mirror of
https://github.com/caddyserver/caddy.git
synced 2024-12-16 21:56:40 -05:00
135 lines
3.8 KiB
Go
135 lines
3.8 KiB
Go
package caddy2
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import (
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"fmt"
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"net"
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"sync"
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"sync/atomic"
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"time"
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)
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// Listen returns a listener suitable for use in a Caddy module.
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func Listen(network, addr string) (net.Listener, error) {
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lnKey := network + "/" + addr
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listenersMu.Lock()
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defer listenersMu.Unlock()
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// if listener already exists, increment usage counter, then return listener
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if lnInfo, ok := listeners[lnKey]; ok {
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atomic.AddInt32(&lnInfo.usage, 1)
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return &fakeCloseListener{usage: &lnInfo.usage, Listener: lnInfo.ln}, nil
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}
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// or, create new one and save it
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ln, err := net.Listen(network, addr)
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if err != nil {
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return nil, err
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}
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// make sure to start its usage counter at 1
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lnInfo := &listenerUsage{usage: 1, ln: ln}
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listeners[lnKey] = lnInfo
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return &fakeCloseListener{usage: &lnInfo.usage, Listener: ln}, nil
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}
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// fakeCloseListener's Close() method is a no-op. This allows
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// stopping servers that are using the listener without giving
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// up the socket; thus, servers become hot-swappable while the
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// listener remains running. Listeners should be re-wrapped in
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// a new fakeCloseListener each time the listener is reused.
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type fakeCloseListener struct {
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closed int32 // accessed atomically
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usage *int32 // accessed atomically
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net.Listener
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}
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// Accept accepts connections until Close() is called.
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func (fcl *fakeCloseListener) Accept() (net.Conn, error) {
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// if the listener is already "closed", return error
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if atomic.LoadInt32(&fcl.closed) == 1 {
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return nil, fcl.fakeClosedErr()
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}
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// wrap underlying accept
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conn, err := fcl.Listener.Accept()
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if err == nil {
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return conn, nil
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}
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if atomic.LoadInt32(&fcl.closed) == 1 {
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// clear the deadline
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switch ln := fcl.Listener.(type) {
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case *net.TCPListener:
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ln.SetDeadline(time.Time{})
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case *net.UnixListener:
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ln.SetDeadline(time.Time{})
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}
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// if we cancelled the Accept() by setting a deadline
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// on the listener, we need to make sure any callers of
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// Accept() think the listener was actually closed;
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// if we return the timeout error instead, callers might
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// simply retry, leaking goroutines for longer
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if netErr, ok := err.(net.Error); ok && netErr.Timeout() {
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return nil, fcl.fakeClosedErr()
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}
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}
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return nil, err
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}
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// Close stops accepting new connections, but does not
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// actually close the underlying listener.
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func (fcl *fakeCloseListener) Close() error {
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if atomic.CompareAndSwapInt32(&fcl.closed, 0, 1) {
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// unfortunately, there is no way to cancel any
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// currently-blocking calls to Accept() that are
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// awaiting connections since we're not actually
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// closing the listener; so we cheat by setting
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// a deadline in the past, which forces it to
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// time out; note that this only works for
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// certain types of listeners...
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switch ln := fcl.Listener.(type) {
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case *net.TCPListener:
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ln.SetDeadline(time.Now().Add(-1 * time.Minute))
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case *net.UnixListener:
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ln.SetDeadline(time.Now().Add(-1 * time.Minute))
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}
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// since we're no longer using this listener,
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// decrement the usage counter
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atomic.AddInt32(fcl.usage, -1)
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}
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return nil
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}
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func (fcl *fakeCloseListener) fakeClosedErr() error {
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return &net.OpError{
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Op: "accept",
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Net: fcl.Listener.Addr().Network(),
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Addr: fcl.Listener.Addr(),
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Err: ErrFakeClosed,
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}
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}
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// ErrFakeClosed is the underlying error value returned by
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// fakeCloseListener.Accept() after Close() has been called,
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// indicating that it is pretending to be closed so that the
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// server using it can terminate, while the underlying
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// socket is actually left open.
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var ErrFakeClosed = fmt.Errorf("listener 'closed' 😉")
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// listenerUsage pairs a net.Listener with a
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// count of how many servers are using it.
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type listenerUsage struct {
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usage int32 // accessed atomically
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ln net.Listener
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}
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var (
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listeners = make(map[string]*listenerUsage)
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listenersMu sync.Mutex
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)
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