package kraken import ( "context" "crypto/hmac" "crypto/sha256" "crypto/sha512" "encoding/base64" "io" "net/http" "net/url" "strconv" "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 } // 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. // Bounds have been removed because there are some cases that tokens have trailing frontslash(/) or plus sign (+) keyPat = regexp.MustCompile(detectors.PrefixRegex([]string{"kraken"}) + `\b([0-9A-Za-z\/\+=]{56}[ "'\r\n]{1})`) privKeyPat = regexp.MustCompile(detectors.PrefixRegex([]string{"kraken"}) + `\b([0-9A-Za-z\/\+=]{86,88}[ "'\r\n]{1})`) ) // 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{"kraken"} } // FromData will find and optionally verify Kraken 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.FindAllStringSubmatch(dataStr, -1) privKeyMatches := privKeyPat.FindAllStringSubmatch(dataStr, -1) for _, match := range matches { resMatch := strings.TrimSpace(match[1]) for _, privKeyMatch := range privKeyMatches { resPrivKeyMatch := strings.TrimSpace(privKeyMatch[1]) s1 := detectors.Result{ DetectorType: detector_typepb.DetectorType_Kraken, Raw: []byte(resMatch), SecretParts: map[string]string{ "key": resMatch, "private_key": resPrivKeyMatch, }, RawV2: []byte(resMatch + resPrivKeyMatch), } if verify { // Increasing 64-bit integer, for each request that is made with a particular API key. apiNonce := strconv.FormatInt(time.Now().Unix(), 10) payload := url.Values{} payload.Add("nonce", apiNonce) b64DecodedSecret, _ := base64.StdEncoding.DecodeString(resPrivKeyMatch) signature := getKrakenSignature("/0/private/Balance", payload, b64DecodedSecret) req, err := http.NewRequestWithContext(ctx, "POST", "https://api.kraken.com/0/private/Balance", strings.NewReader(payload.Encode())) if err != nil { continue } req.Header.Add("Content-Type", "application/x-www-form-urlencoded") req.Header.Add("API-Key", resMatch) req.Header.Add("API-Sign", signature) res, err := client.Do(req) if err == nil { defer func() { _ = res.Body.Close() }() out, _ := io.ReadAll(res.Body) if !strings.Contains(string(out), "Invalid key") { s1.Verified = true } } } results = append(results, s1) } } return results, nil } // Code from https://docs.kraken.com/rest/#section/Authentication/Headers-and-Signature func getKrakenSignature(url_path string, values url.Values, secret []byte) string { sha := sha256.New() sha.Write([]byte(values.Get("nonce") + values.Encode())) shasum := sha.Sum(nil) mac := hmac.New(sha512.New, secret) mac.Write(append([]byte(url_path), shasum...)) macsum := mac.Sum(nil) return base64.StdEncoding.EncodeToString(macsum) } func (s Scanner) Type() detector_typepb.DetectorType { return detector_typepb.DetectorType_Kraken } func (s Scanner) Description() string { return "Kraken is a cryptocurrency exchange that allows trading of various digital assets. Kraken API keys can be used to access and manage account information and perform trading operations." }