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Pawin Vongmasa36653902018-11-15 00:10:25 -08001/*
2 * Copyright 2018, The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifdef __LP64__
18#define OMX_ANDROID_COMPILE_AS_32BIT_ON_64BIT_PLATFORMS
19#endif
20
21//#define LOG_NDEBUG 0
22#define LOG_TAG "C2OMXNode"
23#include <log/log.h>
24
25#include <C2AllocatorGralloc.h>
26#include <C2BlockInternal.h>
27#include <C2Component.h>
28#include <C2PlatformSupport.h>
29
30#include <OMX_Component.h>
31#include <OMX_Index.h>
32#include <OMX_IndexExt.h>
33
Chong Zhang442be452019-06-18 10:20:54 -070034#include <android/fdsan.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080035#include <media/stagefright/omx/OMXUtils.h>
36#include <media/stagefright/MediaErrors.h>
37#include <ui/Fence.h>
38#include <ui/GraphicBuffer.h>
Wonsik Kim831b8d72019-06-11 17:52:56 -070039#include <utils/Thread.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080040
41#include "C2OMXNode.h"
42
43namespace android {
44
45namespace {
46
47class Buffer2D : public C2Buffer {
48public:
49 explicit Buffer2D(C2ConstGraphicBlock block) : C2Buffer({ block }) {}
50};
51
52} // namespace
53
Wonsik Kim831b8d72019-06-11 17:52:56 -070054class C2OMXNode::QueueThread : public Thread {
55public:
56 QueueThread() : Thread(false) {}
57 ~QueueThread() override = default;
58 void queue(
59 const std::shared_ptr<Codec2Client::Component> &comp,
60 int fenceFd,
61 std::unique_ptr<C2Work> &&work,
62 android::base::unique_fd &&fd0,
63 android::base::unique_fd &&fd1) {
64 Mutexed<Jobs>::Locked jobs(mJobs);
65 auto it = jobs->queues.try_emplace(comp, comp, systemTime()).first;
66 it->second.workList.emplace_back(
67 std::move(work), fenceFd, std::move(fd0), std::move(fd1));
68 jobs->cond.broadcast();
69 }
70
71protected:
72 bool threadLoop() override {
73 constexpr nsecs_t kIntervalNs = nsecs_t(10) * 1000 * 1000; // 10ms
74 constexpr nsecs_t kWaitNs = kIntervalNs * 2;
75 for (int i = 0; i < 2; ++i) {
76 Mutexed<Jobs>::Locked jobs(mJobs);
77 nsecs_t nowNs = systemTime();
78 bool queued = false;
79 for (auto it = jobs->queues.begin(); it != jobs->queues.end(); ++it) {
80 Queue &queue = it->second;
81 if (queue.workList.empty()
82 || nowNs - queue.lastQueuedTimestampNs < kIntervalNs) {
83 continue;
84 }
85 std::shared_ptr<Codec2Client::Component> comp = queue.component.lock();
86 if (!comp) {
87 it = jobs->queues.erase(it);
88 continue;
89 }
90 std::list<std::unique_ptr<C2Work>> items;
91 std::vector<int> fenceFds;
92 std::vector<android::base::unique_fd> uniqueFds;
93 while (!queue.workList.empty()) {
94 items.push_back(std::move(queue.workList.front().work));
95 fenceFds.push_back(queue.workList.front().fenceFd);
96 uniqueFds.push_back(std::move(queue.workList.front().fd0));
97 uniqueFds.push_back(std::move(queue.workList.front().fd1));
98 queue.workList.pop_front();
99 }
100
101 jobs.unlock();
102 for (int fenceFd : fenceFds) {
103 sp<Fence> fence(new Fence(fenceFd));
104 fence->waitForever(LOG_TAG);
105 }
106 comp->queue(&items);
107 for (android::base::unique_fd &ufd : uniqueFds) {
108 (void)ufd.release();
109 }
110 jobs.lock();
111
112 queued = true;
113 }
114 if (queued) {
115 return true;
116 }
117 if (i == 0) {
118 jobs.waitForConditionRelative(jobs->cond, kWaitNs);
119 }
120 }
121 return true;
122 }
123
124private:
125 struct WorkFence {
126 WorkFence(std::unique_ptr<C2Work> &&w, int fd) : work(std::move(w)), fenceFd(fd) {}
127
128 WorkFence(
129 std::unique_ptr<C2Work> &&w,
130 int fd,
131 android::base::unique_fd &&uniqueFd0,
132 android::base::unique_fd &&uniqueFd1)
133 : work(std::move(w)),
134 fenceFd(fd),
135 fd0(std::move(uniqueFd0)),
136 fd1(std::move(uniqueFd1)) {}
137
138 std::unique_ptr<C2Work> work;
139 int fenceFd;
140 android::base::unique_fd fd0;
141 android::base::unique_fd fd1;
142 };
143 struct Queue {
144 Queue(const std::shared_ptr<Codec2Client::Component> &comp, nsecs_t timestamp)
145 : component(comp), lastQueuedTimestampNs(timestamp) {}
146 Queue(const Queue &) = delete;
147 Queue &operator =(const Queue &) = delete;
148
149 std::weak_ptr<Codec2Client::Component> component;
150 std::list<WorkFence> workList;
151 nsecs_t lastQueuedTimestampNs;
152 };
153 struct Jobs {
154 std::map<std::weak_ptr<Codec2Client::Component>,
155 Queue,
156 std::owner_less<std::weak_ptr<Codec2Client::Component>>> queues;
157 Condition cond;
158 };
159 Mutexed<Jobs> mJobs;
160};
161
Pawin Vongmasa36653902018-11-15 00:10:25 -0800162C2OMXNode::C2OMXNode(const std::shared_ptr<Codec2Client::Component> &comp)
Wonsik Kim9eac4d12019-05-23 12:58:48 -0700163 : mComp(comp), mFrameIndex(0), mWidth(0), mHeight(0), mUsage(0),
Wonsik Kim831b8d72019-06-11 17:52:56 -0700164 mAdjustTimestampGapUs(0), mFirstInputFrame(true),
165 mQueueThread(new QueueThread) {
Chong Zhang442be452019-06-18 10:20:54 -0700166 android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_WARN_ALWAYS);
Wonsik Kim831b8d72019-06-11 17:52:56 -0700167 mQueueThread->run("C2OMXNode", PRIORITY_AUDIO);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800168}
169
170status_t C2OMXNode::freeNode() {
171 mComp.reset();
Chong Zhang442be452019-06-18 10:20:54 -0700172 android_fdsan_set_error_level(ANDROID_FDSAN_ERROR_LEVEL_WARN_ONCE);
Wonsik Kim831b8d72019-06-11 17:52:56 -0700173 return mQueueThread->requestExitAndWait();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800174}
175
176status_t C2OMXNode::sendCommand(OMX_COMMANDTYPE cmd, OMX_S32 param) {
177 if (cmd == OMX_CommandStateSet && param == OMX_StateLoaded) {
178 // Reset first input frame so if C2OMXNode is recycled, the timestamp does not become
179 // negative. This is a workaround for HW codecs that do not handle timestamp rollover.
180 mFirstInputFrame = true;
181 }
182 return ERROR_UNSUPPORTED;
183}
184
185status_t C2OMXNode::getParameter(OMX_INDEXTYPE index, void *params, size_t size) {
186 status_t err = ERROR_UNSUPPORTED;
187 switch ((uint32_t)index) {
188 case OMX_IndexParamConsumerUsageBits: {
189 OMX_U32 *usage = (OMX_U32 *)params;
190 *usage = mUsage;
191 err = OK;
192 break;
193 }
194 case OMX_IndexParamPortDefinition: {
195 if (size < sizeof(OMX_PARAM_PORTDEFINITIONTYPE)) {
196 return BAD_VALUE;
197 }
198 OMX_PARAM_PORTDEFINITIONTYPE *pDef = (OMX_PARAM_PORTDEFINITIONTYPE *)params;
199 // TODO: read these from intf()
200 pDef->nBufferCountActual = 16;
201 pDef->eDomain = OMX_PortDomainVideo;
202 pDef->format.video.nFrameWidth = mWidth;
203 pDef->format.video.nFrameHeight = mHeight;
204 err = OK;
205 break;
206 }
207 default:
208 break;
209 }
210 return err;
211}
212
213status_t C2OMXNode::setParameter(OMX_INDEXTYPE index, const void *params, size_t size) {
Wonsik Kim9eac4d12019-05-23 12:58:48 -0700214 if (params == NULL) {
215 return BAD_VALUE;
216 }
217 switch ((uint32_t)index) {
218 case OMX_IndexParamMaxFrameDurationForBitrateControl:
219 // handle max/fixed frame duration control
220 if (size != sizeof(OMX_PARAM_U32TYPE)) {
221 return BAD_VALUE;
222 }
223 // The incoming number is an int32_t contained in OMX_U32.
224 mAdjustTimestampGapUs = (int32_t)((OMX_PARAM_U32TYPE*)params)->nU32;
225 return OK;
226
227 case OMX_IndexParamConsumerUsageBits:
228 if (size != sizeof(OMX_U32)) {
229 return BAD_VALUE;
230 }
231 mUsage = *((OMX_U32 *)params);
232 return OK;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800233 }
234 return ERROR_UNSUPPORTED;
235}
236
237status_t C2OMXNode::getConfig(OMX_INDEXTYPE index, void *config, size_t size) {
238 (void)index;
239 (void)config;
240 (void)size;
241 return ERROR_UNSUPPORTED;
242}
243
244status_t C2OMXNode::setConfig(OMX_INDEXTYPE index, const void *config, size_t size) {
245 (void)index;
246 (void)config;
247 (void)size;
248 return ERROR_UNSUPPORTED;
249}
250
251status_t C2OMXNode::setPortMode(OMX_U32 portIndex, IOMX::PortMode mode) {
252 (void)portIndex;
253 (void)mode;
254 return ERROR_UNSUPPORTED;
255}
256
257status_t C2OMXNode::prepareForAdaptivePlayback(
258 OMX_U32 portIndex, OMX_BOOL enable,
259 OMX_U32 maxFrameWidth, OMX_U32 maxFrameHeight) {
260 (void)portIndex;
261 (void)enable;
262 (void)maxFrameWidth;
263 (void)maxFrameHeight;
264 return ERROR_UNSUPPORTED;
265}
266
267status_t C2OMXNode::configureVideoTunnelMode(
268 OMX_U32 portIndex, OMX_BOOL tunneled,
269 OMX_U32 audioHwSync, native_handle_t **sidebandHandle) {
270 (void)portIndex;
271 (void)tunneled;
272 (void)audioHwSync;
273 *sidebandHandle = nullptr;
274 return ERROR_UNSUPPORTED;
275}
276
277status_t C2OMXNode::getGraphicBufferUsage(OMX_U32 portIndex, OMX_U32* usage) {
278 (void)portIndex;
279 *usage = 0;
280 return ERROR_UNSUPPORTED;
281}
282
283status_t C2OMXNode::setInputSurface(const sp<IOMXBufferSource> &bufferSource) {
284 c2_status_t err = GetCodec2PlatformAllocatorStore()->fetchAllocator(
285 C2PlatformAllocatorStore::GRALLOC,
286 &mAllocator);
287 if (err != OK) {
288 return UNKNOWN_ERROR;
289 }
290 mBufferSource = bufferSource;
291 return OK;
292}
293
294status_t C2OMXNode::allocateSecureBuffer(
295 OMX_U32 portIndex, size_t size, buffer_id *buffer,
296 void **bufferData, sp<NativeHandle> *nativeHandle) {
297 (void)portIndex;
298 (void)size;
299 (void)nativeHandle;
300 *buffer = 0;
301 *bufferData = nullptr;
302 return ERROR_UNSUPPORTED;
303}
304
305status_t C2OMXNode::useBuffer(
306 OMX_U32 portIndex, const OMXBuffer &omxBuf, buffer_id *buffer) {
307 (void)portIndex;
308 (void)omxBuf;
309 *buffer = 0;
310 return ERROR_UNSUPPORTED;
311}
312
313status_t C2OMXNode::freeBuffer(OMX_U32 portIndex, buffer_id buffer) {
314 (void)portIndex;
315 (void)buffer;
316 return ERROR_UNSUPPORTED;
317}
318
319status_t C2OMXNode::fillBuffer(
320 buffer_id buffer, const OMXBuffer &omxBuf, int fenceFd) {
321 (void)buffer;
322 (void)omxBuf;
323 (void)fenceFd;
324 return ERROR_UNSUPPORTED;
325}
326
327status_t C2OMXNode::emptyBuffer(
328 buffer_id buffer, const OMXBuffer &omxBuf,
329 OMX_U32 flags, OMX_TICKS timestamp, int fenceFd) {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800330 std::shared_ptr<Codec2Client::Component> comp = mComp.lock();
331 if (!comp) {
332 return NO_INIT;
333 }
334
335 uint32_t c2Flags = (flags & OMX_BUFFERFLAG_EOS)
336 ? C2FrameData::FLAG_END_OF_STREAM : 0;
337 std::shared_ptr<C2GraphicBlock> block;
338
Chong Zhang442be452019-06-18 10:20:54 -0700339 android::base::unique_fd fd0, fd1;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800340 C2Handle *handle = nullptr;
341 if (omxBuf.mBufferType == OMXBuffer::kBufferTypeANWBuffer
342 && omxBuf.mGraphicBuffer != nullptr) {
343 std::shared_ptr<C2GraphicAllocation> alloc;
344 handle = WrapNativeCodec2GrallocHandle(
Sungtak Leea4d13be2019-01-23 15:24:46 -0800345 omxBuf.mGraphicBuffer->handle,
Pawin Vongmasa36653902018-11-15 00:10:25 -0800346 omxBuf.mGraphicBuffer->width,
347 omxBuf.mGraphicBuffer->height,
348 omxBuf.mGraphicBuffer->format,
349 omxBuf.mGraphicBuffer->usage,
350 omxBuf.mGraphicBuffer->stride);
Chong Zhang442be452019-06-18 10:20:54 -0700351 if (handle != nullptr) {
352 // unique_fd takes ownership of the fds, we'll get warning if these
353 // fds get closed by somebody else. Onwership will be released before
354 // we return, so that the fds get closed as usually when this function
355 // goes out of scope (when both items and block are gone).
356 native_handle_t *nativeHandle = reinterpret_cast<native_handle_t*>(handle);
357 fd0.reset(nativeHandle->numFds > 0 ? nativeHandle->data[0] : -1);
358 fd1.reset(nativeHandle->numFds > 1 ? nativeHandle->data[1] : -1);
359 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800360 c2_status_t err = mAllocator->priorGraphicAllocation(handle, &alloc);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800361 if (err != OK) {
Chong Zhang442be452019-06-18 10:20:54 -0700362 (void)fd0.release();
363 (void)fd1.release();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800364 return UNKNOWN_ERROR;
365 }
366 block = _C2BlockFactory::CreateGraphicBlock(alloc);
367 } else if (!(flags & OMX_BUFFERFLAG_EOS)) {
368 return BAD_VALUE;
369 }
370
371 std::unique_ptr<C2Work> work(new C2Work);
372 work->input.flags = (C2FrameData::flags_t)c2Flags;
373 work->input.ordinal.timestamp = timestamp;
374
375 // WORKAROUND: adjust timestamp based on gapUs
376 {
377 work->input.ordinal.customOrdinal = timestamp; // save input timestamp
378 if (mFirstInputFrame) {
379 // grab timestamps on first frame
380 mPrevInputTimestamp = timestamp;
381 mPrevCodecTimestamp = timestamp;
382 mFirstInputFrame = false;
383 } else if (mAdjustTimestampGapUs > 0) {
384 work->input.ordinal.timestamp =
385 mPrevCodecTimestamp
386 + c2_min((timestamp - mPrevInputTimestamp).peek(), mAdjustTimestampGapUs);
387 } else if (mAdjustTimestampGapUs < 0) {
388 work->input.ordinal.timestamp = mPrevCodecTimestamp - mAdjustTimestampGapUs;
389 }
390 mPrevInputTimestamp = work->input.ordinal.customOrdinal;
391 mPrevCodecTimestamp = work->input.ordinal.timestamp;
392 ALOGV("adjusting %lld to %lld (gap=%lld)",
393 work->input.ordinal.customOrdinal.peekll(),
394 work->input.ordinal.timestamp.peekll(),
395 (long long)mAdjustTimestampGapUs);
396 }
397
398 work->input.ordinal.frameIndex = mFrameIndex++;
399 work->input.buffers.clear();
400 if (block) {
401 std::shared_ptr<C2Buffer> c2Buffer(
Pawin Vongmasa36653902018-11-15 00:10:25 -0800402 new Buffer2D(block->share(
Wonsik Kim4f3314d2019-03-26 17:00:34 -0700403 C2Rect(block->width(), block->height()), ::C2Fence())));
Pawin Vongmasa36653902018-11-15 00:10:25 -0800404 work->input.buffers.push_back(c2Buffer);
405 }
406 work->worklets.clear();
407 work->worklets.emplace_back(new C2Worklet);
Wonsik Kim831b8d72019-06-11 17:52:56 -0700408 mBufferIdsInUse.lock()->emplace(work->input.ordinal.frameIndex.peeku(), buffer);
409 mQueueThread->queue(comp, fenceFd, std::move(work), std::move(fd0), std::move(fd1));
Chong Zhang442be452019-06-18 10:20:54 -0700410
Pawin Vongmasa36653902018-11-15 00:10:25 -0800411 return OK;
412}
413
414status_t C2OMXNode::getExtensionIndex(
415 const char *parameterName, OMX_INDEXTYPE *index) {
416 (void)parameterName;
417 *index = OMX_IndexMax;
418 return ERROR_UNSUPPORTED;
419}
420
421status_t C2OMXNode::dispatchMessage(const omx_message& msg) {
422 if (msg.type != omx_message::EVENT) {
423 return ERROR_UNSUPPORTED;
424 }
425 if (msg.u.event_data.event != OMX_EventDataSpaceChanged) {
426 return ERROR_UNSUPPORTED;
427 }
428 android_dataspace dataSpace = (android_dataspace)msg.u.event_data.data1;
429 uint32_t pixelFormat = msg.u.event_data.data3;
430
431 // TODO: set dataspace on component to see if it impacts color aspects
432 ALOGD("dataspace changed to %#x pixel format: %#x", dataSpace, pixelFormat);
433 return OK;
434}
435
436sp<IOMXBufferSource> C2OMXNode::getSource() {
437 return mBufferSource;
438}
439
440void C2OMXNode::setFrameSize(uint32_t width, uint32_t height) {
441 mWidth = width;
442 mHeight = height;
443}
444
Wonsik Kim4f3314d2019-03-26 17:00:34 -0700445void C2OMXNode::onInputBufferDone(c2_cntr64_t index) {
446 if (!mBufferSource) {
447 ALOGD("Buffer source not set (index=%llu)", index.peekull());
448 return;
449 }
Wonsik Kima261e382019-04-10 11:37:50 -0700450
451 int32_t bufferId = 0;
452 {
453 decltype(mBufferIdsInUse)::Locked bufferIds(mBufferIdsInUse);
454 auto it = bufferIds->find(index.peeku());
455 if (it == bufferIds->end()) {
456 ALOGV("Untracked input index %llu (maybe already removed)", index.peekull());
457 return;
458 }
459 bufferId = it->second;
460 (void)bufferIds->erase(it);
Wonsik Kim4f3314d2019-03-26 17:00:34 -0700461 }
Wonsik Kima261e382019-04-10 11:37:50 -0700462 (void)mBufferSource->onInputBufferEmptied(bufferId, -1);
Wonsik Kim4f3314d2019-03-26 17:00:34 -0700463}
464
Pawin Vongmasa36653902018-11-15 00:10:25 -0800465} // namespace android