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registry.go
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registry.go
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package taskq
import (
"fmt"
"sync"
"time"
)
var Tasks TaskMap
type TaskMap struct {
m sync.Map
}
func (r *TaskMap) Get(name string) *Task {
if v, ok := r.m.Load(name); ok {
return v.(*Task)
}
if v, ok := r.m.Load("*"); ok {
return v.(*Task)
}
return nil
}
func (r *TaskMap) Register(opt *TaskOptions) (*Task, error) {
opt.init()
task := &Task{
opt: opt,
handler: NewHandler(opt.Handler),
}
if opt.FallbackHandler != nil {
task.fallbackHandler = NewHandler(opt.FallbackHandler)
}
name := task.Name()
_, loaded := r.m.LoadOrStore(name, task)
if loaded {
return nil, fmt.Errorf("task=%q already exists", name)
}
return task, nil
}
func (r *TaskMap) Unregister(task *Task) {
r.m.Delete(task.Name())
}
func (r *TaskMap) Reset() {
r.m = sync.Map{}
}
func (r *TaskMap) Range(fn func(name string, task *Task) bool) {
r.m.Range(func(key, value interface{}) bool {
return fn(key.(string), value.(*Task))
})
}
func (r *TaskMap) HandleMessage(msg *Message) error {
task := r.Get(msg.TaskName)
if task == nil {
msg.Delay = r.delay(msg, nil, unknownTaskOpt)
return fmt.Errorf("taskq: unknown task=%q", msg.TaskName)
}
opt := task.Options()
if opt.DeferFunc != nil {
defer opt.DeferFunc()
}
msgErr := task.HandleMessage(msg)
if msgErr == nil {
return nil
}
msg.Delay = r.delay(msg, msgErr, opt)
return msgErr
}
func (r *TaskMap) delay(msg *Message, msgErr error, opt *TaskOptions) time.Duration {
if msg.ReservedCount >= opt.RetryLimit {
return 0
}
if delayer, ok := msgErr.(Delayer); ok {
return delayer.Delay()
}
return exponentialBackoff(opt.MinBackoff, opt.MaxBackoff, msg.ReservedCount)
}