#ifndef RTC_NAL_UNIT_H
#define RTC_NAL_UNIT_H
#if RTC_ENABLE_MEDIA
#include "common.hpp"
#include <vector>
#include <cassert>
namespace rtc {
#pragma pack(push, 1)
struct RTC_CPP_EXPORT NalUnitHeader {
uint8_t _first = 0;
bool forbiddenBit() const { return _first >> 7; }
uint8_t nri() const { return _first >> 5 & 0x03; }
uint8_t idc() const { return _first & 0x60; }
uint8_t unitType() const { return _first & 0x1F; }
void setForbiddenBit(bool isSet) { _first = (_first & 0x7F) | (isSet << 7); }
void setNRI(uint8_t nri) { _first = (_first & 0x9F) | ((nri & 0x03) << 5); }
void setUnitType(uint8_t type) { _first = (_first & 0xE0) | (type & 0x1F); }
};
struct RTC_CPP_EXPORT NalUnitFragmentHeader {
uint8_t _first = 0;
bool isStart() const { return _first >> 7; }
bool reservedBit6() const { return (_first >> 5) & 0x01; }
bool isEnd() const { return (_first >> 6) & 0x01; }
uint8_t unitType() const { return _first & 0x1F; }
void setStart(bool isSet) { _first = (_first & 0x7F) | (isSet << 7); }
void setEnd(bool isSet) { _first = (_first & 0xBF) | (isSet << 6); }
void setReservedBit6(bool isSet) { _first = (_first & 0xDF) | (isSet << 5); }
void setUnitType(uint8_t type) { _first = (_first & 0xE0) | (type & 0x1F); }
};
#pragma pack(pop)
enum NalUnitStartSequenceMatch {
NUSM_noMatch,
NUSM_firstZero,
NUSM_secondZero,
NUSM_thirdZero,
NUSM_shortMatch,
NUSM_longMatch
};
static const size_t H264_NAL_HEADER_SIZE = 1;
static const size_t H265_NAL_HEADER_SIZE = 2;
struct NalUnitFragmentA;
struct RTC_CPP_EXPORT NalUnit : binary {
static std::vector<binary> GenerateFragments(const std::vector<NalUnit> &nalus,
size_t maxFragmentSize);
enum class Separator {
Length = RTC_NAL_SEPARATOR_LENGTH, LongStartSequence = RTC_NAL_SEPARATOR_LONG_START_SEQUENCE, ShortStartSequence = RTC_NAL_SEPARATOR_SHORT_START_SEQUENCE, StartSequence = RTC_NAL_SEPARATOR_START_SEQUENCE, };
static NalUnitStartSequenceMatch StartSequenceMatchSucc(NalUnitStartSequenceMatch match,
std::byte _byte, Separator separator);
enum class Type { H264, H265 };
NalUnit(const NalUnit &unit) = default;
NalUnit(size_t size, bool includingHeader = true, Type type = Type::H264)
: binary(size + (includingHeader ? 0
: (type == Type::H264 ? H264_NAL_HEADER_SIZE
: H265_NAL_HEADER_SIZE))) {}
NalUnit(binary &&data) : binary(std::move(data)) {}
NalUnit(Type type = Type::H264)
: binary(type == Type::H264 ? H264_NAL_HEADER_SIZE : H265_NAL_HEADER_SIZE) {}
template <typename Iterator> NalUnit(Iterator begin_, Iterator end_) : binary(begin_, end_) {}
bool forbiddenBit() const { return header()->forbiddenBit(); }
uint8_t nri() const { return header()->nri(); }
uint8_t unitType() const { return header()->unitType(); }
binary payload() const {
assert(size() >= 1);
return {begin() + 1, end()};
}
void setForbiddenBit(bool isSet) { header()->setForbiddenBit(isSet); }
void setNRI(uint8_t nri) { header()->setNRI(nri); }
void setUnitType(uint8_t type) { header()->setUnitType(type); }
void setPayload(binary payload) {
assert(size() >= 1);
erase(begin() + 1, end());
insert(end(), payload.begin(), payload.end());
}
std::vector<NalUnitFragmentA> generateFragments(size_t maxFragmentSize) const;
protected:
const NalUnitHeader *header() const {
assert(size() >= 1);
return reinterpret_cast<const NalUnitHeader *>(data());
}
NalUnitHeader *header() {
assert(size() >= 1);
return reinterpret_cast<NalUnitHeader *>(data());
}
};
struct RTC_CPP_EXPORT NalUnitFragmentA : NalUnit {
[[deprecated]] static std::vector<shared_ptr<NalUnitFragmentA>>
fragmentsFrom(shared_ptr<NalUnit> nalu, uint16_t maxFragmentSize);
enum class FragmentType { Start, Middle, End };
NalUnitFragmentA(FragmentType type, bool forbiddenBit, uint8_t nri, uint8_t unitType,
binary data);
uint8_t unitType() const { return fragmentHeader()->unitType(); }
binary payload() const {
assert(size() >= 2);
return {begin() + 2, end()};
}
FragmentType type() const {
if (fragmentHeader()->isStart()) {
return FragmentType::Start;
} else if (fragmentHeader()->isEnd()) {
return FragmentType::End;
} else {
return FragmentType::Middle;
}
}
void setUnitType(uint8_t type) { fragmentHeader()->setUnitType(type); }
void setPayload(binary payload) {
assert(size() >= 2);
erase(begin() + 2, end());
insert(end(), payload.begin(), payload.end());
}
void setFragmentType(FragmentType type);
protected:
const uint8_t nal_type_fu_A = 28;
NalUnitHeader *fragmentIndicator() { return reinterpret_cast<NalUnitHeader *>(data()); }
const NalUnitHeader *fragmentIndicator() const {
return reinterpret_cast<const NalUnitHeader *>(data());
}
NalUnitFragmentHeader *fragmentHeader() {
return reinterpret_cast<NalUnitFragmentHeader *>(fragmentIndicator() + 1);
}
const NalUnitFragmentHeader *fragmentHeader() const {
return reinterpret_cast<const NalUnitFragmentHeader *>(fragmentIndicator() + 1);
}
};
class [[deprecated]] RTC_CPP_EXPORT NalUnits : public std::vector<shared_ptr<NalUnit>> {
public:
static const uint16_t defaultMaximumFragmentSize =
uint16_t(RTC_DEFAULT_MTU - 12 - 8 - 40);
std::vector<shared_ptr<binary>> generateFragments(uint16_t maxFragmentSize);
};
}
#endif
#endif