blob: 66cdc62291c65664a0daa9712738a50b66fb7b9b [file] [log] [blame]
Fyodor Kyslovadc71142022-09-15 16:47:03 +00001/*
2 * Copyright (C) 2022 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 "C2SoftAomEnc"
19#include <log/log.h>
20
21#include <media/stagefright/foundation/AUtils.h>
22#include <media/stagefright/foundation/MediaDefs.h>
23
24#include <C2Debug.h>
Harish Mahendrakar7de78d42023-02-06 17:12:18 -080025#include <Codec2CommonUtils.h>
Aayush Soni643b9182023-01-18 20:23:56 +053026#include <Codec2Mapper.h>
Fyodor Kyslovadc71142022-09-15 16:47:03 +000027#include <C2PlatformSupport.h>
28#include <SimpleC2Interface.h>
29
30#include "C2SoftAomEnc.h"
31
32namespace android {
33
34constexpr char COMPONENT_NAME[] = "c2.android.av1.encoder";
35
36#define DEFAULT_SPEED 10
37
38C2SoftAomEnc::IntfImpl::IntfImpl(const std::shared_ptr<C2ReflectorHelper>& helper)
39 : SimpleInterface<void>::BaseParams(helper, COMPONENT_NAME, C2Component::KIND_ENCODER,
40 C2Component::DOMAIN_VIDEO, MEDIA_MIMETYPE_VIDEO_AV1) {
41 noPrivateBuffers(); // TODO: account for our buffers here
42 noInputReferences();
43 noOutputReferences();
44 noInputLatency();
45 noTimeStretch();
46 setDerivedInstance(this);
47
48 addParameter(DefineParam(mUsage, C2_PARAMKEY_INPUT_STREAM_USAGE)
49 .withConstValue(new C2StreamUsageTuning::input(
50 0u, (uint64_t)C2MemoryUsage::CPU_READ))
51 .build());
52
53 addParameter(DefineParam(mSize, C2_PARAMKEY_PICTURE_SIZE)
54 .withDefault(new C2StreamPictureSizeInfo::input(0u, 320, 240))
55 .withFields({
56 C2F(mSize, width).inRange(2, 2048, 2),
57 C2F(mSize, height).inRange(2, 2048, 2),
58 })
59 .withSetter(SizeSetter)
60 .build());
61
62 addParameter(DefineParam(mBitrateMode, C2_PARAMKEY_BITRATE_MODE)
63 .withDefault(new C2StreamBitrateModeTuning::output(
64 0u, C2Config::BITRATE_VARIABLE))
65 .withFields({C2F(mBitrateMode, value)
66 .oneOf({C2Config::BITRATE_CONST,
67 C2Config::BITRATE_VARIABLE})})
68 .withSetter(Setter<decltype(*mBitrateMode)>::StrictValueWithNoDeps)
69 .build());
70
71 addParameter(DefineParam(mFrameRate, C2_PARAMKEY_FRAME_RATE)
72 .withDefault(new C2StreamFrameRateInfo::output(0u, 30.))
73 // TODO: More restriction?
74 .withFields({C2F(mFrameRate, value).greaterThan(0.)})
75 .withSetter(Setter<decltype(*mFrameRate)>::StrictValueWithNoDeps)
76 .build());
77
78 addParameter(DefineParam(mSyncFramePeriod, C2_PARAMKEY_SYNC_FRAME_INTERVAL)
79 .withDefault(new C2StreamSyncFrameIntervalTuning::output(0u, 1000000))
80 .withFields({C2F(mSyncFramePeriod, value).any()})
81 .withSetter(Setter<decltype(*mSyncFramePeriod)>::StrictValueWithNoDeps)
82 .build());
83
84 addParameter(DefineParam(mBitrate, C2_PARAMKEY_BITRATE)
85 .withDefault(new C2StreamBitrateInfo::output(0u, 64000))
86 .withFields({C2F(mBitrate, value).inRange(4096, 40000000)})
87 .withSetter(BitrateSetter)
88 .build());
89
90 addParameter(DefineParam(mIntraRefresh, C2_PARAMKEY_INTRA_REFRESH)
91 .withConstValue(new C2StreamIntraRefreshTuning::output(
92 0u, C2Config::INTRA_REFRESH_DISABLED, 0.))
93 .build());
94
95 addParameter(DefineParam(mProfileLevel, C2_PARAMKEY_PROFILE_LEVEL)
96 .withDefault(new C2StreamProfileLevelInfo::output(0u, PROFILE_AV1_0,
97 LEVEL_AV1_4_1))
98 .withFields({
99 C2F(mProfileLevel, profile).equalTo(PROFILE_AV1_0),
Fyodor Kyslova8092322022-10-09 02:47:33 +0000100 C2F(mProfileLevel, level)
101 .oneOf({LEVEL_AV1_2, LEVEL_AV1_2_1, LEVEL_AV1_2_2,
102 LEVEL_AV1_2_3, LEVEL_AV1_3, LEVEL_AV1_3_1,
103 LEVEL_AV1_3_2, LEVEL_AV1_3_3, LEVEL_AV1_4,
104 LEVEL_AV1_4_1}),
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000105 })
106 .withSetter(ProfileLevelSetter)
107 .build());
108
Harish Mahendrakar7de78d42023-02-06 17:12:18 -0800109 std::vector<uint32_t> pixelFormats = {HAL_PIXEL_FORMAT_IMPLEMENTATION_DEFINED,
110 HAL_PIXEL_FORMAT_YCBCR_420_888};
111 if (isHalPixelFormatSupported((AHardwareBuffer_Format)HAL_PIXEL_FORMAT_YCBCR_P010)) {
112 pixelFormats.push_back(HAL_PIXEL_FORMAT_YCBCR_P010);
113 }
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000114 addParameter(DefineParam(mPixelFormat, C2_PARAMKEY_PIXEL_FORMAT)
Harish Mahendrakar7de78d42023-02-06 17:12:18 -0800115 .withDefault(new C2StreamPixelFormatInfo::input(
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000116 0u, HAL_PIXEL_FORMAT_YCBCR_420_888))
Harish Mahendrakar7de78d42023-02-06 17:12:18 -0800117 .withFields({C2F(mPixelFormat, value).oneOf({pixelFormats})})
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000118 .withSetter((Setter<decltype(*mPixelFormat)>::StrictValueWithNoDeps))
119 .build());
120
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000121 addParameter(DefineParam(mRequestSync, C2_PARAMKEY_REQUEST_SYNC_FRAME)
122 .withDefault(new C2StreamRequestSyncFrameTuning::output(0u, C2_FALSE))
123 .withFields({C2F(mRequestSync, value).oneOf({C2_FALSE, C2_TRUE})})
124 .withSetter(Setter<decltype(*mRequestSync)>::NonStrictValueWithNoDeps)
125 .build());
126 addParameter(
127 DefineParam(mColorAspects, C2_PARAMKEY_COLOR_ASPECTS)
128 .withDefault(new C2StreamColorAspectsInfo::input(
129 0u, C2Color::RANGE_UNSPECIFIED, C2Color::PRIMARIES_UNSPECIFIED,
130 C2Color::TRANSFER_UNSPECIFIED, C2Color::MATRIX_UNSPECIFIED))
131 .withFields(
132 {C2F(mColorAspects, range)
133 .inRange(C2Color::RANGE_UNSPECIFIED, C2Color::RANGE_OTHER),
134 C2F(mColorAspects, primaries)
135 .inRange(C2Color::PRIMARIES_UNSPECIFIED,
136 C2Color::PRIMARIES_OTHER),
137 C2F(mColorAspects, transfer)
138 .inRange(C2Color::TRANSFER_UNSPECIFIED,
139 C2Color::TRANSFER_OTHER),
140 C2F(mColorAspects, matrix)
141 .inRange(C2Color::MATRIX_UNSPECIFIED, C2Color::MATRIX_OTHER)})
142 .withSetter(ColorAspectsSetter)
143 .build());
144
145 addParameter(
146 DefineParam(mCodedColorAspects, C2_PARAMKEY_VUI_COLOR_ASPECTS)
147 .withDefault(new C2StreamColorAspectsInfo::output(
148 0u, C2Color::RANGE_LIMITED, C2Color::PRIMARIES_UNSPECIFIED,
149 C2Color::TRANSFER_UNSPECIFIED, C2Color::MATRIX_UNSPECIFIED))
150 .withFields(
151 {C2F(mCodedColorAspects, range)
152 .inRange(C2Color::RANGE_UNSPECIFIED, C2Color::RANGE_OTHER),
153 C2F(mCodedColorAspects, primaries)
154 .inRange(C2Color::PRIMARIES_UNSPECIFIED,
155 C2Color::PRIMARIES_OTHER),
156 C2F(mCodedColorAspects, transfer)
157 .inRange(C2Color::TRANSFER_UNSPECIFIED,
158 C2Color::TRANSFER_OTHER),
159 C2F(mCodedColorAspects, matrix)
160 .inRange(C2Color::MATRIX_UNSPECIFIED, C2Color::MATRIX_OTHER)})
161 .withSetter(CodedColorAspectsSetter, mColorAspects)
162 .build());
163}
164
165C2R C2SoftAomEnc::IntfImpl::BitrateSetter(bool mayBlock, C2P<C2StreamBitrateInfo::output>& me) {
166 (void)mayBlock;
167 C2R res = C2R::Ok();
168 if (me.v.value < 4096) {
169 me.set().value = 4096;
170 }
171 return res;
172}
173
174C2R C2SoftAomEnc::IntfImpl::SizeSetter(bool mayBlock,
175 const C2P<C2StreamPictureSizeInfo::input>& oldMe,
176 C2P<C2StreamPictureSizeInfo::input>& me) {
177 (void)mayBlock;
178 C2R res = C2R::Ok();
179 if (!me.F(me.v.width).supportsAtAll(me.v.width)) {
180 res = res.plus(C2SettingResultBuilder::BadValue(me.F(me.v.width)));
181 me.set().width = oldMe.v.width;
182 }
183 if (!me.F(me.v.height).supportsAtAll(me.v.height)) {
184 res = res.plus(C2SettingResultBuilder::BadValue(me.F(me.v.height)));
185 me.set().height = oldMe.v.height;
186 }
187 return res;
188}
189
190C2R C2SoftAomEnc::IntfImpl::ProfileLevelSetter(bool mayBlock,
191 C2P<C2StreamProfileLevelInfo::output>& me) {
192 (void)mayBlock;
193 if (!me.F(me.v.profile).supportsAtAll(me.v.profile)) {
194 me.set().profile = PROFILE_AV1_0;
195 }
196 if (!me.F(me.v.level).supportsAtAll(me.v.level)) {
197 me.set().level = LEVEL_AV1_4_1;
198 }
199 return C2R::Ok();
200}
201
202uint32_t C2SoftAomEnc::IntfImpl::getSyncFramePeriod() const {
203 if (mSyncFramePeriod->value < 0 || mSyncFramePeriod->value == INT64_MAX) {
204 return 0;
205 }
206 double period = mSyncFramePeriod->value / 1e6 * mFrameRate->value;
207 return (uint32_t)c2_max(c2_min(period + 0.5, double(UINT32_MAX)), 1.);
208}
209
210C2R C2SoftAomEnc::IntfImpl::ColorAspectsSetter(bool mayBlock,
211 C2P<C2StreamColorAspectsInfo::input>& me) {
212 (void)mayBlock;
213 if (me.v.range > C2Color::RANGE_OTHER) {
214 me.set().range = C2Color::RANGE_OTHER;
215 }
216 if (me.v.primaries > C2Color::PRIMARIES_OTHER) {
217 me.set().primaries = C2Color::PRIMARIES_OTHER;
218 }
219 if (me.v.transfer > C2Color::TRANSFER_OTHER) {
220 me.set().transfer = C2Color::TRANSFER_OTHER;
221 }
222 if (me.v.matrix > C2Color::MATRIX_OTHER) {
223 me.set().matrix = C2Color::MATRIX_OTHER;
224 }
225 return C2R::Ok();
226}
227C2R C2SoftAomEnc::IntfImpl::CodedColorAspectsSetter(
228 bool mayBlock, C2P<C2StreamColorAspectsInfo::output>& me,
229 const C2P<C2StreamColorAspectsInfo::input>& coded) {
230 (void)mayBlock;
231 me.set().range = coded.v.range;
232 me.set().primaries = coded.v.primaries;
233 me.set().transfer = coded.v.transfer;
234 me.set().matrix = coded.v.matrix;
235 return C2R::Ok();
236}
237
238C2SoftAomEnc::C2SoftAomEnc(const char* name, c2_node_id_t id,
239 const std::shared_ptr<IntfImpl>& intfImpl)
240 : SimpleC2Component(std::make_shared<SimpleInterface<IntfImpl>>(name, id, intfImpl)),
241 mIntf(intfImpl),
242 mCodecContext(nullptr),
243 mCodecConfiguration(nullptr),
244 mCodecInterface(nullptr),
245 mStrideAlign(2),
246 mBitrateControlMode(AOM_VBR),
247 mMinQuantizer(0),
248 mMaxQuantizer(0),
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000249 mLastTimestamp(INT64_MAX),
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000250 mSignalledOutputEos(false),
251 mSignalledError(false),
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000252 mHeadersReceived(false),
253 mIs10Bit(false) {
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000254 ALOGV("Constructor");
255}
256
257C2SoftAomEnc::~C2SoftAomEnc() {
258 ALOGV("Destructor");
259 onRelease();
260}
261
262c2_status_t C2SoftAomEnc::onInit() {
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000263 return C2_OK;
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000264}
265
266c2_status_t C2SoftAomEnc::onStop() {
267 onRelease();
268 return C2_OK;
269}
270
271void C2SoftAomEnc::onReset() {
272 (void)onStop();
273}
274
275void C2SoftAomEnc::onRelease() {
276 if (mCodecContext) {
277 aom_codec_destroy(mCodecContext);
278 delete mCodecContext;
279 mCodecContext = nullptr;
280 }
281
282 if (mCodecConfiguration) {
283 delete mCodecConfiguration;
284 mCodecConfiguration = nullptr;
285 }
286
287 // this one is not allocated by us
288 mCodecInterface = nullptr;
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000289 mHeadersReceived = false;
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000290}
291
292c2_status_t C2SoftAomEnc::onFlush_sm() {
293 return onStop();
294}
295
296aom_codec_err_t C2SoftAomEnc::setupCodecParameters() {
297 aom_codec_err_t codec_return = AOM_CODEC_OK;
298
299 codec_return = aom_codec_control(mCodecContext, AOME_SET_CPUUSED, DEFAULT_SPEED);
300 if (codec_return != AOM_CODEC_OK) goto BailOut;
301
302 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ROW_MT, 1);
303 if (codec_return != AOM_CODEC_OK) goto BailOut;
304
305 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_CDEF, 1);
306 if (codec_return != AOM_CODEC_OK) goto BailOut;
307
308 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_TPL_MODEL, 0);
309 if (codec_return != AOM_CODEC_OK) goto BailOut;
310
311 codec_return = aom_codec_control(mCodecContext, AV1E_SET_DELTAQ_MODE, 0);
312 if (codec_return != AOM_CODEC_OK) goto BailOut;
313
314 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_ORDER_HINT, 0);
315 if (codec_return != AOM_CODEC_OK) goto BailOut;
316
317 codec_return = aom_codec_control(mCodecContext, AV1E_SET_AQ_MODE, 3);
318 if (codec_return != AOM_CODEC_OK) goto BailOut;
319
320 codec_return = aom_codec_control(mCodecContext, AV1E_SET_COEFF_COST_UPD_FREQ, 3);
321 if (codec_return != AOM_CODEC_OK) goto BailOut;
322
323 codec_return = aom_codec_control(mCodecContext, AV1E_SET_MODE_COST_UPD_FREQ, 3);
324 if (codec_return != AOM_CODEC_OK) goto BailOut;
325
326 codec_return = aom_codec_control(mCodecContext, AV1E_SET_MV_COST_UPD_FREQ, 3);
327 if (codec_return != AOM_CODEC_OK) goto BailOut;
328
329 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_PALETTE, 0);
330 if (codec_return != AOM_CODEC_OK) goto BailOut;
331
332 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_OBMC, 0);
333 if (codec_return != AOM_CODEC_OK) goto BailOut;
334
335 codec_return = aom_codec_control(mCodecContext, AV1E_SET_NOISE_SENSITIVITY, 0);
336 if (codec_return != AOM_CODEC_OK) goto BailOut;
337
338 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_WARPED_MOTION, 0);
339 if (codec_return != AOM_CODEC_OK) goto BailOut;
340
341 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_GLOBAL_MOTION, 0);
342 if (codec_return != AOM_CODEC_OK) goto BailOut;
343
344 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_REF_FRAME_MVS, 0);
345 if (codec_return != AOM_CODEC_OK) goto BailOut;
346
347 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_CFL_INTRA, 0);
348 if (codec_return != AOM_CODEC_OK) goto BailOut;
349
350 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_SMOOTH_INTRA, 0);
351 if (codec_return != AOM_CODEC_OK) goto BailOut;
352 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_ANGLE_DELTA, 0);
353 if (codec_return != AOM_CODEC_OK) goto BailOut;
354 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_FILTER_INTRA, 0);
355 if (codec_return != AOM_CODEC_OK) goto BailOut;
356
357 codec_return = aom_codec_control(mCodecContext, AV1E_SET_INTRA_DEFAULT_TX_ONLY, 1);
358 if (codec_return != AOM_CODEC_OK) goto BailOut;
359 codec_return = aom_codec_control(mCodecContext, AV1E_SET_DISABLE_TRELLIS_QUANT, 1);
360 if (codec_return != AOM_CODEC_OK) goto BailOut;
361
362 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_DIST_WTD_COMP, 0);
363 if (codec_return != AOM_CODEC_OK) goto BailOut;
364 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_DIFF_WTD_COMP, 0);
365 if (codec_return != AOM_CODEC_OK) goto BailOut;
366 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_DUAL_FILTER, 0);
367 if (codec_return != AOM_CODEC_OK) goto BailOut;
368 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_INTERINTRA_COMP, 0);
369 if (codec_return != AOM_CODEC_OK) goto BailOut;
370 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_INTERINTRA_WEDGE, 0);
371 if (codec_return != AOM_CODEC_OK) goto BailOut;
372 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_INTRA_EDGE_FILTER, 0);
373 if (codec_return != AOM_CODEC_OK) goto BailOut;
374 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_INTRABC, 0);
375 if (codec_return != AOM_CODEC_OK) goto BailOut;
376 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_MASKED_COMP, 0);
377 if (codec_return != AOM_CODEC_OK) goto BailOut;
378 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_PAETH_INTRA, 0);
379 if (codec_return != AOM_CODEC_OK) goto BailOut;
380 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_QM, 0);
381 if (codec_return != AOM_CODEC_OK) goto BailOut;
382 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_RECT_PARTITIONS, 0);
383 if (codec_return != AOM_CODEC_OK) goto BailOut;
384 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_RESTORATION, 0);
385 if (codec_return != AOM_CODEC_OK) goto BailOut;
386 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_SMOOTH_INTERINTRA, 0);
387 if (codec_return != AOM_CODEC_OK) goto BailOut;
388 codec_return = aom_codec_control(mCodecContext, AV1E_SET_ENABLE_TX64, 0);
389 if (codec_return != AOM_CODEC_OK) goto BailOut;
390
391 codec_return = aom_codec_control(mCodecContext, AV1E_SET_MAX_REFERENCE_FRAMES, 3);
392 if (codec_return != AOM_CODEC_OK) goto BailOut;
393
Aayush Soni643b9182023-01-18 20:23:56 +0530394 ColorAspects sfAspects;
395 if (!C2Mapper::map(mColorAspects->primaries, &sfAspects.mPrimaries)) {
396 sfAspects.mPrimaries = android::ColorAspects::PrimariesUnspecified;
397 }
398 if (!C2Mapper::map(mColorAspects->range, &sfAspects.mRange)) {
399 sfAspects.mRange = android::ColorAspects::RangeUnspecified;
400 }
401 if (!C2Mapper::map(mColorAspects->matrix, &sfAspects.mMatrixCoeffs)) {
402 sfAspects.mMatrixCoeffs = android::ColorAspects::MatrixUnspecified;
403 }
404 if (!C2Mapper::map(mColorAspects->transfer, &sfAspects.mTransfer)) {
405 sfAspects.mTransfer = android::ColorAspects::TransferUnspecified;
406 }
407 int32_t primaries, transfer, matrixCoeffs;
408 bool range;
409 ColorUtils::convertCodecColorAspectsToIsoAspects(sfAspects,
410 &primaries,
411 &transfer,
412 &matrixCoeffs,
413 &range);
414
415 codec_return = aom_codec_control(mCodecContext, AV1E_SET_COLOR_RANGE, range);
416 if (codec_return != AOM_CODEC_OK) goto BailOut;
417 codec_return = aom_codec_control(mCodecContext, AV1E_SET_COLOR_PRIMARIES, primaries);
418 if (codec_return != AOM_CODEC_OK) goto BailOut;
419 codec_return = aom_codec_control(mCodecContext, AV1E_SET_TRANSFER_CHARACTERISTICS, transfer);
420 if (codec_return != AOM_CODEC_OK) goto BailOut;
421 codec_return = aom_codec_control(mCodecContext, AV1E_SET_MATRIX_COEFFICIENTS, matrixCoeffs);
422 if (codec_return != AOM_CODEC_OK) goto BailOut;
423
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000424BailOut:
425 return codec_return;
426}
427
428status_t C2SoftAomEnc::initEncoder() {
429 aom_codec_err_t codec_return;
430 status_t result = UNKNOWN_ERROR;
431 {
432 IntfImpl::Lock lock = mIntf->lock();
433 // Fetch config
434 mSize = mIntf->getSize_l();
435 mBitrate = mIntf->getBitrate_l();
436 mBitrateMode = mIntf->getBitrateMode_l();
437 mFrameRate = mIntf->getFrameRate_l();
438 mIntraRefresh = mIntf->getIntraRefresh_l();
439 mRequestSync = mIntf->getRequestSync_l();
Aayush Soni643b9182023-01-18 20:23:56 +0530440 mColorAspects = mIntf->getCodedColorAspects_l();
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000441 }
442
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000443
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000444 switch (mBitrateMode->value) {
445 case C2Config::BITRATE_CONST:
446 mBitrateControlMode = AOM_CBR;
447 break;
448 case C2Config::BITRATE_VARIABLE:
449 [[fallthrough]];
450 default:
451 mBitrateControlMode = AOM_VBR;
452 break;
453 }
454
455 mCodecInterface = aom_codec_av1_cx();
456 if (!mCodecInterface) goto CleanUp;
457
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000458 ALOGD("AOM: initEncoder. BRMode: %u. KF: %u. QP: %u - %u, 10Bit: %d",
459 (uint32_t)mBitrateControlMode,
460 mIntf->getSyncFramePeriod(), mMinQuantizer, mMaxQuantizer, mIs10Bit);
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000461
462 mCodecConfiguration = new aom_codec_enc_cfg_t;
463 if (!mCodecConfiguration) goto CleanUp;
464
465 codec_return = aom_codec_enc_config_default(mCodecInterface, mCodecConfiguration,
466 AOM_USAGE_REALTIME); // RT mode
467 if (codec_return != AOM_CODEC_OK) {
468 ALOGE("Error populating default configuration for aom encoder.");
469 goto CleanUp;
470 }
471
472 mCodecConfiguration->g_w = mSize->width;
473 mCodecConfiguration->g_h = mSize->height;
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000474 mCodecConfiguration->g_bit_depth = mIs10Bit ? AOM_BITS_10 : AOM_BITS_8;
475 mCodecConfiguration->g_input_bit_depth = mIs10Bit ? 10 : 8;
476
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000477
478 mCodecConfiguration->g_threads = 0;
479 mCodecConfiguration->g_error_resilient = 0;
480
481 // timebase unit is microsecond
482 // g_timebase is in seconds (i.e. 1/1000000 seconds)
483 mCodecConfiguration->g_timebase.num = 1;
484 mCodecConfiguration->g_timebase.den = 1000000;
485 // rc_target_bitrate is in kbps, mBitrate in bps
486 mCodecConfiguration->rc_target_bitrate = (mBitrate->value + 500) / 1000;
487 mCodecConfiguration->rc_end_usage = AOM_CBR;
488 // Disable frame drop - not allowed in MediaCodec now.
489 mCodecConfiguration->rc_dropframe_thresh = 0;
490 // Disable lagged encoding.
491 mCodecConfiguration->g_lag_in_frames = 0;
492
493 // Disable spatial resizing.
494 mCodecConfiguration->rc_resize_mode = 0;
495 // Single-pass mode.
496 mCodecConfiguration->g_pass = AOM_RC_ONE_PASS;
497
498 // Maximum key frame interval - for CBR boost to 3000
499 mCodecConfiguration->kf_max_dist = 3000;
500 // Encoder determines optimal key frame placement automatically.
501 mCodecConfiguration->kf_mode = AOM_KF_AUTO;
502 // Initial value of the buffer level in ms.
503 mCodecConfiguration->rc_buf_initial_sz = 500;
504 // Amount of data that the encoder should try to maintain in ms.
505 mCodecConfiguration->rc_buf_optimal_sz = 600;
506 // The amount of data that may be buffered by the decoding
507 // application in ms.
508 mCodecConfiguration->rc_buf_sz = 1000;
509
510 if (mBitrateControlMode == AOM_CBR) {
511 // Maximum amount of bits that can be subtracted from the target
512 // bitrate - expressed as percentage of the target bitrate.
513 mCodecConfiguration->rc_undershoot_pct = 100;
514 // Maximum amount of bits that can be added to the target
515 // bitrate - expressed as percentage of the target bitrate.
516 mCodecConfiguration->rc_overshoot_pct = 10;
517 } else {
518 // Maximum amount of bits that can be subtracted from the target
519 // bitrate - expressed as percentage of the target bitrate.
520 mCodecConfiguration->rc_undershoot_pct = 100;
521 // Maximum amount of bits that can be added to the target
522 // bitrate - expressed as percentage of the target bitrate.
523 mCodecConfiguration->rc_overshoot_pct = 25;
524 }
525
526 if (mIntf->getSyncFramePeriod() >= 0) {
527 mCodecConfiguration->kf_max_dist = mIntf->getSyncFramePeriod();
528 mCodecConfiguration->kf_min_dist = mIntf->getSyncFramePeriod();
529 mCodecConfiguration->kf_mode = AOM_KF_AUTO;
530 }
531 if (mMinQuantizer > 0) {
532 mCodecConfiguration->rc_min_quantizer = mMinQuantizer;
533 }
534 if (mMaxQuantizer > 0) {
535 mCodecConfiguration->rc_max_quantizer = mMaxQuantizer;
536 }
537
538 mCodecContext = new aom_codec_ctx_t;
539 if (!mCodecContext) goto CleanUp;
540 codec_return = aom_codec_enc_init(mCodecContext, mCodecInterface, mCodecConfiguration,
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000541 mIs10Bit ? AOM_CODEC_USE_HIGHBITDEPTH : 0);
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000542 if (codec_return != AOM_CODEC_OK) {
543 ALOGE("Error initializing aom encoder");
544 goto CleanUp;
545 }
546
547 codec_return = setupCodecParameters();
548 if (codec_return != AOM_CODEC_OK) {
549 ALOGE("Error setting up codec parameters");
550 goto CleanUp;
551 }
552
553 mHeadersReceived = false;
554
555 {
556 uint32_t width = mSize->width;
557 uint32_t height = mSize->height;
558 if (((uint64_t)width * height) > ((uint64_t)INT32_MAX / 3)) {
559 ALOGE("b/25812794, Buffer size is too big, width=%u, height=%u.", width, height);
560 } else {
561 uint32_t stride = (width + mStrideAlign - 1) & ~(mStrideAlign - 1);
562 uint32_t vstride = (height + mStrideAlign - 1) & ~(mStrideAlign - 1);
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000563 mConversionBuffer = MemoryBlock::Allocate(stride * vstride * 3 / (mIs10Bit? 1 : 2));
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000564 if (!mConversionBuffer.size()) {
565 ALOGE("Allocating conversion buffer failed.");
566 } else {
567 mNumInputFrames = -1;
568 return OK;
569 }
570 }
571 }
572
573CleanUp:
574 onRelease();
575 return result;
576}
577
578void C2SoftAomEnc::process(const std::unique_ptr<C2Work>& work,
579 const std::shared_ptr<C2BlockPool>& pool) {
580 // Initialize output work
581 work->result = C2_OK;
582 work->workletsProcessed = 1u;
583 work->worklets.front()->output.flags = work->input.flags;
584
585 if (mSignalledError || mSignalledOutputEos) {
586 work->result = C2_BAD_VALUE;
587 return;
588 }
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000589
590 std::shared_ptr<const C2GraphicView> rView;
591 std::shared_ptr<C2Buffer> inputBuffer;
592 if (!work->input.buffers.empty()) {
593 inputBuffer = work->input.buffers[0];
594 rView = std::make_shared<const C2GraphicView>(
595 inputBuffer->data().graphicBlocks().front().map().get());
596 if (rView->error() != C2_OK) {
597 ALOGE("graphic view map err = %d", rView->error());
598 work->result = C2_CORRUPTED;
599 return;
600 }
601 } else {
602 ALOGV("Empty input Buffer");
603 uint32_t flags = 0;
604 if (work->input.flags & C2FrameData::FLAG_END_OF_STREAM) {
605 flags |= C2FrameData::FLAG_END_OF_STREAM;
606 }
607 work->worklets.front()->output.flags = (C2FrameData::flags_t)flags;
608 work->worklets.front()->output.buffers.clear();
609 work->worklets.front()->output.ordinal = work->input.ordinal;
610 work->workletsProcessed = 1u;
611 return;
612 }
613
614 bool end_of_stream = ((work->input.flags & C2FrameData::FLAG_END_OF_STREAM) != 0);
615 aom_image_t raw_frame;
616 const C2PlanarLayout& layout = rView->layout();
617 if (!mHeadersReceived) {
618 mIs10Bit = (layout.planes[layout.PLANE_Y].bitDepth == 10);
619
620 // Re-Initialize encoder
621 if (mCodecContext){
622 onRelease();
623 }
624 }
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000625 if (!mCodecContext && OK != initEncoder()) {
626 ALOGE("Failed to initialize encoder");
627 mSignalledError = true;
628 work->result = C2_CORRUPTED;
629 return;
630 }
631
632 if (!mHeadersReceived) {
633 Av1Config av1_config;
634 constexpr uint32_t header_length = 2048;
635 uint8_t header[header_length];
636 size_t header_bytes;
637 aom_fixed_buf_t* obu_sequence_header = aom_codec_get_global_headers(mCodecContext);
638 int ret = 1;
639 if (obu_sequence_header) {
640 if (get_av1config_from_obu(reinterpret_cast<const uint8_t*>(obu_sequence_header->buf),
641 obu_sequence_header->sz, false, &av1_config) == 0) {
642 ret = write_av1config(&av1_config, header_length, &header_bytes, header);
643
644 } else {
645 ALOGE("Can not get config");
646 }
647 free(obu_sequence_header->buf);
648 free(obu_sequence_header);
649 }
650
651 if (ret) {
652 ALOGE("Can not write config");
653 mSignalledError = true;
654 work->result = C2_NO_MEMORY;
655 work->workletsProcessed = 1u;
656 return;
657 }
658
659 mHeadersReceived = true;
660 std::unique_ptr<C2StreamInitDataInfo::output> csd =
661 C2StreamInitDataInfo::output::AllocUnique(header_bytes, 0u);
662 if (!csd) {
663 ALOGE("CSD allocation failed");
664 mSignalledError = true;
665 work->result = C2_NO_MEMORY;
666 work->workletsProcessed = 1u;
667 return;
668 }
669 memcpy(csd->m.value, header, header_bytes);
670 work->worklets.front()->output.configUpdate.push_back(std::move(csd));
671 ALOGV("CSD Produced of size %zu bytes", header_bytes);
672 }
673
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000674 const C2ConstGraphicBlock inBuffer = inputBuffer->data().graphicBlocks().front();
675 if (inBuffer.width() < mSize->width || inBuffer.height() < mSize->height) {
676 ALOGE("unexpected Input buffer attributes %d(%d) x %d(%d)", inBuffer.width(), mSize->width,
677 inBuffer.height(), mSize->height);
678 mSignalledError = true;
679 work->result = C2_BAD_VALUE;
680 return;
681 }
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000682
683
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000684 uint32_t width = mSize->width;
685 uint32_t height = mSize->height;
686 if (width > 0x8000 || height > 0x8000) {
687 ALOGE("Image too big: %u x %u", width, height);
688 work->result = C2_BAD_VALUE;
689 return;
690 }
691 uint32_t stride = (width + mStrideAlign - 1) & ~(mStrideAlign - 1);
692 uint32_t vstride = (height + mStrideAlign - 1) & ~(mStrideAlign - 1);
693 switch (layout.type) {
694 case C2PlanarLayout::TYPE_RGB:
695 case C2PlanarLayout::TYPE_RGBA: {
696 std::shared_ptr<C2StreamColorAspectsInfo::output> colorAspects;
697 {
698 IntfImpl::Lock lock = mIntf->lock();
699 colorAspects = mIntf->getCodedColorAspects_l();
700 }
701 ConvertRGBToPlanarYUV(mConversionBuffer.data(), stride, vstride,
702 mConversionBuffer.size(), *rView.get(), colorAspects->matrix,
703 colorAspects->range);
704 aom_img_wrap(&raw_frame, AOM_IMG_FMT_I420, width, height, mStrideAlign,
705 mConversionBuffer.data());
706 break;
707 }
708 case C2PlanarLayout::TYPE_YUV: {
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000709 const bool isYUV420_10bit = IsYUV420_10bit(*rView);
710 if (!IsYUV420(*rView) && !isYUV420_10bit) {
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000711 ALOGE("input is not YUV420");
712 work->result = C2_BAD_VALUE;
713 return;
714 }
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000715 if (!isYUV420_10bit) {
716 if (IsI420(*rView)) {
717 // I420 compatible - though with custom offset and stride
718 aom_img_wrap(&raw_frame, AOM_IMG_FMT_I420, width, height, mStrideAlign,
719 (uint8_t*)rView->data()[0]);
720 raw_frame.planes[1] = (uint8_t*)rView->data()[1];
721 raw_frame.planes[2] = (uint8_t*)rView->data()[2];
722 raw_frame.stride[0] = layout.planes[layout.PLANE_Y].rowInc;
723 raw_frame.stride[1] = layout.planes[layout.PLANE_U].rowInc;
724 raw_frame.stride[2] = layout.planes[layout.PLANE_V].rowInc;
725 } else {
726 // TODO(kyslov): Add image wrap for NV12
727 // copy to I420
728 MediaImage2 img = CreateYUV420PlanarMediaImage2(width, height, stride, vstride);
729 if (mConversionBuffer.size() >= stride * vstride * 3 / 2) {
730 status_t err = ImageCopy(mConversionBuffer.data(), &img, *rView);
731 if (err != OK) {
732 ALOGE("Buffer conversion failed: %d", err);
733 work->result = C2_BAD_VALUE;
734 return;
735 }
736 aom_img_wrap(&raw_frame, AOM_IMG_FMT_I420, stride, vstride, mStrideAlign,
737 mConversionBuffer.data());
738 aom_img_set_rect(&raw_frame, 0, 0, width, height, 0);
739 } else {
740 ALOGE("Conversion buffer is too small: %u x %u for %zu", stride, vstride,
741 mConversionBuffer.size());
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000742 work->result = C2_BAD_VALUE;
743 return;
744 }
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000745 }
746 } else { // 10 bits
747 if (IsP010(*rView)) {
748 if (mConversionBuffer.size() >= stride * vstride * 3) {
749 uint16_t *dstY, *dstU, *dstV;
750 dstY = (uint16_t*)mConversionBuffer.data();
751 dstU = ((uint16_t*)mConversionBuffer.data()) + stride * vstride;
752 dstV = ((uint16_t*)mConversionBuffer.data()) + (stride * vstride) / 4;
753 convertP010ToYUV420Planar16(dstY, dstU, dstV, (uint16_t*)(rView->data()[0]),
754 (uint16_t*)(rView->data()[1]), stride, stride,
755 stride, stride / 2, stride / 2, stride,
756 vstride);
757 aom_img_wrap(&raw_frame, AOM_IMG_FMT_I42016, stride, vstride, mStrideAlign,
758 mConversionBuffer.data());
759 aom_img_set_rect(&raw_frame, 0, 0, width, height, 0);
760 } else {
761 ALOGE("Conversion buffer is too small: %u x %u for %zu", stride, vstride,
762 mConversionBuffer.size());
763 work->result = C2_BAD_VALUE;
764 return;
765 }
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000766 } else {
Fyodor Kyslovd97e9912022-11-07 19:23:21 +0000767 ALOGE("Image format conversion is not supported.");
Fyodor Kyslovadc71142022-09-15 16:47:03 +0000768 work->result = C2_BAD_VALUE;
769 return;
770 }
771 }
772 break;
773 }
774 default:
775 ALOGE("Unrecognized plane type: %d", layout.type);
776 work->result = C2_BAD_VALUE;
777 return;
778 }
779
780 aom_enc_frame_flags_t flags = 0;
781 // handle dynamic config parameters
782 {
783 IntfImpl::Lock lock = mIntf->lock();
784 std::shared_ptr<C2StreamIntraRefreshTuning::output> intraRefresh =
785 mIntf->getIntraRefresh_l();
786 std::shared_ptr<C2StreamBitrateInfo::output> bitrate = mIntf->getBitrate_l();
787 std::shared_ptr<C2StreamRequestSyncFrameTuning::output> requestSync =
788 mIntf->getRequestSync_l();
789 lock.unlock();
790
791 if (intraRefresh != mIntraRefresh) {
792 mIntraRefresh = intraRefresh;
793 ALOGV("Got mIntraRefresh request");
794 }
795
796 if (requestSync != mRequestSync) {
797 // we can handle IDR immediately
798 if (requestSync->value) {
799 // unset request
800 C2StreamRequestSyncFrameTuning::output clearSync(0u, C2_FALSE);
801 std::vector<std::unique_ptr<C2SettingResult>> failures;
802 mIntf->config({&clearSync}, C2_MAY_BLOCK, &failures);
803 ALOGV("Got sync request");
804 flags |= AOM_EFLAG_FORCE_KF;
805 }
806 mRequestSync = requestSync;
807 }
808
809 if (bitrate != mBitrate) {
810 mBitrate = bitrate;
811 mCodecConfiguration->rc_target_bitrate = (mBitrate->value + 500) / 1000;
812 aom_codec_err_t res = aom_codec_enc_config_set(mCodecContext, mCodecConfiguration);
813 if (res != AOM_CODEC_OK) {
814 ALOGE("aom encoder failed to update bitrate: %s", aom_codec_err_to_string(res));
815 mSignalledError = true;
816 work->result = C2_CORRUPTED;
817 return;
818 }
819 }
820 }
821
822 uint64_t input_timestamp = work->input.ordinal.timestamp.peekull();
823 uint32_t frame_duration;
824 if (input_timestamp > mLastTimestamp) {
825 frame_duration = (uint32_t)(input_timestamp - mLastTimestamp);
826 } else {
827 // Use default of 30 fps in case of 0 frame rate.
828 float frame_rate = mFrameRate->value;
829 if (frame_rate < 0.001) {
830 frame_rate = 30.0;
831 }
832 frame_duration = (uint32_t)(1000000 / frame_rate + 0.5);
833 }
834 mLastTimestamp = input_timestamp;
835
836 aom_codec_err_t codec_return =
837 aom_codec_encode(mCodecContext, &raw_frame, input_timestamp, frame_duration, flags);
838 if (codec_return != AOM_CODEC_OK) {
839 ALOGE("aom encoder failed to encode frame");
840 mSignalledError = true;
841 work->result = C2_CORRUPTED;
842 return;
843 }
844
845 bool populated = false;
846 aom_codec_iter_t encoded_packet_iterator = nullptr;
847 const aom_codec_cx_pkt_t* encoded_packet;
848 while ((encoded_packet = aom_codec_get_cx_data(mCodecContext, &encoded_packet_iterator))) {
849 if (encoded_packet->kind == AOM_CODEC_CX_FRAME_PKT) {
850 std::shared_ptr<C2LinearBlock> block;
851 C2MemoryUsage usage = {C2MemoryUsage::CPU_READ, C2MemoryUsage::CPU_WRITE};
852 c2_status_t err = pool->fetchLinearBlock(encoded_packet->data.frame.sz, usage, &block);
853 if (err != C2_OK) {
854 ALOGE("fetchLinearBlock for Output failed with status %d", err);
855 work->result = C2_NO_MEMORY;
856 return;
857 }
858 C2WriteView wView = block->map().get();
859 if (wView.error()) {
860 ALOGE("write view map failed %d", wView.error());
861 work->result = C2_CORRUPTED;
862 return;
863 }
864
865 memcpy(wView.data(), encoded_packet->data.frame.buf, encoded_packet->data.frame.sz);
866 ++mNumInputFrames;
867
868 ALOGD("bytes generated %zu", encoded_packet->data.frame.sz);
869 uint32_t flags = 0;
870 if (end_of_stream) {
871 flags |= C2FrameData::FLAG_END_OF_STREAM;
872 }
873
874 work->worklets.front()->output.flags = (C2FrameData::flags_t)flags;
875 work->worklets.front()->output.buffers.clear();
876 std::shared_ptr<C2Buffer> buffer =
877 createLinearBuffer(block, 0, encoded_packet->data.frame.sz);
878 if (encoded_packet->data.frame.flags & AOM_FRAME_IS_KEY) {
879 buffer->setInfo(std::make_shared<C2StreamPictureTypeMaskInfo::output>(
880 0u /* stream id */, C2Config::SYNC_FRAME));
881 }
882 work->worklets.front()->output.buffers.push_back(buffer);
883 work->worklets.front()->output.ordinal = work->input.ordinal;
884 work->worklets.front()->output.ordinal.timestamp = encoded_packet->data.frame.pts;
885 work->workletsProcessed = 1u;
886 populated = true;
887 if (end_of_stream) {
888 mSignalledOutputEos = true;
889 ALOGV("signalled End Of Stream");
890 }
891 }
892 }
893 if (!populated) {
894 work->workletsProcessed = 0u;
895 }
896}
897
898c2_status_t C2SoftAomEnc::drain(uint32_t drainMode, const std::shared_ptr<C2BlockPool>& pool) {
899 (void)pool;
900 if (drainMode == NO_DRAIN) {
901 ALOGW("drain with NO_DRAIN: no-op");
902 return C2_OK;
903 }
904 if (drainMode == DRAIN_CHAIN) {
905 ALOGW("DRAIN_CHAIN not supported");
906 return C2_OMITTED;
907 }
908
909 return C2_OK;
910}
911
912class C2SoftAomEncFactory : public C2ComponentFactory {
913 public:
914 C2SoftAomEncFactory()
915 : mHelper(std::static_pointer_cast<C2ReflectorHelper>(
916 GetCodec2PlatformComponentStore()->getParamReflector())) {}
917
918 virtual c2_status_t createComponent(c2_node_id_t id,
919 std::shared_ptr<C2Component>* const component,
920 std::function<void(C2Component*)> deleter) override {
921 *component = std::shared_ptr<C2Component>(
922 new C2SoftAomEnc(COMPONENT_NAME, id,
923 std::make_shared<C2SoftAomEnc::IntfImpl>(mHelper)),
924 deleter);
925 return C2_OK;
926 }
927
928 virtual c2_status_t createInterface(
929 c2_node_id_t id, std::shared_ptr<C2ComponentInterface>* const interface,
930 std::function<void(C2ComponentInterface*)> deleter) override {
931 *interface = std::shared_ptr<C2ComponentInterface>(
932 new SimpleInterface<C2SoftAomEnc::IntfImpl>(
933 COMPONENT_NAME, id, std::make_shared<C2SoftAomEnc::IntfImpl>(mHelper)),
934 deleter);
935 return C2_OK;
936 }
937
938 virtual ~C2SoftAomEncFactory() override = default;
939
940 private:
941 std::shared_ptr<C2ReflectorHelper> mHelper;
942};
943
944} // namespace android
945
946__attribute__((cfi_canonical_jump_table)) extern "C" ::C2ComponentFactory* CreateCodec2Factory() {
947 ALOGV("in %s", __func__);
948 return new ::android::C2SoftAomEncFactory();
949}
950
951__attribute__((cfi_canonical_jump_table)) extern "C" void DestroyCodec2Factory(
952 ::C2ComponentFactory* factory) {
953 ALOGV("in %s", __func__);
954 delete factory;
955}