mirror of
https://github.com/mjl-/mox.git
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daa908e9f4
the vendored dns resolver code is a copy of the go stdlib dns resolver, with awareness of the "authentic data" (i.e. dnssec secure) added, as well as support for enhanced dns errors, and looking up tlsa records (for dane). ideally it would be upstreamed, but the chances seem slim. dnssec-awareness is added to all packages, e.g. spf, dkim, dmarc, iprev. their dnssec status is added to the Received message headers for incoming email. but the main reason to add dnssec was for implementing dane. with dane, the verification of tls certificates can be done through certificates/public keys published in dns (in the tlsa records). this only makes sense (is trustworthy) if those dns records can be verified to be authentic. mox now applies dane to delivering messages over smtp. mox already implemented mta-sts for webpki/pkix-verification of certificates against the (large) pool of CA's, and still enforces those policies when present. but it now also checks for dane records, and will verify those if present. if dane and mta-sts are both absent, the regular opportunistic tls with starttls is still done. and the fallback to plaintext is also still done. mox also makes it easy to setup dane for incoming deliveries, so other servers can deliver with dane tls certificate verification. the quickstart now generates private keys that are used when requesting certificates with acme. the private keys are pre-generated because they must be static and known during setup, because their public keys must be published in tlsa records in dns. autocert would generate private keys on its own, so had to be forked to add the option to provide the private key when requesting a new certificate. hopefully upstream will accept the change and we can drop the fork. with this change, using the quickstart to setup a new mox instance, the checks at internet.nl result in a 100% score, provided the domain is dnssec-signed and the network doesn't have any issues.
189 lines
5.7 KiB
Go
189 lines
5.7 KiB
Go
//go:build integration
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// todo: set up a test for dane, mta-sts, etc.
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package main
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import (
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"crypto/tls"
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"fmt"
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"net"
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"os"
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"os/exec"
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"strings"
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"testing"
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"time"
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"github.com/mjl-/mox/dns"
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"github.com/mjl-/mox/imapclient"
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"github.com/mjl-/mox/mlog"
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"github.com/mjl-/mox/mox-"
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"github.com/mjl-/mox/sasl"
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"github.com/mjl-/mox/smtpclient"
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)
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func tcheck(t *testing.T, err error, errmsg string) {
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if err != nil {
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t.Helper()
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t.Fatalf("%s: %s", errmsg, err)
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}
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}
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func TestDeliver(t *testing.T) {
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xlog := mlog.New("integration")
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mlog.Logfmt = true
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hostname, err := os.Hostname()
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tcheck(t, err, "hostname")
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ourHostname, err := dns.ParseDomain(hostname)
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tcheck(t, err, "parse hostname")
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// Single update from IMAP IDLE.
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type idleResponse struct {
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untagged imapclient.Untagged
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err error
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}
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// Deliver submits a message over submissions, and checks with imap idle if the
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// message is received by the destination mail server.
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deliver := func(checkTime bool, dialtls bool, imaphost, imapuser, imappassword string, send func()) {
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t.Helper()
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// Connect to IMAP, execute IDLE command, which will return on deliver message.
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// TLS certificates work because the container has the CA certificates configured.
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var imapconn net.Conn
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var err error
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if dialtls {
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imapconn, err = tls.Dial("tcp", imaphost, nil)
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} else {
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imapconn, err = net.Dial("tcp", imaphost)
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}
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tcheck(t, err, "dial imap")
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defer imapconn.Close()
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imapc, err := imapclient.New(imapconn, false)
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tcheck(t, err, "new imapclient")
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_, _, err = imapc.Login(imapuser, imappassword)
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tcheck(t, err, "imap login")
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_, _, err = imapc.Select("Inbox")
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tcheck(t, err, "imap select inbox")
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err = imapc.Commandf("", "idle")
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tcheck(t, err, "write imap idle command")
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_, _, _, err = imapc.ReadContinuation()
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tcheck(t, err, "read imap continuation")
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idle := make(chan idleResponse)
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go func() {
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for {
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untagged, err := imapc.ReadUntagged()
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idle <- idleResponse{untagged, err}
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if err != nil {
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return
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}
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}
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}()
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defer func() {
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err := imapc.Writelinef("done")
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tcheck(t, err, "aborting idle")
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}()
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t0 := time.Now()
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send()
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// Wait for notification of delivery.
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select {
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case resp := <-idle:
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tcheck(t, resp.err, "idle notification")
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_, ok := resp.untagged.(imapclient.UntaggedExists)
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if !ok {
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t.Fatalf("got idle %#v, expected untagged exists", resp.untagged)
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}
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if d := time.Since(t0); checkTime && d < 1*time.Second {
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t.Fatalf("delivery took %v, but should have taken at least 1 second, the first-time sender delay", d)
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}
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case <-time.After(30 * time.Second):
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t.Fatalf("timeout after 5s waiting for IMAP IDLE notification of new message, should take about 1 second")
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}
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}
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submit := func(dialtls bool, mailfrom, password, desthost, rcptto string) {
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var conn net.Conn
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var err error
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if dialtls {
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conn, err = tls.Dial("tcp", desthost, nil)
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} else {
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conn, err = net.Dial("tcp", desthost)
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}
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tcheck(t, err, "dial submission")
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defer conn.Close()
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msg := fmt.Sprintf(`From: <%s>
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To: <%s>
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Subject: test message
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This is the message.
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`, mailfrom, rcptto)
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msg = strings.ReplaceAll(msg, "\n", "\r\n")
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auth := []sasl.Client{sasl.NewClientPlain(mailfrom, password)}
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c, err := smtpclient.New(mox.Context, xlog, conn, smtpclient.TLSSkip, ourHostname, dns.Domain{ASCII: desthost}, auth, nil, nil, nil)
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tcheck(t, err, "smtp hello")
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err = c.Deliver(mox.Context, mailfrom, rcptto, int64(len(msg)), strings.NewReader(msg), false, false)
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tcheck(t, err, "deliver with smtp")
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err = c.Close()
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tcheck(t, err, "close smtpclient")
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}
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// Make sure moxacmepebble has a TLS certificate.
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conn, err := tls.Dial("tcp", "moxacmepebble.mox1.example:465", nil)
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tcheck(t, err, "dial submission")
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defer conn.Close()
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xlog.Print("submitting email to moxacmepebble, waiting for imap notification at moxmail2")
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t0 := time.Now()
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deliver(true, true, "moxmail2.mox2.example:993", "moxtest2@mox2.example", "accountpass4321", func() {
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submit(true, "moxtest1@mox1.example", "accountpass1234", "moxacmepebble.mox1.example:465", "moxtest2@mox2.example")
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})
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xlog.Print("success", mlog.Field("duration", time.Since(t0)))
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xlog.Print("submitting email to moxmail2, waiting for imap notification at moxacmepebble")
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t0 = time.Now()
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deliver(true, true, "moxacmepebble.mox1.example:993", "moxtest1@mox1.example", "accountpass1234", func() {
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submit(true, "moxtest2@mox2.example", "accountpass4321", "moxmail2.mox2.example:465", "moxtest1@mox1.example")
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})
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xlog.Print("success", mlog.Field("duration", time.Since(t0)))
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xlog.Print("submitting email to postfix, waiting for imap notification at moxacmepebble")
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t0 = time.Now()
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deliver(true, true, "moxacmepebble.mox1.example:993", "moxtest1@mox1.example", "accountpass1234", func() {
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submit(true, "moxtest1@mox1.example", "accountpass1234", "moxacmepebble.mox1.example:465", "root@postfix.example")
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})
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xlog.Print("success", mlog.Field("duration", time.Since(t0)))
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xlog.Print("submitting email to localserve")
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t0 = time.Now()
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deliver(false, false, "localserve.mox1.example:1143", "mox@localhost", "moxmoxmox", func() {
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submit(false, "mox@localhost", "moxmoxmox", "localserve.mox1.example:1587", "moxtest1@mox1.example")
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})
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xlog.Print("success", mlog.Field("duration", time.Since(t0)))
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xlog.Print("submitting email to localserve")
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t0 = time.Now()
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deliver(false, false, "localserve.mox1.example:1143", "mox@localhost", "moxmoxmox", func() {
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cmd := exec.Command("go", "run", ".", "sendmail", "mox@localhost")
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const msg = `Subject: test
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a message.
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`
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cmd.Stdin = strings.NewReader(msg)
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var out strings.Builder
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cmd.Stdout = &out
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err := cmd.Run()
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xlog.Print("sendmail", mlog.Field("output", out.String()))
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tcheck(t, err, "sendmail")
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})
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xlog.Print("success", mlog.Field("duration", time.Since(t0)))
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}
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