Zip files as we scan, saving the regenerated ones to the end

Removed maximum scan size of 750 images

Save json of scan inputs and use it for future stitching (ensures consistent parameters)

Moved looping autofocus to autofocus thing from recentering thing

Rewrote looping autofocus to skip unneeded moves, as if peak is out of range, no need to nicely focus
This commit is contained in:
jaknapper 2024-01-30 18:46:34 +00:00
parent a0b98a1adc
commit e6e809cea4
3 changed files with 139 additions and 53 deletions

View file

@ -16,31 +16,6 @@ CSMDep = direct_thing_client_dependency(CameraStageMapper, "/camera_stage_mappin
AutofocusDep = direct_thing_client_dependency(AutofocusThing, "/autofocus/")
class RecentringThing(Thing):
@thing_action
def looping_autofocus(self, autofocus: AutofocusDep, stage: StageDep, dz=2000, start='centre'):
"""Repeatedly autofocus the stage until it looks focused.
This action will run the `fast_autofocus` action until it settles on a point
in the middle 3/5 of its range. Such logic can be helpful if the microscope
is close to focus, but not quite within `dz/2`. It will attempt to autofocus
up to 10 times.
"""
repeat = True
attempts = 0
while repeat and attempts < 10:
heights, sizes = autofocus.fast_autofocus(dz=dz, start=start)
height_min = np.min(heights)
height_max = np.max(heights)
# TODO: max heights seems badly wrong! Something about turning?
if (
stage.position["z"] - height_min < dz / 5
or height_max - stage.position["z"] < dz / 5
):
attempts += 1
start = 'centre'
else:
repeat = False
@thing_action
def recentre(
self,
@ -79,7 +54,7 @@ class RecentringThing(Thing):
# A list of all the positions we've focused
focused_pos = [[], []]
self.looping_autofocus(autofocus, stage)
autofocus.looping_autofocus()
for direction in [0, 1]:
# Start off with the current position, and moving in the positive direction
@ -109,7 +84,7 @@ class RecentringThing(Thing):
stage.move_absolute(
x=int(destination[0]), y=int(destination[1]), z=destination[2]
)
self.looping_autofocus(autofocus, stage)
autofocus.looping_autofocus(autofocus, stage)
position = list(stage.position.values())
focused_pos[direction].append(position)
@ -166,7 +141,7 @@ class RecentringThing(Thing):
direction
]
stage.move_absolute(x=centre[0], y=centre[1], z=centre[2])
self.looping_autofocus(autofocus, stage)
autofocus.looping_autofocus()
logging.info(f"Centre of ROM is at {centre, stage.position['z']} \n")

View file

@ -119,7 +119,7 @@ class JPEGSharpnessMonitor:
raise ValueError(
"No images were captured during the move of the stage. Perhaps the camera is not streaming images?"
)
return jz[np.argmax(js)], jz, js
return jz[np.argmax(js)]
def data_dict(self) -> SharpnessDataArrays:
"""Return the gathered data as a single convenient dictionary"""
@ -161,13 +161,13 @@ class AutofocusThing(Thing):
# z: Final z position after move
i, z = m.focus_rel(dz, block_cancellation=True)
# Get the z position with highest sharpness from the previous move (index i)
fz, heights, sizes = m.sharpest_z_on_move(i)
fz: int = m.sharpest_z_on_move(i)
# Move all the way to the start so it's consistent
i, z = m.focus_rel(-dz)
# Move to the target position fz (relative move of (fz - z))
m.focus_rel(fz - z)
# Return all focus data
return heights, sizes
return m.data_dict()
@thing_action
def move_and_measure(
@ -194,3 +194,40 @@ class AutofocusThing(Thing):
time.sleep(wait)
m.focus_rel(current_dz)
return m.data_dict()
@thing_action
def looping_autofocus(self, stage: Stage, m: SharpnessMonitorDep, dz=2000, start='centre'):
"""Repeatedly autofocus the stage until it looks focused.
This action will run the `fast_autofocus` action until it settles on a point
in the middle 3/5 of its range. Such logic can be helpful if the microscope
is close to focus, but not quite within `dz/2`. It will attempt to autofocus
up to 10 times.
"""
repeat = True
attempts = 0
with m.run():
while repeat and attempts < 10:
if start == 'centre':
stage.move_relative(x = 0, y = 0, z = -dz / 2)
i, z = m.focus_rel(dz, block_cancellation=True)
_, heights, sizes = m.move_data(i)
peak_height = heights[np.argmax(sizes)]
height_min = np.min(heights)
height_max = np.max(heights)
if (
peak_height - height_min < dz / 5
or height_max - peak_height < dz / 5
):
attempts += 1
start = 'centre'
stage.move_absolute(z = peak_height)
else:
repeat = False
stage.move_relative(x = 0, y = 0, z = -dz)
stage.move_absolute(z = peak_height)

View file

@ -14,6 +14,9 @@ from scipy.stats import norm
from copy import deepcopy
from datetime import datetime
from subprocess import CompletedProcess, Popen, PIPE, SubprocessError, run
import glob
import zipfile
import json
from labthings_fastapi.thing import Thing
from labthings_fastapi.dependencies.thing import direct_thing_client_dependency
@ -470,6 +473,19 @@ class SmartScanThing(Thing):
os.mkdir(raw_images_folder)
logger.info(f"Saving images to {images_folder}")
data = {
'scan_name' : scan_name,
'overlap' : overlap,
'autofocus range' : self.autofocus_dz,
'dx' : dx,
'dy' : dy,
'start time' : start_time,
'skipping background' : self.skip_background
}
with open(os.path.join(images_folder, 'scan_inputs.json'), 'w', encoding='utf-8') as f:
json.dump(data, f, ensure_ascii=False, indent=4)
# move to each x-y position. in z, move to the height of the closest x-y position that successfully focused
while len(path) > 0:
ensure_free_disk_space(scan_folder)
@ -519,7 +535,7 @@ class SmartScanThing(Thing):
attempts = 0
if self.autofocus_dz > 200:
while True:
recentre.looping_autofocus(dz=self.autofocus_dz, start = 'base')
autofocus.looping_autofocus(dz=self.autofocus_dz, start = 'base')
current_height = stage.position["z"]
# if there have been successful autofocuses in this scan, find the closest one in x-y
@ -581,6 +597,8 @@ class SmartScanThing(Thing):
if not self.correlate_running():
self.correlate_start(images_folder, overlap=overlap)
self.create_zip_of_scan(logger = logger, scan_name = scan_folder.split('scans/')[1], download_zip = False)
# add the current position to the list of all positions visited
true_path.append(loc)
@ -599,8 +617,6 @@ class SmartScanThing(Thing):
path = sorted(path, key=lambda x: (steps_from_centre(x, true_path[0][:2], dx, dy), distance_to_site(loc[:2], x)))
if len(true_path) > 750:
break
except InvocationCancelledError:
logger.error("Stopping scan because it was cancelled.")
except NotEnoughFreeSpaceError as e:
@ -847,7 +863,7 @@ class SmartScanThing(Thing):
raise RuntimeError("Only one subprocess is allowed at a time")
with self._correlate_popen_lock:
self._correlate_popen = Popen(
[self._script, "--stitching_mode", "only_correlate", "--minimum_overlap", f"{overlap*0.9}", images_folder]
[self._script, "--stitching_mode", "only_correlate", "--minimum_overlap", f"{round(overlap*0.9, 2)}", images_folder]
)
def correlate_running(self) -> bool:
@ -877,13 +893,23 @@ class SmartScanThing(Thing):
return output
@thing_action
def stitch_scan(self, logger: InvocationLogger, scan_name: Optional[str]=None, overlap: float = 0.1) -> None:
def stitch_scan(self, logger: InvocationLogger, scan_name: Optional[str]=None, overlap: float = 0.0) -> None:
"""Generate a stitched image based on stage position metadata"""
images_folder = self.images_folder(scan_name=scan_name)
self.run_subprocess(logger, [self._script, "--stitching_mode", "all", "--minimum_overlap", f"{overlap*0.9}", images_folder])
if overlap == 0.0:
try:
with open(os.path.join(images_folder, 'scan_inputs.json')) as data_file:
data_loaded = json.load(data_file)
logger.info(data_loaded)
overlap = data_loaded['overlap']
except:
overlap = 0.1
logger.info(overlap)
self.run_subprocess(logger, [self._script, "--stitching_mode", "all", "--minimum_overlap", f"{round(overlap*0.9,3)}", images_folder])
@thing_action
def create_zip_of_scan(self, logger: InvocationLogger, scan_name: Optional[str]=None) -> ZipBlob:
def create_zip_of_scan(self, logger: InvocationLogger, scan_name: Optional[str]=None, download_zip = True) -> ZipBlob:
"""Generate a zip file that can be downloaded, with all the scan files in it."""
images_folder = self.images_folder(scan_name=scan_name)
scan_folder = self.scan_folder_path(scan_name=scan_name)
@ -895,19 +921,67 @@ class SmartScanThing(Thing):
if not os.path.isdir(images_folder):
raise FileNotFoundError(f"Tried to make a zip archive of {images_folder} but it does not exist.")
logger.info("Creating zip archive of images (may take some time)...")
shutil.make_archive(
os.path.join(scan_folder, "images"),
"zip",
scan_folder,
"images/",
logger=logger
)
zip_fname = os.path.join(scan_folder, "images.zip")
# Promote key files to the top level of the zip
with zipfile.ZipFile(zip_fname, mode="a") as zip:
for fname in ["stitched_from_stage.jpg", "stitched.jpg"]:
fpath = os.path.join(images_folder, fname)
if os.path.exists(fpath):
zip.write(fpath, arcname=fname)
return ZipBlob.from_file(zip_fname)
zip_fname = f'{os.path.join(scan_folder, "images")}.zip'
# Create an empty zip file - we don't want to autofill it with files,
# as some of them should only be added at the end (as we can't overwrite)
# them once they change
if not os.path.isfile(zip_fname):
with zipfile.ZipFile(zip_fname, mode="w") as zip:
pass
# get a list of files in the existing zip
current_zip = self.get_files_in_zip(zip_fname)
logger.info(current_zip)
# get a list of files in the folder we're zipping
folder_path = self.scan_folder_path(scan_name)
files = glob.glob(folder_path + '/**/*', recursive=True)
files = [i.split(f'{folder_path}/')[1] for i in files]
# This is a list of file names that are updated as the scan goes,
# and should only be zipped at the end of the scan - otherwise they'll
# be appended on every loop as we can't overwrite files in the zip
files_to_delay = ['TileConfiguration', 'tiling_cache', 'stitched.jp']
with zipfile.ZipFile(zip_fname, mode="a") as zip:
for file in files:
if any(banned_name in file for banned_name in files_to_delay):
logger.info(f'we only add {file} into zip at the end of the scan')
elif file in current_zip:
logger.info(f'{file} is already in zip')
elif ".zip" in file:
logger.info('Not adding the .zip to itself')
else:
logger.info(f'appending {file} to zip')
zip.write(os.path.join(folder_path, file), arcname=file)
images_folder = os.path.join(folder_path, 'images')
# Promote key files to the top level of the zip only at the end of the scan (when downloading)
# and finally zip some of the final files
# TODO: if you download multiple times, you get duplicate files - is this a problem?
if download_zip:
with zipfile.ZipFile(zip_fname, mode="a") as zip:
for fname in ["stitched_from_stage.jpg", "stitched.jpg"]:
fpath = os.path.join(images_folder, fname)
if os.path.exists(fpath):
logger.info(f'copying {fpath} to upper level')
zip.write(fpath, arcname=fname)
for file in files:
if any(banned_name in file for banned_name in files_to_delay):
logger.info(f'we are finally adding {file} into zip')
zip.write(os.path.join(folder_path, file), arcname=file)
return ZipBlob.from_file(zip_fname)
@thing_action
def get_files_in_zip(self, zip_path):
"""List the relative paths of all files and folders in the zip folder specified"""
zip = zipfile.ZipFile(zip_path)
zip = [os.path.normpath(i) for i in zip.namelist()]
return zip