import os import copy import sys import re import time import json import logging import requests import urllib.parse class AppBase: """ The base class for Python-based apps in Shuffle, handles logging and callbacks configurations""" __version__ = None app_name = None def __init__(self, redis=None, logger=None, console_logger=None):#, docker_client=None): self.logger = logger if logger is not None else logging.getLogger("AppBaseLogger") self.redis=redis self.console_logger = logger if logger is not None else logging.getLogger("AppBaseLogger") # apikey is for the user / org # authorization is for the specific workflow self.url = os.getenv("CALLBACK_URL", "https://shuffler.io") self.action = os.getenv("ACTION", "") self.authorization = os.getenv("AUTHORIZATION", "") self.current_execution_id = os.getenv("EXECUTIONID", "") self.full_execution = os.getenv("FULL_EXECUTION", "") if isinstance(self.action, str): self.action = json.loads(self.action) def send_result(self, action_result, headers, stream_path): if action_result["status"] == "EXECUTING": action_result["status"] = "FAILURE" # I wonder if this actually works self.logger.info("Before last stream result") try: ret = requests.post("%s%s" % (self.url, stream_path), headers=headers, json=action_result) self.logger.info("Result: %d" % ret.status_code) if ret.status_code != 200: self.logger.info(ret.text) except requests.exceptions.ConnectionError as e: self.logger.exception(e) return except TypeError as e: self.logger.exception(e) action_result["status"] = "FAILURE" action_result["result"] = "POST error: %s" % e self.logger.info("Before typeerror stream result") ret = requests.post("%s%s" % (self.url, stream_path), headers=headers, json=action_result) self.logger.info("Result: %d" % ret.status_code) if ret.status_code != 200: self.logger.info(ret.text) async def cartesian_product(self, L): if L: return {(a, ) + b for a in L[0] for b in await self.cartesian_product(L[1:])} else: return {()} # Returns a list of all the executions to be done in the inner loop # FIXME: Doesn't take into account whether you actually WANT to loop or not # Check if the last part of the value is #? async def get_param_multipliers(self, baseparams): # Example: # {'call': ['hello', 'hello4'], 'call2': ['hello2', 'hello3'], 'call3': '1'} # # Should become this because of pairs (all same-length arrays, PROBABLY indicates same source node's values. # [ # {'call': 'hello', 'call2': 'hello2', 'call3': '1'}, # {'call': 'hello4', 'call2': 'hello3', 'call3': '1'} # ] # # ---------------------------------------------------------------------- # Example2: # {'call': ['hello'], 'call2': ['hello2', 'hello3'], 'call3': '1'} # # Should become this because NOT pairs/triplets: # [ # {'call': 'hello', 'call2': 'hello2', 'call3': '1'}, # {'call': 'hello', 'call2': 'hello3', 'call3': '1'} # ] # # ---------------------------------------------------------------------- # Example3: # {'call': ['hello', 'hello2'], 'call2': ['hello3', 'hello4', 'hello5'], 'call3': '1'} # # Should become this because arrays are not same length, aka no pairs/triplets. This is the multiplier effect. 2x3 arrays = 6 iterations # [ # {'call': 'hello', 'call2': 'hello3', 'call3': '1'}, # {'call': 'hello', 'call2': 'hello4', 'call3': '1'}, # {'call': 'hello', 'call2': 'hello5', 'call3': '1'}, # {'call': 'hello2', 'call2': 'hello3', 'call3': '1'}, # {'call': 'hello2', 'call2': 'hello4', 'call3': '1'}, # {'call': 'hello2', 'call2': 'hello5', 'call3': '1'} # ] # To achieve this, we'll do this: # 1. For the first array, take the total amount(y) (2x3=6) and divide it by the current array (x): 2. x/y = 3. This means do 3 of each value # 2. For the second array, take the total amount(y) (2x3=6) and divide it by the current array (x): 3. x/y = 2. # 3. What does the 3rd array do? Same, but ehhh? paramlist = [] listitems = [] listlengths = [] all_lists = [] all_list_keys = [] #check_value = "$Filter_list_testing.wrapper.#.tmp" #self.action = action for key, value in baseparams.items(): check_value = "" for param in self.action["parameters"]: if param["name"] == key: check_value = param["value"] break print("\nCHECK: %s" % check_value) if isinstance(value, list): if len(value) <= 1: if len(value) == 1: baseparams[key] = value[0] else: if not check_value.endswith("#"): print("Adding WITHOUT looping list") else: if len(value) not in listlengths: listlengths.append(len(value)) listitems.append( { key: len(value) } ) all_list_keys.append(key) all_lists.append(baseparams[key]) else: print("%s is not a list: " % value) print("Listlengths: %s" % listlengths) if len(listlengths) == 0: print("NO multiplier. Running a single iteration.") paramlist.append(baseparams) elif len(listlengths) == 1: print("NO MULTIPLIER NECESSARY. Length is %d" % len(listitems)) for item in listitems: # This loops should always be length 1 for key, value in item.items(): if isinstance(value, int): print("\nShould run key %s %d times from %s" % (key, value, baseparams[key])) if len(paramlist) == value: print("List ALREADY exists - just changing values") for subloop in range(value): baseitem = copy.deepcopy(baseparams) paramlist[subloop][key] = baseparams[key][subloop] else: print("List DOESNT exist - ADDING values") for subloop in range(value): baseitem = copy.deepcopy(baseparams) baseitem[key] = baseparams[key][subloop] paramlist.append(baseitem) else: print("Multipliers to handle: %s" % listitems) newlength = 1 for item in listitems: for key, value in item.items(): newlength = newlength * value print("Newlength of array: %d. Lists: %s" % (newlength, all_lists)) # Get the cartesian product of the arrays cartesian = await self.cartesian_product(all_lists) newlist = [] for item in cartesian: newlist.append(list(item)) newobject = {} for subitem in range(len(newlist)): baseitem = copy.deepcopy(baseparams) for key in range(len(newlist[subitem])): baseitem[all_list_keys[key]] = newlist[subitem][key] paramlist.append(baseitem) print("PARAMLIST: %s" % paramlist) #newlist[subitem[0]] #if len(newlist) > 0: # itemlength = len(newlist[0]) # How do we get it back, ordered? #for item in cartesian: #print("Listlengths: %s" % listlengths) #paramlist = [baseparams] print("Return paramlist: %s" % paramlist) return paramlist # Runs recursed versions with inner loops and such async def run_recursed_items(self, func, baseparams, loop_wrapper): has_loop = False newparams = {} for key, value in baseparams.items(): if isinstance(value, list) and len(value) > 0: print("In list check") try: value[0] = json.loads(value[0]) except json.decoder.JSONDecodeError as e: print("JSON casting error: %s" % e) except TypeError as e: print("TypeError: %s" % e) print("POST list check") if isinstance(value, list) and len(value) == 1 and isinstance(value[0], list): try: loop_wrapper[key] += 1 except IndexError: loop_wrapper[key] = 1 except KeyError: loop_wrapper[key] = 1 print("Key %s is a list: %s" % (key, value)) newparams[key] = value[0] has_loop = True else: print("Key %s is NOT a list within a list: %s" % (key, value)) newparams[key] = value results = [] if has_loop: print("Should run inner loop: %s" % newparams) ret = await self.run_recursed_items(func, newparams, loop_wrapper) else: print("Should run with params (inner): %s" % newparams) # 1. Find the loops that are required and create new multipliers # If here: check for multipliers within this scope. ret = [] param_multiplier = await self.get_param_multipliers(newparams) print("Multiplier length: %d" % len(param_multiplier)) for subparams in param_multiplier: tmp = await func(**subparams) print("Return from execution: %s" % ret) if tmp == None: ret.append("") elif isinstance(tmp, dict): ret.append(tmp) elif isinstance(tmp, list): ret.append(tmp) else: #tmp = tmp.replace("\"", "\\\"", -1) try: ret.append(json.loads(tmp)) except json.decoder.JSONDecodeError as e: #print("Json: %s" % e) ret.append(tmp) print("Ret length: %d" % len(ret)) if len(ret) == 1: ret = ret[0] print("Return from execution: %s" % ret) if ret == None: results.append("") json_object = False elif isinstance(ret, dict): results.append(ret) json_object = True elif isinstance(ret, list): results = ret json_object = True else: ret = ret.replace("\"", "\\\"", -1) try: results.append(json.loads(ret)) json_object = True except json.decoder.JSONDecodeError as e: #print("Json: %s" % e) results.append(ret) if len(results) == 1: results = results[0] print("\nLOOP: %s\nRESULTS: %s" % (loop_wrapper, results)) return results # Things to consider for files: # - How can you download / stream a file? # - Can you decide if you want a stream or the files directly? def get_file(self, value): full_execution = self.full_execution org_id = full_execution["workflow"]["execution_org"]["id"] print("SHOULD GET FILES BASED ON ORG %s, workflow %s and value(s) %s" % (org_id, full_execution["workflow"]["id"], value)) if isinstance(value, list): print("IS LIST!") #if len(value) == 1: # value = value[0] else: value = [value] returns = [] for item in value: print("VALUE: %s" % item) if len(item) != 36: print("Bad length for value") continue #return { # "filename": "", # "data": "", # "success": False, #} get_path = "/api/v1/files/%s?execution_id=%s" % (item, full_execution["execution_id"]) headers = { "Content-Type": "application/json", "Authorization": "Bearer %s" % self.authorization } ret1 = requests.get("%s%s" % (self.url, get_path), headers=headers) print("RET1: %s" % ret1.text) if ret1.status_code != 200: returns.append({ "filename": "", "data": "", "success": False, }) continue content_path = "/api/v1/files/%s/content?execution_id=%s" % (item, full_execution["execution_id"]) ret2 = requests.get("%s%s" % (self.url, content_path), headers=headers) print("Ret2: %s" % ret2.text) if ret2.status_code == 200: tmpdata = ret1.json() returndata = { "success": True, "filename": tmpdata["filename"], "data": ret2.content, } returns.append(returndata) if len(returns) == 0: return { "success": False, "filename": "", "data": b"", } elif len(returns) == 1: return returns[0] else: return returns # Sets files in the backend def set_files(self, infiles): full_execution = self.full_execution workflow_id = full_execution["workflow"]["id"] org_id = full_execution["workflow"]["execution_org"]["id"] headers = { "Content-Type": "application/json", "Authorization": "Bearer %s" % self.authorization } create_path = "/api/v1/files/create?execution_id=%s" % full_execution["execution_id"] file_ids = [] for curfile in infiles: filename = "unspecified" data = { "filename": filename, "workflow_id": workflow_id, "org_id": org_id, } try: data["filename"] = curfile["filename"] filename = curfile["filename"] except KeyError as e: print("KeyError in file setup: %s" % e) pass ret = requests.post("%s%s" % (self.url, create_path), headers=headers, json=data) print("Ret CREATE: %s" % ret.text) cur_id = "" if ret.status_code == 200: print("RET: %s" % ret.text) ret_json = ret.json() if not ret_json["success"]: print("Not success in file upload creation.") continue print("Should handle ID %s" % ret_json["id"]) file_ids.append(ret_json["id"]) cur_id = ret_json["id"] else: print("Bad status code: %d" % ret.status_code) continue if len(cur_id) == 0: print("No file ID specified from backend") continue new_headers = { "Authorization": "Bearer %s" % self.authorization, } upload_path = "/api/v1/files/%s/upload?execution_id=%s" % (cur_id, full_execution["execution_id"]) print("Create path: %s" % create_path) # FIXME: Typical failure here if data is returned badly formatted files={"shuffle_file": (filename, curfile["data"])} #open(filename,'rb')} ret = requests.post("%s%s" % (self.url, upload_path), files=files, headers=new_headers) print("Ret UPLOAD: %s" % ret.text) print("Ret2 UPLOAD: %d" % ret.status_code) print("IDS TO RETURN: %s" % file_ids) return file_ids async def execute_action(self, action): # FIXME - add request for the function STARTING here. Use "results stream" or something # PAUSED, AWAITING_DATA, PENDING, COMPLETED, ABORTED, EXECUTING, SUCCESS, FAILURE # !!! Let this line stay - its used for some horrible codegeneration / stitching !!! # #STARTCOPY stream_path = "/api/v1/streams" action_result = { "action": action, "authorization": self.authorization, "execution_id": self.current_execution_id, "result": "", "started_at": int(time.time()), "status": "EXECUTING" } self.action = action self.logger.info("ACTION RESULT (start): %s", action_result) if len(self.action) == 0: print("ACTION env not defined") action_result["result"] = "Error in setup ENV: ACTION not defined" self.send_result(action_result, headers, stream_path) return if len(self.authorization) == 0: print("AUTHORIZATION env not defined") action_result["result"] = "Error in setup ENV: AUTHORIZATION not defined" self.send_result(action_result, headers, stream_path) return if len(self.current_execution_id) == 0: print("EXECUTIONID env not defined") action_result["result"] = "Error in setup ENV: EXECUTIONID not defined" self.send_result(action_result, headers, stream_path) return headers = { "Content-Type": "application/json", "Authorization": "Bearer %s" % self.authorization } # Add async logger # self.console_logger.handlers[0].stream.set_execution_id() #self.logger.info("Before initial stream result") try: ret = requests.post("%s%s" % (self.url, stream_path), headers=headers, json=action_result) self.logger.info("Workflow: %d" % ret.status_code) if ret.status_code != 200: self.logger.info(ret.text) except requests.exceptions.ConnectionError as e: print("Connectionerror: %s" % e) action_result["result"] = "Bad setup during startup: %s" % e self.send_result(action_result, headers, stream_path) return # Verify whether there are any parameters with ACTION_RESULT required # If found, we get the full results list from backend fullexecution = {} if len(self.full_execution) == 0: print("NO EXECUTION - LOADING!") try: tmpdata = { "authorization": self.authorization, "execution_id": self.current_execution_id } self.logger.info("Before FULLEXEC stream result") ret = requests.post( "%s/api/v1/streams/results" % (self.url), headers=headers, json=tmpdata ) if ret.status_code == 200: fullexecution = ret.json() else: self.logger.info("Error: Data: ", ret.json()) self.logger.info("Error with status code for results. Crashing because ACTION_RESULTS or WORKFLOW_VARIABLE can't be handled. Status: %d" % ret.status_code) action_result["result"] = "Bad result from backend: %d" % ret.status_code self.send_result(action_result, headers, stream_path) return except requests.exceptions.ConnectionError as e: self.logger.info("Connectionerror: %s" % e) action_result["result"] = "Connection error during startup: %s" % e self.send_result(action_result, headers, stream_path) return else: try: fullexecution = json.loads(self.full_execution) except json.decoder.JSONDecodeError as e: print("Json decode execution error: %s" % e) action_result["result"] = "Json error during startup: %s" % e self.send_result(action_result, headers, stream_path) return print("") self.full_execution = fullexecution self.logger.info("AFTER FULLEXEC stream result") # Gets the value at the parenthesis level you want def parse_nested_param(string, level): """ Generate strings contained in nested (), indexing i = level """ if len(re.findall("\(", string)) == len(re.findall("\)", string)): LeftRightIndex = [x for x in zip( [Left.start()+1 for Left in re.finditer('\(', string)], reversed([Right.start() for Right in re.finditer('\)', string)]))] elif len(re.findall("\(", string)) > len(re.findall("\)", string)): return parse_nested_param(string + ')', level) elif len(re.findall("\(", string)) < len(re.findall("\)", string)): return parse_nested_param('(' + string, level) else: return 'Failed to parse params' try: return [string[LeftRightIndex[level][0]:LeftRightIndex[level][1]]] except IndexError: return [string[LeftRightIndex[level+1][0]:LeftRightIndex[level+1][1]]] # Finds the deepest level parenthesis in a string def maxDepth(S): current_max = 0 max = 0 n = len(S) # Traverse the input string for i in range(n): if S[i] == '(': current_max += 1 if current_max > max: max = current_max elif S[i] == ')': if current_max > 0: current_max -= 1 else: return -1 # finally check for unbalanced string if current_max != 0: return -1 return max-1 # Specific type parsing def parse_type(data, thistype): if data == None: return "Empty" if "int" in thistype or "number" in thistype: try: return int(data) except ValueError: print("ValueError while casting %s to int" % data) return data if "lower" in thistype: return data.lower() if "upper" in thistype: return data.upper() if "trim" in thistype: return data.strip() if "strip" in thistype: return data.strip() if "split" in thistype: return data.split() if "len" in thistype or "length" in thistype or "lenght" in thistype: tmp = "" try: tmp = json.loads(tmpdata) except: try: tmpdata = data.replace("\'", "\"") tmp = json.loads(tmpdata) except: print("[ERROR] Parsing bug for length in app sdk") pass if isinstance(tmp, list): return len(tmp) elif isinstance(tmp, object): return len(tmp) return str(len(data)) if "parse" in thistype: splitvalues = [] default_error = """Error. Expected syntax: parse(["hello","test1"],0:1)""" if "," in data: splitvalues = data.split(",") for item in range(len(splitvalues)): splitvalues[item] = splitvalues[item].strip() else: return default_error lastsplit = [] if ":" in splitvalues[-1]: lastsplit = splitvalues[-1].split(":") else: try: lastsplit = [int(splitvalues[-1])] except ValueError: return default_error try: parsedlist = ",".join(splitvalues[0:-1]) if len(lastsplit) > 1: tmp = json.loads(parsedlist)[int(lastsplit[0]):int(lastsplit[1])] else: tmp = json.loads(parsedlist)[lastsplit[0]] print(tmp) return tmp except IndexError as e: return default_error # Parses the INNER value and recurses until everything is done def parse_wrapper(data): try: if "(" not in data or ")" not in data: return (data, False) except TypeError: return (data, False) #print("Running %s" % data) # Look for the INNER wrapper first, then move out wrappers = ["int", "number", "lower", "upper", "trim", "strip", "split", "parse", "len", "length", "lenght"] found = False for wrapper in wrappers: if wrapper not in data.lower(): continue found = True break if not found: return (data, False) # Do stuff here. innervalue = parse_nested_param(data, maxDepth(data)-0) outervalue = parse_nested_param(data, maxDepth(data)-1) print("INNER: ", innervalue) print("OUTER: ", outervalue) if outervalue != innervalue: #print("Outer: ", outervalue, " inner: ", innervalue) for key in range(len(innervalue)): # Replace OUTERVALUE[key] with INNERVALUE[key] in data. print("Replace %s with %s in %s" % (outervalue[key], innervalue[key], data)) data = data.replace(outervalue[key], innervalue[key]) else: for thistype in wrappers: if thistype.lower() not in data.lower(): continue parsed_value = parse_type(innervalue[0], thistype.lower()) print("Parsed value from %s: %s" % (thistype, parsed_value)) return (parsed_value, True) print("DATA: %s\n" % data) return (parse_wrapper(data)[0], True) # Looks for parantheses to grab special cases within a string, e.g: # int(1) lower(HELLO) or length(what's the length) # FIXME: # There is an issue in here where it returns data wrong. Example: # Authorization=Bearer authkey # = # Authorization=Bearer authkey # ^ Double space. def parse_wrapper_start(data): if "(" not in data or ")" not in data: return data newdata = [] newstring = "" record = True paranCnt = 0 for char in data: if char == "(": paranCnt += 1 if not record: record = True if record: newstring += char if paranCnt == 0 and char == " ": newdata.append(newstring) newstring = "" record = True if char == ")": paranCnt -= 1 if paranCnt == 0: record = False if len(newstring) > 0: newdata.append(newstring) parsedlist = [] non_string = False parsed = False for item in newdata: ret = parse_wrapper(item) if not isinstance(ret[0], str): non_string = True parsedlist.append(ret[0]) if ret[1]: parsed = True if not parsed: return data if len(parsedlist) > 0 and not non_string: print("Returning parsed list: ", parsedlist) return " ".join(parsedlist) elif len(parsedlist) == 1 and non_string: return parsedlist[0] else: print("Casting back to string because multi: ", parsedlist) newlist = [] for item in parsedlist: try: newlist.append(str(item)) except ValueError: newlist.append("parsing_error") # Does this create the issue? return " ".join(newlist) # Parses JSON loops and such down to the item you're looking for def recurse_json(basejson, parsersplit): match = "#(\d+):?-?([0-9a-z]+)?#?" print("Split: %s\n%s" % (parsersplit, basejson)) try: outercnt = 0 # Loops over split values for value in parsersplit: print("VALUE: %s\n" % value) actualitem = re.findall(match, value, re.MULTILINE) if value == "#": newvalue = [] for innervalue in basejson: # 1. Check the next item (message) # 2. Call this function again try: ret, is_loop = recurse_json(innervalue, parsersplit[outercnt+1:]) except IndexError: # Only in here if it's the last loop without anything in it? ret, is_loop = recurse_json(innervalue, parsersplit[outercnt:]) newvalue.append(ret) # Magical way of returning which makes app sdk identify # it as multi execution return newvalue, True elif len(actualitem) > 0: # FIXME: This is absolutely not perfect. print("In recursion v2: ", actualitem) is_loop = True newvalue = [] firstitem = actualitem[0][0] seconditem = actualitem[0][1] # Means it's a single item -> continue if seconditem == "": print("In first - handling %s" % seconditem) tmpitem = basejson[int(firstitem)] try: newvalue, is_loop = recurse_json(tmpitem, parsersplit[outercnt+1:]) except IndexError: newvalue, is_loop = (tmpitem, parsersplit[outercnt+1:]) else: if seconditem == "max": seconditem = len(basejson) if seconditem == "min": seconditem = 0 newvalue = [] for i in range(int(firstitem), int(seconditem)): # 1. Check the next item (message) # 2. Call this function again print("Base: %s" % basejson[i]) try: ret, is_loop = recurse_json(basejson[i], parsersplit[outercnt+1:]) except IndexError: print("INDEXERROR: ", parsersplit[outercnt]) #ret = innervalue ret, is_loop = recurse_json(innervalue, parsersplit[outercnt:]) print(ret) #exit() newvalue.append(ret) return newvalue, is_loop # FIXME: Add specific loop for other indexes else: #print("BEFORE NORMAL VALUE: ", basejson, value) if len(value) == 0: return basejson, False if isinstance(basejson[value], str): print(f"LOADING STRING '%s' AS JSON" % basejson[value]) try: basejson = json.loads(basejson[value]) except json.decoder.JSONDecodeError as e: print("RETURNING BECAUSE '%s' IS A NORMAL STRING" % basejson[value]) return basejson[value], False else: basejson = basejson[value] outercnt += 1 except KeyError as e: print("Lower keyerror: %s" % e) #return basejson #return "KeyError: Couldn't find key: %s" % e return basejson, False # Takes a workflow execution as argument # Returns a string if the result is single, or a list if it's a list def get_json_value(execution_data, input_data): parsersplit = input_data.split(".") actionname_lower = parsersplit[0][1:].lower() #Actionname: Start_node print(f"\nActionname: {actionname_lower}") # 1. Find the action baseresult = "" appendresult = "" print("Parsersplit length: %d" % len(parsersplit)) if (actionname_lower.startswith("exec ") or actionname_lower.startswith("webhook ") or actionname_lower.startswith("schedule ") or actionname_lower.startswith("userinput ") or actionname_lower.startswith("email_trigger ") or actionname_lower.startswith("trigger ")) and len(parsersplit) == 1: record = False for char in actionname_lower: if char == " ": record = True if record: appendresult += char actionname_lower = "exec" actionname_lower = actionname_lower.replace(" ", "_", -1) try: if actionname_lower == "exec" or actionname_lower == "webhook" or actionname_lower == "schedule" or actionname_lower == "userinput" or actionname_lower == "email_trigger" or actionname_lower == "trigger": baseresult = execution_data["execution_argument"] else: #print("Within execution data check. Execution data: %s", execution_data["results"]) if execution_data["results"] != None: for result in execution_data["results"]: resultlabel = result["action"]["label"].replace(" ", "_", -1).lower() if resultlabel.lower() == actionname_lower: baseresult = result["result"] break else: print("No results to get values from.") baseresult = "$" + parsersplit[0][1:] print("BEFORE VARIABLES!") if len(baseresult) == 0: try: #print("WF Variables: %s" % execution_data["workflow"]["workflow_variables"]) for variable in execution_data["workflow"]["workflow_variables"]: variablename = variable["name"].replace(" ", "_", -1).lower() if variablename.lower() == actionname_lower: baseresult = variable["value"] break except KeyError as e: print("KeyError wf variables: %s" % e) pass except TypeError as e: print("TypeError wf variables: %s" % e) pass print("BEFORE EXECUTION VAR") if len(baseresult) == 0: try: #print("Execution Variables: %s" % execution_data["execution_variables"]) for variable in execution_data["execution_variables"]: variablename = variable["name"].replace(" ", "_", -1).lower() if variablename.lower() == actionname_lower: baseresult = variable["value"] break except KeyError as e: print("KeyError exec variables: %s" % e) pass except TypeError as e: print("TypeError exec variables: %s" % e) pass except KeyError as error: print(f"KeyError in JSON: {error}") print(f"After first trycatch. Baseresult: ", baseresult) # 2. Find the JSON data if len(baseresult) == 0: return ""+appendresult, False print("After second return") if len(parsersplit) == 1: return str(baseresult)+str(appendresult), False baseresult = baseresult.replace(" True,", " true,") baseresult = baseresult.replace(" False", " false,") print("After third parser return - Formatted: ", baseresult) basejson = {} try: basejson = json.loads(baseresult) except json.decoder.JSONDecodeError as e: try: baseresult = baseresult.replace("\'", "\"") basejson = json.loads(baseresult) except json.decoder.JSONDecodeError as e: print("Parser issue with JSON: %s" % e) return str(baseresult)+str(appendresult), False print("After fourth parser return as JSON") data, is_loop = recurse_json(basejson, parsersplit[1:]) parseditem = data if is_loop: print("DATA IS A LOOP - SHOULD WRAP") if parsersplit[-1] == "#": print("SET DATA WRAPPER TO NORMAL!") parseditem = "${SHUFFLE_NO_SPLITTER%s}$" % json.dumps(data) else: # Return value: ${id[12345, 45678]}$ print("SET DATA WRAPPER TO %s!" % parsersplit[-1]) parseditem = "${%s%s}$" % (parsersplit[-1], json.dumps(data)) print("Before last return with %s" % appendresult) return str(parseditem)+str(appendresult), is_loop # Parses parameters sent to it and returns whether it did it successfully with the values found def parse_params(action, fullexecution, parameter): # Skip if it starts with $? jsonparsevalue = "$." is_loop = False # Matches with space in the first part, but not in subsequent parts. # JSON / yaml etc shouldn't have spaces in their fields anyway. match = ".*?([$]{1}([a-zA-Z0-9 _-]+\.?){1}([a-zA-Z0-9#_-]+\.?){0,})" # Regex to find all the things if parameter["variant"] == "STATIC_VALUE": data = parameter["value"] actualitem = re.findall(match, data, re.MULTILINE) #self.logger.debug(f"\n\nHandle static data with JSON: {data}\n\n") #self.logger.info("STATIC PARSED: %s" % actualitem) if len(actualitem) > 0: print("ACTUAL: ", actualitem) for replace in actualitem: try: to_be_replaced = replace[0] except IndexError: continue # Handles for loops etc. value, is_loop = get_json_value(fullexecution, to_be_replaced) if isinstance(value, str): parameter["value"] = parameter["value"].replace(to_be_replaced, value) elif isinstance(value, dict): parameter["value"] = parameter["value"].replace(to_be_replaced, json.dumps(value)) else: print("Unknown type %s" % type(value)) try: parameter["value"] = parameter["value"].replace(to_be_replaced, json.dumps(value)) except json.decoder.JSONDecodeError as e: parameter["value"] = parameter["value"].replace(to_be_replaced, value) if parameter["variant"] == "WORKFLOW_VARIABLE": print("Handling workflow variable") found = False try: for item in fullexecution["workflow"]["workflow_variables"]: if parameter["action_field"] == item["name"]: found = True parameter["value"] = item["value"] break except KeyError as e: print("KeyError WF variable 1: %s" % e) pass except TypeError as e: print("TypeError WF variables 1: %s" % e) pass if not found: try: for item in fullexecution["execution_variables"]: if parameter["action_field"] == item["name"]: parameter["value"] = item["value"] break except KeyError as e: print("KeyError WF variable 2: %s" % e) pass except TypeError as e: print("TypeError WF variables 2: %s" % e) pass elif parameter["variant"] == "ACTION_RESULT": # FIXME - calculate value based on action_field and $if prominent # FIND THE RIGHT LABEL # GET THE LABEL'S RESULT tmpvalue = "" self.logger.info("ACTION FIELD: %s" % parameter["action_field"]) fullname = "$" if parameter["action_field"] == "Execution Argument": tmpvalue = fullexecution["execution_argument"] fullname += "exec" else: fullname += parameter["action_field"] self.logger.info("PRE Fullname: %s" % fullname) if parameter["value"].startswith(jsonparsevalue): fullname += parameter["value"][1:] #else: # fullname = "$%s" % parameter["action_field"] self.logger.info("Fullname: %s" % fullname) actualitem = re.findall(match, fullname, re.MULTILINE) self.logger.info("ACTION PARSED: %s" % actualitem) if len(actualitem) > 0: for replace in actualitem: try: to_be_replaced = replace[0] except IndexError: print("Nothing to replace?: " % e) continue # This will never be a loop aka multi argument parameter["value"] = to_be_replaced value, is_loop = get_json_value(fullexecution, to_be_replaced) print("Loop: %s" % is_loop) if isinstance(value, str): parameter["value"] = parameter["value"].replace(to_be_replaced, value) elif isinstance(value, dict): parameter["value"] = parameter["value"].replace(to_be_replaced, json.dumps(value)) else: print("Unknown type %s" % type(value)) try: parameter["value"] = parameter["value"].replace(to_be_replaced, json.dumps(value)) except json.decoder.JSONDecodeError as e: parameter["value"] = parameter["value"].replace(to_be_replaced, value) return "", parameter["value"], is_loop def run_validation(sourcevalue, check, destinationvalue): self.logger.info("Checking %s %s %s" % (sourcevalue, check, destinationvalue)) if check == "=" or check.lower() == "equals": if sourcevalue.lower() == destinationvalue.lower(): return True elif check == "!=" or check.lower() == "does not equal": if sourcevalue.lower() != destinationvalue.lower(): return True elif check.lower() == "startswith": if sourcevalue.lower().startswith(destinationvalue.lower()): return True elif check.lower() == "endswith": if sourcevalue.lower().endswith(destinationvalue.lower()): return True elif check.lower() == "contains": if destinationvalue.lower() in sourcevalue.lower(): return True elif check.lower() == "larger than": try: if sourcevalue.isdigit() and destinationvalue.isdigit(): if int(sourcevalue) > int(destinationvalue): return True print("Not larger than.") return False except AttributeError as e: self.logger.error("Condition larger than failed with values %s and %s: %s" % (sourcevalue, destinationvalue, e)) return False elif check.lower() == "smaller than": try: if sourcevalue.isdigit() and destinationvalue.isdigit(): if int(sourcevalue) < int(destinationvalue): return True print("Not small than.") return False except AttributeError as e: self.logger.error("Condition smaller than failed with values %s and %s: %s" % (sourcevalue, destinationvalue, e)) return False else: self.logger.info("Condition: can't handle %s yet. Setting to true" % check) return False def check_branch_conditions(action, fullexecution): # relevantbranches = workflow.branches where destination = action try: if fullexecution["workflow"]["branches"] == None or len(fullexecution["workflow"]["branches"]) == 0: return True, "" except KeyError: return True, "" relevantbranches = [] for branch in fullexecution["workflow"]["branches"]: if branch["destination_id"] != action["id"]: continue # Remove anything without a condition try: if (branch["conditions"]) == 0 or branch["conditions"] == None: continue except KeyError: continue self.logger.info("Relevant conditions: %s" % branch["conditions"]) successful_conditions = [] failed_conditions = [] for condition in branch["conditions"]: self.logger.info("Getting condition value of %s" % condition) # Parse all values first here sourcevalue = condition["source"]["value"] check, sourcevalue, is_loop = parse_params(action, fullexecution, condition["source"]) if check: return False, "Failed condition: %s %s %s because %s" % (sourcevalue, condition["condition"]["value"], destinationvalue, check) #sourcevalue = sourcevalue.encode("utf-8") sourcevalue = parse_wrapper_start(sourcevalue) destinationvalue = condition["destination"]["value"] check, destinationvalue, is_loop = parse_params(action, fullexecution, condition["destination"]) if check: return False, "Failed condition: %s %s %s because %s" % (sourcevalue, condition["condition"]["value"], destinationvalue, check) #destinationvalue = destinationvalue.encode("utf-8") destinationvalue = parse_wrapper_start(destinationvalue) available_checks = [ "=", "equals", "!=", "does not equal", ">", "larger than", "<", "less than", ">=", "<=", "startswith", "endswith", "contains", "re", "matches regex", ] # FIXME - what should I do here? if not condition["condition"]["value"] in available_checks: self.logger.info("Skipping %s %s %s because %s is invalid." % (sourcevalue, condition["condition"]["value"], destinationvalue, condition["condition"]["value"])) continue #print(destinationvalue) # NEGATE validation = run_validation(sourcevalue, condition["condition"]["value"], destinationvalue) # Configuration = negated because of WorkflowAppActionParam.. try: if condition["condition"]["configuration"]: validation = not validation except KeyError: pass if not validation: self.logger.info("Failed condition check for %s %s %s." % (sourcevalue, condition["condition"]["value"], destinationvalue)) return False, "Failed condition: %s %s %s" % (sourcevalue, condition["condition"]["value"], destinationvalue) # Make a general parser here, at least to get param["name"] = param["value"] in maparameter[string]string #for condition in branch.conditons: return True, "" # Checks whether conditions are met, otherwise set branchcheck, tmpresult = check_branch_conditions(action, fullexecution) if not branchcheck: self.logger.info("Failed one or more branch conditions.") action_result["result"] = tmpresult action_result["status"] = "FAILURE" try: ret = requests.post("%s%s" % (self.url, stream_path), headers=headers, json=action_result) self.logger.info("Result: %d" % ret.status_code) if ret.status_code != 200: self.logger.info(ret.text) except requests.exceptions.ConnectionError as e: self.logger.exception(e) print("\n\nRETURNING BECAUSE A BRANCH FAILED\n\n") return # Replace name cus there might be issues # Not doing lower() as there might be user-made functions actionname = action["name"] if " " in actionname: actionname.replace(" ", "_", -1) #if action.generated: # actionname = actionname.lower() # Runs the actual functions try: func = getattr(self, actionname, None) if func == None: self.logger.debug("Failed executing %s because func is None." % actionname) action_result["status"] = "FAILURE" action_result["result"] = "Function %s doesn't exist." % actionname elif callable(func): try: if len(action["parameters"]) < 1: result = await func() else: # Potentially parse JSON here # FIXME - add potential authentication as first parameter(s) here # params[parameter["name"]] = parameter["value"] #print(fullexecution["authentication"] # What variables are necessary here tho hmm params = {} try: for item in action["authentication"]: print("AUTH: ", key, value) params[item["key"]] = item["value"] except KeyError: print("No authentication specified!") pass #action["authentication"] # Fixes OpenAPI body parameters for later. newparams = [] counter = -1 bodyindex = -1 for parameter in action["parameters"]: counter += 1 if parameter["name"] == "body": bodyindex = counter print("PARAM: %s" % parameter) try: values = parameter["value_replace"] if values != None: added = 0 for val in values: newparams.append({ "name": val["key"], "value": val["value"], "variant": "STATIC_VALUE", "id": "body_replacement", }) print("Added param %s for body" % val["key"]) added += 1 print("ADDED %d parameters for body" % added) except KeyError as e: print("KeyError body OpenAPI: %s" % e) pass break for parameter in newparams: action["parameters"].append(parameter) # calltimes is used to handle forloops in the app itself. # 2 kinds of loop - one in gui with one app each, and one like this, # which is super fast, but has a bad overview (potentially good tho) calltimes = 1 result = "" all_executions = [] # Multi_parameter has the data for each. variable minlength = 0 multi_parameters = json.loads(json.dumps(params)) multiexecution = False multi_execution_lists = [] for parameter in action["parameters"]: check, value, is_loop = parse_params(action, fullexecution, parameter) if check: raise "Value check error: %s" % Exception(check) # Custom format for ${name[0,1,2,...]}$ #submatch = "([${]{2}([0-9a-zA-Z_-]+)(\[.*\])[}$]{2})" submatch = "([${]{2}#?([0-9a-zA-Z_-]+)#?(\[.*\])[}$]{2})" actualitem = re.findall(submatch, value, re.MULTILINE) try: if action["skip_multicheck"]: print("Skipping multicheck") actualitem = [] except KeyError: pass print("Return value: %s" % value) actionname = action["name"] #print("Multicheck ", actualitem) print("ITEM LENGTH: %d, Actual item: %s" % (len(actualitem), actualitem)) if len(actualitem) > 0: multiexecution = True # Loop WITHOUT JSON variables go here. # Loop WITH variables go in else. print("Before first part in multiexec!") handled = False if len(actualitem[0]) > 2 and actualitem[0][1] == "SHUFFLE_NO_SPLITTER": print("(1) Pre replacement: %s" % actualitem[0][2]) tmpitem = value replacement = actualitem[0][2] if replacement.startswith("\"") and replacement.endswith("\""): replacement = replacement[1:len(replacement)-1] print("POST replacement: %s" % replacement) json_replacement = replacement try: json_replacement = json.loads(replacement) except json.decoder.JSONDecodeError as e: try: replacement = replacement.replace("\'", "\"", -1) json_replacement = json.loads(replacement) except: print("JSON error singular: %s" % e) if len(json_replacement) > minlength: minlength = len(json_replacement) tmpitem = tmpitem.replace(actualitem[0][0], replacement, 1) # This code handles files. print("(1) ------------ PARAM: %s" % parameter["schema"]["type"]) resultarray = [] isfile = False try: if parameter["schema"]["type"] == "file" and len(value) > 0: print("(1) SHOULD HANDLE FILE IN MULTI. Get based on value %s" % tmpitem) # This is silly :) # Q: Is there something wrong with the download system? # It seems to return "FILE CONTENT: %s" with the ID as %s for tmp_file_split in json.loads(tmpitem): print("(1) PRE GET FILE %s" % tmp_file_split) file_value = self.get_file(tmp_file_split) print("(1) POST AWAIT %s" % file_value) resultarray.append(file_value) print("(1) FILE VALUE FOR VAL %s: %s" % (tmp_file_split, file_value)) isfile = True except KeyError as e: print("(1) SCHEMA ERROR IN FILE HANDLING: %s" % e) except json.decoder.JSONDecodeError as e: print("(1) JSON ERROR IN FILE HANDLING: %s" % e) if not isfile: params[parameter["name"]] = tmpitem multi_parameters[parameter["name"]] = json_replacement else: print("Resultarray: %s" % resultarray) params[parameter["name"]] = resultarray multi_parameters[parameter["name"]] = resultarray multi_execution_lists.append(json_replacement) print("MULTI finished: %s" % json_replacement) else: print("(2) Pre replacement: %s" % actualitem) # This is here to handle for loops within variables.. kindof # 1. Find the length of the longest array # 2. Build an array with the base values based on parameter["value"] # 3. Get the n'th value of the generated list from values # 4. Execute all n answers replacements = {} curminlength = 0 for replace in actualitem: try: to_be_replaced = replace[0] actualitem = replace[2] except IndexError: continue try: itemlist = json.loads(actualitem) if len(itemlist) > minlength: minlength = len(itemlist) if len(itemlist) > curminlength: curminlength = len(itemlist) except json.decoder.JSONDecodeError as e: print("JSON Error: %s in %s" % (e, actualitem)) replacements[to_be_replaced] = actualitem # This is a result array for JUST this value.. # What if there are more? print("LENGTH: %d. In second part of else: %s" % (len(itemlist), replacements)) resultarray = [] for i in range(0, curminlength): tmpitem = json.loads(json.dumps(parameter["value"])) for key, value in replacements.items(): replacement = json.dumps(json.loads(value)[i]) if replacement.startswith("\"") and replacement.endswith("\""): replacement = replacement[1:len(replacement)-1] #except json.decoder.JSONDecodeError as e: #print("REPLACING %s with %s" % (key, replacement)) #replacement = parse_wrapper_start(replacement) tmpitem = tmpitem.replace(key, replacement, -1) # This code handles files. print("(2) ------------ PARAM: %s" % parameter["schema"]["type"]) isfile = False try: if parameter["schema"]["type"] == "file" and len(value) > 0: print("(2) SHOULD HANDLE FILE IN MULTI. Get based on value %s" % parameter["value"]) for tmp_file_split in json.loads(parameter["value"]): print("(2) PRE GET FILE %s" % tmp_file_split) file_value = self.get_file(tmp_file_split) print("(2) POST AWAIT %s" % file_value) resultarray.append(file_value) print("(2) FILE VALUE FOR VAL %s: %s" % (tmp_file_split, file_value)) isfile = True except KeyError as e: print("(2) SCHEMA ERROR IN FILE HANDLING: %s" % e) except json.decoder.JSONDecodeError as e: print("(2) JSON ERROR IN FILE HANDLING: %s" % e) if not isfile: resultarray.append(tmpitem) # With this parameter ready, add it to... a greater list of parameters. Rofl print("LENGTH OF ARR: %d" % len(resultarray)) print("RESULTARRAY: %s" % resultarray) if resultarray not in multi_execution_lists: multi_execution_lists.append(resultarray) multi_parameters[parameter["name"]] = resultarray else: # Parses things like int(value) print("Normal parsing (not looping) with data %s" % value) value = parse_wrapper_start(value) if parameter["id"] == "body_replacement": print("Should run body replacement in index %d with %s" % (bodyindex, parameter)) try: print("PREBODY: %s" % params["body"]) params["body"] = params["body"].replace(parameter["name"], parameter["value"], -1) print("POSTBODY: %s" % params["body"]) except KeyError as e: print("KEYERROR: %s" % e) #bodyindex = counter continue #for parameter in action["parameters"]: #if parameter["name"] == "body": # print("PARAM: %s" % parameter) #if param.id == "body_replacement": print("POST data value: %s" % value) params[parameter["name"]] = value multi_parameters[parameter["name"]] = value # This code handles files. try: if parameter["schema"]["type"] == "file" and len(value) > 0: print("\n SHOULD HANDLE FILE. Get based on value %s. <--- is this a valid ID?" % parameter["value"]) file_value = self.get_file(value) print("FILE VALUE: %s \n" % file_value) params[parameter["name"]] = file_value multi_parameters[parameter["name"]] = file_value except KeyError as e: print("SCHEMA ERROR IN FILE HANDLING: %s" % e) # Fix lists here # FIXME: This doesn't really do anything anymore print("CHECKING multi execution list!") if len(multi_execution_lists) > 0: print("\n Multi execution list has more data: %d" % len(multi_execution_lists)) filteredlist = [] for listitem in multi_execution_lists: if listitem in filteredlist: continue # FIXME: Subsub required?. Recursion! # Basically multiply what we have with the outer loop? # #if isinstance(listitem, list): # for subitem in listitem: # filteredlist.append(subitem) #else: # filteredlist.append(listitem) #print("New list length: %d" % len(filteredlist)) if len(filteredlist) > 1: print("Calculating new multi-loop length with %d lists" % len(filteredlist)) tmplength = 1 for innerlist in filteredlist: tmplength = len(innerlist)*tmplength print("List length: %d. %d*%d" % (tmplength, len(innerlist), tmplength)) minlength = tmplength print("New multi execution length: %d\n" % tmplength) if not multiexecution: #newparams.append({ # "name": val["key"], # "value": val["value"], # "variant": "STATIC_VALUE", # "id": "body_replacement", #}) print("APP_SDK DONE: Starting NORMAL execution of function") print("Running with params (0): %s" % params) newres = await func(**params) print("Returned from execution.") if isinstance(newres, tuple): print("Handling return as tuple") # Handles files. filedata = "" file_ids = [] print("TUPLE: %s" % newres[1]) if isinstance(newres[1], list): print("HANDLING LIST FROM RET") file_ids = self.set_files(newres[1]) elif isinstance(newres[1], object): print("Handling JSON from ret") file_ids = self.set_files([newres[1]]) elif isinstance(newres[1], str): print("Handling STRING from ret") file_ids = self.set_files([newres[1]]) else: print("NO FILES TO HANDLE") tmp_result = { "result": newres[0], "file_ids": file_ids } result = json.dumps(tmp_result) elif isinstance(newres, str): print("Handling return as string") result += newres else: try: result += str(newres) except ValueError: result += "Failed autocasting. Can't handle %s type from function. Must be string" % type(newres) print("Can't handle type %s value from function" % (type(newres))) print("POST NEWRES RESULT: ", result) else: print("APP_SDK DONE: Starting MULTI execution (length: %d) with values %s" % (minlength, multi_parameters)) # 1. Use number of executions based on the arrays being similar # 2. Find the right value from the parsed multi_params print("Running WITHOUT outer loop") json_object = False results = await self.run_recursed_items(func, multi_parameters, {}) if isinstance(results, dict) or isinstance(results, list): json_object = True #for i in range(0, minlength): # # To be able to use the results as a list: # print("1: %s" % multi_parameters) # #baseparams = json.loads(json.dumps(multi_parameters)) # baseparams = copy.deepcopy(multi_parameters) # print("2: %s: %s" % (type(baseparams), baseparams)) # print("4") # print("Running with params (1): %s" % baseparams) # results = await self.run_recursed_items(func, baseparams, {}) # if isinstance(results, dict) or isinstance(results, list): # json_object = True # {'call': ['GoogleSafebrowsing_2_0', 'VirusTotal_GetReport_3_0']} # 1. Check if list length is same as minlength # 2. If NOT same length, duplicate based on length of array # arraylength = 3 ["1", "2", "3"] # arraylength = 4 ["1", "2", "3", "4"] # minlength = 12 - 12/3 = 4 per item = ["1", "1", "1", "1", "2", "2", ...] #try: # firstlist = True # for key, value in baseparams.items(): # print("Itemtype: %s" % type(value)) # if isinstance(value, list): # try: # newvalue = value[i] # except IndexError: # pass # if len(value) != minlength and len(value) > 0: # newarray = [] # print("VALUE: ", value) # additiontime = minlength/len(value) # print("Bad length for value: %d - should be %d. Additiontime: %d" % (len(value), minlength, additiontime)) # if firstlist: # print("Running normal list (FIRST)") # for subvalue in value: # for number in range(int(additiontime)): # newarray.append(subvalue) # else: # #print("Running secondary lists") # ## 1. Set up length of array # ## 2. Put values spread out # # FIXME: This works well, except if lists are same length # newarray = [""] * minlength # cnt = 0 # for number in range(int(additiontime)): # for subvaluerange in range(len(value)): # # newlocation = number+(additiontime*subvaluerange) # # print("%d+(%d*%d) = %d. VAL: %s" % (number, additiontime, subvaluerange, newlocation, value[subvaluerange])) # # Reverse if same length? # if int(minlength/len(value)) == len(value): # tmp = int(len(value)-subvaluerange-1) # print("NEW: %d" % tmp) # newarray[cnt] = value[tmp] # else: # newarray[cnt] = value[subvaluerange] # cnt += 1 # #print("Newarray =", newarray) # newvalue = newarray[i] # firstlist = False # baseparams[key] = newvalue # print("3") #except IndexError as e: # print("IndexError: %s" % e) # baseparams[key] = "IndexError: %s" % e #except KeyError as e: # print("KeyError: %s" % e) # baseparams[key] = "KeyError: %s" % e #print("4") #print("Running with params (1): %s" % baseparams) #results = await self.run_recursed_items(func, baseparams, {}) #if isinstance(results, dict) or isinstance(results, list): # json_object = True # Check the structure here. If "isloop", try to recurse? # ret, is_loop = recurse_json(innervalue, parsersplit[outercnt+1:]) #ret = await func(**baseparams) #print("Return from execution: %s" % ret) #if ret == None: # results.append("") # json_object = False #elif isinstance(ret, dict) or isinstance(ret, list): # results.append(ret) # json_object = True #else: # ret = ret.replace("\"", "\\\"", -1) # try: # results.append(json.loads(ret)) # json_object = True # except json.decoder.JSONDecodeError as e: # #print("Json: %s" % e) # results.append(ret) #print("Inner ret parsed: %s" % ret) # Dump the result as a string of a list #print("RESULTS: %s" % results) if isinstance(results, list): print("JSON OBJECT? ", json_object) if json_object: result = json.dumps(results) else: result = "[" for item in results: try: json.loads(item) result += item except json.decoder.JSONDecodeError as e: # Common nested issue which puts " around everything print("Decodingerror: %s" % e) try: tmpitem = item.replace("\\\"", "\"", -1) json.loads(tmpitem) result += tmpitem except: result += "\"%s\"" % item result += ", " result = result[:-2] result += "]" else: print("Normal result - no list?") result = results print("RESULT: %s" % result) action_result["status"] = "SUCCESS" action_result["result"] = str(result) if action_result["result"] == "": action_result["result"] = result self.logger.debug(f"Executed {action['label']}-{action['id']} with result: {result}") #self.logger.debug(f"Data: %s" % action_result) except TypeError as e: print("TypeError issue: %s" % e) action_result["status"] = "FAILURE" action_result["result"] = "TypeError: %s" % str(e) else: print("Function %s doesn't exist?" % action["name"]) self.logger.error(f"App {self.__class__.__name__}.{action['name']} is not callable") action_result["status"] = "FAILURE" action_result["result"] = "Function %s is not callable." % actionname except Exception as e: print(f"Failed to execute: {e}") self.logger.exception(f"Failed to execute {e}-{action['id']}") action_result["status"] = "FAILURE" action_result["result"] = f"General exception: {e}" action_result["completed_at"] = int(time.time()) # Send the result :) self.send_result(action_result, headers, stream_path) return #STOPCOPY # !!! Let the above line stay - its used for some horrible codegeneration / stitching !!! # @classmethod async def run(cls): """ Connect to Redis and HTTP session, await actions """ logging.basicConfig(format="{asctime} - {name} - {levelname}:{message}", style='{') logger = logging.getLogger(f"{cls.__name__}") logger.setLevel(logging.DEBUG) print("Started execution!!") app = cls(redis=None, logger=logger, console_logger=logger) # Authorization for the app/function to control the workflow # Function will crash if its wrong, which it probably should. await app.execute_action(app.action)