Index: webrtc/modules/rtp_rtcp/source/producer_fec_unittest.cc |
diff --git a/webrtc/modules/rtp_rtcp/source/producer_fec_unittest.cc b/webrtc/modules/rtp_rtcp/source/producer_fec_unittest.cc |
index 31304b421311587435460470888664fd99fd2902..d705bd04753d6a9585cfd6fc2d51ecdf9562213a 100644 |
--- a/webrtc/modules/rtp_rtcp/source/producer_fec_unittest.cc |
+++ b/webrtc/modules/rtp_rtcp/source/producer_fec_unittest.cc |
@@ -94,8 +94,8 @@ TEST_F(ProducerFecTest, NoEmptyFecWithSeqNumGaps) { |
size_t num_fec_packets = producer_.NumAvailableFecPackets(); |
if (num_fec_packets > 0) { |
std::vector<std::unique_ptr<RedPacket>> fec_packets = |
- producer_.GetFecPacketsAsRed(kRedPayloadType, kFecPayloadType, 100, |
- p.header_size); |
+ producer_.GetUlpfecPacketsAsRed(kRedPayloadType, kFecPayloadType, 100, |
+ p.header_size); |
EXPECT_EQ(num_fec_packets, fec_packets.size()); |
} |
} |
@@ -123,8 +123,8 @@ TEST_F(ProducerFecTest, OneFrameFec) { |
EXPECT_TRUE(producer_.FecAvailable()); |
uint16_t seq_num = packet_generator_.NextPacketSeqNum(); |
std::vector<std::unique_ptr<RedPacket>> red_packets = |
- producer_.GetFecPacketsAsRed(kRedPayloadType, kFecPayloadType, seq_num, |
- kRtpHeaderSize); |
+ producer_.GetUlpfecPacketsAsRed(kRedPayloadType, kFecPayloadType, seq_num, |
+ kRtpHeaderSize); |
EXPECT_FALSE(producer_.FecAvailable()); |
ASSERT_EQ(1u, red_packets.size()); |
VerifyHeader(seq_num, last_timestamp, kRedPayloadType, kFecPayloadType, |
@@ -158,8 +158,8 @@ TEST_F(ProducerFecTest, TwoFrameFec) { |
EXPECT_TRUE(producer_.FecAvailable()); |
uint16_t seq_num = packet_generator_.NextPacketSeqNum(); |
std::vector<std::unique_ptr<RedPacket>> red_packets = |
- producer_.GetFecPacketsAsRed(kRedPayloadType, kFecPayloadType, seq_num, |
- kRtpHeaderSize); |
+ producer_.GetUlpfecPacketsAsRed(kRedPayloadType, kFecPayloadType, seq_num, |
+ kRtpHeaderSize); |
EXPECT_FALSE(producer_.FecAvailable()); |
ASSERT_EQ(1u, red_packets.size()); |
VerifyHeader(seq_num, last_timestamp, kRedPayloadType, kFecPayloadType, |