CNVD-2016-01483

Vulnerability from cnvd - Published: 2016-03-08
VLAI
Title
OpenSSL BIO_printf函数堆内存破坏漏洞
Description
OpenSSL是一个实现安全套接层和安全传输层协议的通用开源加密库,可支持多种加密算法,包括对称密码、哈希算法、安全散列算法等。 OpenSSL中的BIO_*printf函数通过调用内部函数fmtstr来处理"%s"格式化字符串。fmtstr 函数在计算字符串长度时可能会导致溢出,在打印非常长的字符串时会导致内存越界读的错误。内部doapr_outch 函数在内存分配失败时会尝试越界写内存(会尝试写通过NULL指针偏移后的位置),尝试分配比INT_MAX还大的内存时会触发该漏洞,导致内存泄露。
Severity
低
Patch Name
OpenSSL BIO_printf函数堆内存破坏漏洞的补丁
Patch Description
OpenSSL是一个实现安全套接层和安全传输层协议的通用开源加密库,可支持多种加密算法,包括对称密码、哈希算法、安全散列算法等。 OpenSSL中的BIO_*printf函数通过调用内部函数fmtstr来处理"%s"格式化字符串。fmtstr 函数在计算字符串长度时可能会导致溢出,在打印非常长的字符串时会导致内存越界读的错误。内部doapr_outch 函数在内存分配失败时会尝试越界写内存(会尝试写通过NULL指针偏移后的位置),尝试分配比INT_MAX还大的内存时会触发该漏洞,导致内存泄露。目前,供应商发布了安全公告及相关补丁信息,修复了此漏洞。
Formal description

厂商已发布漏洞修复方案,请及时关注厂商主页更新修复: https://www.openssl.org/

Reference
https://www.openssl.org/news/secadv/20160301.txt https://web.nvd.nist.gov/view/vuln/detail?vulnId=CVE-2016-0799
Impacted products
Name
['OpenSSL OpenSSL 1.0.2', 'OpenSSL OpenSSL 1.0.1']
Show details on source website

{
  "cves": {
    "cve": {
      "cveNumber": "CVE-2016-0799"
    }
  },
  "description": "OpenSSL\u662f\u4e00\u4e2a\u5b9e\u73b0\u5b89\u5168\u5957\u63a5\u5c42\u548c\u5b89\u5168\u4f20\u8f93\u5c42\u534f\u8bae\u7684\u901a\u7528\u5f00\u6e90\u52a0\u5bc6\u5e93\uff0c\u53ef\u652f\u6301\u591a\u79cd\u52a0\u5bc6\u7b97\u6cd5\uff0c\u5305\u62ec\u5bf9\u79f0\u5bc6\u7801\u3001\u54c8\u5e0c\u7b97\u6cd5\u3001\u5b89\u5168\u6563\u5217\u7b97\u6cd5\u7b49\u3002 \r\n\r\nOpenSSL\u4e2d\u7684BIO_*printf\u51fd\u6570\u901a\u8fc7\u8c03\u7528\u5185\u90e8\u51fd\u6570fmtstr\u6765\u5904\u7406\"%s\"\u683c\u5f0f\u5316\u5b57\u7b26\u4e32\u3002fmtstr \u51fd\u6570\u5728\u8ba1\u7b97\u5b57\u7b26\u4e32\u957f\u5ea6\u65f6\u53ef\u80fd\u4f1a\u5bfc\u81f4\u6ea2\u51fa\uff0c\u5728\u6253\u5370\u975e\u5e38\u957f\u7684\u5b57\u7b26\u4e32\u65f6\u4f1a\u5bfc\u81f4\u5185\u5b58\u8d8a\u754c\u8bfb\u7684\u9519\u8bef\u3002\u5185\u90e8doapr_outch \u51fd\u6570\u5728\u5185\u5b58\u5206\u914d\u5931\u8d25\u65f6\u4f1a\u5c1d\u8bd5\u8d8a\u754c\u5199\u5185\u5b58\uff08\u4f1a\u5c1d\u8bd5\u5199\u901a\u8fc7NULL\u6307\u9488\u504f\u79fb\u540e\u7684\u4f4d\u7f6e\uff09\uff0c\u5c1d\u8bd5\u5206\u914d\u6bd4INT_MAX\u8fd8\u5927\u7684\u5185\u5b58\u65f6\u4f1a\u89e6\u53d1\u8be5\u6f0f\u6d1e\uff0c\u5bfc\u81f4\u5185\u5b58\u6cc4\u9732\u3002",
  "discovererName": "Guido Vranken",
  "formalWay": "\u5382\u5546\u5df2\u53d1\u5e03\u6f0f\u6d1e\u4fee\u590d\u65b9\u6848\uff0c\u8bf7\u53ca\u65f6\u5173\u6ce8\u5382\u5546\u4e3b\u9875\u66f4\u65b0\u4fee\u590d\uff1a\r\nhttps://www.openssl.org/",
  "isEvent": "\u901a\u7528\u8f6f\u786c\u4ef6\u6f0f\u6d1e",
  "number": "CNVD-2016-01483",
  "openTime": "2016-03-08",
  "patchDescription": "OpenSSL\u662f\u4e00\u4e2a\u5b9e\u73b0\u5b89\u5168\u5957\u63a5\u5c42\u548c\u5b89\u5168\u4f20\u8f93\u5c42\u534f\u8bae\u7684\u901a\u7528\u5f00\u6e90\u52a0\u5bc6\u5e93\uff0c\u53ef\u652f\u6301\u591a\u79cd\u52a0\u5bc6\u7b97\u6cd5\uff0c\u5305\u62ec\u5bf9\u79f0\u5bc6\u7801\u3001\u54c8\u5e0c\u7b97\u6cd5\u3001\u5b89\u5168\u6563\u5217\u7b97\u6cd5\u7b49\u3002 \r\n\r\nOpenSSL\u4e2d\u7684BIO_*printf\u51fd\u6570\u901a\u8fc7\u8c03\u7528\u5185\u90e8\u51fd\u6570fmtstr\u6765\u5904\u7406\"%s\"\u683c\u5f0f\u5316\u5b57\u7b26\u4e32\u3002fmtstr \u51fd\u6570\u5728\u8ba1\u7b97\u5b57\u7b26\u4e32\u957f\u5ea6\u65f6\u53ef\u80fd\u4f1a\u5bfc\u81f4\u6ea2\u51fa\uff0c\u5728\u6253\u5370\u975e\u5e38\u957f\u7684\u5b57\u7b26\u4e32\u65f6\u4f1a\u5bfc\u81f4\u5185\u5b58\u8d8a\u754c\u8bfb\u7684\u9519\u8bef\u3002\u5185\u90e8doapr_outch \u51fd\u6570\u5728\u5185\u5b58\u5206\u914d\u5931\u8d25\u65f6\u4f1a\u5c1d\u8bd5\u8d8a\u754c\u5199\u5185\u5b58\uff08\u4f1a\u5c1d\u8bd5\u5199\u901a\u8fc7NULL\u6307\u9488\u504f\u79fb\u540e\u7684\u4f4d\u7f6e\uff09\uff0c\u5c1d\u8bd5\u5206\u914d\u6bd4INT_MAX\u8fd8\u5927\u7684\u5185\u5b58\u65f6\u4f1a\u89e6\u53d1\u8be5\u6f0f\u6d1e\uff0c\u5bfc\u81f4\u5185\u5b58\u6cc4\u9732\u3002\u76ee\u524d\uff0c\u4f9b\u5e94\u5546\u53d1\u5e03\u4e86\u5b89\u5168\u516c\u544a\u53ca\u76f8\u5173\u8865\u4e01\u4fe1\u606f\uff0c\u4fee\u590d\u4e86\u6b64\u6f0f\u6d1e\u3002",
  "patchName": "OpenSSL BIO_printf\u51fd\u6570\u5806\u5185\u5b58\u7834\u574f\u6f0f\u6d1e\u7684\u8865\u4e01",
  "products": {
    "product": [
      "OpenSSL  OpenSSL 1.0.2",
      "OpenSSL  OpenSSL 1.0.1"
    ]
  },
  "referenceLink": "https://www.openssl.org/news/secadv/20160301.txt\r\nhttps://web.nvd.nist.gov/view/vuln/detail?vulnId=CVE-2016-0799",
  "serverity": "\u4f4e",
  "submitTime": "2016-03-02",
  "title": "OpenSSL BIO_printf\u51fd\u6570\u5806\u5185\u5b58\u7834\u574f\u6f0f\u6d1e"
}



Log in or create an account to share your comment.




Tags
Taxonomy of the tags.


Loading…

Loading…

Loading…

Forecast uses a logistic model when the trend is rising, or an exponential decay model when the trend is falling. Fitted via linearized least squares.

Sightings

Author Source Type Date Other

Nomenclature

  • Seen: The vulnerability was mentioned, discussed, or observed by the user.
  • Confirmed: The vulnerability has been validated from an analyst's perspective.
  • Published Proof of Concept: A public proof of concept is available for this vulnerability.
  • Exploited: The vulnerability was observed as exploited by the user who reported the sighting.
  • Patched: The vulnerability was observed as successfully patched by the user who reported the sighting.
  • Not exploited: The vulnerability was not observed as exploited by the user who reported the sighting.
  • Not confirmed: The user expressed doubt about the validity of the vulnerability.
  • Not patched: The vulnerability was not observed as successfully patched by the user who reported the sighting.

Loading…

Loading…

Loading…

Related by attack behaviour

Vulnerabilities whose description is nearest to this one in the vector space of the CIRCL/vulnerability-attack-technique-biencoder model. This is a similarity search over the bi-encoder space (plain cosine), not a classification, and it has no measured accuracy.


Loading…