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<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _on_connect_error(self, sock, err): # pylint: disable=unused-argument """Error received from websocket"""
if isinstance(err, SystemExit): self.log.error(f"Shutting down websocket connection") else: self.log.error(f"Websocket error: {err}")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def connect(self, sock): """Attach a given socket to a channel"""
def cbwrap(*args, **kwargs): """Callback wrapper; passes in response_type""" self.callback(self.response_type, *args, **kwargs) self.sock = sock self.sock.subscribe(self.channel) self.sock.onchannel(self.channel, cbwrap)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def run_cmd(cmd, input=None, timeout=30, max_try=3, num_try=1): '''Run command `cmd`. It's like that, and that's the way it is. ''' if type(cmd) == str: cmd = cmd.split() process = subprocess.Popen(cmd, stdin=open('/dev/null', 'r'), ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def check_options(options, parser): """ check options requirements, print and return exit value """
if not options.get('release_environment', None): print("release environment is required") parser.print_help() return os.EX_USAGE return 0
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def write(self): """ write all needed state info to filesystem """
dumped = self._fax.codec.dump(self.__state, open(self.state_file, 'w'))
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def expected_param_keys(self): """returns a list of params that this ConfigTemplate expects to receive"""
expected_keys = [] r = re.compile('%\(([^\)]+)\)s') for block in self.keys(): for key in self[block].keys(): s = self[block][key] if type(s)!=str: continue md = re.search(r, s) while md is not None: ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def main(): """Takes a crash id, pulls down data from Socorro, generates signature data"""
parser = argparse.ArgumentParser( formatter_class=WrappedTextHelpFormatter, description=DESCRIPTION ) parser.add_argument( '-v', '--verbose', help='increase output verbosity', action='store_true' ) parser.add_argument( 'crashid', help='crash id to generate signatures...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _fill_text(self, text, width, indent): """Wraps text like HelpFormatter, but doesn't squash lines This makes it easier to do lists and paragraphs. """
parts = text.split('\n\n') for i, part in enumerate(parts): # Check to see if it's a bulleted list--if so, then fill each line if part.startswith('* '): subparts = part.split('\n') for j, subpart in enumerate(subparts): subpart...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_api_services_by_name(self): """Return a dict of services by name"""
if not self.services_by_name: self.services_by_name = dict({s.get('name'): s for s in self.conf .get("api") .get("services")}) return self.services_by_name
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_api_endpoints(self, apiname): """Returns the API endpoints"""
try: return self.services_by_name\ .get(apiname)\ .get("endpoints")\ .copy() except AttributeError: raise Exception(f"Couldn't find the API endpoints")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_ws_subscriptions(self, apiname): """Returns the websocket subscriptions"""
try: return self.services_by_name\ .get(apiname)\ .get("subscriptions")\ .copy() except AttributeError: raise Exception(f"Couldn't find the websocket subscriptions")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_api(self, name=None): """Returns the API configuration"""
if name is None: try: return self.conf.get("api").copy() except: # NOQA raise Exception(f"Couldn't find the API configuration")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_api_service(self, name=None): """Returns the specific service config definition"""
try: svc = self.services_by_name.get(name, None) if svc is None: raise ValueError(f"Couldn't find the API service configuration") return svc except: # NOQA raise Exception(f"Failed to retrieve the API service configuration")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _ex_type_str(exobj): """Return a string corresponding to the exception type."""
regexp = re.compile(r"<(?:\bclass\b|\btype\b)\s+'?([\w|\.]+)'?>") exc_type = str(exobj) if regexp.match(exc_type): exc_type = regexp.match(exc_type).groups()[0] exc_type = exc_type[11:] if exc_type.startswith("exceptions.") else exc_type if "." in exc_type: exc_type = exc_type.s...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _unicode_to_ascii(obj): # pragma: no cover """Convert to ASCII."""
# pylint: disable=E0602,R1717 if isinstance(obj, dict): return dict( [ (_unicode_to_ascii(key), _unicode_to_ascii(value)) for key, value in obj.items() ] ) if isinstance(obj, list): return [_unicode_to_ascii(element) for elemen...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def get_remote_executors(hub_ip, port = 4444): ''' Get remote hosts from Selenium Grid Hub Console @param hub_ip: hub ip of selenium grid hub @param port: hub port of selenium grid hub ''' resp = requests.get("http://%s:%s/grid/console" %(hub_ip, port)) re...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _production(self): """Calculate total energy production. Not rounded"""
return self._nuclear + self._diesel + self._gas + self._wind + self._combined + self._vapor + self._solar + self._hydraulic + self._carbon + self._waste + self._other
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _links(self): """Calculate total energy production. Not Rounded"""
total = 0.0 for value in self.link.values(): total += value return total
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def interface(self, context): """Implement the interface for the adapter object"""
self.context = context self.callback = self.context.get("callback")
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def _element(cls): ''' find the element with controls ''' if not cls.__is_selector(): raise Exception("Invalid selector[%s]." %cls.__control["by"]) driver = Web.driver try: elements = WebDriverWait(driver, cls.__control["timeout"]).un...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def _elements(cls): ''' find the elements with controls ''' if not cls.__is_selector(): raise Exception("Invalid selector[%s]." %cls.__control["by"]) driver = Web.driver try: elements = WebDriverWait(driver, cls.__control["timeout"])....
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def update(xCqNck7t, **kwargs): """Updates the Dict with the given values. Turns internal dicts into Dicts."""
def dict_list_val(inlist): l = [] for i in inlist: if type(i)==dict: l.append(Dict(**i)) elif type(i)==list: l.append(make_list(i)) elif type(i)==bytes: l.append(i.decode...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def keys(self, key=None, reverse=False): """sort the keys before returning them"""
ks = sorted(list(dict.keys(self)), key=key, reverse=reverse) return ks
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def hub(self, port): ''' java -jar selenium-server.jar -role hub -port 4444 @param port: listen port of selenium hub ''' self._ip = "localhost" self._port = port self.command = [self._conf["java_path"], "-jar", self._conf["jar_path"], "-port", str(port), "-role",...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def start_server(self): """start the selenium Remote Server."""
self.__subp = subprocess.Popen(self.command) #print("\tselenium jar pid[%s] is running." %self.__subp.pid) time.sleep(2)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def negate_gate(wordlen, input='x', output='~x'): """Implements two's complement negation."""
neg = bitwise_negate(wordlen, input, "tmp") inc = inc_gate(wordlen, "tmp", output) return neg >> inc
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def flatten_list(lobj): """ Recursively flattens a list. :param lobj: List to flatten :type lobj: list :rtype: list For example: [1, 2, 3, 4, 5, 6, 7] """
ret = [] for item in lobj: if isinstance(item, list): for sub_item in flatten_list(item): ret.append(sub_item) else: ret.append(item) return ret
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def load(self, file=CONFIG_FILE): """ load a configuration file. loads default config if file is not found """
if not os.path.exists(file): print("Config file was not found under %s. Default file has been created" % CONFIG_FILE) self._settings = yaml.load(DEFAULT_CONFIG, yaml.RoundTripLoader) self.save(file) sys.exit() with open(file, 'r') as f: self._...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def save(self, file=CONFIG_FILE): """ Save configuration to provided path as a yaml file """
os.makedirs(os.path.dirname(file), exist_ok=True) with open(file, "w") as f: yaml.dump(self._settings, f, Dumper=yaml.RoundTripDumper, width=float("inf"))
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def create(self): """Create the corresponding index. Will overwrite existing indexes of the same name."""
body = dict() if self.mapping is not None: body['mappings'] = self.mapping if self.settings is not None: body['settings'] = self.settings else: body['settings'] = self._default_settings() self.instance.indices.create(self.index, body)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def search(self, query=None, size=100, unpack=True): """Search the index with a query. Can at most return 10'000 results from a search. If the search would yield...
logging.info('Download all documents from index %s.', self.index) if query is None: query = self.match_all results = list() data = self.instance.search(index=self.index, doc_type=self.doc_type, body=query, size=size) if unpack: for items in data['hits']['...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def scan_index(self, query: Union[Dict[str, str], None] = None) -> List[Dict[str, str]]: """Scan the index with the query. Will return any number of results above...
if query is None: query = self.match_all logging.info('Download all documents from index %s with query %s.', self.index, query) results = list() data = scan(self.instance, index=self.index, doc_type=self.doc_type, query=query) for items in data: if '_sour...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def scroll(self, query=None, scroll='5m', size=100, unpack=True): """Scroll an index with the specified search query. Works as a generator. Will yield `size` res...
query = self.match_all if query is None else query response = self.instance.search(index=self.index, doc_type=self.doc_type, body=query, size=size, scroll=scroll) while len(response['hits']['hits']) > 0: scroll_id = response['_scroll_id'] logging.debug(response) ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get(self, identifier): """Fetch document by _id. Returns None if it is not found. (Will log a warning if not found as well. Should not be used to search an i...
logging.info('Download document with id ' + str(identifier) + '.') try: record = self.instance.get(index=self.index, doc_type=self.doc_type, id=identifier) if '_source' in record: return record['_source'] else: return record ex...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def index_into(self, document, id) -> bool: """Index a single document into the index."""
try: self.instance.index(index=self.index, doc_type=self.doc_type, body=json.dumps(document, ensure_ascii=False), id=id) except RequestError as ex: logging.error(ex) return False else: return True
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def delete(self, doc_id: str) -> bool: """Delete a document with id."""
try: self.instance.delete(self.index, self.doc_type, doc_id) except RequestError as ex: logging.error(ex) return False else: return True
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def update(self, doc: dict, doc_id: str): """Partial update to a single document. Uses the Update API with the specified partial document. """
body = { 'doc': doc } self.instance.update(self.index, self.doc_type, doc_id, body=body)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def script_update(self, script: str, params: Union[dict, None], doc_id: str): """Uses painless script to update a document. See documentation for more informatio...
body = { 'script': { 'source': script, 'lang': 'painless' } } if params is not None: body['script']['params'] = params self.instance.update(self.index, self.doc_type, doc_id, body=body)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def bulk(self, data: List[Dict[str, str]], identifier_key: str, op_type='index', upsert=False, keep_id_key=False) -> bool: """ Takes a list of dictionaries and an...
bulk_objects = [] for document in data: bulk_object = dict() bulk_object['_op_type'] = op_type if identifier_key is not None and identifier_key != '': bulk_object['_id'] = document[identifier_key] if not keep_id_key: ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def reindex(self, new_index_name: str, identifier_key: str, **kwargs) -> 'ElasticIndex': """Reindex the entire index. Scrolls the old index and bulk indexes all d...
if 'url' not in kwargs: kwargs['url'] = self.url if 'doc_type' not in kwargs: kwargs['doc_type'] = self.doc_type if 'mapping' not in kwargs: kwargs['mapping'] = self.mapping new_index = ElasticIndex(new_index_name, **kwargs) for results in se...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def dump(self, path: str, file_name: str = "", **kwargs: dict): """ Dumps the entire index into a json file. :param path: The path to directory where the dump sh...
export = list() for results in self.scroll(): export.extend(results) if not path.endswith('/'): path += '/' if file_name == '': file_name = self.index if not file_name.endswith('.json'): file_name += '.json' store = pat...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def main(): """ parse command line options and either launch some configuration dialog or start an instance of _MainLoop as a daemon """
(options, _) = _parse_args() if options.change_password: c.keyring_set_password(c["username"]) sys.exit(0) if options.select: courses = client.get_courses() c.selection_dialog(courses) c.save() sys.exit(0) if options.stop: os.system("kill -2 `c...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def generate(self, signature_data): """Takes data and returns a signature :arg dict signature_data: data to use to generate a signature :returns: ``Result`` inst...
result = Result() for rule in self.pipeline: rule_name = rule.__class__.__name__ try: if rule.predicate(signature_data, result): rule.action(signature_data, result) except Exception as exc: if self.error_handler:...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _unblast(name2vals, name_map): """Helper function to lift str -> bool maps used by aiger to the word level. Dual of the `_blast` function."""
def _collect(names): return tuple(name2vals[n] for n in names) return {bvname: _collect(names) for bvname, names in name_map}
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def create_logger(self): """Generates a logger instance from the singleton"""
name = "bors" if hasattr(self, "name"): name = self.name self.log = logging.getLogger(name) try: lvl = self.conf.get_log_level() except AttributeError: lvl = self.context.get("log_level", None) self.log.setLevel(getattr(logging, lvl,...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def get_cls(project_name, project_data): """ gets class from name and data, sets base level attrs defaults to facsimile.base.Facsimile """
if project_name: cls = getattr(facsimile.base, project_data.get('class', 'Facsimile')) cls.name = project_name else: cls = facsimile.base.Facsimile return cls
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def check_recaptcha(view_func): """Chech that the entered recaptcha data is correct"""
@wraps(view_func) def _wrapped_view(request, *args, **kwargs): request.recaptcha_is_valid = None if request.method == 'POST': recaptcha_response = request.POST.get('g-recaptcha-response') data = { 'secret': settings.GOOGLE_RECAPTCHA_SECRET_KEY, ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def execute(self, context): """Execute the strategies on the given context"""
for ware in self.middleware: ware.premessage(context) context = ware.bind(context) ware.postmessage(context) return context
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def shutdown(self): """Perform cleanup! We're goin' down!!!"""
for ware in self.middleware: ware.preshutdown() self._shutdown() ware.postshutdown()
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def main(argv=None): """Generates documentation for signature generation pipeline"""
parser = argparse.ArgumentParser(description=DESCRIPTION) parser.add_argument( 'pipeline', help='Python dotted path to rules pipeline to document' ) parser.add_argument('output', help='output file') if argv is None: args = parser.parse_args() else: args = parser...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def handle(self, *args, **options): """This function is called by the Django API to specify how this object will be saved to the database. """
taxonomy_id = options['taxonomy_id'] # Remove leading and trailing blank characters in "common_name" # and "scientific_name common_name = options['common_name'].strip() scientific_name = options['scientific_name'].strip() if common_name and scientific_name: ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def init(resolution, pygame_flags=0, display_pos=(0, 0), interactive_mode=False): """Creates a window of given resolution. :param resolution: the resolution of t...
os.environ['SDL_VIDEO_WINDOW_POS'] = "{}, {}".format(*display_pos) pygame.init() pygame.font.init() disp = pygame.display.set_mode(resolution, pygame_flags) return _PumpThread() if interactive_mode else disp
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def empty_surface(fill_color, size=None): """Returns an empty surface filled with fill_color. :param fill_color: color to fill the surface with :type fill_color:...
sr = pygame.display.get_surface().get_rect() surf = pygame.Surface(size or (sr.w, sr.h)) surf.fill(fill_color) return surf
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def run(self): """ Called by internal API subsystem to initialize websockets connections in the API interface """
self.api = self.context.get("cls")(self.context) self.context["inst"].append(self) # Adapters used by strategies def on_ws_connect(*args, **kwargs): """Callback on connect hook to set is_connected_ws""" self.is_connected_ws = True self.api.on_ws_connect(*ar...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def add_channels(self, channels): """ Take a list of SockChannel objects and extend the websock listener """
chans = [ SockChannel(chan, res, self._generate_result) for chan, res in channels.items() ] self.api.channels.extend(chans) self.api.connect_channels(chans)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _generate_result(self, res_type, channel, result): """Generate the result object"""
schema = self.api.ws_result_schema() schema.context['channel'] = channel schema.context['response_type'] = res_type self.callback(schema.load(result), self.context)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def rand_elem(seq, n=None): """returns a random element from seq n times. If n is None, it continues indefinitly"""
return map(random.choice, repeat(seq, n) if n is not None else repeat(seq))
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def first_paragraph(multiline_str, without_trailing_dot=True, maxlength=None): '''Return first paragraph of multiline_str as a oneliner. When without_trailing_dot is True, the last char of the first paragraph will be removed, if it is a dot ('.'). Examples: >>> multiline_str = 'first line\\nse...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def print_doc1(*args, **kwargs): '''Print the first paragraph of the docstring of the decorated function. The paragraph will be printed as a oneliner. May be inv...
# ... pass # ... # >>> foo() # \033[34mFirst line of docstring\033[0m # >>> @print_doc1 # ... def foo(): # ... """First paragraph of docstring which contains more than one # ... line. # ... # ... Another paragraph. # ... ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def print_full_name(*args, **kwargs): '''Decorator, print the full name of the decorated function. May be invoked as a simple, argument-less decorator (i.e. ``@print_doc1``) or with named arguments ``color``, ``bold``, or ``prefix`` (eg. ``@print_doc1(color=utils.red, bold=True, prefix=' ')``). '''...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def filled_out_template_str(template, **substitutions): '''Return str template with applied substitutions. Example: >>> template = 'Asyl for {{name}} {{surname}}!' >>> filled_out_template_str(template, name='Edward', surname='Snowden') 'Asyl for Edward Snowden!' >>> template = ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def filled_out_template(filename, **substitutions): '''Return content of file filename with applied substitutions.''' res = None with open(filename, 'r') as fp: template = fp.read() res = filled_out_template_str(template, **substitutions) return res
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def convert_unicode_2_utf8(input): '''Return a copy of `input` with every str component encoded from unicode to utf-8. ''' if isinstance(input, dict): try: # python-2.6 return dict((convert_unicode_2_utf8(key), convert_unicode_2_utf8(value)) for ke...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def load_json(filename, gzip_mode=False): '''Return the json-file data, with all strings utf-8 encoded.''' open_file = open if gzip_mode: open_file = gzip.open try: with open_file(filename, 'rt') as fh: data = json.load(fh) data = convert_unicode_2_utf8(data) ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def write_json(data, filename, gzip_mode=False): '''Write the python data structure as a json-Object to filename.''' open_file = open if gzip_mode: open_file = gzip.open try: with open_file(filename, 'wt') as fh: json.dump(obj=data, fp=fh, sort_keys=True) except Attribu...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def text_with_newlines(text, line_length=78, newline='\n'): '''Return text with a `newline` inserted after each `line_length` char. Return `text` unchanged if line_length == 0. ''' if line_length > 0: if len(text) <= line_length: return text else: return newline....
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _readlines(fname, fpointer1=open, fpointer2=open): # pragma: no cover """Read all lines from file."""
# fpointer1, fpointer2 arguments to ease testing try: with fpointer1(fname, "r") as fobj: return fobj.readlines() except UnicodeDecodeError: # pragma: no cover with fpointer2(fname, "r", encoding="utf-8") as fobj: return fobj.readlines()
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def launch_plugin(self): ''' launch nagios_plugin command ''' # nagios_plugins probes for plugin in self.plugins: # Construct the nagios_plugin command command = ('%s%s' % (self.plugins[plugin]['path'], self.plugins[plugin]['command'])) try: ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def match(Class, path, pattern, flags=re.I, sortkey=None, ext=None): """for a given path and regexp pattern, return the files that match"""
return sorted( [ Class(fn=fn) for fn in rglob(path, f"*{ext or ''}") if re.search(pattern, os.path.basename(fn), flags=flags) is not None and os.path.basename(fn)[0] != '~' # omit temp files ], key=sortkey, ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def copy(self, new_fn): """copy the file to the new_fn, preserving atime and mtime"""
new_file = self.__class__(fn=str(new_fn)) new_file.write(data=self.read()) new_file.utime(self.atime, self.mtime) return new_file
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def make_basename(self, fn=None, ext=None): """make a filesystem-compliant basename for this file"""
fb, oldext = os.path.splitext(os.path.basename(fn or self.fn)) ext = ext or oldext.lower() fb = String(fb).hyphenify(ascii=True) return ''.join([fb, ext])
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def tempfile(self, mode='wb', **args): "write the contents of the file to a tempfile and return the tempfile filename" tf = tempfile.NamedTemporaryFile(mode=mode) self.write(tf.name, mode=mode, **args) return tfn
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def delete(self): """delete the file from the filesystem."""
if self.isfile: os.remove(self.fn) elif self.isdir: shutil.rmtree(self.fn)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def readable_size(C, bytes, suffix='B', decimals=1, sep='\u00a0'): """given a number of bytes, return the file size in readable units"""
if bytes is None: return size = float(bytes) for unit in C.SIZE_UNITS: if abs(size) < 1024 or unit == C.SIZE_UNITS[-1]: return "{size:.{decimals}f}{sep}{unit}{suffix}".format( size=size, unit=unit, ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def request(self, url, method, data=None, headers=None): """Makes a HTTP call, formats response and does error handling. """
http_headers = merge_dict(self.default_headers, headers or {}) request_data = merge_dict({'api_key': self.apikey}, data or {}) logger.info('HTTP %s REQUEST TO %s' % (method, url)) start = datetime.datetime.now() try: response = requests.request(method=method, url=...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def calc_piece_size(size, min_piece_size=20, max_piece_size=29, max_piece_count=1000): """ Calculates a good piece size for a size """
logger.debug('Calculating piece size for %i' % size) for i in range(min_piece_size, max_piece_size): # 20 = 1MB if size / (2**i) < max_piece_count: break return 2**i
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def split_pieces(piece_list, segments, num): """ Prepare a list of all pieces grouped together """
piece_groups = [] pieces = list(piece_list) while pieces: for i in range(segments): p = pieces[i::segments][:num] if not p: break piece_groups.append(p) pieces = pieces[num * segments:] return piece_groups
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def rglob(dirname, pattern, dirs=False, sort=True): """recursive glob, gets all files that match the pattern within the directory tree"""
fns = [] path = str(dirname) if os.path.isdir(path): fns = glob(os.path.join(escape(path), pattern)) dns = [fn for fn in [os.path.join(path, fn) for fn in os.listdir(path)] if os.path.isdir(fn)] if dirs==True: ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def after(parents, func=None): '''Create a new Future whose completion depends on parent futures The new future will have a function that it calls once all its parents have completed, the return value of which will be its final value. There is a special case, however, in which the dependent future's ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def wait_all(futures, timeout=None): '''Wait for the completion of all futures in a list :param list future: a list of :class:`Future`\s :param timeout: The maximum time to wait. With ``None``, can block indefinitely. :type timeout: float or None :raises WaitTimeout: if a timeout is provid...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def value(self): '''The final value, if it has arrived :raises: AttributeError, if not yet complete :raises: an exception if the Future was :meth:`abort`\ed ''' if not self._done.is_set(): raise AttributeError("value") if self._failure: raise self...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def finish(self, value): '''Give the future it's value and trigger any associated callbacks :param value: the new value for the future :raises: :class:`AlreadyComplete <junction.errors.AlreadyComplete>` if already complete ''' if self._done.is_set(): ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def on_finish(self, func): '''Assign a callback function to be run when successfully complete :param function func: A callback to run when complete. It will be given one argument (the value that has arrived), and it's return value is ignored. ''' if self._done.is...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def after(self, func=None, other_parents=None): '''Create a new Future whose completion depends on this one The new future will have a function that it calls once all its parents have completed, the return value of which will be its final value. There is a special case, however, in whic...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def os_path_transform(self, s, sep=os.path.sep): """ transforms any os path into unix style """
if sep == '/': return s else: return s.replace(sep, '/')
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def resolve_dst(self, dst_dir, src): """ finds the destination based on source if source is an absolute path, and there's no pattern, it copies the file to base ...
if os.path.isabs(src): return os.path.join(dst_dir, os.path.basename(src)) return os.path.join(dst_dir, src)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def write(self, fn=None): """copy the zip file from its filename to the given filename."""
fn = fn or self.fn if not os.path.exists(os.path.dirname(fn)): os.makedirs(os.path.dirname(fn)) f = open(self.fn, 'rb') b = f.read() f.close() f = open(fn, 'wb') f.write(b) f.close()
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def assign(self, attrs): """Merge new attributes """
for k, v in attrs.items(): setattr(self, k, v)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def normalize_rust_function(self, function, line): """Normalizes a single rust frame with a function"""
# Drop the prefix and return type if there is any function = drop_prefix_and_return_type(function) # Collapse types function = collapse( function, open_string='<', close_string='>', replacement='<T>', exceptions=(' as ',) ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def normalize_cpp_function(self, function, line): """Normalizes a single cpp frame with a function"""
# Drop member function cv/ref qualifiers like const, const&, &, and && for ref in ('const', 'const&', '&&', '&'): if function.endswith(ref): function = function[:-len(ref)].strip() # Drop the prefix and return type if there is any if it's not operator # over...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def normalize_frame( self, module=None, function=None, file=None, line=None, module_offset=None, offset=None, normalized=None, **kwargs # eat any extra kwargs pas...
# If there's a cached normalized value, use that so we don't spend time # figuring it out again if normalized is not None: return normalized if function: # If there's a filename and it ends in .rs, then normalize using # Rust rules if fil...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def _clean_tag(t): """Fix up some garbage errors."""
# TODO: when score present, include info. t = _scored_patt.sub(string=t, repl='') if t == '_country_' or t.startswith('_country:'): t = 'nnp_country' elif t == 'vpb': t = 'vb' # "carjack" is listed with vpb tag. elif t == 'nnd': t = 'nns' # "abbes" is listed with nnd tag. ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def parent(self): """return the parent URL, with params, query, and fragment in place"""
path = '/'.join(self.path.split('/')[:-1]) s = path.strip('/').split(':') if len(s)==2 and s[1]=='': return None else: return self.__class__(self, path=path)
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def join(C, *args, **kwargs): """join a list of url elements, and include any keyword arguments, as a new URL"""
u = C('/'.join([str(arg).strip('/') for arg in args]), **kwargs) return u
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def select_peer(peer_addrs, service, routing_id, method): '''Choose a target from the available peers for a singular message :param peer_addrs: the ``(host, port)``s of the peers eligible to handle the RPC, and possibly a ``None`` entry if this hub can handle it locally :type peer_addrs: li...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def start(self, key=None, **params): """initialize process timing for the current stack"""
self.params.update(**params) key = key or self.stack_key if key is not None: self.current_times[key] = time()
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def finish(self): """record the current stack process as finished"""
self.report(fraction=1.0) key = self.stack_key if key is not None: if self.data.get(key) is None: self.data[key] = [] start_time = self.current_times.get(key) or time() self.data[key].append(Dict(runtime=time()-start_time, **self.params))
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description: def add_directive_header(self, sig): """Add the directive header and options to the generated content."""
domain = getattr(self, 'domain', 'py') directive = getattr(self, 'directivetype', "module") name = self.format_name() self.add_line(u'.. %s:%s:: %s%s' % (domain, directive, name, sig), '<autodoc>') if self.options.noindex: self.add_line(u' :no...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def connect(self): "Initiate the connection to a proxying hub" log.info("connecting") # don't have the connection attempt reconnects, because when it goes # down we are going to cycle to the next potential peer from the Client self._peer = connection.Peer( None, ...
<SYSTEM_TASK:> Solve the following problem using Python, implementing the functions described below, one line at a time <END_TASK> <USER_TASK:> Description:
def reset(self): "Close the current failed connection and prepare for a new one" log.info("resetting client") rpc_client = self._rpc_client self._addrs.append(self._peer.addr) self.__init__(self._addrs) self._rpc_client = rpc_client self._dispatcher.rpc_client = r...