X-Git-Url: https://sigrok.org/gitweb/?p=pulseview.git;a=blobdiff_plain;f=pv%2Fview%2Fanalogsignal.cpp;h=8f79f919eaad3f7e67618378cb6405af9b4f193c;hp=04f0a7fb84b97207b09a63f9143abe36293f54ae;hb=b8c4a95bc26d2976ea80001846d1ab7eb15cd3d5;hpb=6f925ba9d6faf1077b73c5a5808259576081716a diff --git a/pv/view/analogsignal.cpp b/pv/view/analogsignal.cpp index 04f0a7fb..8f79f919 100644 --- a/pv/view/analogsignal.cpp +++ b/pv/view/analogsignal.cpp @@ -23,6 +23,7 @@ #include #include #include +#include #include #include @@ -36,8 +37,11 @@ #include "analogsignal.hpp" #include "pv/data/analog.hpp" #include "pv/data/analogsegment.hpp" +#include "pv/data/logic.hpp" +#include "pv/data/logicsegment.hpp" #include "pv/data/signalbase.hpp" #include "pv/view/view.hpp" +#include "pv/view/logicsignal.hpp" #include "pv/globalsettings.hpp" #include @@ -51,6 +55,7 @@ using std::min; using std::numeric_limits; using std::pair; using std::shared_ptr; +using std::vector; namespace pv { namespace views { @@ -87,6 +92,8 @@ AnalogSignal::AnalogSignal( pos_vdivs_(1), neg_vdivs_(1), resolution_(0), + conversion_type_(data::SignalBase::NoConversion), + display_type_(DisplayBoth), autoranging_(true) { pv::data::Analog* analog_data = @@ -109,6 +116,8 @@ void AnalogSignal::save_settings(QSettings &settings) const settings.setValue("pos_vdivs", pos_vdivs_); settings.setValue("neg_vdivs", neg_vdivs_); settings.setValue("scale_index", scale_index_); + settings.setValue("conversion_type", conversion_type_); + settings.setValue("display_type", display_type_); settings.setValue("autoranging", autoranging_); } @@ -125,6 +134,14 @@ void AnalogSignal::restore_settings(QSettings &settings) update_scale(); } + if (settings.contains("conversion_type")) { + conversion_type_ = (data::SignalBase::ConversionType)(settings.value("conversion_type").toInt()); + update_conversion_type(); + } + + if (settings.contains("display_type")) + display_type_ = (DisplayType)(settings.value("display_type").toInt()); + if (settings.contains("autoranging")) autoranging_ = settings.value("autoranging").toBool(); } @@ -178,37 +195,47 @@ void AnalogSignal::paint_mid(QPainter &p, const ViewItemPaintParams &pp) if (!base_->enabled()) return; - paint_grid(p, y, pp.left(), pp.right()); - - const deque< shared_ptr > &segments = - base_->analog_data()->analog_segments(); - if (segments.empty()) - return; - - const shared_ptr &segment = - segments.front(); - - const double pixels_offset = pp.pixels_offset(); - const double samplerate = max(1.0, segment->samplerate()); - const pv::util::Timestamp& start_time = segment->start_time(); - const int64_t last_sample = segment->get_sample_count() - 1; - const double samples_per_pixel = samplerate * pp.scale(); - const pv::util::Timestamp start = samplerate * (pp.offset() - start_time); - const pv::util::Timestamp end = start + samples_per_pixel * pp.width(); + if ((display_type_ == DisplayAnalog) || (display_type_ == DisplayBoth)) { + paint_grid(p, y, pp.left(), pp.right()); + + const deque< shared_ptr > &segments = + base_->analog_data()->analog_segments(); + if (segments.empty()) + return; + + const shared_ptr &segment = + segments.front(); + + const double pixels_offset = pp.pixels_offset(); + const double samplerate = max(1.0, segment->samplerate()); + const pv::util::Timestamp& start_time = segment->start_time(); + const int64_t last_sample = segment->get_sample_count() - 1; + const double samples_per_pixel = samplerate * pp.scale(); + const pv::util::Timestamp start = samplerate * (pp.offset() - start_time); + const pv::util::Timestamp end = start + samples_per_pixel * pp.width(); + + const int64_t start_sample = min(max(floor(start).convert_to(), + (int64_t)0), last_sample); + const int64_t end_sample = min(max((ceil(end) + 1).convert_to(), + (int64_t)0), last_sample); + + if (samples_per_pixel < EnvelopeThreshold) + paint_trace(p, segment, y, pp.left(), + start_sample, end_sample, + pixels_offset, samples_per_pixel); + else + paint_envelope(p, segment, y, pp.left(), + start_sample, end_sample, + pixels_offset, samples_per_pixel); + } - const int64_t start_sample = min(max(floor(start).convert_to(), - (int64_t)0), last_sample); - const int64_t end_sample = min(max((ceil(end) + 1).convert_to(), - (int64_t)0), last_sample); + if ((display_type_ == DisplayConverted) || (display_type_ == DisplayBoth)) { + if (((conversion_type_ == data::SignalBase::A2LConversionByTreshold) || + (conversion_type_ == data::SignalBase::A2LConversionBySchmittTrigger))) { - if (samples_per_pixel < EnvelopeThreshold) - paint_trace(p, segment, y, pp.left(), - start_sample, end_sample, - pixels_offset, samples_per_pixel); - else - paint_envelope(p, segment, y, pp.left(), - start_sample, end_sample, - pixels_offset, samples_per_pixel); + paint_logic_mid(p, pp); + } + } } void AnalogSignal::paint_fore(QPainter &p, const ViewItemPaintParams &pp) @@ -216,20 +243,22 @@ void AnalogSignal::paint_fore(QPainter &p, const ViewItemPaintParams &pp) if (!enabled()) return; - const int y = get_visual_y(); + if ((display_type_ == DisplayAnalog) || (display_type_ == DisplayBoth)) { + const int y = get_visual_y(); - // Show the info section on the right side of the trace - const QString infotext = QString("%1 V/div").arg(resolution_); + // Show the info section on the right side of the trace + const QString infotext = QString("%1 V/div").arg(resolution_); - p.setPen(base_->colour()); - p.setFont(QApplication::font()); + p.setPen(base_->colour()); + p.setFont(QApplication::font()); - const QRectF bounding_rect = QRectF(pp.left(), - y + v_extents().first, - pp.width() - InfoTextMarginRight, - v_extents().second - v_extents().first - InfoTextMarginBottom); + const QRectF bounding_rect = QRectF(pp.left(), + y + v_extents().first, + pp.width() - InfoTextMarginRight, + v_extents().second - v_extents().first - InfoTextMarginBottom); - p.drawText(bounding_rect, Qt::AlignRight | Qt::AlignBottom, infotext); + p.drawText(bounding_rect, Qt::AlignRight | Qt::AlignBottom, infotext); + } } void AnalogSignal::paint_grid(QPainter &p, int y, int left, int right) @@ -368,6 +397,129 @@ void AnalogSignal::paint_envelope(QPainter &p, delete[] e.samples; } +void AnalogSignal::paint_logic_mid(QPainter &p, const ViewItemPaintParams &pp) +{ + QLineF *line; + + vector< pair > edges; + + assert(base_); + + const int y = get_visual_y(); + + if (!base_->enabled()) + return; + + const int signal_margin = + QFontMetrics(QApplication::font()).height() / 2; + + const int ph = min(pos_vdivs_, 1) * div_height_; + const int nh = min(neg_vdivs_, 1) * div_height_; + const float high_offset = y - ph + signal_margin + 0.5f; + const float low_offset = y + nh - signal_margin - 0.5f; + + const deque< shared_ptr > &segments = + base_->logic_data()->logic_segments(); + if (segments.empty()) + return; + + const shared_ptr &segment = + segments.front(); + + double samplerate = segment->samplerate(); + + // Show sample rate as 1Hz when it is unknown + if (samplerate == 0.0) + samplerate = 1.0; + + const double pixels_offset = pp.pixels_offset(); + const pv::util::Timestamp& start_time = segment->start_time(); + const int64_t last_sample = segment->get_sample_count() - 1; + const double samples_per_pixel = samplerate * pp.scale(); + const pv::util::Timestamp start = samplerate * (pp.offset() - start_time); + const pv::util::Timestamp end = start + samples_per_pixel * pp.width(); + + const int64_t start_sample = min(max(floor(start).convert_to(), + (int64_t)0), last_sample); + const uint64_t end_sample = min(max(ceil(end).convert_to(), + (int64_t)0), last_sample); + + segment->get_subsampled_edges(edges, start_sample, end_sample, + samples_per_pixel / LogicSignal::Oversampling, 0); + assert(edges.size() >= 2); + + // Paint the edges + const unsigned int edge_count = edges.size() - 2; + QLineF *const edge_lines = new QLineF[edge_count]; + line = edge_lines; + + for (auto i = edges.cbegin() + 1; i != edges.cend() - 1; i++) { + const float x = ((*i).first / samples_per_pixel - + pixels_offset) + pp.left(); + *line++ = QLineF(x, high_offset, x, low_offset); + } + + p.setPen(LogicSignal::EdgeColour); + p.drawLines(edge_lines, edge_count); + delete[] edge_lines; + + // Paint the caps + const unsigned int max_cap_line_count = edges.size(); + QLineF *const cap_lines = new QLineF[max_cap_line_count]; + + p.setPen(LogicSignal::HighColour); + paint_logic_caps(p, cap_lines, edges, true, samples_per_pixel, + pixels_offset, pp.left(), high_offset); + p.setPen(LogicSignal::LowColour); + paint_logic_caps(p, cap_lines, edges, false, samples_per_pixel, + pixels_offset, pp.left(), low_offset); + + delete[] cap_lines; + + // Return if we don't need to paint the sampling points + GlobalSettings settings; + const bool show_sampling_points = + settings.value(GlobalSettings::Key_View_ShowSamplingPoints).toBool(); + + if (!show_sampling_points || (samples_per_pixel >= 0.25)) + return; + + // Paint the sampling points + const uint64_t sampling_points_count = end_sample - start_sample + 1; + QRectF *const sampling_points = new QRectF[sampling_points_count]; + QRectF *sampling_point = sampling_points; + + const int w = 1; + const float y_middle = high_offset - ((high_offset - low_offset) / 2); + for (uint64_t i = start_sample; i < end_sample + 1; ++i) { + const float x = (i / samples_per_pixel - pixels_offset) + pp.left(); + *sampling_point++ = QRectF(x - (w / 2), y_middle - (w / 2), w, w); + } + + p.setPen(SamplingPointColour); + p.drawRects(sampling_points, sampling_points_count); + delete[] sampling_points; +} + +void AnalogSignal::paint_logic_caps(QPainter &p, QLineF *const lines, + vector< pair > &edges, bool level, + double samples_per_pixel, double pixels_offset, float x_offset, + float y_offset) +{ + QLineF *line = lines; + + for (auto i = edges.begin(); i != (edges.end() - 1); i++) + if ((*i).second == level) { + *line++ = QLineF( + ((*i).first / samples_per_pixel - + pixels_offset) + x_offset, y_offset, + ((*(i+1)).first / samples_per_pixel - + pixels_offset) + x_offset, y_offset); + } + + p.drawLines(lines, line - lines); +} + float AnalogSignal::get_resolution(int scale_index) { const float seq[] = {1.0f, 2.0f, 5.0f}; @@ -385,6 +537,14 @@ void AnalogSignal::update_scale() scale_ = div_height_ / resolution_; } +void AnalogSignal::update_conversion_type() +{ + base_->set_conversion_type(conversion_type_); + + if (owner_) + owner_->row_item_appearance_changed(false, true); +} + void AnalogSignal::perform_autoranging(bool force_update) { const deque< shared_ptr > &segments = @@ -468,7 +628,7 @@ void AnalogSignal::populate_popup_form(QWidget *parent, QFormLayout *form) resolution_cb_->insertItem(0, label, QVariant(i)); } - const int cur_idx = resolution_cb_->findData(QVariant(scale_index_)); + int cur_idx = resolution_cb_->findData(QVariant(scale_index_)); resolution_cb_->setCurrentIndex(cur_idx); connect(resolution_cb_, SIGNAL(currentIndexChanged(int)), @@ -490,6 +650,36 @@ void AnalogSignal::populate_popup_form(QWidget *parent, QFormLayout *form) layout->addRow(tr("Autoranging"), autoranging_cb); + // Add the conversion type dropdown + conversion_cb_ = new QComboBox(); + + conversion_cb_->addItem("none", data::SignalBase::NoConversion); + conversion_cb_->addItem("to logic via threshold", data::SignalBase::A2LConversionByTreshold); + conversion_cb_->addItem("to logic via schmitt-trigger", data::SignalBase::A2LConversionBySchmittTrigger); + + cur_idx = conversion_cb_->findData(QVariant(conversion_type_)); + conversion_cb_->setCurrentIndex(cur_idx); + + layout->addRow(tr("Conversion"), conversion_cb_); + + connect(conversion_cb_, SIGNAL(currentIndexChanged(int)), + this, SLOT(on_conversion_changed(int))); + + // Add the display type dropdown + display_type_cb_ = new QComboBox(); + + display_type_cb_->addItem(tr("Analog"), DisplayAnalog); + display_type_cb_->addItem(tr("Converted"), DisplayConverted); + display_type_cb_->addItem(tr("Both"), DisplayBoth); + + cur_idx = display_type_cb_->findData(QVariant(display_type_)); + display_type_cb_->setCurrentIndex(cur_idx); + + layout->addRow(tr("Traces to show:"), display_type_cb_); + + connect(display_type_cb_, SIGNAL(currentIndexChanged(int)), + this, SLOT(on_display_type_changed(int))); + form->addRow(layout); } @@ -555,6 +745,26 @@ void AnalogSignal::on_autoranging_changed(int state) } } +void AnalogSignal::on_conversion_changed(int index) +{ + data::SignalBase::ConversionType old_conv_type = conversion_type_; + + conversion_type_ = (data::SignalBase::ConversionType)(conversion_cb_->itemData(index).toInt()); + + if (conversion_type_ != old_conv_type) { + base_->set_conversion_type(conversion_type_); + update_conversion_type(); + } +} + +void AnalogSignal::on_display_type_changed(int index) +{ + display_type_ = (DisplayType)(display_type_cb_->itemData(index).toInt()); + + if (owner_) + owner_->row_item_appearance_changed(false, true); +} + } // namespace TraceView } // namespace views } // namespace pv