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Jungfraujoch/broker/gen/model/Image_pusher_status.cpp
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v1.0.0-rc.166 (#76)
* `rugnux --mode calibration` writes `<prefix>.json` beside the `.poni`, whose `dataset_settings` member is a `jfjoch_broker` `dataset_settings` body as it stands.
* `rugnux` and `jfjoch_viewer` read PILATUS miniCBF sweeps natively, without conversion.
* Masters written by other facilities open, including Eiger 1.x and third-party NXmx variants.
* `rugnux` measures the beam centre on every run, and indexes with it when the file's value indexes nothing.
* A detector swung out on a 2theta arm is placed where the file says it stands, and the calibration can hold the tilt fixed.
* `rugnux` writes the unmerged MTZ by default, and a P1 merge beside it, so a wrong space group can be re-merged without reprocessing.
* Significant improvements to symmetry handling in `rugnux`: the lattice, the point group, the setting and the systematic absences.
* The `rugnux` report gives the resolution the CC1/2 fit reached, beside the range the reflections were written to.
* The `rugnux` report gives the twinning statistics measured before the space group was decided, beside the ones measured after.
* The `rugnux` report gives the strong-direction diffraction limit, and warns when CC1/2 is not monotone with resolution.
* `rugnux` ranks screw axes on the evidence their absences carry, rather than on how many control reflections a candidate happens to have.
* Twinning is no longer reported when the L-test contradicts it.
* The `rugnux` report gives the detector tilt, the measured tilt and the direct beam beside the beam centre, and a post-refined beam centre is judged against the run's own measurement rather than the file's.
* `--no-refine-tilt` holds the detector tilt at the value in the file, instead of zeroing it, when the calibration starts from the spots.
* The `jfjoch_viewer` grid scan view draws the cells in the proportion of the scan steps, so the map has the shape of the scanned area.

Reviewed-on: #76
Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
2026-09-02 21:17:31 +02:00

293 lines
9.0 KiB
C++

/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.166
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
#include "Image_pusher_status.h"
#include "Helpers.h"
#include <sstream>
namespace org::openapitools::server::model
{
Image_pusher_status::Image_pusher_status()
{
m_Connected_writers = 0L;
m_Images_written = 0L;
m_Images_writtenIsSet = false;
m_Images_write_error = 0L;
m_Images_write_errorIsSet = false;
m_Writer_fifo_utilizationIsSet = false;
}
void Image_pusher_status::validate() const
{
std::stringstream msg;
if (!validate(msg))
{
throw org::openapitools::server::helpers::ValidationException(msg.str());
}
}
bool Image_pusher_status::validate(std::stringstream& msg) const
{
return validate(msg, "");
}
bool Image_pusher_status::validate(std::stringstream& msg, const std::string& pathPrefix) const
{
bool success = true;
const std::string _pathPrefix = pathPrefix.empty() ? "Image_pusher_status" : pathPrefix;
/* Addr */ {
const std::vector<std::string>& value = m_Addr;
const std::string currentValuePath = _pathPrefix + ".addr";
{ // Recursive validation of array elements
const std::string oldValuePath = currentValuePath;
int i = 0;
for (const std::string& value : value)
{
const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
i++;
}
}
}
/* Connected_writers */ {
const int64_t& value = m_Connected_writers;
const std::string currentValuePath = _pathPrefix + ".connectedWriters";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
if (imagesWrittenIsSet())
{
const int64_t& value = m_Images_written;
const std::string currentValuePath = _pathPrefix + ".imagesWritten";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
if (imagesWriteErrorIsSet())
{
const int64_t& value = m_Images_write_error;
const std::string currentValuePath = _pathPrefix + ".imagesWriteError";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
if (writerFifoUtilizationIsSet())
{
const std::vector<int64_t>& value = m_Writer_fifo_utilization;
const std::string currentValuePath = _pathPrefix + ".writerFifoUtilization";
{ // Recursive validation of array elements
const std::string oldValuePath = currentValuePath;
int i = 0;
for (const int64_t& value : value)
{
const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
i++;
}
}
}
return success;
}
bool Image_pusher_status::operator==(const Image_pusher_status& rhs) const
{
return
(getPusherType() == rhs.getPusherType())
&&
(getAddr() == rhs.getAddr())
&&
(getConnectedWriters() == rhs.getConnectedWriters())
&&
((!imagesWrittenIsSet() && !rhs.imagesWrittenIsSet()) || (imagesWrittenIsSet() && rhs.imagesWrittenIsSet() && getImagesWritten() == rhs.getImagesWritten())) &&
((!imagesWriteErrorIsSet() && !rhs.imagesWriteErrorIsSet()) || (imagesWriteErrorIsSet() && rhs.imagesWriteErrorIsSet() && getImagesWriteError() == rhs.getImagesWriteError())) &&
((!writerFifoUtilizationIsSet() && !rhs.writerFifoUtilizationIsSet()) || (writerFifoUtilizationIsSet() && rhs.writerFifoUtilizationIsSet() && getWriterFifoUtilization() == rhs.getWriterFifoUtilization()))
;
}
bool Image_pusher_status::operator!=(const Image_pusher_status& rhs) const
{
return !(*this == rhs);
}
void to_json(nlohmann::json& j, const Image_pusher_status& o)
{
j = nlohmann::json::object();
j["pusher_type"] = o.m_Pusher_type;
j["addr"] = o.m_Addr;
j["connected_writers"] = o.m_Connected_writers;
if(o.imagesWrittenIsSet())
j["images_written"] = o.m_Images_written;
if(o.imagesWriteErrorIsSet())
j["images_write_error"] = o.m_Images_write_error;
if(o.writerFifoUtilizationIsSet() || !o.m_Writer_fifo_utilization.empty())
j["writer_fifo_utilization"] = o.m_Writer_fifo_utilization;
}
void from_json(const nlohmann::json& j, Image_pusher_status& o)
{
j.at("pusher_type").get_to(o.m_Pusher_type);
j.at("addr").get_to(o.m_Addr);
j.at("connected_writers").get_to(o.m_Connected_writers);
if(j.find("images_written") != j.end())
{
j.at("images_written").get_to(o.m_Images_written);
o.m_Images_writtenIsSet = true;
}
if(j.find("images_write_error") != j.end())
{
j.at("images_write_error").get_to(o.m_Images_write_error);
o.m_Images_write_errorIsSet = true;
}
if(j.find("writer_fifo_utilization") != j.end())
{
j.at("writer_fifo_utilization").get_to(o.m_Writer_fifo_utilization);
o.m_Writer_fifo_utilizationIsSet = true;
}
}
org::openapitools::server::model::Image_pusher_type Image_pusher_status::getPusherType() const
{
return m_Pusher_type;
}
void Image_pusher_status::setPusherType(org::openapitools::server::model::Image_pusher_type const& value)
{
m_Pusher_type = value;
}
std::vector<std::string> Image_pusher_status::getAddr() const
{
return m_Addr;
}
void Image_pusher_status::setAddr(std::vector<std::string> const& value)
{
m_Addr = value;
}
int64_t Image_pusher_status::getConnectedWriters() const
{
return m_Connected_writers;
}
void Image_pusher_status::setConnectedWriters(int64_t const value)
{
m_Connected_writers = value;
}
int64_t Image_pusher_status::getImagesWritten() const
{
return m_Images_written;
}
void Image_pusher_status::setImagesWritten(int64_t const value)
{
m_Images_written = value;
m_Images_writtenIsSet = true;
}
bool Image_pusher_status::imagesWrittenIsSet() const
{
return m_Images_writtenIsSet;
}
void Image_pusher_status::unsetImages_written()
{
m_Images_writtenIsSet = false;
}
int64_t Image_pusher_status::getImagesWriteError() const
{
return m_Images_write_error;
}
void Image_pusher_status::setImagesWriteError(int64_t const value)
{
m_Images_write_error = value;
m_Images_write_errorIsSet = true;
}
bool Image_pusher_status::imagesWriteErrorIsSet() const
{
return m_Images_write_errorIsSet;
}
void Image_pusher_status::unsetImages_write_error()
{
m_Images_write_errorIsSet = false;
}
std::vector<int64_t> Image_pusher_status::getWriterFifoUtilization() const
{
return m_Writer_fifo_utilization;
}
void Image_pusher_status::setWriterFifoUtilization(std::vector<int64_t> const value)
{
m_Writer_fifo_utilization = value;
m_Writer_fifo_utilizationIsSet = true;
}
bool Image_pusher_status::writerFifoUtilizationIsSet() const
{
return m_Writer_fifo_utilizationIsSet;
}
void Image_pusher_status::unsetWriter_fifo_utilization()
{
m_Writer_fifo_utilizationIsSet = false;
}
} // namespace org::openapitools::server::model