master
This commit is contained in:
@@ -112,7 +112,10 @@ class AsyncMySQL:
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self.__kwargs = kwargs
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self.__min_pool_size = 10
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self.__max_pool_size = max(pool_size, self.__min_pool_size)
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self.__pool = None
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self.__pool: aiomysql = None
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# For establishing connection:
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self.__exclusive_semaphore = asyncio.Semaphore(1)
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# Minor adjustments for backward compatibility:
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self.__kwargs["db"] = self.__kwargs.pop("database")
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@@ -123,26 +126,34 @@ class AsyncMySQL:
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def __del__(self):
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pass
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async def connect(self):
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async def connect(self) -> bool:
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"""
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Establish a connection and create a pool of connections to call from.
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:return: None.
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:return: True if connected, else False
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"""
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try:
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self.__pool = await aiomysql.create_pool(
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minsize = self.__min_pool_size,
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maxsize = self.__max_pool_size,
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loop = asyncio.get_event_loop(),
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**self.__kwargs
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)
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# Ensure that only one connection attempt is being made at one time,
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# and try to connect to the database:
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async with self.__exclusive_semaphore:
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if self.__pool is None:
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self.__pool = await aiomysql.create_pool(
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minsize = self.__min_pool_size,
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maxsize = self.__max_pool_size,
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loop = asyncio.get_event_loop(),
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**self.__kwargs
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)
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# In case of any exception:
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except Exception as exception:
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self.__printer(exception)
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self.__pool = None
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# Done here:
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return False if self.__pool is None else True
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async def ensure_connection(self):
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"""
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@@ -243,12 +243,12 @@ class NSEIndexConstituents(AsyncNSEBase):
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"totTradedVol": symbol["totalTradedVolume"],
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"totTradedVal": symbol["totalTradedValue"],
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"prevClose": symbol["previousClose"],
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"change": symbol["change"],
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"pctChange": symbol["pChange"],
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"chg": symbol["change"],
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"pChg": symbol["pChange"],
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"yearHigh": symbol["yearHigh"],
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"yearLow": symbol["yearLow"],
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"pctChange30d": symbol["perChange30d"],
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"pctChange365d": symbol["perChange365d"],
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"pChg30d": symbol["perChange30d"],
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"pChg365d": symbol["perChange365d"],
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"ffmc": symbol["ffmc"]
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} for symbol in raw_json["data"] if symbol["priority"] == 0
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]
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+1776
-1168
File diff suppressed because it is too large
Load Diff
+1196
-1196
File diff suppressed because it is too large
Load Diff
@@ -182,14 +182,14 @@ class NSEIndexMaster(AsyncNSEBase):
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"low": idx["low"],
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"close": idx["last"],
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"prevClose": idx["previousClose"],
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"pctChange": idx["percentChange"],
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"pChg": idx["percentChange"],
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"yearHigh": idx["yearHigh"],
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"yearLow": idx["yearLow"],
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"advances": idx.get("advances"),
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"declines": idx.get("declines"),
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"unchanged": idx.get("unchanged"),
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"pctChange30d": idx["perChange30d"],
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"pctChange365d": idx["perChange365d"]
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"pChg30d": idx["perChange30d"],
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"pChg365d": idx["perChange365d"]
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} for idx in raw_json["data"]
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]
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+3105
-3105
File diff suppressed because it is too large
Load Diff
@@ -207,14 +207,14 @@ class NSEPreMarket(AsyncNSEBase):
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raw_symbol_detail = raw_symbol_data["detail"]["preOpenMarket"]
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formatted_data["data"].append({
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"symbol": raw_symbol_metadata["symbol"],
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"marketCap": raw_symbol_metadata["marketCap"],
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"ffmc": raw_symbol_metadata["marketCap"],
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"trigger": raw_symbol_metadata["purpose"],
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"yearHigh": raw_symbol_metadata["yearHigh"],
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"yearLow": raw_symbol_metadata["yearLow"],
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"prevClose": raw_symbol_metadata["previousClose"],
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"premarketPrice": raw_symbol_metadata["iep"],
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"chg": raw_symbol_metadata["change"],
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"pctChg": raw_symbol_metadata["pChange"],
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"pChg": raw_symbol_metadata["pChange"],
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"totalTradedVolume": raw_symbol_detail["totalTradedVolume"],
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"totalBuyVolume": raw_symbol_detail["totalBuyQuantity"],
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"totalSellVolume": raw_symbol_detail["totalSellQuantity"],
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@@ -223,7 +223,7 @@ class NSEPreMarket(AsyncNSEBase):
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# Data sorting (descending order of percent change):
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formatted_data["data"] = sorted(
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formatted_data["data"],
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key = lambda x: x["pctChg"],
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key = lambda x: x["pChg"],
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reverse = True
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)
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@@ -473,7 +473,7 @@ if __name__ == "__main__":
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import asyncio
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import time
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from data_models.kafka_message import KafkaMessage
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# from data_models.kafka_message import KafkaMessage
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ssl_ctx = get_ssl_context(
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ca_file = r"/home/developer/PycharmProjects/utils/cred/kafka/cert_authority.pem",
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@@ -497,13 +497,13 @@ if __name__ == "__main__":
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while True:
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messages = await consumer.consume(count = 1)
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if len(messages) > 0: print("MESSAGE:", json.to_string(messages[0], default=str))
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if len(messages) > 0: print("MESSAGE:", json.to_string(messages[0], default = str))
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await asyncio.sleep(1.0)
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async def producer_test():
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producer = ProducerKafka(
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topic = "kft_file_upload",
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topic = "tickers",
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bootstrap_servers = "del.ditscentre.in:9092",
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security_protocol = "SSL",
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ssl_context = ssl_ctx
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@@ -512,43 +512,11 @@ if __name__ == "__main__":
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print("READY!")
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while True:
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my_msg = KafkaMessage(
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data = {
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"accepted": False,
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"reason": "low resolution"
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},
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media = {
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"name": "pikachu_poster.jpg",
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"ext": "jpg",
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"url": "https://nexcom.ditscentre.in/utils/files/small/download/66ded1c1c1c05139a618b5ff",
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"attr": {
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"user": "SarangKabir",
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"project": "ACE-PGP",
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"id": 173,
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"campaignActivityId": "25",
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"idCampaign": 49,
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"phoneNo": "7977821877"
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}
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},
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appId = "aceWockhardt",
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proc = {
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"name": "_assessImg",
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"attr": {
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"blurThreshold": 0.25,
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"clarityThreshold": 0.65,
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"nsfwThreshold": 0.25,
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"minWidth": 512,
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"minHeight": 512
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}
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},
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ack = None
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)
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success = await producer.produce(my_msg.model_dump())
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print("produced...")
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time.sleep(1.0)
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break
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success = await producer.produce({"name": "Bhopli", "color": "orange"})
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print("PRODUCED:", success)
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await asyncio.sleep(0.25)
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await producer.close()
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asyncio.run(consumer_test())
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asyncio.run(producer_test())
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+264
-238
@@ -81,7 +81,7 @@ import ssl
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# *****************************************************************************************************************
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def create_config(
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def create_producer_config(
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bootstrap_servers: str | List[str],
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group_id: str | None = None,
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security_protocol: Literal["PLAINTEXT", "SSL"] = "PLAINTEXT",
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@@ -142,8 +142,8 @@ class ProducerKafka:
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def __init__(
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self,
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topic: str,
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config: dict,
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topic: str,
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serializer = None,
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debug: bool = True,
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debug_prefix = "Kafka (P) | "
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@@ -151,8 +151,8 @@ class ProducerKafka:
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"""
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Create a Kafka Producer.
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:param topic: The topic to produce on.
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:param config: The configuration as expected by Confluent-Kafka library.
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:param topic: The topic to produce on.
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:param serializer: The serializer to use.
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:param debug: Whether, or not, you want to print the debug strings.
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:param debug_prefix: The prefix to use while debugging.
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@@ -175,6 +175,46 @@ class ProducerKafka:
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def disable_debug(self):
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self.__printer.disable()
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@staticmethod
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def create_config(
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bootstrap_servers: str | List[str],
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security_protocol: Literal["PLAINTEXT", "SSL"] = "PLAINTEXT",
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ca_file: str | None = None,
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cert_file: str | None = None,
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key_file: str | None = None,
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client_id: str | int | None = None
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):
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"""
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Creates the config required for Confluent-Kafka's library.
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:param bootstrap_servers: The addresses of the Kafka brokers.
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:param security_protocol: What sort of security protocol to use.
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:param ca_file: Needed for 'SSL' security protocol.
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:param cert_file: Needed for 'SSL' security protocol.
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:param key_file: Needed for 'SSL' security protocol.
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:param client_id: An identifier for one producer. Useful for debugging later.
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:return: The dictionary that needs to be passed as the 'conf' param when creating the producer.
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"""
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# Start with the bare minimum:
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if not isinstance(bootstrap_servers, list): bootstrap_servers = [bootstrap_servers]
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config = {
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"bootstrap.servers": ",".join(bootstrap_servers),
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"security.protocol": security_protocol
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}
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# Add the SSL security details:
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if security_protocol == "SSL":
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config["ssl.ca.location"] = ca_file
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config["ssl.certificate.location"] = cert_file
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config["ssl.key.location"] = key_file
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# Add an identifier for debugging:
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if client_id: config["client.id"] = client_id
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# Done here:
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return config
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def connect(self) -> bool:
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"""
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@@ -270,242 +310,204 @@ class ProducerKafka:
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# ---------------------------------------------------------------------------------------------------------------------
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# class ConsumerKafka:
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#
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# def __init__(
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# self,
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# topic,
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# serializer = None,
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# debug = True,
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# debug_prefix = "Kafka (C) | ",
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# **kwargs
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# ):
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#
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# """
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# Create a Kafka Consumer.
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# :param topic: The topic to consumer on.
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# :param serializer: The serializer to use.
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# :param debug: Whether, or not, you want to print the debug strings.
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# :param debug_prefix: The prefix to use while debugging.
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# :param kwargs: Any configuration parameters for the Kafka instances.
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# """
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#
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# # Initialize the debugger:
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# self.__printer = IceCreamDebugger(prefix = debug_prefix, includeContext = True)
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# if not debug: self.__printer.disable()
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#
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# # initialize the Kafka producer:
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# self.__topic = topic
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# self.__kwargs = kwargs
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# self.__consumer = None
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# self.__connected = False
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# self.__serializer = serializer or JSONSerializer()
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#
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# # For establishing connection:
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# self.__exclusive_semaphore = asyncio.Semaphore(1)
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#
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# def enable_debug(self):
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# self.__printer.enable()
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#
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# def disable_debug(self):
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# self.__printer.disable()
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#
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# async def connect(self):
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#
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# """
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# Connects to the Kafka server if not connected.
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# :return: True or False based on the success of the operation.
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# """
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#
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# async with self.__exclusive_semaphore:
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# if not self.__connected:
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# try:
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# self.__consumer = AIOKafkaConsumer(self.__topic, **self.__kwargs)
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# await self.__consumer.start()
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# self.__connected = True
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# except Exception as exception: self.__printer(exception)
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# return self.__connected
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#
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# async def ensure_connection(self):
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#
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# """
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# Connects to the Kafka server if not connected.
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# :return: True or False based on the success of the operation.
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# """
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#
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# if not self.__connected: await self.connect()
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# return self.__connected
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#
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# async def close(self):
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#
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# """
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# Terminates the connection.
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# :return: None.
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# """
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#
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# if self.__connected:
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# try:
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# await self.__consumer.stop()
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# self.__printer("Consumer closed!")
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# self.__connected = False
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# except Exception as exception: self.__printer(exception)
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#
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# async def consume(self, count = 1, timeout = 0.05, encoding = "utf-8"):
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#
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# """
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# Get messages from the Kafka server.
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# :param count: The number of messages to get from the Kafka server.
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# :param timeout: The time in seconds to wait for retrieval.
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# :param encoding: The encoding to use.
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# :return: The messages that were received. If no messages are available, an empty list will be returned.
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# """
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#
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# # Ensure connectivity to the server.
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# # If not connected, return with failure immediately.
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# if not await self.ensure_connection(): return []
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#
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# # Make a variable that will hold the final results:
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# messages = []
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#
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# try:
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#
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# # Read some messages:
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# results = await self.__consumer.getmany(
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# max_records = max(1, count),
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# timeout_ms = int(timeout * 1_000)
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# )
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#
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# # Format the received messages:
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# if results:
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# for topic_partition, records in results.items():
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# for record in records:
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# record_dict = record.__dict__
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# record_dict["value"] = self.__serializer.deserialize(
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# data = record_dict["value"],
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# encoding = encoding
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# )
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# messages.append(record_dict)
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#
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# # Debugging print if something went wrong:
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# except Exception as exception: self.__printer(exception)
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#
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# # Done here:
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# return messages
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class ConsumerKafka:
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def __init__(
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self,
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config: dict,
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topic: str,
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serializer = None,
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debug = True,
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debug_prefix = "Kafka (C) | ",
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**kwargs
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):
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|
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# ---------------------------------------------------------------------------------------------------------------------
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"""
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Create a Kafka Consumer.
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:param topic: the topic to consume on.
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:param serializer: The serializer to use.
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:param debug: Whether, or not, you want to print the debug strings.
|
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:param debug_prefix: The prefix to use while debugging.
|
||||
:param kwargs: Any configuration parameters for the Kafka instances.
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"""
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# Initialize the debugger:
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self.__printer = IceCreamDebugger(prefix = debug_prefix, includeContext = True)
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if not debug: self.__printer.disable()
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# class BidirectionalKafka:
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#
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# # The 'roles' that the instance can take.
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# # The master talks on the channel (topic) that the slave listens on and vice versa.
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# # Master-Slave is only for deciding who talks on which channel and who listens on which.
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# # In a two-party system, one must be the master, the other must be the slave.
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# # There are no extra privileges that the master enjoys. The naming convention was borrowed from common protocols
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# # used in electronics (like I2C).
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# ROLE_MASTER = 1
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# ROLE_SLAVE = 0
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#
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# def __init__(
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# self,
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# role,
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# topic,
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# ack_topic: str = None,
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# group: str = None,
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# serializer = None,
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# debug = True,
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# debug_prefix = "Kafka (B) | ",
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# **kwargs
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# ):
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#
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# """
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# Creates a walkie-talkie type setup to use Kafka in a bidirectional manner. Fo more information on all the
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# individual methods, please read through the doc-strings of the component classes 'ProducerKafka', and
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# 'ConsumerKafka'.
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# :param role: Select from "ROLE_MASTER" and "ROLE_SLAVE". Between the two parties that are talking, one will be
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# the master and the other will be the slave. The channel that the master uses to speak will the one the slave
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# uses to listen, and vice versa.
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# :param topic: The topic to communicate on. Will be the same between the master and the slave.
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# :param ack_topic: Explicitly provide this for the second channel, or it will be created from the name of the
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# topic itself. Will be the same between the master and the slave.
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# :param group: The group to assign the instance to.
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# :param debug: Whether, or not, you want to print the debug strings.
|
||||
# :param debug_prefix: The prefix to use while debugging.
|
||||
# :param kwargs: Any configuration parameters for the Kafka instances.
|
||||
# """
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||||
#
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# # Not down the basic variables:
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# self.__role = role
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# self.__topic = topic
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# self.__ack_topic = ack_topic or topic + "Ack"
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# self.__group = group
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#
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||||
# # In case the current instance is the master,
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||||
# # it will talk on "topic", and listen on "ack_topic":
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||||
# if self.__role == self.ROLE_MASTER:
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# self.__producer_kwargs = kwargs.copy()
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||||
# self.__producer = ProducerKafka(
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# topic = self.__topic,
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# serializer = serializer,
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# debug = debug,
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# debug_prefix = debug_prefix.strip() + " (P) | ",
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# **self.__producer_kwargs
|
||||
# )
|
||||
# self.__consumer_kwargs = kwargs.copy()
|
||||
# self.__consumer_kwargs["group_id"] = self.__group
|
||||
# self.__consumer = ConsumerKafka(
|
||||
# topic = self.__ack_topic,
|
||||
# group = group,
|
||||
# serializer = serializer,
|
||||
# debug = debug,
|
||||
# debug_prefix = debug_prefix.strip() + " (C) | ",
|
||||
# **self.__consumer_kwargs
|
||||
# )
|
||||
#
|
||||
# # On the other hand, if the current instance is a slave,
|
||||
# # It will listen on "topic", and talk on "ack_topic":
|
||||
# else:
|
||||
# self.__producer_kwargs = kwargs.copy()
|
||||
# self.__producer = ProducerKafka(
|
||||
# topic = self.__ack_topic,
|
||||
# serializer = serializer,
|
||||
# debug = debug,
|
||||
# debug_prefix = debug_prefix.strip() + " (P) | ",
|
||||
# **self.__producer_kwargs
|
||||
# )
|
||||
# self.__consumer_kwargs = kwargs.copy()
|
||||
# self.__consumer_kwargs["group_id"] = self.__group
|
||||
# self.__consumer = ConsumerKafka(
|
||||
# topic = self.__topic,
|
||||
# group = group,
|
||||
# serializer = serializer,
|
||||
# debug = debug,
|
||||
# debug_prefix = debug_prefix.strip() + " (C) | ",
|
||||
# **self.__consumer_kwargs
|
||||
# )
|
||||
#
|
||||
# def enable_debug(self):
|
||||
# self.__producer.enable_debug()
|
||||
# self.__consumer.enable_debug()
|
||||
#
|
||||
# def disable_debug(self):
|
||||
# self.__producer.disable_debug()
|
||||
# self.__consumer.disable_debug()
|
||||
#
|
||||
# async def ensure_connection(self):
|
||||
# await self.__producer.ensure_connection()
|
||||
# await self.__consumer.ensure_connection()
|
||||
#
|
||||
# async def close(self):
|
||||
# await self.__producer.close()
|
||||
# await self.__consumer.close()
|
||||
#
|
||||
# async def produce(self, message, encoding = "utf-8"):
|
||||
# return await self.__producer.produce(message, encoding = encoding)
|
||||
#
|
||||
# async def consume(self, count = 1, timeout = 0.05, encoding = "utf-8"):
|
||||
# return await self.__consumer.consume(count = count, timeout = timeout, encoding = encoding)
|
||||
# initialize the Kafka consumer:
|
||||
self.__config = config
|
||||
self.__topic = topic
|
||||
self.__kwargs = kwargs
|
||||
self.__consumer = None
|
||||
self.__connected = False
|
||||
self.__serializer = serializer or JSONSerializer()
|
||||
|
||||
def enable_debug(self):
|
||||
self.__printer.enable()
|
||||
|
||||
def disable_debug(self):
|
||||
self.__printer.disable()
|
||||
|
||||
@staticmethod
|
||||
def create_config(
|
||||
bootstrap_servers: str | List[str],
|
||||
group_id: str,
|
||||
auto_offset_reset: Literal["latest", "earliest"] = "latest",
|
||||
security_protocol: Literal["PLAINTEXT", "SSL"] = "PLAINTEXT",
|
||||
ca_file: str | None = None,
|
||||
cert_file: str | None = None,
|
||||
key_file: str | None = None,
|
||||
client_id: str | int | None = None
|
||||
):
|
||||
|
||||
"""
|
||||
Creates the config required for Confluent-Kafka's library.
|
||||
:param bootstrap_servers: The addresses of the Kafka brokers.
|
||||
:param group_id: When a set of consumers are working on one topic in a group such that you want only one of them
|
||||
to read a particular message.
|
||||
:param auto_offset_reset: Use this to influence the behaviour of how the Kafka consumer will read messages when
|
||||
it first connects to the broker. It could either want to read the earliest (oldest) messages or the latest
|
||||
(newest) messages from the queue.
|
||||
:param security_protocol: What sort of security protocol to use.
|
||||
:param ca_file: Needed for 'SSL' security protocol.
|
||||
:param cert_file: Needed for 'SSL' security protocol.
|
||||
:param key_file: Needed for 'SSL' security protocol.
|
||||
:param client_id: An identifier for one producer. Useful for debugging later.
|
||||
:return: The dictionary that needs to be passed as the 'conf' param when creating the producer.
|
||||
"""
|
||||
|
||||
# Start with the bare minimum:
|
||||
if not isinstance(bootstrap_servers, list): bootstrap_servers = [bootstrap_servers]
|
||||
config = {
|
||||
"bootstrap.servers": ",".join(bootstrap_servers),
|
||||
"security.protocol": security_protocol
|
||||
}
|
||||
|
||||
# Add the SSL security details:
|
||||
if security_protocol == "SSL":
|
||||
config["ssl.ca.location"] = ca_file
|
||||
config["ssl.certificate.location"] = cert_file
|
||||
config["ssl.key.location"] = key_file
|
||||
|
||||
# Add an identifier for debugging:
|
||||
if client_id: config["client.id"] = client_id
|
||||
|
||||
# Consumer-specific:
|
||||
config["group.id"] = group_id
|
||||
config["auto.offset.reset"] = auto_offset_reset
|
||||
|
||||
# Done here:
|
||||
return config
|
||||
|
||||
def connect(self):
|
||||
|
||||
"""
|
||||
Connects to the Kafka server if not connected.
|
||||
:return: True or False based on the success of the operation.
|
||||
"""
|
||||
|
||||
if not self.__connected:
|
||||
try:
|
||||
if not isinstance(self.__topic, list): self.__topic = [self.__topic]
|
||||
self.__consumer = Consumer(self.__config)
|
||||
self.__consumer.subscribe(self.__topic)
|
||||
self.__connected = True
|
||||
except Exception as exception: self.__printer(exception)
|
||||
return self.__connected
|
||||
|
||||
def ensure_connection(self):
|
||||
|
||||
"""
|
||||
Connects to the Kafka server if not connected.
|
||||
:return: True or False based on the success of the operation.
|
||||
"""
|
||||
|
||||
if not self.__connected: self.connect()
|
||||
return self.__connected
|
||||
|
||||
def close(self):
|
||||
|
||||
"""
|
||||
Terminates the connection.
|
||||
:return: None.
|
||||
"""
|
||||
|
||||
if self.__connected:
|
||||
try:
|
||||
self.__consumer.close()
|
||||
self.__printer("Consumer closed!")
|
||||
self.__connected = False
|
||||
except Exception as exception: self.__printer(exception)
|
||||
|
||||
def __consume_one(
|
||||
self,
|
||||
timeout = 0.05,
|
||||
encoding = "utf-8"
|
||||
) -> dict | None:
|
||||
|
||||
"""
|
||||
Here we consume exactly one message from the broker. If we need multiple messages (a batch of messages), we call
|
||||
this method as many times as needed.
|
||||
:param timeout: The time in seconds to wait for retrieval.
|
||||
:param encoding: The encoding to use.
|
||||
:return: A dict that holds the details of the message. Null if no message was fetched.
|
||||
"""
|
||||
|
||||
message = self.__consumer.poll(timeout = timeout)
|
||||
if message is None or message.error(): return None
|
||||
else:
|
||||
message_value = message.value()
|
||||
if message_value is not None: message_value = self.__serializer.deserialize(message_value, encoding = encoding)
|
||||
return {
|
||||
"topic": message.topic(),
|
||||
"partition": message.partition(),
|
||||
"offset": message.offset(),
|
||||
"key": message.key().decode("utf-8") if message.key() else None,
|
||||
"value": message_value,
|
||||
"timestamp": message.timestamp()[1],
|
||||
"headers": message.headers()
|
||||
}
|
||||
|
||||
def consume(self, count = 1, timeout = 0.05, encoding = "utf-8"):
|
||||
|
||||
"""
|
||||
Get messages from the Kafka broker.
|
||||
:param count: The number of messages to get from the Kafka server.
|
||||
:param timeout: The time in seconds to wait for retrieval.
|
||||
:param encoding: The encoding to use.
|
||||
:return: The messages that were received. If no messages are available, an empty list will be returned.
|
||||
"""
|
||||
|
||||
# Make some variables:
|
||||
start_time = time.time()
|
||||
messages = []
|
||||
|
||||
# Ensure connectivity to the server.
|
||||
# If not connected, return with failure immediately.
|
||||
if not self.ensure_connection(): return messages
|
||||
|
||||
# Get into an indefinite loop.
|
||||
while True:
|
||||
|
||||
# If timed-out, break out of the loop:
|
||||
elapsed_time = time.time() - start_time
|
||||
if elapsed_time > timeout: break
|
||||
|
||||
# Get the next message:
|
||||
message = self.__consume_one(
|
||||
timeout = timeout - elapsed_time,
|
||||
encoding = encoding
|
||||
)
|
||||
|
||||
# If a message was fetched in the timeout, append it to the list of messages.
|
||||
# Break out of the loop if you have reached the needed no. of messages:
|
||||
if message:
|
||||
messages.append(message)
|
||||
if len(messages) >= count: break
|
||||
|
||||
# Done here:
|
||||
return messages
|
||||
|
||||
|
||||
# *****************************************************************************************************************
|
||||
@@ -528,12 +530,13 @@ if __name__ == "__main__":
|
||||
# Create and connect the producer:
|
||||
producer = ProducerKafka(
|
||||
topic = "kft_file_upload",
|
||||
config = create_config(
|
||||
config = ProducerKafka.create_config(
|
||||
bootstrap_servers = "del.ditscentre.in:9092",
|
||||
security_protocol = "SSL",
|
||||
ca_file = r"../../creds/kafka/cert_authority.pem",
|
||||
cert_file = r"../../creds/kafka/fullchain.pem",
|
||||
key_file = r"../../creds/kafka/privkey.pem"
|
||||
key_file = r"../../creds/kafka/privkey.pem",
|
||||
client_id = 123
|
||||
)
|
||||
)
|
||||
producer.connect()
|
||||
@@ -557,6 +560,29 @@ if __name__ == "__main__":
|
||||
# Ensure a graceful close:
|
||||
producer.close()
|
||||
|
||||
def consumer_test():
|
||||
|
||||
# Create and connect the producer:
|
||||
consumer = ConsumerKafka(
|
||||
topic = "tickers",
|
||||
config = ConsumerKafka.create_config(
|
||||
bootstrap_servers = "del.ditscentre.in:9092",
|
||||
group_id = "test-group",
|
||||
security_protocol = "SSL",
|
||||
ca_file = r"../../creds/kafka/cert_authority.pem",
|
||||
cert_file = r"../../creds/kafka/fullchain.pem",
|
||||
key_file = r"../../creds/kafka/privkey.pem",
|
||||
)
|
||||
)
|
||||
consumer.connect()
|
||||
print("CONSUMER READY!")
|
||||
|
||||
for _ in range(5):
|
||||
messages = consumer.consume(count = 3, timeout = 2.5)
|
||||
print(json.to_string(messages, default = str))
|
||||
|
||||
consumer.close()
|
||||
|
||||
# Run the test code:
|
||||
producer_test(count = 5)
|
||||
# producer_test(count = 5)
|
||||
consumer_test()
|
||||
|
||||
Reference in New Issue
Block a user