
The C++ headers define the C functions within the std:: namespace, but we mainly don't use the std:: namespace for C functions. Therefore we should include the C headers. BUG=1833 R=tommi@webrtc.org Review URL: https://webrtc-codereview.appspot.com/1917004 git-svn-id: http://webrtc.googlecode.com/svn/trunk@4486 4adac7df-926f-26a2-2b94-8c16560cd09d
188 lines
6.2 KiB
C++
188 lines
6.2 KiB
C++
/*
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* Copyright (c) 2012 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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#include "webrtc/modules/video_coding/codecs/test/stats.h"
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#include <assert.h>
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#include <stdio.h>
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#include <algorithm> // min_element, max_element
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namespace webrtc {
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namespace test {
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FrameStatistic::FrameStatistic()
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: encoding_successful(false),
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decoding_successful(false),
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encode_return_code(0),
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decode_return_code(0),
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encode_time_in_us(0),
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decode_time_in_us(0),
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frame_number(0),
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packets_dropped(0),
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total_packets(0),
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bit_rate_in_kbps(0),
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encoded_frame_length_in_bytes(0),
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frame_type(kDeltaFrame) {}
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Stats::Stats() {}
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Stats::~Stats() {}
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bool LessForEncodeTime(const FrameStatistic& s1, const FrameStatistic& s2) {
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return s1.encode_time_in_us < s2.encode_time_in_us;
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}
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bool LessForDecodeTime(const FrameStatistic& s1, const FrameStatistic& s2) {
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return s1.decode_time_in_us < s2.decode_time_in_us;
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}
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bool LessForEncodedSize(const FrameStatistic& s1, const FrameStatistic& s2) {
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return s1.encoded_frame_length_in_bytes < s2.encoded_frame_length_in_bytes;
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}
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bool LessForBitRate(const FrameStatistic& s1, const FrameStatistic& s2) {
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return s1.bit_rate_in_kbps < s2.bit_rate_in_kbps;
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}
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FrameStatistic& Stats::NewFrame(int frame_number) {
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assert(frame_number >= 0);
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FrameStatistic stat;
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stat.frame_number = frame_number;
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stats_.push_back(stat);
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return stats_[frame_number];
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}
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void Stats::PrintSummary() {
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printf("Processing summary:\n");
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if (stats_.size() == 0) {
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printf("No frame statistics have been logged yet.\n");
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return;
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}
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// Calculate min, max, average and total encoding time
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int total_encoding_time_in_us = 0;
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int total_decoding_time_in_us = 0;
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int total_encoded_frames_lengths = 0;
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int total_encoded_key_frames_lengths = 0;
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int total_encoded_nonkey_frames_lengths = 0;
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int nbr_keyframes = 0;
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int nbr_nonkeyframes = 0;
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for (FrameStatisticsIterator it = stats_.begin();
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it != stats_.end(); ++it) {
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total_encoding_time_in_us += it->encode_time_in_us;
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total_decoding_time_in_us += it->decode_time_in_us;
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total_encoded_frames_lengths += it->encoded_frame_length_in_bytes;
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if (it->frame_type == webrtc::kKeyFrame) {
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total_encoded_key_frames_lengths += it->encoded_frame_length_in_bytes;
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nbr_keyframes++;
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} else {
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total_encoded_nonkey_frames_lengths += it->encoded_frame_length_in_bytes;
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nbr_nonkeyframes++;
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}
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}
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FrameStatisticsIterator frame;
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// ENCODING
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printf("Encoding time:\n");
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frame = std::min_element(stats_.begin(),
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stats_.end(), LessForEncodeTime);
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printf(" Min : %7d us (frame %d)\n",
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frame->encode_time_in_us, frame->frame_number);
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frame = std::max_element(stats_.begin(),
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stats_.end(), LessForEncodeTime);
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printf(" Max : %7d us (frame %d)\n",
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frame->encode_time_in_us, frame->frame_number);
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printf(" Average : %7d us\n",
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static_cast<int>(total_encoding_time_in_us / stats_.size()));
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// DECODING
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printf("Decoding time:\n");
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// only consider frames that were successfully decoded (packet loss may cause
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// failures)
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std::vector<FrameStatistic> decoded_frames;
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for (std::vector<FrameStatistic>::iterator it = stats_.begin();
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it != stats_.end(); ++it) {
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if (it->decoding_successful) {
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decoded_frames.push_back(*it);
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}
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}
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if (decoded_frames.size() == 0) {
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printf("No successfully decoded frames exist in this statistics.\n");
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} else {
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frame = std::min_element(decoded_frames.begin(),
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decoded_frames.end(), LessForDecodeTime);
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printf(" Min : %7d us (frame %d)\n",
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frame->decode_time_in_us, frame->frame_number);
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frame = std::max_element(decoded_frames.begin(),
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decoded_frames.end(), LessForDecodeTime);
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printf(" Max : %7d us (frame %d)\n",
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frame->decode_time_in_us, frame->frame_number);
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printf(" Average : %7d us\n",
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static_cast<int>(total_decoding_time_in_us / decoded_frames.size()));
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printf(" Failures: %d frames failed to decode.\n",
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static_cast<int>(stats_.size() - decoded_frames.size()));
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}
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// SIZE
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printf("Frame sizes:\n");
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frame = std::min_element(stats_.begin(),
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stats_.end(), LessForEncodedSize);
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printf(" Min : %7d bytes (frame %d)\n",
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frame->encoded_frame_length_in_bytes, frame->frame_number);
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frame = std::max_element(stats_.begin(),
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stats_.end(), LessForEncodedSize);
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printf(" Max : %7d bytes (frame %d)\n",
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frame->encoded_frame_length_in_bytes, frame->frame_number);
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printf(" Average : %7d bytes\n",
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static_cast<int>(total_encoded_frames_lengths / stats_.size()));
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if (nbr_keyframes > 0) {
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printf(" Average key frame size : %7d bytes (%d keyframes)\n",
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total_encoded_key_frames_lengths / nbr_keyframes,
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nbr_keyframes);
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}
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if (nbr_nonkeyframes > 0) {
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printf(" Average non-key frame size: %7d bytes (%d frames)\n",
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total_encoded_nonkey_frames_lengths / nbr_nonkeyframes,
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nbr_nonkeyframes);
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}
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// BIT RATE
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printf("Bit rates:\n");
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frame = std::min_element(stats_.begin(),
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stats_.end(), LessForBitRate);
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printf(" Min bit rate: %7d kbps (frame %d)\n",
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frame->bit_rate_in_kbps, frame->frame_number);
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frame = std::max_element(stats_.begin(),
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stats_.end(), LessForBitRate);
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printf(" Max bit rate: %7d kbps (frame %d)\n",
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frame->bit_rate_in_kbps, frame->frame_number);
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printf("\n");
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printf("Total encoding time : %7d ms.\n",
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total_encoding_time_in_us / 1000);
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printf("Total decoding time : %7d ms.\n",
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total_decoding_time_in_us / 1000);
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printf("Total processing time: %7d ms.\n",
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(total_encoding_time_in_us + total_decoding_time_in_us) / 1000);
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}
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} // namespace test
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} // namespace webrtc
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