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2b7d279 | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 | #include "STrack.h"
/**
* @brief Constructs an STrack object with initial bounding box and detection score.
*
* This constructor initializes a new track with a bounding box in top-left-width-height (tlwh) format and a detection confidence score.
* Initializing properties like track ID, state, and frame information. The track starts as unactivated and in the "New" state, ready for further processing.
*
* @param tlwh_ A vector of four floats representing the bounding box in [top, left, width, height] format.
* @param score The confidence score of the detection associated with this track, typically from a detector.
*/
STrack::STrack(vector<float> tlwh_, float score) {
_tlwh.resize(4);
_tlwh.assign(tlwh_.begin(), tlwh_.end());
is_activated = false;
track_id = 0;
state = TrackState::New;
tlwh.resize(4);
tlbr.resize(4);
static_tlwh();
static_tlbr();
frame_id = 0;
tracklet_len = 0;
this->score = score;
start_frame = 0;
}
STrack::~STrack() {
}
/**
* @brief Activates a track by initializing its Kalman filter and setting its vector state.
*
* This function activates a new track by assigning it a unique track ID, initializing the Kalman filter with the track's bounding box
* in center-based coordinates (xyah where x&y are center of a bbox, a=w/h) and updating its state to "Tracked".
* It is typically called when a new detection is confirmed as a track. The track's initial frame and other properties are also set.
*
* @param kalman_filter Reference to a KalmanFilter object used to initialize the track's state estimation.
* @param frame_id The ID of the current frame in the video sequence, used to set the track's starting frame.
*/
void STrack::activate(byte_kalman::KalmanFilter &kalman_filter, int frame_id) {
this->kalman_filter = kalman_filter;
this->track_id = this->next_id();
vector<float> _tlwh_tmp(4);
_tlwh_tmp[0] = this->_tlwh[0];
_tlwh_tmp[1] = this->_tlwh[1];
_tlwh_tmp[2] = this->_tlwh[2];
_tlwh_tmp[3] = this->_tlwh[3];
vector<float> xyah = tlwh_to_xyah(_tlwh_tmp);
DETECTBOX xyah_box;
xyah_box[0] = xyah[0];
xyah_box[1] = xyah[1];
xyah_box[2] = xyah[2];
xyah_box[3] = xyah[3];
auto mc = this->kalman_filter.initiate(xyah_box);
this->mean = mc.first;
this->covariance = mc.second;
static_tlwh();
static_tlbr();
this->tracklet_len = 0;
this->state = TrackState::Tracked;
if (frame_id == 1) {
this->is_activated = true;
}
//this->is_activated = true;
this->frame_id = frame_id;
this->start_frame = frame_id;
}
/**
* @brief Re-activates an existing track with updated information from a new detection.
*
* This function updates an existing track's state using a new detection's bounding box and score. It updates the Kalman filter
* with the new bounding box in center-based coordinates, resets the tracklet length, and sets the track's state to "Tracked".
* Optionally, it assigns a new track ID if requested. This is used to revive a track that was temporarily lost or unmatched.
*
* @param new_track Reference to an STrack object containing the new detection's bounding box and score.
* @param frame_id The ID of the current frame in the video sequence, used to update the track's frame information.
* @param new_id Boolean indicating whether to assign a new track ID (true) or retain the existing one (false).
*/
void STrack::re_activate(STrack &new_track, int frame_id, bool new_id) {
vector<float> xyah = tlwh_to_xyah(new_track.tlwh);
DETECTBOX xyah_box;
xyah_box[0] = xyah[0];
xyah_box[1] = xyah[1];
xyah_box[2] = xyah[2];
xyah_box[3] = xyah[3];
auto mc = this->kalman_filter.update(this->mean, this->covariance, xyah_box);
this->mean = mc.first;
this->covariance = mc.second;
static_tlwh();
static_tlbr();
this->tracklet_len = 0;
this->state = TrackState::Tracked;
this->is_activated = true;
this->frame_id = frame_id;
this->score = new_track.score;
if (new_id)
this->track_id = next_id();
}
/**
* @brief Updates an existing track with new detection information.
*
* This function updates the track's state using a new detection's bounding box and score. It increments the tracklet length,
* updates the Kalman filter with the new bounding box in center-based coordinates (xyah), and sets the track's state to "Tracked"
* and activated. This is used to refine a track's position and attributes when matched with a new detection.
*
* @param new_track Reference to an STrack object containing the new detection's bounding box and score.
* @param frame_id The ID of the current frame in the video sequence, used to update the track's frame information.
*/
void STrack::update(STrack &new_track, int frame_id) {
this->frame_id = frame_id;
this->tracklet_len++;
vector<float> xyah = tlwh_to_xyah(new_track.tlwh);
DETECTBOX xyah_box;
xyah_box[0] = xyah[0];
xyah_box[1] = xyah[1];
xyah_box[2] = xyah[2];
xyah_box[3] = xyah[3];
auto mc = this->kalman_filter.update(this->mean, this->covariance, xyah_box);
this->mean = mc.first;
this->covariance = mc.second;
static_tlwh();
static_tlbr();
this->state = TrackState::Tracked;
this->is_activated = true;
this->score = new_track.score;
}
/**
* @brief Updates the track's bounding box in top-left-width-height (tlwh) format based on its state.
*
* This function sets the track's tlwh member (top-left-width-height bounding box) based on its current state. For new tracks,
* it copies the initial _tlwh values directly. It converts the Kalman filter's mean state (assumed to be in center-based xyah format:
* center-x, center-y, aspect ratio (width / height), height) to tlwh format. This is used to maintain consistent bounding box representation.
*/
void STrack::static_tlwh() {
if (this->state == TrackState::New) {
tlwh[0] = _tlwh[0];
tlwh[1] = _tlwh[1];
tlwh[2] = _tlwh[2];
tlwh[3] = _tlwh[3];
return;
}
tlwh[0] = mean[0];
tlwh[1] = mean[1];
tlwh[2] = mean[2];
tlwh[3] = mean[3];
tlwh[2] *= tlwh[3];
tlwh[0] -= tlwh[2] / 2;
tlwh[1] -= tlwh[3] / 2;
}
/**
* This function converts the track's bounding box from top-left-width-height (tlwh) format to top-left-bottom-right (tlbr)
*/
void STrack::static_tlbr() {
tlbr.clear();
tlbr.assign(tlwh.begin(), tlwh.end());
tlbr[2] += tlbr[0];
tlbr[3] += tlbr[1];
}
/**
* @brief Converts a bounding box from top-left-width-height (tlwh) to center-x, center-y, aspect-ratio (w/h), height (xyah) format.
*
* This function transforms a bounding box from tlwh format [top, left, width, height] to xyah format [center_x, center_y, aspect_ratio, height].
*
* @param tlwh_tmp A vector of four floats representing the bounding box in [top, left, width, height] format.
* @return A vector of four floats representing the bounding box in [center_x, center_y, aspect_ratio, height] format.
*/
vector<float> STrack::tlwh_to_xyah(vector<float> tlwh_tmp) {
vector<float> tlwh_output = tlwh_tmp;
tlwh_output[0] += tlwh_output[2] / 2;
tlwh_output[1] += tlwh_output[3] / 2;
tlwh_output[2] /= tlwh_output[3];
return tlwh_output;
}
vector<float> STrack::to_xyah() {
return tlwh_to_xyah(tlwh);
}
// convert vector state format from top-left-bottom-right to top-left-width-height
vector<float> STrack::tlbr_to_tlwh(vector<float> &tlbr) {
tlbr[2] -= tlbr[0];
tlbr[3] -= tlbr[1];
return tlbr;
}
// mark a TrackState to 'Lost'
void STrack::mark_lost() {
state = TrackState::Lost;
}
// mark a TrackState to 'Removed'
void STrack::mark_removed() {
state = TrackState::Removed;
}
// generate the next unique track ID for a new track.
int STrack::next_id() {
static int _count = 0;
_count++;
return _count;
}
// returns the most recent frame ID associated with the track.
int STrack::end_frame() {
return this->frame_id;
}
/**
* @brief Performs motion prediction for multiple tracks using a Kalman filter and global motion compensation.
*
* This function updates the state (mean and covariance) of multiple tracks by applying a global motion transformation (camera motion compensation)
* and then performing a Kalman filter prediction step. It is used to predict the next position
* of tracks across frames, accounting for global motion. The bounding box representations (tlwh and tlbr) are updated accordingly.
*
* @param stracks Vector of pointers to STrack objects representing the tracks to be predicted.
* @param kalman_filter Reference to a KalmanFilter object used for state prediction.
* @param M Eigen matrix representing the global motion model, calculated in BYTETracker::update(...)
*/
void STrack::multi_predict(vector<STrack *> &stracks, byte_kalman::KalmanFilter &kalman_filter, Eigen::MatrixXf M) {
Eigen::MatrixXf m_homo = M(Eigen::all, Eigen::seq(0, 7));
Eigen::VectorXf m_trans = M.col(8);
for (int i = 0; i < stracks.size(); i++) {
if (stracks[i]->state != TrackState::Tracked) {
stracks[i]->mean[7] = 0;
}
stracks[i]->mean = stracks[i]->mean * m_homo.transpose() + m_trans.transpose();
stracks[i]->covariance = m_homo * stracks[i]->covariance * m_homo.transpose();
kalman_filter.predict(stracks[i]->mean, stracks[i]->covariance);
stracks[i]->static_tlwh();
stracks[i]->static_tlbr();
}
} |