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def save(self): '''Save all changes on this item (if any) back to Redmine.''' self._check_custom_fields() if not self._changes: return None for tag in self._remap_to_id: self._remap_tag_to_tag_id(tag, self._changes) # Check for custom handlers for tags ...
Save all changes on this item (if any) back to Redmine.
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def refresh(self): '''Refresh this item from data on the server. Will save any unsaved data first.''' if not self._item_path: raise AttributeError('refresh is not available for %s' % self._type) if not self.id: raise RedmineError('%s did not come from the Redmine...
Refresh this item from data on the server. Will save any unsaved data first.
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def _get_changes(self): '''Get all changed values.''' result = dict( (f['id'], f.get('value','')) for f in self._data if f.get('changed', False) ) self._clear_changes return result
Get all changed values.
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def iteritems(self, **options): '''Return a query interator with (id, object) pairs.''' iter = self.query(**options) while True: obj = iter.next() yield (obj.id, obj)
Return a query interator with (id, object) pairs.
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def _objectify(self, json_data=None, data={}): '''Return an object derived from the given json data.''' if json_data: # Parse the data try: data = json.loads(json_data) except ValueError: # If parsing failed, then raise the string which...
Return an object derived from the given json data.
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def new(self, **dict): '''Create a new item with the provided dict information. Returns the new item.''' if not self._item_new_path: raise AttributeError('new is not available for %s' % self._item_name) # Remap various tag to tag_id for tag in self._object._remap_to_id: ...
Create a new item with the provided dict information. Returns the new item.
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def get(self, id, **options): '''Get a single item with the given ID''' if not self._item_path: raise AttributeError('get is not available for %s' % self._item_name) target = self._item_path % id json_data = self._redmine.get(target, **options) data = self._redmine.un...
Get a single item with the given ID
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def update(self, id, **dict): '''Update a given item with the passed data.''' if not self._item_path: raise AttributeError('update is not available for %s' % self._item_name) target = (self._update_path or self._item_path) % id payload = json.dumps({self._item_type:dict}) ...
Update a given item with the passed data.
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def delete(self, id): '''Delete a single item with the given ID''' if not self._item_path: raise AttributeError('delete is not available for %s' % self._item_name) target = self._item_path % id self._redmine.delete(target) return None
Delete a single item with the given ID
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def query(self, **options): '''Return an iterator for the given items.''' if not self._query_path: raise AttributeError('query is not available for %s' % self._item_name) last_item = 0 offset = 0 current_item = None limit = options.get('limit', 25) opt...
Return an iterator for the given items.
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def _setup_authentication(self, username, password): '''Create the authentication object with the given credentials.''' ## BUG WORKAROUND if self.version < 1.1: # Version 1.0 had a bug when using the key parameter. # Later versions have the opposite bug (a key in the use...
Create the authentication object with the given credentials.
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def open_raw(self, page, parms=None, payload=None, HTTPrequest=None, payload_type='application/json' ): '''Opens a page from the server with optional XML. Returns a response file-like object''' if not parms: parms={} # if we're using a key, but it's not going in the header, add it ...
Opens a page from the server with optional XML. Returns a response file-like object
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def open(self, page, parms=None, payload=None, HTTPrequest=None ): '''Opens a page from the server with optional content. Returns the string response.''' response = self.open_raw( page, parms, payload, HTTPrequest ) return response.read()
Opens a page from the server with optional content. Returns the string response.
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def post(self, page, payload, parms=None ): '''Posts a string payload to the server - used to make new Redmine items. Returns an JSON string or error.''' if self.readonlytest: print 'Redmine read only test: Pretending to create: ' + page return payload else: ...
Posts a string payload to the server - used to make new Redmine items. Returns an JSON string or error.
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def put(self, page, payload, parms=None ): '''Puts an XML object on the server - used to update Redmine items. Returns nothing useful.''' if self.readonlytest: print 'Redmine read only test: Pretending to update: ' + page else: return self.open( page, parms, payload, HTT...
Puts an XML object on the server - used to update Redmine items. Returns nothing useful.
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def delete(self, page ): '''Deletes a given object on the server - used to remove items from Redmine. Use carefully!''' if self.readonlytest: print 'Redmine read only test: Pretending to delete: ' + page else: return self.open( page, HTTPrequest=self.DELETE_Request )
Deletes a given object on the server - used to remove items from Redmine. Use carefully!
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def unwrap_json(self, type, json_data): '''Decodes a json string, and unwraps any 'type' it finds within.''' # Parse the data try: data = json.loads(json_data) except ValueError: # If parsing failed, then raise the string which likely contains an error message ins...
Decodes a json string, and unwraps any 'type' it finds within.
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def find_all_item_classes(self): '''Finds and stores a reference to all Redmine_Item subclasses for later use.''' # This is a circular import, but performed after the class is defined and an object is instatiated. # We do this in order to get references to any objects definitions in the redmine....
Finds and stores a reference to all Redmine_Item subclasses for later use.
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def check_cache(self, type, data, obj=None): '''Returns the updated cached version of the given dict''' try: id = data['id'] except: # Not an identifiable item #print 'don\'t know this item %r:%r' % (type, data) return data # If obj was pa...
Returns the updated cached version of the given dict
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def substract(self, pt): """Return a Point instance as the displacement of two points.""" if isinstance(pt, Point): return Point(pt.x - self.x, pt.y - self.y, pt.z - self.z) else: raise TypeError
Return a Point instance as the displacement of two points.
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def from_list(cls, l): """Return a Point instance from a given list""" if len(l) == 3: x, y, z = map(float, l) return cls(x, y, z) elif len(l) == 2: x, y = map(float, l) return cls(x, y) else: raise AttributeError
Return a Point instance from a given list
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def multiply(self, number): """Return a Vector as the product of the vector and a real number.""" return self.from_list([x * number for x in self.to_list()])
Return a Vector as the product of the vector and a real number.
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def magnitude(self): """Return magnitude of the vector.""" return math.sqrt( reduce(lambda x, y: x + y, [x ** 2 for x in self.to_list()]) )
Return magnitude of the vector.
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def sum(self, vector): """Return a Vector instance as the vector sum of two vectors.""" return self.from_list( [x + vector.vector[i] for i, x in self.to_list()] )
Return a Vector instance as the vector sum of two vectors.
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def dot(self, vector, theta=None): """Return the dot product of two vectors. If theta is given then the dot product is computed as v1*v1 = |v1||v2|cos(theta). Argument theta is measured in degrees. """ if theta is not None: return (self.magnitude() * vector.m...
Return the dot product of two vectors. If theta is given then the dot product is computed as v1*v1 = |v1||v2|cos(theta). Argument theta is measured in degrees.
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def cross(self, vector): """Return a Vector instance as the cross product of two vectors""" return Vector((self.y * vector.z - self.z * vector.y), (self.z * vector.x - self.x * vector.z), (self.x * vector.y - self.y * vector.x))
Return a Vector instance as the cross product of two vectors
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def unit(self): """Return a Vector instance of the unit vector""" return Vector( (self.x / self.magnitude()), (self.y / self.magnitude()), (self.z / self.magnitude()) )
Return a Vector instance of the unit vector
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def angle(self, vector): """Return the angle between two vectors in degrees.""" return math.degrees( math.acos( self.dot(vector) / (self.magnitude() * vector.magnitude()) ) )
Return the angle between two vectors in degrees.
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def non_parallel(self, vector): """Return True if vectors are non-parallel. Non-parallel vectors are vectors which are neither parallel nor perpendicular to each other. """ if (self.is_parallel(vector) is not True and self.is_perpendicular(vector) is not True): ...
Return True if vectors are non-parallel. Non-parallel vectors are vectors which are neither parallel nor perpendicular to each other.
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def rotate(self, angle, axis=(0, 0, 1)): """Returns the rotated vector. Assumes angle is in radians""" if not all(isinstance(a, int) for a in axis): raise ValueError x, y, z = self.x, self.y, self.z # Z axis rotation if(axis[2]): x = (self.x * math.cos(an...
Returns the rotated vector. Assumes angle is in radians
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def from_points(cls, point1, point2): """Return a Vector instance from two given points.""" if isinstance(point1, Point) and isinstance(point2, Point): displacement = point1.substract(point2) return cls(displacement.x, displacement.y, displacement.z) raise TypeError
Return a Vector instance from two given points.
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def spherical(cls, mag, theta, phi=0): '''Returns a Vector instance from spherical coordinates''' return cls( mag * math.sin(phi) * math.cos(theta), # X mag * math.sin(phi) * math.sin(theta), # Y mag * math.cos(phi) # Z )
Returns a Vector instance from spherical coordinates
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def cylindrical(cls, mag, theta, z=0): '''Returns a Vector instance from cylindircal coordinates''' return cls( mag * math.cos(theta), # X mag * math.sin(theta), # Y z # Z )
Returns a Vector instance from cylindircal coordinates
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def amod(a, b): '''Modulus function which returns numerator if modulus is zero''' modded = int(a % b) return b if modded is 0 else modded
Modulus function which returns numerator if modulus is zero
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def search_weekday(weekday, jd, direction, offset): '''Determine the Julian date for the next or previous weekday''' return weekday_before(weekday, jd + (direction * offset))
Determine the Julian date for the next or previous weekday
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def nth_day_of_month(n, weekday, month, year): """ Return (year, month, day) tuple that represents nth weekday of month in year. If n==0, returns last weekday of month. Weekdays: Monday=0 """ if not (0 <= n <= 5): raise IndexError("Nth day of month must be 0-5. Received: {}".format(n)) ...
Return (year, month, day) tuple that represents nth weekday of month in year. If n==0, returns last weekday of month. Weekdays: Monday=0
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def irafglob(inlist, atfile=None): """ Returns a list of filenames based on the type of IRAF input. Handles lists, wild-card characters, and at-files. For special at-files, use the atfile keyword to process them. This function is recursive, so IRAF lists can also contain at-files and wild-card ch...
Returns a list of filenames based on the type of IRAF input. Handles lists, wild-card characters, and at-files. For special at-files, use the atfile keyword to process them. This function is recursive, so IRAF lists can also contain at-files and wild-card characters, e.g. `a.fits`, `@file.lst`, `*flt...
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def pack(self): """Return binary format of packet. The returned string is the binary format of the packet with stuffing and framing applied. It is ready to be sent to the GPS. """ # Possible structs for packet ID. # try: structs_ = ...
Return binary format of packet. The returned string is the binary format of the packet with stuffing and framing applied. It is ready to be sent to the GPS.
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def unpack(cls, rawpacket): """Instantiate `Packet` from binary string. :param rawpacket: TSIP pkt in binary format. :type rawpacket: String. `rawpacket` must already have framing (DLE...DLE/ETX) removed and byte stuffing reversed. """ structs_ = g...
Instantiate `Packet` from binary string. :param rawpacket: TSIP pkt in binary format. :type rawpacket: String. `rawpacket` must already have framing (DLE...DLE/ETX) removed and byte stuffing reversed.
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def ch_handler(offset=0, length=-1, **kw): """ Handle standard PRIMARY clipboard access. Note that offset and length are passed as strings. This differs from CLIPBOARD. """ global _lastSel offset = int(offset) length = int(length) if length < 0: length = len(_lastSel) return _lastSel[offs...
Handle standard PRIMARY clipboard access. Note that offset and length are passed as strings. This differs from CLIPBOARD.
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def put(text, cbname): """ Put the given string into the given clipboard. """ global _lastSel _checkTkInit() if cbname == 'CLIPBOARD': _theRoot.clipboard_clear() if text: # for clipboard_append, kwds can be -displayof, -format, or -type _theRoot.clipboard_append(t...
Put the given string into the given clipboard.
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def get(cbname): """ Get the contents of the given clipboard. """ _checkTkInit() if cbname == 'PRIMARY': try: return _theRoot.selection_get(selection='PRIMARY') except: return None if cbname == 'CLIPBOARD': try: return _theRoot.selection_get(se...
Get the contents of the given clipboard.
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def createDevice(self, deviceCfg): """ Creates a measurement deviceCfg from the input configuration. :param: deviceCfg: the deviceCfg cfg. :param: handlers: the loaded handlers. :return: the constructed deviceCfg. """ ioCfg = deviceCfg['io'] type = deviceC...
Creates a measurement deviceCfg from the input configuration. :param: deviceCfg: the deviceCfg cfg. :param: handlers: the loaded handlers. :return: the constructed deviceCfg.
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def _loadRecordingDevices(self): """ Loads the recordingDevices specified in the configuration. :param: handlers the loaded handlers. :return: the constructed recordingDevices in a dict keyed by name. """ return {device.name: device for device in [self.cre...
Loads the recordingDevices specified in the configuration. :param: handlers the loaded handlers. :return: the constructed recordingDevices in a dict keyed by name.
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def createHandler(self, handler): """ Creates a data handler from the input configuration. :param handler: the handler cfg. :return: the constructed handler. """ target = handler['target'] if handler['type'] == 'log': self.logger.warning("Initialising ...
Creates a data handler from the input configuration. :param handler: the handler cfg. :return: the constructed handler.
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def _loadHandlers(self): """ creates a dictionary of named handler instances :return: the dictionary """ return {handler.name: handler for handler in map(self.createHandler, self.config['handlers'])}
creates a dictionary of named handler instances :return: the dictionary
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def put(self, filename, chunkIdx, totalChunks): """ stores a chunk of new file, this is a nop if the file already exists. :param filename: the filename. :param chunkIdx: the chunk idx. :param totalChunks: the no of chunks expected. :return: the no of bytes written and 200...
stores a chunk of new file, this is a nop if the file already exists. :param filename: the filename. :param chunkIdx: the chunk idx. :param totalChunks: the no of chunks expected. :return: the no of bytes written and 200 or 400 if nothing was written.
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def delete(self, name): """ Deletes the named file. :param name: the name. :return: 200 if it was deleted, 404 if it doesn't exist or 500 for anything else. """ try: result = self._uploadController.delete(name) return None, 200 if result is not Non...
Deletes the named file. :param name: the name. :return: 200 if it was deleted, 404 if it doesn't exist or 500 for anything else.
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def put(self, name, start, end): """ Stores a new target. :param name: the name. :param start: start time. :param end: end time. :return: """ entry = self._uploadController.getEntry(name) if entry is not None: return None, 200 if self._...
Stores a new target. :param name: the name. :param start: start time. :param end: end time. :return:
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def get(self, name, start, end, resolution, window): """ :param name: :param start: :param end: :param resolution: :param window: :return: an analysed file. """ logger.info( 'Analysing ' + name + ' from ' + start + ' to ' + end + ' at '...
:param name: :param start: :param end: :param resolution: :param window: :return: an analysed file.
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def put(self, filename, totalChunks, status): """ Completes the specified upload. :param filename: the filename. :param totalChunks: the no of chunks. :param status: the status of the upload. :return: 200. """ logger.info('Completing ' + filename + ' - ' +...
Completes the specified upload. :param filename: the filename. :param totalChunks: the no of chunks. :param status: the status of the upload. :return: 200.
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def patch(self, measurementId): """ Patches the metadata associated with the new measurement, if this impacts the measurement length then a new measurement is created otherwise it just updates it in place. :param measurementId: :return: """ data = request.get_j...
Patches the metadata associated with the new measurement, if this impacts the measurement length then a new measurement is created otherwise it just updates it in place. :param measurementId: :return:
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def put(self, measurementId): """ Initiates a new measurement. Accepts a json payload with the following attributes; * duration: in seconds * startTime OR delay: a date in YMD_HMS format or a delay in seconds * description: some free text information about the measurement ...
Initiates a new measurement. Accepts a json payload with the following attributes; * duration: in seconds * startTime OR delay: a date in YMD_HMS format or a delay in seconds * description: some free text information about the measurement :return:
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def _calculateStartTime(self, json): """ Calculates an absolute start time from the json payload. This is either the given absolute start time (+2s) or the time in delay seconds time. If the resulting date is in the past then now is returned instead. :param json: the payload from the UI ...
Calculates an absolute start time from the json payload. This is either the given absolute start time (+2s) or the time in delay seconds time. If the resulting date is in the past then now is returned instead. :param json: the payload from the UI :return: the absolute start time.
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def _getAbsoluteTime(self, start, delay): """ Adds the delay in seconds to the start time. :param start: :param delay: :return: a datetimem for the specified point in time. """ return start + datetime.timedelta(days=0, seconds=delay)
Adds the delay in seconds to the start time. :param start: :param delay: :return: a datetimem for the specified point in time.
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def delete(self, measurementId): """ Deletes the named measurement. :return: 200 if something was deleted, 404 if the measurement doesn't exist, 500 in any other case. """ message, count, deleted = self._measurementController.delete(measurementId) if count == 0: ...
Deletes the named measurement. :return: 200 if something was deleted, 404 if the measurement doesn't exist, 500 in any other case.
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def put(self, measurementId, deviceId): """ Initialises the measurement session from the given device. :param measurementId: :param deviceId: :return: """ logger.info('Starting measurement ' + measurementId + ' for ' + deviceId) if self._measurementControl...
Initialises the measurement session from the given device. :param measurementId: :param deviceId: :return:
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def put(self, measurementId, deviceId): """ Store a bunch of data for this measurement session. :param measurementId: :param deviceId: :return: """ data = request.get_json() if data is not None: parsedData = json.loads(data) logger....
Store a bunch of data for this measurement session. :param measurementId: :param deviceId: :return:
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def put(self, measurementId, deviceId): """ Fails the measurement for this device. :param measurementId: the measurement name. :param deviceId: the device name. :return: 200 if """ payload = request.get_json() failureReason = json.loads(payload).get('failu...
Fails the measurement for this device. :param measurementId: the measurement name. :param deviceId: the device name. :return: 200 if
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def put(self, deviceId): """ Puts a new device into the device store :param deviceId: :return: """ device = request.get_json() logger.debug("Received /devices/" + deviceId + " - " + str(device)) self._deviceController.accept(deviceId, device) retur...
Puts a new device into the device store :param deviceId: :return:
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def printColsAuto(in_strings, term_width=80, min_pad=1): """ Print a list of strings centered in columns. Determine the number of columns and lines on the fly. Return the result, ready to print. in_strings is a list/tuple/iterable of strings min_pad is number of spaces to appear on each side of a sing...
Print a list of strings centered in columns. Determine the number of columns and lines on the fly. Return the result, ready to print. in_strings is a list/tuple/iterable of strings min_pad is number of spaces to appear on each side of a single string (so you will see twice this many spaces bet...
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def printCols(strlist,cols=5,width=80): """Print elements of list in cols columns""" # This may exist somewhere in the Python standard libraries? # Should probably rewrite this, it is pretty crude. nlines = (len(strlist)+cols-1)//cols line = nlines*[""] for i in range(len(strlist)): c...
Print elements of list in cols columns
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def stripQuotes(value): """Strip single or double quotes off string; remove embedded quote pairs""" if value[:1] == '"': value = value[1:] if value[-1:] == '"': value = value[:-1] # replace "" with " value = re.sub(_re_doubleq2, '"', value) elif value[:1] == "'"...
Strip single or double quotes off string; remove embedded quote pairs
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def csvSplit(line, delim=',', allowEol=True): """ Take a string as input (e.g. a line in a csv text file), and break it into tokens separated by commas while ignoring commas embedded inside quoted sections. This is exactly what the 'csv' module is meant for, so we *should* be using it, save that it has...
Take a string as input (e.g. a line in a csv text file), and break it into tokens separated by commas while ignoring commas embedded inside quoted sections. This is exactly what the 'csv' module is meant for, so we *should* be using it, save that it has two bugs (described next) which limit our use of ...
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def rglob(root, pattern): """ Same thing as glob.glob, but recursively checks subdirs. """ # Thanks to Alex Martelli for basics on Stack Overflow retlist = [] if None not in (pattern, root): for base, dirs, files in os.walk(root): goodfiles = fnmatch.filter(files, pattern) ...
Same thing as glob.glob, but recursively checks subdirs.
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def setWritePrivs(fname, makeWritable, ignoreErrors=False): """ Set a file named fname to be writable (or not) by user, with the option to ignore errors. There is nothing ground-breaking here, but I was annoyed with having to repeate this little bit of code. """ privs = os.stat(fname).st_mode try: ...
Set a file named fname to be writable (or not) by user, with the option to ignore errors. There is nothing ground-breaking here, but I was annoyed with having to repeate this little bit of code.
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def removeEscapes(value, quoted=0): """Remove escapes from in front of quotes (which IRAF seems to just stick in for fun sometimes.) Remove \-newline too. If quoted is true, removes all blanks following \-newline (which is a nasty thing IRAF does for continuations inside quoted strings.) XXX S...
Remove escapes from in front of quotes (which IRAF seems to just stick in for fun sometimes.) Remove \-newline too. If quoted is true, removes all blanks following \-newline (which is a nasty thing IRAF does for continuations inside quoted strings.) XXX Should we remove \\ too?
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def translateName(s, dot=0): """Convert CL parameter or variable name to Python-acceptable name Translate embedded dollar signs to 'DOLLAR' Add 'PY' prefix to components that are Python reserved words Add 'PY' prefix to components start with a number If dot != 0, also replaces '.' with 'DOT' "...
Convert CL parameter or variable name to Python-acceptable name Translate embedded dollar signs to 'DOLLAR' Add 'PY' prefix to components that are Python reserved words Add 'PY' prefix to components start with a number If dot != 0, also replaces '.' with 'DOT'
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def init_tk_default_root(withdraw=True): """ In case the _default_root value is required, you may safely call this ahead of time to ensure that it has been initialized. If it has already been, this is a no-op. """ if not capable.OF_GRAPHICS: raise RuntimeError("Cannot run this command with...
In case the _default_root value is required, you may safely call this ahead of time to ensure that it has been initialized. If it has already been, this is a no-op.
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def tkreadline(file=None): """Read a line from file while running Tk mainloop. If the file is not line-buffered then the Tk mainloop will stop running after one character is typed. The function will still work but Tk widgets will stop updating. This should work OK for stdin and other line-buffer...
Read a line from file while running Tk mainloop. If the file is not line-buffered then the Tk mainloop will stop running after one character is typed. The function will still work but Tk widgets will stop updating. This should work OK for stdin and other line-buffered filehandles. If file is omitted...
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def launchBrowser(url, brow_bin='mozilla', subj=None): """ Given a URL, try to pop it up in a browser on most platforms. brow_bin is only used on OS's where there is no "open" or "start" cmd. """ if not subj: subj = url # Tries to use webbrowser module on most OSes, unless a system command # i...
Given a URL, try to pop it up in a browser on most platforms. brow_bin is only used on OS's where there is no "open" or "start" cmd.
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def read(self, file, nbytes): """Read nbytes characters from file while running Tk mainloop""" if not capable.OF_GRAPHICS: raise RuntimeError("Cannot run this command without graphics") if isinstance(file, int): fd = file else: # Otherwise, assume we h...
Read nbytes characters from file while running Tk mainloop
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def _read(self, fd, mask): """Read waiting data and terminate Tk mainloop if done""" try: # if EOF was encountered on a tty, avoid reading again because # it actually requests more data if select.select([fd],[],[],0)[0]: snew = os.read(fd, self.nbytes)...
Read waiting data and terminate Tk mainloop if done
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def loadSignalFromDelimitedFile(filename, timeColumnIdx=0, dataColumnIdx=1, delimiter=',', skipHeader=0) -> Signal: """ reads a delimited file and converts into a Signal :param filename: string :param timeColumnIdx: 0 indexed column number :param dataColumnIdx: 0 indexed column number :param delimit...
reads a delimited file and converts into a Signal :param filename: string :param timeColumnIdx: 0 indexed column number :param dataColumnIdx: 0 indexed column number :param delimiter: char :return a Signal instance
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def loadSignalFromWav(inputSignalFile, calibrationRealWorldValue=None, calibrationSignalFile=None, start=None, end=None) -> Signal: """ reads a wav file into a Signal and scales the input so that the sample are expressed in real world values (as defined by the calibration signal). :par...
reads a wav file into a Signal and scales the input so that the sample are expressed in real world values (as defined by the calibration signal). :param inputSignalFile: a path to the input signal file :param calibrationSignalFile: a path the calibration signal file :param calibrationRealWorldValue: the...
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def readWav(inputSignalFile, selectedChannel=1, start=None, end=None) -> Signal: """ reads a wav file into a Signal. :param inputSignalFile: a path to the input signal file :param selectedChannel: the channel to read. :param start: the time to start reading from in HH:mm:ss.SSS format. :param end: t...
reads a wav file into a Signal. :param inputSignalFile: a path to the input signal file :param selectedChannel: the channel to read. :param start: the time to start reading from in HH:mm:ss.SSS format. :param end: the time to end reading from in HH:mm:ss.SSS format. :returns: Signal.
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def loadTriAxisSignalFromFile(filename, timeColumnIdx=0, xIdx=1, yIdx=2, zIdx=3, delimiter=',', skipHeader=0) -> TriAxisSignal: """ A factory method for loading a tri axis measurement from a single file. :param filename: the file to load from. :param timeColumnIdx: the colu...
A factory method for loading a tri axis measurement from a single file. :param filename: the file to load from. :param timeColumnIdx: the column containing time data. :param xIdx: the column containing x axis data. :param yIdx: the column containing y axis data. :param zIdx: the column containing z ...
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def psd(self, ref=None, segmentLengthMultiplier=1, mode=None, **kwargs): """ analyses the source and returns a PSD, segment is set to get ~1Hz frequency resolution :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :pa...
analyses the source and returns a PSD, segment is set to get ~1Hz frequency resolution :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :param mode: cq or none. :return: f : ndarray Array of sample fr...
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def spectrum(self, ref=None, segmentLengthMultiplier=1, mode=None, **kwargs): """ analyses the source to generate the linear spectrum. :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :param mode: cq or none. ...
analyses the source to generate the linear spectrum. :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :param mode: cq or none. :return: f : ndarray Array of sample frequencies. Pxx : ndarr...
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def peakSpectrum(self, ref=None, segmentLengthMultiplier=1, mode=None, window='hann'): """ analyses the source to generate the max values per bin per segment :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :param mo...
analyses the source to generate the max values per bin per segment :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :param mode: cq or none. :return: f : ndarray Array of sample frequencies. ...
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def spectrogram(self, ref=None, segmentLengthMultiplier=1, window='hann'): """ analyses the source to generate a spectrogram :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :return: t : ndarray ...
analyses the source to generate a spectrogram :param ref: the reference value for dB purposes. :param segmentLengthMultiplier: allow for increased resolution. :return: t : ndarray Array of time slices. f : ndarray Array of sample frequencies. ...
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def lowPass(self, *args): """ Creates a copy of the signal with the low pass applied, args specifed are passed through to _butter. :return: """ return Signal(self._butter(self.samples, 'low', *args), fs=self.fs)
Creates a copy of the signal with the low pass applied, args specifed are passed through to _butter. :return:
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def highPass(self, *args): """ Creates a copy of the signal with the high pass applied, args specifed are passed through to _butter. :return: """ return Signal(self._butter(self.samples, 'high', *args), fs=self.fs)
Creates a copy of the signal with the high pass applied, args specifed are passed through to _butter. :return:
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def _butter(self, data, btype, f3=2, order=2): """ Applies a digital butterworth filter via filtfilt at the specified f3 and order. Default values are set to correspond to apparently sensible filters that distinguish between vibration and tilt from an accelerometer. :param data: the dat...
Applies a digital butterworth filter via filtfilt at the specified f3 and order. Default values are set to correspond to apparently sensible filters that distinguish between vibration and tilt from an accelerometer. :param data: the data to filter. :param btype: high or low. :param f3: ...
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def _getAnalysis(self, axis, analysis, ref=None): """ gets the named analysis on the given axis and caches the result (or reads from the cache if data is available already) :param axis: the named axis. :param analysis: the analysis name. :return: the analysis tuple. ...
gets the named analysis on the given axis and caches the result (or reads from the cache if data is available already) :param axis: the named axis. :param analysis: the analysis name. :return: the analysis tuple.
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def legal_date(year, month, day): '''Checks if a given date is a legal positivist date''' try: assert year >= 1 assert 0 < month <= 14 assert 0 < day <= 28 if month == 14: if isleap(year + YEAR_EPOCH - 1): assert day <= 2 else: ...
Checks if a given date is a legal positivist date
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def to_jd(year, month, day): '''Convert a Positivist date to Julian day count.''' legal_date(year, month, day) gyear = year + YEAR_EPOCH - 1 return ( gregorian.EPOCH - 1 + (365 * (gyear - 1)) + floor((gyear - 1) / 4) + (-floor((gyear - 1) / 100)) + floor((gyear - 1) / 400) + (mo...
Convert a Positivist date to Julian day count.
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def from_jd(jd): '''Convert a Julian day count to Positivist date.''' try: assert jd >= EPOCH except AssertionError: raise ValueError('Invalid Julian day') depoch = floor(jd - 0.5) + 0.5 - gregorian.EPOCH quadricent = floor(depoch / gregorian.INTERCALATION_CYCLE_DAYS) dqc = dep...
Convert a Julian day count to Positivist date.
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def dayname(year, month, day): ''' Give the name of the month and day for a given date. Returns: tuple month_name, day_name ''' legal_date(year, month, day) yearday = (month - 1) * 28 + day if isleap(year + YEAR_EPOCH - 1): dname = data.day_names_leap[yearday - 1] else...
Give the name of the month and day for a given date. Returns: tuple month_name, day_name
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def hasExpired(self): """ :return: true if the lastUpdateTime is more than maxAge seconds ago. """ return (datetime.datetime.utcnow() - self.lastUpdateTime).total_seconds() > self.maxAgeSeconds
:return: true if the lastUpdateTime is more than maxAge seconds ago.
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def accept(self, deviceId, device): """ Adds the named device to the store. :param deviceId: :param device: :return: """ storedDevice = self.devices.get(deviceId) if storedDevice is None: logger.info('Initialising device ' + deviceId) ...
Adds the named device to the store. :param deviceId: :param device: :return:
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def getDevices(self, status=None): """ The devices in the given state or all devices is the arg is none. :param status: the state to match against. :return: the devices """ return [d for d in self.devices.values() if status is None or d.payload.get('status') == status]
The devices in the given state or all devices is the arg is none. :param status: the state to match against. :return: the devices
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def getDevice(self, id): """ gets the named device. :param id: the id. :return: the device """ return next(iter([d for d in self.devices.values() if d.deviceId == id]), None)
gets the named device. :param id: the id. :return: the device
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def _evictStaleDevices(self): """ A housekeeping function which runs in a worker thread and which evicts devices that haven't sent an update for a while. """ while self.running: expiredDeviceIds = [key for key, value in self.devices.items() if value.hasExpired()] ...
A housekeeping function which runs in a worker thread and which evicts devices that haven't sent an update for a while.
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def scheduleMeasurement(self, measurementId, duration, start): """ Schedules the requested measurement session with all INITIALISED devices. :param measurementId: :param duration: :param start: :return: a dict of device vs status. """ # TODO subtract 1s fr...
Schedules the requested measurement session with all INITIALISED devices. :param measurementId: :param duration: :param start: :return: a dict of device vs status.
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def patch(self): """ Allows the UI to update parameters ensuring that all devices are kept in sync. Payload is json in TargetState format. :return: """ # TODO block until all devices have updated? json = request.get_json() logger.info("Updating target stat...
Allows the UI to update parameters ensuring that all devices are kept in sync. Payload is json in TargetState format. :return:
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def list_parse(name_list): """Parse a comma-separated list of values, or a filename (starting with @) containing a list value on each line. """ if name_list and name_list[0] == '@': value = name_list[1:] if not os.path.exists(value): log.warning('The file %s does not exist' ...
Parse a comma-separated list of values, or a filename (starting with @) containing a list value on each line.
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def _mmInit(self): """Create the minimum match dictionary of keys""" # cache references to speed up loop a bit mmkeys = {} mmkeysGet = mmkeys.setdefault minkeylength = self.minkeylength for key in self.data.keys(): # add abbreviations as short as minkeylength ...
Create the minimum match dictionary of keys
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def resolve(self, key, keylist): """Hook to resolve ambiguities in selected keys""" raise AmbiguousKeyError("Ambiguous key "+ repr(key) + ", could be any of " + str(sorted(keylist)))
Hook to resolve ambiguities in selected keys
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def add(self, key, item): """Add a new key/item pair to the dictionary. Resets an existing key value only if this is an exact match to a known key.""" mmkeys = self.mmkeys if mmkeys is not None and not (key in self.data): # add abbreviations as short as minkeylength ...
Add a new key/item pair to the dictionary. Resets an existing key value only if this is an exact match to a known key.
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