mirror of
https://github.com/slsdetectorgroup/aare.git
synced 2025-06-16 17:27:14 +02:00
only files within the ROI are opened & geometry always read in RawMasterFile
This commit is contained in:
@ -1,11 +1,10 @@
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#pragma once
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#include "aare/FileInterface.hpp"
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#include "aare/RawMasterFile.hpp"
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#include "aare/Frame.hpp"
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#include "aare/NDArray.hpp" //for pixel map
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#include "aare/RawMasterFile.hpp"
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#include "aare/RawSubFile.hpp"
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#include <optional>
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namespace aare {
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@ -30,12 +29,15 @@ struct ModuleConfig {
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* Consider using that unless you need raw file specific functionality.
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*/
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class RawFile : public FileInterface {
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friend class RawMasterFile;
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std::vector<std::unique_ptr<RawSubFile>> m_subfiles;
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ModuleConfig cfg{0, 0};
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RawMasterFile m_master;
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size_t m_current_frame{};
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size_t m_current_subfile{};
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DetectorGeometry m_geometry;
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std::vector<ssize_t> m_modules_in_roi{};
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public:
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/**
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@ -53,10 +55,10 @@ class RawFile : public FileInterface {
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void read_into(std::byte *image_buf) override;
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void read_into(std::byte *image_buf, size_t n_frames) override;
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//TODO! do we need to adapt the API?
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// TODO! do we need to adapt the API?
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void read_into(std::byte *image_buf, DetectorHeader *header);
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void read_into(std::byte *image_buf, size_t n_frames, DetectorHeader *header);
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void read_into(std::byte *image_buf, size_t n_frames,
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DetectorHeader *header);
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size_t frame_number(size_t frame_index) override;
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size_t bytes_per_frame() override;
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@ -70,23 +72,21 @@ class RawFile : public FileInterface {
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size_t bitdepth() const override;
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xy geometry();
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size_t n_modules() const;
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size_t n_modules_in_roi() const;
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RawMasterFile master() const;
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DetectorType detector_type() const override;
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private:
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/**
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* @brief read the frame at the given frame index into the image buffer
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* @param frame_number frame number to read
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* @param image_buf buffer to store the frame
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*/
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void get_frame_into(size_t frame_index, std::byte *frame_buffer, DetectorHeader *header = nullptr);
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void get_frame_into(size_t frame_index, std::byte *frame_buffer,
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DetectorHeader *header = nullptr);
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/**
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* @brief get the frame at the given frame index
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@ -95,8 +95,6 @@ class RawFile : public FileInterface {
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*/
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Frame get_frame(size_t frame_index);
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/**
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* @brief read the header of the file
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* @param fname path to the data subfile
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@ -108,5 +106,4 @@ class RawFile : public FileInterface {
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void find_geometry();
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};
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} // namespace aare
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@ -1,5 +1,7 @@
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#pragma once
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// #include "aare/RawFile.hpp"
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#include "aare/defs.hpp"
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#include <algorithm>
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#include <filesystem>
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#include <fmt/format.h>
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#include <fstream>
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@ -45,7 +47,7 @@ class ScanParameters {
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int m_start = 0;
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int m_stop = 0;
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int m_step = 0;
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//TODO! add settleTime, requires string to time conversion
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// TODO! add settleTime, requires string to time conversion
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public:
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ScanParameters(const std::string &par);
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@ -61,6 +63,7 @@ class ScanParameters {
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void increment_stop();
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};
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class RawFile; // forward declaration
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/**
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* @brief Class for parsing a master file either in our .json format or the old
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@ -101,7 +104,6 @@ class RawMasterFile {
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std::optional<ROI> m_roi;
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public:
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RawMasterFile(const std::filesystem::path &fpath);
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@ -129,15 +131,14 @@ class RawMasterFile {
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std::optional<size_t> number_of_rows() const;
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std::optional<uint8_t> quad() const;
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std::optional<ROI> roi() const;
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ScanParameters scan_parameters() const;
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private:
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void parse_json(const std::filesystem::path &fpath);
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void parse_raw(const std::filesystem::path &fpath);
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void retrieve_geometry();
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};
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} // namespace aare
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160
src/RawFile.cpp
160
src/RawFile.cpp
@ -1,9 +1,9 @@
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#include "aare/RawFile.hpp"
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#include "aare/algorithm.hpp"
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#include "aare/PixelMap.hpp"
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#include "aare/algorithm.hpp"
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#include "aare/defs.hpp"
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#include "aare/logger.hpp"
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#include "aare/geo_helpers.hpp"
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#include "aare/logger.hpp"
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#include <fmt/format.h>
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#include <nlohmann/json.hpp>
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@ -15,10 +15,22 @@ namespace aare {
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RawFile::RawFile(const std::filesystem::path &fname, const std::string &mode)
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: m_master(fname) {
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m_mode = mode;
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if (mode == "r") {
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find_geometry();
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if (m_master.roi()){
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m_geometry = update_geometry_with_roi(m_geometry, m_master.roi().value());
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if (m_master.roi()) {
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m_geometry =
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update_geometry_with_roi(m_geometry, m_master.roi().value());
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m_modules_in_roi.reserve(n_modules());
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for (size_t module_index = 0; module_index < n_modules();
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++module_index) {
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if (m_geometry.module_pixel_0[module_index].width == 0 &&
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m_geometry.module_pixel_0[module_index].height == 0)
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m_modules_in_roi.push_back(module_index);
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}
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} else {
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m_modules_in_roi.resize(n_modules());
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std::iota(m_modules_in_roi.begin(), m_modules_in_roi.end(), 0);
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}
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open_subfiles();
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} else {
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@ -47,32 +59,33 @@ void RawFile::read_into(std::byte *image_buf) {
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return get_frame_into(m_current_frame++, image_buf);
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}
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void RawFile::read_into(std::byte *image_buf, DetectorHeader *header) {
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return get_frame_into(m_current_frame++, image_buf, header);
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}
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void RawFile::read_into(std::byte *image_buf, size_t n_frames, DetectorHeader *header) {
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void RawFile::read_into(std::byte *image_buf, size_t n_frames,
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DetectorHeader *header) {
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// return get_frame_into(m_current_frame++, image_buf, header);
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for (size_t i = 0; i < n_frames; i++) {
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this->get_frame_into(m_current_frame++, image_buf, header);
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image_buf += bytes_per_frame();
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if(header)
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header+=n_modules();
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if (header)
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header += n_modules();
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}
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}
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size_t RawFile::n_modules() const { return m_master.n_modules(); }
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size_t RawFile::n_modules_in_roi() const { return m_modules_in_roi.size(); }
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size_t RawFile::bytes_per_frame() {
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return m_geometry.pixels_x * m_geometry.pixels_y * m_master.bitdepth() / bits_per_byte;
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return m_geometry.pixels_x * m_geometry.pixels_y * m_master.bitdepth() /
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bits_per_byte;
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}
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size_t RawFile::pixels_per_frame() {
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// return m_rows * m_cols;
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size_t RawFile::pixels_per_frame() {
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// return m_rows * m_cols;
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return m_geometry.pixels_x * m_geometry.pixels_y;
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}
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@ -99,7 +112,7 @@ xy RawFile::geometry() { return m_master.geometry(); }
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void RawFile::open_subfiles() {
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if (m_mode == "r")
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for (size_t i = 0; i != n_modules(); ++i) {
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for (size_t i : m_modules_in_roi) {
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auto pos = m_geometry.module_pixel_0[i];
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m_subfiles.emplace_back(std::make_unique<RawSubFile>(
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m_master.data_fname(i, 0), m_master.detector_type(), pos.height,
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@ -128,76 +141,59 @@ DetectorHeader RawFile::read_header(const std::filesystem::path &fname) {
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return h;
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}
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RawMasterFile RawFile::master() const { return m_master; }
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/**
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* @brief Find the geometry of the detector by opening all the subfiles and
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* reading the headers.
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* @brief Find the geometry of the detector
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*/
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void RawFile::find_geometry() {
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//Hold the maximal row and column number found
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//Later used for calculating the total number of rows and columns
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uint16_t r{};
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uint16_t c{};
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// TODO potentially update for Eiger
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for (size_t col = 0; col < m_master.geometry().col; ++col)
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for (size_t row = 0; row < m_master.geometry().row; ++row) {
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ModuleGeometry g;
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g.origin_x = col * m_master.pixels_x();
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g.origin_y = row * m_master.pixels_y();
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g.row_index = row;
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g.col_index = col;
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g.width = m_master.pixels_x();
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g.height = m_master.pixels_y();
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m_geometry.module_pixel_0.push_back(g);
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}
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for (size_t i = 0; i < n_modules(); i++) {
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auto h = read_header(m_master.data_fname(i, 0));
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r = std::max(r, h.row);
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c = std::max(c, h.column);
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// positions.push_back({h.row, h.column});
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ModuleGeometry g;
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g.origin_x = h.column * m_master.pixels_x();
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g.origin_y = h.row * m_master.pixels_y();
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g.row_index = h.row;
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g.col_index = h.column;
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g.width = m_master.pixels_x();
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g.height = m_master.pixels_y();
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m_geometry.module_pixel_0.push_back(g);
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}
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r++;
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c++;
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m_geometry.pixels_y = (r * m_master.pixels_y());
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m_geometry.pixels_x = (c * m_master.pixels_x());
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m_geometry.modules_x = c;
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m_geometry.modules_y = r;
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m_geometry.pixels_y += static_cast<size_t>((r - 1) * cfg.module_gap_row);
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m_geometry.pixels_y = (m_master.geometry().row * m_master.pixels_y());
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m_geometry.pixels_x = (m_master.geometry().col * m_master.pixels_x());
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m_geometry.modules_x = m_master.geometry().col;
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m_geometry.modules_y = m_master.geometry().row;
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m_geometry.pixels_y +=
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static_cast<size_t>((m_master.geometry().row - 1) * cfg.module_gap_row);
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}
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Frame RawFile::get_frame(size_t frame_index) {
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auto f = Frame(m_geometry.pixels_y, m_geometry.pixels_x, Dtype::from_bitdepth(m_master.bitdepth()));
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auto f = Frame(m_geometry.pixels_y, m_geometry.pixels_x,
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Dtype::from_bitdepth(m_master.bitdepth()));
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std::byte *frame_buffer = f.data();
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get_frame_into(frame_index, frame_buffer);
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return f;
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}
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size_t RawFile::bytes_per_pixel() const { return m_master.bitdepth() / 8; }
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size_t RawFile::bytes_per_pixel() const {
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return m_master.bitdepth() / 8;
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}
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void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer, DetectorHeader *header) {
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void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer,
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DetectorHeader *header) {
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LOG(logDEBUG) << "RawFile::get_frame_into(" << frame_index << ")";
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if (frame_index >= total_frames()) {
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throw std::runtime_error(LOCATION + "Frame number out of range");
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}
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std::vector<size_t> frame_numbers(n_modules());
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std::vector<size_t> frame_indices(n_modules(), frame_index);
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std::vector<size_t> frame_numbers(n_modules_in_roi());
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std::vector<size_t> frame_indices(n_modules_in_roi(), frame_index);
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// sync the frame numbers
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if (n_modules() != 1) { //if we have more than one module
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for (size_t part_idx = 0; part_idx != n_modules(); ++part_idx) {
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frame_numbers[part_idx] = m_subfiles[part_idx]->frame_number(frame_index);
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if (n_modules() != 1) { // if we have more than one module
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for (size_t part_idx = 0; part_idx != n_modules_in_roi(); ++part_idx) {
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frame_numbers[part_idx] =
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m_subfiles[part_idx]->frame_number(frame_index);
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}
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// 1. if frame number vector is the same break
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@ -218,23 +214,32 @@ void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer, Detect
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}
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frame_numbers[min_frame_idx] =
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m_subfiles[min_frame_idx]->frame_number(frame_indices[min_frame_idx]);
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m_subfiles[min_frame_idx]->frame_number(
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frame_indices[min_frame_idx]);
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}
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}
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if (m_master.geometry().col == 1) {
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// get the part from each subfile and copy it to the frame
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for (size_t part_idx = 0; part_idx != n_modules(); ++part_idx) {
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for (size_t part_idx = 0; part_idx != n_modules_in_roi(); ++part_idx) {
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auto corrected_idx = frame_indices[part_idx];
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// This is where we start writing
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auto offset = (m_geometry.module_pixel_0[part_idx].origin_y * m_geometry.pixels_x +
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m_geometry.module_pixel_0[part_idx].origin_x)*m_master.bitdepth()/8;
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if (m_geometry.module_pixel_0[part_idx].origin_x!=0)
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throw std::runtime_error(LOCATION + " Implementation error. x pos not 0.");
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//TODO! What if the files don't match?
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// This is where we start writing
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auto offset = (m_geometry.module_pixel_0[m_modules_in_roi[part_idx]]
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.origin_y *
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m_geometry.pixels_x +
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m_geometry.module_pixel_0[m_modules_in_roi[part_idx]]
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.origin_x) *
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m_master.bitdepth() / 8;
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if (m_geometry.module_pixel_0[m_modules_in_roi[part_idx]]
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.origin_x != 0)
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throw std::runtime_error(
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LOCATION +
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" Implementation error. x pos not 0."); // TODO: origin can
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// still change if
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// roi changes
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// TODO! What if the files don't match?
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m_subfiles[part_idx]->seek(corrected_idx);
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m_subfiles[part_idx]->read_into(frame_buffer + offset, header);
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if (header)
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@ -242,7 +247,7 @@ void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer, Detect
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}
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} else {
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//TODO! should we read row by row?
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// TODO! should we read row by row?
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// create a buffer large enough to hold a full module
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auto bytes_per_part = m_master.pixels_y() * m_master.pixels_x() *
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@ -254,13 +259,13 @@ void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer, Detect
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// TODO! if we have many submodules we should reorder them on the module
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// level
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for (size_t part_idx = 0; part_idx != n_modules(); ++part_idx) {
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auto pos = m_geometry.module_pixel_0[part_idx];
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for (size_t part_idx = 0; part_idx != n_modules_in_roi(); ++part_idx) {
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auto pos = m_geometry.module_pixel_0[m_modules_in_roi[part_idx]];
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auto corrected_idx = frame_indices[part_idx];
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m_subfiles[part_idx]->seek(corrected_idx);
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m_subfiles[part_idx]->read_into(part_buffer, header);
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if(header)
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if (header)
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++header;
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for (size_t cur_row = 0; cur_row < static_cast<size_t>(pos.height);
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@ -271,15 +276,13 @@ void RawFile::get_frame_into(size_t frame_index, std::byte *frame_buffer, Detect
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auto dest = (irow * this->m_geometry.pixels_x + icol);
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dest = dest * m_master.bitdepth() / 8;
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memcpy(frame_buffer + dest,
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part_buffer + cur_row * pos.width *
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m_master.bitdepth() / 8,
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part_buffer +
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cur_row * pos.width * m_master.bitdepth() / 8,
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pos.width * m_master.bitdepth() / 8);
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}
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}
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delete[] part_buffer;
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}
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}
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std::vector<Frame> RawFile::read_n(size_t n_frames) {
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@ -299,5 +302,4 @@ size_t RawFile::frame_number(size_t frame_index) {
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return m_subfiles[0]->frame_number(frame_index);
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}
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} // namespace aare
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|
@ -1,5 +1,6 @@
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#include "aare/RawMasterFile.hpp"
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#include <sstream>
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#include "aare/RawFile.hpp"
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#include <sstream>
|
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namespace aare {
|
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|
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RawFileNameComponents::RawFileNameComponents(
|
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@ -37,18 +38,15 @@ std::filesystem::path RawFileNameComponents::master_fname() const {
|
||||
}
|
||||
|
||||
std::filesystem::path RawFileNameComponents::data_fname(size_t mod_id,
|
||||
size_t file_id
|
||||
) const {
|
||||
|
||||
|
||||
|
||||
size_t file_id) const {
|
||||
|
||||
std::string fmt = "{}_d{}_f{}_{}.raw";
|
||||
//Before version X we used to name the data files f000000000000
|
||||
// Before version X we used to name the data files f000000000000
|
||||
if (m_old_scheme) {
|
||||
fmt = "{}_d{}_f{:012}_{}.raw";
|
||||
}
|
||||
return m_base_path / fmt::format(fmt, m_base_name, mod_id,
|
||||
file_id, m_file_index);
|
||||
return m_base_path /
|
||||
fmt::format(fmt, m_base_name, mod_id, file_id, m_file_index);
|
||||
}
|
||||
|
||||
void RawFileNameComponents::set_old_scheme(bool old_scheme) {
|
||||
@ -65,19 +63,19 @@ const std::string &RawFileNameComponents::ext() const { return m_ext; }
|
||||
int RawFileNameComponents::file_index() const { return m_file_index; }
|
||||
|
||||
// "[enabled\ndac dac 4\nstart 500\nstop 2200\nstep 5\nsettleTime 100us\n]"
|
||||
ScanParameters::ScanParameters(const std::string& par){
|
||||
std::istringstream iss(par.substr(1, par.size()-2));
|
||||
ScanParameters::ScanParameters(const std::string &par) {
|
||||
std::istringstream iss(par.substr(1, par.size() - 2));
|
||||
std::string line;
|
||||
while(std::getline(iss, line)){
|
||||
if(line == "enabled"){
|
||||
while (std::getline(iss, line)) {
|
||||
if (line == "enabled") {
|
||||
m_enabled = true;
|
||||
}else if(line.find("dac") != std::string::npos){
|
||||
} else if (line.find("dac") != std::string::npos) {
|
||||
m_dac = line.substr(4);
|
||||
}else if(line.find("start") != std::string::npos){
|
||||
} else if (line.find("start") != std::string::npos) {
|
||||
m_start = std::stoi(line.substr(6));
|
||||
}else if(line.find("stop") != std::string::npos){
|
||||
} else if (line.find("stop") != std::string::npos) {
|
||||
m_stop = std::stoi(line.substr(5));
|
||||
}else if(line.find("step") != std::string::npos){
|
||||
} else if (line.find("step") != std::string::npos) {
|
||||
m_step = std::stoi(line.substr(5));
|
||||
}
|
||||
}
|
||||
@ -85,14 +83,11 @@ ScanParameters::ScanParameters(const std::string& par){
|
||||
|
||||
int ScanParameters::start() const { return m_start; }
|
||||
int ScanParameters::stop() const { return m_stop; }
|
||||
void ScanParameters::increment_stop(){
|
||||
m_stop += 1;
|
||||
}
|
||||
void ScanParameters::increment_stop() { m_stop += 1; }
|
||||
int ScanParameters::step() const { return m_step; }
|
||||
const std::string &ScanParameters::dac() const { return m_dac; }
|
||||
bool ScanParameters::enabled() const { return m_enabled; }
|
||||
|
||||
|
||||
RawMasterFile::RawMasterFile(const std::filesystem::path &fpath)
|
||||
: m_fnc(fpath) {
|
||||
if (!std::filesystem::exists(fpath)) {
|
||||
@ -163,10 +158,8 @@ ScanParameters RawMasterFile::scan_parameters() const {
|
||||
return m_scan_parameters;
|
||||
}
|
||||
|
||||
|
||||
std::optional<ROI> RawMasterFile::roi() const { return m_roi; }
|
||||
|
||||
|
||||
void RawMasterFile::parse_json(const std::filesystem::path &fpath) {
|
||||
std::ifstream ifs(fpath);
|
||||
json j;
|
||||
@ -177,7 +170,10 @@ void RawMasterFile::parse_json(const std::filesystem::path &fpath) {
|
||||
m_type = StringTo<DetectorType>(j["Detector Type"].get<std::string>());
|
||||
m_timing_mode = StringTo<TimingMode>(j["Timing Mode"].get<std::string>());
|
||||
|
||||
m_geometry = {j["Geometry"]["y"], j["Geometry"]["x"]};
|
||||
m_geometry = {
|
||||
j["Geometry"]["y"],
|
||||
j["Geometry"]["x"]}; // TODO: isnt it only available for version > 7.1?
|
||||
// - try block default should be 1x1
|
||||
|
||||
m_image_size_in_bytes = j["Image Size in bytes"];
|
||||
m_frames_in_file = j["Frames in File"];
|
||||
@ -205,17 +201,16 @@ void RawMasterFile::parse_json(const std::filesystem::path &fpath) {
|
||||
// keep the optional empty
|
||||
}
|
||||
|
||||
|
||||
// ----------------------------------------------------------------
|
||||
// Special treatment of analog flag because of Moench03
|
||||
try{
|
||||
try {
|
||||
m_analog_flag = j.at("Analog Flag");
|
||||
}catch (const json::out_of_range &e) {
|
||||
} catch (const json::out_of_range &e) {
|
||||
// if it doesn't work still set it to one
|
||||
// to try to decode analog samples (Old Moench03)
|
||||
m_analog_flag = 1;
|
||||
}
|
||||
try {
|
||||
try {
|
||||
if (m_analog_flag) {
|
||||
m_analog_samples = j.at("Analog Samples");
|
||||
}
|
||||
@ -248,27 +243,27 @@ void RawMasterFile::parse_json(const std::filesystem::path &fpath) {
|
||||
// keep the optional empty
|
||||
}
|
||||
|
||||
try{
|
||||
try {
|
||||
m_transceiver_flag = j.at("Transceiver Flag");
|
||||
if(m_transceiver_flag){
|
||||
if (m_transceiver_flag) {
|
||||
m_transceiver_samples = j.at("Transceiver Samples");
|
||||
}
|
||||
}catch (const json::out_of_range &e) {
|
||||
} catch (const json::out_of_range &e) {
|
||||
// keep the optional empty
|
||||
}
|
||||
|
||||
try{
|
||||
try {
|
||||
std::string scan_parameters = j.at("Scan Parameters");
|
||||
m_scan_parameters = ScanParameters(scan_parameters);
|
||||
if(v<7.21){
|
||||
m_scan_parameters.increment_stop(); //adjust for endpoint being included
|
||||
}
|
||||
}catch (const json::out_of_range &e) {
|
||||
if (v < 7.21) {
|
||||
m_scan_parameters
|
||||
.increment_stop(); // adjust for endpoint being included
|
||||
}
|
||||
} catch (const json::out_of_range &e) {
|
||||
// not a scan
|
||||
}
|
||||
|
||||
|
||||
try{
|
||||
try {
|
||||
ROI tmp_roi;
|
||||
auto obj = j.at("Receiver Roi");
|
||||
tmp_roi.xmin = obj.at("xmin");
|
||||
@ -276,37 +271,32 @@ void RawMasterFile::parse_json(const std::filesystem::path &fpath) {
|
||||
tmp_roi.ymin = obj.at("ymin");
|
||||
tmp_roi.ymax = obj.at("ymax");
|
||||
|
||||
//if any of the values are set update the roi
|
||||
// if any of the values are set update the roi
|
||||
if (tmp_roi.xmin != 4294967295 || tmp_roi.xmax != 4294967295 ||
|
||||
tmp_roi.ymin != 4294967295 || tmp_roi.ymax != 4294967295) {
|
||||
|
||||
if(v<7.21){
|
||||
|
||||
if (v < 7.21) {
|
||||
tmp_roi.xmax++;
|
||||
tmp_roi.ymax++;
|
||||
}
|
||||
|
||||
|
||||
m_roi = tmp_roi;
|
||||
}
|
||||
|
||||
|
||||
}catch (const json::out_of_range &e) {
|
||||
} catch (const json::out_of_range &e) {
|
||||
// leave the optional empty
|
||||
}
|
||||
|
||||
//if we have an roi we need to update the geometry for the subfiles
|
||||
if (m_roi){
|
||||
|
||||
// if we have an roi we need to update the geometry for the subfiles
|
||||
if (m_roi) {
|
||||
}
|
||||
|
||||
|
||||
|
||||
|
||||
// Update detector type for Moench
|
||||
// TODO! How does this work with old .raw master files?
|
||||
#ifdef AARE_VERBOSE
|
||||
// Update detector type for Moench
|
||||
// TODO! How does this work with old .raw master files?
|
||||
#ifdef AARE_VERBOSE
|
||||
fmt::print("Detecting Moench03: m_pixels_y: {}, m_analog_samples: {}\n",
|
||||
m_pixels_y, m_analog_samples.value_or(0));
|
||||
#endif
|
||||
#endif
|
||||
if (m_type == DetectorType::Moench && !m_analog_samples &&
|
||||
m_pixels_y == 400) {
|
||||
m_type = DetectorType::Moench03;
|
||||
@ -332,19 +322,19 @@ void RawMasterFile::parse_raw(const std::filesystem::path &fpath) {
|
||||
if (key == "Version") {
|
||||
m_version = value;
|
||||
|
||||
//TODO!: How old versions can we handle?
|
||||
// TODO!: How old versions can we handle?
|
||||
auto v = std::stod(value);
|
||||
|
||||
//TODO! figure out exactly when we did the change
|
||||
//This enables padding of f to 12 digits
|
||||
if (v<4.0)
|
||||
// TODO! figure out exactly when we did the change
|
||||
// This enables padding of f to 12 digits
|
||||
if (v < 4.0)
|
||||
m_fnc.set_old_scheme(true);
|
||||
|
||||
} else if (key == "TimeStamp") {
|
||||
|
||||
} else if (key == "Detector Type") {
|
||||
m_type = StringTo<DetectorType>(value);
|
||||
if(m_type==DetectorType::Moench){
|
||||
if (m_type == DetectorType::Moench) {
|
||||
m_type = DetectorType::Moench03_old;
|
||||
}
|
||||
} else if (key == "Timing Mode") {
|
||||
@ -381,10 +371,10 @@ void RawMasterFile::parse_raw(const std::filesystem::path &fpath) {
|
||||
pos = value.find(',');
|
||||
m_pixels_x = std::stoi(value.substr(1, pos));
|
||||
m_pixels_y = std::stoi(value.substr(pos + 1));
|
||||
}else if(key == "row"){
|
||||
} else if (key == "row") {
|
||||
pos = value.find('p');
|
||||
m_pixels_y = std::stoi(value.substr(0, pos));
|
||||
}else if(key == "col"){
|
||||
} else if (key == "col") {
|
||||
pos = value.find('p');
|
||||
m_pixels_x = std::stoi(value.substr(0, pos));
|
||||
} else if (key == "Total Frames") {
|
||||
@ -395,8 +385,8 @@ void RawMasterFile::parse_raw(const std::filesystem::path &fpath) {
|
||||
m_quad = std::stoi(value);
|
||||
} else if (key == "Max Frames Per File") {
|
||||
m_max_frames_per_file = std::stoi(value);
|
||||
}else if(key == "Max. Frames Per File"){
|
||||
//Version 3.0 way of writing it
|
||||
} else if (key == "Max. Frames Per File") {
|
||||
// Version 3.0 way of writing it
|
||||
m_max_frames_per_file = std::stoi(value);
|
||||
} else if (key == "Geometry") {
|
||||
pos = value.find(',');
|
||||
@ -410,15 +400,34 @@ void RawMasterFile::parse_raw(const std::filesystem::path &fpath) {
|
||||
m_type = DetectorType::Moench03_old;
|
||||
}
|
||||
|
||||
|
||||
//TODO! Look for d0, d1...dn and update geometry
|
||||
if(m_geometry.col == 0 && m_geometry.row == 0){
|
||||
m_geometry = {1,1};
|
||||
fmt::print("Warning: No geometry found in master file. Assuming 1x1\n");
|
||||
if (m_geometry.col == 0 && m_geometry.row == 0) {
|
||||
retrieve_geometry();
|
||||
fmt::print("Warning: No geometry found in master file. Retrieved "
|
||||
"geometry of {}x{}\n",
|
||||
m_geometry.row, m_geometry.col);
|
||||
}
|
||||
|
||||
//TODO! Read files and find actual frames
|
||||
if(m_frames_in_file==0)
|
||||
// TODO! Read files and find actual frames
|
||||
if (m_frames_in_file == 0)
|
||||
m_frames_in_file = m_total_frames_expected;
|
||||
}
|
||||
|
||||
void RawMasterFile::retrieve_geometry() {
|
||||
uint32_t module_index = 0;
|
||||
uint16_t rows = 0;
|
||||
uint16_t cols = 0;
|
||||
// TODO use case for Eiger
|
||||
while (std::filesystem::exists(data_fname(module_index, 0))) {
|
||||
auto header = RawFile::read_header(data_fname(module_index, 0));
|
||||
|
||||
rows = std::max(rows, header.row);
|
||||
cols = std::max(cols, header.column);
|
||||
++rows;
|
||||
++cols;
|
||||
++module_index;
|
||||
}
|
||||
|
||||
m_geometry = {rows, cols};
|
||||
}
|
||||
|
||||
} // namespace aare
|
||||
|
@ -1,36 +1,30 @@
|
||||
#include "aare/RawSubFile.hpp"
|
||||
#include "aare/PixelMap.hpp"
|
||||
#include "aare/algorithm.hpp"
|
||||
#include "aare/utils/ifstream_helpers.hpp"
|
||||
#include "aare/logger.hpp"
|
||||
|
||||
#include "aare/utils/ifstream_helpers.hpp"
|
||||
|
||||
#include <cstring> // memcpy
|
||||
#include <fmt/core.h>
|
||||
#include <iostream>
|
||||
#include <regex>
|
||||
|
||||
|
||||
|
||||
|
||||
namespace aare {
|
||||
|
||||
RawSubFile::RawSubFile(const std::filesystem::path &fname,
|
||||
DetectorType detector, size_t rows, size_t cols,
|
||||
size_t bitdepth, uint32_t pos_row, uint32_t pos_col)
|
||||
: m_detector_type(detector), m_bitdepth(bitdepth),
|
||||
m_rows(rows), m_cols(cols),
|
||||
m_bytes_per_frame((m_bitdepth / 8) * m_rows * m_cols), m_pos_row(pos_row),
|
||||
m_pos_col(pos_col) {
|
||||
: m_detector_type(detector), m_bitdepth(bitdepth), m_rows(rows),
|
||||
m_cols(cols), m_bytes_per_frame((m_bitdepth / 8) * m_rows * m_cols),
|
||||
m_pos_row(pos_row), m_pos_col(pos_col) {
|
||||
|
||||
LOG(logDEBUG) << "RawSubFile::RawSubFile()";
|
||||
LOG(logDEBUG) << "RawSubFile::RawSubFile()";
|
||||
if (m_detector_type == DetectorType::Moench03_old) {
|
||||
m_pixel_map = GenerateMoench03PixelMap();
|
||||
} else if (m_detector_type == DetectorType::Eiger && m_pos_row % 2 == 0) {
|
||||
m_pixel_map = GenerateEigerFlipRowsPixelMap();
|
||||
}
|
||||
|
||||
|
||||
parse_fname(fname);
|
||||
scan_files();
|
||||
open_file(m_current_file_index); // open the first file
|
||||
@ -51,7 +45,8 @@ void RawSubFile::seek(size_t frame_index) {
|
||||
auto frame_offset = (file_index)
|
||||
? frame_index - m_last_frame_in_file[file_index - 1]
|
||||
: frame_index;
|
||||
auto byte_offset = frame_offset * (m_bytes_per_frame + sizeof(DetectorHeader));
|
||||
auto byte_offset =
|
||||
frame_offset * (m_bytes_per_frame + sizeof(DetectorHeader));
|
||||
m_file.seekg(byte_offset);
|
||||
}
|
||||
|
||||
@ -69,7 +64,7 @@ void RawSubFile::read_into(std::byte *image_buf, DetectorHeader *header) {
|
||||
m_file.seekg(sizeof(DetectorHeader), std::ios::cur);
|
||||
}
|
||||
|
||||
if (m_file.fail()){
|
||||
if (m_file.fail()) {
|
||||
throw std::runtime_error(LOCATION + ifstream_error_msg(m_file));
|
||||
}
|
||||
|
||||
@ -78,14 +73,15 @@ void RawSubFile::read_into(std::byte *image_buf, DetectorHeader *header) {
|
||||
// read into a temporary buffer and then copy the data to the buffer
|
||||
// in the correct order
|
||||
// TODO! add 4 bit support
|
||||
if(m_bitdepth == 8){
|
||||
if (m_bitdepth == 8) {
|
||||
read_with_map<uint8_t>(image_buf);
|
||||
}else if (m_bitdepth == 16) {
|
||||
} else if (m_bitdepth == 16) {
|
||||
read_with_map<uint16_t>(image_buf);
|
||||
} else if (m_bitdepth == 32) {
|
||||
read_with_map<uint32_t>(image_buf);
|
||||
}else{
|
||||
throw std::runtime_error("Unsupported bitdepth for read with pixel map");
|
||||
} else {
|
||||
throw std::runtime_error(
|
||||
"Unsupported bitdepth for read with pixel map");
|
||||
}
|
||||
|
||||
} else {
|
||||
@ -93,11 +89,11 @@ void RawSubFile::read_into(std::byte *image_buf, DetectorHeader *header) {
|
||||
m_file.read(reinterpret_cast<char *>(image_buf), bytes_per_frame());
|
||||
}
|
||||
|
||||
if (m_file.fail()){
|
||||
if (m_file.fail()) {
|
||||
throw std::runtime_error(LOCATION + ifstream_error_msg(m_file));
|
||||
}
|
||||
|
||||
++ m_current_frame_index;
|
||||
++m_current_frame_index;
|
||||
if (m_current_frame_index >= m_last_frame_in_file[m_current_file_index] &&
|
||||
(m_current_frame_index < m_total_frames)) {
|
||||
++m_current_file_index;
|
||||
@ -105,7 +101,8 @@ void RawSubFile::read_into(std::byte *image_buf, DetectorHeader *header) {
|
||||
}
|
||||
}
|
||||
|
||||
void RawSubFile::read_into(std::byte *image_buf, size_t n_frames, DetectorHeader *header) {
|
||||
void RawSubFile::read_into(std::byte *image_buf, size_t n_frames,
|
||||
DetectorHeader *header) {
|
||||
for (size_t i = 0; i < n_frames; i++) {
|
||||
read_into(image_buf, header);
|
||||
image_buf += bytes_per_frame();
|
||||
@ -115,10 +112,7 @@ void RawSubFile::read_into(std::byte *image_buf, size_t n_frames, DetectorHeader
|
||||
}
|
||||
}
|
||||
|
||||
|
||||
|
||||
template <typename T>
|
||||
void RawSubFile::read_with_map(std::byte *image_buf) {
|
||||
template <typename T> void RawSubFile::read_with_map(std::byte *image_buf) {
|
||||
auto part_buffer = new std::byte[bytes_per_frame()];
|
||||
m_file.read(reinterpret_cast<char *>(part_buffer), bytes_per_frame());
|
||||
auto *data = reinterpret_cast<T *>(image_buf);
|
||||
@ -157,14 +151,17 @@ void RawSubFile::parse_fname(const std::filesystem::path &fname) {
|
||||
std::smatch match;
|
||||
|
||||
if (std::regex_match(m_base_name, match, pattern)) {
|
||||
m_offset = std::stoi(match[4].str()); // find the first file index in case of a truncated series
|
||||
m_base_name = match[1].str() + match[2].str() + match[3].str() + "{}" + match[5].str();
|
||||
m_offset = std::stoi(match[4].str()); // find the first file index in
|
||||
// case of a truncated series
|
||||
m_base_name = match[1].str() + match[2].str() + match[3].str() + "{}" +
|
||||
match[5].str();
|
||||
LOG(logDEBUG) << "Base name: " << m_base_name;
|
||||
LOG(logDEBUG) << "Offset: " << m_offset;
|
||||
LOG(logDEBUG) << "Path: " << m_path.string();
|
||||
} else {
|
||||
throw std::runtime_error(
|
||||
LOCATION + fmt::format("Could not parse file name {}", fname.string()));
|
||||
LOCATION +
|
||||
fmt::format("Could not parse file name {}", fname.string()));
|
||||
}
|
||||
}
|
||||
|
||||
@ -175,12 +172,13 @@ std::filesystem::path RawSubFile::fpath(size_t file_index) const {
|
||||
|
||||
void RawSubFile::open_file(size_t file_index) {
|
||||
m_file.close();
|
||||
auto fname = fpath(file_index+m_offset);
|
||||
auto fname = fpath(file_index + m_offset);
|
||||
LOG(logDEBUG) << "RawSubFile::open_file(): " << fname.string();
|
||||
m_file.open(fname, std::ios::binary);
|
||||
if (!m_file.is_open()) {
|
||||
throw std::runtime_error(
|
||||
LOCATION + fmt::format("Could not open file {}", fpath(file_index).string()));
|
||||
LOCATION +
|
||||
fmt::format("Could not open file {}", fpath(file_index).string()));
|
||||
}
|
||||
m_current_file_index = file_index;
|
||||
}
|
||||
@ -190,20 +188,21 @@ void RawSubFile::scan_files() {
|
||||
// find how many files we have and the number of frames in each file
|
||||
m_last_frame_in_file.clear();
|
||||
size_t file_index = m_offset;
|
||||
|
||||
|
||||
while (std::filesystem::exists(fpath(file_index))) {
|
||||
auto n_frames = std::filesystem::file_size(fpath(file_index)) /
|
||||
(m_bytes_per_frame + sizeof(DetectorHeader));
|
||||
m_last_frame_in_file.push_back(n_frames);
|
||||
LOG(logDEBUG) << "Found: " << n_frames << " frames in file: " << fpath(file_index).string();
|
||||
LOG(logDEBUG) << "Found: " << n_frames
|
||||
<< " frames in file: " << fpath(file_index).string();
|
||||
++file_index;
|
||||
}
|
||||
|
||||
// find where we need to open the next file and total number of frames
|
||||
m_last_frame_in_file = cumsum(m_last_frame_in_file);
|
||||
if(m_last_frame_in_file.empty()){
|
||||
if (m_last_frame_in_file.empty()) {
|
||||
m_total_frames = 0;
|
||||
}else{
|
||||
} else {
|
||||
m_total_frames = m_last_frame_in_file.back();
|
||||
}
|
||||
}
|
||||
|
Reference in New Issue
Block a user