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#!/bin/sh
# Alternative to build2 that can stop after any step. For example:
#   $ ./build3 mu.cc

set -e  # stop immediately on error

# Some environment variables that can be passed in. For example, to turn off
# optimization:
#   $ CFLAGS=-g ./build3
test "$CXX" || export CXX=c++
test "$CC" || export CC=cc
test "$CFLAGS" || export CFLAGS="-g -O2"
export CFLAGS="$CFLAGS -Wall -Wextra -ftrapv -fno-strict-aliasing"

# Outline:
# [0-9]*.cc -> mu.cc -> .build/*.cc -> .build/*.o -> .build/mu_bin
# (layers)   |        |              |             |
#          tangle  cleave          $CXX          $CXX

## arg parsing

# can be called with a target to stop after a partial build
#   $ ./build3 mu.cc
# can also be called with a layer to only build until
#   $ ./build3 --until 050
# scenarios:
#   ./build3              => TARGET=  UNTIL_LAYER=zzz
#   ./build3 x            => TARGET=x UNTIL_LAYER=zzz
#   ./build3 --until      => TARGET=  UNTIL_LAYER=zzz
#   ./build3 --until 050  => TARGET=  UNTIL_LAYER=050
TARGET=
UNTIL_LAYER=zzz
if [ $# -ge 1 ] && [ $1 != "--until" ]
then
  TARGET=$1
fi
if [ $# -ge 2 ] && [ $1 = "--until" ]
then
  UNTIL_LAYER=$2
fi

##

# there's two mechanisms for fast builds here:
# - if a command is quick to run, always run it but update the result only on any change
# - otherwise run it only if the output is 'older_than' the inputs
#
# avoid combining both mechanisms for a single file
# otherwise you'll see spurious messages about files being updated
# risk: a file may unnecessarily update without changes, causing unnecessary work downstream

# return 1 if $1 is older than _any_ of the remaining args
# also exit the entire script if previous invocation was to update $TARGET
older_than() {
  test $TARGET  &&  test "$last_target" = "$TARGET"  &&  exit 0
  local target=$1
  shift
  last_target=$target
  if [ ! -e $target ]
  then
#?     echo "$target doesn't exist"
    echo "updating $target" >&2
    return 0  # success
  fi
  local f
  for f in $*
  do
    if [ $f -nt $target ]
    then
      echo "updating $target" >&2
      return 0  # success
    fi
  done
  return 1  # failure
}

# redirect to $1, unless it's already identical
# no point checking for an early exit, because this usually runs in a pipeline/subshell
update() {
  if [ ! -e $1 ]
  then
    cat > $1
  else
    cat > $1.tmp
    diff -q $1 $1.tmp >/dev/null  &&  rm $1.tmp  ||  mv $1.tmp $1
  fi
}

# cp file $1 to directory $2, unless it's already identical
# also exit the entire script if previous invocation was to update $TARGET
update_cp() {
  test $TARGET  &&  test "$last_target" = "$TARGET"  &&  exit 0
  last_target=$2/$1
  if [ ! -e $2/$1 ]
  then
    cp $1 $2
  elif [ $1 -nt $2/$1 ]
  then
    cp $1 $2
  fi
}

noisy_cd() {
  cd $1
  echo "-- `pwd`" >&2
}

older_than enumerate/enumerate enumerate/enumerate.cc && {
  $CXX $CFLAGS enumerate/enumerate.cc -o enumerate/enumerate
}

older_than tangle/tangle tangle/*.cc && {
  noisy_cd tangle
    # auto-generate various lists (ending in '_list' by convention) {
    # list of types
    {
      grep -h "^struct .* {" [0-9]*.cc  |sed 's/\(struct *[^ ]*\).*/\1;/'
      grep -h "^typedef " [0-9]*.cc
    }  |update type_list
    # list of function declarations, so I can define them in any order
    grep -h "^[^ #].*) {" [0-9]*.cc  |sed 's/ {.*/;/'  |update function_list
    # list of code files to compile
    ls [0-9]*.cc  |grep -v "\.test\.cc$"  |sed 's/.*/#include "&"/'  |update file_list
    # list of test files to compile
    ls [0-9]*.test.cc  |sed 's/.*/#include "&"/'  |update test_file_list
    # list of tests to run
    grep -h "^[[:space:]]*void test_" [0-9]*.cc  |sed 's/^\s*void \(.*\)() {$/\1,/'  |update test_list
    # }
    # Now that we have all the _lists, compile 'tangle'
    $CXX $CFLAGS boot.cc -o tangle
  noisy_cd ..  # no effect; just to show us returning to the parent directory
}

LAYERS=$(./enumerate/enumerate --until $UNTIL_LAYER  |grep '\.cc$')
older_than mu.cc $LAYERS enumerate/enumerate tangle/tangle && {
  # no update here; rely on 'update' calls downstream
  ./tangle/tangle $LAYERS  > mu.cc
}

older_than cleave/cleave cleave/cleave.cc && {
  $CXX $CFLAGS cleave/cleave.cc -o cleave/cleave
  rm -rf .build
}

mkdir -p .build
# auto-generate function declarations, so I can define them in any order
# functions start out unindented, have all args on the same line, and end in ') {'
#
#                                      \/ ignore methods
grep -h "^[^[:space:]#].*) {$" mu.cc  |grep -v ":.*("  |sed 's/ {.*/;/'  |update .build/function_list
# auto-generate list of tests to run
grep -h "^\s*void test_" mu.cc  |sed 's/^\s*void \(.*\)() {.*/\1,/'  |update .build/test_list
grep -h "^\s*void test_" mu.cc  |sed 's/^\s*void \(.*\)() {.*/"\1",/'  |update .build/test_name_list
mkdir -p .build/termbox
update_cp termbox/termbox.h .build/termbox

older_than mu_bin mu.cc *_list cleave/cleave termbox/* && {
  ./cleave/cleave mu.cc .build
  noisy_cd .build
    # create the list of global variable declarations from the corresponding definitions
    grep ';' global_definitions_list  |sed 's/[=(].*/;/'  |sed 's/^[^\/# ]/extern &/'  |sed 's/^extern extern /extern /'  |update global_declarations_list
    for f in mu_*.cc
    do
      older_than `echo $f  |sed 's/\.cc$/.o/'` $f header global_declarations_list function_list test_list && {
        $CXX $CFLAGS -c $f
      }
    done
  noisy_cd ../termbox
    older_than utf8.o utf8.c && {
      $CC $CFLAGS -c utf8.c
    }
    older_than termbox.o termbox.c termbox.h input.inl output.inl bytebuffer.inl && {
      $CC $CFLAGS -c termbox.c
    }
    older_than libtermbox.a *.o && {
      ar rcs libtermbox.a *.o
    }
  noisy_cd ..
  $CXX $CFLAGS .build/*.o termbox/libtermbox.a -o .build/mu_bin
  cp .build/mu_bin .
}

## [0-9]*.mu -> core.mu

MU_LAYERS=$(./enumerate/enumerate --until $UNTIL_LAYER  |grep '\.mu$') || exit 0  # ok if no .mu files
cat $MU_LAYERS  |update core.mu

exit 0

# scenarios considered:
#   0 status when nothing needs updating
#   no output when nothing needs updating
#     no output for mu.cc when .mu files modified
#     touch mu.cc but don't modify it; no output on second build
#     touch a .cc layer but don't modify it; no output on second build
#   only a single layer is recompiled when changing a C++ function
#   stop immediately after failure in tangle
#   stop immediately after target provided at commandline
compose: use a proper header instead of a string map' href='/akspecs/aerc/commit/commands/compose/send.go?id=20ec2c8eeb2e071f28358814935a0f56672a9f49'>20ec2c8 ^
6792370 ^

20ec2c8 ^
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package compose

import (
	"bytes"
	"crypto/tls"
	"fmt"
	"io"
	"net/url"
	"os/exec"
	"strings"
	"time"

	"github.com/emersion/go-sasl"
	"github.com/emersion/go-smtp"
	"github.com/google/shlex"
	"github.com/pkg/errors"

	"git.sr.ht/~sircmpwn/aerc/lib"
	"git.sr.ht/~sircmpwn/aerc/models"
	"git.sr.ht/~sircmpwn/aerc/widgets"
	"git.sr.ht/~sircmpwn/aerc/worker/types"
	"github.com/emersion/go-message/mail"
	"golang.org/x/oauth2"
)

type Send struct{}

func init() {
	register(Send{})
}

func (Send) Aliases() []string {
	return []string{"send"}
}

func (Send) Complete(aerc *widgets.Aerc, args []string) []string {
	return nil
}

func (Send) Execute(aerc *widgets.Aerc, args []string) error {
	if len(args) > 1 {
		return errors.New("Usage: send")
	}
	composer, _ := aerc.SelectedTab().(*widgets.Composer)
	tabName := aerc.TabNames()[aerc.SelectedTabIndex()]
	config := composer.Config()

	if config.Outgoing == "" {
		return errors.New(
			"No outgoing mail transport configured for this account")
	}

	header, err := composer.PrepareHeader()
	if err != nil {
		return errors.Wrap(err, "PrepareHeader")
	}
	rcpts, err := listRecipients(header)
	if err != nil {
		return errors.Wrap(err, "listRecipients")
	}

	if config.From == "" {
		return errors.New("No 'From' configured for this account")
	}
	// TODO: the user could conceivably want to use a different From and sender
	from, err := mail.ParseAddress(config.From)
	if err != nil {
		return errors.Wrap(err, "ParseAddress(config.From)")
	}

	uri, err := url.Parse(config.Outgoing)
	if err != nil {
		return errors.Wrap(err, "url.Parse(outgoing)")
	}

	scheme, auth, err := parseScheme(uri)
	if err != nil {
		return err
	}
	var starttls bool
	if starttls_, ok := config.Params["smtp-starttls"]; ok {
		starttls = starttls_ == "yes"
	}
	ctx := sendCtx{
		uri:      uri,
		scheme:   scheme,
		auth:     auth,
		starttls: starttls,
		from:     from,
		rcpts:    rcpts,
	}

	// we don't want to block the UI thread while we are sending
	// so we do everything in a goroutine and hide the composer from the user
	aerc.RemoveTab(composer)
	aerc.PushStatus("Sending...", 10*time.Second)

	var copyBuf bytes.Buffer // for the Sent folder content if CopyTo is set

	failCh := make(chan error)
	//writer
	go func() {
		var sender io.WriteCloser
		switch ctx.scheme {
		case "smtp":
			fallthrough
		case "smtps":
			sender, err = newSmtpSender(ctx)
		case "":
			sender, err = newSendmailSender(ctx)
		default:
			sender, err = nil, fmt.Errorf("unsupported scheme %v", ctx.scheme)
		}
		if err != nil {
			failCh <- errors.Wrap(err, "send:")
			return
		}

		var writer io.Writer = sender

		if config.CopyTo != "" {
			writer = io.MultiWriter(writer, &copyBuf)
		}
		err = composer.WriteMessage(header, writer)
		if err != nil {
			failCh <- err
			return
		}
		failCh <- sender.Close()
	}()

	//cleanup + copy to sent
	go func() {
		err = <-failCh
		if err != nil {
			aerc.PushError(strings.ReplaceAll(err.Error(), "\n", " "))
			aerc.NewTab(composer, tabName)
			return
		}
		if config.CopyTo != "" {
			aerc.PushStatus("Copying to "+config.CopyTo, 10*time.Second)
			errch := copyToSent(composer.Worker(), config.CopyTo,
				copyBuf.Len(), &copyBuf)
			err = <-errch
			if err != nil {
				errmsg := fmt.Sprintf(
					"message sent, but copying to %v failed: %v",
					config.CopyTo, err.Error())
				aerc.PushError(errmsg)
				composer.SetSent()
				composer.Close()
				return
			}
		}
		aerc.PushStatus("Message sent.", 10*time.Second)
		composer.SetSent()
		composer.Close()
	}()
	return nil
}

func listRecipients(h *mail.Header) ([]*mail.Address, error) {
	var rcpts []*mail.Address
	for _, key := range []string{"to", "cc", "bcc"} {
		list, err := h.AddressList(key)
		if err != nil {
			return nil, err
		}
		rcpts = append(rcpts, list...)
	}
	return rcpts, nil
}

type sendCtx struct {
	uri      *url.URL
	scheme   string
	auth     string
	starttls bool
	from     *mail.Address
	rcpts    []*mail.Address
}

func newSendmailSender(ctx sendCtx) (io.WriteCloser, error) {
	args, err := shlex.Split(ctx.uri.Path)
	if err != nil {
		return nil, err
	}
	if len(args) == 0 {
		return nil, fmt.Errorf("no command specified")
	}
	bin := args[0]
	rs := make([]string, len(ctx.rcpts), len(ctx.rcpts))
	for i := range ctx.rcpts {
		rs[i] = ctx.rcpts[i].Address
	}
	args = append(args[1:], rs...)
	cmd := exec.Command(bin, args...)
	s := &sendmailSender{cmd: cmd}
	s.stdin, err = s.cmd.StdinPipe()
	if err != nil {
		return nil, errors.Wrap(err, "cmd.StdinPipe")
	}
	err = s.cmd.Start()
	if err != nil {
		return nil, errors.Wrap(err, "cmd.Start")
	}
	return s, nil
}

type sendmailSender struct {
	cmd   *exec.Cmd
	stdin io.WriteCloser
}

func (s *sendmailSender) Write(p []byte) (int, error) {
	return s.stdin.Write(p)
}

func (s *sendmailSender) Close() error {
	se := s.stdin.Close()
	ce := s.cmd.Wait()
	if se != nil {
		return se
	}
	return ce
}

func parseScheme(uri *url.URL) (scheme string, auth string, err error) {
	scheme = ""
	auth = "plain"
	if uri.Scheme != "" {
		parts := strings.Split(uri.Scheme, "+")
		if len(parts) == 1 {
			scheme = parts[0]
		} else if len(parts) == 2 {
			scheme = parts[0]
			auth = parts[1]
		} else {
			return "", "", fmt.Errorf("Unknown transfer protocol %s", uri.Scheme)
		}
	}
	return scheme, auth, nil
}

func newSaslClient(auth string, uri *url.URL) (sasl.Client, error) {
	var saslClient sasl.Client
	switch auth {
	case "":
		fallthrough
	case "none":
		saslClient = nil
	case "login":
		password, _ := uri.User.Password()
		saslClient = sasl.NewLoginClient(uri.User.Username(), password)
	case "plain":
		password, _ := uri.User.Password()
		saslClient = sasl.NewPlainClient("", uri.User.Username(), password)
	case "oauthbearer":
		q := uri.Query()
		oauth2 := &oauth2.Config{}
		if q.Get("token_endpoint") != "" {
			oauth2.ClientID = q.Get("client_id")
			oauth2.ClientSecret = q.Get("client_secret")
			oauth2.Scopes = []string{q.Get("scope")}
			oauth2.Endpoint.TokenURL = q.Get("token_endpoint")
		}
		password, _ := uri.User.Password()
		bearer := lib.OAuthBearer{
			OAuth2:  oauth2,
			Enabled: true,
		}
		if bearer.OAuth2.Endpoint.TokenURL == "" {
			return nil, fmt.Errorf("No 'TokenURL' configured for this account")
		}
		token, err := bearer.ExchangeRefreshToken(password)
		if err != nil {
			return nil, err
		}
		password = token.AccessToken
		saslClient = sasl.NewOAuthBearerClient(&sasl.OAuthBearerOptions{
			Username: uri.User.Username(),
			Token:    password,
		})
	default:
		return nil, fmt.Errorf("Unsupported auth mechanism %s", auth)
	}
	return saslClient, nil
}

type smtpSender struct {
	ctx  sendCtx
	conn *smtp.Client
	w    io.WriteCloser
}

func (s *smtpSender) Write(p []byte) (int, error) {
	return s.w.Write(p)
}

func (s *smtpSender) Close() error {
	we := s.w.Close()
	ce := s.conn.Close()
	if we != nil {
		return we
	}
	return ce
}

func newSmtpSender(ctx sendCtx) (io.WriteCloser, error) {
	var (
		err  error
		conn *smtp.Client
	)
	switch ctx.scheme {
	case "smtp":
		conn, err = connectSmtp(ctx.starttls, ctx.uri.Host)
	case "smtps":
		conn, err = connectSmtps(ctx.uri.Host)
	default:
		return nil, fmt.Errorf("not an smtp protocol %s", ctx.scheme)
	}

	saslclient, err := newSaslClient(ctx.auth, ctx.uri)
	if err != nil {
		conn.Close()
		return nil, err
	}
	if saslclient != nil {
		if err := conn.Auth(saslclient); err != nil {
			conn.Close()
			return nil, errors.Wrap(err, "conn.Auth")
		}
	}
	s := &smtpSender{
		ctx:  ctx,
		conn: conn,
	}
	if err := s.conn.Mail(s.ctx.from.Address, nil); err != nil {
		conn.Close()
		return nil, errors.Wrap(err, "conn.Mail")
	}
	for _, rcpt := range s.ctx.rcpts {
		if err := s.conn.Rcpt(rcpt.Address); err != nil {
			conn.Close()
			return nil, errors.Wrap(err, "conn.Rcpt")
		}
	}
	s.w, err = s.conn.Data()
	if err != nil {
		conn.Close()
		return nil, errors.Wrap(err, "conn.Data")
	}
	return s.w, nil
}

func connectSmtp(starttls bool, host string) (*smtp.Client, error) {
	serverName := host
	if !strings.ContainsRune(host, ':') {
		host = host + ":587" // Default to submission port
	} else {
		serverName = host[:strings.IndexRune(host, ':')]
	}
	conn, err := smtp.Dial(host)
	if err != nil {
		return nil, errors.Wrap(err, "smtp.Dial")
	}
	if sup, _ := conn.Extension("STARTTLS"); sup {
		if !starttls {
			err := errors.New("STARTTLS is supported by this server, " +
				"but not set in accounts.conf. " +
				"Add smtp-starttls=yes")
			conn.Close()
			return nil, err
		}
		if err = conn.StartTLS(&tls.Config{
			ServerName: serverName,
		}); err != nil {
			conn.Close()
			return nil, errors.Wrap(err, "StartTLS")
		}
	} else {
		if starttls {
			err := errors.New("STARTTLS requested, but not supported " +
				"by this SMTP server. Is someone tampering with your " +
				"connection?")
			conn.Close()
			return nil, err
		}
	}
	return conn, nil
}

func connectSmtps(host string) (*smtp.Client, error) {
	serverName := host
	if !strings.ContainsRune(host, ':') {
		host = host + ":465" // Default to smtps port
	} else {
		serverName = host[:strings.IndexRune(host, ':')]
	}
	conn, err := smtp.DialTLS(host, &tls.Config{
		ServerName: serverName,
	})
	if err != nil {
		return nil, errors.Wrap(err, "smtp.DialTLS")
	}
	return conn, nil
}

func copyToSent(worker *types.Worker, dest string,
	n int, msg io.Reader) <-chan error {
	errCh := make(chan error)
	worker.PostAction(&types.AppendMessage{
		Destination: dest,
		Flags:       []models.Flag{models.SeenFlag},
		Date:        time.Now(),
		Reader:      msg,
		Length:      n,
	}, func(msg types.WorkerMessage) {
		switch msg := msg.(type) {
		case *types.Done:
			errCh <- nil
		case *types.Error:
			errCh <- msg.Error
		}
	})
	return errCh
}