4684    }
4685
4686    return OK;
4687}
4688
4689}  // namespace android
4690