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451 lines
18 KiB
451 lines
18 KiB
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#include "selfdrive/ui/qt/onroad/annotated_camera.h"
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#include <QPainter>
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#include <algorithm>
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#include <cmath>
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#include "common/swaglog.h"
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#include "selfdrive/ui/qt/onroad/buttons.h"
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#include "selfdrive/ui/qt/util.h"
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// Window that shows camera view and variety of info drawn on top
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AnnotatedCameraWidget::AnnotatedCameraWidget(VisionStreamType type, QWidget* parent) : fps_filter(UI_FREQ, 3, 1. / UI_FREQ), CameraWidget("camerad", type, true, parent) {
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pm = std::make_unique<PubMaster, const std::initializer_list<const char *>>({"uiDebug"});
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main_layout = new QVBoxLayout(this);
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main_layout->setMargin(UI_BORDER_SIZE);
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main_layout->setSpacing(0);
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experimental_btn = new ExperimentalButton(this);
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main_layout->addWidget(experimental_btn, 0, Qt::AlignTop | Qt::AlignRight);
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map_settings_btn = new MapSettingsButton(this);
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main_layout->addWidget(map_settings_btn, 0, Qt::AlignBottom | Qt::AlignRight);
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dm_img = loadPixmap("../assets/img_driver_face.png", {img_size + 5, img_size + 5});
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}
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void AnnotatedCameraWidget::updateState(const UIState &s) {
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const int SET_SPEED_NA = 255;
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const SubMaster &sm = *(s.sm);
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const bool cs_alive = sm.alive("controlsState");
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const bool nav_alive = sm.alive("navInstruction") && sm["navInstruction"].getValid();
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const auto cs = sm["controlsState"].getControlsState();
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const auto car_state = sm["carState"].getCarState();
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const auto nav_instruction = sm["navInstruction"].getNavInstruction();
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// Handle older routes where vCruiseCluster is not set
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float v_cruise = cs.getVCruiseCluster() == 0.0 ? cs.getVCruise() : cs.getVCruiseCluster();
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setSpeed = cs_alive ? v_cruise : SET_SPEED_NA;
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is_cruise_set = setSpeed > 0 && (int)setSpeed != SET_SPEED_NA;
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if (is_cruise_set && !s.scene.is_metric) {
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setSpeed *= KM_TO_MILE;
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}
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// Handle older routes where vEgoCluster is not set
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v_ego_cluster_seen = v_ego_cluster_seen || car_state.getVEgoCluster() != 0.0;
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float v_ego = v_ego_cluster_seen ? car_state.getVEgoCluster() : car_state.getVEgo();
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speed = cs_alive ? std::max<float>(0.0, v_ego) : 0.0;
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speed *= s.scene.is_metric ? MS_TO_KPH : MS_TO_MPH;
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auto speed_limit_sign = nav_instruction.getSpeedLimitSign();
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speedLimit = nav_alive ? nav_instruction.getSpeedLimit() : 0.0;
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speedLimit *= (s.scene.is_metric ? MS_TO_KPH : MS_TO_MPH);
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has_us_speed_limit = (nav_alive && speed_limit_sign == cereal::NavInstruction::SpeedLimitSign::MUTCD);
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has_eu_speed_limit = (nav_alive && speed_limit_sign == cereal::NavInstruction::SpeedLimitSign::VIENNA);
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is_metric = s.scene.is_metric;
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speedUnit = s.scene.is_metric ? tr("km/h") : tr("mph");
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hideBottomIcons = (cs.getAlertSize() != cereal::ControlsState::AlertSize::NONE);
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status = s.status;
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// update engageability/experimental mode button
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experimental_btn->updateState(s);
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// update DM icon
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auto dm_state = sm["driverMonitoringState"].getDriverMonitoringState();
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dmActive = dm_state.getIsActiveMode();
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rightHandDM = dm_state.getIsRHD();
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// DM icon transition
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dm_fade_state = std::clamp(dm_fade_state+0.2*(0.5-dmActive), 0.0, 1.0);
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// hide map settings button for alerts and flip for right hand DM
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if (map_settings_btn->isEnabled()) {
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map_settings_btn->setVisible(!hideBottomIcons);
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main_layout->setAlignment(map_settings_btn, (rightHandDM ? Qt::AlignLeft : Qt::AlignRight) | Qt::AlignBottom);
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}
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}
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void AnnotatedCameraWidget::drawHud(QPainter &p) {
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p.save();
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// Header gradient
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QLinearGradient bg(0, UI_HEADER_HEIGHT - (UI_HEADER_HEIGHT / 2.5), 0, UI_HEADER_HEIGHT);
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bg.setColorAt(0, QColor::fromRgbF(0, 0, 0, 0.45));
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bg.setColorAt(1, QColor::fromRgbF(0, 0, 0, 0));
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p.fillRect(0, 0, width(), UI_HEADER_HEIGHT, bg);
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QString speedLimitStr = (speedLimit > 1) ? QString::number(std::nearbyint(speedLimit)) : "–";
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QString speedStr = QString::number(std::nearbyint(speed));
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QString setSpeedStr = is_cruise_set ? QString::number(std::nearbyint(setSpeed)) : "–";
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// Draw outer box + border to contain set speed and speed limit
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const int sign_margin = 12;
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const int us_sign_height = 186;
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const int eu_sign_size = 176;
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const QSize default_size = {172, 204};
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QSize set_speed_size = default_size;
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if (is_metric || has_eu_speed_limit) set_speed_size.rwidth() = 200;
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if (has_us_speed_limit && speedLimitStr.size() >= 3) set_speed_size.rwidth() = 223;
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if (has_us_speed_limit) set_speed_size.rheight() += us_sign_height + sign_margin;
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else if (has_eu_speed_limit) set_speed_size.rheight() += eu_sign_size + sign_margin;
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int top_radius = 32;
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int bottom_radius = has_eu_speed_limit ? 100 : 32;
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QRect set_speed_rect(QPoint(60 + (default_size.width() - set_speed_size.width()) / 2, 45), set_speed_size);
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p.setPen(QPen(whiteColor(75), 6));
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p.setBrush(blackColor(166));
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drawRoundedRect(p, set_speed_rect, top_radius, top_radius, bottom_radius, bottom_radius);
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// Draw MAX
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QColor max_color = QColor(0x80, 0xd8, 0xa6, 0xff);
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QColor set_speed_color = whiteColor();
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if (is_cruise_set) {
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if (status == STATUS_DISENGAGED) {
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max_color = whiteColor();
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} else if (status == STATUS_OVERRIDE) {
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max_color = QColor(0x91, 0x9b, 0x95, 0xff);
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} else if (speedLimit > 0) {
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auto interp_color = [=](QColor c1, QColor c2, QColor c3) {
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return speedLimit > 0 ? interpColor(setSpeed, {speedLimit + 5, speedLimit + 15, speedLimit + 25}, {c1, c2, c3}) : c1;
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};
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max_color = interp_color(max_color, QColor(0xff, 0xe4, 0xbf), QColor(0xff, 0xbf, 0xbf));
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set_speed_color = interp_color(set_speed_color, QColor(0xff, 0x95, 0x00), QColor(0xff, 0x00, 0x00));
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}
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} else {
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max_color = QColor(0xa6, 0xa6, 0xa6, 0xff);
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set_speed_color = QColor(0x72, 0x72, 0x72, 0xff);
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}
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p.setFont(InterFont(40, QFont::DemiBold));
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p.setPen(max_color);
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p.drawText(set_speed_rect.adjusted(0, 27, 0, 0), Qt::AlignTop | Qt::AlignHCenter, tr("MAX"));
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p.setFont(InterFont(90, QFont::Bold));
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p.setPen(set_speed_color);
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p.drawText(set_speed_rect.adjusted(0, 77, 0, 0), Qt::AlignTop | Qt::AlignHCenter, setSpeedStr);
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const QRect sign_rect = set_speed_rect.adjusted(sign_margin, default_size.height(), -sign_margin, -sign_margin);
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// US/Canada (MUTCD style) sign
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if (has_us_speed_limit) {
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p.setPen(Qt::NoPen);
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p.setBrush(whiteColor());
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p.drawRoundedRect(sign_rect, 24, 24);
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p.setPen(QPen(blackColor(), 6));
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p.drawRoundedRect(sign_rect.adjusted(9, 9, -9, -9), 16, 16);
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p.setFont(InterFont(28, QFont::DemiBold));
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p.drawText(sign_rect.adjusted(0, 22, 0, 0), Qt::AlignTop | Qt::AlignHCenter, tr("SPEED"));
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p.drawText(sign_rect.adjusted(0, 51, 0, 0), Qt::AlignTop | Qt::AlignHCenter, tr("LIMIT"));
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p.setFont(InterFont(70, QFont::Bold));
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p.drawText(sign_rect.adjusted(0, 85, 0, 0), Qt::AlignTop | Qt::AlignHCenter, speedLimitStr);
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}
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// EU (Vienna style) sign
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if (has_eu_speed_limit) {
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p.setPen(Qt::NoPen);
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p.setBrush(whiteColor());
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p.drawEllipse(sign_rect);
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p.setPen(QPen(Qt::red, 20));
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p.drawEllipse(sign_rect.adjusted(16, 16, -16, -16));
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p.setFont(InterFont((speedLimitStr.size() >= 3) ? 60 : 70, QFont::Bold));
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p.setPen(blackColor());
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p.drawText(sign_rect, Qt::AlignCenter, speedLimitStr);
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}
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// current speed
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p.setFont(InterFont(176, QFont::Bold));
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drawText(p, rect().center().x(), 210, speedStr);
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p.setFont(InterFont(66));
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drawText(p, rect().center().x(), 290, speedUnit, 200);
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p.restore();
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}
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void AnnotatedCameraWidget::drawText(QPainter &p, int x, int y, const QString &text, int alpha) {
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QRect real_rect = p.fontMetrics().boundingRect(text);
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real_rect.moveCenter({x, y - real_rect.height() / 2});
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p.setPen(QColor(0xff, 0xff, 0xff, alpha));
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p.drawText(real_rect.x(), real_rect.bottom(), text);
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}
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void AnnotatedCameraWidget::initializeGL() {
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CameraWidget::initializeGL();
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qInfo() << "OpenGL version:" << QString((const char*)glGetString(GL_VERSION));
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qInfo() << "OpenGL vendor:" << QString((const char*)glGetString(GL_VENDOR));
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qInfo() << "OpenGL renderer:" << QString((const char*)glGetString(GL_RENDERER));
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qInfo() << "OpenGL language version:" << QString((const char*)glGetString(GL_SHADING_LANGUAGE_VERSION));
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prev_draw_t = millis_since_boot();
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setBackgroundColor(bg_colors[STATUS_DISENGAGED]);
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}
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void AnnotatedCameraWidget::updateFrameMat() {
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CameraWidget::updateFrameMat();
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UIState *s = uiState();
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int w = width(), h = height();
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s->fb_w = w;
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s->fb_h = h;
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// Apply transformation such that video pixel coordinates match video
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// 1) Put (0, 0) in the middle of the video
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// 2) Apply same scaling as video
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// 3) Put (0, 0) in top left corner of video
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s->car_space_transform.reset();
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s->car_space_transform.translate(w / 2 - x_offset, h / 2 - y_offset)
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.scale(zoom, zoom)
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.translate(-intrinsic_matrix.v[2], -intrinsic_matrix.v[5]);
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}
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void AnnotatedCameraWidget::drawLaneLines(QPainter &painter, const UIState *s) {
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painter.save();
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const UIScene &scene = s->scene;
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SubMaster &sm = *(s->sm);
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// lanelines
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for (int i = 0; i < std::size(scene.lane_line_vertices); ++i) {
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painter.setBrush(QColor::fromRgbF(1.0, 1.0, 1.0, std::clamp<float>(scene.lane_line_probs[i], 0.0, 0.7)));
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painter.drawPolygon(scene.lane_line_vertices[i]);
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}
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// road edges
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for (int i = 0; i < std::size(scene.road_edge_vertices); ++i) {
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painter.setBrush(QColor::fromRgbF(1.0, 0, 0, std::clamp<float>(1.0 - scene.road_edge_stds[i], 0.0, 1.0)));
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painter.drawPolygon(scene.road_edge_vertices[i]);
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}
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// paint path
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QLinearGradient bg(0, height(), 0, 0);
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if (sm["controlsState"].getControlsState().getExperimentalMode()) {
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// The first half of track_vertices are the points for the right side of the path
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// and the indices match the positions of accel from uiPlan
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const auto &acceleration = sm["uiPlan"].getUiPlan().getAccel();
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const int max_len = std::min<int>(scene.track_vertices.length() / 2, acceleration.size());
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for (int i = 0; i < max_len; ++i) {
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// Some points are out of frame
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if (scene.track_vertices[i].y() < 0 || scene.track_vertices[i].y() > height()) continue;
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// Flip so 0 is bottom of frame
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float lin_grad_point = (height() - scene.track_vertices[i].y()) / height();
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// speed up: 120, slow down: 0
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float path_hue = fmax(fmin(60 + acceleration[i] * 35, 120), 0);
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// FIXME: painter.drawPolygon can be slow if hue is not rounded
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path_hue = int(path_hue * 100 + 0.5) / 100;
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float saturation = fmin(fabs(acceleration[i] * 1.5), 1);
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float lightness = util::map_val(saturation, 0.0f, 1.0f, 0.95f, 0.62f); // lighter when grey
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float alpha = util::map_val(lin_grad_point, 0.75f / 2.f, 0.75f, 0.4f, 0.0f); // matches previous alpha fade
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bg.setColorAt(lin_grad_point, QColor::fromHslF(path_hue / 360., saturation, lightness, alpha));
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// Skip a point, unless next is last
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i += (i + 2) < max_len ? 1 : 0;
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}
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} else {
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bg.setColorAt(0.0, QColor::fromHslF(148 / 360., 0.94, 0.51, 0.4));
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bg.setColorAt(0.5, QColor::fromHslF(112 / 360., 1.0, 0.68, 0.35));
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bg.setColorAt(1.0, QColor::fromHslF(112 / 360., 1.0, 0.68, 0.0));
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}
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painter.setBrush(bg);
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painter.drawPolygon(scene.track_vertices);
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painter.restore();
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}
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void AnnotatedCameraWidget::drawDriverState(QPainter &painter, const UIState *s) {
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const UIScene &scene = s->scene;
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painter.save();
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// base icon
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int offset = UI_BORDER_SIZE + btn_size / 2;
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int x = rightHandDM ? width() - offset : offset;
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int y = height() - offset;
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float opacity = dmActive ? 0.65 : 0.2;
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drawIcon(painter, QPoint(x, y), dm_img, blackColor(70), opacity);
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// face
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QPointF face_kpts_draw[std::size(default_face_kpts_3d)];
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float kp;
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for (int i = 0; i < std::size(default_face_kpts_3d); ++i) {
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kp = (scene.face_kpts_draw[i].v[2] - 8) / 120 + 1.0;
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face_kpts_draw[i] = QPointF(scene.face_kpts_draw[i].v[0] * kp + x, scene.face_kpts_draw[i].v[1] * kp + y);
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}
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painter.setPen(QPen(QColor::fromRgbF(1.0, 1.0, 1.0, opacity), 5.2, Qt::SolidLine, Qt::RoundCap));
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painter.drawPolyline(face_kpts_draw, std::size(default_face_kpts_3d));
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// tracking arcs
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const int arc_l = 133;
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const float arc_t_default = 6.7;
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const float arc_t_extend = 12.0;
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QColor arc_color = QColor::fromRgbF(0.545 - 0.445 * s->engaged(),
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0.545 + 0.4 * s->engaged(),
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0.545 - 0.285 * s->engaged(),
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0.4 * (1.0 - dm_fade_state));
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float delta_x = -scene.driver_pose_sins[1] * arc_l / 2;
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float delta_y = -scene.driver_pose_sins[0] * arc_l / 2;
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painter.setPen(QPen(arc_color, arc_t_default+arc_t_extend*fmin(1.0, scene.driver_pose_diff[1] * 5.0), Qt::SolidLine, Qt::RoundCap));
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painter.drawArc(QRectF(std::fmin(x + delta_x, x), y - arc_l / 2, fabs(delta_x), arc_l), (scene.driver_pose_sins[1]>0 ? 90 : -90) * 16, 180 * 16);
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painter.setPen(QPen(arc_color, arc_t_default+arc_t_extend*fmin(1.0, scene.driver_pose_diff[0] * 5.0), Qt::SolidLine, Qt::RoundCap));
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painter.drawArc(QRectF(x - arc_l / 2, std::fmin(y + delta_y, y), arc_l, fabs(delta_y)), (scene.driver_pose_sins[0]>0 ? 0 : 180) * 16, 180 * 16);
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painter.restore();
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}
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void AnnotatedCameraWidget::drawLead(QPainter &painter, const cereal::RadarState::LeadData::Reader &lead_data, const QPointF &vd) {
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painter.save();
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const float speedBuff = 10.;
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const float leadBuff = 40.;
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const float d_rel = lead_data.getDRel();
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const float v_rel = lead_data.getVRel();
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float fillAlpha = 0;
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if (d_rel < leadBuff) {
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fillAlpha = 255 * (1.0 - (d_rel / leadBuff));
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if (v_rel < 0) {
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fillAlpha += 255 * (-1 * (v_rel / speedBuff));
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}
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fillAlpha = (int)(fmin(fillAlpha, 255));
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}
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float sz = std::clamp((25 * 30) / (d_rel / 3 + 30), 15.0f, 30.0f) * 2.35;
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float x = std::clamp((float)vd.x(), 0.f, width() - sz / 2);
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float y = std::fmin(height() - sz * .6, (float)vd.y());
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float g_xo = sz / 5;
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float g_yo = sz / 10;
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QPointF glow[] = {{x + (sz * 1.35) + g_xo, y + sz + g_yo}, {x, y - g_yo}, {x - (sz * 1.35) - g_xo, y + sz + g_yo}};
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painter.setBrush(QColor(218, 202, 37, 255));
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painter.drawPolygon(glow, std::size(glow));
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// chevron
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QPointF chevron[] = {{x + (sz * 1.25), y + sz}, {x, y}, {x - (sz * 1.25), y + sz}};
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painter.setBrush(redColor(fillAlpha));
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painter.drawPolygon(chevron, std::size(chevron));
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painter.restore();
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}
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void AnnotatedCameraWidget::paintGL() {
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UIState *s = uiState();
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SubMaster &sm = *(s->sm);
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const double start_draw_t = millis_since_boot();
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const cereal::ModelDataV2::Reader &model = sm["modelV2"].getModelV2();
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// draw camera frame
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{
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std::lock_guard lk(frame_lock);
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if (frames.empty()) {
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if (skip_frame_count > 0) {
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skip_frame_count--;
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qDebug() << "skipping frame, not ready";
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return;
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}
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} else {
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// skip drawing up to this many frames if we're
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// missing camera frames. this smooths out the
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// transitions from the narrow and wide cameras
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skip_frame_count = 5;
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}
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// Wide or narrow cam dependent on speed
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bool has_wide_cam = available_streams.count(VISION_STREAM_WIDE_ROAD);
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if (has_wide_cam) {
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float v_ego = sm["carState"].getCarState().getVEgo();
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if ((v_ego < 10) || available_streams.size() == 1) {
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wide_cam_requested = true;
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} else if (v_ego > 15) {
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wide_cam_requested = false;
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}
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wide_cam_requested = wide_cam_requested && sm["controlsState"].getControlsState().getExperimentalMode();
|
|
// for replay of old routes, never go to widecam
|
|
wide_cam_requested = wide_cam_requested && s->scene.calibration_wide_valid;
|
|
}
|
|
CameraWidget::setStreamType(wide_cam_requested ? VISION_STREAM_WIDE_ROAD : VISION_STREAM_ROAD);
|
|
|
|
s->scene.wide_cam = CameraWidget::getStreamType() == VISION_STREAM_WIDE_ROAD;
|
|
if (s->scene.calibration_valid) {
|
|
auto calib = s->scene.wide_cam ? s->scene.view_from_wide_calib : s->scene.view_from_calib;
|
|
CameraWidget::updateCalibration(calib);
|
|
} else {
|
|
CameraWidget::updateCalibration(DEFAULT_CALIBRATION);
|
|
}
|
|
CameraWidget::setFrameId(model.getFrameId());
|
|
CameraWidget::paintGL();
|
|
}
|
|
|
|
QPainter painter(this);
|
|
painter.setRenderHint(QPainter::Antialiasing);
|
|
painter.setPen(Qt::NoPen);
|
|
|
|
if (s->scene.world_objects_visible) {
|
|
update_model(s, model, sm["uiPlan"].getUiPlan());
|
|
drawLaneLines(painter, s);
|
|
|
|
if (s->scene.longitudinal_control && sm.rcv_frame("radarState") > s->scene.started_frame) {
|
|
auto radar_state = sm["radarState"].getRadarState();
|
|
update_leads(s, radar_state, model.getPosition());
|
|
auto lead_one = radar_state.getLeadOne();
|
|
auto lead_two = radar_state.getLeadTwo();
|
|
if (lead_one.getStatus()) {
|
|
drawLead(painter, lead_one, s->scene.lead_vertices[0]);
|
|
}
|
|
if (lead_two.getStatus() && (std::abs(lead_one.getDRel() - lead_two.getDRel()) > 3.0)) {
|
|
drawLead(painter, lead_two, s->scene.lead_vertices[1]);
|
|
}
|
|
}
|
|
}
|
|
|
|
// DMoji
|
|
if (!hideBottomIcons && (sm.rcv_frame("driverStateV2") > s->scene.started_frame)) {
|
|
update_dmonitoring(s, sm["driverStateV2"].getDriverStateV2(), dm_fade_state, rightHandDM);
|
|
drawDriverState(painter, s);
|
|
}
|
|
|
|
drawHud(painter);
|
|
|
|
double cur_draw_t = millis_since_boot();
|
|
double dt = cur_draw_t - prev_draw_t;
|
|
double fps = fps_filter.update(1. / dt * 1000);
|
|
if (fps < 15) {
|
|
LOGW("slow frame rate: %.2f fps", fps);
|
|
}
|
|
prev_draw_t = cur_draw_t;
|
|
|
|
// publish debug msg
|
|
MessageBuilder msg;
|
|
auto m = msg.initEvent().initUiDebug();
|
|
m.setDrawTimeMillis(cur_draw_t - start_draw_t);
|
|
pm->send("uiDebug", msg);
|
|
}
|
|
|
|
void AnnotatedCameraWidget::showEvent(QShowEvent *event) {
|
|
CameraWidget::showEvent(event);
|
|
|
|
ui_update_params(uiState());
|
|
prev_draw_t = millis_since_boot();
|
|
}
|
|
|