mirror of
https://github.com/mjl-/mox.git
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354 lines
11 KiB
Go
354 lines
11 KiB
Go
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package dkim
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import (
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"bytes"
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"encoding/base64"
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"errors"
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"fmt"
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"strings"
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"github.com/mjl-/mox/dns"
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"github.com/mjl-/mox/message"
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"github.com/mjl-/mox/smtp"
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)
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// Sig is a DKIM-Signature header.
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//
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// String values must be compared case insensitively.
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type Sig struct {
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// Required fields.
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Version int // Version, 1. Field "v". Always the first field.
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AlgorithmSign string // "rsa" or "ed25519". Field "a".
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AlgorithmHash string // "sha256" or the deprecated "sha1" (deprecated). Field "a".
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Signature []byte // Field "b".
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BodyHash []byte // Field "bh".
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Domain dns.Domain // Field "d".
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SignedHeaders []string // Duplicates are meaningful. Field "h".
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Selector dns.Domain // Selector, for looking DNS TXT record at <s>._domainkey.<domain>. Field "s".
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// Optional fields.
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// Canonicalization is the transformation of header and/or body before hashing. The
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// value is in original case, but must be compared case-insensitively. Normally two
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// slash-separated values: header canonicalization and body canonicalization. But
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// the "simple" means "simple/simple" and "relaxed" means "relaxed/simple". Field
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// "c".
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Canonicalization string
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Length int64 // Body length to verify, default -1 for whole body. Field "l".
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Identity *Identity // AUID (agent/user id). If nil and an identity is needed, should be treated as an Identity without localpart and Domain from d= field. Field "i".
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QueryMethods []string // For public key, currently known value is "dns/txt" (should be compared case-insensitively). If empty, dns/txt must be assumed. Field "q".
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SignTime int64 // Unix epoch. -1 if unset. Field "t".
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ExpireTime int64 // Unix epoch. -1 if unset. Field "x".
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CopiedHeaders []string // Copied header fields. Field "z".
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}
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// Identity is used for the optional i= field in a DKIM-Signature header. It uses
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// the syntax of an email address, but does not necessarily represent one.
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type Identity struct {
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Localpart *smtp.Localpart // Optional.
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Domain dns.Domain
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}
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// String returns a value for use in the i= DKIM-Signature field.
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func (i Identity) String() string {
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s := "@" + i.Domain.ASCII
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// We need localpart as pointer to indicate it is missing because localparts can be
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// "" which we store (decoded) as empty string and we need to differentiate.
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if i.Localpart != nil {
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s = i.Localpart.String() + s
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}
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return s
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}
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func newSigWithDefaults() *Sig {
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return &Sig{
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Canonicalization: "simple/simple",
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Length: -1,
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SignTime: -1,
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ExpireTime: -1,
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}
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}
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// Algorithm returns an algorithm string for use in the "a" field. E.g.
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// "ed25519-sha256".
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func (s Sig) Algorithm() string {
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return s.AlgorithmSign + "-" + s.AlgorithmHash
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}
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// Header returns the DKIM-Signature header in string form, to be prepended to a
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// message, including DKIM-Signature field name and trailing \r\n.
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func (s *Sig) Header() (string, error) {
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// ../rfc/6376:1021
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// todo: make a higher-level writer that accepts pairs, and only folds to next line when needed.
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w := &message.HeaderWriter{}
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w.Addf("", "DKIM-Signature: v=%d;", s.Version)
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// Domain names must always be in ASCII. ../rfc/6376:1115 ../rfc/6376:1187 ../rfc/6376:1303
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w.Addf(" ", "d=%s;", s.Domain.ASCII)
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w.Addf(" ", "s=%s;", s.Selector.ASCII)
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if s.Identity != nil {
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w.Addf(" ", "i=%s;", s.Identity.String()) // todo: Is utf-8 ok here?
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}
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w.Addf(" ", "a=%s;", s.Algorithm())
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if s.Canonicalization != "" && !strings.EqualFold(s.Canonicalization, "simple") && !strings.EqualFold(s.Canonicalization, "simple/simple") {
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w.Addf(" ", "c=%s;", s.Canonicalization)
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}
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if s.Length >= 0 {
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w.Addf(" ", "l=%d;", s.Length)
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}
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if len(s.QueryMethods) > 0 && !(len(s.QueryMethods) == 1 && strings.EqualFold(s.QueryMethods[0], "dns/txt")) {
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w.Addf(" ", "q=%s;", strings.Join(s.QueryMethods, ":"))
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}
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if s.SignTime >= 0 {
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w.Addf(" ", "t=%d;", s.SignTime)
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}
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if s.ExpireTime >= 0 {
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w.Addf(" ", "x=%d;", s.ExpireTime)
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}
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if len(s.SignedHeaders) > 0 {
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for i, v := range s.SignedHeaders {
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sep := ""
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if i == 0 {
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v = "h=" + v
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sep = " "
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}
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if i < len(s.SignedHeaders)-1 {
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v += ":"
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} else if i == len(s.SignedHeaders)-1 {
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v += ";"
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}
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w.Addf(sep, v)
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}
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}
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if len(s.CopiedHeaders) > 0 {
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// todo: wrap long headers? we can at least add FWS before the :
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for i, v := range s.CopiedHeaders {
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t := strings.SplitN(v, ":", 2)
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if len(t) == 2 {
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v = t[0] + ":" + packQpHdrValue(t[1])
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} else {
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return "", fmt.Errorf("invalid header in copied headers (z=): %q", v)
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}
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sep := ""
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if i == 0 {
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v = "z=" + v
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sep = " "
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}
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if i < len(s.CopiedHeaders)-1 {
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v += "|"
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} else if i == len(s.CopiedHeaders)-1 {
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v += ";"
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}
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w.Addf(sep, v)
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}
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}
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w.Addf(" ", "bh=%s;", base64.StdEncoding.EncodeToString(s.BodyHash))
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w.Addf(" ", "b=")
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if len(s.Signature) > 0 {
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w.AddWrap([]byte(base64.StdEncoding.EncodeToString(s.Signature)))
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}
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w.Add("\r\n")
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return w.String(), nil
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}
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// Like quoted printable, but with "|" encoded as well.
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// We also encode ":" because it is used as separator in DKIM headers which can
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// cause trouble for "q", even though it is listed in dkim-safe-char,
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// ../rfc/6376:497.
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func packQpHdrValue(s string) string {
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// ../rfc/6376:474
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const hex = "0123456789ABCDEF"
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var r string
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for _, b := range []byte(s) {
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if b > ' ' && b < 0x7f && b != ';' && b != '=' && b != '|' && b != ':' {
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r += string(b)
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} else {
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r += "=" + string(hex[b>>4]) + string(hex[(b>>0)&0xf])
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}
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}
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return r
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}
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var (
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errSigHeader = errors.New("not DKIM-Signature header")
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errSigDuplicateTag = errors.New("duplicate tag")
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errSigMissingCRLF = errors.New("missing crlf at end")
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errSigExpired = errors.New("signature timestamp (t=) must be before signature expiration (x=)")
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errSigIdentityDomain = errors.New("identity domain (i=) not under domain (d=)")
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errSigMissingTag = errors.New("missing required tag")
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errSigUnknownVersion = errors.New("unknown version")
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errSigBodyHash = errors.New("bad body hash size given algorithm")
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)
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// parseSignatures returns the parsed form of a DKIM-Signature header.
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//
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// buf must end in crlf, as it should have occurred in the mail message.
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//
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// The dkim signature with signature left empty ("b=") and without trailing
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// crlf is returned, for use in verification.
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func parseSignature(buf []byte, smtputf8 bool) (sig *Sig, verifySig []byte, err error) {
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defer func() {
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if x := recover(); x == nil {
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return
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} else if xerr, ok := x.(error); ok {
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sig = nil
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verifySig = nil
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err = xerr
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} else {
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panic(x)
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}
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}()
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xerrorf := func(format string, args ...any) {
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panic(fmt.Errorf(format, args...))
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}
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if !bytes.HasSuffix(buf, []byte("\r\n")) {
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xerrorf("%w", errSigMissingCRLF)
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}
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buf = buf[:len(buf)-2]
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ds := newSigWithDefaults()
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seen := map[string]struct{}{}
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p := parser{s: string(buf), smtputf8: smtputf8}
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name := p.xhdrName()
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if !strings.EqualFold(name, "DKIM-Signature") {
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xerrorf("%w", errSigHeader)
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}
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p.wsp()
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p.xtake(":")
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p.wsp()
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// ../rfc/6376:655
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// ../rfc/6376:656 ../rfc/6376-eid5070
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// ../rfc/6376:658 ../rfc/6376-eid5070
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for {
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p.fws()
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k := p.xtagName()
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p.fws()
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p.xtake("=")
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// Special case for "b", see below.
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if k != "b" {
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p.fws()
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}
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// Keys are case-sensitive: ../rfc/6376:679
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if _, ok := seen[k]; ok {
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// Duplicates not allowed: ../rfc/6376:683
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xerrorf("%w: %q", errSigDuplicateTag, k)
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break
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}
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seen[k] = struct{}{}
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// ../rfc/6376:1021
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switch k {
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case "v":
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// ../rfc/6376:1025
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ds.Version = int(p.xnumber(10))
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if ds.Version != 1 {
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xerrorf("%w: version %d", errSigUnknownVersion, ds.Version)
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}
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case "a":
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// ../rfc/6376:1038
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ds.AlgorithmSign, ds.AlgorithmHash = p.xalgorithm()
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case "b":
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// ../rfc/6376:1054
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// To calculate the hash, we have to feed the DKIM-Signature header to the hash
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// function, but with the value for "b=" (the signature) left out. The parser
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// tracks all data that is read, except when drop is true.
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// ../rfc/6376:997
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// Surrounding whitespace must be cleared as well. ../rfc/6376:1659
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// Note: The RFC says "surrounding" whitespace, but whitespace is only allowed
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// before the value as part of the ABNF production for "b". Presumably the
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// intention is to ignore the trailing "[FWS]" for the tag-spec production,
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// ../rfc/6376:656
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// Another indication is the term "value portion", ../rfc/6376:1667. It appears to
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// mean everything after the "b=" part, instead of the actual value (either encoded
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// or decoded).
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p.drop = true
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p.fws()
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ds.Signature = p.xbase64()
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p.fws()
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p.drop = false
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case "bh":
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// ../rfc/6376:1076
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ds.BodyHash = p.xbase64()
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case "c":
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// ../rfc/6376:1088
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ds.Canonicalization = p.xcanonical()
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// ../rfc/6376:810
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case "d":
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// ../rfc/6376:1105
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ds.Domain = p.xdomain()
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case "h":
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// ../rfc/6376:1134
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ds.SignedHeaders = p.xsignedHeaderFields()
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case "i":
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// ../rfc/6376:1171
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id := p.xauid()
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ds.Identity = &id
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case "l":
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// ../rfc/6376:1244
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ds.Length = p.xbodyLength()
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case "q":
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// ../rfc/6376:1268
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ds.QueryMethods = p.xqueryMethods()
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case "s":
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// ../rfc/6376:1300
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ds.Selector = p.xselector()
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case "t":
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// ../rfc/6376:1310
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ds.SignTime = p.xtimestamp()
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case "x":
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// ../rfc/6376:1327
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ds.ExpireTime = p.xtimestamp()
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case "z":
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// ../rfc/6376:1361
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ds.CopiedHeaders = p.xcopiedHeaderFields()
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default:
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// We must ignore unknown fields. ../rfc/6376:692 ../rfc/6376:1022
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p.xchar() // ../rfc/6376-eid5070
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for !p.empty() && !p.hasPrefix(";") {
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p.xchar()
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}
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}
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p.fws()
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if p.empty() {
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break
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}
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p.xtake(";")
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if p.empty() {
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break
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}
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}
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// ../rfc/6376:2532
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required := []string{"v", "a", "b", "bh", "d", "h", "s"}
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for _, req := range required {
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if _, ok := seen[req]; !ok {
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xerrorf("%w: %q", errSigMissingTag, req)
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}
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}
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if strings.EqualFold(ds.AlgorithmHash, "sha1") && len(ds.BodyHash) != 20 {
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xerrorf("%w: got %d bytes, must be 20 for sha1", errSigBodyHash, len(ds.BodyHash))
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} else if strings.EqualFold(ds.AlgorithmHash, "sha256") && len(ds.BodyHash) != 32 {
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xerrorf("%w: got %d bytes, must be 32 for sha256", errSigBodyHash, len(ds.BodyHash))
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}
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// ../rfc/6376:1337
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if ds.SignTime >= 0 && ds.ExpireTime >= 0 && ds.SignTime >= ds.ExpireTime {
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xerrorf("%w", errSigExpired)
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}
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// Default identity is "@" plus domain. We don't set this value because we want to
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// keep the distinction between absent value.
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// ../rfc/6376:1172 ../rfc/6376:2537 ../rfc/6376:2541
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if ds.Identity != nil && ds.Identity.Domain.ASCII != ds.Domain.ASCII && !strings.HasSuffix(ds.Identity.Domain.ASCII, "."+ds.Domain.ASCII) {
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xerrorf("%w: identity domain %q not under domain %q", errSigIdentityDomain, ds.Identity.Domain.ASCII, ds.Domain.ASCII)
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}
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return ds, []byte(p.tracked), nil
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}
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