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558 lines
15 KiB
Go
558 lines
15 KiB
Go
// Package dkim provides tools for signing and verify a email according to RFC 6376
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package dkim
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import (
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"bytes"
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"container/list"
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"crypto"
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"crypto/rand"
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"crypto/rsa"
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"crypto/sha1"
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"crypto/sha256"
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"crypto/x509"
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"encoding/base64"
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"encoding/pem"
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"hash"
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"regexp"
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"strings"
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"time"
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)
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const (
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CRLF = "\r\n"
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TAB = " "
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FWS = CRLF + TAB
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MaxHeaderLineLength = 70
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)
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type verifyOutput int
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const (
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SUCCESS verifyOutput = 1 + iota
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PERMFAIL
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TEMPFAIL
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NOTSIGNED
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TESTINGSUCCESS
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TESTINGPERMFAIL
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TESTINGTEMPFAIL
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)
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// sigOptions represents signing options
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type SigOptions struct {
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// DKIM version (default 1)
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Version uint
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// Private key used for signing (required)
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PrivateKey []byte
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// Domain (required)
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Domain string
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// Selector (required)
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Selector string
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// The Agent of User IDentifier
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Auid string
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// Message canonicalization (plain-text; OPTIONAL, default is
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// "simple/simple"). This tag informs the Verifier of the type of
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// canonicalization used to prepare the message for signing.
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Canonicalization string
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// The algorithm used to generate the signature
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//"rsa-sha1" or "rsa-sha256"
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Algo string
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// Signed header fields
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Headers []string
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// Body length count( if set to 0 this tag is ommited in Dkim header)
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BodyLength uint
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// Query Methods used to retrieve the public key
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QueryMethods []string
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// Add a signature timestamp
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AddSignatureTimestamp bool
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// Time validity of the signature (0=never)
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SignatureExpireIn uint64
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// CopiedHeaderFileds
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CopiedHeaderFields []string
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}
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// NewSigOptions returns new sigoption with some defaults value
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func NewSigOptions() SigOptions {
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return SigOptions{
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Version: 1,
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Canonicalization: "simple/simple",
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Algo: "rsa-sha256",
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Headers: []string{"from"},
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BodyLength: 0,
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QueryMethods: []string{"dns/txt"},
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AddSignatureTimestamp: true,
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SignatureExpireIn: 0,
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}
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}
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// Sign signs an email
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func Sign(email *[]byte, options SigOptions) error {
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var privateKey *rsa.PrivateKey
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// PrivateKey
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if len(options.PrivateKey) == 0 {
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return ErrSignPrivateKeyRequired
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}
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d, _ := pem.Decode(options.PrivateKey)
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if d == nil {
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return ErrCandNotParsePrivateKey
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}
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key, err := x509.ParsePKCS1PrivateKey(d.Bytes)
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if err != nil {
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return ErrCandNotParsePrivateKey
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}
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privateKey = key
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// Domain required
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if options.Domain == "" {
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return ErrSignDomainRequired
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}
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// Selector required
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if options.Selector == "" {
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return ErrSignSelectorRequired
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}
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// Canonicalization
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options.Canonicalization, err = validateCanonicalization(strings.ToLower(options.Canonicalization))
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if err != nil {
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return err
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}
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// Algo
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options.Algo = strings.ToLower(options.Algo)
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if options.Algo != "rsa-sha1" && options.Algo != "rsa-sha256" {
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return ErrSignBadAlgo
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}
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// Header must contain "from"
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hasFrom := false
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for i, h := range options.Headers {
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h = strings.ToLower(h)
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options.Headers[i] = h
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if h == "from" {
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hasFrom = true
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}
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}
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if !hasFrom {
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return ErrSignHeaderShouldContainsFrom
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}
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// Normalize
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headers, body, err := canonicalize(email, options.Canonicalization, options.Headers)
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if err != nil {
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return err
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}
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signHash := strings.Split(options.Algo, "-")
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// hash body
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bodyHash, err := getBodyHash(&body, signHash[1], options.BodyLength)
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if err != nil {
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return err
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}
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// Get dkim header base
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dkimHeader := newDkimHeaderBySigOptions(options)
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dHeader := dkimHeader.getHeaderBaseForSigning(bodyHash)
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canonicalizations := strings.Split(options.Canonicalization, "/")
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dHeaderCanonicalized, err := canonicalizeHeader(dHeader, canonicalizations[0])
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if err != nil {
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return err
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}
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headers = append(headers, []byte(dHeaderCanonicalized)...)
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headers = bytes.TrimRight(headers, " \r\n")
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// sign
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sig, err := getSignature(&headers, privateKey, signHash[1])
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// add to DKIM-Header
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subh := ""
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l := len(subh)
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for _, c := range sig {
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subh += string(c)
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l++
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if l >= MaxHeaderLineLength {
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dHeader += subh + FWS
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subh = ""
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l = 0
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}
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}
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dHeader += subh + CRLF
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*email = append([]byte(dHeader), *email...)
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return nil
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}
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// Verify verifies an email an return
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// state: SUCCESS or PERMFAIL or TEMPFAIL, TESTINGSUCCESS, TESTINGPERMFAIL
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// TESTINGTEMPFAIL or NOTSIGNED
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// error: if an error occurs during verification
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func Verify(email *[]byte, opts ...DNSOpt) (verifyOutput, error) {
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// parse email
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dkimHeader, err := GetHeader(email)
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if err != nil {
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if err == ErrDkimHeaderNotFound {
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return NOTSIGNED, ErrDkimHeaderNotFound
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}
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return PERMFAIL, err
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}
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// we do not set query method because if it's others, validation failed earlier
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pubKey, verifyOutputOnError, err := NewPubKeyRespFromDNS(dkimHeader.Selector, dkimHeader.Domain, opts...)
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if err != nil {
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// fix https://github.com/toorop/go-dkim/issues/1
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//return getVerifyOutput(verifyOutputOnError, err, pubKey.FlagTesting)
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return verifyOutputOnError, err
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}
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// Normalize
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headers, body, err := canonicalize(email, dkimHeader.MessageCanonicalization, dkimHeader.Headers)
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if err != nil {
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return getVerifyOutput(PERMFAIL, err, pubKey.FlagTesting)
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}
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sigHash := strings.Split(dkimHeader.Algorithm, "-")
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// check if hash algo are compatible
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compatible := false
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for _, algo := range pubKey.HashAlgo {
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if sigHash[1] == algo {
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compatible = true
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break
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}
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}
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if !compatible {
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return getVerifyOutput(PERMFAIL, ErrVerifyInappropriateHashAlgo, pubKey.FlagTesting)
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}
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// expired ?
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if !dkimHeader.SignatureExpiration.IsZero() && dkimHeader.SignatureExpiration.Second() < time.Now().Second() {
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return getVerifyOutput(PERMFAIL, ErrVerifySignatureHasExpired, pubKey.FlagTesting)
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}
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//println("|" + string(body) + "|")
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// get body hash
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bodyHash, err := getBodyHash(&body, sigHash[1], dkimHeader.BodyLength)
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if err != nil {
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return getVerifyOutput(PERMFAIL, err, pubKey.FlagTesting)
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}
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//println(bodyHash)
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if bodyHash != dkimHeader.BodyHash {
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return getVerifyOutput(PERMFAIL, ErrVerifyBodyHash, pubKey.FlagTesting)
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}
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// compute sig
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dkimHeaderCano, err := canonicalizeHeader(dkimHeader.rawForSign, strings.Split(dkimHeader.MessageCanonicalization, "/")[0])
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if err != nil {
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return getVerifyOutput(TEMPFAIL, err, pubKey.FlagTesting)
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}
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toSignStr := string(headers) + dkimHeaderCano
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toSign := bytes.TrimRight([]byte(toSignStr), " \r\n")
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err = verifySignature(toSign, dkimHeader.SignatureData, &pubKey.PubKey, sigHash[1])
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if err != nil {
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return getVerifyOutput(PERMFAIL, err, pubKey.FlagTesting)
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}
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return SUCCESS, nil
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}
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// getVerifyOutput returns output of verify fct according to the testing flag
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func getVerifyOutput(status verifyOutput, err error, flagTesting bool) (verifyOutput, error) {
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if !flagTesting {
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return status, err
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}
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switch status {
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case SUCCESS:
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return TESTINGSUCCESS, err
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case PERMFAIL:
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return TESTINGPERMFAIL, err
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case TEMPFAIL:
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return TESTINGTEMPFAIL, err
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}
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// should never happen but compilator sream whithout return
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return status, err
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}
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// canonicalize returns canonicalized version of header and body
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func canonicalize(email *[]byte, cano string, h []string) (headers, body []byte, err error) {
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body = []byte{}
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rxReduceWS := regexp.MustCompile(`[ \t]+`)
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rawHeaders, rawBody, err := getHeadersBody(email)
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if err != nil {
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return nil, nil, err
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}
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canonicalizations := strings.Split(cano, "/")
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// canonicalyze header
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headersList, err := getHeadersList(&rawHeaders)
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// pour chaque header a conserver on traverse tous les headers dispo
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// If multi instance of a field we must keep it from the bottom to the top
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var match *list.Element
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headersToKeepList := list.New()
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for _, headerToKeep := range h {
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match = nil
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headerToKeepToLower := strings.ToLower(headerToKeep)
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for e := headersList.Front(); e != nil; e = e.Next() {
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//fmt.Printf("|%s|\n", e.Value.(string))
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t := strings.Split(e.Value.(string), ":")
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if strings.ToLower(t[0]) == headerToKeepToLower {
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match = e
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}
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}
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if match != nil {
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headersToKeepList.PushBack(match.Value.(string) + "\r\n")
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headersList.Remove(match)
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}
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}
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//if canonicalizations[0] == "simple" {
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for e := headersToKeepList.Front(); e != nil; e = e.Next() {
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cHeader, err := canonicalizeHeader(e.Value.(string), canonicalizations[0])
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if err != nil {
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return headers, body, err
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}
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headers = append(headers, []byte(cHeader)...)
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}
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// canonicalyze body
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if canonicalizations[1] == "simple" {
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// simple
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// The "simple" body canonicalization algorithm ignores all empty lines
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// at the end of the message body. An empty line is a line of zero
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// length after removal of the line terminator. If there is no body or
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// no trailing CRLF on the message body, a CRLF is added. It makes no
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// other changes to the message body. In more formal terms, the
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// "simple" body canonicalization algorithm converts "*CRLF" at the end
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// of the body to a single "CRLF".
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// Note that a completely empty or missing body is canonicalized as a
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// single "CRLF"; that is, the canonicalized length will be 2 octets.
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body = bytes.TrimRight(rawBody, "\r\n")
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body = append(body, []byte{13, 10}...)
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} else {
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// relaxed
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// Ignore all whitespace at the end of lines. Implementations
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// MUST NOT remove the CRLF at the end of the line.
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// Reduce all sequences of WSP within a line to a single SP
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// character.
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// Ignore all empty lines at the end of the message body. "Empty
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// line" is defined in Section 3.4.3. If the body is non-empty but
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// does not end with a CRLF, a CRLF is added. (For email, this is
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// only possible when using extensions to SMTP or non-SMTP transport
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// mechanisms.)
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rawBody = rxReduceWS.ReplaceAll(rawBody, []byte(" "))
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for _, line := range bytes.SplitAfter(rawBody, []byte{10}) {
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line = bytes.TrimRight(line, " \r\n")
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body = append(body, line...)
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body = append(body, []byte{13, 10}...)
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}
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body = bytes.TrimRight(body, "\r\n")
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body = append(body, []byte{13, 10}...)
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}
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return
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}
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// canonicalizeHeader returns canonicalized version of header
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func canonicalizeHeader(header string, algo string) (string, error) {
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//rxReduceWS := regexp.MustCompile(`[ \t]+`)
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if algo == "simple" {
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// The "simple" header canonicalization algorithm does not change header
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// fields in any way. Header fields MUST be presented to the signing or
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// verification algorithm exactly as they are in the message being
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// signed or verified. In particular, header field names MUST NOT be
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// case folded and whitespace MUST NOT be changed.
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return header, nil
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} else if algo == "relaxed" {
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// The "relaxed" header canonicalization algorithm MUST apply the
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// following steps in order:
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// Convert all header field names (not the header field values) to
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// lowercase. For example, convert "SUBJect: AbC" to "subject: AbC".
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// Unfold all header field continuation lines as described in
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// [RFC5322]; in particular, lines with terminators embedded in
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// continued header field values (that is, CRLF sequences followed by
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// WSP) MUST be interpreted without the CRLF. Implementations MUST
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// NOT remove the CRLF at the end of the header field value.
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// Convert all sequences of one or more WSP characters to a single SP
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// character. WSP characters here include those before and after a
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// line folding boundary.
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// Delete all WSP characters at the end of each unfolded header field
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// value.
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// Delete any WSP characters remaining before and after the colon
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// separating the header field name from the header field value. The
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// colon separator MUST be retained.
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kv := strings.SplitN(header, ":", 2)
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if len(kv) != 2 {
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return header, ErrBadMailFormatHeaders
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}
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k := strings.ToLower(kv[0])
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k = strings.TrimSpace(k)
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v := removeFWS(kv[1])
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//v = rxReduceWS.ReplaceAllString(v, " ")
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//v = strings.TrimSpace(v)
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return k + ":" + v + CRLF, nil
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}
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return header, ErrSignBadCanonicalization
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}
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// getBodyHash return the hash (bas64encoded) of the body
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func getBodyHash(body *[]byte, algo string, bodyLength uint) (string, error) {
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var h hash.Hash
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if algo == "sha1" {
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h = sha1.New()
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} else {
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h = sha256.New()
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}
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toH := *body
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// if l tag (body length)
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if bodyLength != 0 {
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if uint(len(toH)) < bodyLength {
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return "", ErrBadDKimTagLBodyTooShort
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}
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toH = toH[0:bodyLength]
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}
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h.Write(toH)
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return base64.StdEncoding.EncodeToString(h.Sum(nil)), nil
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}
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// getSignature return signature of toSign using key
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func getSignature(toSign *[]byte, key *rsa.PrivateKey, algo string) (string, error) {
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var h1 hash.Hash
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var h2 crypto.Hash
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switch algo {
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case "sha1":
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h1 = sha1.New()
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h2 = crypto.SHA1
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break
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case "sha256":
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h1 = sha256.New()
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h2 = crypto.SHA256
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break
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default:
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return "", ErrVerifyInappropriateHashAlgo
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}
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// sign
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h1.Write(*toSign)
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sig, err := rsa.SignPKCS1v15(rand.Reader, key, h2, h1.Sum(nil))
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if err != nil {
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return "", err
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}
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return base64.StdEncoding.EncodeToString(sig), nil
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}
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// verifySignature verify signature from pubkey
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func verifySignature(toSign []byte, sig64 string, key *rsa.PublicKey, algo string) error {
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var h1 hash.Hash
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var h2 crypto.Hash
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switch algo {
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case "sha1":
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h1 = sha1.New()
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h2 = crypto.SHA1
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break
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case "sha256":
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h1 = sha256.New()
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h2 = crypto.SHA256
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break
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default:
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return ErrVerifyInappropriateHashAlgo
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}
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h1.Write(toSign)
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sig, err := base64.StdEncoding.DecodeString(sig64)
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if err != nil {
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return err
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}
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return rsa.VerifyPKCS1v15(key, h2, h1.Sum(nil), sig)
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}
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// removeFWS removes all FWS from string
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func removeFWS(in string) string {
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rxReduceWS := regexp.MustCompile(`[ \t]+`)
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out := strings.Replace(in, "\n", "", -1)
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out = strings.Replace(out, "\r", "", -1)
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out = rxReduceWS.ReplaceAllString(out, " ")
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return strings.TrimSpace(out)
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}
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// validateCanonicalization validate canonicalization (c flag)
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func validateCanonicalization(cano string) (string, error) {
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p := strings.Split(cano, "/")
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if len(p) > 2 {
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return "", ErrSignBadCanonicalization
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}
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if len(p) == 1 {
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cano = cano + "/simple"
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}
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for _, c := range p {
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if c != "simple" && c != "relaxed" {
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return "", ErrSignBadCanonicalization
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}
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}
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return cano, nil
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}
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// getHeadersList returns headers as list
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func getHeadersList(rawHeader *[]byte) (*list.List, error) {
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headersList := list.New()
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currentHeader := []byte{}
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for _, line := range bytes.SplitAfter(*rawHeader, []byte{10}) {
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if line[0] == 32 || line[0] == 9 {
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if len(currentHeader) == 0 {
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return headersList, ErrBadMailFormatHeaders
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}
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currentHeader = append(currentHeader, line...)
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} else {
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// New header, save current if exists
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if len(currentHeader) != 0 {
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headersList.PushBack(string(bytes.TrimRight(currentHeader, "\r\n")))
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currentHeader = []byte{}
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}
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currentHeader = append(currentHeader, line...)
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}
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}
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headersList.PushBack(string(currentHeader))
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return headersList, nil
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}
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// getHeadersBody return headers and body
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func getHeadersBody(email *[]byte) ([]byte, []byte, error) {
|
|
substitutedEmail := *email
|
|
|
|
// only replace \n with \r\n when \r\n\r\n not exists
|
|
if bytes.Index(*email, []byte{13, 10, 13, 10}) < 0 {
|
|
// \n -> \r\n
|
|
substitutedEmail = bytes.Replace(*email, []byte{10}, []byte{13, 10}, -1)
|
|
}
|
|
|
|
parts := bytes.SplitN(substitutedEmail, []byte{13, 10, 13, 10}, 2)
|
|
if len(parts) != 2 {
|
|
return []byte{}, []byte{}, ErrBadMailFormat
|
|
}
|
|
// Empty body
|
|
if len(parts[1]) == 0 {
|
|
parts[1] = []byte{13, 10}
|
|
}
|
|
return parts[0], parts[1], nil
|
|
}
|