Files
Jungfraujoch/image_analysis/indexing/PostIndexingRefinement.h
T
leonarski_fandClaude Opus 4.8 3e3545770f indexing: check candidate angles against the reference cell in Refine()
When a reference cell is supplied, PostIndexingRefinement::Refine() vetted
candidates on sorted edge lengths only; a cell with the right edges but a wrong
angle (a pseudo-symmetric near-metric, e.g. a monoclinic beta refined to the
wrong value) passed. Add a sorted-angle check against the reference, folding
each angle to its acute complement min(x,180-x) so the obtuse/acute setting
choice is irrelevant (tolerance 10 deg).

Reference-cell path only (no effect de novo, where reference_unit_cell is null):
the /data/rotation_test battery is byte-identical (22/25), and NmHR with the
correct C2 cell is unchanged (9.1%, beta~131.7). A latent guard against
wrong-angle cells slipping through on -C / reference-MTZ runs.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-15 19:47:29 +02:00

39 lines
1.5 KiB
C++

// SPDX-FileCopyrightText: 2025 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#pragma once
#include <vector>
#include <optional>
#include <algorithm>
#include <cmath>
#include <cstdint>
#include <Eigen/Dense>
#include "../common/CrystalLattice.h"
constexpr float REFINE_CANDIDATE_SPOT_COUNT_RATIO_THRESHOLD = 0.9f;
constexpr float REFINE_CANDIDATE_VOLUME_RATIO_THRESHOLD = 1.05f;
constexpr float REFINE_CANDIDATE_OVERLAP_RATIO_THRESHOLD = 0.4f;
constexpr float REFINE_MIN_VOLUME_EPSILON = 1e-12f;
constexpr float REFINE_MIN_REFERENCE_LENGTH_EPSILON = 1e-6f;
// Max deviation (deg) of a candidate cell angle from the reference cell angle, compared after
// folding both to the acute complement (min(x,180-x)) so the obtuse/acute setting is irrelevant.
constexpr float REFINE_ANGLE_TOLERANCE_VS_REFERENCE_DEG = 10.0f;
struct RefineParameters {
int64_t viable_cell_min_spots;
float dist_tolerance_vs_reference;
std::optional<UnitCell> reference_unit_cell;
float min_length_A;
float max_length_A;
float min_angle_deg;
float max_angle_deg;
float indexing_tolerance;
};
std::vector<CrystalLattice> Refine(const std::vector<Coord> &in_spots,
size_t nspots,
Eigen::MatrixX3<float> &oCell,
Eigen::VectorX<float> &scores,
RefineParameters &p);