#include <pv/devicemanager.hpp>
#include <pv/session.hpp>
+#include <pv/data/analog.hpp>
+#include <pv/data/analogsegment.hpp>
#include <pv/data/logic.hpp>
#include <pv/data/logicsegment.hpp>
#include <pv/devices/device.hpp>
{
const unordered_set< shared_ptr<view::Signal> > sigs(session_.signals());
- // Add enabled channels to the data set
- set< shared_ptr<data::SignalData> > data_set;
+ shared_ptr<data::Segment> any_segment;
+ shared_ptr<data::LogicSegment> lsegment;
+ vector< shared_ptr<sigrok::Channel> > achannel_list;
+ vector< shared_ptr<data::AnalogSegment> > asegment_list;
- for (shared_ptr<view::Signal> signal : sigs)
- if (signal->enabled())
- data_set.insert(signal->data());
+ for (shared_ptr<view::Signal> signal : sigs) {
+ if (!signal->enabled())
+ continue;
- // Check we have logic data
- if (data_set.empty() || sigs.empty()) {
- error_ = tr("No data to save.");
- return false;
- }
+ shared_ptr<data::SignalData> data = signal->data();
- if (data_set.size() > 1) {
- error_ = tr("PulseView currently only has support for "
- "storing a single data stream.");
- return false;
- }
+ if (dynamic_pointer_cast<data::Logic>(data)) {
+ // All logic channels share the same data segments
+ shared_ptr<data::Logic> ldata = dynamic_pointer_cast<data::Logic>(data);
- // Get the logic data
- shared_ptr<data::Logic> data;
- if (!(data = dynamic_pointer_cast<data::Logic>(*data_set.begin()))) {
- error_ = tr("PulseView currently only has support for "
- "storing logic data.");
- return false;
- }
+ const deque< shared_ptr<data::LogicSegment> > &lsegments =
+ ldata->logic_segments();
- // Get the segment
- const deque< shared_ptr<data::LogicSegment> > &segments =
- data->logic_segments();
+ if (lsegments.empty()) {
+ error_ = tr("Can't save logic channel without data.");
+ return false;
+ }
- if (segments.empty()) {
- error_ = tr("No segments to save.");
- return false;
+ lsegment = lsegments.front();
+ any_segment = lsegment;
+ }
+
+ if (dynamic_pointer_cast<data::Analog>(data)) {
+ // Each analog channel has its own segments
+ shared_ptr<data::Analog> adata =
+ dynamic_pointer_cast<data::Analog>(data);
+
+ const deque< shared_ptr<data::AnalogSegment> > &asegments =
+ adata->analog_segments();
+
+ if (asegments.empty()) {
+ error_ = tr("Can't save analog channel without data.");
+ return false;
+ }
+
+ asegment_list.push_back(asegments.front());
+ any_segment = asegments.front();
+
+ achannel_list.push_back(signal->channel());
+ }
}
- const shared_ptr<data::LogicSegment> segment(segments.front());
- assert(segment);
+ if (!any_segment) {
+ error_ = tr("No channels enabled.");
+ return false;
+ }
// Check whether the user wants to export a certain sample range
if (sample_range_.first == sample_range_.second) {
start_sample_ = 0;
- sample_count_ = segment->get_sample_count();
+ sample_count_ = any_segment->get_sample_count();
} else {
if (sample_range_.first > sample_range_.second) {
start_sample_ = sample_range_.second;
output_ = output_format_->create_output(file_name_, device, options);
auto meta = context->create_meta_packet(
{{ConfigKey::SAMPLERATE, Glib::Variant<guint64>::create(
- segment->samplerate())}});
+ any_segment->samplerate())}});
output_->receive(meta);
} catch (Error error) {
- error_ = tr("Error while saving.");
+ error_ = tr("Error while saving: ") + error.what();
return false;
}
- thread_ = std::thread(&StoreSession::store_proc, this, segment);
+ thread_ = std::thread(&StoreSession::store_proc, this,
+ achannel_list, asegment_list, lsegment);
return true;
}
interrupt_ = true;
}
-void StoreSession::store_proc(shared_ptr<data::LogicSegment> segment)
+void StoreSession::store_proc(vector< shared_ptr<sigrok::Channel> > achannel_list,
+ vector< shared_ptr<data::AnalogSegment> > asegment_list,
+ shared_ptr<data::LogicSegment> lsegment)
{
- assert(segment);
-
unsigned progress_scale = 0;
/// TODO: Wrap this in a std::unique_ptr when we transition to C++11
- uint8_t *const data = new uint8_t[BlockSize];
- assert(data);
-
- const int unit_size = segment->unit_size();
- assert(unit_size != 0);
+ uint8_t *const ldata = new uint8_t[BlockSize];
+ assert(ldata);
+
+ int aunit_size = 0;
+ int lunit_size = 0;
+ unsigned int lsamples_per_block = INT_MAX;
+ unsigned int asamples_per_block = INT_MAX;
+
+ if (!asegment_list.empty()) {
+ // We assume all analog channels use the sample unit size
+ aunit_size = asegment_list.front()->unit_size();
+ asamples_per_block = BlockSize / aunit_size;
+ }
+ if (lsegment) {
+ lunit_size = lsegment->unit_size();
+ lsamples_per_block = BlockSize / lunit_size;
+ }
// Qt needs the progress values to fit inside an int. If they would
// not, scale the current and max values down until they do.
unit_count_ = sample_count_ >> progress_scale;
- const unsigned int samples_per_block = BlockSize / unit_size;
+ const unsigned int samples_per_block =
+ std::min(asamples_per_block, lsamples_per_block);
while (!interrupt_ && sample_count_) {
progress_updated();
const uint64_t packet_len =
std::min((uint64_t)samples_per_block, sample_count_);
- segment->get_samples(data, start_sample_, start_sample_ + packet_len);
-
- size_t length = packet_len * unit_size;
-
try {
const auto context = session_.device_manager().context();
- auto logic = context->create_logic_packet(data, length, unit_size);
- const string data = output_->receive(logic);
- if (output_stream_.is_open())
- output_stream_ << data;
+
+ for (unsigned int i = 0; i < achannel_list.size(); i++) {
+ shared_ptr<sigrok::Channel> achannel = achannel_list.at(i);
+ shared_ptr<data::AnalogSegment> asegment = asegment_list.at(i);
+
+ const float *adata =
+ asegment->get_samples(start_sample_, start_sample_ + packet_len);
+
+ // The srzip format currently only supports packets with one
+ // analog channel. See zip_append_analog() in srzip.c
+ auto analog = context->create_analog_packet(
+ vector<shared_ptr<sigrok::Channel> >{achannel},
+ (float *)adata, packet_len,
+ sigrok::Quantity::VOLTAGE, sigrok::Unit::VOLT,
+ vector<const sigrok::QuantityFlag *>());
+ const string adata_str = output_->receive(analog);
+
+ if (output_stream_.is_open())
+ output_stream_ << adata_str;
+
+ delete[] adata;
+ }
+
+ if (lsegment) {
+ lsegment->get_samples(ldata, start_sample_, start_sample_ + packet_len);
+
+ const size_t length = packet_len * lunit_size;
+ auto logic = context->create_logic_packet(ldata, length, lunit_size);
+ const string ldata_str = output_->receive(logic);
+
+ if (output_stream_.is_open())
+ output_stream_ << ldata_str;
+ }
} catch (Error error) {
- error_ = tr("Error while saving.");
+ error_ = tr("Error while saving: ") + error.what();
break;
}
output_.reset();
output_stream_.close();
- delete[] data;
+ delete[] ldata;
}
} // pv