Continue looking for frames after padding packets

In H264, reordered packets can cause a frame following padding to become stuck in the packet buffer.
A minimal example:
_, P, 1  - padding packet p and frame 1. Frame 1 has not been returned because of missing packet 0
0, P, 1  - when packet 0 arrives, FindFrames will stop incrementing i when it sees padding packet P, and frame 1 will never be returned

Bug: webrtc:14216
Change-Id: I78b76df9709fa8593c5025d647e2b868af3749f2
Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/266465
Reviewed-by: Philip Eliasson <philipel@webrtc.org>
Commit-Queue: Philip Eliasson <philipel@webrtc.org>
Cr-Commit-Position: refs/heads/main@{#37357}
This commit is contained in:
Jared Siskin
2022-06-22 06:35:38 -07:00
committed by WebRTC LUCI CQ
parent db30009304
commit 3f659b1b3c
3 changed files with 39 additions and 6 deletions

View File

@ -107,6 +107,10 @@ PacketBuffer::InsertResult PacketBuffer::InsertPacket(
UpdateMissingPackets(seq_num);
received_padding_.erase(
received_padding_.begin(),
received_padding_.lower_bound(seq_num - (buffer_.size() / 4)));
result.packets = FindFrames(seq_num);
return result;
}
@ -140,11 +144,11 @@ void PacketBuffer::ClearTo(uint16_t seq_num) {
first_seq_num_ = seq_num;
is_cleared_to_first_seq_num_ = true;
auto clear_to_it = missing_packets_.upper_bound(seq_num);
if (clear_to_it != missing_packets_.begin()) {
--clear_to_it;
missing_packets_.erase(missing_packets_.begin(), clear_to_it);
}
missing_packets_.erase(missing_packets_.begin(),
missing_packets_.lower_bound(seq_num));
received_padding_.erase(received_padding_.begin(),
received_padding_.lower_bound(seq_num));
}
void PacketBuffer::Clear() {
@ -154,6 +158,7 @@ void PacketBuffer::Clear() {
PacketBuffer::InsertResult PacketBuffer::InsertPadding(uint16_t seq_num) {
PacketBuffer::InsertResult result;
UpdateMissingPackets(seq_num);
received_padding_.insert(seq_num);
result.packets = FindFrames(static_cast<uint16_t>(seq_num + 1));
return result;
}
@ -171,6 +176,7 @@ void PacketBuffer::ClearInternal() {
is_cleared_to_first_seq_num_ = false;
newest_inserted_seq_num_.reset();
missing_packets_.clear();
received_padding_.clear();
}
bool PacketBuffer::ExpandBufferSize() {
@ -219,7 +225,18 @@ bool PacketBuffer::PotentialNewFrame(uint16_t seq_num) const {
std::vector<std::unique_ptr<PacketBuffer::Packet>> PacketBuffer::FindFrames(
uint16_t seq_num) {
std::vector<std::unique_ptr<PacketBuffer::Packet>> found_frames;
for (size_t i = 0; i < buffer_.size() && PotentialNewFrame(seq_num); ++i) {
auto start = seq_num;
for (size_t i = 0; i < buffer_.size(); ++i) {
if (received_padding_.find(seq_num) != received_padding_.end()) {
seq_num += 1;
continue;
}
if (!PotentialNewFrame(seq_num)) {
break;
}
size_t index = seq_num % buffer_.size();
buffer_[index]->continuous = true;
@ -359,6 +376,8 @@ std::vector<std::unique_ptr<PacketBuffer::Packet>> PacketBuffer::FindFrames(
missing_packets_.erase(missing_packets_.begin(),
missing_packets_.upper_bound(seq_num));
received_padding_.erase(received_padding_.lower_bound(start),
received_padding_.upper_bound(seq_num));
}
}
++seq_num;

View File

@ -117,6 +117,8 @@ class PacketBuffer {
absl::optional<uint16_t> newest_inserted_seq_num_;
std::set<uint16_t, DescendingSeqNumComp<uint16_t>> missing_packets_;
std::set<uint16_t, DescendingSeqNumComp<uint16_t>> received_padding_;
// Indicates if we should require SPS, PPS, and IDR for a particular
// RTP timestamp to treat the corresponding frame as a keyframe.
bool sps_pps_idr_is_h264_keyframe_;

View File

@ -719,6 +719,18 @@ TEST_P(PacketBufferH264ParameterizedTest, FindFramesOnPadding) {
EXPECT_THAT(packet_buffer_.InsertPadding(1), StartSeqNumsAre(2));
}
TEST_P(PacketBufferH264ParameterizedTest, FindFramesOnReorderedPadding) {
EXPECT_THAT(InsertH264(0, kKeyFrame, kFirst, kLast, 1001),
StartSeqNumsAre(0));
EXPECT_THAT(InsertH264(1, kDeltaFrame, kFirst, kNotLast, 1002).packets,
IsEmpty());
EXPECT_THAT(packet_buffer_.InsertPadding(3).packets, IsEmpty());
EXPECT_THAT(InsertH264(4, kDeltaFrame, kFirst, kLast, 1003).packets,
IsEmpty());
EXPECT_THAT(InsertH264(2, kDeltaFrame, kNotFirst, kLast, 1002),
StartSeqNumsAre(1, 4));
}
class PacketBufferH264XIsKeyframeTest : public PacketBufferH264Test {
protected:
const uint16_t kSeqNum = 5;