trufflehog/pkg/detectors/roninapp/roninapp.go

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package roninapp
import (
"context"
"fmt"
"regexp"
"strings"
b64 "encoding/base64"
"net/http"
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"github.com/trufflesecurity/trufflehog/v3/pkg/common"
"github.com/trufflesecurity/trufflehog/v3/pkg/detectors"
"github.com/trufflesecurity/trufflehog/v3/pkg/pb/detectorspb"
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)
type Scanner struct{}
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// Ensure the Scanner satisfies the interface at compile time.
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var _ detectors.Detector = (*Scanner)(nil)
var (
client = common.SaneHttpClient()
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// Make sure that your group is surrounded in boundary characters such as below to reduce false positives.
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keyPat = regexp.MustCompile(detectors.PrefixRegex([]string{"ronin"}) + `\b([0-9a-zA-Z]{26})\b`)
idPat = regexp.MustCompile(detectors.PrefixRegex([]string{"ronin"}) + `\b([0-9Aa-zA-Z]{3,32})\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{"roninapp"}
}
// FromData will find and optionally verify RoninApp 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)
idmatches := idPat.FindAllStringSubmatch(dataStr, -1)
for _, match := range matches {
if len(match) != 2 {
continue
}
resMatch := strings.TrimSpace(match[1])
for _, idmatch := range idmatches {
if len(idmatch) != 2 {
continue
}
resIdMatch := strings.TrimSpace(idmatch[1])
s1 := detectors.Result{
DetectorType: detectorspb.DetectorType_RoninApp,
Raw: []byte(resMatch),
}
if verify {
data := fmt.Sprintf("%s:", resMatch)
sEnc := b64.StdEncoding.EncodeToString([]byte(data))
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req, err := http.NewRequestWithContext(ctx, "GET", "https://"+resIdMatch+".roninapp.com/api/v2/invoices", nil)
if err != nil {
continue
}
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req.Header.Add("Accept", "application/json")
req.Header.Add("Authorization", fmt.Sprintf("Basic %s", sEnc))
res, err := client.Do(req)
if err == nil {
defer res.Body.Close()
if res.StatusCode >= 200 && res.StatusCode < 300 {
s1.Verified = true
} else {
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// This function will check false positives for common test words, but also it will make sure the key appears 'random' enough to be a real key.
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if detectors.IsKnownFalsePositive(resMatch, detectors.DefaultFalsePositives, true) {
continue
}
}
}
}
results = append(results, s1)
}
}
return results, nil
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}