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1093ec0ec7 jfjoch_writer: Minor change to how text is written, not sure if this will have practical effect
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2025-11-08 14:21:25 +01:00
8609fae991 jfjoch_viewer: JFJochImage works fine (though performance is unlikely improved much)
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2025-11-07 20:55:16 +01:00
f48eb44f2a jfjoch_viewer: JFJochImage work in progress to improve performance (at least a bit)
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2025-11-07 19:41:16 +01:00
6a62501ba7 jfjoch_viewer: JFJochImage work in progress to standarize things 2025-11-07 18:48:59 +01:00
054175cbf3 jfjoch_viewer: JFJochImage work in progress to standarize things 2025-11-07 18:48:56 +01:00
3f68ffd05a jfjoch_viewer: Simplify JFJochSimpleImage 2025-11-07 18:07:54 +01:00
b694c03e85 jfjoch_viewer: add pixel overlay class (to be integrated later)
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2025-11-07 16:56:47 +01:00
b4920ca0c2 jfjoch_viewer: finally JFJochImage properly handles ROI (just need to implement calculations in calibration viewer) 2025-11-07 16:56:23 +01:00
9ab4267939 jfjoch_viewer: code for image viewer is nicer, but it doesn't work :) 2025-11-07 16:49:02 +01:00
b484261f64 jfjoch_viewer: going there with handling resize, but still far from perfect 2025-11-07 16:36:19 +01:00
bb58849543 jfjoch_viewer: mouse events are handled by JFJochImage, but this is not working properly for neither of the modes (TBD) 2025-11-07 16:11:34 +01:00
1f37bb3fd6 jfjoch_viewer: Work in (slow) progress
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2025-11-07 13:56:43 +01:00
f61401b704 jfjoch_viewer: Work in (slow) progress
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2025-11-07 13:45:15 +01:00
df9f980ea6 jfjoch_viewer: Work in (slow) progress 2025-11-07 13:16:04 +01:00
d29cc52e64 jfjoch_viewer: MouseEventType harmonized between image viewers 2025-11-07 12:57:27 +01:00
8ad5bc9a7f jfjoch_viewer: Merging simple and diffraction images - work in progress 2025-11-07 12:17:53 +01:00
2fa7ca7fad jfjoch_viewer: Rename Image views to give more consistency. Continue merging code 2025-11-07 12:13:32 +01:00
ae6574d3ec jfjoch_viewer: Combine Simple image viewer and DiffractionImageViewer into one parent class 2025-11-07 12:06:18 +01:00
77fd916c96 jfjoch_viewer: Add a bit more logic into the file placement (still too chaotic) 2025-11-07 11:18:31 +01:00
497c49411c jfjoch_viewer: Sort on ice ring/indexed columns in spot list 2025-11-07 10:49:23 +01:00
9b13343f6b jfjoch_viewer: Simplify code to handle extra images 2025-11-07 10:45:54 +01:00
8b1ea5a667 jfjoch_viewer: add helper class for window in the viewer (to simplify tasks in the future) 2025-11-07 09:51:19 +01:00
b2721f56be jfjoch_viewer: Calibration window uses feature color
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2025-11-06 16:57:23 +01:00
ae0fa344f1 jfjoch_viewer: Calibration working; ROI is super slow (need to clean-up the code!!!!)
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2025-11-06 16:50:46 +01:00
ceeff2279b jfjoch_viewer: Work in progress
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2025-11-06 16:27:07 +01:00
8d51bfd97d jfjoch_viewer: Add ROI to calibration window (doesn't work very well, but as an experimental feature why not) 2025-11-06 16:18:19 +01:00
ff4103fcc5 jfjoch_viewer: Add calibration viewer (WIP) 2025-11-06 16:11:33 +01:00
003e2f0a8e jfjoch_viewer: Add calibration viewer 2025-11-06 16:01:37 +01:00
4be250a489 JFJochHDF5Reader: Add ReadCalibration() function
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2025-11-06 12:07:03 +01:00
9fe57e4053 JFJochHDF5Reader: Read calibration entries 2025-11-06 11:58:33 +01:00
c19803ad69 jfjoch_viewer: Split toolbar into two (image and display), allow to change background (not perfect, but...) 2025-11-06 11:31:44 +01:00
9235d1d4bc jfjoch_viewer: Slightly increase precision of resolution of powder rings (4 digits) 2025-11-06 11:02:14 +01:00
5cbd015924 jfjoch_viewer: Add button to show calibrant powder rings 2025-11-06 11:00:37 +01:00
ec391e21dd jfjoch_viewer: Show 15 rings for calibrant 2025-11-06 10:51:53 +01:00
35dcbd1971 jfjoch_viewer: Don't show diffraction rings entirely outside of the detector 2025-11-06 10:49:54 +01:00
2b372ba794 jfjoch_viewer: Clean-up user interface (let's follow if it is not too crowded) 2025-11-06 10:44:00 +01:00
76d4e04b90 Redo
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2025-11-05 21:05:09 +01:00
b90ad03565 PixelMask: Missed LoadMask()
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2025-11-05 19:36:37 +01:00
b2e4a8ec94 Fix Qt include
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2025-11-05 15:41:02 +01:00
4ff464e5d4 jfjoch_viewer: Some placement improvement
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2025-11-05 15:20:49 +01:00
f5bde00175 jfjoch_viewer: Adjustments to the code
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2025-11-05 15:10:53 +01:00
44cfbdd8b4 PixelMask: Don't cache statistics, only calc when needed + add extra categories 2025-11-05 14:56:48 +01:00
1f97131d45 jfjoch_viewer: Add more mask functionality 2025-11-05 14:38:48 +01:00
d793520d39 jfjoch_viewer: Remove right click menu for JFJochViewerImage 2025-11-05 13:49:28 +01:00
f049d558ec ROIElement: Remove toString() 2025-11-05 13:48:00 +01:00
1e255a3ada jfjoch_viewer: ROI can be configured more flexibly 2025-11-05 13:45:55 +01:00
a0840f860d jfjoch_viewer: ROI panel (work in progress) 2025-11-05 12:54:01 +01:00
78d4f21d4b jfjoch_viewer: Extra panel for ROI (tbd) 2025-11-05 11:58:20 +01:00
b15d06c1b0 JFJochReaderImage: Add ROI description 2025-11-05 11:47:12 +01:00
02b3e66456 ROIElement: toString() function 2025-11-05 11:44:59 +01:00
c87d0656f4 Frontend: Fix vite version due to vulnerability
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2025-11-05 10:50:22 +01:00
ae0d18e3dd VERSION: 1.0.0-rc.97 2025-11-05 10:49:18 +01:00
492fdca83b Documentation update for dark mask 2025-11-05 10:46:44 +01:00
213cac7765 OpenAPI: Dark mask settings can be configured through the API 2025-11-05 10:44:25 +01:00
543e319d52 DiffractionExperiment: Dark mask settings are separate from detector settings (not sure still what is the best solution...) 2025-11-05 10:14:52 +01:00
1dfe08a141 JFJochStateMachine: Implement improved calibration routines (to be field tested) 2025-11-05 10:06:24 +01:00
96de9e41ea JFJochServices: Take calibration as pointer (it can be nullptr) 2025-11-05 09:16:00 +01:00
74a55d8bc9 DectrisSimplonClient: counting_mode retrigger for standard, normal for dark mask data taking
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2025-11-05 07:55:56 +01:00
4c9ce8a420 JFJochStateMachine: Slowly implement dark mask data taking into the workflow 2025-11-05 07:51:03 +01:00
39cb3907bd JFJochReceiverLite: Dark mask analysis integrated and tested 2025-11-05 07:41:59 +01:00
2fb98a700a JFJochReceiverLite: Fix wrong include 2025-11-05 07:09:44 +01:00
a6020c00ca JFJochReceiverLite: Implement dark mask analysis (experimental, not tested)
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2025-11-05 06:50:34 +01:00
8309643b95 MaskDarkAnalysis: Change GetMask() function 2025-11-05 06:36:06 +01:00
624158f412 DiffractionExperiment: Improve DarkMask mode behavior 2025-11-05 06:32:38 +01:00
b219ce4489 DarkMaskSettings: Add
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2025-11-04 17:01:11 +01:00
84f1ca2dcd MaskDarkAnalysis: Add 2025-11-04 16:39:33 +01:00
5667a9ee65 PixelMask: Add option to include DECTRIS pixel mask and load additional mask from dark measurement 2025-11-04 16:29:31 +01:00
8b356a7001 v1.0.0-rc.96 (#1)
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This is an UNSTABLE release.

* Fixes in CI pipeline
* jfjoch_broker: Remove PNG preview, no dependency on libpng
* jfjoch_writer: Fix UTC timestamp being generated wrong (mix between milli- and microseconds)
* jfjoch_viewer: Show data collection time in dataset tooltip
* jfjoch_viewer: Allow to choose the calibrant (presets for LaB6 and silver behenate)
* jfjoch_viewer: Auto foreground value
* Use external libjpeg-turbo and libtiff: simpler build stack, these are built and linked statically in automated Docker builds
* Remove OpenBLAS dependency

Reviewed-on: #1
Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
Co-committed-by: Filip Leonarski <filip.leonarski@psi.ch>
2025-11-02 13:45:57 +01:00
effe97a970 Merge branch '2510-fix-docker' into 'main'
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v1.0.0-rc.95

See merge request jungfraujoch/nextgendcu!184
2025-10-28 16:44:05 +01:00
189f84be53 v1.0.0-rc.95 2025-10-28 16:44:04 +01:00
dba07eae26 Merge branch '2510-viewer-3D' into 'main'
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v1.0.0-rc.94

See merge request jungfraujoch/nextgendcu!183
2025-10-25 22:05:47 +02:00
b2abb0f92b v1.0.0-rc.94 2025-10-25 22:05:47 +02:00
58144995e0 Merge branch '2510-fix-CI' into 'main'
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v1.0.0-rc.93

See merge request jungfraujoch/nextgendcu!182
2025-10-23 15:48:46 +02:00
0b480f762c v1.0.0-rc.93 2025-10-23 15:48:46 +02:00
08d49baa29 Merge branch '2510-pred-err' into 'main'
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v1.0.0-rc.92

See merge request jungfraujoch/nextgendcu!181
2025-10-23 09:05:11 +02:00
fb9462f67b v1.0.0-rc.92 2025-10-23 09:05:11 +02:00
7951e59359 Merge branch '2510-fpga-clamp' into 'main'
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v1.0.0-rc.91

See merge request jungfraujoch/nextgendcu!180
2025-10-20 20:43:44 +02:00
061152279c v1.0.0-rc.91 2025-10-20 20:43:44 +02:00
6524365ffa Merge branch '2510-rc.90' into 'main'
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v1.0.0-rc.90

See merge request jungfraujoch/nextgendcu!179
2025-10-02 15:55:39 +02:00
c44a07aac2 v1.0.0-rc.90 2025-10-02 15:55:39 +02:00
e69b836317 Merge branch '2510-rc.89' into 'main'
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1.0.0-rc.89

See merge request jungfraujoch/nextgendcu!178
2025-10-01 22:54:40 +02:00
14f5051692 1.0.0-rc.89 2025-10-01 22:54:40 +02:00
fae0d06500 Merge branch '2510-rc.88' into 'main'
1.0.0.rc-88

See merge request jungfraujoch/nextgendcu!177
2025-10-01 11:18:10 +02:00
a48d8fb5b9 1.0.0.rc-88 2025-10-01 11:18:10 +02:00
dc4a1ee9e6 Merge branch '2509.rc.87' into 'main'
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1.0.0-rc.87

See merge request jungfraujoch/nextgendcu!176
2025-09-30 20:43:54 +02:00
99b7dc07f7 1.0.0-rc.87 2025-09-30 20:43:53 +02:00
79c3b3c5ea Merge branch '2509-eiger-restart' into 'main'
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1.0.0-rc.86

See merge request jungfraujoch/nextgendcu!175
2025-09-27 12:29:56 +02:00
27c4a426a2 1.0.0-rc.86 2025-09-27 12:29:56 +02:00
9d3e3944a3 Merge branch '2509-viewer-plot-switching-problem' into 'main'
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v1.0.0-rc.85

See merge request jungfraujoch/nextgendcu!174
2025-09-24 22:52:31 +02:00
5bb8898a0e v1.0.0-rc.85 2025-09-24 22:52:31 +02:00
961d6b42a0 Merge branch '2509-rc.84' into 'main'
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1.0.0-rc.84

See merge request jungfraujoch/nextgendcu!173
2025-09-23 14:18:35 +02:00
7c31e9d35d 1.0.0-rc.84 2025-09-23 14:18:35 +02:00
53dfb83459 CI: Build RPMs for sls-det9, but don't upload (handle only via gitea) 2025-09-23 13:13:19 +02:00
21bac6169f SLSDetectorWrapper: Write which detector is initialized 2025-09-23 13:12:11 +02:00
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4b9b0dfe8b Merge branch '2509-rc.83' into 'main'
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1.0.0-rc.83

See merge request jungfraujoch/nextgendcu!172
2025-09-22 23:14:14 +02:00
6385d8cd6a 1.0.0-rc.83 2025-09-22 23:14:14 +02:00
660d2abad1 Merge branch '2509-rc.82' into 'main'
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v1.0.0-rc.82

See merge request jungfraujoch/nextgendcu!171
2025-09-22 19:49:39 +02:00
c0bd8e1215 v1.0.0-rc.82 2025-09-22 19:49:39 +02:00
c218661553 Merge branch '2509-viewer-bit-more' into 'main'
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v1.0.0-rc.81

See merge request jungfraujoch/nextgendcu!170
2025-09-21 19:27:51 +02:00
5d9d2de4a4 v1.0.0-rc.81 2025-09-21 19:27:51 +02:00
3ded4cd3ce Merge branch '2509-plot-nan' into 'main'
v1.0.0-rc.80

See merge request jungfraujoch/nextgendcu!168
2025-09-16 10:40:33 +02:00
7106bd80e9 v1.0.0-rc.80 2025-09-16 10:40:32 +02:00
e8cc528714 Merge branch '2509-nxmx-fix' into 'main'
v1.0.0-rc.79

See merge request jungfraujoch/nextgendcu!167
2025-09-15 21:38:58 +02:00
caf2a9de4f v1.0.0-rc.79 2025-09-15 21:38:58 +02:00
0e31023da0 Merge branch '2509-viewer-performance' into 'main'
v1.0.0-rc.78

See merge request jungfraujoch/nextgendcu!166
2025-09-14 15:59:58 +02:00
418d4957cf v1.0.0-rc.78 2025-09-14 15:59:58 +02:00
39367f7080 Merge branch '2509-integration-development' into 'main'
2509 integration development

See merge request jungfraujoch/nextgendcu!165
2025-09-12 15:21:38 +02:00
3c17ce3b0b 2509 integration development 2025-09-12 15:21:38 +02:00
8c8be007ce Merge branch '2509-viewer-fixes' into 'main'
v1.0.0-rc.76

See merge request jungfraujoch/nextgendcu!164
2025-09-11 14:37:16 +02:00
20cd8dc4ac v1.0.0-rc.76 2025-09-11 14:37:16 +02:00
a7c92923ec Bugfix to rc.75 2025-09-11 09:58:03 +02:00
ea1a9bc68a VERSION: 1.0.0-rc.75 2025-09-11 09:02:36 +02:00
e7a89e1209 DectrisSimplonClient: EIGER2 missing min threshold 2025-09-11 09:00:29 +02:00
a19531ba70 Merge branch '2509-eiger-fix' into 'main'
v1.0.0-rc.74

See merge request jungfraujoch/nextgendcu!163
2025-09-10 12:33:39 +02:00
c936e9bab7 v1.0.0-rc.74 2025-09-10 12:33:39 +02:00
7e6f1933d2 Merge branch '2509-rc.73' into 'main'
v1.0.0-rc.73

See merge request jungfraujoch/nextgendcu!162
2025-09-09 11:24:20 +02:00
a0fee8aec0 v1.0.0-rc.73 2025-09-09 11:24:19 +02:00
e36bac7589 Merge branch '2509-refinement' into 'main'
v1.0.0-rc.72

See merge request jungfraujoch/nextgendcu!161
2025-09-08 20:28:59 +02:00
c67337cfe1 v1.0.0-rc.72 2025-09-08 20:28:59 +02:00
6c88c6902e Merge branch '2508-viewer' into 'main'
v1.0.0-rc.71

See merge request jungfraujoch/nextgendcu!160
2025-08-28 07:07:01 +02:00
dba807fadd v1.0.0-rc.71 2025-08-28 07:07:01 +02:00
4e3b54f0b0 Merge branch '2508-1.0.0-rc.70' into 'main'
v1.0.0-rc.70

See merge request jungfraujoch/nextgendcu!159
2025-08-27 06:21:10 +02:00
bb32f27635 v1.0.0-rc.70 2025-08-27 06:21:10 +02:00
06978efe6b Merge branch '2508-calibration' into 'main'
v1.0.0-rc.69

See merge request jungfraujoch/nextgendcu!158
2025-08-17 21:21:20 +02:00
fa95858008 v1.0.0-rc.69 2025-08-17 21:21:20 +02:00
f98402043b Merge branch '2508-det-settings' into 'main'
v1.0.0-rc.68

See merge request jungfraujoch/nextgendcu!157
2025-08-16 19:59:27 +02:00
20973792e4 v1.0.0-rc.68 2025-08-16 19:59:27 +02:00
764ca111e2 Merge branch '2507-ssl-2' into 'main'
v1.0.0-rc.67

See merge request jungfraujoch/nextgendcu!156
2025-08-11 11:14:00 +02:00
a32cec3404 v1.0.0-rc.67 2025-08-11 11:13:59 +02:00
4189fa3e3c Merge branch '2507-indexer-thread-pool-2' into 'main'
1.0.0-rc.66

See merge request jungfraujoch/nextgendcu!155
2025-07-18 11:42:39 +02:00
51cbef4c84 1.0.0-rc.66 2025-07-18 11:42:39 +02:00
d42c606e5d Merge branch '2507-remove-excessive-print' into 'main'
Fix to jfjoch_viewer excessive printing

See merge request jungfraujoch/nextgendcu!154
2025-07-17 10:49:31 +02:00
3955ddb257 Fix to jfjoch_viewer excessive printing 2025-07-17 10:49:31 +02:00
54264a435a Merge branch '2507-live-viewer' into 'main'
1.0.0-rc.65

See merge request jungfraujoch/nextgendcu!153
2025-07-16 20:19:48 +02:00
06c5b9cf7f 1.0.0-rc.65 2025-07-16 20:19:48 +02:00
5a6227230a Merge branch '2507-lite-perf' into 'main'
v1.0.0-rc.64

See merge request jungfraujoch/nextgendcu!152
2025-07-15 09:55:19 +02:00
be6d8ad0f5 v1.0.0-rc.64 2025-07-15 09:55:19 +02:00
554 changed files with 28549 additions and 8251 deletions

2
.gitattributes vendored Normal file
View File

@@ -0,0 +1,2 @@
*.mcs filter=lfs diff=lfs merge=lfs -text
*.mcs.gz filter=lfs diff=lfs merge=lfs -text

View File

@@ -0,0 +1,208 @@
name: Build Packages
on:
push:
branches:
- '**'
tags:
- '**'
pull_request:
workflow_dispatch:
inputs:
create_release:
type: boolean
description: 'Create release'
required: false
default: false
jobs:
build-rpm:
name: build:rpm (${{ matrix.distro }})
if: github.ref_type != 'workflow_dispatch'
runs-on: ${{ matrix.runner }}
strategy:
fail-fast: false
matrix:
include:
- runner: jfjoch_rocky8
distro: rocky8
cmake_flags: -DJFJOCH_USE_CUDA=ON
pkg_glob: "*.rpm"
upload_url: https://gitea.psi.ch/api/packages/mx/rpm/centos/el8/slsdet8-cuda12/upload
- runner: jfjoch_rocky8
distro: rocky8_sls9
cmake_flags: -DJFJOCH_USE_CUDA=ON -DSLS9=ON
pkg_glob: "*.rpm"
upload_url: https://gitea.psi.ch/api/packages/mx/rpm/centos/el8/slsdet9-cuda12/upload
- runner: jfjoch_rocky8
distro: rocky8_nocuda
cmake_flags: -DJFJOCH_USE_CUDA=OFF
pkg_glob: "*.rpm"
upload_url: https://gitea.psi.ch/api/packages/mx/rpm/centos/el8/slsdet8-nocuda/upload
- runner: jfjoch_rocky9
distro: rocky9
cmake_flags: -DJFJOCH_USE_CUDA=ON
pkg_glob: "*.rpm"
upload_url: https://gitea.psi.ch/api/packages/mx/rpm/centos/el9/slsdet8-cuda13/upload
- runner: jfjoch_rocky9
distro: rocky9_nocuda
cmake_flags: -DJFJOCH_USE_CUDA=OFF
pkg_glob: "*.rpm"
upload_url: https://gitea.psi.ch/api/packages/mx/rpm/centos/el9/slsdet8-nocuda/upload
- runner: jfjoch_ubuntu2204
distro: ubuntu2204
cmake_flags: -DJFJOCH_USE_CUDA=ON
pkg_glob: "*.deb"
upload_url: https://gitea.psi.ch/api/packages/mx/debian/pool/jammy/cuda13/upload
- runner: jfjoch_ubuntu2204
distro: ubuntu2204_nocuda
cmake_flags: -DJFJOCH_USE_CUDA=OFF
pkg_glob: "*.deb"
upload_url: https://gitea.psi.ch/api/packages/mx/debian/pool/jammy/nocuda/upload
- runner: jfjoch_ubuntu2404
distro: ubuntu2404
cmake_flags: -DJFJOCH_USE_CUDA=ON
pkg_glob: "*.deb"
upload_url: https://gitea.psi.ch/api/packages/mx/debian/pool/noble/cuda13/upload
- runner: jfjoch_ubuntu2404
distro: ubuntu2404_nocuda
cmake_flags: -DJFJOCH_USE_CUDA=OFF
pkg_glob: "*.deb"
upload_url: https://gitea.psi.ch/api/packages/mx/debian/pool/noble/nocuda/upload
steps:
- uses: actions/checkout@v4
- name: Build packages
shell: bash
run: |
mkdir -p build
cd build
cmake -G Ninja -DJFJOCH_INSTALL_DRIVER_SOURCE=ON -DJFJOCH_VIEWER_BUILD=ON -DCMAKE_BUILD_TYPE=Release ${{ matrix.cmake_flags }} ..
ninja frontend
ninja -j16 package
- name: Upload packages
if: github.ref_type == 'tag'
shell: bash
env:
TOKEN: ${{ secrets.PIP_REPOSITORY_API_TOKEN }}
run: |
set -euo pipefail
cd build
shopt -s nullglob
files=(${{ matrix.pkg_glob }})
if [ ${#files[@]} -eq 0 ]; then
echo "No package files found for pattern: ${{ matrix.pkg_glob }}"
exit 1
fi
for file in "${files[@]}"; do
echo "Uploading $file -> ${{ matrix.upload_url }}"
curl --fail --user __token__:"$TOKEN" --upload-file "$file" "${{ matrix.upload_url }}"
done
cd ..
if [ "${{ matrix.distro }}" = "rocky8_nocuda" ]; then
for file in build/jfjoch-viewer*.rpm build/jfjoch-writer*rpm; do
python3 gitea_upload_file.py "$file"
done
elif [ "${{ matrix.distro }}" = "rocky9_nocuda" ]; then
for file in build/jfjoch-viewer*.rpm build/jfjoch-writer*rpm; do
python3 gitea_upload_file.py "$file"
done
elif [ "${{ matrix.distro }}" = "ubuntu2204_nocuda" ]; then
for file in build/jfjoch*viewer*.deb build/jfjoch*writer*.deb; do
python3 gitea_upload_file.py "$file"
done
fi
python-client:
name: Generate python client
runs-on: jfjoch_rocky8
steps:
- uses: actions/checkout@v4
- name: Build python client
shell: bash
run: bash gen_python_client.sh
- name: Upload Package to Gitea PyPI
if: github.ref_type == 'tag'
run: |
twine upload -u __token__ -p ${{ secrets.CI_PYPI_TOKEN }} --skip-existing dist/*
twine upload -u __token__ -p ${{ secrets.PIP_REPOSITORY_API_TOKEN }} --repository-url https://gitea.psi.ch/api/packages/mx/pypi dist/*
documentation:
name: Build documentation
runs-on: jfjoch_rocky8
steps:
- uses: actions/checkout@v4
- name: Build documentation
shell: bash
run: bash make_doc.sh
- name: Upload documentation
if: github.ref_type == 'tag'
shell: bash
run: |
git config --global user.email "filip.leonarski@psi.ch"
git config --global user.name "Filip Leonarski (Gitea)"
git checkout --orphan gitea-pages
git reset --hard
# Remove everything except .git and public
git clean -fdx -e public -e .git
# Move public contents to root and remove the now-empty public dir
shopt -s dotglob nullglob
mv public/* .
rm -rf public
git add .
git commit -m "Deploy site"
git push -f https://${{secrets.GITHUB_TOKEN}}@gitea.psi.ch/${{ github.repository }}.git gitea-pages
unit-tests:
name: Unit tests
runs-on: jfjoch_rocky8
if: github.ref_type != 'tag' && github.ref_type != 'workflow_dispatch'
container:
image: gitea.psi.ch/leonarski_f/jfjoch_rocky8:2511
options: --gpus all
timeout-minutes: 90
env:
CTEST_OUTPUT_ON_FAILURE: '1'
steps:
- uses: actions/checkout@v4
- name: Build tests
shell: bash
run: |
mkdir -p build
cd build
cmake -G Ninja -DCMAKE_BUILD_TYPE=Release ..
ninja -j48 jfjoch_test jfjoch_hdf5_test
- name: Run unit tests
shell: bash
run: |
cd build/tests
./jfjoch_test
- name: Run hdf5 test
shell: bash
run: |
cd build/tools
./jfjoch_hdf5_test ../../tests/test_data/compression_benchmark.h5
create-release:
name: Create release
runs-on: jfjoch_rocky8
if: github.event_name == 'workflow_dispatch' && (github.event.inputs.create_release == 'true' || github.event.inputs.create_release == true)
steps:
- uses: actions/checkout@v4
with:
persist-credentials: 'true' # Optional; should be the default
- name: Configure auth and fetch LFS
shell: bash
env:
GITEA_TOKEN: ${{ secrets.PIP_REPOSITORY_API_TOKEN }}
run: |
git lfs install --local
AUTH=$(git config --local http.${{ github.server_url }}/.extraheader)
git config --local --unset http.${{ github.server_url }}/.extraheader
git config --local http.${{ github.server_url }}/${{ github.repository }}.git/info/lfs/objects/batch.extraheader "$AUTH"
git lfs pull
- name: Create release
env:
TOKEN: ${{ secrets.PIP_REPOSITORY_API_TOKEN }}
shell: bash
run: |
python3 gitea_create_release.py

View File

@@ -5,23 +5,8 @@ stages:
- release
variables:
CMAKE_PREFIX_PATH: /opt/qt6
build:x86:gcc-11:
stage: build
variables:
CC: gcc
CXX: g++
tags:
- gcc
- x86
needs: []
script:
- mkdir build
- cd build
- source /opt/rh/gcc-toolset-11/enable
- cmake -DCMAKE_BUILD_TYPE=Release -DJFJOCH_VIEWER_BUILD=ON ..
- make -j48
PKG_CONFIG_PATH: /opt/openssl-3.5.4/lib/pkgconfig:/opt/openssl-3.5.4/lib64/pkgconfig
CMAKE_PREFIX_PATH: /opt/qt-6.9.0-static:/opt/eigen-3.4
build:x86:gcc-12:
stage: build
@@ -109,8 +94,8 @@ build:x86:python_client:
- bash gen_python_client.sh
artifacts:
paths:
- jfjoch_client-*whl
- jfjoch_client-*tar.gz
- dist/jfjoch_client-*whl
- dist/jfjoch_client-*tar.gz
expire_in: 1 week
build:x86:frontend:
@@ -145,7 +130,44 @@ build:x86:rpm:
- mv *.rpm ..
artifacts:
paths:
- "*.rpm"
- "jfjoch-*.rpm"
expire_in: 1 week
build:x86:rpm_nocuda:
stage: build
tags:
- x86
needs: []
script:
- mkdir build
- cd build
- source /opt/rh/gcc-toolset-12/enable
- cmake -DCMAKE_BUILD_TYPE=Release -DJFJOCH_INSTALL_DRIVER_SOURCE=ON -DJFJOCH_VIEWER_BUILD=ON -DJFJOCH_USE_CUDA=OFF ..
- make frontend
- make -j48 package
- mv *.rpm ..
artifacts:
paths:
- "jfjoch-viewer*.rpm"
expire_in: 1 week
build:x86:sls9:rpm:
stage: build
tags:
- x86
needs: []
script:
- mkdir build
- cd build
- source /opt/rh/gcc-toolset-12/enable
- cmake -DCMAKE_BUILD_TYPE=Release -DJFJOCH_INSTALL_DRIVER_SOURCE=OFF -DJFJOCH_VIEWER_BUILD=OFF -DSLS9=ON ..
- make frontend
- make -j48 package
- mv *.rpm ..
artifacts:
paths:
- "jfjoch-slsdet9*.rpm"
expire_in: 1 week
test:x86:gcc:
@@ -377,6 +399,8 @@ release:
dependencies:
- build:x86:frontend
- build:x86:rpm
- build:x86:rpm_nocuda
- build:x86:sls9:rpm
- build:x86:python_client
script:
- bash gitlab_upload_release.sh

View File

@@ -16,6 +16,9 @@ SET(JFJOCH_INSTALL_DRIVER_SOURCE OFF CACHE BOOL "Install kernel driver source (i
SET(JFJOCH_USE_CUDA ON CACHE BOOL "Compile Jungfraujoch with CUDA")
SET(JFJOCH_VIEWER_BUILD OFF CACHE BOOL "Compile Jungfraujoch viewer")
SET (ZLIB_USE_STATIC_LIBS TRUE)
OPTION(SLS9 "Build with sls_detector_package v9.2.0" OFF)
SET(BUILD_SHARED_LIBS OFF)
SET(BUILD_TESTING OFF)
@@ -32,30 +35,11 @@ SET(SLS_BUILD_SHARED_LIBRARIES OFF)
SET(BUILD_FAST_INDEXER OFF)
SET(BUILD_FAST_INDEXER_STATIC ON)
SET(HDF5_ENABLE_SZIP_SUPPORT OFF)
SET(HDF5_ENABLE_SZIP_ENCODING OFF)
SET(HDF5_BUILD_EXAMPLES OFF)
SET(HDF5_BUILD_CPP_LIB OFF)
SET(HDF5_ENABLE_Z_LIB_SUPPORT OFF)
SET(HDF5_EXTERNALLY_CONFIGURED 1)
# TIFF
SET(jbig OFF)
SET(zstd OFF)
SET(lzma OFF)
SET(jpeg OFF)
SET(old-jpeg OFF)
# PNG
set(PNG_SHARED OFF)
set(PNG_STATIC ON)
set(PNG_EXECUTABLES OFF)
set(PNG_TESTS OFF)
INCLUDE(CheckLanguage)
INCLUDE(CheckIncludeFile)
CHECK_LANGUAGE(CUDA)
SET(CMAKE_CUDA_ARCHITECTURES 70 75 80 86 89) # V100, T4, A100, RTX A4000, L4
SET(CMAKE_CUDA_ARCHITECTURES 75 80 86 89) # T4, A100, RTX A4000, L4
SET(CMAKE_CUDA_STANDARD 17)
SET(CMAKE_CUDA_FLAGS_RELEASE "-O3")
@@ -65,6 +49,7 @@ IF (CMAKE_CUDA_COMPILER)
IF (JFJOCH_USE_CUDA)
ENABLE_LANGUAGE(CUDA)
FIND_PACKAGE(CUDAToolkit REQUIRED)
SET(CMAKE_CUDA_RUNTIME_LIBRARY Static)
MESSAGE(STATUS "CUDA VERSION: ${CMAKE_CUDA_COMPILER_VERSION}")
ADD_COMPILE_DEFINITIONS(JFJOCH_USE_CUDA)
FIND_LIBRARY(CUDART_LIBRARY cudart_static PATHS ${CMAKE_CUDA_IMPLICIT_LINK_DIRECTORIES} REQUIRED)
@@ -74,6 +59,14 @@ IF (CMAKE_CUDA_COMPILER)
ENDIF()
ENDIF()
FIND_LIBRARY(FFTWF_LIBRARY NAMES libfftw3f.a libfftw3f.so fftw3f DOC "FFTW single-precision library"
PATHS /usr/lib /usr/lib64 /usr/lib/x86_64-linux-gnu/)
CHECK_INCLUDE_FILE(fftw3.h HAS_FFTW3_H)
IF(HAS_FFTW3_H AND FFTWF_LIBRARY)
ADD_COMPILE_DEFINITIONS(JFJOCH_USE_FFTW)
ENDIF()
INCLUDE_DIRECTORIES(include)
INCLUDE(CheckIncludeFile)
@@ -83,31 +76,21 @@ CHECK_INCLUDE_FILE(numa.h HAS_NUMA_H)
include(FetchContent)
FetchContent_Declare(tiff
GIT_REPOSITORY https://github.com/fleon-psi/libtiff
GIT_TAG v4.6.0
EXCLUDE_FROM_ALL)
FetchContent_Declare(
png
GIT_REPOSITORY https://github.com/pnggroup/libpng
GIT_TAG v1.6.49
EXCLUDE_FROM_ALL
)
FetchContent_Declare(hdf5
GIT_REPOSITORY https://github.com/HDFGroup/hdf5/
GIT_TAG hdf5_1.14.5
GIT_SHALLOW 1
EXCLUDE_FROM_ALL)
SET(PISTACHE_USE_CONTENT_ENCODING_DEFLATE ON)
SET(PISTACHE_BUILD_TESTS OFF)
SET(PISTACHE_USE_SSL ON)
SET(HDF5_ENABLE_SZIP_SUPPORT OFF)
SET(HDF5_ENABLE_SZIP_ENCODING OFF)
SET(HDF5_BUILD_EXAMPLES OFF)
SET(HDF5_BUILD_CPP_LIB OFF)
SET(HDF5_ENABLE_Z_LIB_SUPPORT ON)
SET(HDF5_EXTERNALLY_CONFIGURED 1)
FetchContent_Declare(
pistache_http
GIT_REPOSITORY https://github.com/fleon-psi/pistache
GIT_TAG 280b0f6f28f81745870bccb31f4a3a59958807f6
GIT_TAG 0393f6c
EXCLUDE_FROM_ALL
)
@@ -119,10 +102,21 @@ FetchContent_Declare(
EXCLUDE_FROM_ALL
)
FetchContent_Declare(hdf5
GIT_REPOSITORY https://github.com/HDFGroup/hdf5/
GIT_TAG hdf5_1.14.6
GIT_SHALLOW 1
EXCLUDE_FROM_ALL)
SET(SLS_DETECTOR_GIT_TAG "8.0.2")
IF(SLS9)
SET(SLS_DETECTOR_GIT_TAG "9.2.0")
ENDIF()
FetchContent_Declare(
sls_detector_package
GIT_REPOSITORY https://github.com/slsdetectorgroup/slsDetectorPackage
GIT_TAG 8.0.2
GIT_TAG ${SLS_DETECTOR_GIT_TAG}
)
FetchContent_Declare(
@@ -132,7 +126,7 @@ FetchContent_Declare(
EXCLUDE_FROM_ALL
)
FetchContent_MakeAvailable(pistache_http zstd sls_detector_package catch2 hdf5 tiff png)
FetchContent_MakeAvailable(pistache_http zstd sls_detector_package catch2 hdf5)
ADD_SUBDIRECTORY(jungfrau)
ADD_SUBDIRECTORY(compression)
@@ -143,6 +137,7 @@ ADD_SUBDIRECTORY(reader)
ADD_SUBDIRECTORY(detector_control)
ADD_SUBDIRECTORY(image_puller)
ADD_SUBDIRECTORY(preview)
ADD_SUBDIRECTORY(symmetry)
IF (JFJOCH_WRITER_ONLY)
MESSAGE(STATUS "Compiling HDF5 writer only")
@@ -189,44 +184,100 @@ IF (NOT JFJOCH_WRITER_ONLY)
ENDIF()
IF(CMAKE_INSTALL_PREFIX_INITIALIZED_TO_DEFAULT)
SET(CMAKE_INSTALL_PREFIX /opt/jfjoch CACHE PATH "Default directory" FORCE)
SET(CMAKE_INSTALL_PREFIX /opt/jfjoch CACHE PATH "Default directory" FORCE)
ENDIF(CMAKE_INSTALL_PREFIX_INITIALIZED_TO_DEFAULT)
# Set Package Name
# Initialize CPACK_COMPONENTS_ALL with common components
SET(CPACK_COMPONENTS_ALL jfjoch writer)
SET(CPACK_PACKAGE_NAME "jfjoch")
SET(CPACK_RPM_EXCLUDE_FROM_AUTO_FILELIST_ADDITION /usr/src /usr/share /usr/share/dbus-1 /usr/share/dbus-1/services)
set(CPACK_COMPONENTS_ALL jfjoch writer)
IF (JFJOCH_INSTALL_DRIVER_SOURCE)
LIST(APPEND CPACK_COMPONENTS_ALL driver-dkms)
SET(CPACK_RPM_DRIVER-DKMS_PACKAGE_REQUIRES "dkms, gcc, bash, sed")
SET(CPACK_RPM_DRIVER-DKMS_PACKAGE_ARCHITECTURE "noarch")
SET(CPACK_RPM_DRIVER-DKMS_POST_INSTALL_SCRIPT_FILE ${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/postinstall.sh)
SET(CPACK_RPM_DRIVER-DKMS_PRE_UNINSTALL_SCRIPT_FILE ${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/preuninstall.sh)
IF (SLS9)
SET(CPACK_PACKAGE_NAME "jfjoch-slsdet9")
ELSE()
SET(CPACK_COMPONENTS_ALL jfjoch writer)
SET(CPACK_PACKAGE_NAME "jfjoch")
ENDIF()
IF (JFJOCH_VIEWER_BUILD)
LIST(APPEND CPACK_COMPONENTS_ALL viewer)
ENDIF()
# Add optional components
if (JFJOCH_INSTALL_DRIVER_SOURCE)
list(APPEND CPACK_COMPONENTS_ALL driver-dkms)
else()
set(CPACK_COMPONENTS_ALL jfjoch writer)
endif()
SET(CPACK_GENERATOR RPM)
SET(CPACK_RPM_COMPONENT_INSTALL ON)
SET(CPACK_RPM_MAIN_COMPONENT jfjoch)
SET(CPACK_RPM_PACKAGE_RELEASE_DIST ON)
SET(CPACK_RPM_FILE_NAME "RPM-DEFAULT")
SET(CPACK_RPM_PACKAGE_VERSION ${JFJOCH_VERSION})
SET(CPACK_RPM_PACKAGE_RELEASE 1)
SET(CPACK_RPM_PACKAGE_SUMMARY "Jungfraujoch data acquisition system")
SET(CPACK_RPM_PACKAGE_DESCRIPTION "Jungfraujoch")
if (JFJOCH_VIEWER_BUILD)
list(APPEND CPACK_COMPONENTS_ALL viewer)
endif()
SET(CPACK_PACKAGE_CONTACT "Filip Leonarski <filip.leonarski@psi.ch>")
# Set The Vendor Name
SET(CPACK_PACKAGE_VENDOR "Paul Scherrer Institut")
# Common metadata
set(CPACK_PACKAGE_CONTACT "Filip Leonarski <filip.leonarski@psi.ch>")
set(CPACK_PACKAGE_VENDOR "Paul Scherrer Institut")
set(CPACK_PACKAGE_VERSION ${JFJOCH_VERSION})
# OS-aware packaging: DEB on Debian/Ubuntu, RPM on RHEL/Rocky
if (EXISTS "/etc/debian_version")
set(CPACK_PACKAGE_LICENSE "GPL-3.0-only")
set(CPACK_RESOURCE_FILE_LICENSE "${CMAKE_SOURCE_DIR}/LICENSE")
# Debian/Ubuntu: .deb with components
set(CPACK_GENERATOR "DEB")
set(CPACK_DEB_COMPONENT_INSTALL ON)
set(CPACK_DEBIAN_MAIN_COMPONENT broker)
set(CPACK_DEBIAN_FILE_NAME "DEB-DEFAULT")
# Enable automatic shlib dependency discovery
set(CPACK_DEBIAN_PACKAGE_SHLIBDEPS ON)
# Optional DEB metadata (tune as needed)
set(CPACK_DEBIAN_PACKAGE_SECTION "science")
# set(CPACK_DEBIAN_PACKAGE_HOMEPAGE "https://example.org/jfjoch")
# DKMS component (maps from RPM settings)
if (JFJOCH_INSTALL_DRIVER_SOURCE)
# Dependencies and arch for the DKMS component
# Note: component name "driver-dkms" maps to variable suffix "DRIVER_DKMS"
set(CPACK_DEBIAN_DRIVER_DKMS_PACKAGE_DEPENDS "dkms, gcc, bash, sed")
set(CPACK_DEBIAN_DRIVER_DKMS_PACKAGE_ARCHITECTURE "all")
# Provide Debian control scripts (postinst/prerm).
# We rename existing scripts to Debian control names at configure time.
set(_dkms_ctrl_dir "${CMAKE_CURRENT_BINARY_DIR}/cpack-debian-driver-dkms")
file(MAKE_DIRECTORY "${_dkms_ctrl_dir}")
configure_file(${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/postinstall.sh
${_dkms_ctrl_dir}/postinst COPYONLY)
configure_file(${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/preuninstall.sh
${_dkms_ctrl_dir}/prerm COPYONLY)
set(CPACK_DEBIAN_DRIVER_DKMS_PACKAGE_CONTROL_EXTRA
"${_dkms_ctrl_dir}/postinst;${_dkms_ctrl_dir}/prerm")
endif()
elseif (EXISTS "/etc/redhat-release")
# RHEL/Rocky: .rpm with components (original behavior)
set(CPACK_GENERATOR "RPM")
set(CPACK_RPM_COMPONENT_INSTALL ON)
set(CPACK_RPM_MAIN_COMPONENT jfjoch)
set(CPACK_RPM_PACKAGE_RELEASE_DIST ON)
set(CPACK_RPM_FILE_NAME "RPM-DEFAULT")
set(CPACK_RPM_PACKAGE_VERSION ${JFJOCH_VERSION})
set(CPACK_RPM_PACKAGE_RELEASE 1)
set(CPACK_RPM_PACKAGE_SUMMARY "Jungfraujoch data acquisition system")
set(CPACK_RPM_PACKAGE_DESCRIPTION "Jungfraujoch")
set(CPACK_RPM_PACKAGE_LICENSE "GPLv3")
set(CPACK_RPM_EXCLUDE_FROM_AUTO_FILELIST_ADDITION
/usr/src /usr/share /usr/share/dbus-1 /usr/share/dbus-1/services)
# DKMS component scripts and requirements for RPM
if (JFJOCH_INSTALL_DRIVER_SOURCE)
set(CPACK_RPM_DRIVER-DKMS_PACKAGE_REQUIRES "dkms, gcc, bash, sed")
set(CPACK_RPM_DRIVER-DKMS_PACKAGE_ARCHITECTURE "noarch")
set(CPACK_RPM_DRIVER-DKMS_POST_INSTALL_SCRIPT_FILE
${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/postinstall.sh)
set(CPACK_RPM_DRIVER-DKMS_PRE_UNINSTALL_SCRIPT_FILE
${CMAKE_CURRENT_SOURCE_DIR}/fpga/pcie_driver/preuninstall.sh)
endif()
else()
# Fallback if OS is unknown
set(CPACK_GENERATOR "TGZ")
endif()
# Set The License Information
SET(CPACK_RPM_PACKAGE_LICENSE "GPLv3")
INCLUDE(CPack)

View File

@@ -1 +1 @@
1.0.0-rc.63
1.0.0-rc.97

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@@ -323,6 +323,7 @@ void AcquisitionDevice::RunInternalGenerator(const DiffractionExperiment &experi
FrameGeneratorConfig config{};
config.frames = experiment.GetFrameNum() + DELAY_FRAMES_STOP_AND_QUIT + 1;
config.modules = experiment.GetModulesNum(data_stream);
config.data_stream = data_stream;
config.pulse_id = INT_PKT_GEN_BUNCHID;
config.exptime = INT_PKT_GEN_EXPTTIME;
config.debug = INT_PKT_GEN_DEBUG;

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@@ -225,6 +225,7 @@ void FPGAAcquisitionDevice::FillActionRegister(const DiffractionExperiment& x, D
job.nstorage_cells = x.GetStorageCellNumber() - 1;
job.mode = data_collection_id << 16;
job.nsummation = x.GetFPGASummation() - 1;
job.data_stream = data_stream;
expected_descriptors_per_module = DMA_DESCRIPTORS_PER_MODULE;
@@ -255,10 +256,15 @@ void FPGAAcquisitionDevice::FillActionRegister(const DiffractionExperiment& x, D
job.sqrtmult = x.GetLossyCompressionPoisson().value();
}
if (x.GetPixelValueLowThreshold()) {
job.mode |= MODE_THRESHOLD;
job.pxlthreshold = x.GetPixelValueLowThreshold().value();
}
if (x.GetPixelValueLowThreshold())
job.pxlthreshold_min = x.GetPixelValueLowThreshold().value();
else
job.pxlthreshold_min = INT32_MIN;
if (x.GetPixelValueHighThreshold())
job.pxlthreshold_max = x.GetPixelValueHighThreshold().value();
else
job.pxlthreshold_max = INT32_MIN;
}
void FPGAAcquisitionDevice::Start(const DiffractionExperiment &experiment, uint32_t flag) {

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@@ -10,12 +10,8 @@ HLSSimulatedDevice::HLSSimulatedDevice(uint16_t data_stream, size_t in_frame_buf
max_modules = MAX_MODULES_FPGA;
if (data_stream != 0)
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid,
"HLS simulation can only work with 1 data_stream, due to use of static variables");
MapBuffersStandard(in_frame_buffer_size_modules, numa_node);
device = std::make_unique<HLSDevice>(buffer_device);
}

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@@ -2,7 +2,7 @@ AUX_SOURCE_DIRECTORY(gen/model MODEL_SOURCES)
ADD_LIBRARY(JFJochAPI STATIC ${MODEL_SOURCES} gen/api/DefaultApi.cpp gen/api/DefaultApi.h)
TARGET_LINK_LIBRARIES(JFJochAPI pistache_static)
TARGET_LINK_LIBRARIES(JFJochAPI pistache_static ${CMAKE_DL_LIBS})
TARGET_INCLUDE_DIRECTORIES(JFJochAPI PUBLIC gen/model gen/api)
ADD_LIBRARY(JFJochBroker STATIC

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@@ -82,7 +82,7 @@ void JFJochBrokerHttp::wait_till_done_post(const std::optional<int32_t> &timeout
throw WrongDAQStateException(status.message.value_or("Unknown error"));
case JFJochState::Measuring:
case JFJochState::Busy:
case JFJochState::Pedestal:
case JFJochState::Calibration:
response.send(Pistache::Http::Code::Gateway_Timeout);
break;
}
@@ -412,6 +412,7 @@ void JFJochBrokerHttp::statistics_get(const std::optional<bool> &compression, Pi
statistics.setAzInt(Convert(state_machine.GetRadialIntegrationSettings()));
statistics.setBuffer(Convert(state_machine.GetImageBufferStatus()));
statistics.setIndexing(Convert(state_machine.GetIndexingSettings()));
statistics.setDarkMask(Convert(state_machine.GetDarkMaskSettings()));
auto zeromq_prev = state_machine.GetPreviewSocketSettings();
if (!zeromq_prev.address.empty())
@@ -497,35 +498,6 @@ void JFJochBrokerHttp::image_buffer_image_jpeg_get(const std::optional<int64_t>
response.send(Pistache::Http::Code::Not_Found);
}
void JFJochBrokerHttp::image_buffer_image_png_get(const std::optional<int64_t> &id,
const std::optional<bool> &showUserMask,
const std::optional<bool> &showRoi,
const std::optional<bool> &showSpots,
const std::optional<bool> &showBeamCenter,
const std::optional<float> &saturation,
const std::optional<int64_t> &jpegQuality,
const std::optional<float> &showResRing,
const std::optional<std::string> &color,
Pistache::Http::ResponseWriter &response) {
int64_t image_id = id.value_or(ImageBuffer::MaxImage);
PreviewImageSettings settings{};
settings.show_user_mask = showUserMask.value_or(true);
settings.show_roi = showRoi.value_or(false);
settings.show_spots = showSpots.value_or(true);
settings.saturation_value = saturation.value_or(10);
settings.jpeg_quality = jpegQuality.value_or(100);
settings.resolution_ring = showResRing;
settings.scale = ConvertColorScale(color);
settings.show_beam_center = showBeamCenter.value_or(true);
settings.format = PreviewImageFormat::PNG;
std::string s = state_machine.GetPreviewJPEG(settings, image_id);
if (!s.empty())
response.send(Pistache::Http::Code::Ok, s, Pistache::Http::Mime::MediaType::fromString("image/jpeg"));
else
response.send(Pistache::Http::Code::Not_Found);
}
void
JFJochBrokerHttp::image_buffer_image_tiff_get(const std::optional<int64_t> &id, Pistache::Http::ResponseWriter &response) {
int64_t image_id = ImageBuffer::MaxImage;
@@ -567,7 +539,8 @@ void JFJochBrokerHttp::config_file_writer_put(
}
void JFJochBrokerHttp::preview_plot_get(const std::optional<std::string> &type, const std::optional<int32_t> &binning,
const std::optional<bool> &compression, const std::optional<bool> &experimentalCoord,
const std::optional<bool> &compression, const std::optional<float> &fill,
const std::optional<bool> &experimentalCoord,
const std::optional<std::string> &azintUnit, Pistache::Http::ResponseWriter &response) {
PlotAzintUnit unit = PlotAzintUnit::Q_recipA;
if (azintUnit.has_value()) {
@@ -583,7 +556,8 @@ void JFJochBrokerHttp::preview_plot_get(const std::optional<std::string> &type,
.type = ConvertPlotType(type),
.binning = 0,
.experimental_coord = experimentalCoord.value_or(false),
.azint_unit = unit
.azint_unit = unit,
.fill_value = fill
};
if (binning) {
@@ -613,3 +587,12 @@ void JFJochBrokerHttp::result_scan_get(Pistache::Http::ResponseWriter &response)
else
response.send(Pistache::Http::Code::Not_Found);
}
void JFJochBrokerHttp::config_dark_mask_put(const org::openapitools::server::model::Dark_mask_settings &darkMaskSettings, Pistache::Http::ResponseWriter &response) {
state_machine.SetDarkMaskSettings(Convert(darkMaskSettings));
response.send(Pistache::Http::Code::Ok);
}
void JFJochBrokerHttp::config_dark_mask_get(Pistache::Http::ResponseWriter &response) {
ProcessOutput(Convert(state_machine.GetDarkMaskSettings()), response);
}

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@@ -157,16 +157,6 @@ class JFJochBrokerHttp : public org::openapitools::server::api::DefaultApi {
const std::optional<float> &showResRing,
const std::optional<std::string> &color,
Pistache::Http::ResponseWriter &response) override;
void image_buffer_image_png_get(const std::optional<int64_t> &id,
const std::optional<bool> &showUserMask,
const std::optional<bool> &showRoi,
const std::optional<bool> &showSpots,
const std::optional<bool> &showBeamCenter,
const std::optional<float> &saturation,
const std::optional<int64_t> &jpegQuality,
const std::optional<float> &showResRing,
const std::optional<std::string> &color,
Pistache::Http::ResponseWriter &response) override;
void image_buffer_image_tiff_get(const std::optional<int64_t> &id, Pistache::Http::ResponseWriter &response) override;
@@ -174,8 +164,9 @@ class JFJochBrokerHttp : public org::openapitools::server::api::DefaultApi {
void image_buffer_status_get(Pistache::Http::ResponseWriter &response) override;
void preview_plot_get(const std::optional<std::string> &type, const std::optional<int32_t> &binning,
const std::optional<bool> &compression, const std::optional<bool> &experimentalCoord,
const std::optional<std::string> &azintUnit, Pistache::Http::ResponseWriter &response) override;
const std::optional<bool> &compression, const std::optional<float> &fill,
const std::optional<bool> &experimentalCoord, const std::optional<std::string> &azintUnit,
Pistache::Http::ResponseWriter &response) override;
void config_indexing_get(Pistache::Http::ResponseWriter &response) override;
@@ -183,6 +174,10 @@ class JFJochBrokerHttp : public org::openapitools::server::api::DefaultApi {
Pistache::Http::ResponseWriter &response) override;
void result_scan_get(Pistache::Http::ResponseWriter &response) override;
void config_dark_mask_get(Pistache::Http::ResponseWriter &response) override;
void config_dark_mask_put(const org::openapitools::server::model::Dark_mask_settings &darkMaskSettings,
Pistache::Http::ResponseWriter &response) override;
public:
JFJochBrokerHttp(const DiffractionExperiment& experiment, std::shared_ptr<Pistache::Rest::Router> &rtr);
void AddDetectorSetup(const DetectorSetup &setup);

View File

@@ -139,6 +139,12 @@ DetectorSetup ParseDetectorSetup(const org::openapitools::server::model::Detecto
if (d.minimumFrameTimeUsIsSet())
setup.MinFrameTime(std::chrono::microseconds(d.getMinimumFrameTimeUs()));
if (d.defaultSettingsIsSet())
setup.DefaultSettings(Convert(d.getDefaultSettings()));
if (d.tempThresoldDegCIsSet())
setup.TempThreshold_degC(d.getTempThresoldDegC());
return setup;
}
@@ -160,6 +166,9 @@ void ParseFacilityConfiguration(const org::openapitools::server::model::Jfjoch_s
if (j.indexingIsSet())
experiment.ImportIndexingSettings(Convert(j.getIndexing()));
if (j.darkMaskIsSet())
experiment.ImportDarkMaskSettings(Convert(j.getDarkMask()));
}
std::unique_ptr<ImagePusher> ParseZMQImagePusher(const org::openapitools::server::model::Jfjoch_settings &j) {

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@@ -10,18 +10,14 @@ JFJochServices::JFJochServices(Logger &in_logger) : logger(in_logger) {}
void JFJochServices::Start(const DiffractionExperiment& experiment,
const PixelMask &pixel_mask,
const JFCalibration &calibration) {
const JFCalibration *calibration) {
logger.Info("Measurement start for: {}", experiment.GetFilePrefix());
cannot_stop_detector = false;
if (receiver != nullptr) {
logger.Info(" ... receiver start");
if (experiment.IsJungfrauConvPhotonCnt())
receiver->Start(experiment, pixel_mask, &calibration);
else
receiver->Start(experiment, pixel_mask, nullptr);
receiver->Start(experiment, pixel_mask, calibration);
if (detector && !experiment.IsUsingInternalPacketGen()) {
logger.Info(" ... detector start");
detector->Start(experiment);
@@ -32,8 +28,10 @@ void JFJochServices::Start(const DiffractionExperiment& experiment,
}
void JFJochServices::Off() {
if (detector)
if (detector) {
detector->Deactivate();
detector.reset();
}
}
void JFJochServices::On(DiffractionExperiment &x) {
@@ -262,3 +260,8 @@ void JFJochServices::LoadDetectorPixelMask(PixelMask &mask) {
if (detector)
detector->LoadPixelMask(mask);
}
void JFJochServices::SetupIndexing(const IndexingSettings &input) {
if (receiver)
receiver->Indexing(input);
}

View File

@@ -27,7 +27,7 @@ public:
void ConfigureDetector(const DiffractionExperiment& experiment);
void Start(const DiffractionExperiment& experiment,
const PixelMask &pixel_mask,
const JFCalibration &calibration);
const JFCalibration *calibration = nullptr);
JFJochServicesOutput Stop();
void Cancel();
void Trigger();
@@ -64,6 +64,8 @@ public:
void ClearImageBuffer() const;
void LoadDetectorPixelMask(PixelMask &mask);
void SetupIndexing(const IndexingSettings& input);
};

View File

@@ -11,23 +11,19 @@
JFJochStateMachine::JFJochStateMachine(const DiffractionExperiment& in_experiment,
JFJochServices &in_services,
Logger &in_logger)
: experiment(in_experiment),
logger(in_logger),
services(in_services),
pixel_mask(experiment),
current_detector_setup(0),
data_processing_settings(DiffractionExperiment::DefaultDataProcessingSettings()),
pixel_mask_statistics({0, 0, 0}),
gpu_count(get_gpu_count()) {
: logger(in_logger),
services(in_services),
experiment(in_experiment),
pixel_mask(experiment),
current_detector_setup(0),
data_processing_settings(DiffractionExperiment::DefaultDataProcessingSettings()),
pixel_mask_statistics({0, 0, 0}),
gpu_count(get_gpu_count()) {
indexing_possible = (get_gpu_count() >= 0);
if (!indexing_possible)
data_processing_settings.indexing = false;
resolution_estimate_possible = !experiment.GetInferenceServerAddress().empty();
if (!resolution_estimate_possible)
data_processing_settings.resolution_estimate = false;
SupressTIFFErrors();
}
@@ -63,58 +59,90 @@ bool JFJochStateMachine::ImportPedestalG1G2(const JFJochReceiverOutput &receiver
return true;
}
void JFJochStateMachine::TakePedestalInternalAll(std::unique_lock<std::mutex> &ul) {
if (experiment.GetDetectorSetup().GetDetectorType() != DetectorType::JUNGFRAU) {
try {
logger.Info("EIGER configuration");
services.ConfigureDetector(experiment);
logger.Info(" ... done ");
SetState(JFJochState::Idle,
"Detector configured",
BrokerStatus::MessageSeverity::Success);
return;
} catch (const std::exception &e) {
logger.Error("Configuration error {}", e.what());
SetState(JFJochState::Error, e.what(), BrokerStatus::MessageSeverity::Error);
throw;
}
}
calibration = std::make_unique<JFCalibration>(experiment);
void JFJochStateMachine::CalibrateJUNGFRAU(std::unique_lock<std::mutex> &ul) {
if (!gain_calibration.empty()) {
if (gain_calibration.size() != experiment.GetModulesNum())
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid, "Mismatch in gain files number");
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid,
"Mismatch in gain files number");
for (int i = 0; i < gain_calibration.size(); i++)
calibration->GainCalibration(i) = gain_calibration[i];
}
TakePedestalInternalG0(ul);
if (!experiment.IsFixedGainG1()) {
for (int i = 0; i < experiment.GetStorageCellNumber(); i++) {
TakePedestalInternalG1(ul, i);
TakePedestalInternalG2(ul, i);
}
}
pixel_mask.LoadDetectorBadPixelMask(experiment, calibration.get());
}
void JFJochStateMachine::CalibrateDetector(std::unique_lock<std::mutex> &ul) {
cancel_sequence = false;
logger.Info("Pedestal sequence started");
pixel_mask = PixelMask(experiment);
UpdatePixelMaskStatistics(pixel_mask.GetStatistics());
logger.Info("Calibration sequence started");
try {
TakePedestalInternalG0(ul);
if (!experiment.IsFixedGainG1()) {
for (int i = 0; i < experiment.GetStorageCellNumber(); i++) {
TakePedestalInternalG1(ul, i);
TakePedestalInternalG2(ul, i);
}
if (experiment.GetDetectorType() == DetectorType::EIGER) {
// PSI EIGER - only reset calibration
calibration.reset();
} else if (experiment.GetDetectorType() == DetectorType::DECTRIS) {
// DECTRIS - take dark data for mask
calibration.reset();
TakeDarkMaskInternal(ul);
} else {
// PSI JUNGFRAU - take pedestal
calibration = std::make_unique<JFCalibration>(experiment);
CalibrateJUNGFRAU(ul);
}
SetState(JFJochState::Idle,
"Pedestal sequence done",
BrokerStatus::MessageSeverity::Success);
services.ConfigureDetector(experiment);
pixel_mask.LoadDetectorBadPixelMask(experiment, calibration.get());
// Update pixel mask statistics
UpdatePixelMaskStatistics(pixel_mask.GetStatistics());
// configure detector for standard operation
services.ConfigureDetector(experiment);
} catch (const std::exception &e) {
logger.Error("Pedestal sequence error {}", e.what());
logger.Error("Calibration sequence error {}", e.what());
SetState(JFJochState::Error, e.what(), BrokerStatus::MessageSeverity::Error);
throw;
}
SetState(JFJochState::Idle, "Calibration sequence done", BrokerStatus::MessageSeverity::Success);
logger.Info("Pedestal sequence done");
}
void JFJochStateMachine::TakeDarkMaskInternal(std::unique_lock<std::mutex> &ul) {
if (cancel_sequence) {
SetState(JFJochState::Inactive,
"Mask sequence cancelled",
BrokerStatus::MessageSeverity::Warning);
return;
}
services.LoadDetectorPixelMask(pixel_mask);
if (experiment.GetDarkMaskNumberOfFrames() == 0)
return;
DiffractionExperiment local_experiment(experiment);
local_experiment.Mode(DetectorMode::DarkMask);
SetState(JFJochState::Calibration, "Dark sequence for mask calculation", BrokerStatus::MessageSeverity::Info);
services.ConfigureDetector(local_experiment);
services.Start(local_experiment, pixel_mask, nullptr);
ul.unlock();
// Allow to cancel/abort during the mask data collection
auto mask_output = services.Stop();
ul.lock();
if (mask_output.receiver_output.dark_mask_result.size() == local_experiment.GetPixelsNum()) {
pixel_mask.LoadDarkBadPixelMask(mask_output.receiver_output.dark_mask_result);
SetState(JFJochState::Idle);
} else
SetState(JFJochState::Error, "Mask not collected properly", BrokerStatus::MessageSeverity::Error);
}
void JFJochStateMachine::TakePedestalInternalG0(std::unique_lock<std::mutex> &ul) {
DiffractionExperiment local_experiment(experiment);
@@ -142,9 +170,9 @@ void JFJochStateMachine::TakePedestalInternalG0(std::unique_lock<std::mutex> &ul
if (local_experiment.GetPedestalG0Frames() == 0)
return;
SetState(JFJochState::Pedestal, message, BrokerStatus::MessageSeverity::Info);
SetState(JFJochState::Calibration, message, BrokerStatus::MessageSeverity::Info);
services.ConfigureDetector(local_experiment);
services.Start(local_experiment, pixel_mask, *calibration);
services.Start(local_experiment, pixel_mask, calibration.get());
services.Trigger();
@@ -183,11 +211,11 @@ void JFJochStateMachine::TakePedestalInternalG1(std::unique_lock<std::mutex> &ul
return;
SetState(JFJochState::Pedestal,
SetState(JFJochState::Calibration,
"Pedestal G1 SC" + std::to_string(storage_cell),
BrokerStatus::MessageSeverity::Info);
services.ConfigureDetector(local_experiment);
services.Start(local_experiment, pixel_mask, *calibration);
services.Start(local_experiment, pixel_mask, calibration.get());
services.Trigger();
@@ -223,11 +251,11 @@ void JFJochStateMachine::TakePedestalInternalG2(std::unique_lock<std::mutex> &ul
return;
SetState(JFJochState::Pedestal,
SetState(JFJochState::Calibration,
"Pedestal G2 SC" + std::to_string(storage_cell),
BrokerStatus::MessageSeverity::Info);
services.ConfigureDetector(local_experiment);
services.Start(local_experiment, pixel_mask, *calibration);
services.Start(local_experiment, pixel_mask, calibration.get());
services.Trigger();
@@ -255,7 +283,14 @@ void JFJochStateMachine::Initialize() {
ResetError(); // Clear error, we don't care what was it
logger.Info("Initialize");
try {
services.SetupIndexing(experiment.GetIndexingSettings());
} catch (const JFJochException &e) {
SetState(JFJochState::Error,
e.what(),
BrokerStatus::MessageSeverity::Error);
throw;
}
SetState(JFJochState::Busy, "Configuring detector", BrokerStatus::MessageSeverity::Info);
scan_result = {}; // Clear scan result
@@ -274,23 +309,30 @@ void JFJochStateMachine::Pedestal() {
void JFJochStateMachine::PedestalThread(std::unique_lock<std::mutex> ul) {
TakePedestalInternalAll(ul);
CalibrateDetector(ul);
}
void JFJochStateMachine::InitializeThread(std::unique_lock<std::mutex> ul) {
try {
// On might modify experiment (reads DECTRIS configuration), so need to have lock acquired at this point
services.On(experiment);
// services.On can potentially take a lot of time, so better to unlock main mutex
// Since On might modify the experiment (reads DECTRIS configuration), one has to have a local copy for unlocked part
DiffractionExperiment local_experiment(experiment);
if (state != JFJochState::Busy)
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid,
"State must be busy for safe operation");
ul.unlock();
services.On(local_experiment);
ul.lock();
experiment = local_experiment;
detector_setup[current_detector_setup] = experiment.GetDetectorSetup();
pixel_mask = PixelMask(experiment);
services.LoadDetectorPixelMask(pixel_mask);
UpdatePixelMaskStatistics(pixel_mask.GetStatistics());
} catch (const std::exception &e) {
logger.Error("Initialize error {}", e.what());
SetState(JFJochState::Error, e.what(), BrokerStatus::MessageSeverity::Error);
throw;
}
TakePedestalInternalAll(ul);
CalibrateDetector(ul);
}
void JFJochStateMachine::Trigger() {
@@ -319,7 +361,7 @@ void JFJochStateMachine::Start(const DatasetSettings &settings) {
try {
SetState(JFJochState::Busy, "Preparing measurement", BrokerStatus::MessageSeverity::Info);
services.SetSpotFindingSettings(GetSpotFindingSettings());
services.Start(experiment, pixel_mask, *calibration);
services.Start(experiment, pixel_mask, calibration.get());
SetState(JFJochState::Measuring, "Measuring ...", BrokerStatus::MessageSeverity::Info);
measurement = std::async(std::launch::async, &JFJochStateMachine::MeasurementThread, this);
@@ -378,7 +420,7 @@ void JFJochStateMachine::MeasurementThread() {
void JFJochStateMachine::Cancel() {
// This is inconsistency in naming - need to solve later
std::unique_lock ul(m);
if ((state == JFJochState::Pedestal) || (state == JFJochState::Measuring)) {
if ((state == JFJochState::Calibration) || (state == JFJochState::Measuring)) {
services.Cancel();
cancel_sequence = true;
}
@@ -460,9 +502,14 @@ DetectorSettings JFJochStateMachine::GetDetectorSettings() const {
return experiment.GetDetectorSettings();
}
void JFJochStateMachine::ImportDetectorSettings(const DetectorSettings &input) {
bool JFJochStateMachine::ImportDetectorSettings(const DetectorSettings &input) {
std::unique_lock ul(experiment_detector_settings_mutex);
// For JUNGFRAU detector, if detector settings changes key parameters
// need to recalibrate the detector
bool recalib = input.NeedsJUNGFRAURecalibration(experiment.GetDetectorSettings())
&& experiment.GetDetectorType() == DetectorType::JUNGFRAU;
experiment.ImportDetectorSettings(input);
return recalib;
}
void JFJochStateMachine::LoadDetectorSettings(const DetectorSettings &settings) {
@@ -473,13 +520,23 @@ void JFJochStateMachine::LoadDetectorSettings(const DetectorSettings &settings)
ImportDetectorSettings(settings);
break;
case JFJochState::Idle:
SetState(JFJochState::Busy, "Loading settings", BrokerStatus::MessageSeverity::Info);
ImportDetectorSettings(settings);
measurement = std::async(std::launch::async, &JFJochStateMachine::PedestalThread, this, std::move(ul));
if (ImportDetectorSettings(settings)) {
SetState(JFJochState::Busy, "Loading settings", BrokerStatus::MessageSeverity::Info);
measurement = std::async(std::launch::async, &JFJochStateMachine::PedestalThread, this, std::move(ul));
} else {
try {
SetState(JFJochState::Busy, "Configure detector", BrokerStatus::MessageSeverity::Info);
services.ConfigureDetector(experiment);
SetState(JFJochState::Idle, "Detector configured", BrokerStatus::MessageSeverity::Info);
} catch (const std::exception &e) {
logger.Error("Detector configuration error {}", e.what());
SetState(JFJochState::Error, e.what(), BrokerStatus::MessageSeverity::Error);
}
}
break;
case JFJochState::Measuring:
case JFJochState::Busy:
case JFJochState::Pedestal:
case JFJochState::Calibration:
throw WrongDAQStateException("Cannot change detector settings during data collection");
}
}
@@ -493,7 +550,6 @@ BrokerStatus JFJochStateMachine::GetStatus() const {
BrokerStatus ret = broker_status;
ret.progress = services.GetReceiverProgress();
ret.gpu_count = gpu_count;
ret.ml_resolution_estimation = resolution_estimate_possible;
return ret;
}
@@ -503,9 +559,9 @@ void JFJochStateMachine::SetState(JFJochState curr_state,
std::unique_lock ul(broker_status_mutex);
state = curr_state;
broker_status = BrokerStatus{
.state = curr_state,
.message = message,
.message_severity = message_severity
.state = curr_state,
.message = message,
.message_severity = message_severity
};
}
@@ -523,9 +579,6 @@ void JFJochStateMachine::SetSpotFindingSettings(const SpotFindingSettings &setti
if (!indexing_possible)
data_processing_settings.indexing = false;
if (!resolution_estimate_possible)
data_processing_settings.resolution_estimate = false;
services.SetSpotFindingSettings(data_processing_settings);
}
@@ -583,6 +636,23 @@ void JFJochStateMachine::SelectDetector(int64_t id) {
if (IsRunning())
throw WrongDAQStateException("Cannot change detector during data collection");
// Do nothing if this is the same detector as currently used
if (id == current_detector_setup)
return;
// Try to deactivate current detector (if actually running)
if (state != JFJochState::Inactive) {
try {
SetState(JFJochState::Busy, "Deactivating existing detector");
ul.unlock();
services.Off();
ul.lock();
} catch (const std::exception &e) {
logger.ErrorException(e);
logger.Warning("Cannot turn off existing detector - proceeding anyway");
}
}
try {
experiment.Detector(detector_setup[id]);
UpdateROIDefinition();
@@ -621,7 +691,7 @@ bool JFJochStateMachine::IsRunning() const {
return false;
case JFJochState::Measuring:
case JFJochState::Busy:
case JFJochState::Pedestal:
case JFJochState::Calibration:
return true;
default:
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid, "State unknown");
@@ -924,6 +994,15 @@ void JFJochStateMachine::SetIndexingSettings(const IndexingSettings &input) {
{
std::unique_lock ul2(experiment_indexing_settings_mutex);
experiment.ImportIndexingSettings(input);
try {
services.SetupIndexing(input);
} catch (const JFJochException &e) {
logger.ErrorException(e);
SetState(JFJochState::Error,
e.what(),
BrokerStatus::MessageSeverity::Error);
throw;
}
}
}
@@ -933,4 +1012,25 @@ std::optional<ScanResult> JFJochStateMachine::GetScanResult() const {
throw WrongDAQStateException("Cannot check scan result, when running");
return scan_result;
}
}
DarkMaskSettings JFJochStateMachine::GetDarkMaskSettings() const {
std::unique_lock ul(experiment_dark_mask_settings_mutex);
return experiment.GetDarkMaskSettings();
}
void JFJochStateMachine::SetDarkMaskSettings(const DarkMaskSettings &settings) {
std::unique_lock ul(m);
if (IsRunning())
throw WrongDAQStateException("Cannot change dark mask calculation settings during data collection");
{
// Setting dark mask settings in experiment requires BOTH mutexes
std::unique_lock ul2(experiment_dark_mask_settings_mutex);
experiment.ImportDarkMaskSettings(settings);
}
if ((experiment.GetDetectorType() == DetectorType::DECTRIS) && (state == JFJochState::Idle)) {
// Need to redo the calibration
SetState(JFJochState::Busy, "Loading settings", BrokerStatus::MessageSeverity::Info);
measurement = std::async(std::launch::async, &JFJochStateMachine::PedestalThread, this, std::move(ul));
}
}

View File

@@ -16,7 +16,7 @@
#include "JFJochServices.h"
#include "../common/ROIMap.h"
enum class JFJochState {Inactive, Idle, Measuring, Error, Busy, Pedestal};
enum class JFJochState {Inactive, Idle, Measuring, Error, Busy, Calibration};
struct BrokerStatus {
JFJochState state = JFJochState::Inactive;
@@ -24,7 +24,6 @@ struct BrokerStatus {
std::optional<std::string> message;
enum class MessageSeverity {Error, Info, Warning, Success} message_severity = MessageSeverity::Error;
int64_t gpu_count;
bool ml_resolution_estimation;
};
struct DetectorListElement {
@@ -96,6 +95,7 @@ class JFJochStateMachine {
mutable std::mutex experiment_image_format_settings_mutex;
mutable std::mutex experiment_file_writer_settings_mutex;
mutable std::mutex experiment_indexing_settings_mutex;
mutable std::mutex experiment_dark_mask_settings_mutex;
DiffractionExperiment experiment;
// mutex m is protecting:
@@ -141,11 +141,14 @@ class JFJochStateMachine {
bool ImportPedestalG0(const JFJochReceiverOutput &receiver_output);
bool IsRunning() const; // Is state Busy/Pedestal/Measure
void ResetError() noexcept;
void TakePedestalInternalAll(std::unique_lock<std::mutex> &ul);
void TakeDarkMaskInternal(std::unique_lock<std::mutex> &ul);
void CalibrateDetector(std::unique_lock<std::mutex> &ul);
void CalibrateJUNGFRAU(std::unique_lock<std::mutex> &ul);
void TakePedestalInternalG0(std::unique_lock<std::mutex> &ul);
void TakePedestalInternalG1(std::unique_lock<std::mutex> &ul, int32_t storage_cell = 0);
void TakePedestalInternalG2(std::unique_lock<std::mutex> &ul, int32_t storage_cell = 0);
void ImportDetectorSettings(const DetectorSettings& input);
bool ImportDetectorSettings(const DetectorSettings& input);
void UpdateROIDefinition();
public:
JFJochStateMachine(const DiffractionExperiment& experiment,
@@ -243,6 +246,9 @@ public:
void AddDetectorSetup(const DetectorSetup& setup); // Not thread safe, only during setup
std::optional<ScanResult> GetScanResult() const;
void SetDarkMaskSettings(const DarkMaskSettings& settings);
DarkMaskSettings GetDarkMaskSettings() const;
};

View File

@@ -19,10 +19,11 @@ SpotFindingSettings Convert(const org::openapitools::server::model::Spot_finding
ret.low_resolution_limit = input.getLowResolutionLimit();
ret.enable = input.isEnable();
ret.indexing = input.isIndexing();
ret.resolution_estimate = input.isResolutionEstimate();
ret.quick_integration = input.isQuickIntegration();
ret.cutoff_spot_count_low_res = input.getHighResolutionLimitForSpotCountLowRes();
ret.ice_ring_width_Q_recipA = input.getIceRingWidthQRecipA();
if (input.highResGapQRecipAIsSet())
ret.high_res_gap_Q_recipA = input.getHighResGapQRecipA();
return ret;
}
@@ -37,8 +38,10 @@ org::openapitools::server::model::Spot_finding_settings Convert(const SpotFindin
ret.setEnable(input.enable);
ret.setIndexing(input.indexing);
ret.setHighResolutionLimitForSpotCountLowRes(input.cutoff_spot_count_low_res);
ret.setResolutionEstimate(input.resolution_estimate);
ret.setQuickIntegration(input.quick_integration);
ret.setIceRingWidthQRecipA(input.ice_ring_width_Q_recipA);
if (input.high_res_gap_Q_recipA.has_value())
ret.setHighResGapQRecipA(input.high_res_gap_Q_recipA.value());
return ret;
}
@@ -212,7 +215,7 @@ org::openapitools::server::model::Broker_status Convert(const BrokerStatus& inpu
case JFJochState::Busy:
ret.setState("Busy");
break;
case JFJochState::Pedestal:
case JFJochState::Calibration:
ret.setState("Pedestal");
break;
}
@@ -237,7 +240,6 @@ org::openapitools::server::model::Broker_status Convert(const BrokerStatus& inpu
if (input.progress.has_value())
ret.setProgress(input.progress.value());
ret.setMlResolutionEstimation(input.ml_resolution_estimation);
ret.setGpuCount(input.gpu_count);
return ret;
}
@@ -660,6 +662,17 @@ DatasetSettings Convert(const org::openapitools::server::model::Dataset_settings
ret.RingCurrent_mA(input.getRingCurrentMA());
if (input.sampleTemperatureKIsSet())
ret.SampleTemperature_K(input.getSampleTemperatureK());
ret.SpotFindingEnable(input.isSpotFinding());
ret.MaxSpotCount(input.getMaxSpotCount());
ret.DetectIceRings(input.isDetectIceRings());
if (input.xrayFluorescenceSpectrumIsSet()) {
auto fl = input.getXrayFluorescenceSpectrum();
ret.FluorescenceSpectrum({fl.getEnergyEV(), fl.getData()});
}
return ret;
}
@@ -728,8 +741,8 @@ org::openapitools::server::model::Zeromq_metadata_settings Convert(const ZMQMeta
org::openapitools::server::model::Pixel_mask_statistics Convert(const PixelMaskStatistics& input) {
org::openapitools::server::model::Pixel_mask_statistics ret;
ret.setUserMask(input.user_mask);
ret.setWrongGain(input.wrong_gain);
ret.setTooHighPedestalRms(input.too_high_pedestal_rms);
ret.setWrongGain(input.error_pixel);
ret.setTooHighPedestalRms(input.noisy_pixel);
return ret;
}
@@ -775,6 +788,9 @@ org::openapitools::server::model::File_writer_format Convert(FileWriterFormat in
case FileWriterFormat::TIFF:
ret.setValue(org::openapitools::server::model::File_writer_format::eFile_writer_format::TIFF);
break;
case FileWriterFormat::NoFile:
ret.setValue(org::openapitools::server::model::File_writer_format::eFile_writer_format::NOFILEWRITTEN);
break;
default:
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid, "Unknown file writer format enum value");
}
@@ -793,6 +809,8 @@ FileWriterFormat Convert(const org::openapitools::server::model::File_writer_for
return FileWriterFormat::CBF;
case org::openapitools::server::model::File_writer_format::eFile_writer_format::TIFF:
return FileWriterFormat::TIFF;
case org::openapitools::server::model::File_writer_format::eFile_writer_format::NOFILEWRITTEN:
return FileWriterFormat::NoFile;
default:
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid,
"Unknown file writer format enum value");
@@ -812,7 +830,7 @@ PlotType ConvertPlotType(const std::optional<std::string>& input) {
if (input == "spot_count_ice") return PlotType::SpotCountIceRing;
if (input == "indexing_rate") return PlotType::IndexingRate;
if (input == "indexing_unit_cell_length") return PlotType::IndexingUnitCellLength;
if (input == "mosaicity") return PlotType::IndexingMosaicity;
if (input == "profile_radius") return PlotType::ProfileRadius;
if (input == "b_factor") return PlotType::BFactor;
if (input == "indexing_unit_cell_angle") return PlotType::IndexingUnitCellAngle;
if (input == "error_pixels") return PlotType::ErrorPixels;
@@ -833,6 +851,8 @@ PlotType ConvertPlotType(const std::optional<std::string>& input) {
if (input == "indexing_time") return PlotType::IndexingTime;
if (input == "pixel_sum") return PlotType::PixelSum;
if (input == "processing_time") return PlotType::ImageProcessingTime;
if (input == "beam_center_x") return PlotType::RefinementBeamX;
if (input == "beam_center_y") return PlotType::RefinementBeamY;
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid,
"Plot type not recognized");
}
@@ -859,6 +879,9 @@ IndexingSettings Convert(const org::openapitools::server::model::Indexing_settin
case org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::FFT:
ret.Algorithm(IndexingAlgorithmEnum::FFT);
break;
case org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::FFTW:
ret.Algorithm(IndexingAlgorithmEnum::FFTW);
break;
case org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::NONE:
ret.Algorithm(IndexingAlgorithmEnum::None);
break;
@@ -872,11 +895,26 @@ IndexingSettings Convert(const org::openapitools::server::model::Indexing_settin
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid, "Unknown indexing algorithm");
}
switch (input.getGeomRefinementAlgorithm().getValue()) {
case org::openapitools::server::model::Geom_refinement_algorithm::eGeom_refinement_algorithm::INVALID_VALUE_OPENAPI_GENERATED:
throw JFJochException(JFJochExceptionCategory::InputParameterInvalid, "Unknown refinement algorithm");
break;
case org::openapitools::server::model::Geom_refinement_algorithm::eGeom_refinement_algorithm::BEAMCENTER:
ret.GeomRefinementAlgorithm(GeomRefinementAlgorithmEnum::BeamCenter);
break;
case org::openapitools::server::model::Geom_refinement_algorithm::eGeom_refinement_algorithm::NONE:
ret.GeomRefinementAlgorithm(GeomRefinementAlgorithmEnum::None);
break;
}
ret.FFT_HighResolution_A(input.getFftHighResolutionA());
ret.FFT_MaxUnitCell_A(input.getFftMaxUnitCellA());
ret.FFT_MinUnitCell_A(input.getFftMinUnitCellA());
ret.FFT_NumVectors(input.getFftNumVectors());
ret.Tolerance(input.getTolerance());
ret.IndexingThreads(input.getThreadCount());
ret.UnitCellDistTolerance(input.getUnitCellDistTolerance());
ret.IndexIceRings(input.isIndexIceRings());
return ret;
}
@@ -888,6 +926,21 @@ org::openapitools::server::model::Indexing_settings Convert(const IndexingSettin
ret.setFftMaxUnitCellA(input.GetFFT_MaxUnitCell_A());
ret.setFftNumVectors(input.GetFFT_NumVectors());
ret.setTolerance(input.GetTolerance());
ret.setThreadCount(input.GetIndexingThreads());
ret.setUnitCellDistTolerance(input.GetUnitCellDistTolerance());
org::openapitools::server::model::Geom_refinement_algorithm refinement;
switch (input.GetGeomRefinementAlgorithm()) {
case GeomRefinementAlgorithmEnum::None:
refinement.setValue(org::openapitools::server::model::Geom_refinement_algorithm::eGeom_refinement_algorithm::NONE);
break;
case GeomRefinementAlgorithmEnum::BeamCenter:
refinement.setValue(org::openapitools::server::model::Geom_refinement_algorithm::eGeom_refinement_algorithm::BEAMCENTER);
break;
}
ret.setGeomRefinementAlgorithm(refinement);
org::openapitools::server::model::Indexing_algorithm tmp;
switch (input.GetAlgorithm()) {
@@ -900,11 +953,15 @@ org::openapitools::server::model::Indexing_settings Convert(const IndexingSettin
case IndexingAlgorithmEnum::FFT:
tmp.setValue(org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::FFT);
break;
case IndexingAlgorithmEnum::FFTW:
tmp.setValue(org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::FFTW);
break;
case IndexingAlgorithmEnum::None:
tmp.setValue(org::openapitools::server::model::Indexing_algorithm::eIndexing_algorithm::NONE);
break;
}
ret.setAlgorithm(tmp);
ret.setIndexIceRings(input.GetIndexIceRings());
return ret;
}
@@ -941,8 +998,8 @@ org::openapitools::server::model::Scan_result Convert(const ScanResult& input) {
tmp.setSpotsIndexed(i.spot_count_indexed.value());
if (i.indexing_solution.has_value())
tmp.setIndex(i.indexing_solution.value());
if (i.mosaicity.has_value())
tmp.setMos(i.mosaicity.value());
if (i.profile_radius.has_value())
tmp.setPr(i.profile_radius.value());
if (i.b_factor.has_value())
tmp.setB(i.b_factor.value());
if (i.uc.has_value()) {
@@ -963,4 +1020,24 @@ org::openapitools::server::model::Scan_result Convert(const ScanResult& input) {
}
ret.setImages(v);
return ret;
}
}
org::openapitools::server::model::Dark_mask_settings Convert(const DarkMaskSettings &input) {
org::openapitools::server::model::Dark_mask_settings ret{};
ret.setDetectorThresholdKeV(input.GetThreshold_keV());
ret.setFrameTimeUs(input.GetFrameTime().count());
ret.setMaxFramesWithSignal(input.GetMaxFramesWithCounts());
ret.setMaxAllowedPixelCount(input.GetMaxCounts());
ret.setNumberOfFrames(input.GetNumberOfFrames());
return ret;
}
DarkMaskSettings Convert(const org::openapitools::server::model::Dark_mask_settings &input) {
DarkMaskSettings ret{};
ret.FrameTime(std::chrono::microseconds(input.getFrameTimeUs()))
.NumberOfFrames(input.getNumberOfFrames())
.MaxCounts(input.getMaxAllowedPixelCount())
.MaxFramesWithCounts(input.getMaxFramesWithSignal())
.Threshold_keV(input.getDetectorThresholdKeV());
return ret;
}

View File

@@ -4,6 +4,7 @@
#ifndef JFJOCH_OPENAPICONVERT_H
#define JFJOCH_OPENAPICONVERT_H
#include "Dark_mask_settings.h"
#include "gen/model/Spot_finding_settings.h"
#include "gen/model/Measurement_statistics.h"
#include "gen/model/Detector_settings.h"
@@ -32,7 +33,7 @@
#include "../common/JFJochMessages.h"
#include "../common/DatasetSettings.h"
#include "../common/ImageFormatSettings.h"
#include "../image_analysis/SpotFindingSettings.h"
#include "../image_analysis/spot_finding/SpotFindingSettings.h"
#include "JFJochStateMachine.h"
#include "../common/DetectorSettings.h"
#include "../jungfrau/JFCalibration.h"
@@ -88,4 +89,6 @@ ColorScaleEnum ConvertColorScale(const std::optional<std::string>& input);
org::openapitools::server::model::Scan_result Convert(const ScanResult& input);
org::openapitools::server::model::Dark_mask_settings Convert(const DarkMaskSettings& input);
DarkMaskSettings Convert(const org::openapitools::server::model::Dark_mask_settings& input);
#endif //JFJOCH_OPENAPICONVERT_H

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -36,6 +36,8 @@ void DefaultApi::setupRoutes() {
Routes::Post(*router, base + "/cancel", Routes::bind(&DefaultApi::cancel_post_handler, this));
Routes::Get(*router, base + "/config/azim_int", Routes::bind(&DefaultApi::config_azim_int_get_handler, this));
Routes::Put(*router, base + "/config/azim_int", Routes::bind(&DefaultApi::config_azim_int_put_handler, this));
Routes::Get(*router, base + "/config/dark_mask", Routes::bind(&DefaultApi::config_dark_mask_get_handler, this));
Routes::Put(*router, base + "/config/dark_mask", Routes::bind(&DefaultApi::config_dark_mask_put_handler, this));
Routes::Get(*router, base + "/config/detector", Routes::bind(&DefaultApi::config_detector_get_handler, this));
Routes::Put(*router, base + "/config/detector", Routes::bind(&DefaultApi::config_detector_put_handler, this));
Routes::Get(*router, base + "/config/file_writer", Routes::bind(&DefaultApi::config_file_writer_get_handler, this));
@@ -72,7 +74,6 @@ void DefaultApi::setupRoutes() {
Routes::Post(*router, base + "/image_buffer/clear", Routes::bind(&DefaultApi::image_buffer_clear_post_handler, this));
Routes::Get(*router, base + "/image_buffer/image.cbor", Routes::bind(&DefaultApi::image_buffer_image_cbor_get_handler, this));
Routes::Get(*router, base + "/image_buffer/image.jpeg", Routes::bind(&DefaultApi::image_buffer_image_jpeg_get_handler, this));
Routes::Get(*router, base + "/image_buffer/image.png", Routes::bind(&DefaultApi::image_buffer_image_png_get_handler, this));
Routes::Get(*router, base + "/image_buffer/image.tiff", Routes::bind(&DefaultApi::image_buffer_image_tiff_get_handler, this));
Routes::Get(*router, base + "/image_buffer/start.cbor", Routes::bind(&DefaultApi::image_buffer_start_cbor_get_handler, this));
Routes::Get(*router, base + "/image_buffer/status", Routes::bind(&DefaultApi::image_buffer_status_get_handler, this));
@@ -194,6 +195,56 @@ void DefaultApi::config_azim_int_put_handler(const Pistache::Rest::Request &requ
response.send(Pistache::Http::Code::Internal_Server_Error, e.what());
}
}
void DefaultApi::config_dark_mask_get_handler(const Pistache::Rest::Request &, Pistache::Http::ResponseWriter response) {
try {
try {
this->config_dark_mask_get(response);
} catch (Pistache::Http::HttpError &e) {
response.send(static_cast<Pistache::Http::Code>(e.code()), e.what());
return;
} catch (std::exception &e) {
this->handleOperationException(e, response);
return;
}
} catch (std::exception &e) {
response.send(Pistache::Http::Code::Internal_Server_Error, e.what());
}
}
void DefaultApi::config_dark_mask_put_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response) {
try {
// Getting the body param
Dark_mask_settings darkMaskSettings;
try {
nlohmann::json::parse(request.body()).get_to(darkMaskSettings);
darkMaskSettings.validate();
} catch (std::exception &e) {
this->handleParsingException(e, response);
return;
}
try {
this->config_dark_mask_put(darkMaskSettings, response);
} catch (Pistache::Http::HttpError &e) {
response.send(static_cast<Pistache::Http::Code>(e.code()), e.what());
return;
} catch (std::exception &e) {
this->handleOperationException(e, response);
return;
}
} catch (std::exception &e) {
response.send(Pistache::Http::Code::Internal_Server_Error, e.what());
}
}
void DefaultApi::config_detector_get_handler(const Pistache::Rest::Request &, Pistache::Http::ResponseWriter response) {
try {
@@ -1078,99 +1129,6 @@ void DefaultApi::image_buffer_image_jpeg_get_handler(const Pistache::Rest::Reque
response.send(Pistache::Http::Code::Internal_Server_Error, e.what());
}
}
void DefaultApi::image_buffer_image_png_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response) {
try {
// Getting the query params
auto idQuery = request.query().get("id");
std::optional<int64_t> id;
if(idQuery.has_value()){
int64_t valueQuery_instance;
if(fromStringValue(idQuery.value(), valueQuery_instance)){
id = valueQuery_instance;
}
}
auto showUserMaskQuery = request.query().get("show_user_mask");
std::optional<bool> showUserMask;
if(showUserMaskQuery.has_value()){
bool valueQuery_instance;
if(fromStringValue(showUserMaskQuery.value(), valueQuery_instance)){
showUserMask = valueQuery_instance;
}
}
auto showRoiQuery = request.query().get("show_roi");
std::optional<bool> showRoi;
if(showRoiQuery.has_value()){
bool valueQuery_instance;
if(fromStringValue(showRoiQuery.value(), valueQuery_instance)){
showRoi = valueQuery_instance;
}
}
auto showSpotsQuery = request.query().get("show_spots");
std::optional<bool> showSpots;
if(showSpotsQuery.has_value()){
bool valueQuery_instance;
if(fromStringValue(showSpotsQuery.value(), valueQuery_instance)){
showSpots = valueQuery_instance;
}
}
auto showBeamCenterQuery = request.query().get("show_beam_center");
std::optional<bool> showBeamCenter;
if(showBeamCenterQuery.has_value()){
bool valueQuery_instance;
if(fromStringValue(showBeamCenterQuery.value(), valueQuery_instance)){
showBeamCenter = valueQuery_instance;
}
}
auto saturationQuery = request.query().get("saturation");
std::optional<float> saturation;
if(saturationQuery.has_value()){
float valueQuery_instance;
if(fromStringValue(saturationQuery.value(), valueQuery_instance)){
saturation = valueQuery_instance;
}
}
auto jpegQualityQuery = request.query().get("jpeg_quality");
std::optional<int64_t> jpegQuality;
if(jpegQualityQuery.has_value()){
int64_t valueQuery_instance;
if(fromStringValue(jpegQualityQuery.value(), valueQuery_instance)){
jpegQuality = valueQuery_instance;
}
}
auto showResRingQuery = request.query().get("show_res_ring");
std::optional<float> showResRing;
if(showResRingQuery.has_value()){
float valueQuery_instance;
if(fromStringValue(showResRingQuery.value(), valueQuery_instance)){
showResRing = valueQuery_instance;
}
}
auto colorQuery = request.query().get("color");
std::optional<std::string> color;
if(colorQuery.has_value()){
std::string valueQuery_instance;
if(fromStringValue(colorQuery.value(), valueQuery_instance)){
color = valueQuery_instance;
}
}
try {
this->image_buffer_image_png_get(id, showUserMask, showRoi, showSpots, showBeamCenter, saturation, jpegQuality, showResRing, color, response);
} catch (Pistache::Http::HttpError &e) {
response.send(static_cast<Pistache::Http::Code>(e.code()), e.what());
return;
} catch (std::exception &e) {
this->handleOperationException(e, response);
return;
}
} catch (std::exception &e) {
response.send(Pistache::Http::Code::Internal_Server_Error, e.what());
}
}
void DefaultApi::image_buffer_image_tiff_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response) {
try {
@@ -1343,6 +1301,14 @@ void DefaultApi::preview_plot_get_handler(const Pistache::Rest::Request &request
type = valueQuery_instance;
}
}
auto fillQuery = request.query().get("fill");
std::optional<float> fill;
if(fillQuery.has_value()){
float valueQuery_instance;
if(fromStringValue(fillQuery.value(), valueQuery_instance)){
fill = valueQuery_instance;
}
}
auto experimentalCoordQuery = request.query().get("experimental_coord");
std::optional<bool> experimentalCoord;
if(experimentalCoordQuery.has_value()){
@@ -1361,7 +1327,7 @@ void DefaultApi::preview_plot_get_handler(const Pistache::Rest::Request &request
}
try {
this->preview_plot_get(type, binning, compression, experimentalCoord, azintUnit, response);
this->preview_plot_get(type, binning, compression, fill, experimentalCoord, azintUnit, response);
} catch (Pistache::Http::HttpError &e) {
response.send(static_cast<Pistache::Http::Code>(e.code()), e.what());
return;

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -31,6 +31,7 @@
#include "Azim_int_settings.h"
#include "Broker_status.h"
#include "Calibration_statistics_inner.h"
#include "Dark_mask_settings.h"
#include "Dataset_settings.h"
#include "Detector_list.h"
#include "Detector_selection.h"
@@ -71,6 +72,8 @@ private:
void cancel_post_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_azim_int_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_azim_int_put_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_dark_mask_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_dark_mask_put_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_detector_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_detector_put_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void config_file_writer_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
@@ -107,7 +110,6 @@ private:
void image_buffer_clear_post_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_image_cbor_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_image_jpeg_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_image_png_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_image_tiff_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_start_cbor_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
void image_buffer_status_get_handler(const Pistache::Rest::Request &request, Pistache::Http::ResponseWriter response);
@@ -164,14 +166,14 @@ private:
/// </remarks>
virtual void cancel_post(Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get radial integration configuration
/// Get azimuthal integration configuration
/// </summary>
/// <remarks>
/// Can be done anytime
/// </remarks>
virtual void config_azim_int_get(Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Configure radial integration
/// Configure azimuthal integration
/// </summary>
/// <remarks>
/// Can be done when detector is Inactive or Idle
@@ -179,6 +181,21 @@ private:
/// <param name="azimIntSettings"> (optional)</param>
virtual void config_azim_int_put(const org::openapitools::server::model::Azim_int_settings &azimIntSettings, Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get settings for dark data collection to calculate mask
/// </summary>
/// <remarks>
///
/// </remarks>
virtual void config_dark_mask_get(Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Set configuration for dark data collection to calculate mask
/// </summary>
/// <remarks>
/// This is only possible when operating DECTRIS detectors at the moment; it will be also available for PSI EIGER at some point. This can only be done when detector is &#x60;Idle&#x60;, &#x60;Error&#x60; or &#x60;Inactive&#x60; states.
/// </remarks>
/// <param name="darkMaskSettings"> (optional)</param>
virtual void config_dark_mask_put(const org::openapitools::server::model::Dark_mask_settings &darkMaskSettings, Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get detector configuration
/// </summary>
/// <remarks>
@@ -451,22 +468,6 @@ private:
/// <param name="color">Color scale for preview image: 0 - indigo, 1 - viridis, 2 - B/W, 3 - heat (optional, default to &quot;indigo&quot;)</param>
virtual void image_buffer_image_jpeg_get(const std::optional<int64_t> &id, const std::optional<bool> &showUserMask, const std::optional<bool> &showRoi, const std::optional<bool> &showSpots, const std::optional<bool> &showBeamCenter, const std::optional<float> &saturation, const std::optional<int64_t> &jpegQuality, const std::optional<float> &showResRing, const std::optional<std::string> &color, Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get preview image in PNG format using custom settings
/// </summary>
/// <remarks>
///
/// </remarks>
/// <param name="id">Image ID in the image buffer. Special values: -1 - last image in the buffer, -2: last indexed image in the buffer (optional, default to -1L)</param>
/// <param name="showUserMask">Show user mask (optional, default to false)</param>
/// <param name="showRoi">Show ROI areas on the image (optional, default to false)</param>
/// <param name="showSpots">Show spot finding results on the image (optional, default to true)</param>
/// <param name="showBeamCenter">Show beam center on the image (optional, default to true)</param>
/// <param name="saturation">Saturation value to set contrast in the preview image (optional, default to 10.0f)</param>
/// <param name="jpegQuality">Quality of JPEG image (100 - highest; 0 - lowest) (optional, default to 100L)</param>
/// <param name="showResRing">Show resolution ring, provided in Angstrom (optional, default to 0.1f)</param>
/// <param name="color">Color scale for preview image: 0 - indigo, 1 - viridis, 2 - B/W, 3 - heat (optional, default to &quot;indigo&quot;)</param>
virtual void image_buffer_image_png_get(const std::optional<int64_t> &id, const std::optional<bool> &showUserMask, const std::optional<bool> &showRoi, const std::optional<bool> &showSpots, const std::optional<bool> &showBeamCenter, const std::optional<float> &saturation, const std::optional<int64_t> &jpegQuality, const std::optional<float> &showResRing, const std::optional<std::string> &color, Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get preview image in TIFF format
/// </summary>
/// <remarks>
@@ -520,9 +521,10 @@ private:
/// <param name="type">Type of requested plot</param>
/// <param name="binning">Binning of frames for the plot (0 &#x3D; default binning) (optional, default to 0)</param>
/// <param name="compression">Enable DEFLATE compression of output data. (optional, default to false)</param>
/// <param name="fill">Fill value for elements that were missed during data collection (optional, default to 0.0f)</param>
/// <param name="experimentalCoord">If measurement has goniometer axis defined, plot X-axis will represent rotation angle If measurement has grid scan defined, plot X-axis and Y-axis will represent grid position, Z will be used as the final value For still measurement the number is ignored (optional, default to false)</param>
/// <param name="azintUnit">Unit used for azim int. (optional, default to &quot;Q_recipA&quot;)</param>
virtual void preview_plot_get(const std::optional<std::string> &type, const std::optional<int32_t> &binning, const std::optional<bool> &compression, const std::optional<bool> &experimentalCoord, const std::optional<std::string> &azintUnit, Pistache::Http::ResponseWriter &response) = 0;
virtual void preview_plot_get(const std::optional<std::string> &type, const std::optional<int32_t> &binning, const std::optional<bool> &compression, const std::optional<float> &fill, const std::optional<bool> &experimentalCoord, const std::optional<std::string> &azintUnit, Pistache::Http::ResponseWriter &response) = 0;
/// <summary>
/// Get full scan result
/// </summary>

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -58,12 +58,12 @@ public:
/// Azim_int_settings members
/// <summary>
/// Apply polarization correction for radial integration (polarization factor must be configured in dataset settings)
/// Apply polarization correction for azimuthal integration (polarization factor must be configured in dataset settings)
/// </summary>
bool isPolarizationCorr() const;
void setPolarizationCorr(bool const value);
/// <summary>
/// Apply solid angle correction for radial integration
/// Apply solid angle correction for azimuthal integration
/// </summary>
bool isSolidAngleCorr() const;
void setSolidAngleCorr(bool const value);
@@ -83,7 +83,7 @@ public:
float getQSpacing() const;
void setQSpacing(float const value);
/// <summary>
/// Numer of azimuthal (phi) bins; 1 &#x3D; standard 1D radial integration
/// Numer of azimuthal (phi) bins; 1 &#x3D; standard 1D azimuthal integration
/// </summary>
int64_t getAzimuthalBins() const;
void setAzimuthalBins(int64_t const value);

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -30,8 +30,6 @@ Broker_status::Broker_status()
m_Message_severityIsSet = false;
m_Gpu_count = 0;
m_Gpu_countIsSet = false;
m_Ml_resolution_estimation = false;
m_Ml_resolution_estimationIsSet = false;
}
@@ -73,7 +71,7 @@ bool Broker_status::validate(std::stringstream& msg, const std::string& pathPref
}
}
return success;
}
@@ -95,10 +93,7 @@ bool Broker_status::operator==(const Broker_status& rhs) const
((!messageSeverityIsSet() && !rhs.messageSeverityIsSet()) || (messageSeverityIsSet() && rhs.messageSeverityIsSet() && getMessageSeverity() == rhs.getMessageSeverity())) &&
((!gpuCountIsSet() && !rhs.gpuCountIsSet()) || (gpuCountIsSet() && rhs.gpuCountIsSet() && getGpuCount() == rhs.getGpuCount())) &&
((!mlResolutionEstimationIsSet() && !rhs.mlResolutionEstimationIsSet()) || (mlResolutionEstimationIsSet() && rhs.mlResolutionEstimationIsSet() && isMlResolutionEstimation() == rhs.isMlResolutionEstimation()))
((!gpuCountIsSet() && !rhs.gpuCountIsSet()) || (gpuCountIsSet() && rhs.gpuCountIsSet() && getGpuCount() == rhs.getGpuCount()))
;
}
@@ -120,8 +115,6 @@ void to_json(nlohmann::json& j, const Broker_status& o)
j["message_severity"] = o.m_Message_severity;
if(o.gpuCountIsSet())
j["gpu_count"] = o.m_Gpu_count;
if(o.mlResolutionEstimationIsSet())
j["ml_resolution_estimation"] = o.m_Ml_resolution_estimation;
}
@@ -148,11 +141,6 @@ void from_json(const nlohmann::json& j, Broker_status& o)
j.at("gpu_count").get_to(o.m_Gpu_count);
o.m_Gpu_countIsSet = true;
}
if(j.find("ml_resolution_estimation") != j.end())
{
j.at("ml_resolution_estimation").get_to(o.m_Ml_resolution_estimation);
o.m_Ml_resolution_estimationIsSet = true;
}
}
@@ -232,23 +220,6 @@ void Broker_status::unsetGpu_count()
{
m_Gpu_countIsSet = false;
}
bool Broker_status::isMlResolutionEstimation() const
{
return m_Ml_resolution_estimation;
}
void Broker_status::setMlResolutionEstimation(bool const value)
{
m_Ml_resolution_estimation = value;
m_Ml_resolution_estimationIsSet = true;
}
bool Broker_status::mlResolutionEstimationIsSet() const
{
return m_Ml_resolution_estimationIsSet;
}
void Broker_status::unsetMl_resolution_estimation()
{
m_Ml_resolution_estimationIsSet = false;
}
} // namespace org::openapitools::server::model

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -91,13 +91,6 @@ public:
void setGpuCount(int32_t const value);
bool gpuCountIsSet() const;
void unsetGpu_count();
/// <summary>
/// ML resolution estimation available
/// </summary>
bool isMlResolutionEstimation() const;
void setMlResolutionEstimation(bool const value);
bool mlResolutionEstimationIsSet() const;
void unsetMl_resolution_estimation();
friend void to_json(nlohmann::json& j, const Broker_status& o);
friend void from_json(const nlohmann::json& j, Broker_status& o);
@@ -112,8 +105,6 @@ protected:
bool m_Message_severityIsSet;
int32_t m_Gpu_count;
bool m_Gpu_countIsSet;
bool m_Ml_resolution_estimation;
bool m_Ml_resolution_estimationIsSet;
};

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -0,0 +1,227 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
#include "Dark_mask_settings.h"
#include "Helpers.h"
#include <sstream>
namespace org::openapitools::server::model
{
Dark_mask_settings::Dark_mask_settings()
{
m_Detector_threshold_keV = 3.5f;
m_Frame_time_us = 10000L;
m_Number_of_frames = 1000L;
m_Max_allowed_pixel_count = 1L;
m_Max_frames_with_signal = 10L;
}
void Dark_mask_settings::validate() const
{
std::stringstream msg;
if (!validate(msg))
{
throw org::openapitools::server::helpers::ValidationException(msg.str());
}
}
bool Dark_mask_settings::validate(std::stringstream& msg) const
{
return validate(msg, "");
}
bool Dark_mask_settings::validate(std::stringstream& msg, const std::string& pathPrefix) const
{
bool success = true;
const std::string _pathPrefix = pathPrefix.empty() ? "Dark_mask_settings" : pathPrefix;
/* Detector_threshold_keV */ {
const float& value = m_Detector_threshold_keV;
const std::string currentValuePath = _pathPrefix + ".detectorThresholdKeV";
if (value < static_cast<float>(2.5))
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 2.5;";
}
if (value > static_cast<float>(100.0))
{
success = false;
msg << currentValuePath << ": must be less than or equal to 100.0;";
}
}
/* Frame_time_us */ {
const int64_t& value = m_Frame_time_us;
const std::string currentValuePath = _pathPrefix + ".frameTimeUs";
if (value < 500ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 500;";
}
if (value > 100000ll)
{
success = false;
msg << currentValuePath << ": must be less than or equal to 100000;";
}
}
/* Number_of_frames */ {
const int64_t& value = m_Number_of_frames;
const std::string currentValuePath = _pathPrefix + ".numberOfFrames";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
/* Max_allowed_pixel_count */ {
const int64_t& value = m_Max_allowed_pixel_count;
const std::string currentValuePath = _pathPrefix + ".maxAllowedPixelCount";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
/* Max_frames_with_signal */ {
const int64_t& value = m_Max_frames_with_signal;
const std::string currentValuePath = _pathPrefix + ".maxFramesWithSignal";
if (value < 0ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
}
}
return success;
}
bool Dark_mask_settings::operator==(const Dark_mask_settings& rhs) const
{
return
(getDetectorThresholdKeV() == rhs.getDetectorThresholdKeV())
&&
(getFrameTimeUs() == rhs.getFrameTimeUs())
&&
(getNumberOfFrames() == rhs.getNumberOfFrames())
&&
(getMaxAllowedPixelCount() == rhs.getMaxAllowedPixelCount())
&&
(getMaxFramesWithSignal() == rhs.getMaxFramesWithSignal())
;
}
bool Dark_mask_settings::operator!=(const Dark_mask_settings& rhs) const
{
return !(*this == rhs);
}
void to_json(nlohmann::json& j, const Dark_mask_settings& o)
{
j = nlohmann::json::object();
j["detector_threshold_keV"] = o.m_Detector_threshold_keV;
j["frame_time_us"] = o.m_Frame_time_us;
j["number_of_frames"] = o.m_Number_of_frames;
j["max_allowed_pixel_count"] = o.m_Max_allowed_pixel_count;
j["max_frames_with_signal"] = o.m_Max_frames_with_signal;
}
void from_json(const nlohmann::json& j, Dark_mask_settings& o)
{
j.at("detector_threshold_keV").get_to(o.m_Detector_threshold_keV);
j.at("frame_time_us").get_to(o.m_Frame_time_us);
j.at("number_of_frames").get_to(o.m_Number_of_frames);
j.at("max_allowed_pixel_count").get_to(o.m_Max_allowed_pixel_count);
j.at("max_frames_with_signal").get_to(o.m_Max_frames_with_signal);
}
float Dark_mask_settings::getDetectorThresholdKeV() const
{
return m_Detector_threshold_keV;
}
void Dark_mask_settings::setDetectorThresholdKeV(float const value)
{
m_Detector_threshold_keV = value;
}
int64_t Dark_mask_settings::getFrameTimeUs() const
{
return m_Frame_time_us;
}
void Dark_mask_settings::setFrameTimeUs(int64_t const value)
{
m_Frame_time_us = value;
}
int64_t Dark_mask_settings::getNumberOfFrames() const
{
return m_Number_of_frames;
}
void Dark_mask_settings::setNumberOfFrames(int64_t const value)
{
m_Number_of_frames = value;
}
int64_t Dark_mask_settings::getMaxAllowedPixelCount() const
{
return m_Max_allowed_pixel_count;
}
void Dark_mask_settings::setMaxAllowedPixelCount(int64_t const value)
{
m_Max_allowed_pixel_count = value;
}
int64_t Dark_mask_settings::getMaxFramesWithSignal() const
{
return m_Max_frames_with_signal;
}
void Dark_mask_settings::setMaxFramesWithSignal(int64_t const value)
{
m_Max_frames_with_signal = value;
}
} // namespace org::openapitools::server::model

View File

@@ -0,0 +1,104 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
/*
* Dark_mask_settings.h
*
* Settings for collection of dark images to be used for mask calculation
*/
#ifndef Dark_mask_settings_H_
#define Dark_mask_settings_H_
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
{
/// <summary>
/// Settings for collection of dark images to be used for mask calculation
/// </summary>
class Dark_mask_settings
{
public:
Dark_mask_settings();
virtual ~Dark_mask_settings() = default;
/// <summary>
/// Validate the current data in the model. Throws a ValidationException on failure.
/// </summary>
void validate() const;
/// <summary>
/// Validate the current data in the model. Returns false on error and writes an error
/// message into the given stringstream.
/// </summary>
bool validate(std::stringstream& msg) const;
/// <summary>
/// Helper overload for validate. Used when one model stores another model and calls it's validate.
/// Not meant to be called outside that case.
/// </summary>
bool validate(std::stringstream& msg, const std::string& pathPrefix) const;
bool operator==(const Dark_mask_settings& rhs) const;
bool operator!=(const Dark_mask_settings& rhs) const;
/////////////////////////////////////////////
/// Dark_mask_settings members
/// <summary>
/// Energy threshold for dark image collection
/// </summary>
float getDetectorThresholdKeV() const;
void setDetectorThresholdKeV(float const value);
/// <summary>
/// Time between frames for dark image collection
/// </summary>
int64_t getFrameTimeUs() const;
void setFrameTimeUs(int64_t const value);
/// <summary>
/// Number of frames for dark image collection; zero means no dark collection
/// </summary>
int64_t getNumberOfFrames() const;
void setNumberOfFrames(int64_t const value);
/// <summary>
/// Maximum count in a pixel considered normal (not-masked)
/// </summary>
int64_t getMaxAllowedPixelCount() const;
void setMaxAllowedPixelCount(int64_t const value);
/// <summary>
/// Maximum number of frames with signal in a pixel considered normal (not-masked)
/// </summary>
int64_t getMaxFramesWithSignal() const;
void setMaxFramesWithSignal(int64_t const value);
friend void to_json(nlohmann::json& j, const Dark_mask_settings& o);
friend void from_json(const nlohmann::json& j, Dark_mask_settings& o);
protected:
float m_Detector_threshold_keV;
int64_t m_Frame_time_us;
int64_t m_Number_of_frames;
int64_t m_Max_allowed_pixel_count;
int64_t m_Max_frames_with_signal;
};
} // namespace org::openapitools::server::model
#endif /* Dark_mask_settings_H_ */

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -78,6 +78,13 @@ Dataset_settings::Dataset_settings()
m_Poni_rot3_rad = 0.0f;
m_Poni_rot3_radIsSet = false;
m_Unit_cellIsSet = false;
m_Spot_finding = true;
m_Spot_findingIsSet = false;
m_Max_spot_count = 250;
m_Max_spot_countIsSet = false;
m_Detect_ice_rings = false;
m_Detect_ice_ringsIsSet = false;
m_Xray_fluorescence_spectrumIsSet = false;
}
@@ -196,10 +203,10 @@ bool Dataset_settings::validate(std::stringstream& msg, const std::string& pathP
const std::string currentValuePath = _pathPrefix + ".spaceGroupNumber";
if (value < 0ll)
if (value < 1ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0;";
msg << currentValuePath << ": must be greater than or equal to 1;";
}
if (value > 194ll)
{
@@ -397,7 +404,26 @@ bool Dataset_settings::validate(std::stringstream& msg, const std::string& pathP
}
}
if (maxSpotCountIsSet())
{
const int32_t& value = m_Max_spot_count;
const std::string currentValuePath = _pathPrefix + ".maxSpotCount";
if (value < 10)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 10;";
}
if (value > 2000)
{
success = false;
msg << currentValuePath << ": must be less than or equal to 2000;";
}
}
return success;
}
@@ -503,7 +529,19 @@ bool Dataset_settings::operator==(const Dataset_settings& rhs) const
((!poniRot3RadIsSet() && !rhs.poniRot3RadIsSet()) || (poniRot3RadIsSet() && rhs.poniRot3RadIsSet() && getPoniRot3Rad() == rhs.getPoniRot3Rad())) &&
((!unitCellIsSet() && !rhs.unitCellIsSet()) || (unitCellIsSet() && rhs.unitCellIsSet() && getUnitCell() == rhs.getUnitCell()))
((!unitCellIsSet() && !rhs.unitCellIsSet()) || (unitCellIsSet() && rhs.unitCellIsSet() && getUnitCell() == rhs.getUnitCell())) &&
((!spotFindingIsSet() && !rhs.spotFindingIsSet()) || (spotFindingIsSet() && rhs.spotFindingIsSet() && isSpotFinding() == rhs.isSpotFinding())) &&
((!maxSpotCountIsSet() && !rhs.maxSpotCountIsSet()) || (maxSpotCountIsSet() && rhs.maxSpotCountIsSet() && getMaxSpotCount() == rhs.getMaxSpotCount())) &&
((!detectIceRingsIsSet() && !rhs.detectIceRingsIsSet()) || (detectIceRingsIsSet() && rhs.detectIceRingsIsSet() && isDetectIceRings() == rhs.isDetectIceRings())) &&
((!xrayFluorescenceSpectrumIsSet() && !rhs.xrayFluorescenceSpectrumIsSet()) || (xrayFluorescenceSpectrumIsSet() && rhs.xrayFluorescenceSpectrumIsSet() && getXrayFluorescenceSpectrum() == rhs.getXrayFluorescenceSpectrum()))
;
}
@@ -578,6 +616,14 @@ void to_json(nlohmann::json& j, const Dataset_settings& o)
j["poni_rot3_rad"] = o.m_Poni_rot3_rad;
if(o.unitCellIsSet())
j["unit_cell"] = o.m_Unit_cell;
if(o.spotFindingIsSet())
j["spot_finding"] = o.m_Spot_finding;
if(o.maxSpotCountIsSet())
j["max_spot_count"] = o.m_Max_spot_count;
if(o.detectIceRingsIsSet())
j["detect_ice_rings"] = o.m_Detect_ice_rings;
if(o.xrayFluorescenceSpectrumIsSet())
j["xray_fluorescence_spectrum"] = o.m_Xray_fluorescence_spectrum;
}
@@ -732,6 +778,26 @@ void from_json(const nlohmann::json& j, Dataset_settings& o)
j.at("unit_cell").get_to(o.m_Unit_cell);
o.m_Unit_cellIsSet = true;
}
if(j.find("spot_finding") != j.end())
{
j.at("spot_finding").get_to(o.m_Spot_finding);
o.m_Spot_findingIsSet = true;
}
if(j.find("max_spot_count") != j.end())
{
j.at("max_spot_count").get_to(o.m_Max_spot_count);
o.m_Max_spot_countIsSet = true;
}
if(j.find("detect_ice_rings") != j.end())
{
j.at("detect_ice_rings").get_to(o.m_Detect_ice_rings);
o.m_Detect_ice_ringsIsSet = true;
}
if(j.find("xray_fluorescence_spectrum") != j.end())
{
j.at("xray_fluorescence_spectrum").get_to(o.m_Xray_fluorescence_spectrum);
o.m_Xray_fluorescence_spectrumIsSet = true;
}
}
@@ -1260,6 +1326,74 @@ void Dataset_settings::unsetUnit_cell()
{
m_Unit_cellIsSet = false;
}
bool Dataset_settings::isSpotFinding() const
{
return m_Spot_finding;
}
void Dataset_settings::setSpotFinding(bool const value)
{
m_Spot_finding = value;
m_Spot_findingIsSet = true;
}
bool Dataset_settings::spotFindingIsSet() const
{
return m_Spot_findingIsSet;
}
void Dataset_settings::unsetSpot_finding()
{
m_Spot_findingIsSet = false;
}
int32_t Dataset_settings::getMaxSpotCount() const
{
return m_Max_spot_count;
}
void Dataset_settings::setMaxSpotCount(int32_t const value)
{
m_Max_spot_count = value;
m_Max_spot_countIsSet = true;
}
bool Dataset_settings::maxSpotCountIsSet() const
{
return m_Max_spot_countIsSet;
}
void Dataset_settings::unsetMax_spot_count()
{
m_Max_spot_countIsSet = false;
}
bool Dataset_settings::isDetectIceRings() const
{
return m_Detect_ice_rings;
}
void Dataset_settings::setDetectIceRings(bool const value)
{
m_Detect_ice_rings = value;
m_Detect_ice_ringsIsSet = true;
}
bool Dataset_settings::detectIceRingsIsSet() const
{
return m_Detect_ice_ringsIsSet;
}
void Dataset_settings::unsetDetect_ice_rings()
{
m_Detect_ice_ringsIsSet = false;
}
org::openapitools::server::model::Dataset_settings_xray_fluorescence_spectrum Dataset_settings::getXrayFluorescenceSpectrum() const
{
return m_Xray_fluorescence_spectrum;
}
void Dataset_settings::setXrayFluorescenceSpectrum(org::openapitools::server::model::Dataset_settings_xray_fluorescence_spectrum const& value)
{
m_Xray_fluorescence_spectrum = value;
m_Xray_fluorescence_spectrumIsSet = true;
}
bool Dataset_settings::xrayFluorescenceSpectrumIsSet() const
{
return m_Xray_fluorescence_spectrumIsSet;
}
void Dataset_settings::unsetXray_fluorescence_spectrum()
{
m_Xray_fluorescence_spectrumIsSet = false;
}
} // namespace org::openapitools::server::model

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -24,6 +24,7 @@
#include "Rotation_axis.h"
#include "Unit_cell.h"
#include <string>
#include "Dataset_settings_xray_fluorescence_spectrum.h"
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
@@ -77,7 +78,7 @@ public:
bool ntriggerIsSet() const;
void unsetNtrigger();
/// <summary>
/// Image time. If not provided (or zero value) the frame time is assumed as default. Image time must be multiple of frame time; max value is 256 * frame_time. In XFEL mode: summation happens for frames collected with multiple triggers. Ignored for storage cells and if raw data are saved.
/// Image time. If not provided (or zero value) the frame time is assumed as default. For JUNGFRAU image time must be multiple of frame time and max value is 256 * frame_time. In XFEL mode: summation happens for frames collected with multiple triggers. Ignored for storage cells and if raw data are saved.
/// </summary>
int64_t getImageTimeUs() const;
void setImageTimeUs(int64_t const value);
@@ -285,6 +286,34 @@ public:
void setUnitCell(org::openapitools::server::model::Unit_cell const& value);
bool unitCellIsSet() const;
void unsetUnit_cell();
/// <summary>
/// Enable spot finding and save spots
/// </summary>
bool isSpotFinding() const;
void setSpotFinding(bool const value);
bool spotFindingIsSet() const;
void unsetSpot_finding();
/// <summary>
/// Maximum number of spots that are saved/used for indexing; spots with highest intensity are selected
/// </summary>
int32_t getMaxSpotCount() const;
void setMaxSpotCount(int32_t const value);
bool maxSpotCountIsSet() const;
void unsetMax_spot_count();
/// <summary>
/// Flag spots as ice rings and reduce their effect on indexing
/// </summary>
bool isDetectIceRings() const;
void setDetectIceRings(bool const value);
bool detectIceRingsIsSet() const;
void unsetDetect_ice_rings();
/// <summary>
///
/// </summary>
org::openapitools::server::model::Dataset_settings_xray_fluorescence_spectrum getXrayFluorescenceSpectrum() const;
void setXrayFluorescenceSpectrum(org::openapitools::server::model::Dataset_settings_xray_fluorescence_spectrum const& value);
bool xrayFluorescenceSpectrumIsSet() const;
void unsetXray_fluorescence_spectrum();
friend void to_json(nlohmann::json& j, const Dataset_settings& o);
friend void from_json(const nlohmann::json& j, Dataset_settings& o);
@@ -355,6 +384,14 @@ protected:
bool m_Poni_rot3_radIsSet;
org::openapitools::server::model::Unit_cell m_Unit_cell;
bool m_Unit_cellIsSet;
bool m_Spot_finding;
bool m_Spot_findingIsSet;
int32_t m_Max_spot_count;
bool m_Max_spot_countIsSet;
bool m_Detect_ice_rings;
bool m_Detect_ice_ringsIsSet;
org::openapitools::server::model::Dataset_settings_xray_fluorescence_spectrum m_Xray_fluorescence_spectrum;
bool m_Xray_fluorescence_spectrumIsSet;
};

View File

@@ -0,0 +1,145 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
#include "Dataset_settings_xray_fluorescence_spectrum.h"
#include "Helpers.h"
#include <sstream>
namespace org::openapitools::server::model
{
Dataset_settings_xray_fluorescence_spectrum::Dataset_settings_xray_fluorescence_spectrum()
{
}
void Dataset_settings_xray_fluorescence_spectrum::validate() const
{
std::stringstream msg;
if (!validate(msg))
{
throw org::openapitools::server::helpers::ValidationException(msg.str());
}
}
bool Dataset_settings_xray_fluorescence_spectrum::validate(std::stringstream& msg) const
{
return validate(msg, "");
}
bool Dataset_settings_xray_fluorescence_spectrum::validate(std::stringstream& msg, const std::string& pathPrefix) const
{
bool success = true;
const std::string _pathPrefix = pathPrefix.empty() ? "Dataset_settings_xray_fluorescence_spectrum" : pathPrefix;
/* Energy_eV */ {
const std::vector<float>& value = m_Energy_eV;
const std::string currentValuePath = _pathPrefix + ".energyEV";
{ // Recursive validation of array elements
const std::string oldValuePath = currentValuePath;
int i = 0;
for (const float& value : value)
{
const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
i++;
}
}
}
/* Data */ {
const std::vector<float>& value = m_Data;
const std::string currentValuePath = _pathPrefix + ".data";
{ // Recursive validation of array elements
const std::string oldValuePath = currentValuePath;
int i = 0;
for (const float& value : value)
{
const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
i++;
}
}
}
return success;
}
bool Dataset_settings_xray_fluorescence_spectrum::operator==(const Dataset_settings_xray_fluorescence_spectrum& rhs) const
{
return
(getEnergyEV() == rhs.getEnergyEV())
&&
(getData() == rhs.getData())
;
}
bool Dataset_settings_xray_fluorescence_spectrum::operator!=(const Dataset_settings_xray_fluorescence_spectrum& rhs) const
{
return !(*this == rhs);
}
void to_json(nlohmann::json& j, const Dataset_settings_xray_fluorescence_spectrum& o)
{
j = nlohmann::json::object();
j["energy_eV"] = o.m_Energy_eV;
j["data"] = o.m_Data;
}
void from_json(const nlohmann::json& j, Dataset_settings_xray_fluorescence_spectrum& o)
{
j.at("energy_eV").get_to(o.m_Energy_eV);
j.at("data").get_to(o.m_Data);
}
std::vector<float> Dataset_settings_xray_fluorescence_spectrum::getEnergyEV() const
{
return m_Energy_eV;
}
void Dataset_settings_xray_fluorescence_spectrum::setEnergyEV(std::vector<float> const value)
{
m_Energy_eV = value;
}
std::vector<float> Dataset_settings_xray_fluorescence_spectrum::getData() const
{
return m_Data;
}
void Dataset_settings_xray_fluorescence_spectrum::setData(std::vector<float> const value)
{
m_Data = value;
}
} // namespace org::openapitools::server::model

View File

@@ -0,0 +1,84 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
/*
* Dataset_settings_xray_fluorescence_spectrum.h
*
*
*/
#ifndef Dataset_settings_xray_fluorescence_spectrum_H_
#define Dataset_settings_xray_fluorescence_spectrum_H_
#include <vector>
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
{
/// <summary>
///
/// </summary>
class Dataset_settings_xray_fluorescence_spectrum
{
public:
Dataset_settings_xray_fluorescence_spectrum();
virtual ~Dataset_settings_xray_fluorescence_spectrum() = default;
/// <summary>
/// Validate the current data in the model. Throws a ValidationException on failure.
/// </summary>
void validate() const;
/// <summary>
/// Validate the current data in the model. Returns false on error and writes an error
/// message into the given stringstream.
/// </summary>
bool validate(std::stringstream& msg) const;
/// <summary>
/// Helper overload for validate. Used when one model stores another model and calls it's validate.
/// Not meant to be called outside that case.
/// </summary>
bool validate(std::stringstream& msg, const std::string& pathPrefix) const;
bool operator==(const Dataset_settings_xray_fluorescence_spectrum& rhs) const;
bool operator!=(const Dataset_settings_xray_fluorescence_spectrum& rhs) const;
/////////////////////////////////////////////
/// Dataset_settings_xray_fluorescence_spectrum members
/// <summary>
/// X-ray fluorescence scan energy for each measurement point
/// </summary>
std::vector<float> getEnergyEV() const;
void setEnergyEV(std::vector<float> const value);
/// <summary>
/// X-ray fluorescence scan result in arbitrary units; must be exactly the same length, as energy_eV
/// </summary>
std::vector<float> getData() const;
void setData(std::vector<float> const value);
friend void to_json(nlohmann::json& j, const Dataset_settings_xray_fluorescence_spectrum& o);
friend void from_json(const nlohmann::json& j, Dataset_settings_xray_fluorescence_spectrum& o);
protected:
std::vector<float> m_Energy_eV;
std::vector<float> m_Data;
};
} // namespace org::openapitools::server::model
#endif /* Dataset_settings_xray_fluorescence_spectrum_H_ */

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -52,6 +52,9 @@ Detector::Detector()
m_Roi_modeIsSet = false;
m_Mirror_y = true;
m_Mirror_yIsSet = false;
m_Temp_thresold_degC = 55L;
m_Temp_thresold_degCIsSet = false;
m_Default_settingsIsSet = false;
}
@@ -280,7 +283,26 @@ bool Detector::validate(std::stringstream& msg, const std::string& pathPrefix) c
}
}
if (tempThresoldDegCIsSet())
{
const int64_t& value = m_Temp_thresold_degC;
const std::string currentValuePath = _pathPrefix + ".tempThresoldDegC";
if (value < 40ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 40;";
}
if (value > 70ll)
{
success = false;
msg << currentValuePath << ": must be less than or equal to 70;";
}
}
return success;
}
@@ -344,7 +366,13 @@ bool Detector::operator==(const Detector& rhs) const
((!roiModeIsSet() && !rhs.roiModeIsSet()) || (roiModeIsSet() && rhs.roiModeIsSet() && getRoiMode() == rhs.getRoiMode())) &&
((!mirrorYIsSet() && !rhs.mirrorYIsSet()) || (mirrorYIsSet() && rhs.mirrorYIsSet() && isMirrorY() == rhs.isMirrorY()))
((!mirrorYIsSet() && !rhs.mirrorYIsSet()) || (mirrorYIsSet() && rhs.mirrorYIsSet() && isMirrorY() == rhs.isMirrorY())) &&
((!tempThresoldDegCIsSet() && !rhs.tempThresoldDegCIsSet()) || (tempThresoldDegCIsSet() && rhs.tempThresoldDegCIsSet() && getTempThresoldDegC() == rhs.getTempThresoldDegC())) &&
((!defaultSettingsIsSet() && !rhs.defaultSettingsIsSet()) || (defaultSettingsIsSet() && rhs.defaultSettingsIsSet() && getDefaultSettings() == rhs.getDefaultSettings()))
;
}
@@ -394,6 +422,10 @@ void to_json(nlohmann::json& j, const Detector& o)
j["roi_mode"] = o.m_Roi_mode;
if(o.mirrorYIsSet())
j["mirror_y"] = o.m_Mirror_y;
if(o.tempThresoldDegCIsSet())
j["temp_thresold_degC"] = o.m_Temp_thresold_degC;
if(o.defaultSettingsIsSet())
j["default_settings"] = o.m_Default_settings;
}
@@ -490,6 +522,16 @@ void from_json(const nlohmann::json& j, Detector& o)
j.at("mirror_y").get_to(o.m_Mirror_y);
o.m_Mirror_yIsSet = true;
}
if(j.find("temp_thresold_degC") != j.end())
{
j.at("temp_thresold_degC").get_to(o.m_Temp_thresold_degC);
o.m_Temp_thresold_degCIsSet = true;
}
if(j.find("default_settings") != j.end())
{
j.at("default_settings").get_to(o.m_Default_settings);
o.m_Default_settingsIsSet = true;
}
}
@@ -807,6 +849,40 @@ void Detector::unsetMirror_y()
{
m_Mirror_yIsSet = false;
}
int64_t Detector::getTempThresoldDegC() const
{
return m_Temp_thresold_degC;
}
void Detector::setTempThresoldDegC(int64_t const value)
{
m_Temp_thresold_degC = value;
m_Temp_thresold_degCIsSet = true;
}
bool Detector::tempThresoldDegCIsSet() const
{
return m_Temp_thresold_degCIsSet;
}
void Detector::unsetTemp_thresold_degC()
{
m_Temp_thresold_degCIsSet = false;
}
org::openapitools::server::model::Detector_settings Detector::getDefaultSettings() const
{
return m_Default_settings;
}
void Detector::setDefaultSettings(org::openapitools::server::model::Detector_settings const& value)
{
m_Default_settings = value;
m_Default_settingsIsSet = true;
}
bool Detector::defaultSettingsIsSet() const
{
return m_Default_settingsIsSet;
}
void Detector::unsetDefault_settings()
{
m_Default_settingsIsSet = false;
}
} // namespace org::openapitools::server::model

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -21,6 +21,7 @@
#include "Detector_type.h"
#include <string>
#include "Detector_settings.h"
#include <vector>
#include "Standard_detector_geometry.h"
#include "Detector_module.h"
@@ -193,6 +194,20 @@ public:
void setMirrorY(bool const value);
bool mirrorYIsSet() const;
void unsetMirror_y();
/// <summary>
/// Temperature threshold for JUNGFRAU detector modules
/// </summary>
int64_t getTempThresoldDegC() const;
void setTempThresoldDegC(int64_t const value);
bool tempThresoldDegCIsSet() const;
void unsetTemp_thresold_degC();
/// <summary>
///
/// </summary>
org::openapitools::server::model::Detector_settings getDefaultSettings() const;
void setDefaultSettings(org::openapitools::server::model::Detector_settings const& value);
bool defaultSettingsIsSet() const;
void unsetDefault_settings();
friend void to_json(nlohmann::json& j, const Detector& o);
friend void from_json(const nlohmann::json& j, Detector& o);
@@ -235,6 +250,10 @@ protected:
bool m_Roi_modeIsSet;
bool m_Mirror_y;
bool m_Mirror_yIsSet;
int64_t m_Temp_thresold_degC;
bool m_Temp_thresold_degCIsSet;
org::openapitools::server::model::Detector_settings m_Default_settings;
bool m_Default_settingsIsSet;
};

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -90,6 +90,9 @@ void to_json(nlohmann::json& j, const File_writer_format& o)
case File_writer_format::eFile_writer_format::TIFF:
j = "TIFF";
break;
case File_writer_format::eFile_writer_format::NOFILEWRITTEN:
j = "NoFileWritten";
break;
}
}
@@ -111,6 +114,9 @@ void from_json(const nlohmann::json& j, File_writer_format& o)
}
else if (s == "TIFF") {
o.setValue(File_writer_format::eFile_writer_format::TIFF);
}
else if (s == "NoFileWritten") {
o.setValue(File_writer_format::eFile_writer_format::NOFILEWRITTEN);
} else {
std::stringstream ss;
ss << "Unexpected value " << s << " in json"

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -42,7 +42,8 @@ public:
NXMXLEGACY,
NXMXVDS,
CBF,
TIFF
TIFF,
NOFILEWRITTEN
};
/// <summary>

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -0,0 +1,116 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
#include "Geom_refinement_algorithm.h"
#include "Helpers.h"
#include <stdexcept>
#include <sstream>
namespace org::openapitools::server::model
{
Geom_refinement_algorithm::Geom_refinement_algorithm()
{
}
void Geom_refinement_algorithm::validate() const
{
std::stringstream msg;
if (!validate(msg))
{
throw org::openapitools::server::helpers::ValidationException(msg.str());
}
}
bool Geom_refinement_algorithm::validate(std::stringstream& msg) const
{
return validate(msg, "");
}
bool Geom_refinement_algorithm::validate(std::stringstream& msg, const std::string& pathPrefix) const
{
bool success = true;
const std::string _pathPrefix = pathPrefix.empty() ? "Geom_refinement_algorithm" : pathPrefix;
if (m_value == Geom_refinement_algorithm::eGeom_refinement_algorithm::INVALID_VALUE_OPENAPI_GENERATED)
{
success = false;
msg << _pathPrefix << ": has no value;";
}
return success;
}
bool Geom_refinement_algorithm::operator==(const Geom_refinement_algorithm& rhs) const
{
return
getValue() == rhs.getValue()
;
}
bool Geom_refinement_algorithm::operator!=(const Geom_refinement_algorithm& rhs) const
{
return !(*this == rhs);
}
void to_json(nlohmann::json& j, const Geom_refinement_algorithm& o)
{
j = nlohmann::json::object();
switch (o.getValue())
{
case Geom_refinement_algorithm::eGeom_refinement_algorithm::INVALID_VALUE_OPENAPI_GENERATED:
j = "INVALID_VALUE_OPENAPI_GENERATED";
break;
case Geom_refinement_algorithm::eGeom_refinement_algorithm::BEAMCENTER:
j = "BeamCenter";
break;
case Geom_refinement_algorithm::eGeom_refinement_algorithm::NONE:
j = "None";
break;
}
}
void from_json(const nlohmann::json& j, Geom_refinement_algorithm& o)
{
auto s = j.get<std::string>();
if (s == "BeamCenter") {
o.setValue(Geom_refinement_algorithm::eGeom_refinement_algorithm::BEAMCENTER);
}
else if (s == "None") {
o.setValue(Geom_refinement_algorithm::eGeom_refinement_algorithm::NONE);
} else {
std::stringstream ss;
ss << "Unexpected value " << s << " in json"
<< " cannot be converted to enum of type"
<< " Geom_refinement_algorithm::eGeom_refinement_algorithm";
throw std::invalid_argument(ss.str());
}
}
Geom_refinement_algorithm::eGeom_refinement_algorithm Geom_refinement_algorithm::getValue() const
{
return m_value;
}
void Geom_refinement_algorithm::setValue(Geom_refinement_algorithm::eGeom_refinement_algorithm value)
{
m_value = value;
}
} // namespace org::openapitools::server::model

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@@ -0,0 +1,79 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
/*
* Geom_refinement_algorithm.h
*
* Selection of an post-indexing detector geometry refinement algorithm used by Jungfraujoch. This option is using non-linear least squares optimization to find unit cell and beam center.
*/
#ifndef Geom_refinement_algorithm_H_
#define Geom_refinement_algorithm_H_
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
{
/// <summary>
/// Selection of an post-indexing detector geometry refinement algorithm used by Jungfraujoch. This option is using non-linear least squares optimization to find unit cell and beam center.
/// </summary>
class Geom_refinement_algorithm
{
public:
Geom_refinement_algorithm();
virtual ~Geom_refinement_algorithm() = default;
enum class eGeom_refinement_algorithm {
// To have a valid default value.
// Avoiding name clashes with user defined
// enum values
INVALID_VALUE_OPENAPI_GENERATED = 0,
BEAMCENTER,
NONE
};
/// <summary>
/// Validate the current data in the model. Throws a ValidationException on failure.
/// </summary>
void validate() const;
/// <summary>
/// Validate the current data in the model. Returns false on error and writes an error
/// message into the given stringstream.
/// </summary>
bool validate(std::stringstream& msg) const;
/// <summary>
/// Helper overload for validate. Used when one model stores another model and calls it's validate.
/// Not meant to be called outside that case.
/// </summary>
bool validate(std::stringstream& msg, const std::string& pathPrefix) const;
bool operator==(const Geom_refinement_algorithm& rhs) const;
bool operator!=(const Geom_refinement_algorithm& rhs) const;
/////////////////////////////////////////////
/// Geom_refinement_algorithm members
Geom_refinement_algorithm::eGeom_refinement_algorithm getValue() const;
void setValue(Geom_refinement_algorithm::eGeom_refinement_algorithm value);
friend void to_json(nlohmann::json& j, const Geom_refinement_algorithm& o);
friend void from_json(const nlohmann::json& j, Geom_refinement_algorithm& o);
protected:
Geom_refinement_algorithm::eGeom_refinement_algorithm m_value = Geom_refinement_algorithm::eGeom_refinement_algorithm::INVALID_VALUE_OPENAPI_GENERATED;
};
} // namespace org::openapitools::server::model
#endif /* Geom_refinement_algorithm_H_ */

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -81,6 +81,9 @@ void to_json(nlohmann::json& j, const Indexing_algorithm& o)
case Indexing_algorithm::eIndexing_algorithm::FFT:
j = "FFT";
break;
case Indexing_algorithm::eIndexing_algorithm::FFTW:
j = "FFTW";
break;
case Indexing_algorithm::eIndexing_algorithm::AUTO:
j = "Auto";
break;
@@ -100,6 +103,9 @@ void from_json(const nlohmann::json& j, Indexing_algorithm& o)
else if (s == "FFT") {
o.setValue(Indexing_algorithm::eIndexing_algorithm::FFT);
}
else if (s == "FFTW") {
o.setValue(Indexing_algorithm::eIndexing_algorithm::FFTW);
}
else if (s == "Auto") {
o.setValue(Indexing_algorithm::eIndexing_algorithm::AUTO);
}

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -40,6 +40,7 @@ public:
INVALID_VALUE_OPENAPI_GENERATED = 0,
FFBIDX,
FFT,
FFTW,
AUTO,
NONE
};

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -26,6 +26,10 @@ Indexing_settings::Indexing_settings()
m_Fft_high_resolution_A = 2.0f;
m_Fft_num_vectors = 16384L;
m_Tolerance = 0.0f;
m_Thread_count = 0L;
m_Unit_cell_dist_tolerance = 0.05f;
m_Viable_cell_min_spots = 10L;
m_Index_ice_rings = false;
}
@@ -138,7 +142,59 @@ bool Indexing_settings::validate(std::stringstream& msg, const std::string& path
}
}
/* Thread_count */ {
const int64_t& value = m_Thread_count;
const std::string currentValuePath = _pathPrefix + ".threadCount";
if (value < 1ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 1;";
}
if (value > 64ll)
{
success = false;
msg << currentValuePath << ": must be less than or equal to 64;";
}
}
/* Unit_cell_dist_tolerance */ {
const float& value = m_Unit_cell_dist_tolerance;
const std::string currentValuePath = _pathPrefix + ".unitCellDistTolerance";
if (value < static_cast<float>(0.00010))
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 0.00010;";
}
if (value > static_cast<float>(0.2001))
{
success = false;
msg << currentValuePath << ": must be less than or equal to 0.2001;";
}
}
/* Viable_cell_min_spots */ {
const int64_t& value = m_Viable_cell_min_spots;
const std::string currentValuePath = _pathPrefix + ".viableCellMinSpots";
if (value < 5ll)
{
success = false;
msg << currentValuePath << ": must be greater than or equal to 5;";
}
}
return success;
}
@@ -163,6 +219,21 @@ bool Indexing_settings::operator==(const Indexing_settings& rhs) const
&&
(getTolerance() == rhs.getTolerance())
&&
(getThreadCount() == rhs.getThreadCount())
&&
(getGeomRefinementAlgorithm() == rhs.getGeomRefinementAlgorithm())
&&
(getUnitCellDistTolerance() == rhs.getUnitCellDistTolerance())
&&
(getViableCellMinSpots() == rhs.getViableCellMinSpots())
&&
(isIndexIceRings() == rhs.isIndexIceRings())
;
@@ -182,6 +253,11 @@ void to_json(nlohmann::json& j, const Indexing_settings& o)
j["fft_high_resolution_A"] = o.m_Fft_high_resolution_A;
j["fft_num_vectors"] = o.m_Fft_num_vectors;
j["tolerance"] = o.m_Tolerance;
j["thread_count"] = o.m_Thread_count;
j["geom_refinement_algorithm"] = o.m_Geom_refinement_algorithm;
j["unit_cell_dist_tolerance"] = o.m_Unit_cell_dist_tolerance;
j["viable_cell_min_spots"] = o.m_Viable_cell_min_spots;
j["index_ice_rings"] = o.m_Index_ice_rings;
}
@@ -193,6 +269,11 @@ void from_json(const nlohmann::json& j, Indexing_settings& o)
j.at("fft_high_resolution_A").get_to(o.m_Fft_high_resolution_A);
j.at("fft_num_vectors").get_to(o.m_Fft_num_vectors);
j.at("tolerance").get_to(o.m_Tolerance);
j.at("thread_count").get_to(o.m_Thread_count);
j.at("geom_refinement_algorithm").get_to(o.m_Geom_refinement_algorithm);
j.at("unit_cell_dist_tolerance").get_to(o.m_Unit_cell_dist_tolerance);
j.at("viable_cell_min_spots").get_to(o.m_Viable_cell_min_spots);
j.at("index_ice_rings").get_to(o.m_Index_ice_rings);
}
@@ -244,6 +325,46 @@ void Indexing_settings::setTolerance(float const value)
{
m_Tolerance = value;
}
int64_t Indexing_settings::getThreadCount() const
{
return m_Thread_count;
}
void Indexing_settings::setThreadCount(int64_t const value)
{
m_Thread_count = value;
}
org::openapitools::server::model::Geom_refinement_algorithm Indexing_settings::getGeomRefinementAlgorithm() const
{
return m_Geom_refinement_algorithm;
}
void Indexing_settings::setGeomRefinementAlgorithm(org::openapitools::server::model::Geom_refinement_algorithm const& value)
{
m_Geom_refinement_algorithm = value;
}
float Indexing_settings::getUnitCellDistTolerance() const
{
return m_Unit_cell_dist_tolerance;
}
void Indexing_settings::setUnitCellDistTolerance(float const value)
{
m_Unit_cell_dist_tolerance = value;
}
int64_t Indexing_settings::getViableCellMinSpots() const
{
return m_Viable_cell_min_spots;
}
void Indexing_settings::setViableCellMinSpots(int64_t const value)
{
m_Viable_cell_min_spots = value;
}
bool Indexing_settings::isIndexIceRings() const
{
return m_Index_ice_rings;
}
void Indexing_settings::setIndexIceRings(bool const value)
{
m_Index_ice_rings = value;
}
} // namespace org::openapitools::server::model

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -20,6 +20,7 @@
#include "Indexing_algorithm.h"
#include "Geom_refinement_algorithm.h"
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
@@ -88,6 +89,31 @@ public:
/// </summary>
float getTolerance() const;
void setTolerance(float const value);
/// <summary>
/// Thread count for indexing algorithm
/// </summary>
int64_t getThreadCount() const;
void setThreadCount(int64_t const value);
/// <summary>
///
/// </summary>
org::openapitools::server::model::Geom_refinement_algorithm getGeomRefinementAlgorithm() const;
void setGeomRefinementAlgorithm(org::openapitools::server::model::Geom_refinement_algorithm const& value);
/// <summary>
/// Relative distance tolerance for unit cell vs. reference; Lattices outside given tolerance will be ignored
/// </summary>
float getUnitCellDistTolerance() const;
void setUnitCellDistTolerance(float const value);
/// <summary>
/// Minimum number of indexed spots required for a cell to be considered viable
/// </summary>
int64_t getViableCellMinSpots() const;
void setViableCellMinSpots(int64_t const value);
/// <summary>
/// Include spots marked as ice rings in the indexing run. If &#x60;dataset_settings&#x60; doesn&#39;t have &#x60;detect_ice_rings&#x60; on, this option will have no effect on processing.
/// </summary>
bool isIndexIceRings() const;
void setIndexIceRings(bool const value);
friend void to_json(nlohmann::json& j, const Indexing_settings& o);
friend void from_json(const nlohmann::json& j, Indexing_settings& o);
@@ -104,6 +130,16 @@ protected:
float m_Tolerance;
int64_t m_Thread_count;
org::openapitools::server::model::Geom_refinement_algorithm m_Geom_refinement_algorithm;
float m_Unit_cell_dist_tolerance;
int64_t m_Viable_cell_min_spots;
bool m_Index_ice_rings;
};

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -31,14 +31,17 @@ Jfjoch_settings::Jfjoch_settings()
m_Image_formatIsSet = false;
m_Image_buffer_MiB = 2048;
m_Image_buffer_MiBIsSet = false;
m_Verbose = false;
m_VerboseIsSet = false;
m_Receiver_threads = 64;
m_Receiver_threadsIsSet = false;
m_Numa_policy = "";
m_Numa_policyIsSet = false;
m_Frontend_directory = "";
m_Inference_server_addrIsSet = false;
m_SslIsSet = false;
m_Zeromq_previewIsSet = false;
m_Zeromq_metadataIsSet = false;
m_Dark_maskIsSet = false;
}
@@ -117,7 +120,7 @@ bool Jfjoch_settings::validate(std::stringstream& msg, const std::string& pathPr
}
}
if (receiverThreadsIsSet())
{
const int32_t& value = m_Receiver_threads;
@@ -136,28 +139,7 @@ bool Jfjoch_settings::validate(std::stringstream& msg, const std::string& pathPr
}
}
if (inferenceServerAddrIsSet())
{
const std::vector<std::string>& value = m_Inference_server_addr;
const std::string currentValuePath = _pathPrefix + ".inferenceServerAddr";
{ // Recursive validation of array elements
const std::string oldValuePath = currentValuePath;
int i = 0;
for (const std::string& value : value)
{
const std::string currentValuePath = oldValuePath + "[" + std::to_string(i) + "]";
i++;
}
}
}
return success;
}
@@ -197,6 +179,9 @@ bool Jfjoch_settings::operator==(const Jfjoch_settings& rhs) const
((!imageBufferMiBIsSet() && !rhs.imageBufferMiBIsSet()) || (imageBufferMiBIsSet() && rhs.imageBufferMiBIsSet() && getImageBufferMiB() == rhs.getImageBufferMiB())) &&
((!verboseIsSet() && !rhs.verboseIsSet()) || (verboseIsSet() && rhs.verboseIsSet() && isVerbose() == rhs.isVerbose())) &&
((!receiverThreadsIsSet() && !rhs.receiverThreadsIsSet()) || (receiverThreadsIsSet() && rhs.receiverThreadsIsSet() && getReceiverThreads() == rhs.getReceiverThreads())) &&
@@ -206,7 +191,7 @@ bool Jfjoch_settings::operator==(const Jfjoch_settings& rhs) const
&&
((!inferenceServerAddrIsSet() && !rhs.inferenceServerAddrIsSet()) || (inferenceServerAddrIsSet() && rhs.inferenceServerAddrIsSet() && getInferenceServerAddr() == rhs.getInferenceServerAddr())) &&
((!sslIsSet() && !rhs.sslIsSet()) || (sslIsSet() && rhs.sslIsSet() && getSsl() == rhs.getSsl())) &&
(getImagePusher() == rhs.getImagePusher())
&&
@@ -215,7 +200,10 @@ bool Jfjoch_settings::operator==(const Jfjoch_settings& rhs) const
((!zeromqPreviewIsSet() && !rhs.zeromqPreviewIsSet()) || (zeromqPreviewIsSet() && rhs.zeromqPreviewIsSet() && getZeromqPreview() == rhs.getZeromqPreview())) &&
((!zeromqMetadataIsSet() && !rhs.zeromqMetadataIsSet()) || (zeromqMetadataIsSet() && rhs.zeromqMetadataIsSet() && getZeromqMetadata() == rhs.getZeromqMetadata()))
((!zeromqMetadataIsSet() && !rhs.zeromqMetadataIsSet()) || (zeromqMetadataIsSet() && rhs.zeromqMetadataIsSet() && getZeromqMetadata() == rhs.getZeromqMetadata())) &&
((!darkMaskIsSet() && !rhs.darkMaskIsSet()) || (darkMaskIsSet() && rhs.darkMaskIsSet() && getDarkMask() == rhs.getDarkMask()))
;
}
@@ -247,18 +235,22 @@ void to_json(nlohmann::json& j, const Jfjoch_settings& o)
j["image_format"] = o.m_Image_format;
if(o.imageBufferMiBIsSet())
j["image_buffer_MiB"] = o.m_Image_buffer_MiB;
if(o.verboseIsSet())
j["verbose"] = o.m_Verbose;
if(o.receiverThreadsIsSet())
j["receiver_threads"] = o.m_Receiver_threads;
if(o.numaPolicyIsSet())
j["numa_policy"] = o.m_Numa_policy;
j["frontend_directory"] = o.m_Frontend_directory;
if(o.inferenceServerAddrIsSet() || !o.m_Inference_server_addr.empty())
j["inference_server_addr"] = o.m_Inference_server_addr;
if(o.sslIsSet())
j["ssl"] = o.m_Ssl;
j["image_pusher"] = o.m_Image_pusher;
if(o.zeromqPreviewIsSet())
j["zeromq_preview"] = o.m_Zeromq_preview;
if(o.zeromqMetadataIsSet())
j["zeromq_metadata"] = o.m_Zeromq_metadata;
if(o.darkMaskIsSet())
j["dark_mask"] = o.m_Dark_mask;
}
@@ -310,6 +302,11 @@ void from_json(const nlohmann::json& j, Jfjoch_settings& o)
j.at("image_buffer_MiB").get_to(o.m_Image_buffer_MiB);
o.m_Image_buffer_MiBIsSet = true;
}
if(j.find("verbose") != j.end())
{
j.at("verbose").get_to(o.m_Verbose);
o.m_VerboseIsSet = true;
}
if(j.find("receiver_threads") != j.end())
{
j.at("receiver_threads").get_to(o.m_Receiver_threads);
@@ -321,10 +318,10 @@ void from_json(const nlohmann::json& j, Jfjoch_settings& o)
o.m_Numa_policyIsSet = true;
}
j.at("frontend_directory").get_to(o.m_Frontend_directory);
if(j.find("inference_server_addr") != j.end())
if(j.find("ssl") != j.end())
{
j.at("inference_server_addr").get_to(o.m_Inference_server_addr);
o.m_Inference_server_addrIsSet = true;
j.at("ssl").get_to(o.m_Ssl);
o.m_SslIsSet = true;
}
j.at("image_pusher").get_to(o.m_Image_pusher);
if(j.find("zeromq_preview") != j.end())
@@ -337,6 +334,11 @@ void from_json(const nlohmann::json& j, Jfjoch_settings& o)
j.at("zeromq_metadata").get_to(o.m_Zeromq_metadata);
o.m_Zeromq_metadataIsSet = true;
}
if(j.find("dark_mask") != j.end())
{
j.at("dark_mask").get_to(o.m_Dark_mask);
o.m_Dark_maskIsSet = true;
}
}
@@ -501,6 +503,23 @@ void Jfjoch_settings::unsetImage_buffer_MiB()
{
m_Image_buffer_MiBIsSet = false;
}
bool Jfjoch_settings::isVerbose() const
{
return m_Verbose;
}
void Jfjoch_settings::setVerbose(bool const value)
{
m_Verbose = value;
m_VerboseIsSet = true;
}
bool Jfjoch_settings::verboseIsSet() const
{
return m_VerboseIsSet;
}
void Jfjoch_settings::unsetVerbose()
{
m_VerboseIsSet = false;
}
int32_t Jfjoch_settings::getReceiverThreads() const
{
return m_Receiver_threads;
@@ -543,22 +562,22 @@ void Jfjoch_settings::setFrontendDirectory(std::string const& value)
{
m_Frontend_directory = value;
}
std::vector<std::string> Jfjoch_settings::getInferenceServerAddr() const
org::openapitools::server::model::Jfjoch_settings_ssl Jfjoch_settings::getSsl() const
{
return m_Inference_server_addr;
return m_Ssl;
}
void Jfjoch_settings::setInferenceServerAddr(std::vector<std::string> const& value)
void Jfjoch_settings::setSsl(org::openapitools::server::model::Jfjoch_settings_ssl const& value)
{
m_Inference_server_addr = value;
m_Inference_server_addrIsSet = true;
m_Ssl = value;
m_SslIsSet = true;
}
bool Jfjoch_settings::inferenceServerAddrIsSet() const
bool Jfjoch_settings::sslIsSet() const
{
return m_Inference_server_addrIsSet;
return m_SslIsSet;
}
void Jfjoch_settings::unsetInference_server_addr()
void Jfjoch_settings::unsetSsl()
{
m_Inference_server_addrIsSet = false;
m_SslIsSet = false;
}
org::openapitools::server::model::Image_pusher_type Jfjoch_settings::getImagePusher() const
{
@@ -602,6 +621,23 @@ void Jfjoch_settings::unsetZeromq_metadata()
{
m_Zeromq_metadataIsSet = false;
}
org::openapitools::server::model::Dark_mask_settings Jfjoch_settings::getDarkMask() const
{
return m_Dark_mask;
}
void Jfjoch_settings::setDarkMask(org::openapitools::server::model::Dark_mask_settings const& value)
{
m_Dark_mask = value;
m_Dark_maskIsSet = true;
}
bool Jfjoch_settings::darkMaskIsSet() const
{
return m_Dark_maskIsSet;
}
void Jfjoch_settings::unsetDark_mask()
{
m_Dark_maskIsSet = false;
}
} // namespace org::openapitools::server::model

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -20,6 +20,7 @@
#include "Zeromq_preview_settings.h"
#include "Dark_mask_settings.h"
#include "Pcie_devices_inner.h"
#include <string>
#include "File_writer_settings.h"
@@ -33,6 +34,7 @@
#include "Image_pusher_type.h"
#include "Zeromq_settings.h"
#include "Instrument_metadata.h"
#include "Jfjoch_settings_ssl.h"
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
@@ -140,6 +142,13 @@ public:
bool imageBufferMiBIsSet() const;
void unsetImage_buffer_MiB();
/// <summary>
/// Print extra debug information
/// </summary>
bool isVerbose() const;
void setVerbose(bool const value);
bool verboseIsSet() const;
void unsetVerbose();
/// <summary>
/// Number of threads used by the receiver
/// </summary>
int32_t getReceiverThreads() const;
@@ -159,12 +168,12 @@ public:
std::string getFrontendDirectory() const;
void setFrontendDirectory(std::string const& value);
/// <summary>
/// Address to ML-based inference servers
///
/// </summary>
std::vector<std::string> getInferenceServerAddr() const;
void setInferenceServerAddr(std::vector<std::string> const& value);
bool inferenceServerAddrIsSet() const;
void unsetInference_server_addr();
org::openapitools::server::model::Jfjoch_settings_ssl getSsl() const;
void setSsl(org::openapitools::server::model::Jfjoch_settings_ssl const& value);
bool sslIsSet() const;
void unsetSsl();
/// <summary>
///
/// </summary>
@@ -184,6 +193,13 @@ public:
void setZeromqMetadata(org::openapitools::server::model::Zeromq_metadata_settings const& value);
bool zeromqMetadataIsSet() const;
void unsetZeromq_metadata();
/// <summary>
///
/// </summary>
org::openapitools::server::model::Dark_mask_settings getDarkMask() const;
void setDarkMask(org::openapitools::server::model::Dark_mask_settings const& value);
bool darkMaskIsSet() const;
void unsetDark_mask();
friend void to_json(nlohmann::json& j, const Jfjoch_settings& o);
friend void from_json(const nlohmann::json& j, Jfjoch_settings& o);
@@ -208,20 +224,24 @@ protected:
bool m_Image_formatIsSet;
int32_t m_Image_buffer_MiB;
bool m_Image_buffer_MiBIsSet;
bool m_Verbose;
bool m_VerboseIsSet;
int32_t m_Receiver_threads;
bool m_Receiver_threadsIsSet;
std::string m_Numa_policy;
bool m_Numa_policyIsSet;
std::string m_Frontend_directory;
std::vector<std::string> m_Inference_server_addr;
bool m_Inference_server_addrIsSet;
org::openapitools::server::model::Jfjoch_settings_ssl m_Ssl;
bool m_SslIsSet;
org::openapitools::server::model::Image_pusher_type m_Image_pusher;
org::openapitools::server::model::Zeromq_preview_settings m_Zeromq_preview;
bool m_Zeromq_previewIsSet;
org::openapitools::server::model::Zeromq_metadata_settings m_Zeromq_metadata;
bool m_Zeromq_metadataIsSet;
org::openapitools::server::model::Dark_mask_settings m_Dark_mask;
bool m_Dark_maskIsSet;
};

View File

@@ -0,0 +1,133 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
#include "Jfjoch_settings_ssl.h"
#include "Helpers.h"
#include <sstream>
namespace org::openapitools::server::model
{
Jfjoch_settings_ssl::Jfjoch_settings_ssl()
{
m_Certificate = "";
m_Key = "";
}
void Jfjoch_settings_ssl::validate() const
{
std::stringstream msg;
if (!validate(msg))
{
throw org::openapitools::server::helpers::ValidationException(msg.str());
}
}
bool Jfjoch_settings_ssl::validate(std::stringstream& msg) const
{
return validate(msg, "");
}
bool Jfjoch_settings_ssl::validate(std::stringstream& msg, const std::string& pathPrefix) const
{
bool success = true;
const std::string _pathPrefix = pathPrefix.empty() ? "Jfjoch_settings_ssl" : pathPrefix;
/* Certificate */ {
const std::string& value = m_Certificate;
const std::string currentValuePath = _pathPrefix + ".certificate";
if (value.length() < 1)
{
success = false;
msg << currentValuePath << ": must be at least 1 characters long;";
}
}
/* Key */ {
const std::string& value = m_Key;
const std::string currentValuePath = _pathPrefix + ".key";
if (value.length() < 1)
{
success = false;
msg << currentValuePath << ": must be at least 1 characters long;";
}
}
return success;
}
bool Jfjoch_settings_ssl::operator==(const Jfjoch_settings_ssl& rhs) const
{
return
(getCertificate() == rhs.getCertificate())
&&
(getKey() == rhs.getKey())
;
}
bool Jfjoch_settings_ssl::operator!=(const Jfjoch_settings_ssl& rhs) const
{
return !(*this == rhs);
}
void to_json(nlohmann::json& j, const Jfjoch_settings_ssl& o)
{
j = nlohmann::json::object();
j["certificate"] = o.m_Certificate;
j["key"] = o.m_Key;
}
void from_json(const nlohmann::json& j, Jfjoch_settings_ssl& o)
{
j.at("certificate").get_to(o.m_Certificate);
j.at("key").get_to(o.m_Key);
}
std::string Jfjoch_settings_ssl::getCertificate() const
{
return m_Certificate;
}
void Jfjoch_settings_ssl::setCertificate(std::string const& value)
{
m_Certificate = value;
}
std::string Jfjoch_settings_ssl::getKey() const
{
return m_Key;
}
void Jfjoch_settings_ssl::setKey(std::string const& value)
{
m_Key = value;
}
} // namespace org::openapitools::server::model

View File

@@ -0,0 +1,84 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
* https://openapi-generator.tech
* Do not edit the class manually.
*/
/*
* Jfjoch_settings_ssl.h
*
*
*/
#ifndef Jfjoch_settings_ssl_H_
#define Jfjoch_settings_ssl_H_
#include <string>
#include <nlohmann/json.hpp>
namespace org::openapitools::server::model
{
/// <summary>
///
/// </summary>
class Jfjoch_settings_ssl
{
public:
Jfjoch_settings_ssl();
virtual ~Jfjoch_settings_ssl() = default;
/// <summary>
/// Validate the current data in the model. Throws a ValidationException on failure.
/// </summary>
void validate() const;
/// <summary>
/// Validate the current data in the model. Returns false on error and writes an error
/// message into the given stringstream.
/// </summary>
bool validate(std::stringstream& msg) const;
/// <summary>
/// Helper overload for validate. Used when one model stores another model and calls it's validate.
/// Not meant to be called outside that case.
/// </summary>
bool validate(std::stringstream& msg, const std::string& pathPrefix) const;
bool operator==(const Jfjoch_settings_ssl& rhs) const;
bool operator!=(const Jfjoch_settings_ssl& rhs) const;
/////////////////////////////////////////////
/// Jfjoch_settings_ssl members
/// <summary>
///
/// </summary>
std::string getCertificate() const;
void setCertificate(std::string const& value);
/// <summary>
///
/// </summary>
std::string getKey() const;
void setKey(std::string const& value);
friend void to_json(nlohmann::json& j, const Jfjoch_settings_ssl& o);
friend void from_json(const nlohmann::json& j, Jfjoch_settings_ssl& o);
protected:
std::string m_Certificate;
std::string m_Key;
};
} // namespace org::openapitools::server::model
#endif /* Jfjoch_settings_ssl_H_ */

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -34,6 +34,7 @@ Jfjoch_statistics::Jfjoch_statistics()
m_CalibrationIsSet = false;
m_Zeromq_previewIsSet = false;
m_Zeromq_metadataIsSet = false;
m_Dark_maskIsSet = false;
m_Pixel_maskIsSet = false;
m_RoiIsSet = false;
m_Az_intIsSet = false;
@@ -103,7 +104,7 @@ bool Jfjoch_statistics::validate(std::stringstream& msg, const std::string& path
}
}
return success;
}
@@ -152,6 +153,9 @@ bool Jfjoch_statistics::operator==(const Jfjoch_statistics& rhs) const
((!zeromqMetadataIsSet() && !rhs.zeromqMetadataIsSet()) || (zeromqMetadataIsSet() && rhs.zeromqMetadataIsSet() && getZeromqMetadata() == rhs.getZeromqMetadata())) &&
((!darkMaskIsSet() && !rhs.darkMaskIsSet()) || (darkMaskIsSet() && rhs.darkMaskIsSet() && getDarkMask() == rhs.getDarkMask())) &&
((!pixelMaskIsSet() && !rhs.pixelMaskIsSet()) || (pixelMaskIsSet() && rhs.pixelMaskIsSet() && getPixelMask() == rhs.getPixelMask())) &&
@@ -203,6 +207,8 @@ void to_json(nlohmann::json& j, const Jfjoch_statistics& o)
j["zeromq_preview"] = o.m_Zeromq_preview;
if(o.zeromqMetadataIsSet())
j["zeromq_metadata"] = o.m_Zeromq_metadata;
if(o.darkMaskIsSet())
j["dark_mask"] = o.m_Dark_mask;
if(o.pixelMaskIsSet())
j["pixel_mask"] = o.m_Pixel_mask;
if(o.roiIsSet())
@@ -283,6 +289,11 @@ void from_json(const nlohmann::json& j, Jfjoch_statistics& o)
j.at("zeromq_metadata").get_to(o.m_Zeromq_metadata);
o.m_Zeromq_metadataIsSet = true;
}
if(j.find("dark_mask") != j.end())
{
j.at("dark_mask").get_to(o.m_Dark_mask);
o.m_Dark_maskIsSet = true;
}
if(j.find("pixel_mask") != j.end())
{
j.at("pixel_mask").get_to(o.m_Pixel_mask);
@@ -532,6 +543,23 @@ void Jfjoch_statistics::unsetZeromq_metadata()
{
m_Zeromq_metadataIsSet = false;
}
org::openapitools::server::model::Dark_mask_settings Jfjoch_statistics::getDarkMask() const
{
return m_Dark_mask;
}
void Jfjoch_statistics::setDarkMask(org::openapitools::server::model::Dark_mask_settings const& value)
{
m_Dark_mask = value;
m_Dark_maskIsSet = true;
}
bool Jfjoch_statistics::darkMaskIsSet() const
{
return m_Dark_maskIsSet;
}
void Jfjoch_statistics::unsetDark_mask()
{
m_Dark_maskIsSet = false;
}
org::openapitools::server::model::Pixel_mask_statistics Jfjoch_statistics::getPixelMask() const
{
return m_Pixel_mask;

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).
@@ -26,6 +26,7 @@
#include "Spot_finding_settings.h"
#include "Zeromq_preview_settings.h"
#include "Detector_list.h"
#include "Dark_mask_settings.h"
#include "File_writer_settings.h"
#include "Azim_int_settings.h"
#include "Image_format_settings.h"
@@ -170,6 +171,13 @@ public:
/// <summary>
///
/// </summary>
org::openapitools::server::model::Dark_mask_settings getDarkMask() const;
void setDarkMask(org::openapitools::server::model::Dark_mask_settings const& value);
bool darkMaskIsSet() const;
void unsetDark_mask();
/// <summary>
///
/// </summary>
org::openapitools::server::model::Pixel_mask_statistics getPixelMask() const;
void setPixelMask(org::openapitools::server::model::Pixel_mask_statistics const& value);
bool pixelMaskIsSet() const;
@@ -232,6 +240,8 @@ protected:
bool m_Zeromq_previewIsSet;
org::openapitools::server::model::Zeromq_metadata_settings m_Zeromq_metadata;
bool m_Zeromq_metadataIsSet;
org::openapitools::server::model::Dark_mask_settings m_Dark_mask;
bool m_Dark_maskIsSet;
org::openapitools::server::model::Pixel_mask_statistics m_Pixel_mask;
bool m_Pixel_maskIsSet;
org::openapitools::server::model::Roi_definitions m_Roi;

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

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@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

View File

@@ -1,8 +1,8 @@
/**
* Jungfraujoch
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates.
* API to control Jungfraujoch developed by the Paul Scherrer Institute (Switzerland). Jungfraujoch is a data acquisition and analysis system for pixel array detectors, primarly PSI JUNGFRAU. Jungfraujoch uses FPGA boards to acquire data at high data rates. # License Clarification While this API definition is licensed under GPL-3.0, **the GPL copyleft provisions do not apply** when this file is used solely to generate OpenAPI clients or when implementing applications that interact with the API. Generated client code and applications using this API definition are not subject to the GPL license requirements and may be distributed under terms of your choosing. This exception is similar in spirit to the Linux Kernel's approach to userspace API headers and the GCC Runtime Library Exception. The Linux Kernel developers have explicitly stated that user programs that merely use the kernel interfaces (syscalls, ioctl definitions, etc.) are not derivative works of the kernel and are not subject to the terms of the GPL. This exception is intended to allow wider use of this API specification without imposing GPL requirements on applications that merely interact with the API, regardless of whether they communicate through network calls or other mechanisms.
*
* The version of the OpenAPI document: 1.0.0-rc.
* The version of the OpenAPI document: 1.0.0-rc.97
* Contact: filip.leonarski@psi.ch
*
* NOTE: This class is auto generated by OpenAPI Generator (https://openapi-generator.tech).

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