Pawin Vongmasa | 3665390 | 2018-11-15 00:10:25 -0800 | [diff] [blame] | 1 | /* |
| 2 | * Copyright (C) 2018 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 "C2SoftFlacEnc" |
| 19 | #include <log/log.h> |
| 20 | |
| 21 | #include <media/stagefright/foundation/MediaDefs.h> |
| 22 | |
| 23 | #include <C2PlatformSupport.h> |
| 24 | #include <SimpleC2Interface.h> |
| 25 | |
| 26 | #include "C2SoftFlacEnc.h" |
| 27 | |
| 28 | namespace android { |
| 29 | |
| 30 | class C2SoftFlacEnc::IntfImpl : public C2InterfaceHelper { |
| 31 | public: |
| 32 | explicit IntfImpl(const std::shared_ptr<C2ReflectorHelper> &helper) |
| 33 | : C2InterfaceHelper(helper) { |
| 34 | setDerivedInstance(this); |
| 35 | addParameter( |
| 36 | DefineParam(mInputFormat, C2_NAME_INPUT_STREAM_FORMAT_SETTING) |
| 37 | .withConstValue(new C2StreamFormatConfig::input(0u, C2FormatAudio)) |
| 38 | .build()); |
| 39 | addParameter( |
| 40 | DefineParam(mOutputFormat, C2_NAME_OUTPUT_STREAM_FORMAT_SETTING) |
| 41 | .withConstValue(new C2StreamFormatConfig::output(0u, C2FormatCompressed)) |
| 42 | .build()); |
| 43 | addParameter( |
| 44 | DefineParam(mInputMediaType, C2_NAME_INPUT_PORT_MIME_SETTING) |
| 45 | .withConstValue(AllocSharedString<C2PortMimeConfig::input>( |
| 46 | MEDIA_MIMETYPE_AUDIO_RAW)) |
| 47 | .build()); |
| 48 | addParameter( |
| 49 | DefineParam(mOutputMediaType, C2_NAME_OUTPUT_PORT_MIME_SETTING) |
| 50 | .withConstValue(AllocSharedString<C2PortMimeConfig::output>( |
| 51 | MEDIA_MIMETYPE_AUDIO_FLAC)) |
| 52 | .build()); |
| 53 | addParameter( |
| 54 | DefineParam(mSampleRate, C2_NAME_STREAM_SAMPLE_RATE_SETTING) |
| 55 | .withDefault(new C2StreamSampleRateInfo::input(0u, 44100)) |
| 56 | .withFields({C2F(mSampleRate, value).inRange(1, 655350)}) |
| 57 | .withSetter((Setter<decltype(*mSampleRate)>::StrictValueWithNoDeps)) |
| 58 | .build()); |
| 59 | addParameter( |
| 60 | DefineParam(mChannelCount, C2_NAME_STREAM_CHANNEL_COUNT_SETTING) |
| 61 | .withDefault(new C2StreamChannelCountInfo::input(0u, 1)) |
| 62 | .withFields({C2F(mChannelCount, value).inRange(1, 2)}) |
| 63 | .withSetter(Setter<decltype(*mChannelCount)>::StrictValueWithNoDeps) |
| 64 | .build()); |
| 65 | addParameter( |
| 66 | DefineParam(mBitrate, C2_NAME_STREAM_BITRATE_SETTING) |
| 67 | .withDefault(new C2BitrateTuning::output(0u, 768000)) |
| 68 | .withFields({C2F(mBitrate, value).inRange(1, 21000000)}) |
| 69 | .withSetter(Setter<decltype(*mBitrate)>::NonStrictValueWithNoDeps) |
| 70 | .build()); |
| 71 | addParameter( |
| 72 | DefineParam(mInputMaxBufSize, C2_PARAMKEY_INPUT_MAX_BUFFER_SIZE) |
| 73 | .withConstValue(new C2StreamMaxBufferSizeInfo::input(0u, 4608)) |
| 74 | .build()); |
| 75 | } |
| 76 | |
| 77 | uint32_t getSampleRate() const { return mSampleRate->value; } |
| 78 | uint32_t getChannelCount() const { return mChannelCount->value; } |
| 79 | uint32_t getBitrate() const { return mBitrate->value; } |
| 80 | |
| 81 | private: |
| 82 | std::shared_ptr<C2StreamFormatConfig::input> mInputFormat; |
| 83 | std::shared_ptr<C2StreamFormatConfig::output> mOutputFormat; |
| 84 | std::shared_ptr<C2PortMimeConfig::input> mInputMediaType; |
| 85 | std::shared_ptr<C2PortMimeConfig::output> mOutputMediaType; |
| 86 | std::shared_ptr<C2StreamSampleRateInfo::input> mSampleRate; |
| 87 | std::shared_ptr<C2StreamChannelCountInfo::input> mChannelCount; |
| 88 | std::shared_ptr<C2BitrateTuning::output> mBitrate; |
| 89 | std::shared_ptr<C2StreamMaxBufferSizeInfo::input> mInputMaxBufSize; |
| 90 | }; |
| 91 | constexpr char COMPONENT_NAME[] = "c2.android.flac.encoder"; |
| 92 | |
| 93 | C2SoftFlacEnc::C2SoftFlacEnc( |
| 94 | const char *name, |
| 95 | c2_node_id_t id, |
| 96 | const std::shared_ptr<IntfImpl> &intfImpl) |
| 97 | : SimpleC2Component(std::make_shared<SimpleInterface<IntfImpl>>(name, id, intfImpl)), |
| 98 | mIntf(intfImpl), |
| 99 | mFlacStreamEncoder(nullptr), |
| 100 | mInputBufferPcm32(nullptr) { |
| 101 | } |
| 102 | |
| 103 | C2SoftFlacEnc::~C2SoftFlacEnc() { |
| 104 | onRelease(); |
| 105 | } |
| 106 | |
| 107 | c2_status_t C2SoftFlacEnc::onInit() { |
| 108 | mFlacStreamEncoder = FLAC__stream_encoder_new(); |
| 109 | if (!mFlacStreamEncoder) return C2_CORRUPTED; |
| 110 | |
| 111 | mInputBufferPcm32 = (FLAC__int32*) malloc( |
| 112 | kInBlockSize * kMaxNumChannels * sizeof(FLAC__int32)); |
| 113 | if (!mInputBufferPcm32) return C2_NO_MEMORY; |
| 114 | |
| 115 | mSignalledError = false; |
| 116 | mSignalledOutputEos = false; |
| 117 | mCompressionLevel = FLAC_COMPRESSION_LEVEL_DEFAULT; |
| 118 | mIsFirstFrame = true; |
| 119 | mAnchorTimeStamp = 0ull; |
| 120 | mProcessedSamples = 0u; |
| 121 | mEncoderWriteData = false; |
| 122 | mEncoderReturnedNbBytes = 0; |
| 123 | mHeaderOffset = 0; |
| 124 | mWroteHeader = false; |
| 125 | |
| 126 | status_t err = configureEncoder(); |
| 127 | return err == OK ? C2_OK : C2_CORRUPTED; |
| 128 | } |
| 129 | |
| 130 | void C2SoftFlacEnc::onRelease() { |
| 131 | if (mFlacStreamEncoder) { |
| 132 | FLAC__stream_encoder_delete(mFlacStreamEncoder); |
| 133 | mFlacStreamEncoder = nullptr; |
| 134 | } |
| 135 | |
| 136 | if (mInputBufferPcm32) { |
| 137 | free(mInputBufferPcm32); |
| 138 | mInputBufferPcm32 = nullptr; |
| 139 | } |
| 140 | } |
| 141 | |
| 142 | void C2SoftFlacEnc::onReset() { |
| 143 | mCompressionLevel = FLAC_COMPRESSION_LEVEL_DEFAULT; |
| 144 | (void) onStop(); |
| 145 | } |
| 146 | |
| 147 | c2_status_t C2SoftFlacEnc::onStop() { |
| 148 | mSignalledError = false; |
| 149 | mSignalledOutputEos = false; |
| 150 | mIsFirstFrame = true; |
| 151 | mAnchorTimeStamp = 0ull; |
| 152 | mProcessedSamples = 0u; |
| 153 | mEncoderWriteData = false; |
| 154 | mEncoderReturnedNbBytes = 0; |
| 155 | mHeaderOffset = 0; |
| 156 | mWroteHeader = false; |
| 157 | |
| 158 | c2_status_t status = drain(DRAIN_COMPONENT_NO_EOS, nullptr); |
| 159 | if (C2_OK != status) return status; |
| 160 | |
| 161 | status_t err = configureEncoder(); |
| 162 | if (err != OK) mSignalledError = true; |
| 163 | return C2_OK; |
| 164 | } |
| 165 | |
| 166 | c2_status_t C2SoftFlacEnc::onFlush_sm() { |
| 167 | return onStop(); |
| 168 | } |
| 169 | |
| 170 | static void fillEmptyWork(const std::unique_ptr<C2Work> &work) { |
| 171 | work->worklets.front()->output.flags = work->input.flags; |
| 172 | work->worklets.front()->output.buffers.clear(); |
| 173 | work->worklets.front()->output.ordinal = work->input.ordinal; |
| 174 | } |
| 175 | |
| 176 | void C2SoftFlacEnc::process( |
| 177 | const std::unique_ptr<C2Work> &work, |
| 178 | const std::shared_ptr<C2BlockPool> &pool) { |
| 179 | // Initialize output work |
| 180 | work->result = C2_OK; |
| 181 | work->workletsProcessed = 1u; |
| 182 | work->worklets.front()->output.flags = work->input.flags; |
| 183 | |
| 184 | if (mSignalledError || mSignalledOutputEos) { |
| 185 | work->result = C2_BAD_VALUE; |
| 186 | return; |
| 187 | } |
| 188 | |
| 189 | bool eos = ((work->input.flags & C2FrameData::FLAG_END_OF_STREAM) != 0); |
| 190 | C2ReadView rView = mDummyReadView; |
| 191 | size_t inOffset = 0u; |
| 192 | size_t inSize = 0u; |
| 193 | if (!work->input.buffers.empty()) { |
| 194 | rView = work->input.buffers[0]->data().linearBlocks().front().map().get(); |
| 195 | inSize = rView.capacity(); |
| 196 | if (inSize && rView.error()) { |
| 197 | ALOGE("read view map failed %d", rView.error()); |
| 198 | work->result = C2_CORRUPTED; |
| 199 | return; |
| 200 | } |
| 201 | } |
| 202 | |
| 203 | ALOGV("in buffer attr. size %zu timestamp %d frameindex %d, flags %x", |
| 204 | inSize, (int)work->input.ordinal.timestamp.peeku(), |
| 205 | (int)work->input.ordinal.frameIndex.peeku(), work->input.flags); |
| 206 | if (mIsFirstFrame && inSize) { |
| 207 | mAnchorTimeStamp = work->input.ordinal.timestamp.peekull(); |
| 208 | mIsFirstFrame = false; |
| 209 | } |
| 210 | |
| 211 | if (!mWroteHeader) { |
| 212 | std::unique_ptr<C2StreamCsdInfo::output> csd = |
| 213 | C2StreamCsdInfo::output::AllocUnique(mHeaderOffset, 0u); |
| 214 | if (!csd) { |
| 215 | ALOGE("CSD allocation failed"); |
| 216 | mSignalledError = true; |
| 217 | work->result = C2_NO_MEMORY; |
| 218 | return; |
| 219 | } |
| 220 | memcpy(csd->m.value, mHeader, mHeaderOffset); |
| 221 | ALOGV("put csd, %d bytes", mHeaderOffset); |
| 222 | |
| 223 | work->worklets.front()->output.configUpdate.push_back(std::move(csd)); |
| 224 | mWroteHeader = true; |
| 225 | } |
| 226 | |
| 227 | uint32_t sampleRate = mIntf->getSampleRate(); |
| 228 | uint32_t channelCount = mIntf->getChannelCount(); |
| 229 | uint64_t outTimeStamp = mProcessedSamples * 1000000ll / sampleRate; |
| 230 | |
| 231 | size_t outCapacity = inSize; |
| 232 | outCapacity += mBlockSize * channelCount * sizeof(int16_t); |
| 233 | |
| 234 | C2MemoryUsage usage = { C2MemoryUsage::CPU_READ, C2MemoryUsage::CPU_WRITE }; |
| 235 | c2_status_t err = pool->fetchLinearBlock(outCapacity, usage, &mOutputBlock); |
| 236 | if (err != C2_OK) { |
| 237 | ALOGE("fetchLinearBlock for Output failed with status %d", err); |
| 238 | work->result = C2_NO_MEMORY; |
| 239 | return; |
| 240 | } |
| 241 | C2WriteView wView = mOutputBlock->map().get(); |
| 242 | if (wView.error()) { |
| 243 | ALOGE("write view map failed %d", wView.error()); |
| 244 | work->result = C2_CORRUPTED; |
| 245 | return; |
| 246 | } |
| 247 | |
| 248 | mEncoderWriteData = true; |
| 249 | mEncoderReturnedNbBytes = 0; |
| 250 | size_t inPos = 0; |
| 251 | while (inPos < inSize) { |
| 252 | const uint8_t *inPtr = rView.data() + inOffset; |
| 253 | size_t processSize = MIN(kInBlockSize * channelCount * sizeof(int16_t), (inSize - inPos)); |
| 254 | const unsigned nbInputFrames = processSize / (channelCount * sizeof(int16_t)); |
| 255 | const unsigned nbInputSamples = processSize / sizeof(int16_t); |
| 256 | const int16_t *pcm16 = reinterpret_cast<const int16_t *>(inPtr + inPos); |
| 257 | ALOGV("about to encode %zu bytes", processSize); |
| 258 | |
| 259 | for (unsigned i = 0; i < nbInputSamples; i++) { |
| 260 | mInputBufferPcm32[i] = (FLAC__int32) pcm16[i]; |
| 261 | } |
| 262 | |
| 263 | FLAC__bool ok = FLAC__stream_encoder_process_interleaved( |
| 264 | mFlacStreamEncoder, mInputBufferPcm32, nbInputFrames); |
| 265 | if (!ok) { |
| 266 | ALOGE("error encountered during encoding"); |
| 267 | mSignalledError = true; |
| 268 | work->result = C2_CORRUPTED; |
| 269 | mOutputBlock.reset(); |
| 270 | return; |
| 271 | } |
| 272 | inPos += processSize; |
| 273 | } |
| 274 | if (eos && (C2_OK != drain(DRAIN_COMPONENT_WITH_EOS, pool))) { |
| 275 | ALOGE("error encountered during encoding"); |
| 276 | mSignalledError = true; |
| 277 | work->result = C2_CORRUPTED; |
| 278 | mOutputBlock.reset(); |
| 279 | return; |
| 280 | } |
| 281 | fillEmptyWork(work); |
| 282 | if (mEncoderReturnedNbBytes != 0) { |
| 283 | std::shared_ptr<C2Buffer> buffer = createLinearBuffer(std::move(mOutputBlock), 0, mEncoderReturnedNbBytes); |
| 284 | work->worklets.front()->output.buffers.push_back(buffer); |
| 285 | work->worklets.front()->output.ordinal.timestamp = mAnchorTimeStamp + outTimeStamp; |
| 286 | } else { |
| 287 | ALOGV("encoder process_interleaved returned without data to write"); |
| 288 | } |
| 289 | mOutputBlock = nullptr; |
| 290 | if (eos) { |
| 291 | mSignalledOutputEos = true; |
| 292 | ALOGV("signalled EOS"); |
| 293 | } |
| 294 | mEncoderWriteData = false; |
| 295 | mEncoderReturnedNbBytes = 0; |
| 296 | } |
| 297 | |
| 298 | FLAC__StreamEncoderWriteStatus C2SoftFlacEnc::onEncodedFlacAvailable( |
| 299 | const FLAC__byte buffer[], size_t bytes, unsigned samples, |
| 300 | unsigned current_frame) { |
| 301 | (void) current_frame; |
| 302 | ALOGV("%s (bytes=%zu, samples=%u, curr_frame=%u)", __func__, bytes, samples, |
| 303 | current_frame); |
| 304 | |
| 305 | if (samples == 0) { |
| 306 | ALOGI("saving %zu bytes of header", bytes); |
| 307 | memcpy(mHeader + mHeaderOffset, buffer, bytes); |
| 308 | mHeaderOffset += bytes;// will contain header size when finished receiving header |
| 309 | return FLAC__STREAM_ENCODER_WRITE_STATUS_OK; |
| 310 | } |
| 311 | |
| 312 | if ((samples == 0) || !mEncoderWriteData) { |
| 313 | // called by the encoder because there's header data to save, but it's not the role |
| 314 | // of this component (unless WRITE_FLAC_HEADER_IN_FIRST_BUFFER is defined) |
| 315 | ALOGV("ignoring %zu bytes of header data (samples=%d)", bytes, samples); |
| 316 | return FLAC__STREAM_ENCODER_WRITE_STATUS_OK; |
| 317 | } |
| 318 | |
| 319 | // write encoded data |
| 320 | C2WriteView wView = mOutputBlock->map().get(); |
| 321 | uint8_t* outData = wView.data(); |
| 322 | ALOGV("writing %zu bytes of encoded data on output", bytes); |
| 323 | // increment mProcessedSamples to maintain audio synchronization during |
| 324 | // play back |
| 325 | mProcessedSamples += samples; |
| 326 | if (bytes + mEncoderReturnedNbBytes > mOutputBlock->capacity()) { |
| 327 | ALOGE("not enough space left to write encoded data, dropping %zu bytes", bytes); |
| 328 | // a fatal error would stop the encoding |
| 329 | return FLAC__STREAM_ENCODER_WRITE_STATUS_OK; |
| 330 | } |
| 331 | memcpy(outData + mEncoderReturnedNbBytes, buffer, bytes); |
| 332 | mEncoderReturnedNbBytes += bytes; |
| 333 | return FLAC__STREAM_ENCODER_WRITE_STATUS_OK; |
| 334 | } |
| 335 | |
| 336 | |
| 337 | status_t C2SoftFlacEnc::configureEncoder() { |
| 338 | ALOGV("%s numChannel=%d, sampleRate=%d", __func__, mIntf->getChannelCount(), mIntf->getSampleRate()); |
| 339 | |
| 340 | if (mSignalledError || !mFlacStreamEncoder) { |
| 341 | ALOGE("can't configure encoder: no encoder or invalid state"); |
| 342 | return UNKNOWN_ERROR; |
| 343 | } |
| 344 | |
| 345 | FLAC__bool ok = true; |
| 346 | ok = ok && FLAC__stream_encoder_set_channels(mFlacStreamEncoder, mIntf->getChannelCount()); |
| 347 | ok = ok && FLAC__stream_encoder_set_sample_rate(mFlacStreamEncoder, mIntf->getSampleRate()); |
| 348 | ok = ok && FLAC__stream_encoder_set_bits_per_sample(mFlacStreamEncoder, 16); |
| 349 | ok = ok && FLAC__stream_encoder_set_compression_level(mFlacStreamEncoder, mCompressionLevel); |
| 350 | ok = ok && FLAC__stream_encoder_set_verify(mFlacStreamEncoder, false); |
| 351 | if (!ok) { |
| 352 | ALOGE("unknown error when configuring encoder"); |
| 353 | return UNKNOWN_ERROR; |
| 354 | } |
| 355 | |
| 356 | ok &= FLAC__STREAM_ENCODER_INIT_STATUS_OK == |
| 357 | FLAC__stream_encoder_init_stream(mFlacStreamEncoder, |
| 358 | flacEncoderWriteCallback /*write_callback*/, |
| 359 | nullptr /*seek_callback*/, |
| 360 | nullptr /*tell_callback*/, |
| 361 | nullptr /*metadata_callback*/, |
| 362 | (void *) this /*client_data*/); |
| 363 | |
| 364 | if (!ok) { |
| 365 | ALOGE("unknown error when configuring encoder"); |
| 366 | return UNKNOWN_ERROR; |
| 367 | } |
| 368 | |
| 369 | mBlockSize = FLAC__stream_encoder_get_blocksize(mFlacStreamEncoder); |
| 370 | |
| 371 | ALOGV("encoder successfully configured"); |
| 372 | return OK; |
| 373 | } |
| 374 | |
| 375 | FLAC__StreamEncoderWriteStatus C2SoftFlacEnc::flacEncoderWriteCallback( |
| 376 | const FLAC__StreamEncoder *, |
| 377 | const FLAC__byte buffer[], |
| 378 | size_t bytes, |
| 379 | unsigned samples, |
| 380 | unsigned current_frame, |
| 381 | void *client_data) { |
| 382 | return ((C2SoftFlacEnc*) client_data)->onEncodedFlacAvailable( |
| 383 | buffer, bytes, samples, current_frame); |
| 384 | } |
| 385 | |
| 386 | c2_status_t C2SoftFlacEnc::drain( |
| 387 | uint32_t drainMode, |
| 388 | const std::shared_ptr<C2BlockPool> &pool) { |
| 389 | (void) pool; |
| 390 | switch (drainMode) { |
| 391 | case NO_DRAIN: |
| 392 | ALOGW("drain with NO_DRAIN: no-op"); |
| 393 | return C2_OK; |
| 394 | case DRAIN_CHAIN: |
| 395 | ALOGW("DRAIN_CHAIN not supported"); |
| 396 | return C2_OMITTED; |
| 397 | case DRAIN_COMPONENT_WITH_EOS: |
| 398 | // TODO: This flag is not being sent back to the client |
| 399 | // because there are no items in PendingWork queue as all the |
| 400 | // inputs are being sent back with emptywork or valid encoded data |
| 401 | // mSignalledOutputEos = true; |
| 402 | case DRAIN_COMPONENT_NO_EOS: |
| 403 | break; |
| 404 | default: |
| 405 | return C2_BAD_VALUE; |
| 406 | } |
| 407 | FLAC__bool ok = FLAC__stream_encoder_finish(mFlacStreamEncoder); |
| 408 | if (!ok) return C2_CORRUPTED; |
| 409 | mIsFirstFrame = true; |
| 410 | mAnchorTimeStamp = 0ull; |
| 411 | mProcessedSamples = 0u; |
| 412 | |
| 413 | return C2_OK; |
| 414 | } |
| 415 | |
| 416 | class C2SoftFlacEncFactory : public C2ComponentFactory { |
| 417 | public: |
| 418 | C2SoftFlacEncFactory() : mHelper(std::static_pointer_cast<C2ReflectorHelper>( |
| 419 | GetCodec2PlatformComponentStore()->getParamReflector())) { |
| 420 | } |
| 421 | |
| 422 | virtual c2_status_t createComponent( |
| 423 | c2_node_id_t id, |
| 424 | std::shared_ptr<C2Component>* const component, |
| 425 | std::function<void(C2Component*)> deleter) override { |
| 426 | *component = std::shared_ptr<C2Component>( |
| 427 | new C2SoftFlacEnc(COMPONENT_NAME, |
| 428 | id, |
| 429 | std::make_shared<C2SoftFlacEnc::IntfImpl>(mHelper)), |
| 430 | deleter); |
| 431 | return C2_OK; |
| 432 | } |
| 433 | |
| 434 | virtual c2_status_t createInterface( |
| 435 | c2_node_id_t id, |
| 436 | std::shared_ptr<C2ComponentInterface>* const interface, |
| 437 | std::function<void(C2ComponentInterface*)> deleter) override { |
| 438 | *interface = std::shared_ptr<C2ComponentInterface>( |
| 439 | new SimpleInterface<C2SoftFlacEnc::IntfImpl>( |
| 440 | COMPONENT_NAME, id, std::make_shared<C2SoftFlacEnc::IntfImpl>(mHelper)), |
| 441 | deleter); |
| 442 | return C2_OK; |
| 443 | } |
| 444 | |
| 445 | virtual ~C2SoftFlacEncFactory() override = default; |
| 446 | private: |
| 447 | std::shared_ptr<C2ReflectorHelper> mHelper; |
| 448 | }; |
| 449 | |
| 450 | } // namespace android |
| 451 | |
| 452 | extern "C" ::C2ComponentFactory* CreateCodec2Factory() { |
| 453 | ALOGV("in %s", __func__); |
| 454 | return new ::android::C2SoftFlacEncFactory(); |
| 455 | } |
| 456 | |
| 457 | extern "C" void DestroyCodec2Factory(::C2ComponentFactory* factory) { |
| 458 | ALOGV("in %s", __func__); |
| 459 | delete factory; |
| 460 | } |