blob: 1df33635bd959345d1bae6007aac129a04951269 [file] [log] [blame]
Philipp Schrader790cb542023-07-05 21:06:52 -07001#include "opencv2/calib3d.hpp"
2#include "opencv2/features2d.hpp"
3#include "opencv2/highgui/highgui.hpp"
4#include "opencv2/imgproc.hpp"
5
Milind Upadhyayb7e3c242022-03-12 20:05:25 -08006#include "aos/events/logging/log_reader.h"
7#include "aos/events/simulated_event_loop.h"
8#include "aos/init.h"
Milind Upadhyaye3215862022-03-24 19:59:19 -07009#include "frc971/control_loops/drivetrain/drivetrain_status_generated.h"
10#include "frc971/input/joystick_state_generated.h"
Milind Upadhyayb7e3c242022-03-12 20:05:25 -080011#include "frc971/vision/vision_generated.h"
Milind Upadhyaye3215862022-03-24 19:59:19 -070012#include "y2022/control_loops/superstructure/superstructure_status_generated.h"
Milind Upadhyayb7e3c242022-03-12 20:05:25 -080013#include "y2022/vision/blob_detector.h"
14
Austin Schuh99f7c6a2024-06-25 22:07:44 -070015ABSL_FLAG(std::string, pi, "pi3", "Node name to replay.");
16ABSL_FLAG(std::string, image_save_prefix, "/tmp/img",
17 "Prefix to use for saving images from the logfile.");
18ABSL_FLAG(bool, display, false, "If true, display the images with a timeout.");
19ABSL_FLAG(bool, detected_only, false,
20 "If true, only write images which had blobs (unfiltered) detected");
21ABSL_FLAG(bool, filtered_only, false,
22 "If true, only write images which had blobs (filtered) detected");
23ABSL_FLAG(bool, match_timestamps, false,
24 "If true, name the files based on the time since the robot was "
25 "enabled (match start). Only consider images during this time");
26ABSL_FLAG(std::string, logger_pi_log, "/tmp/logger_pi/",
27 "Path to logger pi log");
28ABSL_FLAG(std::string, roborio_log, "/tmp/roborio/", "Path to roborio log");
Milind Upadhyayb7e3c242022-03-12 20:05:25 -080029
Stephan Pleinesf63bde82024-01-13 15:59:33 -080030namespace y2022::vision {
Milind Upadhyayb7e3c242022-03-12 20:05:25 -080031namespace {
32
Milind Upadhyaye3215862022-03-24 19:59:19 -070033using aos::monotonic_clock;
34namespace superstructure = control_loops::superstructure;
35
36// Information to extract from the roborio log
37struct ReplayData {
38 monotonic_clock::time_point match_start;
39 monotonic_clock::time_point match_end;
40 std::map<monotonic_clock::time_point, bool> robot_moving;
41 std::map<monotonic_clock::time_point, superstructure::SuperstructureState>
42 superstructure_states;
43};
44
45// Extract the useful data from the roborio log to be used for naming images
46void ReplayRoborio(ReplayData *data) {
47 data->match_start = monotonic_clock::min_time;
48 data->match_end = monotonic_clock::min_time;
49
Milind Upadhyaye3215862022-03-24 19:59:19 -070050 // Open logfiles
Austin Schuh99f7c6a2024-06-25 22:07:44 -070051 aos::logger::LogReader reader(aos::logger::SortParts(
52 aos::logger::FindLogs(absl::GetFlag(FLAGS_roborio_log))));
Milind Upadhyaye3215862022-03-24 19:59:19 -070053 reader.Register();
54 const aos::Node *roborio =
55 aos::configuration::GetNode(reader.configuration(), "roborio");
56
57 std::unique_ptr<aos::EventLoop> event_loop =
58 reader.event_loop_factory()->MakeEventLoop("roborio", roborio);
59
60 auto joystick_state_fetcher =
61 event_loop->MakeFetcher<aos::JoystickState>("/roborio/aos");
62 auto drivetrain_status_fetcher =
63 event_loop->MakeFetcher<frc971::control_loops::drivetrain::Status>(
64 "/drivetrain");
65 auto superstructure_status_fetcher =
66 event_loop->MakeFetcher<superstructure::Status>("/superstructure");
67
68 // Periodically check if the robot state updated
69 event_loop->AddPhasedLoop(
70 [&](int) {
71 // Find the match start and end times
72 if (joystick_state_fetcher.Fetch()) {
73 if (data->match_start == monotonic_clock::min_time &&
74 joystick_state_fetcher->enabled()) {
75 data->match_start =
76 joystick_state_fetcher.context().monotonic_event_time;
77 } else {
78 if (data->match_end == monotonic_clock::min_time &&
79 data->match_start != monotonic_clock::min_time &&
80 !joystick_state_fetcher->autonomous() &&
81 !joystick_state_fetcher->enabled()) {
82 data->match_end =
83 joystick_state_fetcher.context().monotonic_event_time;
84 }
85 }
86 }
87
88 // Add whether the robot was moving at a non-negligible speed to
89 // the image name for debugging.
90 drivetrain_status_fetcher.Fetch();
91 if (drivetrain_status_fetcher.get()) {
92 // If the robot speed was atleast this (m/s), it is
93 // considered moving.
94 constexpr double kMinMovingRobotSpeed = 0.5;
95 data->robot_moving[drivetrain_status_fetcher.context()
96 .monotonic_event_time] =
97 (std::abs(drivetrain_status_fetcher->robot_speed()) >=
98 kMinMovingRobotSpeed);
99 }
100
101 superstructure_status_fetcher.Fetch();
102 if (superstructure_status_fetcher.get()) {
103 data->superstructure_states[superstructure_status_fetcher.context()
104 .monotonic_event_time] =
105 superstructure_status_fetcher->state();
106 }
107 },
108 std::chrono::milliseconds(50));
109 reader.event_loop_factory()->Run();
110}
111
112template <typename T>
113T ClosestElement(const std::map<monotonic_clock::time_point, T> &map,
114 monotonic_clock::time_point now) {
115 T closest;
116
117 // The closest element is either the one right above it, or the element before
118 // that one
119 auto closest_it = map.lower_bound(now);
120 // Handle the case where now is greater than all times in the map
121 if (closest_it == map.cend()) {
122 closest_it--;
123 closest = closest_it->second;
124 } else {
125 // Start off with the closest as the first after now
126 closest = closest_it->second;
127 const monotonic_clock::duration after_duration = closest_it->first - now;
128 closest_it--;
129
130 // If there is a time before, check if that's closer to now
131 if (closest_it != map.cbegin()) {
132 const monotonic_clock::duration before_duration = now - closest_it->first;
133 if (before_duration < after_duration) {
134 closest = closest_it->second;
135 }
136 }
137 }
138
139 return closest;
140}
141
142// Extract images from the pi logs
143void ReplayPi(const ReplayData &data) {
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700144 if (absl::GetFlag(FLAGS_match_timestamps)) {
Milind Upadhyaye3215862022-03-24 19:59:19 -0700145 CHECK_NE(data.match_start, monotonic_clock::min_time)
146 << "Can't use match timestamps if match never started";
147 CHECK_NE(data.match_end, monotonic_clock::min_time)
148 << "Can't use match timestamps if match never ended";
149 }
150
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800151 // Open logfiles
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700152 aos::logger::LogReader reader(aos::logger::SortParts(
153 aos::logger::FindLogs(absl::GetFlag(FLAGS_logger_pi_log))));
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800154 reader.Register();
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700155 const aos::Node *pi = aos::configuration::GetNode(reader.configuration(),
156 absl::GetFlag(FLAGS_pi));
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800157
Milind Upadhyaye3215862022-03-24 19:59:19 -0700158 std::unique_ptr<aos::EventLoop> event_loop =
159 reader.event_loop_factory()->MakeEventLoop("player", pi);
160
161 LOG(INFO) << "Match start: " << data.match_start
162 << ", match end: " << data.match_end;
163
164 size_t nonmatch_image_count = 0;
165
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800166 event_loop->MakeWatcher(
Milind Upadhyaye3215862022-03-24 19:59:19 -0700167 "/camera/decimated", [&](const frc971::vision::CameraImage &image) {
168 const auto match_start = data.match_start;
169 // Find the closest robot moving and superstructure state to now
170 const bool robot_moving =
171 ClosestElement(data.robot_moving, event_loop->monotonic_now());
172 const auto superstructure_state = ClosestElement(
173 data.superstructure_states, event_loop->monotonic_now());
174
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700175 if (absl::GetFlag(FLAGS_match_timestamps)) {
Milind Upadhyaye3215862022-03-24 19:59:19 -0700176 if (event_loop->monotonic_now() < data.match_start) {
177 // Ignore prematch images if we only care about ones during the
178 // match
179 return;
180 } else if (event_loop->monotonic_now() >= data.match_end) {
181 // We're done if the match is over and we only wanted match images
182 reader.event_loop_factory()->Exit();
183 return;
184 }
185 }
186
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800187 // Create color image:
188 cv::Mat image_color_mat(cv::Size(image.cols(), image.rows()), CV_8UC2,
189 (void *)image.data()->data());
190 cv::Mat image_mat(cv::Size(image.cols(), image.rows()), CV_8UC3);
191 cv::cvtColor(image_color_mat, image_mat, cv::COLOR_YUV2BGR_YUYV);
192
193 bool use_image = true;
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700194 if (absl::GetFlag(FLAGS_detected_only) ||
195 absl::GetFlag(FLAGS_filtered_only)) {
Milind Upadhyaya31f0272022-04-03 13:55:22 -0700196 // TODO(milind): if adding target estimation here in the future,
197 // undistortion is needed
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800198 BlobDetector::BlobResult blob_result;
199 BlobDetector::ExtractBlobs(image_mat, &blob_result);
200
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700201 use_image = ((absl::GetFlag(FLAGS_filtered_only)
202 ? blob_result.filtered_blobs.size()
203 : blob_result.unfiltered_blobs.size()) > 0);
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800204 }
Milind Upadhyaye3215862022-03-24 19:59:19 -0700205
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800206 if (use_image) {
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700207 if (!absl::GetFlag(FLAGS_image_save_prefix).empty()) {
Milind Upadhyaye3215862022-03-24 19:59:19 -0700208 std::stringstream image_name;
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700209 image_name << absl::GetFlag(FLAGS_image_save_prefix);
Milind Upadhyaye3215862022-03-24 19:59:19 -0700210
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700211 if (absl::GetFlag(FLAGS_match_timestamps)) {
Milind Upadhyaye3215862022-03-24 19:59:19 -0700212 // Add the time since match start into the image for debugging.
213 // We can match images with the game recording.
214 image_name << "match_"
215 << std::chrono::duration_cast<std::chrono::seconds>(
216 event_loop->monotonic_now() - match_start)
217 .count()
218 << 's';
219 } else {
220 image_name << nonmatch_image_count++;
221 }
222
223 // Add superstructure state to the filename
224 if (superstructure_state !=
225 superstructure::SuperstructureState::IDLE) {
226 std::string superstructure_state_name =
227 superstructure::EnumNameSuperstructureState(
228 superstructure_state);
229 std::transform(superstructure_state_name.begin(),
230 superstructure_state_name.end(),
231 superstructure_state_name.begin(),
232 [](char c) { return std::tolower(c); });
233 image_name << '_' << superstructure_state_name;
234 }
235
236 if (robot_moving) {
237 image_name << "_moving";
238 }
239
240 image_name << ".png";
241
242 cv::imwrite(image_name.str(), image_mat);
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800243 }
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700244 if (absl::GetFlag(FLAGS_display)) {
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800245 cv::imshow("Display", image_mat);
Austin Schuh99f7c6a2024-06-25 22:07:44 -0700246 cv::waitKey(absl::GetFlag(FLAGS_detected_only) ||
247 absl::GetFlag(FLAGS_filtered_only)
248 ? 10
249 : 1);
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800250 }
251 }
252 });
253
254 reader.event_loop_factory()->Run();
255}
256
Milind Upadhyaye3215862022-03-24 19:59:19 -0700257void ViewerMain() {
258 ReplayData data;
259 ReplayRoborio(&data);
260 ReplayPi(data);
261}
262
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800263} // namespace
Stephan Pleinesf63bde82024-01-13 15:59:33 -0800264} // namespace y2022::vision
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800265
266// Quick and lightweight viewer for image logs
267int main(int argc, char **argv) {
268 aos::InitGoogle(&argc, &argv);
Milind Upadhyaye3215862022-03-24 19:59:19 -0700269 y2022::vision::ViewerMain();
Milind Upadhyayb7e3c242022-03-12 20:05:25 -0800270}