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198 lines
6.0 KiB
Python
198 lines
6.0 KiB
Python
import os
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import random
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import threading
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import time
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import pytest
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from helpers.client import CommandRequest
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from helpers.cluster import ClickHouseCluster
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from helpers.network import PartitionManager
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from helpers.test_tools import TSV
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cluster = ClickHouseCluster(__file__)
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node1 = cluster.add_instance(
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"node1",
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main_configs=["configs/conf.d/merge_tree.xml", "configs/conf.d/remote_servers.xml"],
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with_zookeeper=True,
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macros={"layer": 0, "shard": 0, "replica": 1},
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)
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node2 = cluster.add_instance(
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"node2",
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main_configs=["configs/conf.d/merge_tree.xml", "configs/conf.d/remote_servers.xml"],
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with_zookeeper=True,
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macros={"layer": 0, "shard": 0, "replica": 2},
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)
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nodes = [node1, node2]
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@pytest.fixture(scope="module")
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def started_cluster():
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try:
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cluster.start()
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yield cluster
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finally:
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pass
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cluster.shutdown()
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def test_random_inserts(started_cluster):
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# Duration of the test, reduce it if don't want to wait
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DURATION_SECONDS = 10 # * 60
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node1.query(
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"""
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CREATE TABLE simple ON CLUSTER test_cluster (date Date, i UInt32, s String)
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ENGINE = ReplicatedMergeTree('/clickhouse/tables/{shard}/simple', '{replica}') PARTITION BY toYYYYMM(date) ORDER BY i"""
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)
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with PartitionManager() as pm_random_drops:
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for sacrifice in nodes:
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pass # This test doesn't work with partition problems still
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# pm_random_drops._add_rule({'probability': 0.01, 'destination': sacrifice.ip_address, 'source_port': 2181, 'action': 'REJECT --reject-with tcp-reset'})
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# pm_random_drops._add_rule({'probability': 0.01, 'source': sacrifice.ip_address, 'destination_port': 2181, 'action': 'REJECT --reject-with tcp-reset'})
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min_timestamp = int(time.time())
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max_timestamp = min_timestamp + DURATION_SECONDS
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num_timestamps = max_timestamp - min_timestamp + 1
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bash_script = os.path.join(os.path.dirname(__file__), "test.sh")
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inserters = []
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for node in nodes:
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cmd = [
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"/bin/bash",
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bash_script,
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node.ip_address,
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str(min_timestamp),
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str(max_timestamp),
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str(cluster.get_client_cmd()),
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]
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inserters.append(
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CommandRequest(cmd, timeout=DURATION_SECONDS * 2, stdin="")
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)
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print(node.name, node.ip_address)
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for inserter in inserters:
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inserter.get_answer()
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answer = "{}\t{}\t{}\t{}\n".format(
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num_timestamps, num_timestamps, min_timestamp, max_timestamp
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)
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for node in nodes:
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res = node.query_with_retry(
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"SELECT count(), uniqExact(i), min(i), max(i) FROM simple",
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check_callback=lambda res: TSV(res) == TSV(answer),
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)
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assert TSV(res) == TSV(answer), (
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node.name
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+ " : "
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+ node.query(
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"SELECT groupArray(_part), i, count() AS c FROM simple GROUP BY i ORDER BY c DESC LIMIT 1"
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)
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)
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node1.query("""DROP TABLE simple ON CLUSTER test_cluster""")
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class Runner:
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def __init__(self):
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self.mtx = threading.Lock()
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self.total_inserted = 0
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self.inserted_vals = set()
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self.inserted_payloads = set()
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self.stop_ev = threading.Event()
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def do_insert(self, thread_num):
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self.stop_ev.wait(random.random())
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year = 2000
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month = "01"
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day = str(thread_num + 1).zfill(2)
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x = 1
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while not self.stop_ev.is_set():
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payload = """
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{year}-{month}-{day} {x1}
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{year}-{month}-{day} {x2}
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""".format(
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year=year, month=month, day=day, x1=x, x2=(x + 1)
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).strip()
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try:
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random.choice(nodes).query("INSERT INTO repl_test FORMAT TSV", payload)
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# print 'thread {}: insert {}, {}'.format(thread_num, i, i + 1)
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self.mtx.acquire()
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if payload not in self.inserted_payloads:
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self.inserted_payloads.add(payload)
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self.inserted_vals.add(x)
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self.inserted_vals.add(x + 1)
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self.total_inserted += 2 * x + 1
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self.mtx.release()
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except Exception as e:
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print("Exception:", e)
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x += 2
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self.stop_ev.wait(0.1 + random.random() / 10)
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def test_insert_multithreaded(started_cluster):
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DURATION_SECONDS = 50
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for node in nodes:
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node.query("DROP TABLE IF EXISTS repl_test")
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for node in nodes:
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node.query(
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"CREATE TABLE repl_test(d Date, x UInt32) ENGINE ReplicatedMergeTree('/clickhouse/tables/test/repl_test', '{replica}') ORDER BY x PARTITION BY toYYYYMM(d)"
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)
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runner = Runner()
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threads = []
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for thread_num in range(5):
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threads.append(threading.Thread(target=runner.do_insert, args=(thread_num,)))
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for t in threads:
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t.start()
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time.sleep(DURATION_SECONDS)
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runner.stop_ev.set()
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for t in threads:
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t.join()
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# Sanity check: at least something was inserted
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assert runner.total_inserted > 0
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all_replicated = False
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for i in range(100): # wait for replication 50 seconds max
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time.sleep(0.5)
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def get_delay(node):
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return int(
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node.query(
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"SELECT absolute_delay FROM system.replicas WHERE table = 'repl_test'"
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).rstrip()
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)
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if all([get_delay(n) == 0 for n in nodes]):
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all_replicated = True
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break
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assert all_replicated
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# Now we can be sure that all replicated fetches started, but they may not
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# be finished yet so we additionaly sync replicas, to be sure, that we have
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# all data on both replicas
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for node in nodes:
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node.query("SYSTEM SYNC REPLICA repl_test", timeout=10)
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actual_inserted = []
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for i, node in enumerate(nodes):
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actual_inserted.append(int(node.query("SELECT sum(x) FROM repl_test").rstrip()))
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assert actual_inserted[i] == runner.total_inserted
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