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GHSA-8jqh-95g6-7jpj
Summary
Phalcon\Encryption\Crypt provides authenticated encryption: when useSigning is enabled (the default), encrypt() appends an HMAC tag and decrypt() verifies it before returning the plaintext. The verification compares the attacker-supplied tag against the freshly computed HMAC using PHP/Zephir identity comparison (!==), which the Zephir compiler lowers to !ZEPHIR_IS_IDENTICAL(...) — a byte-wise memcmp that returns early on the first differing byte. The comparison time therefore depends on how many leading bytes of the supplied tag are correct, a classic MAC-verification timing side-channel. Every other secret/MAC comparison in the framework uses the constant-time hash_equals() (zephir_hash_equals) — the CSRF token check (Security::checkToken) and the JWT signature check (Signer\Hmac::verify); Crypt::decrypt is the lone deviation.
Details
Vulnerable code
phalcon/Encryption/Crypt.zep:246 (Zephir source):
if true === this->useSigning {
// Checks on the decrypted message digest using the HMAC method.
if digest !== hash_hmac(hashAlgorithm, padded, decryptKey, true) {
throw new Mismatch("Hash does not match.");
}
}
Generated C --> ext/phalcon/encryption/crypt.zep.c:364-367:
ZEPHIR_CALL_FUNCTION(&_8$$7, "hash_hmac", NULL, 245, &hashAlgorithm, &padded, &decryptKey, &__$true);
...
if (!ZEPHIR_IS_IDENTICAL(&digest, &_8$$7)) { // <-- non-constant-time
ZEPHIR_THROW_EXCEPTION_DEBUG_STR(..., "Hash does not match.", "phalcon/Encryption/Crypt.zep", 247);
ZEPHIR_IS_IDENTICAL --> zephir_is_identical() (ext/kernel/operators.c:472) --> Zend is_identical_function --> for equal-length strings a memcmp that exits on the first mismatching byte (data-dependent timing).
Impact
The HMAC is the integrity/authentication tag of Phalcon's authenticated-encryption scheme. A successful timing attack (Keyczar/CVE-2009-0654-style: fix the IV+ciphertext so the target tag is constant, then recover it byte-by-byte from response timing) yields a tag the attacker can attach to a chosen IV+ciphertext so that decrypt() accepts it as authentic, defeating the integrity guarantee. Combined with CFB malleability (flipping a ciphertext byte flips the corresponding plaintext byte), an attacker who recovers the forging capability can tamper with the decrypted contents the application trusts (e.g. encrypted cookies carrying authorization/identity state). There is no confidentiality break by itself.
Suggested fix
Replace the identity comparison with the constant-time helper already used elsewhere in the framework. In phalcon/Encryption/Crypt.zep:246:
// before
if digest !== hash_hmac(hashAlgorithm, padded, decryptKey, true) {
throw new Mismatch("Hash does not match.");
}
// after
if true !== hash_equals(hash_hmac(hashAlgorithm, padded, decryptKey, true), digest) {
throw new Mismatch("Hash does not match.");
}
hash_equals() returns false for unequal-length inputs, so it also covers the truncated-tag case. Optional further hardening: verify the MAC before unpadding (functionally moot here because cryptUnpadText never throws) and consider migrating the default toward an AEAD mode such as aes-256-gcm.
Addressed Issue:
- https://github.com/phalcon/cphalcon/issues/17090
Patched Stream:
- https://github.com/phalcon/cphalcon/issues/17090
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The vulnerability can be exploited over the network without needing physical access. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker does not need any special privileges or access rights. No user interaction is needed for the attacker to exploit this vulnerability.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
The exploit probability is very low. The vulnerability is unlikely to be exploited in the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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