Both were opt-in adaptive-spot refinements that did not help. Soft per-spot weighting was index-rate neutral across the battery (re-ranking only bites when spots exceed the max-spot cap, which weak serial data does not reach). The local-SNR gate was neutral on index rate and degraded merged CC1/2 on flooded XFEL data. Drops the flags, ApplyWeights/FilterByLocalSNR, the per-spot weight field, and the by-weight FilterSpotsByCount branch (now strongest-first only). --adaptive-spots itself is unchanged. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
36 lines
1.4 KiB
C++
36 lines
1.4 KiB
C++
// SPDX-FileCopyrightText: 2025 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
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// SPDX-License-Identifier: GPL-3.0-only
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#pragma once
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#include "../../common/DiffractionSpot.h"
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void GenerateSpotPlot(DataMessage &msg, const std::vector<SpotToSave> &spots, float d_min_A);
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void CountSpots(DataMessage &msg,
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const DiffractionExperiment& experiment,
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const std::vector<DiffractionSpot> &spots,
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float d_min_A);
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void CountSpots(DataMessage &msg,
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const std::vector<SpotToSave> &spots,
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float d_min_A);
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void MarkIceRings(std::vector<SpotToSave> &spots, float tolerance_q_recipA);
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void FilterSpotsByCount(std::vector<SpotToSave> &input, int64_t count);
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void FilterSpuriousHighResolutionSpots(std::vector<SpotToSave> &spots, float threshold);
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// Ignore high res. spots if there is a gap in (1/d) between two spots of dist_threshold (default: 0.25 A^-1)
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// For less than 4 spots - don't provide resolution estimation
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// For less than 20 spots - take the third best high resolution
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// For 20 spots or more - take the 95% percentile best high resolution spot
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std::optional<float> GetResolution(const std::vector<SpotToSave> &spots);
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void SpotAnalyze(const DiffractionExperiment &experiment,
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const SpotFindingSettings &settings,
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const std::vector<DiffractionSpot> &spots,
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DataMessage &message);
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