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GHSA-prpw-wwv7-xjjr

MediumCVSS 5.8 / 10
Published Oct 6, 2026·Last modified Oct 6, 2026
Affected Components(1)
Go logogithub.com/corazawaf/coraza/v3
3.0.0 – 3.8.0
Description

Root Cause

File: internal/auditlog/formats.go — multiple sites write attacker-influenced bytes into the Native audit-log stream without escaping \r or \n:

// Part B — request headers (lines 72–80)
for k, vv := range al.Transaction().Request().Headers() {
    for _, v := range vv {
        res.WriteByte('\n')
        res.WriteString(k)
        res.WriteString(": ")
        res.WriteString(v)   // ← raw
    }
}

// Part C — request body (lines 85–86)
if body := al.Transaction().Request().Body(); body != "" {
    res.WriteString(body)    // ← raw
    res.WriteByte('\n')
}

// Part E — response body (lines 93–94)      raw
// Part F — response headers (lines 111–118) raw
// Part H — error messages (line 125)        raw
// Part K — matched-rule raw data (line 151)  raw

The Native format's section structure is line-based: sections are delimited by lines of the form --<10-char-random-prefix>-<Part>--, and line-based log parsers / SIEM rules rely on that structure. Any attacker-controlled bytes containing \n break the structural invariant and allow the attacker to inject lines that look like genuine audit content.

The other two Native-format implementations in Coraza are not affected: the JSON formatter (formats_json.go) and the OCSF formatter both round-trip values through json.Marshal, which escapes \r and \n.

Impact

An attacker who can land bytes into any of the listed audit-log fields can inject arbitrary lines — including lines that visually resemble new log entries — into the audit log file of a defender running the default SecAuditLogFormat Native configuration. Realistic consequences:

  • Forging entries to shift attribution. An injected line such as [client "9.9.9.9"] Coraza: Warning. ... sits alongside genuine matches in Part H, and a human operator (or simple SIEM rule) reading the log cannot tell them apart.
  • Confusing SIEM correlation. Any ingestion pipeline that splits on --...-[A-Z]-- boundaries or on [client "..."] patterns without validating the session prefix will treat the forged lines as separate records.
  • Breaking log-parsing tooling. Grep/awk pipelines, log tailers, and log-rotation tools with line-based assumptions can be poisoned with crafted binary sequences.
  • Hiding genuine incidents. An attacker who can also trigger a rule match on the same transaction (trivial — send any request that matches any audit-logged rule) can bury the real match under noise they control.

The forged lines cannot trivially impersonate an entire separate session: the 10-char random prefix in the real boundaries (boundaryPrefix := "--" + utils.RandomString(10) + "-", line 42) is not predictable from outside, and each transaction uses a fresh prefix. But the integrity of a single record is fully compromised, which is enough for the SIEM-confusion and attribution-shifting attacks.

Proof of Concept

Server with coraza.conf-recommended-style defaults:

SecRuleEngine On
SecAuditEngine On
SecAuditLogParts ABCFHZ
SecAuditLogType Serial
SecAuditLog /tmp/audit.log
SecAuditLogFormat Native
SecRequestBodyAccess On
SecRule REQUEST_METHOD "@rx ." \
    "id:1001,phase:1,pass,log,auditlog,msg:'trigger'"

Body vector — reachable via stock coraza/v3/http + net/http

Send an ordinary urlencoded POST whose body contains raw CRLF sequences and forged boundaries:

POST / HTTP/1.1
Content-Type: application/x-www-form-urlencoded

evil=benign\r\n--coraza-forged-X--\r\nForgedLine: yes\r\n--coraza-forged-H--\r\n[client "9.9.9.9"] FAKE ATTACK ENTRY

Resulting audit.log:

--heLNtylvjY-C--
evil=benign
--coraza-forged-X--
ForgedLine: yes
--coraza-forged-H--
[client "9.9.9.9"] FAKE ATTACK ENTRY

--heLNtylvjY-F--

The forged --coraza-forged-X-- / --coraza-forged-H-- boundaries and the spoofed [client "9.9.9.9"] line are structurally indistinguishable from the surrounding genuine log content. No rule fires, no error is raised, the attack is invisible to the WAF.

Header vector — reachable via non-net/http integrations only

The same effect applies to Part B (request headers) and Part F (response headers) when a header value contains raw \r\n. Go's net/http rejects such headers at parse time (400 Bad Request), so the stock HTTP wrapper is safe from this path; the vector is reachable when Coraza is called with header values that were not validated by net/http:

  • coraza-spoa (HAProxy SPOP agent) forwards headers from HAProxy, which has more permissive validation.
  • coraza-proxy-wasm / Envoy WASM hosts forward header values from the upstream proxy.
  • Custom FFI/WASM hosts and any embedder calling tx.AddRequestHeader(k, v) with unvalidated bytes.

Other raw-write sites (Part E response body, Part H error messages, Part K matched-rule data) share the same class of issue and should be fixed together.

Mitigation

Escape \r and \n at every raw-write site in internal/auditlog/formats.go. A single package-level helper is sufficient:

var logEscaper = strings.NewReplacer("\r", "\\r", "\n", "\\n")

// Part B — header values:
res.WriteString(logEscaper.Replace(v))

// Part F — header values: same
// Part H — error messages:
res.WriteString(logEscaper.Replace(alWithErrMsg.ErrorMessage()))
// Part K — matched-rule raw data:
res.WriteString(logEscaper.Replace(alEntry.Data().Raw()))

For Part C / Part E (bodies), the choice is policy-dependent:

  • Escape inline (logEscaper.Replace(body)): keeps the log human-readable for text bodies but loses fidelity for binary.
  • Base64 / hex-encode the whole part: binary-safe, matches the spirit of ModSecurity v2's binary-log handling, but less human-readable.

Escaping is the minimum; base64 for bodies is the more conservative default and is a reasonable audit-log-default change.

Additional defensive measure

Consider lengthening the boundaryPrefix random suffix from 10 chars to ≥16 chars (line 42). This strictly raises the bar for attackers attempting to fully forge a separate-looking session (not just inject lines into the current one). Low-cost change; narrows future variants of this bug class.

Affected versions

The Native formatter has been present since v3.0.0 (file existed at the first-release commit). All releases >= 3.0.0, <= 3.7.0 are affected when SecAuditLogFormat Native is used with SecAuditLogType Serial or SecAuditLogType Concurrent.

Unaffected:

  • Deployments using SecAuditLogFormat JSON (formats_json.go uses json.Marshal which escapes \r\n).
  • Deployments using OCSF output.
  • Deployments with SecAuditEngine Off.

References

  • internal/auditlog/formats.go lines 42, 72–80 (Part B), 85–88 (Part C), 93–96 (Part E), 111–118 (Part F), 125 (Part H), 151 (Part K)
  • coraza.conf-recommended — default SecAuditLogFormat Native, SecAuditLogParts ABIJDEFHZ / ABCFHZ variants
  • CWE-117 — Improper Output Neutralization for Logs
  • CWE-93 — CRLF Injection
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Risk Scores
Base Score
5.8

The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability. The vulnerability can affect other systems as well, not just the initial system. There is a low impact on the integrity of the data.

Threat Intelligence
5.3

Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.

EPSS
N/A

Probability that this vulnerability will be exploited in the wild within the next 30 days.

Exploit
Not available

We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.

Related Vulnerabilities
  • CVE-2026-41504
    Alias

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