153 lines
7.0 KiB
C++
153 lines
7.0 KiB
C++
// SPDX-FileCopyrightText: 2024 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
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// SPDX-License-Identifier: GPL-3.0-only
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#ifndef JUNGFRAUJOCH_RAWTOCONVERTEDGEOMETRY_H
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#define JUNGFRAUJOCH_RAWTOCONVERTEDGEOMETRY_H
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#include <cmath>
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#include "RawToConvertedGeometryCore.h"
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#include "Coord.h"
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#include "DiffractionExperiment.h"
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// Input coord is column + 1024 * (line + 512 * module)
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// Copies result over multipixel - can be used for example for mask calculation
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template<class Td, class Ts>
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void RawToConvertedGeometry(const DiffractionExperiment &experiment, Td *destination, const Ts *source) {
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for (size_t module_number = 0; module_number < experiment.GetModulesNum(); module_number++)
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TransferModule<Td, Ts>(destination + experiment.GetPixel0OfModuleConv(module_number),
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source + module_number * RAW_MODULE_SIZE,
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experiment.GetModuleSlowDirectionStep(module_number),
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experiment.GetModuleFastDirectionStep(module_number));
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}
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inline std::pair<int64_t, int64_t> RawToConvertedCoordinate(const DiffractionExperiment& experiment,
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uint32_t module_number,
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uint32_t pixel_within_module) {
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int64_t pixel0 = experiment.GetPixel0OfModuleConv(module_number);
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int64_t line = pixel_within_module / RAW_MODULE_COLS;
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int64_t col = pixel_within_module % RAW_MODULE_COLS;
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line += (line / 256) * 2;
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col += (col / 256) * 2;
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int64_t pixel = pixel0
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+ col * experiment.GetModuleFastDirectionStep(module_number)
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+ line * experiment.GetModuleSlowDirectionStep(module_number);
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return {pixel % experiment.GetXPixelsNumConv() , pixel / experiment.GetXPixelsNumConv()};
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}
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inline Coord RawToConvertedCoordinate(const DiffractionExperiment& experiment, uint32_t module_number, const Coord &c) {
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int64_t pixel0 = experiment.GetPixel0OfModuleConv(module_number);
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Coord pixel0_coord(pixel0 % experiment.GetXPixelsNumConv(),
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pixel0 / experiment.GetXPixelsNumConv(),
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0);
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return pixel0_coord
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+ experiment.GetModuleFastDirection(module_number) * (c.x + (static_cast<int32_t>(c.x) / 256) * 2)
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+ experiment.GetModuleSlowDirection(module_number) * (c.y + (static_cast<int32_t>(c.y) / 256) * 2);
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}
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template<class T>
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void ConvertedToRawGeometry(const DiffractionExperiment &experiment, size_t module_number,
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T *destination, const T *source) {
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// Ensure that converted geometry is used, even if raw data mode is set
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const auto &geom = experiment.GetDetectorSetup().GetGeometry();
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for (size_t line = 0; line < RAW_MODULE_LINES; line++)
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LineConvtToRaw<T>(destination + RAW_MODULE_COLS * line,
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source + geom.GetPixel0(module_number, true) +
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geom.GetSlowDirectionStep(module_number) * (line + ((line > 255) ? 2 : 0)),
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experiment.GetModuleFastDirectionStep(module_number));
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}
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template<class T>
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void ConvertedToRawGeometry(const DiffractionExperiment &experiment, T *destination, const T *source) {
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for (size_t module_number = 0; module_number < experiment.GetModulesNum(); module_number++)
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ConvertedToRawGeometry(experiment, module_number, destination + module_number * RAW_MODULE_SIZE, source);
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}
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// Input coord is column + 1024 * (line + 512 * module)
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template<class Ts>
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void RawToConvertedGeometryAdjustMultipixels(const DiffractionExperiment &experiment, Ts *destination, const Ts *source) {
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Ts min = experiment.GetUnderflow() + 1;
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if (min > 0) min = 0;
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Ts max = experiment.GetSaturationLimit() - 1;
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for (size_t module_number = 0; module_number < experiment.GetModulesNum(); module_number++) {
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TransferModuleAdjustMultipixels<Ts, Ts>(destination,
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source + module_number * RAW_MODULE_SIZE,
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experiment.GetModuleSlowDirectionStep(module_number),
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min, max,
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experiment.GetModuleFastDirectionStep(module_number),
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experiment.GetPixel0OfModuleConv(module_number));
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}
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}
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template <int HALF_LINES_PER_PACKET = 4, class T>
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inline void RawToEigerInput(T *dest, const T *source) {
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int half_lines_per_packet = HALF_LINES_PER_PACKET;
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int pixels_per_packet = half_lines_per_packet * RAW_MODULE_COLS / 2;
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int total_packets = 2 * (RAW_MODULE_LINES / half_lines_per_packet);
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// bottom left corner
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for (int packet = 0; packet < total_packets / 4; packet++) {
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for (int i = 0; i < pixels_per_packet; i++) {
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size_t line = packet * half_lines_per_packet + (half_lines_per_packet - 1 - i / 512);
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size_t col = i % (RAW_MODULE_COLS / 2);
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dest[(total_packets / 2 - 1 - (packet * 2 + 1)) * pixels_per_packet + i] = source[line * RAW_MODULE_COLS + col];
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dest[(total_packets / 2 - 1 - (packet * 2)) * pixels_per_packet + i] = source[line * RAW_MODULE_COLS + col + RAW_MODULE_COLS / 2];
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}
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}
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// top left corner
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for (int packet = 0; packet < total_packets / 4; packet++) {
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for (int i = 0; i < pixels_per_packet; i++) {
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size_t line = RAW_MODULE_LINES / 2 + packet * half_lines_per_packet + i / 512;
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size_t col = i % (RAW_MODULE_COLS / 2);
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dest[(total_packets / 2 + (packet * 2)) * pixels_per_packet + i] = source[line * RAW_MODULE_COLS + col];
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dest[(total_packets / 2 + (packet * 2 + 1)) * pixels_per_packet + i] = source[line * RAW_MODULE_COLS + col + RAW_MODULE_COLS / 2];
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}
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}
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}
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inline void RawToEigerInput32(uint32_t *dest, const uint32_t *source) {
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// bottom left corner
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for (int packet = 0; packet < 128; packet++) {
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for (int i = 0; i < 1024; i++) {
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size_t line = packet * 2 + (1 - i / 512);
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size_t col = i % 512;
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dest[(254 - (packet * 2)) * 1024 + i] = source[line * RAW_MODULE_COLS + col];
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}
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}
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// bottom right corner
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for (int packet = 0; packet < 128; packet++) {
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for (int i = 0; i < 1024; i++) {
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size_t line = packet * 2 + (1 - i / 512);
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size_t col = 512 + i % 512;
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dest[(255 - (packet * 2)) * 1024 + i] = source[line * RAW_MODULE_COLS + col];
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}
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}
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// top left corner
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for (int packet = 0; packet < 128; packet++) {
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for (int i = 0; i < 1024; i++) {
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size_t line = 256 + packet * 2 + i / 512;
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size_t col = i % 512;
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dest[(256 + (packet * 2)) * 1024 + i] = source[line * RAW_MODULE_COLS + col];
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}
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}
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// top right corner
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for (int packet = 0; packet < 128; packet++) {
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for (int i = 0; i < 1024; i++) {
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size_t line = 256 + packet * 2 + i / 512;
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size_t col = 512 + i % 512;
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dest[(257 + (packet * 2)) * 1024 + i] = source[line * RAW_MODULE_COLS + col];
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}
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}
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}
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#endif |