mirror of
https://github.com/caddyserver/caddy.git
synced 2024-11-25 09:40:13 +08:00
524 lines
14 KiB
Go
524 lines
14 KiB
Go
// Copyright 2015 Matthew Holt and The Caddy Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package caddycmd
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import (
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"bytes"
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"crypto/rand"
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"encoding/json"
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"fmt"
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"io"
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"io/ioutil"
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"log"
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"net"
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"net/http"
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"os"
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"os/exec"
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"reflect"
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"runtime/debug"
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"sort"
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"strings"
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"github.com/caddyserver/caddy/v2"
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"github.com/caddyserver/caddy/v2/caddyconfig"
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"github.com/keybase/go-ps"
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"github.com/mholt/certmagic"
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)
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func cmdStart(fl Flags) (int, error) {
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startCmdConfigFlag := fl.String("config")
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startCmdConfigAdapterFlag := fl.String("adapter")
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// open a listener to which the child process will connect when
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// it is ready to confirm that it has successfully started
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ln, err := net.Listen("tcp", "127.0.0.1:0")
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("opening listener for success confirmation: %v", err)
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}
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defer ln.Close()
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// craft the command with a pingback address and with a
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// pipe for its stdin, so we can tell it our confirmation
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// code that we expect so that some random port scan at
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// the most unfortunate time won't fool us into thinking
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// the child succeeded (i.e. the alternative is to just
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// wait for any connection on our listener, but better to
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// ensure it's the process we're expecting - we can be
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// sure by giving it some random bytes and having it echo
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// them back to us)
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cmd := exec.Command(os.Args[0], "run", "--pingback", ln.Addr().String())
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if startCmdConfigFlag != "" {
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cmd.Args = append(cmd.Args, "--config", startCmdConfigFlag)
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}
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if startCmdConfigAdapterFlag != "" {
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cmd.Args = append(cmd.Args, "--adapter", startCmdConfigAdapterFlag)
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}
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stdinpipe, err := cmd.StdinPipe()
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("creating stdin pipe: %v", err)
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}
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cmd.Stdout = os.Stdout
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cmd.Stderr = os.Stderr
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// generate the random bytes we'll send to the child process
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expect := make([]byte, 32)
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_, err = rand.Read(expect)
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("generating random confirmation bytes: %v", err)
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}
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// begin writing the confirmation bytes to the child's
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// stdin; use a goroutine since the child hasn't been
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// started yet, and writing sychronously would result
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// in a deadlock
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go func() {
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stdinpipe.Write(expect)
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stdinpipe.Close()
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}()
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// start the process
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err = cmd.Start()
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("starting caddy process: %v", err)
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}
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// there are two ways we know we're done: either
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// the process will connect to our listener, or
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// it will exit with an error
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success, exit := make(chan struct{}), make(chan error)
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// in one goroutine, we await the success of the child process
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go func() {
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for {
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conn, err := ln.Accept()
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if err != nil {
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if !strings.Contains(err.Error(), "use of closed network connection") {
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log.Println(err)
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}
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break
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}
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err = handlePingbackConn(conn, expect)
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if err == nil {
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close(success)
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break
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}
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log.Println(err)
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}
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}()
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// in another goroutine, we await the failure of the child process
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go func() {
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err := cmd.Wait() // don't send on this line! Wait blocks, but send starts before it unblocks
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exit <- err // sending on separate line ensures select won't trigger until after Wait unblocks
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}()
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// when one of the goroutines unblocks, we're done and can exit
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select {
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case <-success:
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fmt.Printf("Successfully started Caddy (pid=%d)\n", cmd.Process.Pid)
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case err := <-exit:
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("caddy process exited with error: %v", err)
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}
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return caddy.ExitCodeSuccess, nil
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}
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func cmdRun(fl Flags) (int, error) {
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runCmdConfigFlag := fl.String("config")
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runCmdConfigAdapterFlag := fl.String("adapter")
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runCmdPrintEnvFlag := fl.Bool("environ")
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runCmdPingbackFlag := fl.String("pingback")
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// if we are supposed to print the environment, do that first
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if runCmdPrintEnvFlag {
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printEnvironment()
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}
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// get the config in caddy's native format
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config, err := loadConfig(runCmdConfigFlag, runCmdConfigAdapterFlag)
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if err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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// set a fitting User-Agent for ACME requests
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goModule := caddy.GoModule()
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cleanModVersion := strings.TrimPrefix(goModule.Version, "v")
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certmagic.UserAgent = "Caddy/" + cleanModVersion
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// start the admin endpoint along with any initial config
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err = caddy.StartAdmin(config)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("starting caddy administration endpoint: %v", err)
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}
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defer caddy.StopAdmin()
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// if we are to report to another process the successful start
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// of the server, do so now by echoing back contents of stdin
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if runCmdPingbackFlag != "" {
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confirmationBytes, err := ioutil.ReadAll(os.Stdin)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("reading confirmation bytes from stdin: %v", err)
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}
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conn, err := net.Dial("tcp", runCmdPingbackFlag)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("dialing confirmation address: %v", err)
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}
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defer conn.Close()
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_, err = conn.Write(confirmationBytes)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("writing confirmation bytes to %s: %v", runCmdPingbackFlag, err)
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}
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}
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select {}
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}
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func cmdStop(_ Flags) (int, error) {
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processList, err := ps.Processes()
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("listing processes: %v", err)
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}
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thisProcName := getProcessName()
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var found bool
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for _, p := range processList {
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// the process we're looking for should have the same name but different PID
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if p.Executable() == thisProcName && p.Pid() != os.Getpid() {
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found = true
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fmt.Printf("pid=%d\n", p.Pid())
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if err := gracefullyStopProcess(p.Pid()); err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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}
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}
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if !found {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("Caddy is not running")
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}
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fmt.Println(" success")
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return caddy.ExitCodeSuccess, nil
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}
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func cmdReload(fl Flags) (int, error) {
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reloadCmdConfigFlag := fl.String("config")
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reloadCmdConfigAdapterFlag := fl.String("adapter")
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reloadCmdAddrFlag := fl.String("address")
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// a configuration is required
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if reloadCmdConfigFlag == "" {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("no configuration to load (use --config)")
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}
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// get the config in caddy's native format
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config, err := loadConfig(reloadCmdConfigFlag, reloadCmdConfigAdapterFlag)
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if err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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// get the address of the admin listener and craft endpoint URL
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adminAddr := reloadCmdAddrFlag
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if adminAddr == "" {
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var tmpStruct struct {
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Admin caddy.AdminConfig `json:"admin"`
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}
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err = json.Unmarshal(config, &tmpStruct)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("unmarshaling admin listener address from config: %v", err)
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}
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adminAddr = tmpStruct.Admin.Listen
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}
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if adminAddr == "" {
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adminAddr = caddy.DefaultAdminListen
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}
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adminEndpoint := fmt.Sprintf("http://%s/load", adminAddr)
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// send the configuration to the instance
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resp, err := http.Post(adminEndpoint, "application/json", bytes.NewReader(config))
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("sending configuration to instance: %v", err)
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}
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defer resp.Body.Close()
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// if it didn't work, let the user know
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if resp.StatusCode >= 400 {
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respBody, err := ioutil.ReadAll(io.LimitReader(resp.Body, 1024*10))
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("HTTP %d: reading error message: %v", resp.StatusCode, err)
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}
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("caddy responded with error: HTTP %d: %s", resp.StatusCode, respBody)
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}
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return caddy.ExitCodeSuccess, nil
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}
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func cmdVersion(_ Flags) (int, error) {
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goModule := caddy.GoModule()
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if goModule.Sum != "" {
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// a build with a known version will also have a checksum
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fmt.Printf("%s %s\n", goModule.Version, goModule.Sum)
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} else {
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fmt.Println(goModule.Version)
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}
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return caddy.ExitCodeSuccess, nil
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}
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func cmdListModules(fl Flags) (int, error) {
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versions := fl.Bool("versions")
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bi, ok := debug.ReadBuildInfo()
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if !ok || !versions {
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// if there's no build information,
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// just print out the modules
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for _, m := range caddy.Modules() {
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fmt.Println(m)
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}
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return caddy.ExitCodeSuccess, nil
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}
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for _, modName := range caddy.Modules() {
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modInfo, err := caddy.GetModule(modName)
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if err != nil {
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// that's weird
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fmt.Println(modName)
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continue
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}
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// to get the Caddy plugin's version info, we need to know
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// the package that the Caddy module's value comes from; we
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// can use reflection but we need a non-pointer value (I'm
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// not sure why), and since New() should return a pointer
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// value, we need to dereference it first
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iface := interface{}(modInfo.New())
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if rv := reflect.ValueOf(iface); rv.Kind() == reflect.Ptr {
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iface = reflect.New(reflect.TypeOf(iface).Elem()).Elem().Interface()
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}
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modPkgPath := reflect.TypeOf(iface).PkgPath()
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// now we find the Go module that the Caddy module's package
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// belongs to; we assume the Caddy module package path will
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// be prefixed by its Go module path, and we will choose the
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// longest matching prefix in case there are nested modules
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var matched *debug.Module
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for _, dep := range bi.Deps {
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if strings.HasPrefix(modPkgPath, dep.Path) {
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if matched == nil || len(dep.Path) > len(matched.Path) {
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matched = dep
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}
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}
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}
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// if we could find no matching module, just print out
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// the module name instead
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if matched == nil {
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fmt.Println(modName)
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continue
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}
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fmt.Printf("%s %s\n", modName, matched.Version)
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}
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return caddy.ExitCodeSuccess, nil
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}
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func cmdEnviron(_ Flags) (int, error) {
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printEnvironment()
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return caddy.ExitCodeSuccess, nil
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}
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func cmdAdaptConfig(fl Flags) (int, error) {
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adaptCmdInputFlag := fl.String("config")
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adaptCmdAdapterFlag := fl.String("adapter")
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adaptCmdPrettyFlag := fl.Bool("pretty")
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adaptCmdValidateFlag := fl.Bool("validate")
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if adaptCmdAdapterFlag == "" || adaptCmdInputFlag == "" {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("--adapter and --config flags are required")
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}
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cfgAdapter := caddyconfig.GetAdapter(adaptCmdAdapterFlag)
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if cfgAdapter == nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("unrecognized config adapter: %s", adaptCmdAdapterFlag)
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}
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input, err := ioutil.ReadFile(adaptCmdInputFlag)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("reading input file: %v", err)
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}
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opts := make(map[string]interface{})
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if adaptCmdPrettyFlag {
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opts["pretty"] = "true"
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}
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adaptedConfig, warnings, err := cfgAdapter.Adapt(input, opts)
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if err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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// print warnings to stderr
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for _, warn := range warnings {
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msg := warn.Message
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if warn.Directive != "" {
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msg = fmt.Sprintf("%s: %s", warn.Directive, warn.Message)
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}
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log.Printf("[WARNING][%s] %s:%d: %s", adaptCmdAdapterFlag, warn.File, warn.Line, msg)
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}
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// print result to stdout
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fmt.Println(string(adaptedConfig))
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// validate output if requested
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if adaptCmdValidateFlag {
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var cfg *caddy.Config
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err = json.Unmarshal(adaptedConfig, &cfg)
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("decoding config: %v", err)
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}
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err = caddy.Validate(cfg)
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("validation: %v", err)
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}
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}
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return caddy.ExitCodeSuccess, nil
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}
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func cmdValidateConfig(fl Flags) (int, error) {
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validateCmdConfigFlag := fl.String("config")
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validateCmdAdapterFlag := fl.String("adapter")
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input, err := ioutil.ReadFile(validateCmdConfigFlag)
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if err != nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("reading input file: %v", err)
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}
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if validateCmdAdapterFlag != "" {
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cfgAdapter := caddyconfig.GetAdapter(validateCmdAdapterFlag)
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if cfgAdapter == nil {
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return caddy.ExitCodeFailedStartup,
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fmt.Errorf("unrecognized config adapter: %s", validateCmdAdapterFlag)
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}
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adaptedConfig, warnings, err := cfgAdapter.Adapt(input, nil)
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if err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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// print warnings to stderr
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for _, warn := range warnings {
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msg := warn.Message
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if warn.Directive != "" {
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msg = fmt.Sprintf("%s: %s", warn.Directive, warn.Message)
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}
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log.Printf("[WARNING][%s] %s:%d: %s", validateCmdAdapterFlag, warn.File, warn.Line, msg)
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}
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input = adaptedConfig
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}
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var cfg *caddy.Config
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err = json.Unmarshal(input, &cfg)
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if err != nil {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("decoding config: %v", err)
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}
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err = caddy.Validate(cfg)
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if err != nil {
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return caddy.ExitCodeFailedStartup, err
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}
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fmt.Println("Valid configuration")
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return caddy.ExitCodeSuccess, nil
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}
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func cmdHelp(fl Flags) (int, error) {
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const fullDocs = `Full documentation is available at:
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https://github.com/caddyserver/caddy/wiki/v2:-Documentation`
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args := fl.Args()
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if len(args) == 0 {
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s := `Caddy is an extensible server platform.
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usage:
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caddy <command> [<args...>]
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commands:
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`
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keys := make([]string, 0, len(commands))
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for k := range commands {
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keys = append(keys, k)
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}
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sort.Strings(keys)
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for _, k := range keys {
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cmd := commands[k]
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short := strings.TrimSuffix(cmd.Short, ".")
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s += fmt.Sprintf(" %-15s %s\n", cmd.Name, short)
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}
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s += "\nUse 'caddy help <command>' for more information about a command.\n"
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s += "\n" + fullDocs + "\n"
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fmt.Print(s)
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return caddy.ExitCodeSuccess, nil
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} else if len(args) > 1 {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("can only give help with one command")
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}
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subcommand, ok := commands[args[0]]
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if !ok {
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return caddy.ExitCodeFailedStartup, fmt.Errorf("unknown command: %s", args[0])
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}
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helpText := strings.TrimSpace(subcommand.Long)
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if helpText == "" {
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helpText = subcommand.Short
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if !strings.HasSuffix(helpText, ".") {
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helpText += "."
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}
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}
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result := fmt.Sprintf("%s\n\nusage:\n caddy %s %s\n",
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helpText,
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subcommand.Name,
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strings.TrimSpace(subcommand.Usage),
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)
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if help := flagHelp(subcommand.Flags); help != "" {
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result += fmt.Sprintf("\nflags:\n%s", help)
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}
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result += "\n" + fullDocs + "\n"
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fmt.Print(result)
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return caddy.ExitCodeSuccess, nil
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}
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