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* Building Jungfraujoch no longer needs zlib or Eigen installed on the machine, and the dependencies the build fetches are pinned and updated to current releases. * rugnux: improvements in indexing, lattice selection and geometry post-refinement, which index crystals that previously returned no lattice and keep the better of the two geometries a run measures. * rugnux: improvements in beam-centre measurement, beam-stop detection and space-group determination. * rugnux: the unit cell reported with a determined space group now obeys that group - a cell whose symmetry was confirmed from the intensities is re-refined under it, and a cell the group cannot describe is reported with a warning rather than as it stands. * rugnux drops the stretches of a rotation sweep whose removal measurably improves the merged intensities and reports what became of every frame, and decides the resolution cut on the crystal's own diffraction rather than on its ice rings. * The rugnux results report is machine-readable - every line that is not `KEY= value` data starts with `#` - and states the build it was written by, its authorship and its terms of use (`REPORT_VERSION= 8`). * `jfjoch_viewer`: improvements in the file manager (CBF frames beside HDF5 datasets, a remembered root), the dataset plots, the inspector and the image statistics, plus a settable font size, a view of the rugnux results report, usable performance over a remote display (`ssh -X`) and a reset of all settings to defaults; the reciprocal-space window is removed. * Broker fixes around DECTRIS collections and dark-mask calibration: re-initialising after a run that never started no longer freezes the broker, a cancelled calibration is abandoned instead of reported as done, and a collection whose start message never arrives ends by itself. Reviewed-on: #79 Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
253 lines
7.5 KiB
C++
253 lines
7.5 KiB
C++
/**
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* Jungfraujoch
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* 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.
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*
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* The version of the OpenAPI document: 1.0.0-rc.169
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* Contact: filip.leonarski@psi.ch
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*
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* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
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* https://openapi-generator.tech
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* Do not edit the class manually.
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*/
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#include "Image_buffer_status.h"
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#include "Helpers.h"
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#include <sstream>
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namespace org::openapitools::server::model
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{
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Image_buffer_status::Image_buffer_status()
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{
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m_Min_image_number = 0L;
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m_Max_image_number = 0L;
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m_Total_slots = 0L;
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m_Available_slots = 0L;
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m_In_preparation_slots = 0L;
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m_In_sending_slots = 0L;
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m_Current_counter = 0L;
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m_Current_counterIsSet = false;
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}
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void Image_buffer_status::validate() const
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{
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std::stringstream msg;
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if (!validate(msg))
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{
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throw org::openapitools::server::helpers::ValidationException(msg.str());
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}
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}
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bool Image_buffer_status::validate(std::stringstream& msg) const
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{
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return validate(msg, "");
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}
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bool Image_buffer_status::validate(std::stringstream& msg, const std::string& pathPrefix) const
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{
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bool success = true;
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const std::string _pathPrefix = pathPrefix.empty() ? "Image_buffer_status" : pathPrefix;
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/* Min_image_number */ {
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const int64_t& value = m_Min_image_number;
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const std::string currentValuePath = _pathPrefix + ".minImageNumber";
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if (value < 0ll)
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{
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success = false;
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msg << currentValuePath << ": must be greater than or equal to 0;";
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}
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}
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/* Max_image_number */ {
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const int64_t& value = m_Max_image_number;
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const std::string currentValuePath = _pathPrefix + ".maxImageNumber";
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if (value < 0ll)
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{
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success = false;
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msg << currentValuePath << ": must be greater than or equal to 0;";
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}
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}
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/* Image_numbers */ {
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const std::vector<int64_t>& value = m_Image_numbers;
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const std::string currentValuePath = _pathPrefix + ".imageNumbers";
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{ // Recursive validation of array elements
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const std::string oldValuePath = currentValuePath;
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int i = 0;
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for (const int64_t& value : value)
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{
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const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
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i++;
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}
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}
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}
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return success;
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}
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bool Image_buffer_status::operator==(const Image_buffer_status& rhs) const
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{
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return
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(getMinImageNumber() == rhs.getMinImageNumber())
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&&
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(getMaxImageNumber() == rhs.getMaxImageNumber())
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&&
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(getImageNumbers() == rhs.getImageNumbers())
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&&
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(getTotalSlots() == rhs.getTotalSlots())
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&&
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(getAvailableSlots() == rhs.getAvailableSlots())
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&&
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(getInPreparationSlots() == rhs.getInPreparationSlots())
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&&
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(getInSendingSlots() == rhs.getInSendingSlots())
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&&
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((!currentCounterIsSet() && !rhs.currentCounterIsSet()) || (currentCounterIsSet() && rhs.currentCounterIsSet() && getCurrentCounter() == rhs.getCurrentCounter()))
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;
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}
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bool Image_buffer_status::operator!=(const Image_buffer_status& rhs) const
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{
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return !(*this == rhs);
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}
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void to_json(nlohmann::json& j, const Image_buffer_status& o)
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{
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j = nlohmann::json::object();
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j["min_image_number"] = o.m_Min_image_number;
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j["max_image_number"] = o.m_Max_image_number;
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j["image_numbers"] = o.m_Image_numbers;
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j["total_slots"] = o.m_Total_slots;
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j["available_slots"] = o.m_Available_slots;
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j["in_preparation_slots"] = o.m_In_preparation_slots;
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j["in_sending_slots"] = o.m_In_sending_slots;
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if(o.currentCounterIsSet())
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j["current_counter"] = o.m_Current_counter;
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}
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void from_json(const nlohmann::json& j, Image_buffer_status& o)
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{
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j.at("min_image_number").get_to(o.m_Min_image_number);
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j.at("max_image_number").get_to(o.m_Max_image_number);
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j.at("image_numbers").get_to(o.m_Image_numbers);
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j.at("total_slots").get_to(o.m_Total_slots);
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j.at("available_slots").get_to(o.m_Available_slots);
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j.at("in_preparation_slots").get_to(o.m_In_preparation_slots);
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j.at("in_sending_slots").get_to(o.m_In_sending_slots);
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if(j.find("current_counter") != j.end())
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{
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j.at("current_counter").get_to(o.m_Current_counter);
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o.m_Current_counterIsSet = true;
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}
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}
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int64_t Image_buffer_status::getMinImageNumber() const
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{
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return m_Min_image_number;
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}
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void Image_buffer_status::setMinImageNumber(int64_t const value)
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{
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m_Min_image_number = value;
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}
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int64_t Image_buffer_status::getMaxImageNumber() const
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{
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return m_Max_image_number;
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}
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void Image_buffer_status::setMaxImageNumber(int64_t const value)
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{
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m_Max_image_number = value;
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}
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std::vector<int64_t> Image_buffer_status::getImageNumbers() const
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{
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return m_Image_numbers;
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}
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void Image_buffer_status::setImageNumbers(std::vector<int64_t> const value)
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{
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m_Image_numbers = value;
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}
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int64_t Image_buffer_status::getTotalSlots() const
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{
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return m_Total_slots;
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}
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void Image_buffer_status::setTotalSlots(int64_t const value)
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{
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m_Total_slots = value;
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}
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int64_t Image_buffer_status::getAvailableSlots() const
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{
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return m_Available_slots;
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}
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void Image_buffer_status::setAvailableSlots(int64_t const value)
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{
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m_Available_slots = value;
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}
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int64_t Image_buffer_status::getInPreparationSlots() const
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{
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return m_In_preparation_slots;
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}
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void Image_buffer_status::setInPreparationSlots(int64_t const value)
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{
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m_In_preparation_slots = value;
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}
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int64_t Image_buffer_status::getInSendingSlots() const
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{
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return m_In_sending_slots;
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}
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void Image_buffer_status::setInSendingSlots(int64_t const value)
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{
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m_In_sending_slots = value;
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}
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int64_t Image_buffer_status::getCurrentCounter() const
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{
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return m_Current_counter;
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}
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void Image_buffer_status::setCurrentCounter(int64_t const value)
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{
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m_Current_counter = value;
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m_Current_counterIsSet = true;
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}
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bool Image_buffer_status::currentCounterIsSet() const
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{
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return m_Current_counterIsSet;
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}
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void Image_buffer_status::unsetCurrent_counter()
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{
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m_Current_counterIsSet = false;
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}
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} // namespace org::openapitools::server::model
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