294 lines
8.2 KiB
Go
294 lines
8.2 KiB
Go
// Copyright (c) HashiCorp, Inc.
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// SPDX-License-Identifier: MPL-2.0
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package command
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import (
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"crypto/ecdsa"
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"crypto/elliptic"
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"crypto/rsa"
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"crypto/x509"
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"encoding/hex"
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"fmt"
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"io"
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"net"
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"net/url"
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"os"
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"strings"
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"github.com/posener/complete"
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)
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type PKIReIssueCACommand struct {
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*BaseCommand
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flagConfig string
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flagReturnIndicator string
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flagDefaultDisabled bool
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flagList bool
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flagKeyStorageSource string
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flagNewIssuerName string
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}
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func (c *PKIReIssueCACommand) Synopsis() string {
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return "Uses a parent certificate and a template certificate to create a new issuer on a child mount"
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}
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func (c *PKIReIssueCACommand) Help() string {
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helpText := `
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Usage: vault pki reissue PARENT TEMPLATE CHILD_MOUNT options
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`
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return strings.TrimSpace(helpText)
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}
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func (c *PKIReIssueCACommand) Flags() *FlagSets {
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set := c.flagSet(FlagSetHTTP | FlagSetOutputFormat)
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f := set.NewFlagSet("Command Options")
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f.StringVar(&StringVar{
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Name: "type",
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Target: &c.flagKeyStorageSource,
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Default: "internal",
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EnvVar: "",
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Usage: `Options are “existing” - to use an existing key inside vault, “internal” - to generate a new key inside vault, or “kms” - to link to an external key. Exported keys are not available through this API.`,
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Completion: complete.PredictSet("internal", "existing", "kms"),
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})
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f.StringVar(&StringVar{
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Name: "issuer_name",
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Target: &c.flagNewIssuerName,
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Default: "",
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EnvVar: "",
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Usage: `If present, the newly created issuer will be given this name`,
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})
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return set
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}
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func (c *PKIReIssueCACommand) Run(args []string) int {
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// Parse Args
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f := c.Flags()
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if err := f.Parse(args); err != nil {
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c.UI.Error(err.Error())
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return 1
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}
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args = f.Args()
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if len(args) < 3 {
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c.UI.Error("Not enough arguments: expected parent issuer and child-mount location and some key_value argument")
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return 1
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}
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stdin := (io.Reader)(os.Stdin)
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userData, err := parseArgsData(stdin, args[3:])
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if err != nil {
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c.UI.Error(fmt.Sprintf("Failed to parse K=V data: %s", err))
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return 1
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}
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// Check We Have a Client
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client, err := c.Client()
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if err != nil {
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c.UI.Error(fmt.Sprintf("Failed to obtain client: %v", err))
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return 1
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}
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parentIssuer := sanitizePath(args[0]) // /pki/issuer/default
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templateIssuer := sanitizePath(args[1])
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intermediateMount := sanitizePath(args[2])
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templateIssuerBundle, err := readIssuer(client, templateIssuer)
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if err != nil {
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c.UI.Error(fmt.Sprintf("Error fetching template certificate %v : %v", templateIssuer, err))
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return 1
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}
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certificate := templateIssuerBundle.certificate
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useExistingKey := c.flagKeyStorageSource == "existing"
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keyRef := ""
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if useExistingKey {
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keyRef = templateIssuerBundle.keyId
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if keyRef == "" {
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c.UI.Error(fmt.Sprintf("Template issuer %s did not have a key id field set in response which is required", templateIssuer))
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return 1
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}
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}
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templateData, err := parseTemplateCertificate(*certificate, useExistingKey, keyRef)
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data := updateTemplateWithData(templateData, userData)
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return pkiIssue(c.BaseCommand, parentIssuer, intermediateMount, c.flagNewIssuerName, c.flagKeyStorageSource, data)
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}
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func updateTemplateWithData(template map[string]interface{}, changes map[string]interface{}) map[string]interface{} {
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data := map[string]interface{}{}
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for key, value := range template {
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data[key] = value
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}
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// ttl and not_after set the same thing. Delete template ttl if using not_after:
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if _, ok := changes["not_after"]; ok {
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delete(data, "ttl")
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}
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// If we are updating the key_type, do not set key_bits
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if _, ok := changes["key_type"]; ok && changes["key_type"] != template["key_type"] {
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delete(data, "key_bits")
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}
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for key, value := range changes {
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data[key] = value
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}
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return data
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}
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func parseTemplateCertificate(certificate x509.Certificate, useExistingKey bool, keyRef string) (templateData map[string]interface{}, err error) {
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// Generate Certificate Signing Parameters
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templateData = map[string]interface{}{
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"common_name": certificate.Subject.CommonName,
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"alt_names": makeAltNamesCommaSeparatedString(certificate.DNSNames, certificate.EmailAddresses),
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"ip_sans": makeIpAddressCommaSeparatedString(certificate.IPAddresses),
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"uri_sans": makeUriCommaSeparatedString(certificate.URIs),
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// other_sans (string: "") - Specifies custom OID/UTF8-string SANs. These must match values specified on the role in allowed_other_sans (see role creation for allowed_other_sans globbing rules). The format is the same as OpenSSL: <oid>;<type>:<value> where the only current valid type is UTF8. This can be a comma-delimited list or a JSON string slice.
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// Punting on Other_SANs, shouldn't really be on CAs
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"signature_bits": findSignatureBits(certificate.SignatureAlgorithm),
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"exclude_cn_from_sans": determineExcludeCnFromSans(certificate),
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"ou": certificate.Subject.OrganizationalUnit,
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"organization": certificate.Subject.Organization,
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"country": certificate.Subject.Country,
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"locality": certificate.Subject.Locality,
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"province": certificate.Subject.Province,
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"street_address": certificate.Subject.StreetAddress,
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"postal_code": certificate.Subject.PostalCode,
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"serial_number": certificate.Subject.SerialNumber,
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"ttl": (certificate.NotAfter.Sub(certificate.NotBefore)).String(),
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"max_path_length": certificate.MaxPathLen,
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"permitted_dns_domains": strings.Join(certificate.PermittedDNSDomains, ","),
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"use_pss": isPSS(certificate.SignatureAlgorithm),
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}
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if useExistingKey {
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templateData["skid"] = hex.EncodeToString(certificate.SubjectKeyId) // TODO: Double Check this with someone
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if keyRef == "" {
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return nil, fmt.Errorf("unable to create certificate template for existing key without a key_id")
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}
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templateData["key_ref"] = keyRef
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} else {
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templateData["key_type"] = getKeyType(certificate.PublicKeyAlgorithm.String())
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templateData["key_bits"] = findBitLength(certificate.PublicKey)
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}
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return templateData, nil
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}
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func isPSS(algorithm x509.SignatureAlgorithm) bool {
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switch algorithm {
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case x509.SHA384WithRSAPSS, x509.SHA512WithRSAPSS, x509.SHA256WithRSAPSS:
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return true
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default:
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return false
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}
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}
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func makeAltNamesCommaSeparatedString(names []string, emails []string) string {
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return strings.Join(names, ",") + "," + strings.Join(emails, ",")
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}
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func makeUriCommaSeparatedString(uris []*url.URL) string {
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stringAddresses := make([]string, len(uris))
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for i, uri := range uris {
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stringAddresses[i] = uri.String()
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}
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return strings.Join(stringAddresses, ",")
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}
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func makeIpAddressCommaSeparatedString(addresses []net.IP) string {
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stringAddresses := make([]string, len(addresses))
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for i, address := range addresses {
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stringAddresses[i] = address.String()
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}
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return strings.Join(stringAddresses, ",")
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}
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func determineExcludeCnFromSans(certificate x509.Certificate) bool {
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cn := certificate.Subject.CommonName
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if cn == "" {
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return false
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}
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emails := certificate.EmailAddresses
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for _, email := range emails {
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if email == cn {
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return false
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}
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}
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dnses := certificate.DNSNames
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for _, dns := range dnses {
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if dns == cn {
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return false
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}
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}
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return true
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}
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func findBitLength(publicKey any) int {
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if publicKey == nil {
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return 0
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}
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switch pub := publicKey.(type) {
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case *rsa.PublicKey:
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return pub.N.BitLen()
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case *ecdsa.PublicKey:
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switch pub.Curve {
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case elliptic.P224():
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return 224
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case elliptic.P256():
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return 256
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case elliptic.P384():
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return 384
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case elliptic.P521():
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return 521
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default:
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return 0
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}
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default:
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return 0
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}
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}
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func findSignatureBits(algo x509.SignatureAlgorithm) int {
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switch algo {
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case x509.MD2WithRSA, x509.MD5WithRSA, x509.SHA1WithRSA, x509.DSAWithSHA1, x509.ECDSAWithSHA1:
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return -1
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case x509.SHA256WithRSA, x509.DSAWithSHA256, x509.ECDSAWithSHA256, x509.SHA256WithRSAPSS:
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return 256
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case x509.SHA384WithRSA, x509.ECDSAWithSHA384, x509.SHA384WithRSAPSS:
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return 384
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case x509.SHA512WithRSA, x509.SHA512WithRSAPSS, x509.ECDSAWithSHA512:
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return 512
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case x509.PureEd25519:
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return 0
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default:
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return -1
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}
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}
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func getKeyType(goKeyType string) string {
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switch goKeyType {
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case "RSA":
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return "rsa"
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case "ECDSA":
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return "ec"
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case "Ed25519":
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return "ed25519"
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default:
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return ""
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}
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}
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