Files
trufflehog/pkg/detectors/privatekey/privatekey.go
Abdul Basit 1a1c56de61 Exclusion of FalsePositive GH's usernames in PrivateKeyDetector (#4046)
* ignore false positive github username

* moved false positive statements to detector for code simplicity.

* removed the username false positive filtration logic from ssh_integration.go
2025-05-08 08:38:39 -05:00

293 lines
7.8 KiB
Go

package privatekey
import (
"context"
"encoding/json"
"errors"
"fmt"
"net/http"
"strings"
"sync"
"time"
regexp "github.com/wasilibs/go-re2"
"golang.org/x/crypto/ssh"
"github.com/trufflesecurity/trufflehog/v3/pkg/common"
"github.com/trufflesecurity/trufflehog/v3/pkg/detectors"
"github.com/trufflesecurity/trufflehog/v3/pkg/pb/detectorspb"
)
var (
falsePositiveGHUsernames = map[detectors.FalsePositive]struct{}{
// This hack is because it's probably one of the most widely distributed github keys
// and a frequent annoyance.
// It is active at the time of this commit, but the developer is unresponsive.
detectors.FalsePositive("aaron1234567890123"): {},
}
)
type Scanner struct {
IncludeExpired bool
}
// Ensure the Scanner satisfies the interface at compile time.
var _ detectors.Detector = (*Scanner)(nil)
var _ detectors.CustomFalsePositiveChecker = (*Scanner)(nil)
var _ detectors.MaxSecretSizeProvider = (*Scanner)(nil)
var (
// TODO: add base64 encoded key support
client = common.RetryableHTTPClient()
keyPat = regexp.MustCompile(`(?i)-----\s*?BEGIN[ A-Z0-9_-]*?PRIVATE KEY\s*?-----[\s\S]*?----\s*?END[ A-Z0-9_-]*? PRIVATE KEY\s*?-----`)
)
// Keywords are used for efficiently pre-filtering chunks.
// Use identifiers in the secret preferably, or the provider name.
func (s Scanner) Keywords() []string {
return []string{"private key"}
}
const maxPrivateKeySize = 4096
// ProvideMaxSecretSize returns the maximum size of a secret that this detector can find.
func (s Scanner) MaxSecretSize() int64 { return maxPrivateKeySize }
// FromData will find and optionally verify Privatekey secrets in a given set of bytes.
func (s Scanner) FromData(ctx context.Context, verify bool, data []byte) (results []detectors.Result, err error) {
dataStr := string(data)
matches := keyPat.FindAllString(dataStr, -1)
for _, match := range matches {
token := Normalize(match)
if len(token) < 64 {
continue
}
s1 := detectors.Result{
DetectorType: detectorspb.DetectorType_PrivateKey,
Raw: []byte(token),
Redacted: token[0:64],
ExtraData: make(map[string]string),
}
var passphrase string
parsedKey, err := ssh.ParseRawPrivateKey([]byte(token))
if err != nil && strings.Contains(err.Error(), "private key is passphrase protected") {
s1.ExtraData["encrypted"] = "true"
parsedKey, passphrase, err = Crack([]byte(token))
if err != nil {
s1.SetVerificationError(err, token)
continue
}
if passphrase != "" {
s1.ExtraData["cracked_encryption_passphrase"] = "true"
}
} else if err != nil {
// couldn't parse key, probably invalid
continue
}
fingerprint, err := FingerprintPEMKey(parsedKey)
if err != nil {
continue
}
if verify {
var (
wg sync.WaitGroup
extraData = newExtraData()
verificationErrors = NewVerificationErrors(3)
)
// Look up certificate information.
wg.Add(1)
go func() {
defer wg.Done()
data, err := lookupFingerprintCertificateUrls(ctx, fingerprint, s.IncludeExpired)
if err == nil {
if data != nil {
extraData.Add("certificate_urls", strings.Join(data.CertificateURLs, ", "))
}
} else {
verificationErrors.Add(err)
}
}()
// Test SSH key against github.com
wg.Add(1)
go func() {
defer wg.Done()
username, err := VerifyGitHubUser(ctx, parsedKey)
if err != nil && !errors.Is(err, errPermissionDenied) {
verificationErrors.Add(err)
}
if username != nil {
isFalsePositive, _ := detectors.IsKnownFalsePositive(*username, falsePositiveGHUsernames, false)
if !isFalsePositive {
extraData.Add("github_user", *username)
}
}
}()
// Test SSH key against gitlab.com
wg.Add(1)
go func() {
defer wg.Done()
user, err := VerifyGitLabUser(ctx, parsedKey)
if err != nil && !errors.Is(err, errPermissionDenied) {
verificationErrors.Add(err)
}
if user != nil {
extraData.Add("gitlab_user", *user)
}
}()
wg.Wait()
if len(extraData.data) > 0 {
s1.Verified = true
for k, v := range extraData.data {
s1.ExtraData[k] = v
}
// enabled th
s1.AnalysisInfo = map[string]string{
"token": token,
}
} else {
s1.ExtraData = nil
}
if len(verificationErrors.Errors) > 0 {
s1.SetVerificationError(fmt.Errorf("verification failures: %s", strings.Join(verificationErrors.Errors, ", ")), token)
}
}
results = append(results, s1)
}
return results, nil
}
func (s Scanner) IsFalsePositive(_ detectors.Result) (bool, string) {
return false, ""
}
func (s Scanner) Description() string {
return "Private keys are used for securely connecting and authenticating to various systems and services. Exposure of private keys can lead to unauthorized access and data breaches."
}
type result struct {
CertificateURLs []string
GitHubUsername string
}
func lookupFingerprintCertificateUrls(
ctx context.Context,
publicKeyFingerprintInHex string,
includeExpired bool,
) (*result, error) {
results, err := LookupFingerprint(
ctx,
publicKeyFingerprintInHex,
)
if err != nil {
return nil, err
}
var data *result
seen := map[string]struct{}{}
for _, r := range results.CertificateResults {
if _, ok := seen[r.CertificateFingerprint]; ok {
continue
}
if !includeExpired && time.Since(r.ExpirationTimestamp) > 0 {
continue
}
if data == nil {
data = &result{}
}
data.CertificateURLs = append(data.CertificateURLs, fmt.Sprintf("https://crt.sh/?q=%s", r.CertificateFingerprint))
seen[r.CertificateFingerprint] = struct{}{}
}
return data, nil
}
func LookupFingerprint(ctx context.Context, publicKeyFingerprintInHex string) (*DriftwoodResult, error) {
req, err := http.NewRequestWithContext(ctx, "GET", fmt.Sprintf("https://keychecker.trufflesecurity.com/fingerprint/%s", publicKeyFingerprintInHex), nil)
if err != nil {
return nil, err
}
res, err := client.Do(req)
if err != nil {
return nil, err
}
defer res.Body.Close()
results := DriftwoodResult{}
err = json.NewDecoder(res.Body).Decode(&results)
if err != nil {
return nil, err
}
return &results, nil
}
type DriftwoodResult struct {
CertificateResults []struct {
Domains []string `json:",omitempty"`
CertificateFingerprint string `json:"CertificateFingerprint"`
ExpirationTimestamp time.Time `json:"ExpirationTimestamp"`
IssuerName string `json:",omitempty"` // CA information
SubjectName string `json:",omitempty"` // Certificate subject
IssuerOrganization []string `json:",omitempty"` // CA organization(s)
SubjectOrganization []string `json:",omitempty"` // Subject organization(s)
KeyUsages []string `json:",omitempty"` // e.g., ["DigitalSignature", "KeyEncipherment"]
ExtendedKeyUsages []string `json:",omitempty"` // e.g., ["ServerAuth", "ClientAuth"]
SubjectKeyID string `json:",omitempty"` // hex encoded
AuthorityKeyID string `json:",omitempty"` // hex encoded
SerialNumber string `json:",omitempty"` // hex encoded
} `json:"CertificateResults"`
GitHubSSHResults []struct {
Username string `json:"Username"`
} `json:"GitHubSSHResults"`
}
type extraData struct {
mutex sync.Mutex
data map[string]string
}
func newExtraData() *extraData {
return &extraData{
data: make(map[string]string),
}
}
func (e *extraData) Add(key string, value string) {
e.mutex.Lock()
e.data[key] = value
e.mutex.Unlock()
}
type VerificationErrors struct {
mutex sync.Mutex
Errors []string
}
func NewVerificationErrors(capacity int) *VerificationErrors {
return &VerificationErrors{
Errors: make([]string, 0, capacity),
}
}
func (e *VerificationErrors) Add(err error) {
e.mutex.Lock()
e.Errors = append(e.Errors, err.Error())
e.mutex.Unlock()
}
func (s Scanner) Type() detectorspb.DetectorType {
return detectorspb.DetectorType_PrivateKey
}