Files
sf_daq_buffer/sf-writer/SfFormat.cpp
T

112 lines
4.3 KiB
C++

#include <memory>
#include <unordered_map>
#include "config.hpp"
#include "H5Format.hpp"
using namespace std;
using s_ptr = shared_ptr<h5_base>;
class SfFormat : public H5Format
{
shared_ptr<unordered_map<string, DATA_TYPE>> input_value_type = NULL;
shared_ptr<unordered_map<string, boost::any>> default_values = NULL;
shared_ptr<unordered_map<string, std::string>> dataset_move_mapping = NULL;
shared_ptr<h5_parent> file_format = NULL;
public:
~SfFormat(){};
SfFormat(const string& dataset_name, int n_bad_modules)
{
// Input values definition type.
// Which type should be the parameters you receive over the REST api.
input_value_type.reset(
new unordered_map<string, DATA_TYPE>({
{"general/created", NX_DATE_TIME},
{"general/user", NX_CHAR},
{"general/process", NX_CHAR},
{"general/instrument", NX_CHAR}
}));
// Default values used in the file format.
default_values.reset(new std::unordered_map<string, boost::any>(
{
{"general/n_bad_modules", n_bad_modules},
{"general/detector_name", dataset_name}
}));
// After format has been writen, where to move the raw datasets.
dataset_move_mapping.reset(new std::unordered_map<string, string>(
{
{config::raw_image_dataset_name, "data/" + dataset_name + "/data"},
{"pulse_id", "data/" + dataset_name + "/pulse_id"},
{"frame", "data/" + dataset_name + "/frame"},
{"is_good_frame", "data/" + dataset_name + "/is_good_frame"},
{"missing_packets_1", "data/" + dataset_name + "/missing_packets_1"},
{"missing_packets_2", "data/" + dataset_name + "/missing_packets_2"},
{"daq_recs", "data/" + dataset_name + "/daq_recs"},
{"daq_rec", "data/" + dataset_name + "/daq_rec"},
{"framenum_diff", "data/" + dataset_name + "/framenum_diff"},
{"pulse_ids", "data/" + dataset_name + "/pulse_ids"},
{"framenums", "data/" + dataset_name + "/framenums"},
{"pulse_id_diff", "data/" + dataset_name + "/pulse_id_diff"},
{"module_number", "data/" + dataset_name + "/module_number"},
}));
// Definition of the file format.
file_format.reset(
new h5_parent("", EMPTY_ROOT, {
s_ptr(new h5_group("general", {
s_ptr(new h5_dataset("created", "general/created", NX_DATE_TIME)),
s_ptr(new h5_dataset("user", "general/user", NX_CHAR)),
s_ptr(new h5_dataset("process", "general/process", NX_CHAR)),
s_ptr(new h5_dataset("instrument", "general/instrument", NX_CHAR)),
s_ptr(new h5_dataset("detector_name", "general/detector_name", NX_CHAR)),
s_ptr(new h5_dataset("n_bad_modules", "general/n_bad_modules", NX_INT)),
})),
s_ptr(new h5_group("data", {
s_ptr(new h5_group(dataset_name, {}))
}))
}));
}
const h5_parent& get_format_definition() const override
{
return *file_format;
}
const unordered_map<string, boost::any>& get_default_values() const override
{
return *default_values;
}
void add_calculated_values(unordered_map<string, boost::any>& values) const override
{
// No calculated values.
}
void add_input_values(unordered_map<string, boost::any>& values,
const unordered_map<string, boost::any>& input_values) const override
{
// Input value mapping is 1:1.
for (const auto& input_value : input_values) {
const auto& name = input_value.first;
const auto& value = input_value.second;
values[name] = value;
}
}
const std::unordered_map<string, DATA_TYPE>& get_input_value_type() const override
{
return *input_value_type;
}
const unordered_map<string, string>& get_dataset_move_mapping() const override {
return *dataset_move_mapping;
}
};