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Jungfraujoch/writer/FileWriter.cpp
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leonarski_f 511be0c366
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v1.0.0-rc.165 (#75)
* `rugnux --model` adopts the model's space group as a label where the data were merged in its enantiomorph, instead of reindexing the reflections - which swapped I(+) with I(-).
* `rugnux --model` warns, naming the atom, when the anomalous density at the model's atoms comes out inverted, which means the data and the model are in opposite hands.
* `rugnux --model` writes an anomalous difference map (`<prefix>_anom.ccp4`) when the merge kept the Bijvoet split, and names the ten model atoms it peaks highest on as `ANOMALOUS_SITE_01`..`_10`.
* `MEAN_ATOM_DENSITY_SIGMA` is read from the map by cubic rather than linear interpolation and comes out around a tenth higher; it is no longer comparable with the figure earlier versions printed.
* `rugnux --model` reads an mmCIF coordinate file as well as a PDB one, gzipped or not, taking the format from the file's content rather than its name.
* A model `rugnux --model` cannot use is reported as a `WARNING:` line in the results report instead of only in the log.
* The rugnux results report has a `10. MODEL VALIDATION` section when `--model` was given; `REPORT_VERSION` is 4, `WARNINGS` moves to section 11 and no existing key changed.
* The rugnux results report records how the run was invoked, what it cost and what it ran on: `COMMAND_LINE=`, `WALL_TIME=` and `GPU_COUNT=` / `GPU=`.
* rugnux says which GPUs it can see before it starts processing.
* `rugnux --export-unmerged` also writes `<prefix>_unmerged.mtz` on a `--no-merge` run, and is ignored on a run with no output prefix instead of writing a file called `_unmerged.mtz`.
* `/start` asks the writer whether the run can be written before the detector is armed, so a run whose master file already exists, or whose output directory cannot be created, is refused up front with the writer's own message. This needs the TCP image stream or the built-in HDF5 writer; the ZeroMQ stream is unchanged.
* A calibration that fails goes to `Error` carrying the reason instead of `Inactive`, so `/wait_till_done` and `/wait_until_running` report it; a cancelled calibration still goes to `Inactive`.
* `/wait_till_done` answers 500 with the message when a collection ended in an error. A cancelled collection and a collection that only triggered a warning still answer 200.
* A pending start failure is discarded by `/cancel` and `/deactivate`, as it already was by `/start` and `/initialize`.
* `/scan_result` no longer reports the previous run's images after a collection that failed to start, or after `/deactivate`.
* The TCP image stream protocol version is 4. `jfjoch_writer` and `jfjoch_broker` have to be of the same release, as before.

Reviewed-on: #75
2026-08-27 22:16:54 +02:00

312 lines
12 KiB
C++

// SPDX-FileCopyrightText: 2024 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#include "FileWriter.h"
#include <filesystem>
#include <nlohmann/json.hpp>
#include "MakeDirectory.h"
#include "../common/CheckPath.h"
#include "../common/Logger.h"
#include "../common/JFJochException.h"
#include "JFJochDecompress.h"
FileWriter::FileWriter(const StartMessage &request, bool check_overwrite_at_start, bool trusted_path)
: start_message(request) {
if (start_message.file_format)
format = start_message.file_format.value();
if (start_message.images_per_file <= 0)
start_message.images_per_file = default_images_per_file;
// trusted_path skips the multi-user guard so an offline caller can write to an absolute path;
// MakeDirectory still runs (it handles absolute prefixes). See the constructor comment in the header.
if (!trusted_path)
CheckPath(start_message.file_prefix);
MakeDirectory(start_message.file_prefix);
if (check_overwrite_at_start)
CheckOutputFilesAvailable(start_message, format);
if (start_message.write_master_file && start_message.write_master_file.value()) {
switch (format) {
case FileWriterFormat::NXmxLegacy:
case FileWriterFormat::NXmxVDS:
case FileWriterFormat::NXmxIntegrated:
CreateHDF5MasterFile(request);
break;
default:
// Do nothing
break;
}
}
}
void FileWriter::Write(const DataMessage &msg) {
switch (format) {
case FileWriterFormat::DataOnly:
case FileWriterFormat::NXmxLegacy:
case FileWriterFormat::NXmxVDS:
case FileWriterFormat::NXmxIntegrated:
WriteHDF5(msg);
break;
case FileWriterFormat::NoFile:
// Do nothing
break;
}
}
void FileWriter::WriteHDF5(const DataMessage& msg) {
std::lock_guard<std::mutex> lock(hdf5_mutex);
if (msg.image.GetCompressedSize() == 0)
return;
if (msg.number < 0)
throw JFJochException(JFJochExceptionCategory::ArrayOutOfBounds, "No support for negative images");
if (format == FileWriterFormat::NXmxIntegrated && master_file) {
if (files.empty() )
files.resize(1);
if (!files[0]) {
files[0] = std::make_unique<HDF5DataFile>(start_message, 0, HDF5Metadata::MasterFileName(start_message));
files[0]->CreateFile(msg, master_file->GetFile());
}
files[0]->Write(msg, msg.number);
} else {
const uint64_t file_number = (start_message.images_per_file == 0) ? 0 : msg.number / start_message.images_per_file;
const uint64_t image_number = (start_message.images_per_file == 0) ? msg.number : msg.number % start_message.images_per_file;
if (closed_files.contains(file_number))
return;
if (files.size() <= file_number)
files.resize(file_number + 1);
if (!files[file_number])
files[file_number] = std::make_unique<HDF5DataFile>(start_message, file_number,
HDF5Metadata::DataFileName(start_message, file_number));
files[file_number]->Write(msg, image_number);
if (files[file_number]->GetNumImages() == start_message.images_per_file) {
CloseFile(file_number);
} else {
CloseOldFiles(static_cast<uint64_t>(msg.number));
}
}
}
void FileWriter::CloseFile(uint64_t file_number) {
if (file_number >= files.size())
return;
if (!files[file_number])
return;
if (closed_files.contains(file_number))
return;
auto file_stats = files[file_number]->Close();
files[file_number].reset();
closed_files.insert(file_number);
AddStats(file_stats);
}
void FileWriter::CloseOldFiles(uint64_t current_image_number) {
if (start_message.images_per_file == 0)
return;
for (uint64_t f = 0; f < files.size(); ++f) {
if (!files[f] || closed_files.contains(f))
continue;
const uint64_t file_end_image = (f + 1) * start_message.images_per_file - 1;
if (current_image_number > file_end_image + close_file_lag_images) {
CloseFile(f);
}
}
}
std::vector<HDF5DataFileStatistics> FileWriter::Finalize() {
std::lock_guard<std::mutex> lock(hdf5_mutex);
std::exception_ptr first_exception;
for (uint64_t f = 0; f < files.size(); ++f) {
if (files[f] && !closed_files.contains(f)) {
try {
CloseFile(f);
} catch (...) {
if (!first_exception)
first_exception = std::current_exception();
}
}
}
if (master_file) {
try {
master_file.reset();
} catch (...) {
if (!first_exception)
first_exception = std::current_exception();
}
}
if (first_exception)
std::rethrow_exception(first_exception);
return stats;
}
void FileWriter::AddStats(const std::optional<HDF5DataFileStatistics>& s) {
if (!s)
return;
stats.push_back(*s);
if (finalized_file_socket) {
nlohmann::json j;
j["filename"] = s->filename;
j["nimages"] = s->total_images;
j["file_number"] = s->file_number;
j["detector_distance_m"] = start_message.detector_distance;
j["beam_x_pxl"] = start_message.beam_center_x;
j["beam_y_pxl"] = start_message.beam_center_y;
j["pixel_size_m"] = start_message.pixel_size_x;
j["detector_width_pxl"] = start_message.image_size_x;
j["detector_height_pxl"] = start_message.image_size_y;
j["incident_energy_eV"] = start_message.incident_energy;
j["saturation"] = start_message.saturation_value;
j["sample_name"] = start_message.sample_name;
j["run_number"] = start_message.run_number;
j["run_name"] = start_message.run_name;
if (!start_message.experiment_group.empty())
j["experiment_group"] = start_message.experiment_group;
if (start_message.unit_cell) {
j["unit_cell"]["a"] = start_message.unit_cell->a;
j["unit_cell"]["b"] = start_message.unit_cell->b;
j["unit_cell"]["c"] = start_message.unit_cell->c;
j["unit_cell"]["alpha"] = start_message.unit_cell->alpha;
j["unit_cell"]["beta"] = start_message.unit_cell->beta;
j["unit_cell"]["gamma"] = start_message.unit_cell->gamma;
}
if (start_message.space_group_number)
j["space_group_number"] = start_message.space_group_number.value();
// The lowest VALID value, not the error marker. These were the same field until the marker
// became the value the pixels actually carry: for an unsigned image that is UINTx_MAX, and a
// consumer feeding this key into an XDS UNDERLOAD or a DIALS trusted range would then reject
// every pixel below 65535.
if (start_message.underload_value)
j["underload"] = start_message.underload_value.value();
j["user_data"] = start_message.user_data;
finalized_file_socket->Send(j.dump());
}
}
void FileWriter::SetupFinalizedFileSocket(const std::string &addr) {
finalized_file_socket = std::make_unique<ZMQSocket>(ZMQSocketType::Pub);
finalized_file_socket->Bind(addr);
}
std::optional<std::string> FileWriter::GetZMQAddr() {
if (finalized_file_socket) {
return finalized_file_socket->GetEndpointName();
} else
return {};
}
void FileWriter::CreateHDF5MasterFile(const StartMessage &msg) {
std::lock_guard<std::mutex> lock(hdf5_mutex);
master_file = std::make_unique<NXmx>(msg);
}
void FileWriter::CheckOutputFilesAvailable(const StartMessage &msg, FileWriterFormat format) {
if (msg.overwrite.value_or(false))
return;
// Checked only by the single writer that owns the master file (write_master_file - index 0 in
// a multi-writer TCP/ZMQ setup); every writer of a run shares the same output directory, so
// one of them answers for all of it.
if (!msg.write_master_file.value_or(false))
return;
const bool nxmx = format == FileWriterFormat::NXmxLegacy
|| format == FileWriterFormat::NXmxVDS
|| format == FileWriterFormat::NXmxIntegrated;
if (!nxmx)
return;
const std::string master_name = HDF5Metadata::MasterFileName(msg);
if (std::filesystem::exists(master_name))
throw JFJochException(JFJochExceptionCategory::FileWriteError,
"Output file already exists and overwrite is off: " + master_name);
if (format == FileWriterFormat::NXmxIntegrated)
return; // Data lives in the master file, already checked above.
// A data file in the way is refused too - this is the collision that used to slip past the
// pre-flight and only surface when the first colliding data file was renamed into place at
// the end of a fully-written run. Stat-ing every candidate name individually would cost one
// round trip per file: thousands of lookups for a long run with a small images_per_file, which
// on a network filesystem overruns the pre-flight's ACK budget. A single directory listing
// costs one round trip regardless of how many files the run will write, so collect what is
// actually there once and compare names in memory.
std::filesystem::path prefix_path(msg.file_prefix);
std::filesystem::path dir = prefix_path.has_parent_path() ? prefix_path.parent_path()
: std::filesystem::path(".");
std::unordered_set<std::string> existing;
for (const auto &entry : std::filesystem::directory_iterator(dir))
if (entry.is_regular_file())
existing.insert(entry.path().filename().string());
const int64_t images_per_file = (msg.images_per_file <= 0)
? static_cast<int64_t>(default_images_per_file) : msg.images_per_file;
const int64_t num_files = (static_cast<int64_t>(msg.number_of_images) + images_per_file - 1)
/ images_per_file;
for (int64_t file_number = 0; file_number < num_files; file_number++) {
const std::string name = HDF5Metadata::DataFileName(msg, file_number);
if (existing.contains(std::filesystem::path(name).filename().string()))
throw JFJochException(JFJochExceptionCategory::FileWriteError,
"Output file already exists and overwrite is off: " + name);
}
}
void FileWriter::Preflight(const StartMessage &request, bool trusted_path) {
if (!trusted_path)
CheckPath(request.file_prefix);
MakeDirectory(request.file_prefix);
FileWriterFormat format = FileWriterFormat::NXmxLegacy;
if (request.file_format)
format = request.file_format.value();
CheckOutputFilesAvailable(request, format);
}
void FileWriter::WriteHDF5(const CompressedImage &msg) {
if (master_file) {
std::lock_guard<std::mutex> lock(hdf5_mutex);
try {
master_file->WriteCalibration(msg);
} catch (const JFJochException &e) {
spdlog::error("Calibration {} not written {}", msg.GetChannel(), e.what());
}
}
}
void FileWriter::WriteHDF5(const EndMessage &msg) {
if (master_file) {
std::lock_guard<std::mutex> lock(hdf5_mutex);
if (format == FileWriterFormat::NXmxIntegrated) {
try {
CloseFile(0);
} catch (...) {
throw;
}
}
master_file->Finalize(msg);
}
}