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Pawin Vongmasa36653902018-11-15 00:10:25 -08001/*
2 * Copyright 2017, 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 "CCodecBufferChannel"
19#include <utils/Log.h>
20
Pawin Vongmasae7bb8612020-06-04 06:15:22 -070021#include <algorithm>
22#include <list>
Pawin Vongmasa36653902018-11-15 00:10:25 -080023#include <numeric>
24
25#include <C2AllocatorGralloc.h>
26#include <C2PlatformSupport.h>
27#include <C2BlockInternal.h>
28#include <C2Config.h>
29#include <C2Debug.h>
30
31#include <android/hardware/cas/native/1.0/IDescrambler.h>
Robert Shih895fba92019-07-16 16:29:44 -070032#include <android/hardware/drm/1.0/types.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080033#include <android-base/stringprintf.h>
Wonsik Kimfb7a7672019-12-27 17:13:33 -080034#include <binder/MemoryBase.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080035#include <binder/MemoryDealer.h>
Ray Essick18ea0452019-08-27 16:07:27 -070036#include <cutils/properties.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080037#include <gui/Surface.h>
Robert Shih895fba92019-07-16 16:29:44 -070038#include <hidlmemory/FrameworkUtils.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080039#include <media/openmax/OMX_Core.h>
40#include <media/stagefright/foundation/ABuffer.h>
41#include <media/stagefright/foundation/ALookup.h>
42#include <media/stagefright/foundation/AMessage.h>
43#include <media/stagefright/foundation/AUtils.h>
44#include <media/stagefright/foundation/hexdump.h>
45#include <media/stagefright/MediaCodec.h>
46#include <media/stagefright/MediaCodecConstants.h>
Wonsik Kim155d5cb2019-10-09 12:49:49 -070047#include <media/stagefright/SkipCutBuffer.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080048#include <media/MediaCodecBuffer.h>
Wonsik Kim41d83432020-04-27 16:40:49 -070049#include <mediadrm/ICrypto.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080050#include <system/window.h>
51
52#include "CCodecBufferChannel.h"
53#include "Codec2Buffer.h"
Pawin Vongmasa36653902018-11-15 00:10:25 -080054
55namespace android {
56
57using android::base::StringPrintf;
58using hardware::hidl_handle;
59using hardware::hidl_string;
60using hardware::hidl_vec;
Robert Shih895fba92019-07-16 16:29:44 -070061using hardware::fromHeap;
62using hardware::HidlMemory;
63
Pawin Vongmasa36653902018-11-15 00:10:25 -080064using namespace hardware::cas::V1_0;
65using namespace hardware::cas::native::V1_0;
66
67using CasStatus = hardware::cas::V1_0::Status;
Robert Shih895fba92019-07-16 16:29:44 -070068using DrmBufferType = hardware::drm::V1_0::BufferType;
Pawin Vongmasa36653902018-11-15 00:10:25 -080069
Pawin Vongmasa36653902018-11-15 00:10:25 -080070namespace {
71
Wonsik Kim469c8342019-04-11 16:46:09 -070072constexpr size_t kSmoothnessFactor = 4;
73constexpr size_t kRenderingDepth = 3;
Pawin Vongmasa36653902018-11-15 00:10:25 -080074
Sungtak Leeab6f2f32019-02-15 14:43:51 -080075// This is for keeping IGBP's buffer dropping logic in legacy mode other
76// than making it non-blocking. Do not change this value.
77const static size_t kDequeueTimeoutNs = 0;
78
Pawin Vongmasa36653902018-11-15 00:10:25 -080079} // namespace
80
81CCodecBufferChannel::QueueGuard::QueueGuard(
82 CCodecBufferChannel::QueueSync &sync) : mSync(sync) {
83 Mutex::Autolock l(mSync.mGuardLock);
84 // At this point it's guaranteed that mSync is not under state transition,
85 // as we are holding its mutex.
86
87 Mutexed<CCodecBufferChannel::QueueSync::Counter>::Locked count(mSync.mCount);
88 if (count->value == -1) {
89 mRunning = false;
90 } else {
91 ++count->value;
92 mRunning = true;
93 }
94}
95
96CCodecBufferChannel::QueueGuard::~QueueGuard() {
97 if (mRunning) {
98 // We are not holding mGuardLock at this point so that QueueSync::stop() can
99 // keep holding the lock until mCount reaches zero.
100 Mutexed<CCodecBufferChannel::QueueSync::Counter>::Locked count(mSync.mCount);
101 --count->value;
102 count->cond.broadcast();
103 }
104}
105
106void CCodecBufferChannel::QueueSync::start() {
107 Mutex::Autolock l(mGuardLock);
108 // If stopped, it goes to running state; otherwise no-op.
109 Mutexed<Counter>::Locked count(mCount);
110 if (count->value == -1) {
111 count->value = 0;
112 }
113}
114
115void CCodecBufferChannel::QueueSync::stop() {
116 Mutex::Autolock l(mGuardLock);
117 Mutexed<Counter>::Locked count(mCount);
118 if (count->value == -1) {
119 // no-op
120 return;
121 }
122 // Holding mGuardLock here blocks creation of additional QueueGuard objects, so
123 // mCount can only decrement. In other words, threads that acquired the lock
124 // are allowed to finish execution but additional threads trying to acquire
125 // the lock at this point will block, and then get QueueGuard at STOPPED
126 // state.
127 while (count->value != 0) {
128 count.waitForCondition(count->cond);
129 }
130 count->value = -1;
131}
132
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700133// Input
134
135CCodecBufferChannel::Input::Input() : extraBuffers("extra") {}
136
Pawin Vongmasa36653902018-11-15 00:10:25 -0800137// CCodecBufferChannel
138
139CCodecBufferChannel::CCodecBufferChannel(
140 const std::shared_ptr<CCodecCallback> &callback)
141 : mHeapSeqNum(-1),
142 mCCodecCallback(callback),
143 mFrameIndex(0u),
144 mFirstValidFrameIndex(0u),
145 mMetaMode(MODE_NONE),
Pawin Vongmasa36653902018-11-15 00:10:25 -0800146 mInputMetEos(false) {
Sungtak Leed7463d12019-09-04 16:01:00 -0700147 mOutputSurface.lock()->maxDequeueBuffers = kSmoothnessFactor + kRenderingDepth;
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700148 {
149 Mutexed<Input>::Locked input(mInput);
150 input->buffers.reset(new DummyInputBuffers(""));
151 input->extraBuffers.flush();
152 input->inputDelay = 0u;
153 input->pipelineDelay = 0u;
154 input->numSlots = kSmoothnessFactor;
155 input->numExtraSlots = 0u;
156 }
157 {
158 Mutexed<Output>::Locked output(mOutput);
159 output->outputDelay = 0u;
160 output->numSlots = kSmoothnessFactor;
161 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800162}
163
164CCodecBufferChannel::~CCodecBufferChannel() {
Wonsik Kimfb7a7672019-12-27 17:13:33 -0800165 if (mCrypto != nullptr && mHeapSeqNum >= 0) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800166 mCrypto->unsetHeap(mHeapSeqNum);
167 }
168}
169
170void CCodecBufferChannel::setComponent(
171 const std::shared_ptr<Codec2Client::Component> &component) {
172 mComponent = component;
173 mComponentName = component->getName() + StringPrintf("#%d", int(uintptr_t(component.get()) % 997));
174 mName = mComponentName.c_str();
175}
176
177status_t CCodecBufferChannel::setInputSurface(
178 const std::shared_ptr<InputSurfaceWrapper> &surface) {
179 ALOGV("[%s] setInputSurface", mName);
180 mInputSurface = surface;
181 return mInputSurface->connect(mComponent);
182}
183
184status_t CCodecBufferChannel::signalEndOfInputStream() {
185 if (mInputSurface == nullptr) {
186 return INVALID_OPERATION;
187 }
188 return mInputSurface->signalEndOfInputStream();
189}
190
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700191status_t CCodecBufferChannel::queueInputBufferInternal(sp<MediaCodecBuffer> buffer) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800192 int64_t timeUs;
193 CHECK(buffer->meta()->findInt64("timeUs", &timeUs));
194
195 if (mInputMetEos) {
196 ALOGD("[%s] buffers after EOS ignored (%lld us)", mName, (long long)timeUs);
197 return OK;
198 }
199
200 int32_t flags = 0;
201 int32_t tmp = 0;
202 bool eos = false;
203 if (buffer->meta()->findInt32("eos", &tmp) && tmp) {
204 eos = true;
205 mInputMetEos = true;
206 ALOGV("[%s] input EOS", mName);
207 }
208 if (buffer->meta()->findInt32("csd", &tmp) && tmp) {
209 flags |= C2FrameData::FLAG_CODEC_CONFIG;
210 }
211 ALOGV("[%s] queueInputBuffer: buffer->size() = %zu", mName, buffer->size());
212 std::unique_ptr<C2Work> work(new C2Work);
213 work->input.ordinal.timestamp = timeUs;
214 work->input.ordinal.frameIndex = mFrameIndex++;
215 // WORKAROUND: until codecs support handling work after EOS and max output sizing, use timestamp
216 // manipulation to achieve image encoding via video codec, and to constrain encoded output.
217 // Keep client timestamp in customOrdinal
218 work->input.ordinal.customOrdinal = timeUs;
219 work->input.buffers.clear();
220
Wonsik Kimab34ed62019-01-31 15:28:46 -0800221 uint64_t queuedFrameIndex = work->input.ordinal.frameIndex.peeku();
222 std::vector<std::shared_ptr<C2Buffer>> queuedBuffers;
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700223 sp<Codec2Buffer> copy;
Wonsik Kimab34ed62019-01-31 15:28:46 -0800224
Pawin Vongmasa36653902018-11-15 00:10:25 -0800225 if (buffer->size() > 0u) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700226 Mutexed<Input>::Locked input(mInput);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800227 std::shared_ptr<C2Buffer> c2buffer;
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700228 if (!input->buffers->releaseBuffer(buffer, &c2buffer, false)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800229 return -ENOENT;
230 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700231 // TODO: we want to delay copying buffers.
232 if (input->extraBuffers.numComponentBuffers() < input->numExtraSlots) {
233 copy = input->buffers->cloneAndReleaseBuffer(buffer);
234 if (copy != nullptr) {
235 (void)input->extraBuffers.assignSlot(copy);
236 if (!input->extraBuffers.releaseSlot(copy, &c2buffer, false)) {
237 return UNKNOWN_ERROR;
238 }
239 bool released = input->buffers->releaseBuffer(buffer, nullptr, true);
240 ALOGV("[%s] queueInputBuffer: buffer copied; %sreleased",
241 mName, released ? "" : "not ");
242 buffer.clear();
243 } else {
244 ALOGW("[%s] queueInputBuffer: failed to copy a buffer; this may cause input "
245 "buffer starvation on component.", mName);
246 }
247 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800248 work->input.buffers.push_back(c2buffer);
Wonsik Kimab34ed62019-01-31 15:28:46 -0800249 queuedBuffers.push_back(c2buffer);
250 } else if (eos) {
251 flags |= C2FrameData::FLAG_END_OF_STREAM;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800252 }
253 work->input.flags = (C2FrameData::flags_t)flags;
254 // TODO: fill info's
255
256 work->input.configUpdate = std::move(mParamsToBeSet);
257 work->worklets.clear();
258 work->worklets.emplace_back(new C2Worklet);
259
260 std::list<std::unique_ptr<C2Work>> items;
261 items.push_back(std::move(work));
Wonsik Kimab34ed62019-01-31 15:28:46 -0800262 mPipelineWatcher.lock()->onWorkQueued(
263 queuedFrameIndex,
264 std::move(queuedBuffers),
265 PipelineWatcher::Clock::now());
Pawin Vongmasa36653902018-11-15 00:10:25 -0800266 c2_status_t err = mComponent->queue(&items);
Wonsik Kimab34ed62019-01-31 15:28:46 -0800267 if (err != C2_OK) {
268 mPipelineWatcher.lock()->onWorkDone(queuedFrameIndex);
269 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800270
271 if (err == C2_OK && eos && buffer->size() > 0u) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800272 work.reset(new C2Work);
273 work->input.ordinal.timestamp = timeUs;
274 work->input.ordinal.frameIndex = mFrameIndex++;
275 // WORKAROUND: keep client timestamp in customOrdinal
276 work->input.ordinal.customOrdinal = timeUs;
277 work->input.buffers.clear();
278 work->input.flags = C2FrameData::FLAG_END_OF_STREAM;
Pawin Vongmasa1c75a232019-01-09 04:41:52 -0800279 work->worklets.emplace_back(new C2Worklet);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800280
Wonsik Kimab34ed62019-01-31 15:28:46 -0800281 queuedFrameIndex = work->input.ordinal.frameIndex.peeku();
282 queuedBuffers.clear();
283
Pawin Vongmasa36653902018-11-15 00:10:25 -0800284 items.clear();
285 items.push_back(std::move(work));
Wonsik Kimab34ed62019-01-31 15:28:46 -0800286
287 mPipelineWatcher.lock()->onWorkQueued(
288 queuedFrameIndex,
289 std::move(queuedBuffers),
290 PipelineWatcher::Clock::now());
Pawin Vongmasa36653902018-11-15 00:10:25 -0800291 err = mComponent->queue(&items);
Wonsik Kimab34ed62019-01-31 15:28:46 -0800292 if (err != C2_OK) {
293 mPipelineWatcher.lock()->onWorkDone(queuedFrameIndex);
294 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800295 }
296 if (err == C2_OK) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700297 Mutexed<Input>::Locked input(mInput);
298 bool released = false;
299 if (buffer) {
300 released = input->buffers->releaseBuffer(buffer, nullptr, true);
301 } else if (copy) {
302 released = input->extraBuffers.releaseSlot(copy, nullptr, true);
303 }
304 ALOGV("[%s] queueInputBuffer: buffer%s %sreleased",
305 mName, (buffer == nullptr) ? "(copy)" : "", released ? "" : "not ");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800306 }
307
308 feedInputBufferIfAvailableInternal();
309 return err;
310}
311
312status_t CCodecBufferChannel::setParameters(std::vector<std::unique_ptr<C2Param>> &params) {
313 QueueGuard guard(mSync);
314 if (!guard.isRunning()) {
315 ALOGD("[%s] setParameters is only supported in the running state.", mName);
316 return -ENOSYS;
317 }
318 mParamsToBeSet.insert(mParamsToBeSet.end(),
319 std::make_move_iterator(params.begin()),
320 std::make_move_iterator(params.end()));
321 params.clear();
322 return OK;
323}
324
Wonsik Kimfb7a7672019-12-27 17:13:33 -0800325status_t CCodecBufferChannel::attachBuffer(
326 const std::shared_ptr<C2Buffer> &c2Buffer,
327 const sp<MediaCodecBuffer> &buffer) {
328 if (!buffer->copy(c2Buffer)) {
329 return -ENOSYS;
330 }
331 return OK;
332}
333
334void CCodecBufferChannel::ensureDecryptDestination(size_t size) {
335 if (!mDecryptDestination || mDecryptDestination->size() < size) {
336 sp<IMemoryHeap> heap{new MemoryHeapBase(size * 2)};
337 if (mDecryptDestination && mCrypto && mHeapSeqNum >= 0) {
338 mCrypto->unsetHeap(mHeapSeqNum);
339 }
340 mDecryptDestination = new MemoryBase(heap, 0, size * 2);
341 if (mCrypto) {
342 mHeapSeqNum = mCrypto->setHeap(hardware::fromHeap(heap));
343 }
344 }
345}
346
347int32_t CCodecBufferChannel::getHeapSeqNum(const sp<HidlMemory> &memory) {
348 CHECK(mCrypto);
349 auto it = mHeapSeqNumMap.find(memory);
350 int32_t heapSeqNum = -1;
351 if (it == mHeapSeqNumMap.end()) {
352 heapSeqNum = mCrypto->setHeap(memory);
353 mHeapSeqNumMap.emplace(memory, heapSeqNum);
354 } else {
355 heapSeqNum = it->second;
356 }
357 return heapSeqNum;
358}
359
360status_t CCodecBufferChannel::attachEncryptedBuffer(
361 const sp<hardware::HidlMemory> &memory,
362 bool secure,
363 const uint8_t *key,
364 const uint8_t *iv,
365 CryptoPlugin::Mode mode,
366 CryptoPlugin::Pattern pattern,
367 size_t offset,
368 const CryptoPlugin::SubSample *subSamples,
369 size_t numSubSamples,
370 const sp<MediaCodecBuffer> &buffer) {
371 static const C2MemoryUsage kSecureUsage{C2MemoryUsage::READ_PROTECTED, 0};
372 static const C2MemoryUsage kDefaultReadWriteUsage{
373 C2MemoryUsage::CPU_READ, C2MemoryUsage::CPU_WRITE};
374
375 size_t size = 0;
376 for (size_t i = 0; i < numSubSamples; ++i) {
377 size += subSamples[i].mNumBytesOfClearData + subSamples[i].mNumBytesOfEncryptedData;
378 }
379 std::shared_ptr<C2BlockPool> pool = mBlockPools.lock()->inputPool;
380 std::shared_ptr<C2LinearBlock> block;
381 c2_status_t err = pool->fetchLinearBlock(
382 size,
383 secure ? kSecureUsage : kDefaultReadWriteUsage,
384 &block);
385 if (err != C2_OK) {
386 return NO_MEMORY;
387 }
388 if (!secure) {
389 ensureDecryptDestination(size);
390 }
391 ssize_t result = -1;
392 ssize_t codecDataOffset = 0;
393 if (mCrypto) {
394 AString errorDetailMsg;
395 int32_t heapSeqNum = getHeapSeqNum(memory);
396 hardware::drm::V1_0::SharedBuffer src{(uint32_t)heapSeqNum, offset, size};
397 hardware::drm::V1_0::DestinationBuffer dst;
398 if (secure) {
399 dst.type = DrmBufferType::NATIVE_HANDLE;
400 dst.secureMemory = hardware::hidl_handle(block->handle());
401 } else {
402 dst.type = DrmBufferType::SHARED_MEMORY;
403 IMemoryToSharedBuffer(
404 mDecryptDestination, mHeapSeqNum, &dst.nonsecureMemory);
405 }
406 result = mCrypto->decrypt(
407 key, iv, mode, pattern, src, 0, subSamples, numSubSamples,
408 dst, &errorDetailMsg);
409 if (result < 0) {
410 return result;
411 }
412 if (dst.type == DrmBufferType::SHARED_MEMORY) {
413 C2WriteView view = block->map().get();
414 if (view.error() != C2_OK) {
415 return false;
416 }
417 if (view.size() < result) {
418 return false;
419 }
420 memcpy(view.data(), mDecryptDestination->unsecurePointer(), result);
421 }
422 } else {
423 // Here we cast CryptoPlugin::SubSample to hardware::cas::native::V1_0::SubSample
424 // directly, the structure definitions should match as checked in DescramblerImpl.cpp.
425 hidl_vec<SubSample> hidlSubSamples;
426 hidlSubSamples.setToExternal((SubSample *)subSamples, numSubSamples, false /*own*/);
427
428 hardware::cas::native::V1_0::SharedBuffer src{*memory, offset, size};
429 hardware::cas::native::V1_0::DestinationBuffer dst;
430 if (secure) {
431 dst.type = BufferType::NATIVE_HANDLE;
432 dst.secureMemory = hardware::hidl_handle(block->handle());
433 } else {
434 dst.type = BufferType::SHARED_MEMORY;
435 dst.nonsecureMemory = src;
436 }
437
438 CasStatus status = CasStatus::OK;
439 hidl_string detailedError;
440 ScramblingControl sctrl = ScramblingControl::UNSCRAMBLED;
441
442 if (key != nullptr) {
443 sctrl = (ScramblingControl)key[0];
444 // Adjust for the PES offset
445 codecDataOffset = key[2] | (key[3] << 8);
446 }
447
448 auto returnVoid = mDescrambler->descramble(
449 sctrl,
450 hidlSubSamples,
451 src,
452 0,
453 dst,
454 0,
455 [&status, &result, &detailedError] (
456 CasStatus _status, uint32_t _bytesWritten,
457 const hidl_string& _detailedError) {
458 status = _status;
459 result = (ssize_t)_bytesWritten;
460 detailedError = _detailedError;
461 });
462
463 if (!returnVoid.isOk() || status != CasStatus::OK || result < 0) {
464 ALOGI("[%s] descramble failed, trans=%s, status=%d, result=%zd",
465 mName, returnVoid.description().c_str(), status, result);
466 return UNKNOWN_ERROR;
467 }
468
469 if (result < codecDataOffset) {
470 ALOGD("invalid codec data offset: %zd, result %zd", codecDataOffset, result);
471 return BAD_VALUE;
472 }
473 }
474 if (!secure) {
475 C2WriteView view = block->map().get();
476 if (view.error() != C2_OK) {
477 return UNKNOWN_ERROR;
478 }
479 if (view.size() < result) {
480 return UNKNOWN_ERROR;
481 }
482 memcpy(view.data(), mDecryptDestination->unsecurePointer(), result);
483 }
484 std::shared_ptr<C2Buffer> c2Buffer{C2Buffer::CreateLinearBuffer(
485 block->share(codecDataOffset, result - codecDataOffset, C2Fence{}))};
486 if (!buffer->copy(c2Buffer)) {
487 return -ENOSYS;
488 }
489 return OK;
490}
491
Pawin Vongmasa36653902018-11-15 00:10:25 -0800492status_t CCodecBufferChannel::queueInputBuffer(const sp<MediaCodecBuffer> &buffer) {
493 QueueGuard guard(mSync);
494 if (!guard.isRunning()) {
495 ALOGD("[%s] No more buffers should be queued at current state.", mName);
496 return -ENOSYS;
497 }
498 return queueInputBufferInternal(buffer);
499}
500
501status_t CCodecBufferChannel::queueSecureInputBuffer(
502 const sp<MediaCodecBuffer> &buffer, bool secure, const uint8_t *key,
503 const uint8_t *iv, CryptoPlugin::Mode mode, CryptoPlugin::Pattern pattern,
504 const CryptoPlugin::SubSample *subSamples, size_t numSubSamples,
505 AString *errorDetailMsg) {
506 QueueGuard guard(mSync);
507 if (!guard.isRunning()) {
508 ALOGD("[%s] No more buffers should be queued at current state.", mName);
509 return -ENOSYS;
510 }
511
512 if (!hasCryptoOrDescrambler()) {
513 return -ENOSYS;
514 }
515 sp<EncryptedLinearBlockBuffer> encryptedBuffer((EncryptedLinearBlockBuffer *)buffer.get());
516
517 ssize_t result = -1;
518 ssize_t codecDataOffset = 0;
Wonsik Kim557c88c2020-03-13 11:03:52 -0700519 if (numSubSamples == 1
520 && subSamples[0].mNumBytesOfClearData == 0
521 && subSamples[0].mNumBytesOfEncryptedData == 0) {
522 // We don't need to go through crypto or descrambler if the input is empty.
523 result = 0;
524 } else if (mCrypto != nullptr) {
Robert Shih895fba92019-07-16 16:29:44 -0700525 hardware::drm::V1_0::DestinationBuffer destination;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800526 if (secure) {
Robert Shih895fba92019-07-16 16:29:44 -0700527 destination.type = DrmBufferType::NATIVE_HANDLE;
528 destination.secureMemory = hidl_handle(encryptedBuffer->handle());
Pawin Vongmasa36653902018-11-15 00:10:25 -0800529 } else {
Robert Shih895fba92019-07-16 16:29:44 -0700530 destination.type = DrmBufferType::SHARED_MEMORY;
531 IMemoryToSharedBuffer(
532 mDecryptDestination, mHeapSeqNum, &destination.nonsecureMemory);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800533 }
Robert Shih895fba92019-07-16 16:29:44 -0700534 hardware::drm::V1_0::SharedBuffer source;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800535 encryptedBuffer->fillSourceBuffer(&source);
536 result = mCrypto->decrypt(
537 key, iv, mode, pattern, source, buffer->offset(),
538 subSamples, numSubSamples, destination, errorDetailMsg);
539 if (result < 0) {
Wonsik Kim557c88c2020-03-13 11:03:52 -0700540 ALOGI("[%s] decrypt failed: result=%zd", mName, result);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800541 return result;
542 }
Robert Shih895fba92019-07-16 16:29:44 -0700543 if (destination.type == DrmBufferType::SHARED_MEMORY) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800544 encryptedBuffer->copyDecryptedContent(mDecryptDestination, result);
545 }
546 } else {
547 // Here we cast CryptoPlugin::SubSample to hardware::cas::native::V1_0::SubSample
548 // directly, the structure definitions should match as checked in DescramblerImpl.cpp.
549 hidl_vec<SubSample> hidlSubSamples;
550 hidlSubSamples.setToExternal((SubSample *)subSamples, numSubSamples, false /*own*/);
551
552 hardware::cas::native::V1_0::SharedBuffer srcBuffer;
553 encryptedBuffer->fillSourceBuffer(&srcBuffer);
554
555 DestinationBuffer dstBuffer;
556 if (secure) {
557 dstBuffer.type = BufferType::NATIVE_HANDLE;
558 dstBuffer.secureMemory = hidl_handle(encryptedBuffer->handle());
559 } else {
560 dstBuffer.type = BufferType::SHARED_MEMORY;
561 dstBuffer.nonsecureMemory = srcBuffer;
562 }
563
564 CasStatus status = CasStatus::OK;
565 hidl_string detailedError;
566 ScramblingControl sctrl = ScramblingControl::UNSCRAMBLED;
567
568 if (key != nullptr) {
569 sctrl = (ScramblingControl)key[0];
570 // Adjust for the PES offset
571 codecDataOffset = key[2] | (key[3] << 8);
572 }
573
574 auto returnVoid = mDescrambler->descramble(
575 sctrl,
576 hidlSubSamples,
577 srcBuffer,
578 0,
579 dstBuffer,
580 0,
581 [&status, &result, &detailedError] (
582 CasStatus _status, uint32_t _bytesWritten,
583 const hidl_string& _detailedError) {
584 status = _status;
585 result = (ssize_t)_bytesWritten;
586 detailedError = _detailedError;
587 });
588
589 if (!returnVoid.isOk() || status != CasStatus::OK || result < 0) {
590 ALOGI("[%s] descramble failed, trans=%s, status=%d, result=%zd",
591 mName, returnVoid.description().c_str(), status, result);
592 return UNKNOWN_ERROR;
593 }
594
595 if (result < codecDataOffset) {
596 ALOGD("invalid codec data offset: %zd, result %zd", codecDataOffset, result);
597 return BAD_VALUE;
598 }
599
600 ALOGV("[%s] descramble succeeded, %zd bytes", mName, result);
601
602 if (dstBuffer.type == BufferType::SHARED_MEMORY) {
603 encryptedBuffer->copyDecryptedContentFromMemory(result);
604 }
605 }
606
607 buffer->setRange(codecDataOffset, result - codecDataOffset);
608 return queueInputBufferInternal(buffer);
609}
610
611void CCodecBufferChannel::feedInputBufferIfAvailable() {
612 QueueGuard guard(mSync);
613 if (!guard.isRunning()) {
614 ALOGV("[%s] We're not running --- no input buffer reported", mName);
615 return;
616 }
617 feedInputBufferIfAvailableInternal();
618}
619
620void CCodecBufferChannel::feedInputBufferIfAvailableInternal() {
Pawin Vongmasac3c536d2020-06-12 04:00:04 -0700621 if (mInputMetEos || mPipelineWatcher.lock()->pipelineFull()) {
Wonsik Kimdf5dd142019-02-06 10:15:46 -0800622 return;
Pawin Vongmasac3c536d2020-06-12 04:00:04 -0700623 }
624 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700625 Mutexed<Output>::Locked output(mOutput);
Pawin Vongmasac3c536d2020-06-12 04:00:04 -0700626 if (!output->buffers ||
627 output->buffers->hasPending() ||
628 output->buffers->numClientBuffers() >= output->numSlots) {
Wonsik Kimdf5dd142019-02-06 10:15:46 -0800629 return;
630 }
631 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700632 size_t numInputSlots = mInput.lock()->numSlots;
633 for (size_t i = 0; i < numInputSlots; ++i) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800634 sp<MediaCodecBuffer> inBuffer;
635 size_t index;
636 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700637 Mutexed<Input>::Locked input(mInput);
638 if (input->buffers->numClientBuffers() >= input->numSlots) {
Wonsik Kimab34ed62019-01-31 15:28:46 -0800639 return;
640 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700641 if (!input->buffers->requestNewBuffer(&index, &inBuffer)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800642 ALOGV("[%s] no new buffer available", mName);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800643 break;
644 }
645 }
646 ALOGV("[%s] new input index = %zu [%p]", mName, index, inBuffer.get());
647 mCallback->onInputBufferAvailable(index, inBuffer);
648 }
649}
650
651status_t CCodecBufferChannel::renderOutputBuffer(
652 const sp<MediaCodecBuffer> &buffer, int64_t timestampNs) {
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800653 ALOGV("[%s] renderOutputBuffer: %p", mName, buffer.get());
Pawin Vongmasa36653902018-11-15 00:10:25 -0800654 std::shared_ptr<C2Buffer> c2Buffer;
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800655 bool released = false;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800656 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700657 Mutexed<Output>::Locked output(mOutput);
658 if (output->buffers) {
659 released = output->buffers->releaseBuffer(buffer, &c2Buffer);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800660 }
661 }
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800662 // NOTE: some apps try to releaseOutputBuffer() with timestamp and/or render
663 // set to true.
664 sendOutputBuffers();
665 // input buffer feeding may have been gated by pending output buffers
666 feedInputBufferIfAvailable();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800667 if (!c2Buffer) {
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800668 if (released) {
Wonsik Kimf7529dd2019-04-18 17:35:53 -0700669 std::call_once(mRenderWarningFlag, [this] {
670 ALOGW("[%s] The app is calling releaseOutputBuffer() with "
671 "timestamp or render=true with non-video buffers. Apps should "
672 "call releaseOutputBuffer() with render=false for those.",
673 mName);
674 });
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800675 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800676 return INVALID_OPERATION;
677 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800678
679#if 0
680 const std::vector<std::shared_ptr<const C2Info>> infoParams = c2Buffer->info();
681 ALOGV("[%s] queuing gfx buffer with %zu infos", mName, infoParams.size());
682 for (const std::shared_ptr<const C2Info> &info : infoParams) {
683 AString res;
684 for (size_t ix = 0; ix + 3 < info->size(); ix += 4) {
685 if (ix) res.append(", ");
686 res.append(*((int32_t*)info.get() + (ix / 4)));
687 }
688 ALOGV(" [%s]", res.c_str());
689 }
690#endif
691 std::shared_ptr<const C2StreamRotationInfo::output> rotation =
692 std::static_pointer_cast<const C2StreamRotationInfo::output>(
693 c2Buffer->getInfo(C2StreamRotationInfo::output::PARAM_TYPE));
694 bool flip = rotation && (rotation->flip & 1);
695 uint32_t quarters = ((rotation ? rotation->value : 0) / 90) & 3;
696 uint32_t transform = 0;
697 switch (quarters) {
698 case 0: // no rotation
699 transform = flip ? HAL_TRANSFORM_FLIP_H : 0;
700 break;
701 case 1: // 90 degrees counter-clockwise
702 transform = flip ? (HAL_TRANSFORM_FLIP_V | HAL_TRANSFORM_ROT_90)
703 : HAL_TRANSFORM_ROT_270;
704 break;
705 case 2: // 180 degrees
706 transform = flip ? HAL_TRANSFORM_FLIP_V : HAL_TRANSFORM_ROT_180;
707 break;
708 case 3: // 90 degrees clockwise
709 transform = flip ? (HAL_TRANSFORM_FLIP_H | HAL_TRANSFORM_ROT_90)
710 : HAL_TRANSFORM_ROT_90;
711 break;
712 }
713
714 std::shared_ptr<const C2StreamSurfaceScalingInfo::output> surfaceScaling =
715 std::static_pointer_cast<const C2StreamSurfaceScalingInfo::output>(
716 c2Buffer->getInfo(C2StreamSurfaceScalingInfo::output::PARAM_TYPE));
717 uint32_t videoScalingMode = NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW;
718 if (surfaceScaling) {
719 videoScalingMode = surfaceScaling->value;
720 }
721
722 // Use dataspace from format as it has the default aspects already applied
723 android_dataspace_t dataSpace = HAL_DATASPACE_UNKNOWN; // this is 0
724 (void)buffer->format()->findInt32("android._dataspace", (int32_t *)&dataSpace);
725
726 // HDR static info
727 std::shared_ptr<const C2StreamHdrStaticInfo::output> hdrStaticInfo =
728 std::static_pointer_cast<const C2StreamHdrStaticInfo::output>(
729 c2Buffer->getInfo(C2StreamHdrStaticInfo::output::PARAM_TYPE));
730
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800731 // HDR10 plus info
732 std::shared_ptr<const C2StreamHdr10PlusInfo::output> hdr10PlusInfo =
733 std::static_pointer_cast<const C2StreamHdr10PlusInfo::output>(
734 c2Buffer->getInfo(C2StreamHdr10PlusInfo::output::PARAM_TYPE));
735
Pawin Vongmasa36653902018-11-15 00:10:25 -0800736 {
737 Mutexed<OutputSurface>::Locked output(mOutputSurface);
738 if (output->surface == nullptr) {
739 ALOGI("[%s] cannot render buffer without surface", mName);
740 return OK;
741 }
742 }
743
744 std::vector<C2ConstGraphicBlock> blocks = c2Buffer->data().graphicBlocks();
745 if (blocks.size() != 1u) {
746 ALOGD("[%s] expected 1 graphic block, but got %zu", mName, blocks.size());
747 return UNKNOWN_ERROR;
748 }
749 const C2ConstGraphicBlock &block = blocks.front();
750
751 // TODO: revisit this after C2Fence implementation.
752 android::IGraphicBufferProducer::QueueBufferInput qbi(
753 timestampNs,
754 false, // droppable
755 dataSpace,
756 Rect(blocks.front().crop().left,
757 blocks.front().crop().top,
758 blocks.front().crop().right(),
759 blocks.front().crop().bottom()),
760 videoScalingMode,
761 transform,
762 Fence::NO_FENCE, 0);
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800763 if (hdrStaticInfo || hdr10PlusInfo) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800764 HdrMetadata hdr;
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800765 if (hdrStaticInfo) {
wenchangliuf3f92882020-05-14 00:02:01 +0800766 // If mastering max and min luminance fields are 0, do not use them.
767 // It indicates the value may not be present in the stream.
768 if (hdrStaticInfo->mastering.maxLuminance > 0.0f &&
769 hdrStaticInfo->mastering.minLuminance > 0.0f) {
770 struct android_smpte2086_metadata smpte2086_meta = {
771 .displayPrimaryRed = {
772 hdrStaticInfo->mastering.red.x, hdrStaticInfo->mastering.red.y
773 },
774 .displayPrimaryGreen = {
775 hdrStaticInfo->mastering.green.x, hdrStaticInfo->mastering.green.y
776 },
777 .displayPrimaryBlue = {
778 hdrStaticInfo->mastering.blue.x, hdrStaticInfo->mastering.blue.y
779 },
780 .whitePoint = {
781 hdrStaticInfo->mastering.white.x, hdrStaticInfo->mastering.white.y
782 },
783 .maxLuminance = hdrStaticInfo->mastering.maxLuminance,
784 .minLuminance = hdrStaticInfo->mastering.minLuminance,
785 };
786 hdr.validTypes = HdrMetadata::SMPTE2086;
787 hdr.smpte2086 = smpte2086_meta;
788 }
Chong Zhang3bb2a7f2020-04-21 10:35:12 -0700789 // If the content light level fields are 0, do not use them, it
790 // indicates the value may not be present in the stream.
791 if (hdrStaticInfo->maxCll > 0.0f && hdrStaticInfo->maxFall > 0.0f) {
792 struct android_cta861_3_metadata cta861_meta = {
793 .maxContentLightLevel = hdrStaticInfo->maxCll,
794 .maxFrameAverageLightLevel = hdrStaticInfo->maxFall,
795 };
796 hdr.validTypes |= HdrMetadata::CTA861_3;
797 hdr.cta8613 = cta861_meta;
798 }
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800799 }
800 if (hdr10PlusInfo) {
801 hdr.validTypes |= HdrMetadata::HDR10PLUS;
802 hdr.hdr10plus.assign(
803 hdr10PlusInfo->m.value,
804 hdr10PlusInfo->m.value + hdr10PlusInfo->flexCount());
805 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800806 qbi.setHdrMetadata(hdr);
807 }
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800808 // we don't have dirty regions
809 qbi.setSurfaceDamage(Region::INVALID_REGION);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800810 android::IGraphicBufferProducer::QueueBufferOutput qbo;
811 status_t result = mComponent->queueToOutputSurface(block, qbi, &qbo);
812 if (result != OK) {
813 ALOGI("[%s] queueBuffer failed: %d", mName, result);
814 return result;
815 }
816 ALOGV("[%s] queue buffer successful", mName);
817
818 int64_t mediaTimeUs = 0;
819 (void)buffer->meta()->findInt64("timeUs", &mediaTimeUs);
820 mCCodecCallback->onOutputFramesRendered(mediaTimeUs, timestampNs);
821
822 return OK;
823}
824
825status_t CCodecBufferChannel::discardBuffer(const sp<MediaCodecBuffer> &buffer) {
826 ALOGV("[%s] discardBuffer: %p", mName, buffer.get());
827 bool released = false;
828 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700829 Mutexed<Input>::Locked input(mInput);
830 if (input->buffers && input->buffers->releaseBuffer(buffer, nullptr, true)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800831 released = true;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800832 }
833 }
834 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700835 Mutexed<Output>::Locked output(mOutput);
836 if (output->buffers && output->buffers->releaseBuffer(buffer, nullptr)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800837 released = true;
838 }
839 }
840 if (released) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800841 sendOutputBuffers();
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800842 feedInputBufferIfAvailable();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800843 } else {
844 ALOGD("[%s] MediaCodec discarded an unknown buffer", mName);
845 }
846 return OK;
847}
848
849void CCodecBufferChannel::getInputBufferArray(Vector<sp<MediaCodecBuffer>> *array) {
850 array->clear();
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700851 Mutexed<Input>::Locked input(mInput);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800852
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700853 if (!input->buffers->isArrayMode()) {
854 input->buffers = input->buffers->toArrayMode(input->numSlots);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800855 }
856
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700857 input->buffers->getArray(array);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800858}
859
860void CCodecBufferChannel::getOutputBufferArray(Vector<sp<MediaCodecBuffer>> *array) {
861 array->clear();
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700862 Mutexed<Output>::Locked output(mOutput);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800863
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700864 if (!output->buffers->isArrayMode()) {
865 output->buffers = output->buffers->toArrayMode(output->numSlots);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800866 }
867
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700868 output->buffers->getArray(array);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800869}
870
871status_t CCodecBufferChannel::start(
Wonsik Kimfb7a7672019-12-27 17:13:33 -0800872 const sp<AMessage> &inputFormat,
873 const sp<AMessage> &outputFormat,
874 bool buffersBoundToCodec) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800875 C2StreamBufferTypeSetting::input iStreamFormat(0u);
876 C2StreamBufferTypeSetting::output oStreamFormat(0u);
877 C2PortReorderBufferDepthTuning::output reorderDepth;
878 C2PortReorderKeySetting::output reorderKey;
Wonsik Kim078b58e2019-01-09 15:08:06 -0800879 C2PortActualDelayTuning::input inputDelay(0);
880 C2PortActualDelayTuning::output outputDelay(0);
881 C2ActualPipelineDelayTuning pipelineDelay(0);
882
Pawin Vongmasa36653902018-11-15 00:10:25 -0800883 c2_status_t err = mComponent->query(
884 {
885 &iStreamFormat,
886 &oStreamFormat,
887 &reorderDepth,
888 &reorderKey,
Wonsik Kim078b58e2019-01-09 15:08:06 -0800889 &inputDelay,
890 &pipelineDelay,
891 &outputDelay,
Pawin Vongmasa36653902018-11-15 00:10:25 -0800892 },
893 {},
894 C2_DONT_BLOCK,
895 nullptr);
896 if (err == C2_BAD_INDEX) {
897 if (!iStreamFormat || !oStreamFormat) {
898 return UNKNOWN_ERROR;
899 }
900 } else if (err != C2_OK) {
901 return UNKNOWN_ERROR;
902 }
903
Wonsik Kim4fa4f2b2019-02-13 11:02:58 -0800904 uint32_t inputDelayValue = inputDelay ? inputDelay.value : 0;
905 uint32_t pipelineDelayValue = pipelineDelay ? pipelineDelay.value : 0;
906 uint32_t outputDelayValue = outputDelay ? outputDelay.value : 0;
907
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700908 size_t numInputSlots = inputDelayValue + pipelineDelayValue + kSmoothnessFactor;
909 size_t numOutputSlots = outputDelayValue + kSmoothnessFactor;
Wonsik Kim078b58e2019-01-09 15:08:06 -0800910
Pawin Vongmasa36653902018-11-15 00:10:25 -0800911 // TODO: get this from input format
912 bool secure = mComponent->getName().find(".secure") != std::string::npos;
913
914 std::shared_ptr<C2AllocatorStore> allocatorStore = GetCodec2PlatformAllocatorStore();
Pin-chih Linaa18ea52019-11-19 18:48:50 +0800915 int poolMask = GetCodec2PoolMask();
916 C2PlatformAllocatorStore::id_t preferredLinearId = GetPreferredLinearAllocatorId(poolMask);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800917
918 if (inputFormat != nullptr) {
Lajos Molnar3bb81cd2019-02-20 15:10:30 -0800919 bool graphic = (iStreamFormat.value == C2BufferData::GRAPHIC);
Wonsik Kimffb889a2020-05-28 11:32:25 -0700920 C2Config::api_feature_t apiFeatures = C2Config::api_feature_t(
921 API_REFLECTION |
922 API_VALUES |
923 API_CURRENT_VALUES |
924 API_DEPENDENCY |
925 API_SAME_INPUT_BUFFER);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800926 std::shared_ptr<C2BlockPool> pool;
927 {
928 Mutexed<BlockPools>::Locked pools(mBlockPools);
929
930 // set default allocator ID.
931 pools->inputAllocatorId = (graphic) ? C2PlatformAllocatorStore::GRALLOC
Pin-chih Linaa18ea52019-11-19 18:48:50 +0800932 : preferredLinearId;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800933
934 // query C2PortAllocatorsTuning::input from component. If an allocator ID is obtained
935 // from component, create the input block pool with given ID. Otherwise, use default IDs.
936 std::vector<std::unique_ptr<C2Param>> params;
Wonsik Kimffb889a2020-05-28 11:32:25 -0700937 C2ApiFeaturesSetting featuresSetting{apiFeatures};
938 err = mComponent->query({ &featuresSetting },
Pawin Vongmasa36653902018-11-15 00:10:25 -0800939 { C2PortAllocatorsTuning::input::PARAM_TYPE },
940 C2_DONT_BLOCK,
941 &params);
942 if ((err != C2_OK && err != C2_BAD_INDEX) || params.size() != 1) {
943 ALOGD("[%s] Query input allocators returned %zu params => %s (%u)",
944 mName, params.size(), asString(err), err);
Wonsik Kimffb889a2020-05-28 11:32:25 -0700945 } else if (params.size() == 1) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800946 C2PortAllocatorsTuning::input *inputAllocators =
947 C2PortAllocatorsTuning::input::From(params[0].get());
948 if (inputAllocators && inputAllocators->flexCount() > 0) {
949 std::shared_ptr<C2Allocator> allocator;
950 // verify allocator IDs and resolve default allocator
951 allocatorStore->fetchAllocator(inputAllocators->m.values[0], &allocator);
952 if (allocator) {
953 pools->inputAllocatorId = allocator->getId();
954 } else {
955 ALOGD("[%s] component requested invalid input allocator ID %u",
956 mName, inputAllocators->m.values[0]);
957 }
958 }
959 }
Wonsik Kimffb889a2020-05-28 11:32:25 -0700960 if (featuresSetting) {
961 apiFeatures = featuresSetting.value;
962 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800963
964 // TODO: use C2Component wrapper to associate this pool with ourselves
965 if ((poolMask >> pools->inputAllocatorId) & 1) {
966 err = CreateCodec2BlockPool(pools->inputAllocatorId, nullptr, &pool);
967 ALOGD("[%s] Created input block pool with allocatorID %u => poolID %llu - %s (%d)",
968 mName, pools->inputAllocatorId,
969 (unsigned long long)(pool ? pool->getLocalId() : 111000111),
970 asString(err), err);
971 } else {
972 err = C2_NOT_FOUND;
973 }
974 if (err != C2_OK) {
975 C2BlockPool::local_id_t inputPoolId =
976 graphic ? C2BlockPool::BASIC_GRAPHIC : C2BlockPool::BASIC_LINEAR;
977 err = GetCodec2BlockPool(inputPoolId, nullptr, &pool);
978 ALOGD("[%s] Using basic input block pool with poolID %llu => got %llu - %s (%d)",
979 mName, (unsigned long long)inputPoolId,
980 (unsigned long long)(pool ? pool->getLocalId() : 111000111),
981 asString(err), err);
982 if (err != C2_OK) {
983 return NO_MEMORY;
984 }
985 }
986 pools->inputPool = pool;
987 }
988
Wonsik Kim51051262018-11-28 13:59:05 -0800989 bool forceArrayMode = false;
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700990 Mutexed<Input>::Locked input(mInput);
Wonsik Kimbdffead2019-07-01 12:00:07 -0700991 input->inputDelay = inputDelayValue;
992 input->pipelineDelay = pipelineDelayValue;
Wonsik Kim5ecf3832019-04-18 10:28:58 -0700993 input->numSlots = numInputSlots;
994 input->extraBuffers.flush();
995 input->numExtraSlots = 0u;
Wonsik Kimffb889a2020-05-28 11:32:25 -0700996 bool conforming = (apiFeatures & API_SAME_INPUT_BUFFER);
997 // For encrypted content, framework decrypts source buffer (ashmem) into
998 // C2Buffers. Thus non-conforming codecs can process these.
999 if (!buffersBoundToCodec && (hasCryptoOrDescrambler() || conforming)) {
Wonsik Kimfb7a7672019-12-27 17:13:33 -08001000 input->buffers.reset(new SlotInputBuffers(mName));
1001 } else if (graphic) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001002 if (mInputSurface) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001003 input->buffers.reset(new DummyInputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001004 } else if (mMetaMode == MODE_ANW) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001005 input->buffers.reset(new GraphicMetadataInputBuffers(mName));
Wonsik Kim1221fd12019-07-12 12:52:05 -07001006 // This is to ensure buffers do not get released prematurely.
1007 // TODO: handle this without going into array mode
1008 forceArrayMode = true;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001009 } else {
Wonsik Kim41d83432020-04-27 16:40:49 -07001010 input->buffers.reset(new GraphicInputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001011 }
1012 } else {
1013 if (hasCryptoOrDescrambler()) {
1014 int32_t capacity = kLinearBufferSize;
1015 (void)inputFormat->findInt32(KEY_MAX_INPUT_SIZE, &capacity);
1016 if ((size_t)capacity > kMaxLinearBufferSize) {
1017 ALOGD("client requested %d, capped to %zu", capacity, kMaxLinearBufferSize);
1018 capacity = kMaxLinearBufferSize;
1019 }
1020 if (mDealer == nullptr) {
1021 mDealer = new MemoryDealer(
1022 align(capacity, MemoryDealer::getAllocationAlignment())
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001023 * (numInputSlots + 1),
Pawin Vongmasa36653902018-11-15 00:10:25 -08001024 "EncryptedLinearInputBuffers");
1025 mDecryptDestination = mDealer->allocate((size_t)capacity);
1026 }
1027 if (mCrypto != nullptr && mHeapSeqNum < 0) {
Robert Shih895fba92019-07-16 16:29:44 -07001028 sp<HidlMemory> heap = fromHeap(mDealer->getMemoryHeap());
1029 mHeapSeqNum = mCrypto->setHeap(heap);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001030 } else {
1031 mHeapSeqNum = -1;
1032 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001033 input->buffers.reset(new EncryptedLinearInputBuffers(
Wonsik Kim078b58e2019-01-09 15:08:06 -08001034 secure, mDealer, mCrypto, mHeapSeqNum, (size_t)capacity,
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001035 numInputSlots, mName));
Wonsik Kim51051262018-11-28 13:59:05 -08001036 forceArrayMode = true;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001037 } else {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001038 input->buffers.reset(new LinearInputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001039 }
1040 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001041 input->buffers->setFormat(inputFormat);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001042
1043 if (err == C2_OK) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001044 input->buffers->setPool(pool);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001045 } else {
1046 // TODO: error
1047 }
Wonsik Kim51051262018-11-28 13:59:05 -08001048
1049 if (forceArrayMode) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001050 input->buffers = input->buffers->toArrayMode(numInputSlots);
Wonsik Kim51051262018-11-28 13:59:05 -08001051 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001052 }
1053
1054 if (outputFormat != nullptr) {
1055 sp<IGraphicBufferProducer> outputSurface;
1056 uint32_t outputGeneration;
1057 {
1058 Mutexed<OutputSurface>::Locked output(mOutputSurface);
Sungtak Leed7463d12019-09-04 16:01:00 -07001059 output->maxDequeueBuffers = numOutputSlots +
Sungtak Lee7a7b7422019-07-16 17:40:40 -07001060 reorderDepth.value + kRenderingDepth;
Sungtak Leed7463d12019-09-04 16:01:00 -07001061 if (!secure) {
1062 output->maxDequeueBuffers += numInputSlots;
1063 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001064 outputSurface = output->surface ?
1065 output->surface->getIGraphicBufferProducer() : nullptr;
Wonsik Kimf5e5c832019-02-21 11:36:05 -08001066 if (outputSurface) {
1067 output->surface->setMaxDequeuedBufferCount(output->maxDequeueBuffers);
1068 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001069 outputGeneration = output->generation;
1070 }
1071
Lajos Molnar3bb81cd2019-02-20 15:10:30 -08001072 bool graphic = (oStreamFormat.value == C2BufferData::GRAPHIC);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001073 C2BlockPool::local_id_t outputPoolId_;
1074
1075 {
1076 Mutexed<BlockPools>::Locked pools(mBlockPools);
1077
1078 // set default allocator ID.
1079 pools->outputAllocatorId = (graphic) ? C2PlatformAllocatorStore::GRALLOC
Pin-chih Linaa18ea52019-11-19 18:48:50 +08001080 : preferredLinearId;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001081
1082 // query C2PortAllocatorsTuning::output from component, or use default allocator if
1083 // unsuccessful.
1084 std::vector<std::unique_ptr<C2Param>> params;
1085 err = mComponent->query({ },
1086 { C2PortAllocatorsTuning::output::PARAM_TYPE },
1087 C2_DONT_BLOCK,
1088 &params);
1089 if ((err != C2_OK && err != C2_BAD_INDEX) || params.size() != 1) {
1090 ALOGD("[%s] Query output allocators returned %zu params => %s (%u)",
1091 mName, params.size(), asString(err), err);
1092 } else if (err == C2_OK && params.size() == 1) {
1093 C2PortAllocatorsTuning::output *outputAllocators =
1094 C2PortAllocatorsTuning::output::From(params[0].get());
1095 if (outputAllocators && outputAllocators->flexCount() > 0) {
1096 std::shared_ptr<C2Allocator> allocator;
1097 // verify allocator IDs and resolve default allocator
1098 allocatorStore->fetchAllocator(outputAllocators->m.values[0], &allocator);
1099 if (allocator) {
1100 pools->outputAllocatorId = allocator->getId();
1101 } else {
1102 ALOGD("[%s] component requested invalid output allocator ID %u",
1103 mName, outputAllocators->m.values[0]);
1104 }
1105 }
1106 }
1107
1108 // use bufferqueue if outputting to a surface.
1109 // query C2PortSurfaceAllocatorTuning::output from component, or use default allocator
1110 // if unsuccessful.
1111 if (outputSurface) {
1112 params.clear();
1113 err = mComponent->query({ },
1114 { C2PortSurfaceAllocatorTuning::output::PARAM_TYPE },
1115 C2_DONT_BLOCK,
1116 &params);
1117 if ((err != C2_OK && err != C2_BAD_INDEX) || params.size() != 1) {
1118 ALOGD("[%s] Query output surface allocator returned %zu params => %s (%u)",
1119 mName, params.size(), asString(err), err);
1120 } else if (err == C2_OK && params.size() == 1) {
1121 C2PortSurfaceAllocatorTuning::output *surfaceAllocator =
1122 C2PortSurfaceAllocatorTuning::output::From(params[0].get());
1123 if (surfaceAllocator) {
1124 std::shared_ptr<C2Allocator> allocator;
1125 // verify allocator IDs and resolve default allocator
1126 allocatorStore->fetchAllocator(surfaceAllocator->value, &allocator);
1127 if (allocator) {
1128 pools->outputAllocatorId = allocator->getId();
1129 } else {
1130 ALOGD("[%s] component requested invalid surface output allocator ID %u",
1131 mName, surfaceAllocator->value);
1132 err = C2_BAD_VALUE;
1133 }
1134 }
1135 }
1136 if (pools->outputAllocatorId == C2PlatformAllocatorStore::GRALLOC
1137 && err != C2_OK
1138 && ((poolMask >> C2PlatformAllocatorStore::BUFFERQUEUE) & 1)) {
1139 pools->outputAllocatorId = C2PlatformAllocatorStore::BUFFERQUEUE;
1140 }
1141 }
1142
1143 if ((poolMask >> pools->outputAllocatorId) & 1) {
1144 err = mComponent->createBlockPool(
1145 pools->outputAllocatorId, &pools->outputPoolId, &pools->outputPoolIntf);
1146 ALOGI("[%s] Created output block pool with allocatorID %u => poolID %llu - %s",
1147 mName, pools->outputAllocatorId,
1148 (unsigned long long)pools->outputPoolId,
1149 asString(err));
1150 } else {
1151 err = C2_NOT_FOUND;
1152 }
1153 if (err != C2_OK) {
1154 // use basic pool instead
1155 pools->outputPoolId =
1156 graphic ? C2BlockPool::BASIC_GRAPHIC : C2BlockPool::BASIC_LINEAR;
1157 }
1158
1159 // Configure output block pool ID as parameter C2PortBlockPoolsTuning::output to
1160 // component.
1161 std::unique_ptr<C2PortBlockPoolsTuning::output> poolIdsTuning =
1162 C2PortBlockPoolsTuning::output::AllocUnique({ pools->outputPoolId });
1163
1164 std::vector<std::unique_ptr<C2SettingResult>> failures;
1165 err = mComponent->config({ poolIdsTuning.get() }, C2_MAY_BLOCK, &failures);
1166 ALOGD("[%s] Configured output block pool ids %llu => %s",
1167 mName, (unsigned long long)poolIdsTuning->m.values[0], asString(err));
1168 outputPoolId_ = pools->outputPoolId;
1169 }
1170
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001171 Mutexed<Output>::Locked output(mOutput);
Wonsik Kimbdffead2019-07-01 12:00:07 -07001172 output->outputDelay = outputDelayValue;
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001173 output->numSlots = numOutputSlots;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001174 if (graphic) {
Wonsik Kimfb7a7672019-12-27 17:13:33 -08001175 if (outputSurface || !buffersBoundToCodec) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001176 output->buffers.reset(new GraphicOutputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001177 } else {
Wonsik Kim41d83432020-04-27 16:40:49 -07001178 output->buffers.reset(new RawGraphicOutputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001179 }
1180 } else {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001181 output->buffers.reset(new LinearOutputBuffers(mName));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001182 }
Wonsik Kime4716c02020-02-28 10:42:21 -08001183 output->buffers->setFormat(outputFormat);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001184
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001185 output->buffers->clearStash();
1186 if (reorderDepth) {
1187 output->buffers->setReorderDepth(reorderDepth.value);
1188 }
1189 if (reorderKey) {
1190 output->buffers->setReorderKey(reorderKey.value);
1191 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001192
1193 // Try to set output surface to created block pool if given.
1194 if (outputSurface) {
1195 mComponent->setOutputSurface(
1196 outputPoolId_,
1197 outputSurface,
1198 outputGeneration);
1199 }
1200
Wonsik Kim8ab25aa2019-06-24 16:37:37 -07001201 if (oStreamFormat.value == C2BufferData::LINEAR) {
Wonsik Kim58713302020-01-29 22:25:23 -08001202 if (buffersBoundToCodec) {
1203 // WORKAROUND: if we're using early CSD workaround we convert to
1204 // array mode, to appease apps assuming the output
1205 // buffers to be of the same size.
1206 output->buffers = output->buffers->toArrayMode(numOutputSlots);
1207 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001208
1209 int32_t channelCount;
1210 int32_t sampleRate;
1211 if (outputFormat->findInt32(KEY_CHANNEL_COUNT, &channelCount)
1212 && outputFormat->findInt32(KEY_SAMPLE_RATE, &sampleRate)) {
1213 int32_t delay = 0;
1214 int32_t padding = 0;;
1215 if (!outputFormat->findInt32("encoder-delay", &delay)) {
1216 delay = 0;
1217 }
1218 if (!outputFormat->findInt32("encoder-padding", &padding)) {
1219 padding = 0;
1220 }
1221 if (delay || padding) {
1222 // We need write access to the buffers, and we're already in
1223 // array mode.
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001224 output->buffers->initSkipCutBuffer(delay, padding, sampleRate, channelCount);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001225 }
1226 }
1227 }
1228 }
1229
1230 // Set up pipeline control. This has to be done after mInputBuffers and
1231 // mOutputBuffers are initialized to make sure that lingering callbacks
1232 // about buffers from the previous generation do not interfere with the
1233 // newly initialized pipeline capacity.
1234
Wonsik Kimab34ed62019-01-31 15:28:46 -08001235 {
1236 Mutexed<PipelineWatcher>::Locked watcher(mPipelineWatcher);
Wonsik Kim4fa4f2b2019-02-13 11:02:58 -08001237 watcher->inputDelay(inputDelayValue)
1238 .pipelineDelay(pipelineDelayValue)
1239 .outputDelay(outputDelayValue)
Wonsik Kimab34ed62019-01-31 15:28:46 -08001240 .smoothnessFactor(kSmoothnessFactor);
1241 watcher->flush();
1242 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001243
1244 mInputMetEos = false;
1245 mSync.start();
1246 return OK;
1247}
1248
1249status_t CCodecBufferChannel::requestInitialInputBuffers() {
1250 if (mInputSurface) {
1251 return OK;
1252 }
1253
Lajos Molnar3bb81cd2019-02-20 15:10:30 -08001254 C2StreamBufferTypeSetting::output oStreamFormat(0u);
Wonsik Kim8ab25aa2019-06-24 16:37:37 -07001255 C2PrependHeaderModeSetting prepend(PREPEND_HEADER_TO_NONE);
1256 c2_status_t err = mComponent->query({ &oStreamFormat, &prepend }, {}, C2_DONT_BLOCK, nullptr);
1257 if (err != C2_OK && err != C2_BAD_INDEX) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001258 return UNKNOWN_ERROR;
1259 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001260 size_t numInputSlots = mInput.lock()->numSlots;
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001261
1262 struct ClientInputBuffer {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001263 size_t index;
1264 sp<MediaCodecBuffer> buffer;
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001265 size_t capacity;
1266 };
1267 std::list<ClientInputBuffer> clientInputBuffers;
1268
1269 {
1270 Mutexed<Input>::Locked input(mInput);
1271 while (clientInputBuffers.size() < numInputSlots) {
1272 ClientInputBuffer clientInputBuffer;
1273 if (!input->buffers->requestNewBuffer(&clientInputBuffer.index,
1274 &clientInputBuffer.buffer)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001275 break;
1276 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001277 clientInputBuffer.capacity = clientInputBuffer.buffer->capacity();
1278 clientInputBuffers.emplace_back(std::move(clientInputBuffer));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001279 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001280 }
1281 if (clientInputBuffers.empty()) {
1282 ALOGW("[%s] start: cannot allocate memory at all", mName);
1283 return NO_MEMORY;
1284 } else if (clientInputBuffers.size() < numInputSlots) {
1285 ALOGD("[%s] start: cannot allocate memory for all slots, "
1286 "only %zu buffers allocated",
1287 mName, clientInputBuffers.size());
1288 } else {
1289 ALOGV("[%s] %zu initial input buffers available",
1290 mName, clientInputBuffers.size());
1291 }
1292 // Sort input buffers by their capacities in increasing order.
1293 clientInputBuffers.sort(
1294 [](const ClientInputBuffer& a, const ClientInputBuffer& b) {
1295 return a.capacity < b.capacity;
1296 });
1297
1298 {
1299 Mutexed<std::list<sp<ABuffer>>>::Locked configs(mFlushedConfigs);
1300 if (!configs->empty()) {
1301 while (!configs->empty()) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001302 sp<ABuffer> config = configs->front();
Pawin Vongmasa472c7382019-03-26 18:13:58 -07001303 configs->pop_front();
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001304 // Find the smallest input buffer that can fit the config.
1305 auto i = std::find_if(
1306 clientInputBuffers.begin(),
1307 clientInputBuffers.end(),
1308 [cfgSize = config->size()](const ClientInputBuffer& b) {
1309 return b.capacity >= cfgSize;
1310 });
1311 if (i == clientInputBuffers.end()) {
1312 ALOGW("[%s] no input buffer large enough for the config "
1313 "(%zu bytes)",
1314 mName, config->size());
1315 return NO_MEMORY;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001316 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001317 sp<MediaCodecBuffer> buffer = i->buffer;
1318 memcpy(buffer->base(), config->data(), config->size());
1319 buffer->setRange(0, config->size());
Pawin Vongmasa36653902018-11-15 00:10:25 -08001320 buffer->meta()->clear();
1321 buffer->meta()->setInt64("timeUs", 0);
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001322 buffer->meta()->setInt32("csd", 1);
1323 if (queueInputBufferInternal(buffer) != OK) {
1324 ALOGW("[%s] Error while queueing a flushed config",
1325 mName);
1326 return UNKNOWN_ERROR;
1327 }
1328 clientInputBuffers.erase(i);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001329 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001330 } else if (oStreamFormat.value == C2BufferData::LINEAR &&
1331 (!prepend || prepend.value == PREPEND_HEADER_TO_NONE)) {
1332 sp<MediaCodecBuffer> buffer = clientInputBuffers.front().buffer;
1333 // WORKAROUND: Some apps expect CSD available without queueing
1334 // any input. Queue an empty buffer to get the CSD.
1335 buffer->setRange(0, 0);
1336 buffer->meta()->clear();
1337 buffer->meta()->setInt64("timeUs", 0);
1338 if (queueInputBufferInternal(buffer) != OK) {
1339 ALOGW("[%s] Error while queueing an empty buffer to get CSD",
1340 mName);
1341 return UNKNOWN_ERROR;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001342 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001343 clientInputBuffers.pop_front();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001344 }
1345 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001346
1347 for (const ClientInputBuffer& clientInputBuffer: clientInputBuffers) {
1348 mCallback->onInputBufferAvailable(
1349 clientInputBuffer.index,
1350 clientInputBuffer.buffer);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001351 }
Pawin Vongmasae7bb8612020-06-04 06:15:22 -07001352
Pawin Vongmasa36653902018-11-15 00:10:25 -08001353 return OK;
1354}
1355
1356void CCodecBufferChannel::stop() {
1357 mSync.stop();
1358 mFirstValidFrameIndex = mFrameIndex.load(std::memory_order_relaxed);
1359 if (mInputSurface != nullptr) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001360 mInputSurface.reset();
1361 }
Wonsik Kima2e3cdd2020-05-20 15:14:42 -07001362 mPipelineWatcher.lock()->flush();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001363}
1364
Wonsik Kim936a89c2020-05-08 16:07:50 -07001365void CCodecBufferChannel::reset() {
1366 stop();
1367 {
1368 Mutexed<Input>::Locked input(mInput);
1369 input->buffers.reset(new DummyInputBuffers(""));
Wonsik Kima2e3cdd2020-05-20 15:14:42 -07001370 input->extraBuffers.flush();
Wonsik Kim936a89c2020-05-08 16:07:50 -07001371 }
1372 {
1373 Mutexed<Output>::Locked output(mOutput);
1374 output->buffers.reset();
1375 }
1376}
1377
1378void CCodecBufferChannel::release() {
1379 mComponent.reset();
1380 mInputAllocator.reset();
1381 mOutputSurface.lock()->surface.clear();
1382 {
1383 Mutexed<BlockPools>::Locked blockPools{mBlockPools};
1384 blockPools->inputPool.reset();
1385 blockPools->outputPoolIntf.reset();
1386 }
Wonsik Kima2e3cdd2020-05-20 15:14:42 -07001387 setCrypto(nullptr);
1388 setDescrambler(nullptr);
Wonsik Kim936a89c2020-05-08 16:07:50 -07001389}
1390
1391
Pawin Vongmasa36653902018-11-15 00:10:25 -08001392void CCodecBufferChannel::flush(const std::list<std::unique_ptr<C2Work>> &flushedWork) {
1393 ALOGV("[%s] flush", mName);
1394 {
1395 Mutexed<std::list<sp<ABuffer>>>::Locked configs(mFlushedConfigs);
1396 for (const std::unique_ptr<C2Work> &work : flushedWork) {
1397 if (!(work->input.flags & C2FrameData::FLAG_CODEC_CONFIG)) {
1398 continue;
1399 }
1400 if (work->input.buffers.empty()
1401 || work->input.buffers.front()->data().linearBlocks().empty()) {
1402 ALOGD("[%s] no linear codec config data found", mName);
1403 continue;
1404 }
1405 C2ReadView view =
1406 work->input.buffers.front()->data().linearBlocks().front().map().get();
1407 if (view.error() != C2_OK) {
1408 ALOGD("[%s] failed to map flushed codec config data: %d", mName, view.error());
1409 continue;
1410 }
1411 configs->push_back(ABuffer::CreateAsCopy(view.data(), view.capacity()));
1412 ALOGV("[%s] stashed flushed codec config data (size=%u)", mName, view.capacity());
1413 }
1414 }
1415 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001416 Mutexed<Input>::Locked input(mInput);
1417 input->buffers->flush();
1418 input->extraBuffers.flush();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001419 }
1420 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001421 Mutexed<Output>::Locked output(mOutput);
Wonsik Kim936a89c2020-05-08 16:07:50 -07001422 if (output->buffers) {
1423 output->buffers->flush(flushedWork);
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001424 output->buffers->flushStash();
Wonsik Kim936a89c2020-05-08 16:07:50 -07001425 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001426 }
Wonsik Kimab34ed62019-01-31 15:28:46 -08001427 mPipelineWatcher.lock()->flush();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001428}
1429
1430void CCodecBufferChannel::onWorkDone(
1431 std::unique_ptr<C2Work> work, const sp<AMessage> &outputFormat,
Wonsik Kimab34ed62019-01-31 15:28:46 -08001432 const C2StreamInitDataInfo::output *initData) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001433 if (handleWork(std::move(work), outputFormat, initData)) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001434 feedInputBufferIfAvailable();
1435 }
1436}
1437
1438void CCodecBufferChannel::onInputBufferDone(
Wonsik Kimab34ed62019-01-31 15:28:46 -08001439 uint64_t frameIndex, size_t arrayIndex) {
Pawin Vongmasa8e2cfb52019-05-15 05:20:52 -07001440 if (mInputSurface) {
1441 return;
1442 }
Wonsik Kimab34ed62019-01-31 15:28:46 -08001443 std::shared_ptr<C2Buffer> buffer =
1444 mPipelineWatcher.lock()->onInputBufferReleased(frameIndex, arrayIndex);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001445 bool newInputSlotAvailable;
1446 {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001447 Mutexed<Input>::Locked input(mInput);
1448 newInputSlotAvailable = input->buffers->expireComponentBuffer(buffer);
1449 if (!newInputSlotAvailable) {
1450 (void)input->extraBuffers.expireComponentBuffer(buffer);
1451 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001452 }
1453 if (newInputSlotAvailable) {
1454 feedInputBufferIfAvailable();
1455 }
1456}
1457
1458bool CCodecBufferChannel::handleWork(
1459 std::unique_ptr<C2Work> work,
1460 const sp<AMessage> &outputFormat,
1461 const C2StreamInitDataInfo::output *initData) {
Wonsik Kim936a89c2020-05-08 16:07:50 -07001462 {
Wonsik Kima4e049d2020-04-28 19:42:23 +00001463 Mutexed<Output>::Locked output(mOutput);
Wonsik Kim936a89c2020-05-08 16:07:50 -07001464 if (!output->buffers) {
1465 return false;
1466 }
Wonsik Kime75a5da2020-02-14 17:29:03 -08001467 }
1468
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001469 // Whether the output buffer should be reported to the client or not.
1470 bool notifyClient = false;
1471
1472 if (work->result == C2_OK){
1473 notifyClient = true;
1474 } else if (work->result == C2_NOT_FOUND) {
1475 ALOGD("[%s] flushed work; ignored.", mName);
1476 } else {
1477 // C2_OK and C2_NOT_FOUND are the only results that we accept for processing
1478 // the config update.
1479 ALOGD("[%s] work failed to complete: %d", mName, work->result);
1480 mCCodecCallback->onError(work->result, ACTION_CODE_FATAL);
1481 return false;
1482 }
1483
1484 if ((work->input.ordinal.frameIndex -
1485 mFirstValidFrameIndex.load()).peek() < 0) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001486 // Discard frames from previous generation.
1487 ALOGD("[%s] Discard frames from previous generation.", mName);
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001488 notifyClient = false;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001489 }
1490
Wonsik Kim524b0582019-03-12 11:28:57 -07001491 if (mInputSurface == nullptr && (work->worklets.size() != 1u
Pawin Vongmasa36653902018-11-15 00:10:25 -08001492 || !work->worklets.front()
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001493 || !(work->worklets.front()->output.flags &
1494 C2FrameData::FLAG_INCOMPLETE))) {
1495 mPipelineWatcher.lock()->onWorkDone(
1496 work->input.ordinal.frameIndex.peeku());
Pawin Vongmasa36653902018-11-15 00:10:25 -08001497 }
1498
1499 // NOTE: MediaCodec usage supposedly have only one worklet
1500 if (work->worklets.size() != 1u) {
1501 ALOGI("[%s] onWorkDone: incorrect number of worklets: %zu",
1502 mName, work->worklets.size());
1503 mCCodecCallback->onError(UNKNOWN_ERROR, ACTION_CODE_FATAL);
1504 return false;
1505 }
1506
1507 const std::unique_ptr<C2Worklet> &worklet = work->worklets.front();
1508
1509 std::shared_ptr<C2Buffer> buffer;
1510 // NOTE: MediaCodec usage supposedly have only one output stream.
1511 if (worklet->output.buffers.size() > 1u) {
1512 ALOGI("[%s] onWorkDone: incorrect number of output buffers: %zu",
1513 mName, worklet->output.buffers.size());
1514 mCCodecCallback->onError(UNKNOWN_ERROR, ACTION_CODE_FATAL);
1515 return false;
1516 } else if (worklet->output.buffers.size() == 1u) {
1517 buffer = worklet->output.buffers[0];
1518 if (!buffer) {
1519 ALOGD("[%s] onWorkDone: nullptr found in buffers; ignored.", mName);
1520 }
1521 }
1522
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001523 std::optional<uint32_t> newInputDelay, newPipelineDelay;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001524 while (!worklet->output.configUpdate.empty()) {
1525 std::unique_ptr<C2Param> param;
1526 worklet->output.configUpdate.back().swap(param);
1527 worklet->output.configUpdate.pop_back();
1528 switch (param->coreIndex().coreIndex()) {
1529 case C2PortReorderBufferDepthTuning::CORE_INDEX: {
1530 C2PortReorderBufferDepthTuning::output reorderDepth;
1531 if (reorderDepth.updateFrom(*param)) {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001532 bool secure = mComponent->getName().find(".secure") !=
1533 std::string::npos;
1534 mOutput.lock()->buffers->setReorderDepth(
1535 reorderDepth.value);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001536 ALOGV("[%s] onWorkDone: updated reorder depth to %u",
1537 mName, reorderDepth.value);
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001538 size_t numOutputSlots = mOutput.lock()->numSlots;
Sungtak Lee7a7b7422019-07-16 17:40:40 -07001539 size_t numInputSlots = mInput.lock()->numSlots;
Wonsik Kimf5e5c832019-02-21 11:36:05 -08001540 Mutexed<OutputSurface>::Locked output(mOutputSurface);
Sungtak Leed7463d12019-09-04 16:01:00 -07001541 output->maxDequeueBuffers = numOutputSlots +
Sungtak Lee7a7b7422019-07-16 17:40:40 -07001542 reorderDepth.value + kRenderingDepth;
Sungtak Leed7463d12019-09-04 16:01:00 -07001543 if (!secure) {
1544 output->maxDequeueBuffers += numInputSlots;
1545 }
Wonsik Kimf5e5c832019-02-21 11:36:05 -08001546 if (output->surface) {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001547 output->surface->setMaxDequeuedBufferCount(
1548 output->maxDequeueBuffers);
Wonsik Kimf5e5c832019-02-21 11:36:05 -08001549 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001550 } else {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001551 ALOGD("[%s] onWorkDone: failed to read reorder depth",
1552 mName);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001553 }
1554 break;
1555 }
1556 case C2PortReorderKeySetting::CORE_INDEX: {
1557 C2PortReorderKeySetting::output reorderKey;
1558 if (reorderKey.updateFrom(*param)) {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001559 mOutput.lock()->buffers->setReorderKey(reorderKey.value);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001560 ALOGV("[%s] onWorkDone: updated reorder key to %u",
1561 mName, reorderKey.value);
1562 } else {
1563 ALOGD("[%s] onWorkDone: failed to read reorder key", mName);
1564 }
1565 break;
1566 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001567 case C2PortActualDelayTuning::CORE_INDEX: {
1568 if (param->isGlobal()) {
1569 C2ActualPipelineDelayTuning pipelineDelay;
1570 if (pipelineDelay.updateFrom(*param)) {
1571 ALOGV("[%s] onWorkDone: updating pipeline delay %u",
1572 mName, pipelineDelay.value);
1573 newPipelineDelay = pipelineDelay.value;
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001574 (void)mPipelineWatcher.lock()->pipelineDelay(
1575 pipelineDelay.value);
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001576 }
1577 }
1578 if (param->forInput()) {
1579 C2PortActualDelayTuning::input inputDelay;
1580 if (inputDelay.updateFrom(*param)) {
1581 ALOGV("[%s] onWorkDone: updating input delay %u",
1582 mName, inputDelay.value);
1583 newInputDelay = inputDelay.value;
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001584 (void)mPipelineWatcher.lock()->inputDelay(
1585 inputDelay.value);
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001586 }
1587 }
1588 if (param->forOutput()) {
1589 C2PortActualDelayTuning::output outputDelay;
1590 if (outputDelay.updateFrom(*param)) {
1591 ALOGV("[%s] onWorkDone: updating output delay %u",
1592 mName, outputDelay.value);
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001593 bool secure = mComponent->getName().find(".secure") !=
1594 std::string::npos;
1595 (void)mPipelineWatcher.lock()->outputDelay(
1596 outputDelay.value);
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001597
1598 bool outputBuffersChanged = false;
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001599 size_t numOutputSlots = 0;
Sungtak Lee7a7b7422019-07-16 17:40:40 -07001600 size_t numInputSlots = mInput.lock()->numSlots;
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001601 {
1602 Mutexed<Output>::Locked output(mOutput);
Wonsik Kim936a89c2020-05-08 16:07:50 -07001603 if (!output->buffers) {
1604 return false;
1605 }
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001606 output->outputDelay = outputDelay.value;
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001607 numOutputSlots = outputDelay.value +
1608 kSmoothnessFactor;
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001609 if (output->numSlots < numOutputSlots) {
1610 output->numSlots = numOutputSlots;
1611 if (output->buffers->isArrayMode()) {
1612 OutputBuffersArray *array =
1613 (OutputBuffersArray *)output->buffers.get();
1614 ALOGV("[%s] onWorkDone: growing output buffer array to %zu",
1615 mName, numOutputSlots);
1616 array->grow(numOutputSlots);
1617 outputBuffersChanged = true;
1618 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001619 }
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001620 numOutputSlots = output->numSlots;
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001621 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001622
1623 if (outputBuffersChanged) {
1624 mCCodecCallback->onOutputBuffersChanged();
1625 }
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001626
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001627 uint32_t depth = mOutput.lock()->buffers->getReorderDepth();
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001628 Mutexed<OutputSurface>::Locked output(mOutputSurface);
Sungtak Leed7463d12019-09-04 16:01:00 -07001629 output->maxDequeueBuffers = numOutputSlots + depth + kRenderingDepth;
1630 if (!secure) {
1631 output->maxDequeueBuffers += numInputSlots;
1632 }
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001633 if (output->surface) {
1634 output->surface->setMaxDequeuedBufferCount(output->maxDequeueBuffers);
1635 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001636 }
1637 }
1638 break;
1639 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001640 default:
1641 ALOGV("[%s] onWorkDone: unrecognized config update (%08X)",
1642 mName, param->index());
1643 break;
1644 }
1645 }
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001646 if (newInputDelay || newPipelineDelay) {
1647 Mutexed<Input>::Locked input(mInput);
1648 size_t newNumSlots =
1649 newInputDelay.value_or(input->inputDelay) +
1650 newPipelineDelay.value_or(input->pipelineDelay) +
1651 kSmoothnessFactor;
1652 if (input->buffers->isArrayMode()) {
1653 if (input->numSlots >= newNumSlots) {
1654 input->numExtraSlots = 0;
1655 } else {
1656 input->numExtraSlots = newNumSlots - input->numSlots;
1657 }
1658 ALOGV("[%s] onWorkDone: updated number of extra slots to %zu (input array mode)",
1659 mName, input->numExtraSlots);
1660 } else {
1661 input->numSlots = newNumSlots;
1662 }
1663 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001664
Pawin Vongmasa36653902018-11-15 00:10:25 -08001665 int32_t flags = 0;
1666 if (worklet->output.flags & C2FrameData::FLAG_END_OF_STREAM) {
1667 flags |= MediaCodec::BUFFER_FLAG_EOS;
1668 ALOGV("[%s] onWorkDone: output EOS", mName);
1669 }
1670
Pawin Vongmasa36653902018-11-15 00:10:25 -08001671 // WORKAROUND: adjust output timestamp based on client input timestamp and codec
1672 // input timestamp. Codec output timestamp (in the timestamp field) shall correspond to
1673 // the codec input timestamp, but client output timestamp should (reported in timeUs)
1674 // shall correspond to the client input timesamp (in customOrdinal). By using the
1675 // delta between the two, this allows for some timestamp deviation - e.g. if one input
1676 // produces multiple output.
1677 c2_cntr64_t timestamp =
1678 worklet->output.ordinal.timestamp + work->input.ordinal.customOrdinal
1679 - work->input.ordinal.timestamp;
Wonsik Kim95ba0162019-03-19 15:51:54 -07001680 if (mInputSurface != nullptr) {
1681 // When using input surface we need to restore the original input timestamp.
1682 timestamp = work->input.ordinal.customOrdinal;
1683 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001684 ALOGV("[%s] onWorkDone: input %lld, codec %lld => output %lld => %lld",
1685 mName,
1686 work->input.ordinal.customOrdinal.peekll(),
1687 work->input.ordinal.timestamp.peekll(),
1688 worklet->output.ordinal.timestamp.peekll(),
1689 timestamp.peekll());
1690
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001691 // csd cannot be re-ordered and will always arrive first.
Pawin Vongmasa36653902018-11-15 00:10:25 -08001692 if (initData != nullptr) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001693 Mutexed<Output>::Locked output(mOutput);
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001694 if (output->buffers && outputFormat) {
1695 output->buffers->updateSkipCutBuffer(outputFormat);
1696 output->buffers->setFormat(outputFormat);
1697 }
1698 if (!notifyClient) {
1699 return false;
1700 }
1701 size_t index;
1702 sp<MediaCodecBuffer> outBuffer;
Wonsik Kim936a89c2020-05-08 16:07:50 -07001703 if (output->buffers && output->buffers->registerCsd(initData, &index, &outBuffer) == OK) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001704 outBuffer->meta()->setInt64("timeUs", timestamp.peek());
1705 outBuffer->meta()->setInt32("flags", MediaCodec::BUFFER_FLAG_CODECCONFIG);
1706 ALOGV("[%s] onWorkDone: csd index = %zu [%p]", mName, index, outBuffer.get());
1707
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001708 output.unlock();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001709 mCallback->onOutputBufferAvailable(index, outBuffer);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001710 } else {
1711 ALOGD("[%s] onWorkDone: unable to register csd", mName);
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001712 output.unlock();
Pawin Vongmasa36653902018-11-15 00:10:25 -08001713 mCCodecCallback->onError(UNKNOWN_ERROR, ACTION_CODE_FATAL);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001714 return false;
1715 }
1716 }
1717
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001718 if (notifyClient && !buffer && !flags) {
Wonsik Kim35bf5732020-05-14 17:40:29 +00001719 ALOGV("[%s] onWorkDone: Not reporting output buffer (%lld)",
Pawin Vongmasa36653902018-11-15 00:10:25 -08001720 mName, work->input.ordinal.frameIndex.peekull());
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001721 notifyClient = false;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001722 }
1723
1724 if (buffer) {
1725 for (const std::shared_ptr<const C2Info> &info : buffer->info()) {
1726 // TODO: properly translate these to metadata
1727 switch (info->coreIndex().coreIndex()) {
1728 case C2StreamPictureTypeMaskInfo::CORE_INDEX:
Lajos Molnar3bb81cd2019-02-20 15:10:30 -08001729 if (((C2StreamPictureTypeMaskInfo *)info.get())->value & C2Config::SYNC_FRAME) {
Pawin Vongmasa36653902018-11-15 00:10:25 -08001730 flags |= MediaCodec::BUFFER_FLAG_SYNCFRAME;
1731 }
1732 break;
1733 default:
1734 break;
1735 }
1736 }
1737 }
1738
1739 {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001740 Mutexed<Output>::Locked output(mOutput);
Wonsik Kimc23cc402020-05-28 14:53:40 -07001741 if (!output->buffers) {
1742 return false;
1743 }
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001744 output->buffers->pushToStash(
1745 buffer,
1746 notifyClient,
1747 timestamp.peek(),
1748 flags,
1749 outputFormat,
1750 worklet->output.ordinal);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001751 }
1752 sendOutputBuffers();
1753 return true;
1754}
1755
1756void CCodecBufferChannel::sendOutputBuffers() {
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001757 OutputBuffers::BufferAction action;
Wonsik Kima4e049d2020-04-28 19:42:23 +00001758 size_t index;
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001759 sp<MediaCodecBuffer> outBuffer;
1760 std::shared_ptr<C2Buffer> c2Buffer;
Pawin Vongmasa36653902018-11-15 00:10:25 -08001761
1762 while (true) {
Wonsik Kim5ecf3832019-04-18 10:28:58 -07001763 Mutexed<Output>::Locked output(mOutput);
Wonsik Kim936a89c2020-05-08 16:07:50 -07001764 if (!output->buffers) {
1765 return;
1766 }
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001767 action = output->buffers->popFromStashAndRegister(
1768 &c2Buffer, &index, &outBuffer);
1769 switch (action) {
1770 case OutputBuffers::SKIP:
1771 return;
1772 case OutputBuffers::DISCARD:
1773 break;
1774 case OutputBuffers::NOTIFY_CLIENT:
Wonsik Kima4e049d2020-04-28 19:42:23 +00001775 output.unlock();
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001776 mCallback->onOutputBufferAvailable(index, outBuffer);
1777 break;
1778 case OutputBuffers::REALLOCATE:
1779 if (!output->buffers->isArrayMode()) {
1780 output->buffers =
1781 output->buffers->toArrayMode(output->numSlots);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001782 }
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001783 static_cast<OutputBuffersArray*>(output->buffers.get())->
1784 realloc(c2Buffer);
1785 output.unlock();
1786 mCCodecCallback->onOutputBuffersChanged();
Wonsik Kim4ada73d2020-05-26 14:58:07 -07001787 break;
Pawin Vongmasa9b906982020-04-11 05:07:15 -07001788 case OutputBuffers::RETRY:
1789 ALOGV("[%s] sendOutputBuffers: unable to register output buffer",
1790 mName);
1791 return;
1792 default:
1793 LOG_ALWAYS_FATAL("[%s] sendOutputBuffers: "
1794 "corrupted BufferAction value (%d) "
1795 "returned from popFromStashAndRegister.",
1796 mName, int(action));
Pawin Vongmasa36653902018-11-15 00:10:25 -08001797 return;
1798 }
Pawin Vongmasa36653902018-11-15 00:10:25 -08001799 }
1800}
1801
1802status_t CCodecBufferChannel::setSurface(const sp<Surface> &newSurface) {
1803 static std::atomic_uint32_t surfaceGeneration{0};
1804 uint32_t generation = (getpid() << 10) |
1805 ((surfaceGeneration.fetch_add(1, std::memory_order_relaxed) + 1)
1806 & ((1 << 10) - 1));
1807
1808 sp<IGraphicBufferProducer> producer;
1809 if (newSurface) {
1810 newSurface->setScalingMode(NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW);
Sungtak Leeab6f2f32019-02-15 14:43:51 -08001811 newSurface->setDequeueTimeout(kDequeueTimeoutNs);
Sungtak Lee08515812019-06-05 11:16:32 -07001812 newSurface->setMaxDequeuedBufferCount(mOutputSurface.lock()->maxDequeueBuffers);
Pawin Vongmasa36653902018-11-15 00:10:25 -08001813 producer = newSurface->getIGraphicBufferProducer();
1814 producer->setGenerationNumber(generation);
1815 } else {
1816 ALOGE("[%s] setting output surface to null", mName);
1817 return INVALID_OPERATION;
1818 }
1819
1820 std::shared_ptr<Codec2Client::Configurable> outputPoolIntf;
1821 C2BlockPool::local_id_t outputPoolId;
1822 {
1823 Mutexed<BlockPools>::Locked pools(mBlockPools);
1824 outputPoolId = pools->outputPoolId;
1825 outputPoolIntf = pools->outputPoolIntf;
1826 }
1827
1828 if (outputPoolIntf) {
1829 if (mComponent->setOutputSurface(
1830 outputPoolId,
1831 producer,
1832 generation) != C2_OK) {
1833 ALOGI("[%s] setSurface: component setOutputSurface failed", mName);
1834 return INVALID_OPERATION;
1835 }
1836 }
1837
1838 {
1839 Mutexed<OutputSurface>::Locked output(mOutputSurface);
1840 output->surface = newSurface;
1841 output->generation = generation;
1842 }
1843
1844 return OK;
1845}
1846
Wonsik Kimab34ed62019-01-31 15:28:46 -08001847PipelineWatcher::Clock::duration CCodecBufferChannel::elapsed() {
Wonsik Kim4fa4f2b2019-02-13 11:02:58 -08001848 // When client pushed EOS, we want all the work to be done quickly.
1849 // Otherwise, component may have stalled work due to input starvation up to
1850 // the sum of the delay in the pipeline.
Wonsik Kimf0e7d222019-06-28 12:33:16 -07001851 size_t n = 0;
1852 if (!mInputMetEos) {
1853 size_t outputDelay = mOutput.lock()->outputDelay;
1854 Mutexed<Input>::Locked input(mInput);
1855 n = input->inputDelay + input->pipelineDelay + outputDelay;
1856 }
Wonsik Kim4fa4f2b2019-02-13 11:02:58 -08001857 return mPipelineWatcher.lock()->elapsed(PipelineWatcher::Clock::now(), n);
Wonsik Kimab34ed62019-01-31 15:28:46 -08001858}
1859
Pawin Vongmasa36653902018-11-15 00:10:25 -08001860void CCodecBufferChannel::setMetaMode(MetaMode mode) {
1861 mMetaMode = mode;
1862}
1863
Wonsik Kim596187e2019-10-25 12:44:10 -07001864void CCodecBufferChannel::setCrypto(const sp<ICrypto> &crypto) {
Wonsik Kimfb7a7672019-12-27 17:13:33 -08001865 if (mCrypto != nullptr) {
1866 for (std::pair<wp<HidlMemory>, int32_t> entry : mHeapSeqNumMap) {
1867 mCrypto->unsetHeap(entry.second);
1868 }
1869 mHeapSeqNumMap.clear();
1870 if (mHeapSeqNum >= 0) {
1871 mCrypto->unsetHeap(mHeapSeqNum);
1872 mHeapSeqNum = -1;
1873 }
1874 }
Wonsik Kim596187e2019-10-25 12:44:10 -07001875 mCrypto = crypto;
1876}
1877
1878void CCodecBufferChannel::setDescrambler(const sp<IDescrambler> &descrambler) {
1879 mDescrambler = descrambler;
1880}
1881
Pawin Vongmasa36653902018-11-15 00:10:25 -08001882status_t toStatusT(c2_status_t c2s, c2_operation_t c2op) {
1883 // C2_OK is always translated to OK.
1884 if (c2s == C2_OK) {
1885 return OK;
1886 }
1887
1888 // Operation-dependent translation
1889 // TODO: Add as necessary
1890 switch (c2op) {
1891 case C2_OPERATION_Component_start:
1892 switch (c2s) {
1893 case C2_NO_MEMORY:
1894 return NO_MEMORY;
1895 default:
1896 return UNKNOWN_ERROR;
1897 }
1898 default:
1899 break;
1900 }
1901
1902 // Backup operation-agnostic translation
1903 switch (c2s) {
1904 case C2_BAD_INDEX:
1905 return BAD_INDEX;
1906 case C2_BAD_VALUE:
1907 return BAD_VALUE;
1908 case C2_BLOCKING:
1909 return WOULD_BLOCK;
1910 case C2_DUPLICATE:
1911 return ALREADY_EXISTS;
1912 case C2_NO_INIT:
1913 return NO_INIT;
1914 case C2_NO_MEMORY:
1915 return NO_MEMORY;
1916 case C2_NOT_FOUND:
1917 return NAME_NOT_FOUND;
1918 case C2_TIMED_OUT:
1919 return TIMED_OUT;
1920 case C2_BAD_STATE:
1921 case C2_CANCELED:
1922 case C2_CANNOT_DO:
1923 case C2_CORRUPTED:
1924 case C2_OMITTED:
1925 case C2_REFUSED:
1926 return UNKNOWN_ERROR;
1927 default:
1928 return -static_cast<status_t>(c2s);
1929 }
1930}
1931
1932} // namespace android