| Index: media/base/download_rate_monitor.cc
|
| diff --git a/media/base/download_rate_monitor.cc b/media/base/download_rate_monitor.cc
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| new file mode 100644
|
| index 0000000000000000000000000000000000000000..32215de615dd4a43f84a0e41a3638ed142ff741e
|
| --- /dev/null
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| +++ b/media/base/download_rate_monitor.cc
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| @@ -0,0 +1,245 @@
|
| +// Copyright (c) 2011 The Chromium Authors. All rights reserved.
|
| +// Use of this source code is governed by a BSD-style license that can be
|
| +// found in the LICENSE file.
|
| +
|
| +#include "media/base/download_rate_monitor.h"
|
| +
|
| +#include "base/bind.h"
|
| +#include "base/time.h"
|
| +
|
| +namespace media {
|
| +
|
| +// Number of samples to use to collect and average for each measurement of
|
| +// download rate.
|
| +static const size_t kNumberOfSamples = 5;
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| +
|
| +// Minimum number of seconds represented in a sample period.
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| +static const float kSamplePeriod = 1.0;
|
| +
|
| +DownloadRateMonitor::Sample::Sample() {
|
| + Reset();
|
| +}
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| +
|
| +DownloadRateMonitor::Sample::Sample(
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| + const BufferingPoint& start, const BufferingPoint& end) {
|
| + Reset();
|
| + start_ = start;
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| + set_end(end);
|
| +}
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| +
|
| +void DownloadRateMonitor::Sample::set_end(const BufferingPoint& new_end) {
|
| + DCHECK(!start_.timestamp.is_null());
|
| + DCHECK(new_end.buffered_bytes >= start_.buffered_bytes);
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| + DCHECK(new_end.timestamp >= start_.timestamp);
|
| + end_ = new_end;
|
| +}
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| +
|
| +float DownloadRateMonitor::Sample::bytes_per_second() const {
|
| + if (seconds_elapsed() > 0.0 && bytes_downloaded() >= 0)
|
| + return bytes_downloaded() / seconds_elapsed();
|
| + return -1.0;
|
| +}
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| +
|
| +float DownloadRateMonitor::Sample::seconds_elapsed() const {
|
| + if (start_.timestamp.is_null() || end_.timestamp.is_null())
|
| + return -1.0;
|
| + return (end_.timestamp - start_.timestamp).InSecondsF();
|
| +}
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| +
|
| +int64 DownloadRateMonitor::Sample::bytes_downloaded() const {
|
| + if (start_.timestamp.is_null() || end_.timestamp.is_null())
|
| + return -1.0;
|
| + return end_.buffered_bytes - start_.buffered_bytes;
|
| +}
|
| +
|
| +bool DownloadRateMonitor::Sample::is_null() const {
|
| + return start_.timestamp.is_null() && end_.timestamp.is_null();
|
| +}
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| +
|
| +void DownloadRateMonitor::Sample::Reset() {
|
| + start_ = BufferingPoint();
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| + end_ = BufferingPoint();
|
| +}
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| +
|
| +void DownloadRateMonitor::Sample::RestartAtEndBufferingPoint() {
|
| + start_ = end_;
|
| + end_ = BufferingPoint();
|
| +}
|
| +
|
| +DownloadRateMonitor::DownloadRateMonitor() {
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| + Reset();
|
| +}
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| +
|
| +void DownloadRateMonitor::Start(
|
| + const base::Closure& canplaythrough_cb, int media_bitrate) {
|
| + DCHECK(stopped_);
|
| + canplaythrough_cb_ = canplaythrough_cb;
|
| + stopped_ = false;
|
| + bitrate_ = media_bitrate;
|
| + current_sample_.Reset();
|
| + buffered_bytes_ = 0;
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| +
|
| + NotifyCanPlayThroughIfNeeded();
|
| +}
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| +
|
| +void DownloadRateMonitor::SetBufferedBytes(
|
| + int64 buffered_bytes, const base::Time& timestamp) {
|
| + if (stopped_)
|
| + return;
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| +
|
| + is_downloading_data_ = true;
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| +
|
| + // Check monotonically nondecreasing constraint.
|
| + base::Time previous_time;
|
| + if (!current_sample_.is_null())
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| + previous_time = current_sample_.end().timestamp;
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| + else if (!sample_window_.empty())
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| + previous_time = sample_window_.back().end().timestamp;
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| +
|
| + // If we go backward in time, dismiss the sample.
|
| + if (!previous_time.is_null() && timestamp < previous_time)
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| + return;
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| +
|
| + // If the buffer level has dropped, invalidate current sample.
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| + if (buffered_bytes < buffered_bytes_)
|
| + current_sample_.Reset();
|
| + buffered_bytes_ = buffered_bytes;
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| +
|
| + BufferingPoint latest_point = { buffered_bytes, timestamp };
|
| + if (current_sample_.is_null())
|
| + current_sample_ = Sample(latest_point, latest_point);
|
| + else
|
| + current_sample_.set_end(latest_point);
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| +
|
| + UpdateSampleWindow();
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| + NotifyCanPlayThroughIfNeeded();
|
| +}
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| +
|
| +void DownloadRateMonitor::SetNetworkActivity(bool is_downloading_data) {
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| + if (is_downloading_data == is_downloading_data_)
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| + return;
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| + // Invalidate the current sample if downloading is going from start to stopped
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| + // or vice versa.
|
| + current_sample_.Reset();
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| + is_downloading_data_ = is_downloading_data;
|
| +}
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| +
|
| +void DownloadRateMonitor::Stop() {
|
| + stopped_ = true;
|
| + current_sample_.Reset();
|
| + buffered_bytes_ = 0;
|
| +}
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| +
|
| +void DownloadRateMonitor::Reset() {
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| + canplaythrough_cb_.Reset();
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| + has_notified_can_play_through_ = false;
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| + current_sample_.Reset();
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| + sample_window_.clear();
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| + is_downloading_data_ = false;
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| + total_bytes_ = 0;
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| + buffered_bytes_ = 0;
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| + loaded_ = false;
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| + bitrate_ = 0;
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| + stopped_ = true;
|
| +}
|
| +
|
| +int64 DownloadRateMonitor::bytes_downloaded_in_window() const {
|
| + // There are max |kNumberOfSamples| so we might as well recompute each time.
|
| + int64 total = 0;
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| + for (size_t i = 0; i < sample_window_.size(); ++i)
|
| + total += sample_window_[i].bytes_downloaded();
|
| + return total;
|
| +}
|
| +
|
| +float DownloadRateMonitor::seconds_elapsed_in_window() const {
|
| + // There are max |kNumberOfSamples| so we might as well recompute each time.
|
| + float total = 0.0;
|
| + for (size_t i = 0; i < sample_window_.size(); ++i)
|
| + total += sample_window_[i].seconds_elapsed();
|
| + return total;
|
| +}
|
| +
|
| +void DownloadRateMonitor::UpdateSampleWindow() {
|
| + if (current_sample_.seconds_elapsed() < kSamplePeriod)
|
| + return;
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| +
|
| + // Add latest sample and remove oldest sample.
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| + sample_window_.push_back(current_sample_);
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| + if (sample_window_.size() > kNumberOfSamples)
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| + sample_window_.pop_front();
|
| +
|
| + // Prepare for next measurement.
|
| + current_sample_.RestartAtEndBufferingPoint();
|
| +}
|
| +
|
| +float DownloadRateMonitor::ApproximateDownloadByteRate() const {
|
| + // Compute and return the average download byte rate from within the sample
|
| + // window.
|
| + // NOTE: In the unlikely case where the data is arriving really bursty-ly,
|
| + // say getting a big chunk of data every 5 seconds, then with this
|
| + // implementation it will take 25 seconds until bitrate is calculated.
|
| + if (sample_window_.size() >= kNumberOfSamples &&
|
| + seconds_elapsed_in_window() > 0.0) {
|
| + return bytes_downloaded_in_window() / seconds_elapsed_in_window();
|
| + }
|
| +
|
| + // Could not determine approximate download byte rate.
|
| + return -1.0;
|
| +}
|
| +
|
| +bool DownloadRateMonitor::ShouldNotifyCanPlayThrough() {
|
| + // A stream with |total_bytes_| == 0 means the size of the stream cannot be
|
| + // determined or is undefined in the streaming case. In these scenarios,
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| + // CanPlayThrough should never fire.
|
| + if (has_notified_can_play_through_ || total_bytes_ == 0)
|
| + return false;
|
| +
|
| + // If the media is from a local file (|loaded_|) or if all bytes are
|
| + // buffered, fire CanPlayThrough.
|
| + if (loaded_ || buffered_bytes_ == total_bytes_)
|
| + return true;
|
| +
|
| + // Cannot approximate when the media can play through if bitrate is unknown.
|
| + if (bitrate_ <= 0)
|
| + return false;
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| +
|
| + float bytes_needed_per_second = bitrate_ / 8;
|
| + float download_rate = ApproximateDownloadByteRate();
|
| +
|
| + // If we are downloading at or faster than the media's bitrate, then we can
|
| + // play through to the end of the media without stopping to buffer.
|
| + if (download_rate > 0)
|
| + return download_rate >= bytes_needed_per_second;
|
| +
|
| + // If download rate is unknown, it may be because the media is being
|
| + // downloaded so fast that it cannot collect an adequate number of samples
|
| + // before the download gets deferred.
|
| + //
|
| + // To catch this case, we also look at how much data is being downloaded
|
| + // immediately after the download begins.
|
| + if (sample_window_.size() < kNumberOfSamples) {
|
| + int64 bytes_downloaded_since_start =
|
| + bytes_downloaded_in_window() + current_sample_.bytes_downloaded();
|
| + float seconds_elapsed_since_start =
|
| + seconds_elapsed_in_window() + current_sample_.seconds_elapsed();
|
| +
|
| + // If we download 4 seconds of data in less than 2 seconds of time, we're
|
| + // probably downloading at a fast enough rate that we can play through.
|
| + // This is an arbitrary metric that will likely need tweaking.
|
| + if (seconds_elapsed_since_start < 2.0 &&
|
| + bytes_downloaded_since_start > 4.0 * bytes_needed_per_second) {
|
| + return true;
|
| + }
|
| + }
|
| +
|
| + return false;
|
| +}
|
| +
|
| +void DownloadRateMonitor::NotifyCanPlayThroughIfNeeded() {
|
| + if (ShouldNotifyCanPlayThrough() && !canplaythrough_cb_.is_null()) {
|
| + canplaythrough_cb_.Run();
|
| + has_notified_can_play_through_ = true;
|
| + }
|
| +}
|
| +
|
| +} // namespace media
|
|
|