package gemini import ( "bytes" "context" "crypto/hmac" "crypto/sha512" "encoding/base64" "encoding/hex" "encoding/json" "net/http" "strings" "time" 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 } const ( baseURL = "https://api.gemini.com" accountDetail = "/v1/account" account = "primary" ) // 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(`\b((?:master-|account-)[0-9A-Za-z]{20})\b`) secretPat = regexp.MustCompile(`[A-Za-z0-9]{27,28}`) ) // 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{"master-", "account-"} } // FromData will find and optionally verify Gemini 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) idMatches := keyPat.FindAllStringSubmatch(dataStr, -1) secretMatches := secretPat.FindAllStringSubmatch(dataStr, -1) for _, match := range idMatches { resMatch := strings.TrimSpace(match[1]) for _, secretMatch := range secretMatches { resSecretMatch := strings.TrimSpace(secretMatch[0]) s1 := detectors.Result{ DetectorType: detector_typepb.DetectorType_Gemini, Raw: []byte(resMatch), SecretParts: map[string]string{ "key": resMatch, "secret": resSecretMatch, }, RawV2: []byte(resMatch + resSecretMatch), } if verify { req, err := constructRequest(ctx, resSecretMatch, resMatch) if err != nil { continue } res, err := client.Do(req) if err == nil { defer func() { _ = res.Body.Close() }() if res.StatusCode >= 200 && res.StatusCode < 300 { s1.Verified = true } } } results = append(results, s1) } } return results, nil } func constructRequest(ctx context.Context, secret, keyID string) (*http.Request, error) { req, err := http.NewRequestWithContext(ctx, "POST", baseURL+accountDetail, &bytes.Buffer{}) if err != nil { return nil, err } params := map[string]any{ "request": accountDetail, "nonce": time.Now().UnixNano(), } acct := strings.Split(keyID, "-") // Not entirely sure how to handle master account keys where one of the accounts is named "primary". if len(acct) > 1 && acct[0] == "master" { params["account"] = account } reqStr, err := json.Marshal(¶ms) if err != nil { return nil, err } payload := base64.StdEncoding.EncodeToString(reqStr) signature := constructSignature(payload, secret) req.Header = http.Header{ "Content-Type": {"text/plain"}, "Content-Length": {"0"}, "X-GEMINI-APIKEY": {keyID}, "X-GEMINI-PAYLOAD": {payload}, "X-GEMINI-SIGNATURE": {signature}, "Cache-Control": {"no-cache"}, } return req, err } func constructSignature(payload string, resSecretMatch string) string { h := hmac.New(sha512.New384, []byte(resSecretMatch)) h.Write([]byte(payload)) signature := hex.EncodeToString(h.Sum(nil)) return signature } func (s Scanner) Type() detector_typepb.DetectorType { return detector_typepb.DetectorType_Gemini } func (s Scanner) Description() string { return "Gemini is a cryptocurrency exchange platform. API keys can be used to access and manage account details and perform transactions." }