The unmerged observations already leave a run as the unmerged MTZ (and the scaled fulls as the .hkl), and deposition does not come straight from rugnux, so the _diffrn_refln block made the .cif up to ten times larger for no consumer. The .cif is one data block again; the keys, software rows, metadata, R_merge/R_pim/CC* and provenance stay. ScaledFull loses the scale and frame it carried only for that block. Co-Authored-By: Claude Opus 5.5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01SVmAWnzCmRKAXVUCdc4iNi
114 lines
6.2 KiB
C++
114 lines
6.2 KiB
C++
// SPDX-FileCopyrightText: 2025 Paul Scherrer Institute
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// SPDX-License-Identifier: GPL-3.0-only
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#pragma once
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#include <string>
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#include <vector>
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#include "../common/Reflection.h"
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#include "../common/UnitCell.h"
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#include "../common/DiffractionExperiment.h"
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#include "IntegrationOutcome.h"
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#include <gemmi/mtz.hpp>
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struct MergeStatistics;
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struct TwinningAnalysisResult;
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// The error model as it is reported, already formatted. `isa` is the whole-range 1/sqrt(a*b), the
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// same quantity XDS's ISa denotes, so a file written here is directly comparable with a CORRECT.LP;
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// `isa_asymptotic` is the strong-reflection tier, which only the rotation path has. `a` and `b` are
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// in XDS's convention, sigma^2 = a*(sigma0^2 + b*I^2). Empty strings are written as unknown.
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struct ErrorModelReport {
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std::string isa;
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std::string isa_asymptotic;
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std::string a;
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std::string b;
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};
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// What the reflection files record about where they came from, beyond the experiment itself and the
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// Rugnux version and commit: the MTZ HISTORY records and the mmCIF's _software and
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// _jfjoch_provenance. Empty strings are left out.
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struct OutputProvenance {
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std::string command_line;
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std::string input_file; // the input as found on disk, absolute
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std::string input_identity; // a cheap identifier of it: size and modification time
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std::string collection_date; // as the input states it (NXmx /entry/start_time), ISO-8601
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};
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// The merged reflections, their statistics and the experiment, as one PDBx/mmCIF data block.
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// nthreads: workers for the per-reflection row formatting, which is the bulk of the file.
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void WriteMmcifReflections(const std::vector<MergedReflection> &reflections,
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const UnitCell &unitCell,
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const DiffractionExperiment &experiment,
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const MergeStatistics &statistics,
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const ErrorModelReport &error_model,
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const TwinningAnalysisResult &twinning,
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const OutputProvenance &provenance,
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const std::string &filename,
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size_t nthreads);
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void WriteMtzReflections(const std::vector<MergedReflection> &reflections,
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const UnitCell &unitCell,
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const DiffractionExperiment &experiment,
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const OutputProvenance &provenance,
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const std::string &filename);
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// SHELX HKLF-4 text file, FORMAT(3I4,2F8.2) h k l I sigma(I), scaled so the largest value fits the
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// field, ended by a 0 0 0 record. nthreads: workers for the row formatting, as for the mmCIF.
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// Merged reflections, Bijvoet mates as separate records (the stills output).
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void WriteShelxHklReflections(const std::vector<MergedReflection> &reflections,
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const DiffractionExperiment &experiment,
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const std::string &filename,
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size_t nthreads);
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// Unmerged scaled fulls, one record each at its measured index (the rotation output).
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void WriteShelxHklReflections(const std::vector<ScaledFull> &fulls,
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const std::string &filename,
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size_t nthreads);
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// Unmerged observations in the column and batch-header layout POINTLESS writes: aimless, pointless,
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// careless and iotbx.merging_statistics all read that layout. H K L are the ASU indices and M/ISYM
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// recovers the index the reflection was measured at (which is what careless needs to see the crystal
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// frame) and says whether the observation is a partial.
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// sum_partials: add the partials of each rocking event into one full, written at the batch of the
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// event's centroid with the summed rocking-curve fraction in FRACTIONCALC - the plain sum every
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// rotation program writes, over the events the combine would assemble (--min-partiality). False
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// writes one row per integrated box instead, flagged as partials for the reading program to sum.
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// Stills have no rocking events and are unaffected either way.
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// The intensities carry the deterministic per-reflection corrections and nothing else - Lorentz
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// and polarization in LP, the sensor's angle-dependent efficiency in QE, and the attenuation of the
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// flight-path medium in FLIGHT - so raw counts are I / LP * QE * FLIGHT. The partiality and the
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// per-image scale are left for the reading program to fit, since every program this file is for
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// fits a scale model of its own.
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void WriteUnmergedMtzReflections(const std::vector<IntegrationOutcome> &outcomes,
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const UnitCell &unitCell,
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const DiffractionExperiment &experiment,
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bool sum_partials,
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const OutputProvenance &provenance,
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const std::string &filename,
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size_t nthreads = 1);
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// The same file in two steps, for a caller that builds it while the outcomes' per-image scale fields
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// are still being written: UnmergedMtz reads everything but mosaicity_deg, which
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// SetUnmergedMtzMosaicity then copies into the batch headers. The Mtz points at the experiment's space
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// group, so the experiment has to outlive it.
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gemmi::Mtz UnmergedMtz(const std::vector<IntegrationOutcome> &outcomes,
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const UnitCell &unitCell,
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const DiffractionExperiment &experiment,
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bool sum_partials,
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const OutputProvenance &provenance,
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size_t nthreads = 1);
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void SetUnmergedMtzMosaicity(gemmi::Mtz &mtz, const std::vector<IntegrationOutcome> &outcomes);
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void WriteReflections(const std::vector<MergedReflection> &reflections,
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const UnitCell &unitCell,
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const DiffractionExperiment &experiment,
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const MergeStatistics &statistics,
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const ErrorModelReport &error_model,
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const TwinningAnalysisResult &twinning,
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const OutputProvenance &provenance,
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const std::string &filename,
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size_t nthreads,
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const std::vector<ScaledFull> *scaled_fulls = nullptr);
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