1/*
2 * libjingle
3 * Copyright 2012 Google Inc.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions are met:
7 *
8 *  1. Redistributions of source code must retain the above copyright notice,
9 *     this list of conditions and the following disclaimer.
10 *  2. Redistributions in binary form must reproduce the above copyright notice,
11 *     this list of conditions and the following disclaimer in the documentation
12 *     and/or other materials provided with the distribution.
13 *  3. The name of the author may not be used to endorse or promote products
14 *     derived from this software without specific prior written permission.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
17 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
18 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO
19 * EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
20 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
21 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
22 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
23 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
24 * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
25 * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 */
27
28#include "talk/app/webrtc/videosource.h"
29
30#include <vector>
31#include <cstdlib>
32
33#include "talk/app/webrtc/mediaconstraintsinterface.h"
34#include "talk/session/media/channelmanager.h"
35#include "webrtc/base/arraysize.h"
36
37using cricket::CaptureState;
38using webrtc::MediaConstraintsInterface;
39using webrtc::MediaSourceInterface;
40
41namespace {
42
43const double kRoundingTruncation = 0.0005;
44
45enum {
46  MSG_VIDEOCAPTURESTATECONNECT,
47  MSG_VIDEOCAPTURESTATEDISCONNECT,
48  MSG_VIDEOCAPTURESTATECHANGE,
49};
50
51// Default resolution. If no constraint is specified, this is the resolution we
52// will use.
53static const cricket::VideoFormatPod kDefaultFormat =
54    {640, 480, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY};
55
56// List of formats used if the camera doesn't support capability enumeration.
57static const cricket::VideoFormatPod kVideoFormats[] = {
58  {1920, 1080, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
59  {1280, 720, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
60  {960, 720, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
61  {640, 360, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
62  {640, 480, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
63  {320, 240, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY},
64  {320, 180, FPS_TO_INTERVAL(30), cricket::FOURCC_ANY}
65};
66
67MediaSourceInterface::SourceState
68GetReadyState(cricket::CaptureState state) {
69  switch (state) {
70    case cricket::CS_STARTING:
71      return MediaSourceInterface::kInitializing;
72    case cricket::CS_RUNNING:
73      return MediaSourceInterface::kLive;
74    case cricket::CS_FAILED:
75    case cricket::CS_NO_DEVICE:
76    case cricket::CS_STOPPED:
77      return MediaSourceInterface::kEnded;
78    case cricket::CS_PAUSED:
79      return MediaSourceInterface::kMuted;
80    default:
81      ASSERT(false && "GetReadyState unknown state");
82  }
83  return MediaSourceInterface::kEnded;
84}
85
86void SetUpperLimit(int new_limit, int* original_limit) {
87  if (*original_limit < 0 || new_limit < *original_limit)
88    *original_limit = new_limit;
89}
90
91// Updates |format_upper_limit| from |constraint|.
92// If constraint.maxFoo is smaller than format_upper_limit.foo,
93// set format_upper_limit.foo to constraint.maxFoo.
94void SetUpperLimitFromConstraint(
95    const MediaConstraintsInterface::Constraint& constraint,
96    cricket::VideoFormat* format_upper_limit) {
97  if (constraint.key == MediaConstraintsInterface::kMaxWidth) {
98    int value = rtc::FromString<int>(constraint.value);
99    SetUpperLimit(value, &(format_upper_limit->width));
100  } else if (constraint.key == MediaConstraintsInterface::kMaxHeight) {
101    int value = rtc::FromString<int>(constraint.value);
102    SetUpperLimit(value, &(format_upper_limit->height));
103  }
104}
105
106// Fills |format_out| with the max width and height allowed by |constraints|.
107void FromConstraintsForScreencast(
108    const MediaConstraintsInterface::Constraints& constraints,
109    cricket::VideoFormat* format_out) {
110  typedef MediaConstraintsInterface::Constraints::const_iterator
111      ConstraintsIterator;
112
113  cricket::VideoFormat upper_limit(-1, -1, 0, 0);
114  for (ConstraintsIterator constraints_it = constraints.begin();
115       constraints_it != constraints.end(); ++constraints_it)
116    SetUpperLimitFromConstraint(*constraints_it, &upper_limit);
117
118  if (upper_limit.width >= 0)
119    format_out->width = upper_limit.width;
120  if (upper_limit.height >= 0)
121    format_out->height = upper_limit.height;
122}
123
124// Returns true if |constraint| is fulfilled. |format_out| can differ from
125// |format_in| if the format is changed by the constraint. Ie - the frame rate
126// can be changed by setting maxFrameRate.
127bool NewFormatWithConstraints(
128    const MediaConstraintsInterface::Constraint& constraint,
129    const cricket::VideoFormat& format_in,
130    bool mandatory,
131    cricket::VideoFormat* format_out) {
132  ASSERT(format_out != NULL);
133  *format_out = format_in;
134
135  if (constraint.key == MediaConstraintsInterface::kMinWidth) {
136    int value = rtc::FromString<int>(constraint.value);
137    return (value <= format_in.width);
138  } else if (constraint.key == MediaConstraintsInterface::kMaxWidth) {
139    int value = rtc::FromString<int>(constraint.value);
140    return (value >= format_in.width);
141  } else if (constraint.key == MediaConstraintsInterface::kMinHeight) {
142    int value = rtc::FromString<int>(constraint.value);
143    return (value <= format_in.height);
144  } else if (constraint.key == MediaConstraintsInterface::kMaxHeight) {
145    int value = rtc::FromString<int>(constraint.value);
146    return (value >= format_in.height);
147  } else if (constraint.key == MediaConstraintsInterface::kMinFrameRate) {
148    int value = rtc::FromString<int>(constraint.value);
149    return (value <= cricket::VideoFormat::IntervalToFps(format_in.interval));
150  } else if (constraint.key == MediaConstraintsInterface::kMaxFrameRate) {
151    int value = rtc::FromString<int>(constraint.value);
152    if (value == 0) {
153      if (mandatory) {
154        // TODO(ronghuawu): Convert the constraint value to float when sub-1fps
155        // is supported by the capturer.
156        return false;
157      } else {
158        value = 1;
159      }
160    }
161    if (value <= cricket::VideoFormat::IntervalToFps(format_in.interval))
162      format_out->interval = cricket::VideoFormat::FpsToInterval(value);
163    return true;
164  } else if (constraint.key == MediaConstraintsInterface::kMinAspectRatio) {
165    double value = rtc::FromString<double>(constraint.value);
166    // The aspect ratio in |constraint.value| has been converted to a string and
167    // back to a double, so it may have a rounding error.
168    // E.g if the value 1/3 is converted to a string, the string will not have
169    // infinite length.
170    // We add a margin of 0.0005 which is high enough to detect the same aspect
171    // ratio but small enough to avoid matching wrong aspect ratios.
172    double ratio = static_cast<double>(format_in.width) / format_in.height;
173    return  (value <= ratio + kRoundingTruncation);
174  } else if (constraint.key == MediaConstraintsInterface::kMaxAspectRatio) {
175    double value = rtc::FromString<double>(constraint.value);
176    double ratio = static_cast<double>(format_in.width) / format_in.height;
177    // Subtract 0.0005 to avoid rounding problems. Same as above.
178    const double kRoundingTruncation = 0.0005;
179    return  (value >= ratio - kRoundingTruncation);
180  } else if (constraint.key == MediaConstraintsInterface::kNoiseReduction) {
181    // These are actually options, not constraints, so they can be satisfied
182    // regardless of the format.
183    return true;
184  }
185  LOG(LS_WARNING) << "Found unknown MediaStream constraint. Name:"
186      <<  constraint.key << " Value:" << constraint.value;
187  return false;
188}
189
190// Removes cricket::VideoFormats from |formats| that don't meet |constraint|.
191void FilterFormatsByConstraint(
192    const MediaConstraintsInterface::Constraint& constraint,
193    bool mandatory,
194    std::vector<cricket::VideoFormat>* formats) {
195  std::vector<cricket::VideoFormat>::iterator format_it =
196      formats->begin();
197  while (format_it != formats->end()) {
198    // Modify the format_it to fulfill the constraint if possible.
199    // Delete it otherwise.
200    if (!NewFormatWithConstraints(constraint, (*format_it),
201                                  mandatory, &(*format_it))) {
202      format_it = formats->erase(format_it);
203    } else {
204      ++format_it;
205    }
206  }
207}
208
209// Returns a vector of cricket::VideoFormat that best match |constraints|.
210std::vector<cricket::VideoFormat> FilterFormats(
211    const MediaConstraintsInterface::Constraints& mandatory,
212    const MediaConstraintsInterface::Constraints& optional,
213    const std::vector<cricket::VideoFormat>& supported_formats) {
214  typedef MediaConstraintsInterface::Constraints::const_iterator
215      ConstraintsIterator;
216  std::vector<cricket::VideoFormat> candidates = supported_formats;
217
218  for (ConstraintsIterator constraints_it = mandatory.begin();
219       constraints_it != mandatory.end(); ++constraints_it)
220    FilterFormatsByConstraint(*constraints_it, true, &candidates);
221
222  if (candidates.size() == 0)
223    return candidates;
224
225  // Ok - all mandatory checked and we still have a candidate.
226  // Let's try filtering using the optional constraints.
227  for (ConstraintsIterator  constraints_it = optional.begin();
228       constraints_it != optional.end(); ++constraints_it) {
229    std::vector<cricket::VideoFormat> current_candidates = candidates;
230    FilterFormatsByConstraint(*constraints_it, false, &current_candidates);
231    if (current_candidates.size() > 0) {
232      candidates = current_candidates;
233    }
234  }
235
236  // We have done as good as we can to filter the supported resolutions.
237  return candidates;
238}
239
240// Find the format that best matches the default video size.
241// Constraints are optional and since the performance of a video call
242// might be bad due to bitrate limitations, CPU, and camera performance,
243// it is better to select a resolution that is as close as possible to our
244// default and still meets the contraints.
245const cricket::VideoFormat& GetBestCaptureFormat(
246    const std::vector<cricket::VideoFormat>& formats) {
247  ASSERT(formats.size() > 0);
248
249  int default_area = kDefaultFormat.width * kDefaultFormat.height;
250
251  std::vector<cricket::VideoFormat>::const_iterator it = formats.begin();
252  std::vector<cricket::VideoFormat>::const_iterator best_it = formats.begin();
253  int best_diff_area = std::abs(default_area - it->width * it->height);
254  int64_t best_diff_interval = kDefaultFormat.interval;
255  for (; it != formats.end(); ++it) {
256    int diff_area = std::abs(default_area - it->width * it->height);
257    int64_t diff_interval = std::abs(kDefaultFormat.interval - it->interval);
258    if (diff_area < best_diff_area ||
259        (diff_area == best_diff_area && diff_interval < best_diff_interval)) {
260      best_diff_area = diff_area;
261      best_diff_interval = diff_interval;
262      best_it = it;
263    }
264  }
265  return *best_it;
266}
267
268// Set |option| to the highest-priority value of |key| in the constraints.
269// Return false if the key is mandatory, and the value is invalid.
270bool ExtractOption(const MediaConstraintsInterface* all_constraints,
271                   const std::string& key,
272                   rtc::Optional<bool>* option) {
273  size_t mandatory = 0;
274  bool value;
275  if (FindConstraint(all_constraints, key, &value, &mandatory)) {
276    *option = rtc::Optional<bool>(value);
277    return true;
278  }
279
280  return mandatory == 0;
281}
282
283// Search |all_constraints| for known video options.  Apply all options that are
284// found with valid values, and return false if any mandatory video option was
285// found with an invalid value.
286bool ExtractVideoOptions(const MediaConstraintsInterface* all_constraints,
287                         cricket::VideoOptions* options) {
288  bool all_valid = true;
289
290  all_valid &= ExtractOption(all_constraints,
291      MediaConstraintsInterface::kNoiseReduction,
292      &(options->video_noise_reduction));
293
294  return all_valid;
295}
296
297class FrameInputWrapper : public cricket::VideoRenderer {
298 public:
299  explicit FrameInputWrapper(cricket::VideoCapturer* capturer)
300      : capturer_(capturer) {
301    ASSERT(capturer_ != NULL);
302  }
303
304  virtual ~FrameInputWrapper() {}
305
306  // VideoRenderer implementation.
307  bool RenderFrame(const cricket::VideoFrame* frame) override {
308    if (!capturer_->IsRunning()) {
309      return true;
310    }
311
312    // This signal will be made on media engine render thread. The clients
313    // of this signal should have no assumptions on what thread this signal
314    // come from.
315    capturer_->SignalVideoFrame(capturer_, frame);
316    return true;
317  }
318
319 private:
320  cricket::VideoCapturer* capturer_;
321
322  RTC_DISALLOW_COPY_AND_ASSIGN(FrameInputWrapper);
323};
324
325}  // anonymous namespace
326
327namespace webrtc {
328
329rtc::scoped_refptr<VideoSource> VideoSource::Create(
330    cricket::ChannelManager* channel_manager,
331    cricket::VideoCapturer* capturer,
332    const webrtc::MediaConstraintsInterface* constraints,
333    bool remote) {
334  ASSERT(channel_manager != NULL);
335  ASSERT(capturer != NULL);
336  rtc::scoped_refptr<VideoSource> source(new rtc::RefCountedObject<VideoSource>(
337      channel_manager, capturer, remote));
338  source->Initialize(constraints);
339  return source;
340}
341
342VideoSource::VideoSource(cricket::ChannelManager* channel_manager,
343                         cricket::VideoCapturer* capturer,
344                         bool remote)
345    : channel_manager_(channel_manager),
346      video_capturer_(capturer),
347      state_(kInitializing),
348      remote_(remote) {
349  channel_manager_->SignalVideoCaptureStateChange.connect(
350      this, &VideoSource::OnStateChange);
351}
352
353VideoSource::~VideoSource() {
354  channel_manager_->StopVideoCapture(video_capturer_.get(), format_);
355  channel_manager_->SignalVideoCaptureStateChange.disconnect(this);
356}
357
358void VideoSource::Initialize(
359    const webrtc::MediaConstraintsInterface* constraints) {
360
361  std::vector<cricket::VideoFormat> formats =
362      channel_manager_->GetSupportedFormats(video_capturer_.get());
363  if (formats.empty()) {
364    if (video_capturer_->IsScreencast()) {
365      // The screen capturer can accept any resolution and we will derive the
366      // format from the constraints if any.
367      // Note that this only affects tab capturing, not desktop capturing,
368      // since the desktop capturer does not respect the VideoFormat passed in.
369      formats.push_back(cricket::VideoFormat(kDefaultFormat));
370    } else {
371      // The VideoCapturer implementation doesn't support capability
372      // enumeration. We need to guess what the camera supports.
373      for (int i = 0; i < arraysize(kVideoFormats); ++i) {
374        formats.push_back(cricket::VideoFormat(kVideoFormats[i]));
375      }
376    }
377  }
378
379  if (constraints) {
380    MediaConstraintsInterface::Constraints mandatory_constraints =
381        constraints->GetMandatory();
382    MediaConstraintsInterface::Constraints optional_constraints;
383    optional_constraints = constraints->GetOptional();
384
385    if (video_capturer_->IsScreencast()) {
386      // Use the maxWidth and maxHeight allowed by constraints for screencast.
387      FromConstraintsForScreencast(mandatory_constraints, &(formats[0]));
388    }
389
390    formats = FilterFormats(mandatory_constraints, optional_constraints,
391                            formats);
392  }
393
394  if (formats.size() == 0) {
395    LOG(LS_WARNING) << "Failed to find a suitable video format.";
396    SetState(kEnded);
397    return;
398  }
399
400  cricket::VideoOptions options;
401  if (!ExtractVideoOptions(constraints, &options)) {
402    LOG(LS_WARNING) << "Could not satisfy mandatory options.";
403    SetState(kEnded);
404    return;
405  }
406  options_.SetAll(options);
407
408  format_ = GetBestCaptureFormat(formats);
409  // Start the camera with our best guess.
410  // TODO(perkj): Should we try again with another format it it turns out that
411  // the camera doesn't produce frames with the correct format? Or will
412  // cricket::VideCapturer be able to re-scale / crop to the requested
413  // resolution?
414  if (!channel_manager_->StartVideoCapture(video_capturer_.get(), format_)) {
415    SetState(kEnded);
416    return;
417  }
418  // Initialize hasn't succeeded until a successful state change has occurred.
419}
420
421cricket::VideoRenderer* VideoSource::FrameInput() {
422  // Defer creation of frame_input_ until it's needed, e.g. the local video
423  // sources will never need it.
424  if (!frame_input_) {
425    frame_input_.reset(new FrameInputWrapper(video_capturer_.get()));
426  }
427  return frame_input_.get();
428}
429
430void VideoSource::Stop() {
431  channel_manager_->StopVideoCapture(video_capturer_.get(), format_);
432}
433
434void VideoSource::Restart() {
435  if (!channel_manager_->StartVideoCapture(video_capturer_.get(), format_)) {
436    SetState(kEnded);
437    return;
438  }
439  for(cricket::VideoRenderer* sink : sinks_) {
440    channel_manager_->AddVideoRenderer(video_capturer_.get(), sink);
441  }
442}
443
444void VideoSource::AddSink(cricket::VideoRenderer* output) {
445  sinks_.push_back(output);
446  channel_manager_->AddVideoRenderer(video_capturer_.get(), output);
447}
448
449void VideoSource::RemoveSink(cricket::VideoRenderer* output) {
450  sinks_.remove(output);
451  channel_manager_->RemoveVideoRenderer(video_capturer_.get(), output);
452}
453
454// OnStateChange listens to the ChannelManager::SignalVideoCaptureStateChange.
455// This signal is triggered for all video capturers. Not only the one we are
456// interested in.
457void VideoSource::OnStateChange(cricket::VideoCapturer* capturer,
458                                     cricket::CaptureState capture_state) {
459  if (capturer == video_capturer_.get()) {
460    SetState(GetReadyState(capture_state));
461  }
462}
463
464void VideoSource::SetState(SourceState new_state) {
465  // TODO(hbos): Temporarily disabled VERIFY due to webrtc:4776.
466  // if (VERIFY(state_ != new_state)) {
467  if (state_ != new_state) {
468    state_ = new_state;
469    FireOnChanged();
470  }
471}
472
473}  // namespace webrtc
474