280 lines
9 KiB
Python
280 lines
9 KiB
Python
#!/usr/bin/python3.9
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"""
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This module contains keywords for management test stand
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nodes. It assumes that nodes are docker containers.
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"""
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import random
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import re
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from contextlib import contextmanager
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from dataclasses import dataclass
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from typing import Optional
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from cli_helpers import _cmd_run
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import docker
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from common import (NEOFS_CLI_EXEC, NEOFS_NETMAP_DICT, STORAGE_CONTROL_ENDPOINT_PRIVATE,
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STORAGE_NODE_BIN_PATH, STORAGE_NODE_SSH_PASSWORD,
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STORAGE_NODE_SSH_PRIVATE_KEY_PATH, STORAGE_NODE_SSH_USER, WALLET_CONFIG)
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from robot.api import logger
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from robot.api.deco import keyword
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from ssh_helper import HostClient
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ROBOT_AUTO_KEYWORDS = False
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@dataclass
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class HealthStatus:
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network_status: str = None
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health_status: str = None
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@staticmethod
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def from_stdout(output: str) -> 'HealthStatus':
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network, health = None, None
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for line in output.split('\n'):
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if 'Network status' in line:
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network = line.split(':')[-1].strip()
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if 'Health status' in line:
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health = line.split(':')[-1].strip()
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return HealthStatus(network, health)
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@contextmanager
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def create_ssh_client(node_name: str) -> HostClient:
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if node_name not in NEOFS_NETMAP_DICT:
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raise AssertionError(f'Node {node_name} is not found!')
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# We use rpc endpoint to determine host address, because control endpoint
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# (if it is private) will be a local address on the host machine
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node_config = NEOFS_NETMAP_DICT.get(node_name)
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host = node_config.get('rpc').split(':')[0]
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ssh_client = HostClient(
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host,
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login=STORAGE_NODE_SSH_USER,
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password=STORAGE_NODE_SSH_PASSWORD,
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private_key_path=STORAGE_NODE_SSH_PRIVATE_KEY_PATH,
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)
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try:
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yield ssh_client
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finally:
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ssh_client.drop()
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@keyword('Stop Nodes')
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def stop_nodes(number: int, nodes: list) -> list:
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"""
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The function shuts down the given number of randomly
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selected nodes in docker.
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Args:
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number (int): the number of nodes to shut down
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nodes (list): the list of nodes for possible shut down
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Returns:
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(list): the list of nodes which have been shut down
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"""
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nodes = random.sample(nodes, number)
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client = docker.APIClient()
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for node in nodes:
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node = node.split('.')[0]
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client.stop(node)
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return nodes
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@keyword('Start Nodes')
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def start_nodes(nodes: list) -> None:
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"""
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The function raises the given nodes.
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Args:
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nodes (list): the list of nodes to raise
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Returns:
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(void)
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"""
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client = docker.APIClient()
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for node in nodes:
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node = node.split('.')[0]
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client.start(node)
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@keyword('Get control endpoint and wallet')
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def get_control_endpoint_and_wallet(endpoint_number: str = ''):
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"""
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Gets control endpoint for a random or given node
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Args:
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endpoint_number (optional, str): the number of the node
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in the form of 's01', 's02', etc.
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given in NEOFS_NETMAP_DICT as keys
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Returns:
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(str): the number of the node
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(str): endpoint control for the node
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(str): the wallet of the respective node
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"""
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if endpoint_number == '':
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endpoint_num = random.choice(list(NEOFS_NETMAP_DICT.keys()))
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logger.info(f'Random node chosen: {endpoint_num}')
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else:
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endpoint_num = endpoint_number
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endpoint_values = NEOFS_NETMAP_DICT[f'{endpoint_num}']
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endpoint_control = endpoint_values['control']
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wallet = endpoint_values['wallet_path']
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return endpoint_num, endpoint_control, wallet
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@keyword('Get Locode')
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def get_locode():
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endpoint_values = random.choice(list(NEOFS_NETMAP_DICT.values()))
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locode = endpoint_values['UN-LOCODE']
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logger.info(f'Random locode chosen: {locode}')
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return locode
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@keyword('Stop Nodes Remote')
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def stop_nodes_remote(number: int, nodes: list) -> list:
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"""
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The function shuts down the given number of randomly
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selected nodes in docker.
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Args:
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number (int): the number of nodes to shut down
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nodes (list): the list of nodes for possible shut down
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Returns:
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(list): the list of nodes which have been shut down
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"""
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nodes = random.sample(nodes, number)
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for node in nodes:
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node = node.split('.')[0]
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with create_ssh_client(node) as ssh_client:
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ssh_client.exec(f'docker stop {node}')
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return nodes
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@keyword('Start Nodes Remote')
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def start_nodes_remote(nodes: list) -> None:
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"""
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The function starts nodes in docker.
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Args:
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nodes (list): the list of nodes for possible shut down
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"""
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for node in nodes:
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node = node.split('.')[0]
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with create_ssh_client(node) as ssh_client:
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ssh_client.exec(f'docker start {node}')
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@keyword('Healthcheck for node')
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def node_healthcheck(node_name: str) -> HealthStatus:
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"""
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The function returns node's health status.
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Args:
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node_name str: node name to use for netmap snapshot operation
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Returns:
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health status as HealthStatus object.
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"""
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command = "control healthcheck"
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output = run_control_command(node_name, command)
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return HealthStatus.from_stdout(output)
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@keyword('Set status for node')
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def node_set_status(node_name: str, status: str) -> None:
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"""
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The function sets particular status for given node.
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Args:
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node_name str: node name to use for netmap snapshot operation
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status str: online or offline.
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Returns:
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(void)
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"""
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command = f"control set-status --status {status}"
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run_control_command(node_name, command)
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@keyword('Get netmap snapshot')
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def get_netmap_snapshot(node_name: Optional[str] = None) -> str:
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"""
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The function returns string representation of netmap-snapshot.
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Args:
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node_name str: node name to use for netmap snapshot operation
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Returns:
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string representation of netmap-snapshot
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"""
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node_name = node_name or list(NEOFS_NETMAP_DICT)[0]
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command = "control netmap-snapshot"
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return run_control_command(node_name, command)
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@keyword('Shard list for node')
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def node_shard_list(node_name: str) -> list[str]:
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"""
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The function returns list of shards for particular node.
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Args:
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node_name str: node name to use for netmap snapshot operation
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Returns:
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list of shards.
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"""
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command = "control shards list"
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output = run_control_command(node_name, command)
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return re.findall(r'Shard (.*):', output)
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@keyword('Shard list for node')
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def node_shard_set_mode(node_name: str, shard: str, mode: str) -> str:
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"""
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The function sets mode for node's particular shard.
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Args:
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node_name str: node name to use for netmap snapshot operation
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Returns:
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health status as HealthStatus object.
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"""
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command = f"control shards set-mode --id {shard} --mode {mode}"
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return run_control_command(node_name, command)
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@keyword('Drop object from node {node_name}')
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def drop_object(node_name: str, cid: str, oid: str) -> str:
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"""
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The function drops object from particular node.
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Args:
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node_name str: node name to use for netmap snapshot operation
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Returns:
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health status as HealthStatus object.
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"""
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command = f"control drop-objects -o {cid}/{oid}"
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return run_control_command(node_name, command)
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def run_control_command(node_name: str, command: str) -> str:
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control_endpoint = NEOFS_NETMAP_DICT[node_name]["control"]
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wallet_path = NEOFS_NETMAP_DICT[node_name]["wallet_path"]
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if not STORAGE_CONTROL_ENDPOINT_PRIVATE:
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cmd = (
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f'{NEOFS_CLI_EXEC} {command} --endpoint {control_endpoint} '
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f'--wallet {wallet_path} --config {WALLET_CONFIG}'
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)
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output = _cmd_run(cmd)
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return output
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# Private control endpoint is accessible only from the host where storage node is running
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# So, we connect to storage node host and run CLI command from there
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with create_ssh_client(node_name) as ssh_client:
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# Copy wallet content on storage node host
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with open(wallet_path, "r") as file:
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wallet = file.read()
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remote_wallet_path = "/tmp/{node_name}-wallet.json"
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ssh_client.exec_with_confirmation(f"echo '{wallet}' > {remote_wallet_path}", [""])
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# Put config on storage node host
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remote_config_path = "/tmp/{node_name}-config.yaml"
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remote_config = 'password: ""'
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ssh_client.exec_with_confirmation(f"echo '{remote_config}' > {remote_config_path}", [""])
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# Execute command
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cmd = (
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f'{STORAGE_NODE_BIN_PATH}/neofs-cli {command} --endpoint {control_endpoint} '
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f'--wallet {remote_wallet_path} --config {remote_config_path}'
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)
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output = ssh_client.exec_with_confirmation(cmd, [""])
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return output.stdout
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