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1 /*
2  *  Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
3  *
4  *  Use of this source code is governed by a BSD-style license
5  *  that can be found in the LICENSE file in the root of the source
6  *  tree. An additional intellectual property rights grant can be found
7  *  in the file PATENTS.  All contributing project authors may
8  *  be found in the AUTHORS file in the root of the source tree.
9  */
10 
11 #include "modules/audio_processing/test/conversational_speech/multiend_call.h"
12 
13 #include <algorithm>
14 #include <iterator>
15 
16 #include "rtc_base/logging.h"
17 #include "test/testsupport/file_utils.h"
18 
19 namespace webrtc {
20 namespace test {
21 namespace conversational_speech {
22 
MultiEndCall(rtc::ArrayView<const Turn> timing,const std::string & audiotracks_path,std::unique_ptr<WavReaderAbstractFactory> wavreader_abstract_factory)23 MultiEndCall::MultiEndCall(
24     rtc::ArrayView<const Turn> timing,
25     const std::string& audiotracks_path,
26     std::unique_ptr<WavReaderAbstractFactory> wavreader_abstract_factory)
27     : timing_(timing),
28       audiotracks_path_(audiotracks_path),
29       wavreader_abstract_factory_(std::move(wavreader_abstract_factory)),
30       valid_(false) {
31   FindSpeakerNames();
32   if (CreateAudioTrackReaders())
33     valid_ = CheckTiming();
34 }
35 
36 MultiEndCall::~MultiEndCall() = default;
37 
FindSpeakerNames()38 void MultiEndCall::FindSpeakerNames() {
39   RTC_DCHECK(speaker_names_.empty());
40   for (const Turn& turn : timing_) {
41     speaker_names_.emplace(turn.speaker_name);
42   }
43 }
44 
CreateAudioTrackReaders()45 bool MultiEndCall::CreateAudioTrackReaders() {
46   RTC_DCHECK(audiotrack_readers_.empty());
47   sample_rate_hz_ = 0;  // Sample rate will be set when reading the first track.
48   for (const Turn& turn : timing_) {
49     auto it = audiotrack_readers_.find(turn.audiotrack_file_name);
50     if (it != audiotrack_readers_.end())
51       continue;
52 
53     const std::string audiotrack_file_path =
54         test::JoinFilename(audiotracks_path_, turn.audiotrack_file_name);
55 
56     // Map the audiotrack file name to a new instance of WavReaderInterface.
57     std::unique_ptr<WavReaderInterface> wavreader =
58         wavreader_abstract_factory_->Create(
59             test::JoinFilename(audiotracks_path_, turn.audiotrack_file_name));
60 
61     if (sample_rate_hz_ == 0) {
62       sample_rate_hz_ = wavreader->SampleRate();
63     } else if (sample_rate_hz_ != wavreader->SampleRate()) {
64       RTC_LOG(LS_ERROR)
65           << "All the audio tracks should have the same sample rate.";
66       return false;
67     }
68 
69     if (wavreader->NumChannels() != 1) {
70       RTC_LOG(LS_ERROR) << "Only mono audio tracks supported.";
71       return false;
72     }
73 
74     audiotrack_readers_.emplace(turn.audiotrack_file_name,
75                                 std::move(wavreader));
76   }
77 
78   return true;
79 }
80 
CheckTiming()81 bool MultiEndCall::CheckTiming() {
82   struct Interval {
83     size_t begin;
84     size_t end;
85   };
86   size_t number_of_turns = timing_.size();
87   auto millisecond_to_samples = [](int ms, int sr) -> int {
88     // Truncation may happen if the sampling rate is not an integer multiple
89     // of 1000 (e.g., 44100).
90     return ms * sr / 1000;
91   };
92   auto in_interval = [](size_t value, const Interval& interval) {
93     return interval.begin <= value && value < interval.end;
94   };
95   total_duration_samples_ = 0;
96   speaking_turns_.clear();
97 
98   // Begin and end timestamps for the last two turns (unit: number of samples).
99   Interval second_last_turn = {0, 0};
100   Interval last_turn = {0, 0};
101 
102   // Initialize map to store speaking turn indices of each speaker (used to
103   // detect self cross-talk).
104   std::map<std::string, std::vector<size_t>> speaking_turn_indices;
105   for (const std::string& speaker_name : speaker_names_) {
106     speaking_turn_indices.emplace(std::piecewise_construct,
107                                   std::forward_as_tuple(speaker_name),
108                                   std::forward_as_tuple());
109   }
110 
111   // Parse turns.
112   for (size_t turn_index = 0; turn_index < number_of_turns; ++turn_index) {
113     const Turn& turn = timing_[turn_index];
114     auto it = audiotrack_readers_.find(turn.audiotrack_file_name);
115     RTC_CHECK(it != audiotrack_readers_.end())
116         << "Audio track reader not created";
117 
118     // Begin and end timestamps for the current turn.
119     int offset_samples =
120         millisecond_to_samples(turn.offset, it->second->SampleRate());
121     std::size_t begin_timestamp = last_turn.end + offset_samples;
122     std::size_t end_timestamp = begin_timestamp + it->second->NumSamples();
123     RTC_LOG(LS_INFO) << "turn #" << turn_index << " " << begin_timestamp << "-"
124                      << end_timestamp << " ms";
125 
126     // The order is invalid if the offset is negative and its absolute value is
127     // larger then the duration of the previous turn.
128     if (offset_samples < 0 &&
129         -offset_samples > static_cast<int>(last_turn.end - last_turn.begin)) {
130       RTC_LOG(LS_ERROR) << "invalid order";
131       return false;
132     }
133 
134     // Cross-talk with 3 or more speakers occurs when the beginning of the
135     // current interval falls in the last two turns.
136     if (turn_index > 1 && in_interval(begin_timestamp, last_turn) &&
137         in_interval(begin_timestamp, second_last_turn)) {
138       RTC_LOG(LS_ERROR) << "cross-talk with 3+ speakers";
139       return false;
140     }
141 
142     // Append turn.
143     speaking_turns_.emplace_back(turn.speaker_name, turn.audiotrack_file_name,
144                                  begin_timestamp, end_timestamp, turn.gain);
145 
146     // Save speaking turn index for self cross-talk detection.
147     RTC_DCHECK_EQ(speaking_turns_.size(), turn_index + 1);
148     speaking_turn_indices[turn.speaker_name].push_back(turn_index);
149 
150     // Update total duration of the consversational speech.
151     if (total_duration_samples_ < end_timestamp)
152       total_duration_samples_ = end_timestamp;
153 
154     // Update and continue with next turn.
155     second_last_turn = last_turn;
156     last_turn.begin = begin_timestamp;
157     last_turn.end = end_timestamp;
158   }
159 
160   // Detect self cross-talk.
161   for (const std::string& speaker_name : speaker_names_) {
162     RTC_LOG(LS_INFO) << "checking self cross-talk for <" << speaker_name << ">";
163 
164     // Copy all turns for this speaker to new vector.
165     std::vector<SpeakingTurn> speaking_turns_for_name;
166     std::copy_if(speaking_turns_.begin(), speaking_turns_.end(),
167                  std::back_inserter(speaking_turns_for_name),
168                  [&speaker_name](const SpeakingTurn& st) {
169                    return st.speaker_name == speaker_name;
170                  });
171 
172     // Check for overlap between adjacent elements.
173     // This is a sufficient condition for self cross-talk since the intervals
174     // are sorted by begin timestamp.
175     auto overlap = std::adjacent_find(
176         speaking_turns_for_name.begin(), speaking_turns_for_name.end(),
177         [](const SpeakingTurn& a, const SpeakingTurn& b) {
178           return a.end > b.begin;
179         });
180 
181     if (overlap != speaking_turns_for_name.end()) {
182       RTC_LOG(LS_ERROR) << "Self cross-talk detected";
183       return false;
184     }
185   }
186 
187   return true;
188 }
189 
190 }  // namespace conversational_speech
191 }  // namespace test
192 }  // namespace webrtc
193