openflexure-microscope-server/openflexure_microscope/camera/capture.py
2019-11-06 22:07:16 +00:00

319 lines
9.4 KiB
Python

import uuid
import io
import os
import shutil
import glob
import datetime
import yaml
import logging
from PIL import Image
import atexit
from openflexure_microscope.camera import piexif
from openflexure_microscope.camera.piexif._exceptions import InvalidImageDataError
PIL_FORMATS = ["JPG", "JPEG", "PNG", "TIF", "TIFF"]
EXIF_FORMATS = ["JPG", "JPEG", "TIF", "TIFF"]
THUMBNAIL_SIZE = (200, 150)
def pull_usercomment_dict(filepath):
"""
Reads UserComment Exif data from a file, and returns the contained bytes as a dictionary.
Args:
filepath: Path to the Exif-containing file
"""
try:
exif_dict = piexif.load(filepath)
except InvalidImageDataError:
logging.warning("Invalid data at {}. Skipping.".format(filepath))
return None
if "Exif" in exif_dict and 37510 in exif_dict["Exif"]:
return yaml.load(exif_dict["Exif"][37510].decode())
else:
return None
def make_file_list(directory, formats):
files = []
for fmt in formats:
files.extend(
glob.glob("{}/**/*.{}".format(directory, fmt.lower()), recursive=True)
)
logging.info("{} capture files found on disk".format(len(files)))
return files
def build_captures_from_exif(capture_path):
global EXIF_FORMATS
logging.debug("Reloading captures from {}...".format(capture_path))
files = make_file_list(capture_path, EXIF_FORMATS)
captures = []
for f in files:
logging.debug("Reloading capture {}...".format(f))
exif = pull_usercomment_dict(f)
if exif:
capture = capture_from_exif(f, exif)
captures.append(capture)
else:
logging.error("Invalid data at {}. Skipping.".format(f))
logging.info("{} capture files successfully reloaded".format(len(captures)))
return captures
def capture_from_exif(path, exif_dict):
"""
Creates an instance of CaptureObject from a dictionary of capture information.
This is used when reloading the API server, to restore captures created in the
previous session.
Args:
exif_dict (dict): Dictionary containing capture information
"""
# Create a placeholder capture
capture = CaptureObject(filepath=path)
# Build file path information
capture.split_file_path(capture.file)
# Populate capture parameters
capture.id = exif_dict["id"]
capture.timestring = exif_dict["time"]
capture.format = exif_dict["format"]
capture._metadata = exif_dict["custom"]
capture.tags = exif_dict["tags"]
return capture
class CaptureObject(object):
"""
StreamObject used to store and process on-disk capture data, and metadata.
Serves to simplify modifying properties of on-disk capture data.
Attributes:
timestring (str): Timestring of capture creation time
_metadata (dict): Dictionary of custom metadata to be included in metadata file
tags (list): List of tags. Essentially just as extra custom metadata field, but useful for quick organisation
filefolder (str): Folder in which the capture file will be stored
filename (str): Full name of the capture file
basename (str): Filename of the capture, without a file extension
format (str): Format of the capture data
"""
def __init__(self, filepath) -> None:
"""Create a new StreamObject, to manage capture data."""
# Store a nice ID
self.id = uuid.uuid4().hex #: str: Unique capture ID
logging.debug("Created StreamObject {}".format(self.id))
self.timestring = datetime.datetime.now().strftime("%Y-%m-%d_%H-%M-%S")
# Create file name. Default to UUID
self.file = filepath
self.split_file_path(self.file)
# Dictionary for storing custom metadata
self._metadata = {}
# List for storing tags
self.tags = []
# Thumbnail (populated only for PIL captures)
self.thumb_bytes = None
def open(self, mode):
return open(self.file, mode)
def split_file_path(self, filepath):
"""
Take a full file path, and split it into separated class properties.
Args:
filepath (str): String of the full file path, including file format extension
"""
# Split the full file path into a folder and a filename
self.filefolder, self.filename = os.path.split(filepath)
# Split the filename out from it's file extension
self.basename = os.path.splitext(self.filename)[0]
self.format = self.filename.split(".")[-1]
# Create folder and file
if not os.path.exists(self.filefolder):
os.makedirs(self.filefolder)
@property
def exists(self) -> bool:
"""Check if capture data file exists on disk."""
if os.path.isfile(self.file):
return True
else:
return False
# HANDLE TAGS
def put_tags(self, tags: list):
"""
Add a new tag to the ``tags`` list attribute.
Args:
tags (list): List of tags to be added
"""
for tag in tags:
if tag not in self.tags:
self.tags.append(tag)
self.save_metadata()
def delete_tag(self, tag: str):
"""
Remove a tag from the ``tags`` list attribute, if it exists.
Args:
tag (str): Tag to be removed
"""
if tag in self.tags:
self.tags = [new_tag for new_tag in self.tags if new_tag != tag]
self.save_metadata()
# HANDLE METADATA
def put_metadata(self, data: dict) -> None:
"""
Merge metadata from a passed dictionary into the capture metadata, and saves.
Args:
data (dict): Dictionary of metadata to be added
"""
self._metadata.update(data)
self.save_metadata()
def save_metadata(self) -> None:
"""
Save metadata to exif, if supported
"""
global EXIF_FORMATS
if self.format.upper() in EXIF_FORMATS and self.exists:
logging.debug("Writing exif data to capture file")
# Extract current Exif data
exif_dict = piexif.load(self.file)
# Serialize metadata
metadata_string = yaml.safe_dump(self.metadata)
# Insert metadata into exif_dict
exif_dict["Exif"][piexif.ExifIFD.UserComment] = metadata_string.encode()
# Convert new exif dict to exif bytes
exif_bytes = piexif.dump(exif_dict)
# Insert exif into file
piexif.insert(exif_bytes, self.file)
@property
def metadata(self) -> dict:
"""
Create basic metadata dictionary from basic capture data,
and any added custom metadata and tags.
"""
d = {
"id": self.id,
"filename": self.filename,
"time": self.timestring,
"format": self.format,
"tags": self.tags,
"custom": self._metadata,
}
# Add custom metadata to dictionary
return d
@property
def state(self) -> dict:
"""
Return a dictionary of objects full state, including metadata.
"""
# Create basic state dictionary
d = {"path": self.file, "metadata": self.metadata}
# Combined availability of data
if self.exists:
d["available"] = True
else:
d["available"] = False
return d
@property
def data(self) -> io.BytesIO:
"""
Return a byte string of the capture data.
"""
if self.exists: # If data file exists
logging.info("Opening from file {}".format(self.file))
with open(self.file, "rb") as f:
d = io.BytesIO(f.read()) # Load bytes from file
d.seek(0) # Rewind loaded bytestream
# Create a copy of the bytestream bytes
data = io.BytesIO(d.getbuffer())
else:
data = None
return data # Read and return bytes data
@property
def binary(self) -> bytes:
"""Return a byte string of the capture data."""
return self.data.getvalue()
@property
def thumbnail(self) -> io.BytesIO:
"""
Returns a thumbnail of the capture data, for supported image formats.
"""
global THUMBNAIL_SIZE
# If no thumbnail exists, try and make one
if not self.thumb_bytes:
logging.info("Building thumbnail")
self.thumb_bytes = io.BytesIO()
if self.format.upper() in PIL_FORMATS:
im = Image.open(self.data)
im.thumbnail(THUMBNAIL_SIZE)
im.save(self.thumb_bytes, self.format)
self.thumb_bytes.seek(0)
else:
self.thumb_bytes.seek(0)
# Copy the buffer, to avoid closing the file
data = io.BytesIO(self.thumb_bytes.getbuffer())
return data
def save(self) -> None:
"""Write stream to file, and save/update metadata file"""
# If a stream OR file exists, save the metadata file
if self.exists:
self.save_metadata()
def delete(self) -> bool:
"""If the StreamObject has been saved, delete the file."""
if os.path.isfile(self.file):
logging.info("Deleting file {}".format(self.file))
os.remove(self.file)
return True
else:
return False
def close(self):
pass