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* `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>
67 lines
3.2 KiB
C++
67 lines
3.2 KiB
C++
// SPDX-FileCopyrightText: 2026 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
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// SPDX-License-Identifier: GPL-3.0-only
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#include "WriteModel.h"
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#include <fstream>
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#include <gemmi/to_mmcif.hpp> // make_mmcif_document
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#include <gemmi/to_cif.hpp> // write_cif_to_stream
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#include <gemmi/to_pdb.hpp> // write_pdb
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#include <gemmi/polyheur.hpp> // setup_entities
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#include "../common/Logger.h"
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void WritePlacedModel(const gemmi::Structure &placed,
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const UnitCell &cell,
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const gemmi::SpaceGroup &space_group,
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const std::string &output_prefix,
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Logger &logger) {
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const std::string cif_path = output_prefix + "_model.cif";
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// PDB as well as mmCIF, because the fragment-screening tools this file exists for take a PDB:
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// PanDDA's per-dataset input is <name>.pdb beside <name>.mtz, and dimple produces the same pair.
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// Same coordinates, same frame, both formats - a PDB cannot hold every cell, so it is written
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// when it can be and skipped, with a line saying so, when it cannot.
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const std::string pdb_path = output_prefix + "_model.pdb";
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gemmi::Structure st = placed;
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// Not the model's own cell and group but the data's, taken from the same two values the reflection
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// files are written from. The coordinates already sit in this cell; what is set here is the label
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// the file carries, which must match the .mtz beside it - the enantiomorph in particular, since
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// --model can adopt the model's and that is neither the data's original label nor, necessarily,
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// the one the input model arrived with.
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st.cell = cell;
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st.spacegroup_hm = space_group.xhm();
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st.setup_cell_images();
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// Fills in entity types and label_asym_id for a model read from a PDB, which carries neither.
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// Both are no-ops where the input already had them, i.e. for an mmCIF input.
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// setup_entities and make_mmcif_document can both throw, and this runs BEFORE the reflection files
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// are written: a convenience deliverable must not be able to take the run's actual output with it.
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// The map writer does the same.
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try {
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gemmi::setup_entities(st);
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std::ofstream os(cif_path);
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gemmi::cif::write_cif_to_stream(os, gemmi::make_mmcif_document(st));
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if (!os) {
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logger.Error("Model validation: cannot write the placed model to {}", cif_path);
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return;
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}
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} catch (const std::exception &e) {
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logger.Warning("Model validation: could not write the placed model to {} ({})",
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cif_path, e.what());
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return;
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}
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bool pdb_written = false;
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try {
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std::ofstream os(pdb_path);
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gemmi::write_pdb(st, os);
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pdb_written = static_cast<bool>(os);
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} catch (const std::exception &e) {
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logger.Warning("Model validation: the placed model could not also be written as PDB ({}); "
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"{} has it", e.what(), cif_path);
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}
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logger.Info("Model validation: the model as placed against these data written to {}{} "
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"(cell and space group {} as in the reflection files)",
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cif_path, pdb_written ? " and " + pdb_path : "", space_group.short_name());
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}
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