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156 lines
5.4 KiB
156 lines
5.4 KiB
4 months ago
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/*
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* Copyright (c) 2018 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#ifndef API_UNITS_DATA_RATE_H_
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#define API_UNITS_DATA_RATE_H_
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#ifdef UNIT_TEST
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#include <ostream> // no-presubmit-check TODO(webrtc:8982)
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#endif // UNIT_TEST
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#include <limits>
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#include <string>
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#include <type_traits>
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#include "api/units/data_size.h"
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#include "api/units/frequency.h"
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#include "api/units/time_delta.h"
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#include "rtc_base/checks.h"
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#include "rtc_base/units/unit_base.h"
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namespace webrtc {
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// DataRate is a class that represents a given data rate. This can be used to
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// represent bandwidth, encoding bitrate, etc. The internal storage is bits per
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// second (bps).
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class DataRate final : public rtc_units_impl::RelativeUnit<DataRate> {
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public:
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template <typename T>
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static constexpr DataRate BitsPerSec(T value) {
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static_assert(std::is_arithmetic<T>::value, "");
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return FromValue(value);
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}
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template <typename T>
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static constexpr DataRate BytesPerSec(T value) {
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static_assert(std::is_arithmetic<T>::value, "");
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return FromFraction(8, value);
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}
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template <typename T>
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static constexpr DataRate KilobitsPerSec(T value) {
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static_assert(std::is_arithmetic<T>::value, "");
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return FromFraction(1000, value);
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}
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static constexpr DataRate Infinity() { return PlusInfinity(); }
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DataRate() = delete;
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template <typename T = int64_t>
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constexpr T bps() const {
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return ToValue<T>();
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}
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template <typename T = int64_t>
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constexpr T bytes_per_sec() const {
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return ToFraction<8, T>();
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}
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template <typename T = int64_t>
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constexpr T kbps() const {
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return ToFraction<1000, T>();
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}
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constexpr int64_t bps_or(int64_t fallback_value) const {
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return ToValueOr(fallback_value);
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}
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constexpr int64_t kbps_or(int64_t fallback_value) const {
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return ToFractionOr<1000>(fallback_value);
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}
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private:
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// Bits per second used internally to simplify debugging by making the value
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// more recognizable.
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friend class rtc_units_impl::UnitBase<DataRate>;
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using RelativeUnit::RelativeUnit;
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static constexpr bool one_sided = true;
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};
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namespace data_rate_impl {
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inline constexpr int64_t Microbits(const DataSize& size) {
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constexpr int64_t kMaxBeforeConversion =
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std::numeric_limits<int64_t>::max() / 8000000;
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RTC_DCHECK_LE(size.bytes(), kMaxBeforeConversion)
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<< "size is too large to be expressed in microbits";
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return size.bytes() * 8000000;
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}
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inline constexpr int64_t MillibytePerSec(const DataRate& size) {
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constexpr int64_t kMaxBeforeConversion =
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std::numeric_limits<int64_t>::max() / (1000 / 8);
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RTC_DCHECK_LE(size.bps(), kMaxBeforeConversion)
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<< "rate is too large to be expressed in microbytes per second";
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return size.bps() * (1000 / 8);
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}
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} // namespace data_rate_impl
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inline constexpr DataRate operator/(const DataSize size,
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const TimeDelta duration) {
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return DataRate::BitsPerSec(data_rate_impl::Microbits(size) / duration.us());
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}
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inline constexpr TimeDelta operator/(const DataSize size, const DataRate rate) {
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return TimeDelta::Micros(data_rate_impl::Microbits(size) / rate.bps());
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}
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inline constexpr DataSize operator*(const DataRate rate,
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const TimeDelta duration) {
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int64_t microbits = rate.bps() * duration.us();
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return DataSize::Bytes((microbits + 4000000) / 8000000);
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}
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inline constexpr DataSize operator*(const TimeDelta duration,
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const DataRate rate) {
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return rate * duration;
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}
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inline constexpr DataSize operator/(const DataRate rate,
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const Frequency frequency) {
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int64_t millihertz = frequency.millihertz<int64_t>();
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// Note that the value is truncated here reather than rounded, potentially
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// introducing an error of .5 bytes if rounding were expected.
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return DataSize::Bytes(data_rate_impl::MillibytePerSec(rate) / millihertz);
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}
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inline constexpr Frequency operator/(const DataRate rate, const DataSize size) {
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return Frequency::MilliHertz(data_rate_impl::MillibytePerSec(rate) /
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size.bytes());
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}
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inline constexpr DataRate operator*(const DataSize size,
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const Frequency frequency) {
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RTC_DCHECK(frequency.IsZero() ||
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size.bytes() <= std::numeric_limits<int64_t>::max() / 8 /
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frequency.millihertz<int64_t>());
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int64_t millibits_per_second =
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size.bytes() * 8 * frequency.millihertz<int64_t>();
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return DataRate::BitsPerSec((millibits_per_second + 500) / 1000);
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}
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inline constexpr DataRate operator*(const Frequency frequency,
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const DataSize size) {
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return size * frequency;
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}
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std::string ToString(DataRate value);
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inline std::string ToLogString(DataRate value) {
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return ToString(value);
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}
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#ifdef UNIT_TEST
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inline std::ostream& operator<<( // no-presubmit-check TODO(webrtc:8982)
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std::ostream& stream, // no-presubmit-check TODO(webrtc:8982)
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DataRate value) {
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return stream << ToString(value);
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}
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#endif // UNIT_TEST
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} // namespace webrtc
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#endif // API_UNITS_DATA_RATE_H_
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