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CWE-190 整数溢出或超界折返 类漏洞列表 845

CWE-190 整数溢出或超界折返 类弱点 845 条 CVE 漏洞汇总,含 AI 中文分析。

CWE-190 是整数溢出或环绕漏洞,指程序在计算时未考虑数值范围,导致结果超出存储容量并发生回绕。攻击者常通过构造极大输入值,使整数运算结果异常变小,从而绕过安全逻辑或引发缓冲区溢出。开发者应避免假设结果必然大于原值,需在使用前验证输入范围,并采用支持溢出检测的安全库或静态分析工具,确保算术运算在预期范围内安全执行。

MITRE CWE 官方描述
CWE:CWE-190 整数溢出或回绕 (Integer Overflow or Wraparound) 英文:产品在执行计算时,如果其逻辑假设结果值始终大于原始值,则可能导致整数溢出或回绕 (Integer Overflow or Wraparound)。当整数值递增到一个超出其关联表示法所能存储的范围时,就会发生这种情况。一旦发生这种情况,该值可能会变成一个非常小或负数的值。
常见影响 (5)
AvailabilityDoS: Crash, Exit, or Restart, DoS: Resource Consumption (Memory), DoS: Instability
This weakness can generally lead to undefined behavior and therefore crashes. When the calculated result is used for resource allocation, this weakness can cause too many (or too few) resources to be allocated, possibly enabling crashes if the product requests more resources than can be provided.
IntegrityModify Memory
If the value in question is important to data (as opposed to flow), simple data corruption has occurred. Also, if the overflow/wraparound results in other conditions such as buffer overflows, further memory corruption may occur.
Confidentiality, Availability, Access ControlExecute Unauthorized Code or Commands, Bypass Protection Mechanism
This weakness can sometimes trigger buffer overflows, which can be used to execute arbitrary code. This is usually outside the scope of the product's implicit security policy.
Availability, OtherAlter Execution Logic, DoS: Crash, Exit, or Restart, DoS: Resource Consumption (CPU)
If the overflow/wraparound occurs in a loop index variable, this could cause the loop to terminate at the wrong time - too early, too late, or not at all (i.e., infinite loops). With too many iterations, some loops could consume too many resources such as memory, file handles, etc., possibly leading…
Access ControlBypass Protection Mechanism
If integer values are used in security-critical decisions, such as calculating quotas or allocation limits, integer overflows can be used to cause an incorrect security decision.
缓解措施 (5)
RequirementsEnsure that all protocols are strictly defined, such that all out-of-bounds behavior can be identified simply, and require strict conformance to the protocol.
RequirementsUse a language that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid. If possible, choose a language or compiler that performs automatic bounds checking.
Architecture and DesignUse a vetted library or framework that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid [REF-1482]. Use libraries or frameworks that make it easier to handle numbers without unexpected consequences. Examples include safe integer handling packages such as SafeInt (C++) or IntegerLib (C or C++). [REF-106]
ImplementationPerform input validation on any numeric input by ensuring that it is within the expected range. Enforce that the input meets both the minimum and maximum requirements for the expected range. Use unsigned integers where possible. This makes it easier to perform validation for integer overflows. When signed integers are required, ensure that the range check includes minimum values as well as maximum…
ImplementationUnderstand the programming language's underlying representation and how it interacts with numeric calculation (CWE-681). Pay close attention to byte size discrepancies, precision, signed/unsigned distinctions, truncation, conversion and casting between types, "not-a-number" calculations, and how the language handles numbers that are too large or too small for its underlying representation. [REF-7]…
代码示例 (2)
The following image processing code allocates a table for images.
img_t table_ptr; /*struct containing img data, 10kB each*/ int num_imgs; ... num_imgs = get_num_imgs(); table_ptr = (img_t*)malloc(sizeof(img_t)*num_imgs); ...
Bad · C
The following code excerpt from OpenSSH 3.3 demonstrates a classic case of integer overflow:
nresp = packet_get_int(); if (nresp > 0) { response = xmalloc(nresp*sizeof(char*)); for (i = 0; i < nresp; i++) response[i] = packet_get_string(NULL); }
Bad · C
CVE ID标题CVSS风险等级Published
CVE-2024-49089 Microsoft Windows Routing and Remote Access Service 安全漏洞 — Windows 10 Version 1809 7.2 High2024-12-10
CVE-2024-49085 Microsoft Windows Routing and Remote Access Service 安全漏洞 — Windows Server 2019 8.8 High2024-12-10
CVE-2024-7488 RestApp Online Ordering System 输入验证错误漏洞 — Online Ordering System 5.3 Medium2024-12-04
CVE-2024-33063 Qualcomm Chipsets 安全漏洞 — Snapdragon 7.5 High2024-12-02
CVE-2024-42384 Cesanta Mongoose Web Server 输入验证错误漏洞 — Mongoose Web Server 7.5 High2024-11-18
CVE-2022-20685 Cisco Products Snort 输入验证错误漏洞 — Cisco Cyber Vision 7.5 High2024-11-15
CVE-2024-43641 Microsoft Windows Registry 输入验证错误漏洞 — Windows Server 2025 7.8 High2024-11-12
CVE-2024-43635 Microsoft Windows Telephony Server 输入验证错误漏洞 — Windows 10 Version 1809 8.8 High2024-11-12
CVE-2024-43628 Microsoft Windows Telephony Server 输入验证错误漏洞 — Windows 10 Version 1809 8.8 High2024-11-12
CVE-2024-43623 Microsoft Windows NT OS Kernel 安全漏洞 — Windows 10 Version 1809 7.8 High2024-11-12
CVE-2024-10917 Eclipse OpenJ9 输入验证错误漏洞 — Open J9 3.7 Low2024-11-11
CVE-2024-43566 Microsoft Edge 输入验证错误漏洞 — Microsoft Edge (Chromium-based) 7.5 High2024-10-17
CVE-2024-47424 Adobe Framemaker 输入验证错误漏洞 — Adobe Framemaker 7.8 High2024-10-09
CVE-2024-47416 Adobe Animate 输入验证错误漏洞 — Animate 7.8 High2024-10-09
CVE-2024-37976 Microsoft Windows 输入验证错误漏洞 — Windows 11 Version 24H2 6.7 Medium2024-10-08
CVE-2024-42415 GNOME Project G Structured File Library 输入验证错误漏洞 — G Structured File Library (libgsf) 8.4 High2024-10-03
CVE-2024-36474 GNOME Project G Structured File Library 安全漏洞 — G Structured File Library (libgsf) 8.4 High2024-10-03
CVE-2024-20434 Cisco IOS XE Software 安全漏洞 — Cisco IOS XE Software 4.3 Medium2024-09-25
CVE-2024-31416 Eaton Foreseer EPMS 安全漏洞 — Foreseer 5.6 Medium2024-09-13
CVE-2024-34121 Adobe Illustrator 输入验证错误漏洞 — Illustrator 7.8 High2024-09-13
CVE-2024-43495 Microsoft Windows 输入验证错误漏洞 — Windows 11 version 22H2 7.3 High2024-09-10
CVE-2024-44087 Siemens Automation License Manager 输入验证错误漏洞 — Automation License Manager V5 8.6 High2024-09-10
CVE-2024-33035 Qualcomm Chipsets 安全漏洞 — Snapdragon 8.4 High2024-09-02
CVE-2024-28044 OpenHarmony 安全漏洞 — OpenHarmony 3.3 Low2024-09-02
CVE-2024-41851 Adobe InDesign 输入验证错误漏洞 — InDesign Desktop 7.8 High2024-08-14
CVE-2024-41858 Adobe InCopy 输入验证错误漏洞 — InCopy 7.8 High2024-08-14
CVE-2024-38215 Microsoft Windows Cloud Files Mini Filter Driver 输入验证错误漏洞 — Windows 11 Version 24H2 7.8 High2024-08-13
CVE-2024-38144 Microsoft Windows 输入验证错误漏洞 — Windows 10 Version 1809 8.8 High2024-08-13
CVE-2024-38128 Microsoft Windows Routing and Remote Access Service 输入验证错误漏洞 — Windows Server 2019 8.8 High2024-08-13
CVE-2024-33024 Qualcomm Chipsets 安全漏洞 — Snapdragon 7.5 High2024-08-05

CWE-190(整数溢出或超界折返) 是常见的弱点类别,本平台收录该类弱点关联的 845 条 CVE 漏洞。