162 lines
5.6 KiB
Python
162 lines
5.6 KiB
Python
#!/usr/bin/env python3
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import os, socket, time, uuid, threading, libvirt, kazoo.client
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class NodeInstance(threading.Thread):
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def __init__(self, name, node_list, s_domain, zk):
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super(NodeInstance, self).__init__()
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# Passed-in variables on creation
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self.zkey = '/nodes/%s' % name
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self.zk = zk
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self.name = name
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self.state = 'stop'
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self.stop_thread = threading.Event()
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self.node_list = node_list
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self.s_domain = s_domain
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self.domain_list = []
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# Zookeeper handlers for changed states
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@zk.DataWatch(self.zkey + '/state')
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def watch_hypervisor_state(data, stat, event=""):
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self.state = data.decode('ascii')
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@zk.DataWatch(self.zkey + '/memfree')
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def watch_hypervisor_memfree(data, stat, event=""):
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self.memfree = data.decode('ascii')
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@zk.DataWatch(self.zkey + '/runningdomains')
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def watch_hypervisor_runningdomains(data, stat, event=""):
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self.domain_list = data.decode('ascii').split()
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# Get value functions
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def getfreemem(self):
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return self.memfree
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def getcpuload(self):
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return self.cpuload
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def getname(self):
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return self.name
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def getstate(self):
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return self.state
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def getdomainlist(self):
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return self.domain_list
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# Update value functions
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def updatenodelist(self, node_list):
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self.node_list = node_list
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def updatedomainlist(self, s_domain):
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self.s_domain = s_domain
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# Shutdown the thread
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def stop(self):
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self.stop_thread.set()
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# Flush all VMs on the host
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def flush(self):
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for domain in self.domain_list:
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# Determine the best target hypervisor
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least_mem = (2^64)/8
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least_load = 999.0
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least_host = ""
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for node in node_list:
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node_freemem = node.getfreemem()
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if node_freemem < least_mem:
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least_mem = node_freemem
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least_host = node.getname()
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transaction = self.zk.transaction()
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transaction.set_data('/domains/' + domain + '/state', 'migrate'.encode('ascii'))
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transaction.set_data('/domains/' + domain + '/hypervisor', least_host.encode('ascii'))
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transaction.commit()
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def run(self):
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if self.name == socket.gethostname():
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self.setup_local_node()
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else:
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self.setup_remote_node()
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def setup_local_node(self):
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# Connect to libvirt
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libvirt_name = "qemu:///system"
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conn = libvirt.open(libvirt_name)
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if conn == None:
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print('>>> Failed to open connection to %s' % libvirt_name)
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exit(1)
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# Gather data about hypervisor
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self.name = conn.getHostname()
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self.cpucount = conn.getCPUMap()[0]
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self.state = 'start'
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self.zk.set(self.zkey + '/state', 'start'.encode('ascii'))
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self.zk.set(self.zkey + '/cpucount', str(self.cpucount).encode('ascii'))
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print("Node hostname: %s" % self.name)
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print("CPUs: %s" % self.cpucount)
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while True:
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# Toggle state management of all VMs
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for domain, instance in self.s_domain.items():
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if instance.inshutdown == False and domain in self.domain_list:
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instance.manage_vm_state()
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# Remove any non-running VMs from our list
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for domain in self.domain_list:
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try:
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buuid = uuid.UUID(domain).bytes
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dom = conn.lookupByUUID(buuid)
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state = dom.state()[0]
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if state != libvirt.VIR_DOMAIN_RUNNING:
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self.domain_list.remove(domain)
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except:
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self.domain_list.remove(domain)
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# Set our information in zookeeper
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self.memfree = conn.getFreeMemory()
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self.cpuload = os.getloadavg()[0]
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try:
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self.zk.set(self.zkey + '/memfree', str(self.memfree).encode('ascii'))
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self.zk.set(self.zkey + '/cpuload', str(self.cpuload).encode('ascii'))
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self.zk.set(self.zkey + '/runningdomains', ' '.join(self.domain_list).encode('ascii'))
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except:
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if self.stop_thread.is_set():
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return
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print(">>> %s - Free memory: %s | Load: %s" % ( time.strftime("%d/%m/%Y %H:%M:%S"), self.memfree, self.cpuload ))
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print("Active domains: %s" % self.domain_list)
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active_node_list = []
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flushed_node_list = []
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inactive_node_list = []
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for node in self.node_list:
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#node_state = t_node[node].getstate()
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state, stat = self.zk.get('/nodes/%s/state' % node)
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node_state = state.decode('ascii')
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if node_state == 'start':
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active_node_list.append(node)
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elif node_state == 'flush':
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flushed_node_list.append(node)
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else:
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inactive_node_list.append(node)
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print('Active nodes: %s' % active_node_list)
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print('Flushed nodes: %s' % flushed_node_list)
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print('Inactive nodes: %s' % inactive_node_list)
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# Sleep for 10s but with quick interruptability
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for x in range(0,100):
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time.sleep(0.1)
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if self.stop_thread.is_set():
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return
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def setup_remote_node(self):
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while True:
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for x in range(0,100):
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time.sleep(0.1)
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if self.stop_thread.is_set():
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return
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