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goworker.go
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goworker.go
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package goworker
import (
"os"
"strconv"
"sync"
"time"
"golang.org/x/net/context"
"github.com/cihub/seelog"
"vitess.io/vitess/go/pools"
)
var (
logger seelog.LoggerInterface
pool *pools.ResourcePool
ctx context.Context
initMutex sync.Mutex
initialized bool
)
var workerSettings WorkerSettings
type WorkerSettings struct {
QueuesString string
Queues queuesFlag
IntervalFloat float64
Interval intervalFlag
Concurrency int
Connections int
URI string
Namespace string
ExitOnComplete bool
IsStrict bool
UseNumber bool
SkipTLSVerify bool
TLSCertPath string
}
func SetSettings(settings WorkerSettings) {
workerSettings = settings
}
// Init initializes the goworker process. This will be
// called by the Work function, but may be used by programs
// that wish to access goworker functions and configuration
// without actually processing jobs.
func Init() error {
initMutex.Lock()
defer initMutex.Unlock()
if !initialized {
var err error
logger, err = seelog.LoggerFromWriterWithMinLevel(os.Stdout, seelog.InfoLvl)
if err != nil {
return err
}
if err := flags(); err != nil {
return err
}
ctx = context.Background()
pool = newRedisPool(workerSettings.URI, workerSettings.Connections, workerSettings.Connections, time.Minute)
initialized = true
}
return nil
}
// GetConn returns a connection from the goworker Redis
// connection pool. When using the pool, check in
// connections as quickly as possible, because holding a
// connection will cause concurrent worker functions to lock
// while they wait for an available connection. Expect this
// API to change drastically.
func GetConn() (*RedisConn, error) {
resource, err := pool.Get(ctx)
if err != nil {
return nil, err
}
return resource.(*RedisConn), nil
}
// PutConn puts a connection back into the connection pool.
// Run this as soon as you finish using a connection that
// you got from GetConn. Expect this API to change
// drastically.
func PutConn(conn *RedisConn) {
pool.Put(conn)
}
// Close cleans up resources initialized by goworker. This
// will be called by Work when cleaning up. However, if you
// are using the Init function to access goworker functions
// and configuration without processing jobs by calling
// Work, you should run this function when cleaning up. For
// example,
//
// if err := goworker.Init(); err != nil {
// fmt.Println("Error:", err)
// }
// defer goworker.Close()
func Close() {
initMutex.Lock()
defer initMutex.Unlock()
if initialized {
pool.Close()
initialized = false
}
}
// Work starts the goworker process. Check for errors in
// the return value. Work will take over the Go executable
// and will run until a QUIT, INT, or TERM signal is
// received, or until the queues are empty if the
// -exit-on-complete flag is set.
func Work() error {
err := Init()
if err != nil {
return err
}
defer Close()
quit := signals()
poller, err := newPoller(workerSettings.Queues, workerSettings.IsStrict)
if err != nil {
return err
}
jobs, err := poller.poll(time.Duration(workerSettings.Interval), quit)
if err != nil {
return err
}
var monitor sync.WaitGroup
for id := 0; id < workerSettings.Concurrency; id++ {
worker, err := newWorker(strconv.Itoa(id), workerSettings.Queues)
if err != nil {
return err
}
worker.work(jobs, &monitor)
}
monitor.Wait()
return nil
}