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CVE-2025-66199— TLS 1.3 CompressedCertificate excessive memory allocation

EPSS 0.07% · P21
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I. Basic Information for CVE-2025-66199

Vulnerability Information

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Vulnerability Title
TLS 1.3 CompressedCertificate excessive memory allocation
Source: NVD (National Vulnerability Database)
Vulnerability Description
Issue summary: A TLS 1.3 connection using certificate compression can be forced to allocate a large buffer before decompression without checking against the configured certificate size limit. Impact summary: An attacker can cause per-connection memory allocations of up to approximately 22 MiB and extra CPU work, potentially leading to service degradation or resource exhaustion (Denial of Service). In affected configurations, the peer-supplied uncompressed certificate length from a CompressedCertificate message is used to grow a heap buffer prior to decompression. This length is not bounded by the max_cert_list setting, which otherwise constrains certificate message sizes. An attacker can exploit this to cause large per-connection allocations followed by handshake failure. No memory corruption or information disclosure occurs. This issue only affects builds where TLS 1.3 certificate compression is compiled in (i.e., not OPENSSL_NO_COMP_ALG) and at least one compression algorithm (brotli, zlib, or zstd) is available, and where the compression extension is negotiated. Both clients receiving a server CompressedCertificate and servers in mutual TLS scenarios receiving a client CompressedCertificate are affected. Servers that do not request client certificates are not vulnerable to client-initiated attacks. Users can mitigate this issue by setting SSL_OP_NO_RX_CERTIFICATE_COMPRESSION to disable receiving compressed certificates. The FIPS modules in 3.6, 3.5, 3.4 and 3.3 are not affected by this issue, as the TLS implementation is outside the OpenSSL FIPS module boundary. OpenSSL 3.6, 3.5, 3.4 and 3.3 are vulnerable to this issue. OpenSSL 3.0, 1.1.1 and 1.0.2 are not affected by this issue.
Source: NVD (National Vulnerability Database)
CVSS Information
N/A
Source: NVD (National Vulnerability Database)
Vulnerability Type
未经控制的内存分配
Source: NVD (National Vulnerability Database)
Vulnerability Title
OpenSSL 安全漏洞
Source: CNNVD (China National Vulnerability Database)
Vulnerability Description
OpenSSL是OpenSSL团队的一个开源的能够实现安全套接层(SSLv2/v3)和安全传输层(TLSv1)协议的通用加密库。该产品支持多种加密算法,包括对称密码、哈希算法、安全散列算法等。 OpenSSL 3.6版本、3.5版本、3.4和3.3版本存在安全漏洞,该漏洞源于处理压缩证书时未检查长度限制,可能导致内存过度分配和拒绝服务。
Source: CNNVD (China National Vulnerability Database)
CVSS Information
N/A
Source: CNNVD (China National Vulnerability Database)
Vulnerability Type
N/A
Source: CNNVD (China National Vulnerability Database)

Affected Products

VendorProductAffected VersionsCPESubscribe
OpenSSLOpenSSL 3.6.0 ~ 3.6.1 -

II. Public POCs for CVE-2025-66199

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III. Intelligence Information for CVE-2025-66199

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Same Patch Batch · OpenSSL · 2026-01-27 · 12 CVEs total

CVE-2026-22795Missing ASN1_TYPE validation in PKCS#12 parsing
CVE-2026-22796ASN1_TYPE Type Confusion in the PKCS7_digest_from_attributes() function
CVE-2025-15467Stack buffer overflow in CMS (Auth)EnvelopedData parsing
CVE-2025-15469'openssl dgst' one-shot codepath silently truncates inputs >16MB
CVE-2025-15468NULL dereference in SSL_CIPHER_find() function on unknown cipher ID
CVE-2025-68160Heap out-of-bounds write in BIO_f_linebuffer on short writes
CVE-2025-11187Improper validation of PBMAC1 parameters in PKCS#12 MAC verification
CVE-2025-69421NULL Pointer Dereference in PKCS12_item_decrypt_d2i_ex function
CVE-2025-69420Missing ASN1_TYPE validation in TS_RESP_verify_response() function
CVE-2025-69419Out of bounds write in PKCS12_get_friendlyname() UTF-8 conversion
CVE-2025-69418Unauthenticated/unencrypted trailing bytes with low-level OCB function calls

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