Files
trufflehog/pkg/detectors/skybiometry/skybiometry.go
Miccah ad2f9a4b98 Populate SecretParts on all detectors (#4919)
* Populate SecretParts on single-part detectors

Adds SecretParts: map[string]string{"key": <secret>} to every detector
package that constructs detectors.Result with a single captured secret
value. This is the single-part half of the SecretParts migration (the
linter's common case, ~695 packages).

* Populate SecretParts on multi-part detectors
2026-04-24 08:32:51 -07:00

111 lines
3.1 KiB
Go

package skybiometry
import (
"context"
"fmt"
"io"
"net/http"
regexp "github.com/wasilibs/go-re2"
"github.com/trufflesecurity/trufflehog/v3/pkg/common"
"github.com/trufflesecurity/trufflehog/v3/pkg/detectors"
"github.com/trufflesecurity/trufflehog/v3/pkg/pb/detector_typepb"
)
type Scanner struct {
detectors.DefaultMultiPartCredentialProvider
}
// Ensure the Scanner satisfies the interface at compile time.
var _ detectors.Detector = (*Scanner)(nil)
var (
client = common.SaneHttpClient()
// Make sure that your group is surrounded in boundary characters such as below to reduce false positives.
keyPat = regexp.MustCompile(detectors.PrefixRegex([]string{"skybiometry"}) + `\b([0-9a-z]{25,26})\b`)
secretPat = regexp.MustCompile(detectors.PrefixRegex([]string{"skybiometry"}) + `\b([0-9a-z]{25,26})\b`)
)
// 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{"skybiometry"}
}
// FromData will find and optionally verify SkyBiometry 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)
uniqueKeyMatches, uniqueSecretMatches := make(map[string]struct{}), make(map[string]struct{})
for _, match := range keyPat.FindAllStringSubmatch(dataStr, -1) {
uniqueKeyMatches[match[1]] = struct{}{}
}
for _, match := range secretPat.FindAllStringSubmatch(dataStr, -1) {
uniqueSecretMatches[match[1]] = struct{}{}
}
for key := range uniqueKeyMatches {
for secret := range uniqueSecretMatches {
if key == secret {
continue
}
s1 := detectors.Result{
DetectorType: detector_typepb.DetectorType_SkyBiometry,
Raw: []byte(secret),
SecretParts: map[string]string{"key": secret},
}
if verify {
isVerified, verificationErr := verifySkyBiometery(ctx, client, key, secret)
s1.Verified = isVerified
s1.SetVerificationError(verificationErr)
}
results = append(results, s1)
}
}
return results, nil
}
func (s Scanner) Type() detector_typepb.DetectorType {
return detector_typepb.DetectorType_SkyBiometry
}
func (s Scanner) Description() string {
return "SkyBiometry is a facial recognition service. SkyBiometry API keys can be used to access and utilize their facial recognition API."
}
func verifySkyBiometery(ctx context.Context, client *http.Client, apiKey, apiSecret string) (bool, error) {
apiURL := fmt.Sprintf("https://api.skybiometry.com/fc/account/authenticate?api_key=%s&api_secret=%s", apiKey, apiSecret)
req, err := http.NewRequestWithContext(ctx, "GET", apiURL, nil)
if err != nil {
return false, err
}
resp, err := client.Do(req)
if err != nil {
return false, err
}
defer func() {
_, _ = io.Copy(io.Discard, resp.Body)
_ = resp.Body.Close()
}()
switch resp.StatusCode {
case http.StatusOK:
return true, nil
case http.StatusBadRequest, http.StatusUnauthorized:
return false, nil
default:
return false, fmt.Errorf("unexpected status code: %d", resp.StatusCode)
}
}