mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-11-23 16:12:01 +00:00
328 lines
11 KiB
Python
328 lines
11 KiB
Python
#!/usr/bin/env python3
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import argparse
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import json
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import sys
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import time
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from collections import namedtuple
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from dataclasses import dataclass
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from typing import Any, Dict, List, Tuple
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import boto3 # type: ignore
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import requests # type: ignore
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import jwt
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def get_key_and_app_from_aws() -> Tuple[str, int]:
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secret_name = "clickhouse_github_secret_key"
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session = boto3.session.Session()
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client = session.client(
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service_name="secretsmanager",
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)
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get_secret_value_response = client.get_secret_value(SecretId=secret_name)
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data = json.loads(get_secret_value_response["SecretString"])
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return data["clickhouse-app-key"], int(data["clickhouse-app-id"])
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def get_installation_id(jwt_token: str) -> int:
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headers = {
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"Authorization": f"Bearer {jwt_token}",
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"Accept": "application/vnd.github.v3+json",
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}
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response = requests.get("https://api.github.com/app/installations", headers=headers)
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response.raise_for_status()
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data = response.json()
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for installation in data:
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if installation["account"]["login"] == "ClickHouse":
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installation_id = installation["id"]
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break
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return installation_id # type: ignore
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def get_access_token(jwt_token: str, installation_id: int) -> str:
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headers = {
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"Authorization": f"Bearer {jwt_token}",
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"Accept": "application/vnd.github.v3+json",
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}
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response = requests.post(
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f"https://api.github.com/app/installations/{installation_id}/access_tokens",
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headers=headers,
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)
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response.raise_for_status()
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data = response.json()
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return data["token"] # type: ignore
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@dataclass
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class CachedToken:
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time: int
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value: str
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cached_token = CachedToken(0, "")
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def get_cached_access_token() -> str:
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if time.time() - 500 < cached_token.time:
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return cached_token.value
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private_key, app_id = get_key_and_app_from_aws()
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payload = {
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"iat": int(time.time()) - 60,
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"exp": int(time.time()) + (10 * 60),
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"iss": app_id,
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}
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encoded_jwt = jwt.encode(payload, private_key, algorithm="RS256")
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installation_id = get_installation_id(encoded_jwt)
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cached_token.time = int(time.time())
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cached_token.value = get_access_token(encoded_jwt, installation_id)
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return cached_token.value
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RunnerDescription = namedtuple(
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"RunnerDescription", ["id", "name", "tags", "offline", "busy"]
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)
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RunnerDescriptions = List[RunnerDescription]
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def list_runners(access_token: str) -> RunnerDescriptions:
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headers = {
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"Authorization": f"token {access_token}",
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"Accept": "application/vnd.github.v3+json",
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}
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per_page = 100
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response = requests.get(
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f"https://api.github.com/orgs/ClickHouse/actions/runners?per_page={per_page}",
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headers=headers,
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)
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response.raise_for_status()
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data = response.json()
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total_runners = data["total_count"]
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print("Expected total runners", total_runners)
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runners = data["runners"]
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# round to 0 for 0, 1 for 1..100, but to 2 for 101..200
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total_pages = (total_runners - 1) // per_page + 1
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print("Total pages", total_pages)
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for i in range(2, total_pages + 1):
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response = requests.get(
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"https://api.github.com/orgs/ClickHouse/actions/runners"
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f"?page={i}&per_page={per_page}",
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headers=headers,
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)
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response.raise_for_status()
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data = response.json()
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runners += data["runners"]
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print("Total runners", len(runners))
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result = []
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for runner in runners:
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tags = [tag["name"] for tag in runner["labels"]]
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desc = RunnerDescription(
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id=runner["id"],
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name=runner["name"],
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tags=tags,
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offline=runner["status"] == "offline",
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busy=runner["busy"],
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)
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result.append(desc)
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return result
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def how_many_instances_to_kill(event_data: dict) -> Dict[str, int]:
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data_array = event_data["CapacityToTerminate"]
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to_kill_by_zone = {} # type: Dict[str, int]
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for av_zone in data_array:
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zone_name = av_zone["AvailabilityZone"]
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to_kill = av_zone["Capacity"]
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if zone_name not in to_kill_by_zone:
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to_kill_by_zone[zone_name] = 0
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to_kill_by_zone[zone_name] += to_kill
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return to_kill_by_zone
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def get_candidates_to_be_killed(event_data: dict) -> Dict[str, List[str]]:
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data_array = event_data["Instances"]
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instances_by_zone = {} # type: Dict[str, List[str]]
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for instance in data_array:
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zone_name = instance["AvailabilityZone"]
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instance_id = instance["InstanceId"] # type: str
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if zone_name not in instances_by_zone:
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instances_by_zone[zone_name] = []
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instances_by_zone[zone_name].append(instance_id)
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return instances_by_zone
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def main(access_token: str, event: dict) -> Dict[str, List[str]]:
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print("Got event", json.dumps(event, sort_keys=True, indent=4))
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to_kill_by_zone = how_many_instances_to_kill(event)
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instances_by_zone = get_candidates_to_be_killed(event)
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runners = list_runners(access_token)
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# We used to delete potential hosts to terminate from GitHub runners pool,
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# but the documentation states:
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# --- Returning an instance first in the response data does not guarantee its termination
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# so they will be cleaned out by ci_runners_metrics_lambda eventually
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instances_to_kill = []
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total_to_kill = 0
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for zone, num_to_kill in to_kill_by_zone.items():
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candidates = instances_by_zone[zone]
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total_to_kill += num_to_kill
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if num_to_kill > len(candidates):
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raise Exception(
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f"Required to kill {num_to_kill}, but have only {len(candidates)} candidates in AV {zone}"
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)
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delete_for_av = [] # type: RunnerDescriptions
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for candidate in candidates:
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if candidate not in set(runner.name for runner in runners):
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print(
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f"Candidate {candidate} was not in runners list, simply delete it"
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)
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instances_to_kill.append(candidate)
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for candidate in candidates:
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if len(delete_for_av) + len(instances_to_kill) == num_to_kill:
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break
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if candidate in instances_to_kill:
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continue
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for runner in runners:
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if runner.name == candidate:
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if not runner.busy:
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print(
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f"Runner {runner.name} is not busy and can be deleted from AV {zone}"
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)
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delete_for_av.append(runner)
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else:
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print(f"Runner {runner.name} is busy, not going to delete it")
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break
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if len(delete_for_av) < num_to_kill:
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print(
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f"Checked all candidates for av {zone}, get to delete {len(delete_for_av)}, but still cannot get required {num_to_kill}"
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)
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instances_to_kill += [runner.name for runner in delete_for_av]
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if len(instances_to_kill) < total_to_kill:
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print(f"Check other hosts from the same ASG {event['AutoScalingGroupName']}")
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client = boto3.client("autoscaling")
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as_groups = client.describe_auto_scaling_groups(
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AutoScalingGroupNames=[event["AutoScalingGroupName"]]
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)
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assert len(as_groups["AutoScalingGroups"]) == 1
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asg = as_groups["AutoScalingGroups"][0]
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for instance in asg["Instances"]:
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for runner in runners:
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if runner.name == instance["InstanceId"] and not runner.busy:
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print(f"Runner {runner.name} is not busy and can be deleted")
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instances_to_kill.append(runner.name)
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if total_to_kill <= len(instances_to_kill):
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print("Got enough instances to kill")
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break
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print("Got instances to kill: ", ", ".join(instances_to_kill))
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response = {"InstanceIDs": instances_to_kill}
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print(response)
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return response
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def handler(event: dict, context: Any) -> Dict[str, List[str]]:
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return main(get_cached_access_token(), event)
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if __name__ == "__main__":
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parser = argparse.ArgumentParser(description="Get list of runners and their states")
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parser.add_argument(
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"-p", "--private-key-path", help="Path to file with private key"
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)
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parser.add_argument("-k", "--private-key", help="Private key")
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parser.add_argument(
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"-a", "--app-id", type=int, help="GitHub application ID", required=True
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)
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args = parser.parse_args()
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if not args.private_key_path and not args.private_key:
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print(
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"Either --private-key-path or --private-key must be specified",
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file=sys.stderr,
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)
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if args.private_key_path and args.private_key:
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print(
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"Either --private-key-path or --private-key must be specified",
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file=sys.stderr,
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)
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if args.private_key:
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private_key = args.private_key
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else:
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with open(args.private_key_path, "r") as key_file:
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private_key = key_file.read()
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sample_event = {
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"AutoScalingGroupARN": "arn:aws:autoscaling:us-east-1:<account-id>:autoScalingGroup:d4738357-2d40-4038-ae7e-b00ae0227003:autoScalingGroupName/my-asg",
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"AutoScalingGroupName": "my-asg",
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"CapacityToTerminate": [
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{
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"AvailabilityZone": "us-east-1b",
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"Capacity": 1,
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"InstanceMarketOption": "OnDemand",
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},
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{
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"AvailabilityZone": "us-east-1c",
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"Capacity": 2,
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"InstanceMarketOption": "OnDemand",
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},
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],
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"Instances": [
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{
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"AvailabilityZone": "us-east-1b",
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"InstanceId": "i-08d0b3c1a137e02a5",
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"InstanceType": "t2.nano",
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"InstanceMarketOption": "OnDemand",
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},
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{
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"AvailabilityZone": "us-east-1c",
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"InstanceId": "ip-172-31-45-253.eu-west-1.compute.internal",
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"InstanceType": "t2.nano",
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"InstanceMarketOption": "OnDemand",
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},
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{
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"AvailabilityZone": "us-east-1c",
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"InstanceId": "ip-172-31-27-227.eu-west-1.compute.internal",
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"InstanceType": "t2.nano",
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"InstanceMarketOption": "OnDemand",
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},
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{
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"AvailabilityZone": "us-east-1c",
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"InstanceId": "ip-172-31-45-253.eu-west-1.compute.internal",
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"InstanceType": "t2.nano",
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"InstanceMarketOption": "OnDemand",
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},
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],
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"Cause": "SCALE_IN",
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}
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payload = {
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"iat": int(time.time()) - 60,
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"exp": int(time.time()) + (10 * 60),
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"iss": args.app_id,
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}
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encoded_jwt = jwt.encode(payload, private_key, algorithm="RS256")
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installation_id = get_installation_id(encoded_jwt)
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access_token = get_access_token(encoded_jwt, args.app_id)
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main(access_token, sample_event)
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