Type confusion in V8 in Google Chrome prior to 103.0.5060.114 allowed a
remote attacker to potentially exploit heap corruption via a crafted HTML
page.
#### Notes
Author| Note
---|---
[alexmurray](<https://launchpad.net/~alexmurray>) | The Debian chromium source package is called chromium-browser in Ubuntu
[mdeslaur](<https://launchpad.net/~mdeslaur>) | starting with Ubuntu 19.10, the chromium-browser package is just a script that installs the Chromium snap
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(CVE-2022-2163)\n\n - Heap buffer overflow in WebRTC in Google Chrome prior to 103.0.5060.114 allowed a remote attacker to\n potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2294)\n\n - Type confusion in V8 in Google Chrome prior to 103.0.5060.114 allowed a remote attacker to potentially\n exploit heap corruption via a crafted HTML page. (CVE-2022-2295)\n\n - Use after free in Chrome OS Shell in Google Chrome on Chrome OS prior to 103.0.5060.114 allowed a remote\n attacker who convinced a user to engage in specific user interactions to potentially exploit heap\n corruption via direct UI interactions. 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(CVE-2022-2480)\n\n - Use after free in Views in Google Chrome prior to 103.0.5060.134 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via UI interaction.\n (CVE-2022-2481)\n\n - Use after free in Omnibox in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2603)\n\n - Use after free in Safe Browsing in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2604)\n\n - Out of bounds read in Dawn in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2605)\n\n - Use after free in Managed devices API in Google Chrome prior to 104.0.5112.79 allowed a remote attacker who convinced a user to enable a specific Enterprise policy to potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2606)\n\n - Use after free in Tab Strip in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2607)\n\n - Use after free in Overview Mode in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2608)\n\n - Use after free in Nearby Share in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2609)\n\n - Insufficient policy enforcement in Background Fetch in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to leak cross-origin data via a crafted HTML page. (CVE-2022-2610)\n\n - Inappropriate implementation in Fullscreen API in Google Chrome on Android prior to 104.0.5112.79 allowed a remote attacker to spoof the contents of the Omnibox (URL bar) via a crafted HTML page. (CVE-2022-2611)\n\n - Side-channel information leakage in Keyboard input in Google Chrome prior to 104.0.5112.79 allowed a remote attacker who had compromised the renderer process to obtain potentially sensitive information from process memory via a crafted HTML page. (CVE-2022-2612)\n\n - Use after free in Input in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who convinced a user to enage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2613)\n\n - Use after free in Sign-In Flow in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2614)\n\n - Insufficient policy enforcement in Cookies in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to leak cross-origin data via a crafted HTML page. (CVE-2022-2615)\n\n - Inappropriate implementation in Extensions API in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced a user to install a malicious extension to spoof the contents of the Omnibox (URL bar) via a crafted Chrome Extension. (CVE-2022-2616)\n\n - Use after free in Extensions API in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced a user to install a malicious extension to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2617)\n\n - Insufficient validation of untrusted input in Internals in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to bypass download restrictions via a malicious file . (CVE-2022-2618)\n\n - Insufficient validation of untrusted input in Settings in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced a user to install a malicious extension to inject scripts or HTML into a privileged page via a crafted HTML page. (CVE-2022-2619)\n\n - Use after free in WebUI in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2620)\n\n - Use after free in Extensions in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced a user to install a malicious extension to potentially exploit heap corruption via specific UI interactions.\n (CVE-2022-2621)\n\n - Insufficient validation of untrusted input in Safe Browsing in Google Chrome on Windows prior to 104.0.5112.79 allowed a remote attacker to bypass download restrictions via a crafted file.\n (CVE-2022-2622)\n\n - Use after free in Offline in Google Chrome on Android prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via specific UI interactions. (CVE-2022-2623)\n\n - Heap buffer overflow in PDF in Google Chrome prior to 104.0.5112.79 allowed a remote attacker who convinced a user to engage in specific user interactions to potentially exploit heap corruption via a crafted PDF file. (CVE-2022-2624)\n\n - Microsoft Edge (Chromium-based) Remote Code Execution Vulnerability. (CVE-2022-33636)\n\n - Microsoft Edge (Chromium-based) Security Feature Bypass Vulnerability. (CVE-2022-33649)\n\n - Microsoft Edge (Chromium-based) Elevation of Privilege Vulnerability. (CVE-2022-35796)\n\n - Use after free in FedCM. (CVE-2022-2852)\n\n - Heap buffer overflow in Downloads. (CVE-2022-2853)\n\n - Use after free in SwiftShader. (CVE-2022-2854)\n\n - Use after free in ANGLE. (CVE-2022-2855)\n\n - Insufficient validation of untrusted input in Intents. (CVE-2022-2856)\n\n - Use after free in Blink. (CVE-2022-2857)\n\n - Use after free in Sign-In Flow. (CVE-2022-2858)\n\n - Use after free in Chrome OS Shell. (CVE-2022-2859)\n\n - Insufficient policy enforcement in Cookies. (CVE-2022-2860)\n\n - Inappropriate implementation in Extensions API. 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(CVE-2022-2163)\n\n - Heap buffer overflow in WebRTC in Google Chrome prior to 103.0.5060.114 allowed a remote attacker to\n potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2294)\n\n - Type confusion in V8 in Google Chrome prior to 103.0.5060.114 allowed a remote attacker to potentially\n exploit heap corruption via a crafted HTML page. (CVE-2022-2295)\n\n - Use after free in Chrome OS Shell in Google Chrome on Chrome OS prior to 103.0.5060.114 allowed a remote\n attacker who convinced a user to engage in specific user interactions to potentially exploit heap\n corruption via direct UI interactions. 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(CVE-2022-2480)\n\n - Use after free in Views in Google Chrome prior to 103.0.5060.134 allowed a remote attacker who convinced a\n user to engage in specific user interactions to potentially exploit heap corruption via UI interaction.\n (CVE-2022-2481)\n\n - Use after free in Omnibox in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to potentially\n exploit heap corruption via a crafted HTML page. (CVE-2022-2603)\n\n - Use after free in Safe Browsing in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to\n potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2604)\n\n - Out of bounds read in Dawn in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to\n potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2605)\n\n - Use after free in Managed devices API in Google Chrome prior to 104.0.5112.79 allowed a remote attacker\n who convinced a user to enable a specific Enterprise policy to potentially exploit heap corruption via a\n crafted HTML page. (CVE-2022-2606)\n\n - Use after free in Tab Strip in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker\n who convinced a user to engage in specific user interactions to potentially exploit heap corruption via\n specific UI interactions. (CVE-2022-2607)\n\n - Use after free in Overview Mode in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote\n attacker who convinced a user to engage in specific user interactions to potentially exploit heap\n corruption via specific UI interactions. (CVE-2022-2608)\n\n - Use after free in Nearby Share in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote\n attacker who convinced a user to engage in specific user interactions to potentially exploit heap\n corruption via specific UI interactions. (CVE-2022-2609)\n\n - Insufficient policy enforcement in Background Fetch in Google Chrome prior to 104.0.5112.79 allowed a\n remote attacker to leak cross-origin data via a crafted HTML page. (CVE-2022-2610)\n\n - Inappropriate implementation in Fullscreen API in Google Chrome on Android prior to 104.0.5112.79 allowed\n a remote attacker to spoof the contents of the Omnibox (URL bar) via a crafted HTML page. (CVE-2022-2611)\n\n - Side-channel information leakage in Keyboard input in Google Chrome prior to 104.0.5112.79 allowed a\n remote attacker who had compromised the renderer process to obtain potentially sensitive information from\n process memory via a crafted HTML page. (CVE-2022-2612)\n\n - Use after free in Input in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who\n convinced a user to enage in specific user interactions to potentially exploit heap corruption via\n specific UI interactions. (CVE-2022-2613)\n\n - Use after free in Sign-In Flow in Google Chrome prior to 104.0.5112.79 allowed a remote attacker to\n potentially exploit heap corruption via a crafted HTML page. (CVE-2022-2614)\n\n - Insufficient policy enforcement in Cookies in Google Chrome prior to 104.0.5112.79 allowed a remote\n attacker to leak cross-origin data via a crafted HTML page. (CVE-2022-2615)\n\n - Inappropriate implementation in Extensions API in Google Chrome prior to 104.0.5112.79 allowed an attacker\n who convinced a user to install a malicious extension to spoof the contents of the Omnibox (URL bar) via a\n crafted Chrome Extension. (CVE-2022-2616)\n\n - Use after free in Extensions API in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced\n a user to install a malicious extension to potentially exploit heap corruption via specific UI\n interactions. (CVE-2022-2617)\n\n - Insufficient validation of untrusted input in Internals in Google Chrome prior to 104.0.5112.79 allowed a\n remote attacker to bypass download restrictions via a malicious file . (CVE-2022-2618)\n\n - Insufficient validation of untrusted input in Settings in Google Chrome prior to 104.0.5112.79 allowed an\n attacker who convinced a user to install a malicious extension to inject scripts or HTML into a privileged\n page via a crafted HTML page. (CVE-2022-2619)\n\n - Use after free in WebUI in Google Chrome on Chrome OS prior to 104.0.5112.79 allowed a remote attacker who\n convinced a user to engage in specific user interactions to potentially exploit heap corruption via\n specific UI interactions. (CVE-2022-2620)\n\n - Use after free in Extensions in Google Chrome prior to 104.0.5112.79 allowed an attacker who convinced a\n user to install a malicious extension to potentially exploit heap corruption via specific UI interactions.\n (CVE-2022-2621)\n\n - Insufficient validation of untrusted input in Safe Browsing in Google Chrome on Windows prior to\n 104.0.5112.79 allowed a remote attacker to bypass download restrictions via a crafted file.\n (CVE-2022-2622)\n\n - Use after free in Offline in Google Chrome on Android prior to 104.0.5112.79 allowed a remote attacker who\n convinced a user to engage in specific user interactions to potentially exploit heap corruption via\n specific UI interactions. (CVE-2022-2623)\n\n - Heap buffer overflow in PDF in Google Chrome prior to 104.0.5112.79 allowed a remote attacker who\n convinced a user to engage in specific user interactions to potentially exploit heap corruption via a\n crafted PDF file. (CVE-2022-2624)\n\n - Microsoft Edge (Chromium-based) Remote Code Execution Vulnerability. (CVE-2022-33636)\n\n - Microsoft Edge (Chromium-based) Security Feature Bypass Vulnerability. (CVE-2022-33649)\n\n - Microsoft Edge (Chromium-based) Elevation of Privilege Vulnerability. (CVE-2022-35796)\n\n - Use after free in FedCM. (CVE-2022-2852)\n\n - Heap buffer overflow in Downloads. (CVE-2022-2853)\n\n - Use after free in SwiftShader. (CVE-2022-2854)\n\n - Use after free in ANGLE. (CVE-2022-2855)\n\n - Insufficient validation of untrusted input in Intents. (CVE-2022-2856)\n\n - Use after free in Blink. (CVE-2022-2857)\n\n - Use after free in Sign-In Flow. (CVE-2022-2858)\n\n - Use after free in Chrome OS Shell. (CVE-2022-2859)\n\n - Insufficient policy enforcement in Cookies. (CVE-2022-2860)\n\n - Inappropriate implementation in Extensions API. 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We've just released Chrome 103 (103.0.5060.71) for Android: it'll become [available on Google Play](<https://play.google.com/store/apps/details?id=com.android.chrome>) over the next few days.\n\nThis release includes security,stability and performance improvements. You can see a full list of the changes in the [Git log](<https://chromium.googlesource.com/chromium/src/+log/103.0.5060.70..103.0.5060.71?pretty=fuller&n=10000>). \n\n\n\n\n Security Fixes and Rewards\n\nNote: Access to bug details and links may be kept restricted until a majority of users are updated with a fix. We will also retain restrictions if the bug exists in a third party library that other projects similarly depend on, but haven't yet fixed.\n\n\n\n\nThis update includes [3](<https://bugs.chromium.org/p/chromium/issues/list?can=1&q=type%3Abug-security+os%3DAndroid%2Cios%2Clinux%2Cmac%2Cwindows%2Call%2Cchrome+label%3ARelease-1-M103>) security fixes. Below, we highlight fixes that were contributed by external researchers. Please see the [Chrome Security Page](<https://sites.google.com/a/chromium.org/dev/Home/chromium-security>) for more information.\n\n\n\n\n[$TBD][[1327312](<https://crbug.com/1341043>)] High CVE-2022-2294: Heap buffer overflow in WebRTC.\n\n[$7500][[1336869](<https://crbug.com/1336869>)] High CVE-2022-2295: Type Confusion in V8. Reported by avaue and Buff3tts at S.S.L. on 2022-06-16\n\n\n\n\nWe would also like to thank all security researchers that worked with us during the development cycle to prevent security bugs from ever reaching the stable channel.\n\nGoogle is aware that an exploit for CVE-2022-2294 exists in the wild.\n\n\n\nAs usual, our ongoing internal security work was responsible for a wide range of fixes:\n\n * [[1341569](<https://crbug.com/1341569>)] Various fixes from internal audits, fuzzing and other initiatives\n\n\nMany of our security bugs are detected using [AddressSanitizer](<https://code.google.com/p/address-sanitizer/wiki/AddressSanitizer>), [MemorySanitizer](<https://code.google.com/p/memory-sanitizer/wiki/MemorySanitizer>), [UndefinedBehaviorSanitizer](<https://www.chromium.org/developers/testing/undefinedbehaviorsanitizer>), [Control Flow Integrity](<https://sites.google.com/a/chromium.org/dev/developers/testing/control-flow-integrity>), [libFuzzer](<https://sites.google.com/a/chromium.org/dev/developers/testing/libfuzzer>), or [AFL.\n\nIf you find a new issue, please let us know by [filing a bug](<https://code.google.com/p/chromium/issues/entry?template=Android%20Issue>). \n\n\n\nKrishna Govind \n[Google Chrome](<https://www.google.com/chrome/>)", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-04T00:00:00", "type": "chrome", "title": "Chrome for Android Update", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295"], "modified": "2022-07-04T00:00:00", "id": "GCSA-7720125337817983232", "href": "https://chromereleases.googleblog.com/2022/07/chrome-for-android-update.html", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-12-02T20:11:51", "description": "The Stable channel has been updated to 103.0.5060.114 for Windows. which will roll out over the coming days/weeks. \n\nA full list of changes in this build is available in the [log](<https://chromium.googlesource.com/chromium/src/+log/103.0.5060.53..103.0.5060.114?pretty=fuller&n=10000>). Interested in switching release channels? Find out how [here](<https://www.chromium.org/getting-involved/dev-channel>). If you find a new issue, please let us know by [filing a bug](<https://crbug.com/>). The [community help forum](<https://productforums.google.com/forum/#!forum/chrome>) is also a great place to reach out for help or learn about common issues.\n\n\n\n\n Security Fixes and Rewards\n\nNote: Access to bug details and links may be kept restricted until a majority of users are updated with a fix. We will also retain restrictions if the bug exists in a third party library that other projects similarly depend on, but haven't yet fixed.\n\n\n\n\nThis update includes [4](<https://bugs.chromium.org/p/chromium/issues/list?can=1&q=type%3Abug-security+os%3DAndroid%2Cios%2Clinux%2Cmac%2Cwindows%2Call%2Cchrome+label%3ARelease-1-M103>) security fixes. Below, we highlight fixes that were contributed by external researchers. Please see the [Chrome Security Page](<https://sites.google.com/a/chromium.org/dev/Home/chromium-security>) for more information. \n\n[$TBD][[1341043](<https://crbug.com/1341043>)] High CVE-2022-2294: Heap buffer overflow in WebRTC. Reported by Jan Vojtesek from the Avast Threat Intelligence team on 2022-07-01 \n\n[$7500][[1336869](<https://crbug.com/1336869>)] High CVE-2022-2295: Type Confusion in V8. Reported by avaue and Buff3tts at S.S.L. on 2022-06-16 \n\n[$3000][[1327087](<https://crbug.com/1327087>)] High CVE-2022-2296: Use after free in Chrome OS Shell. Reported by Khalil Zhani on 2022-05-19 \n\n\nWe would also like to thank all security researchers that worked with us during the development cycle to prevent security bugs from ever reaching the stable channel.\n\nGoogle is aware that an exploit for CVE-2022-2294 exists in the wild.\n\n\n\n\n\nAs usual, our ongoing internal security work was responsible for a wide range of fixes:\n\n * [[1338205](<https://crbug.com/1338205>)] Various fixes from internal audits, fuzzing and other initiatives\n\nMany of our security bugs are detected using [AddressSanitizer](<https://code.google.com/p/address-sanitizer/wiki/AddressSanitizer>), [MemorySanitizer](<https://code.google.com/p/memory-sanitizer/wiki/MemorySanitizer>), [UndefinedBehaviorSanitizer](<https://www.chromium.org/developers/testing/undefinedbehaviorsanitizer>), [Control Flow Integrity](<https://sites.google.com/a/chromium.org/dev/developers/testing/control-flow-integrity>), [libFuzzer](<https://sites.google.com/a/chromium.org/dev/developers/testing/libfuzzer>), or [AFL](<https://github.com/google/afl>).\n\n\n\n\nInterested in switching release channels? Find out how [here](<https://www.chromium.org/getting-involved/dev-channel>). If you find a new issue, please let us know by [filing a bug](<https://crbug.com/>). The [community help forum](<https://productforums.google.com/forum/#!forum/chrome>) is also a great place to reach out for help or learn about common issues.\n\n\n\n\n\n\n\n\nPrudhvikumar Bommana\n\nGoogle Chrome", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-04T00:00:00", "type": "chrome", "title": "Stable Channel Update for Desktop", "bulletinFamily": "software", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-04T00:00:00", "id": "GCSA-5089288012050676645", "href": "https://chromereleases.googleblog.com/2022/07/stable-channel-update-for-desktop.html", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "kaspersky": [{"lastseen": "2023-12-02T19:24:04", "description": "### *Detect date*:\n07/06/2022\n\n### *Severity*:\nHigh\n\n### *Description*:\nMultiple vulnerabilities were found in Microsoft Browser. Malicious users can exploit these vulnerabilities to execute arbitrary code, cause denial of service.\n\n### *Exploitation*:\nMalware exists for this vulnerability. Usually such malware is classified as Exploit. [More details](<https://threats.kaspersky.com/en/class/Exploit/>).\n\n### *Affected products*:\nMicrosoft Edge (Chromium-based)\n\n### *Solution*:\nInstall necessary updates from the Settings and more menu, that are listed in your About Microsoft Edge page (Microsoft Edge About page usually can be accessed from the Help and feedback option) \n[Microsoft Edge update settings](<https://support.microsoft.com/en-us/topic/microsoft-edge-update-settings-af8aaca2-1b69-4870-94fe-18822dbb7ef1>)\n\n### *Original advisories*:\n[CVE-2022-2294](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-2294>) \n[CVE-2022-2295](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-2295>) \n\n\n### *Impacts*:\nACE \n\n### *Related products*:\n[Microsoft Edge](<https://threats.kaspersky.com/en/product/Microsoft-Edge/>)\n\n### *CVE-IDS*:\n[CVE-2022-2295](<https://vulners.com/cve/CVE-2022-2295>)5.0Warning \n[CVE-2022-2294](<https://vulners.com/cve/CVE-2022-2294>)5.0Warning\n\n### *Microsoft official advisories*:", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-06T00:00:00", "type": "kaspersky", "title": "KLA12579 Multiple vulnerabilities in Microsoft Browser", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295"], "modified": "2023-09-29T00:00:00", "id": "KLA12579", "href": "https://threats.kaspersky.com/en/vulnerability/KLA12579/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-12-02T19:23:56", "description": "### *Detect date*:\n07/14/2022\n\n### *Severity*:\nHigh\n\n### *Description*:\nMultiple vulnerabilities were found in Opera. Malicious users can exploit these vulnerabilities to execute arbitrary code, cause denial of service.\n\n### *Exploitation*:\nMalware exists for this vulnerability. Usually such malware is classified as Exploit. [More details](<https://threats.kaspersky.com/en/class/Exploit/>).\n\n### *Affected products*:\nOpera earlier than 89.0.4447.48\n\n### *Solution*:\nUpdate to the latest version \n[Download Opera](<https://www.opera.com>)\n\n### *Original advisories*:\n[Changelog for 89](<https://blogs.opera.com/desktop/changelog-for-89/#b4447.48>) \n[Stable Channel Update for Desktop](<https://chromereleases.googleblog.com/2022/07/stable-channel-update-for-desktop.html>) \n\n\n### *Impacts*:\nACE \n\n### *Related products*:\n[Opera](<https://threats.kaspersky.com/en/product/Opera/>)\n\n### *CVE-IDS*:\n[CVE-2022-2295](<https://vulners.com/cve/CVE-2022-2295>)5.0Warning \n[CVE-2022-2294](<https://vulners.com/cve/CVE-2022-2294>)5.0Warning \n[CVE-2022-2296](<https://vulners.com/cve/CVE-2022-2296>)5.0Warning", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-14T00:00:00", "type": "kaspersky", "title": "KLA12587 Multiple vulnerabilities in Opera", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2023-09-29T00:00:00", "id": "KLA12587", "href": "https://threats.kaspersky.com/en/vulnerability/KLA12587/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-12-02T19:24:05", "description": "### *Detect date*:\n07/04/2022\n\n### *Severity*:\nHigh\n\n### *Description*:\nMultiple vulnerabilities were found in Google Chrome. Malicious users can exploit these vulnerabilities to cause denial of service, execute arbitrary code.\n\n### *Exploitation*:\nMalware exists for this vulnerability. Usually such malware is classified as Exploit. [More details](<https://threats.kaspersky.com/en/class/Exploit/>).\n\n### *Affected products*:\nGoogle Chrome earlier than 103.0.5060.114\n\n### *Solution*:\nUpdate to the latest version \n[Download Google Chrome](<https://www.google.com/chrome/>)\n\n### *Original advisories*:\n[Stable Channel Update for Desktop](<https://chromereleases.googleblog.com/2022/07/stable-channel-update-for-desktop.html>) \n\n\n### *Impacts*:\nACE \n\n### *Related products*:\n[Google Chrome](<https://threats.kaspersky.com/en/product/Google-Chrome/>)\n\n### *CVE-IDS*:\n[CVE-2022-2295](<https://vulners.com/cve/CVE-2022-2295>)5.0Warning \n[CVE-2022-2294](<https://vulners.com/cve/CVE-2022-2294>)5.0Warning \n[CVE-2022-2296](<https://vulners.com/cve/CVE-2022-2296>)5.0Warning", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-04T00:00:00", "type": "kaspersky", "title": "KLA12578 Multiple vulnerabilities in Google Chrome", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2023-09-29T00:00:00", "id": "KLA12578", "href": "https://threats.kaspersky.com/en/vulnerability/KLA12578/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "suse": [{"lastseen": "2022-11-09T21:00:13", "description": "An update that fixes three vulnerabilities is now available.\n\nDescription:\n\n This update for chromium fixes the following issues:\n\n Chromium 103.0.5060.114 (boo#1201216)\n\n * CVE-2022-2294: Heap buffer overflow in WebRTC\n * CVE-2022-2295: Type Confusion in V8\n * CVE-2022-2296: Use after free in Chrome OS Shell\n\n\nPatch Instructions:\n\n To install this openSUSE Security Update use the SUSE recommended installation methods\n like YaST online_update or \"zypper patch\".\n\n Alternatively you can run the command listed for your product:\n\n - openSUSE Backports SLE-15-SP4:\n\n zypper in -t patch openSUSE-2022-10055=1\n\n - openSUSE Backports SLE-15-SP3:\n\n zypper in -t patch openSUSE-2022-10055=1", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-13T00:00:00", "type": "suse", "title": "Security update for chromium (important)", "bulletinFamily": "unix", "cvss2": {}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-13T00:00:00", "id": "OPENSUSE-SU-2022:10055-1", "href": "https://lists.opensuse.org/archives/list/security-announce@lists.opensuse.org/thread/TJ5LTW7LEHL5JFGRUX2J7S5CEEACPAUP/", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2022-11-09T22:08:22", "description": "An update that fixes 9 vulnerabilities is now available.\n\nDescription:\n\n This update for opera fixes the following issues:\n\n opera was updated to 89.0.4447.71\n\n - CHR-8957 Update chromium on desktop-stable-103-4447 to 103.0.5060.134\n - DNA-100492 authPrivate.storeCredentials should work with running auth\n session\n - DNA-100649 \ufffd\ufffd\ufffdSign out\ufffd\ufffd\ufffd from settings doesn\ufffd\ufffd\ufffdt also sign out from\n auth\n - DNA-100653 VPN Badge popup \ufffd\ufffd\ufffd not working well with different page\n zoom being set in browser settings\n - DNA-100712 Wrong spacing on text to reset sync passphrase in settings\n - DNA-100799 VPN icon is \ufffd\ufffd\ufffdpro\ufffd\ufffd\ufffd on disconnected\n - DNA-100841 Remove Get Subscription and Get button from VPN pro settings\n - DNA-100883 Update missing translations from chromium\n - DNA-100899 Translation error in Turkish\n - DNA-100912 Unable to select pinboards when sync everything is enabled\n - DNA-100959 Use after move RecentSearchProvider::ExecuteWithDB\n - DNA-100960 Use after move\n CountryBlacklistServiceImpl::DownloadCountryBlacklist\n - DNA-100961 Use after move\n CategorizationDataCollection::Iterator::Iterator\n - DNA-100989 Crash at\n opera::EasyFileButton::SetThumbnail(gfx::ImageSkia const&)\n\n - The update to chromium 103.0.5060.134 fixes following issues:\n CVE-2022-2163, CVE-2022-2477, CVE-2022-2478, CVE-2022-2479\n CVE-2022-2480, CVE-2022-2481\n\n opera was updated to 89.0.4447.51\n\n - DNA-99538 Typed content of address bar shared between tabs\n - DNA-100418 Set 360 so as search engine in China\n - DNA-100629 Launch Auth login when enabling sync while logged in\n - DNA-100776 Popup is too long if there are no services available\n\n opera was updated to 89.0.4447.48\n\n - CHR-8940 Update chromium on desktop-stable-103-4447 to 103.0.5060.114\n - DNA-100247 Make it possible to display hint when tab scrolling gets\n triggered\n - DNA-100482 Shopping corner icon availability\n - DNA-100575 Add unique IDs to all web element in opera account popup\n - DNA-100625 Opera account popup appears too high on Linux\n - DNA-100627 Enable #snap-from-panel on all stream\n - DNA-100636 DCHECK at suggestion_item.cc(484)\n - DNA-100685 Fix crash when attaching to tab strip scroll buttons\n - DNA-100693 Enable Sticky Site sidebar item to have notification bubble\n - DNA-100698 [AdBlock] Unhandled Disconnect list category:\n \"emailaggressive\"\n - DNA-100716 Misstype Settings \"Enhanced address bar\"\n - DNA-100732 Fix & escaping in translated strings\n - DNA-100759 Crash when loading personal news in private window\n\n - The update to chromium 103.0.5060.114 fixes following issues:\n CVE-2022-2294, CVE-2022-2295, CVE-2022-2296\n\n opera was updated to 89.0.4447.38\n\n - DNA-100283 Translations for O89\n\n - Complete Opera 89.0 changelog at:\n https://blogs.opera.com/desktop/changelog-for-89/\n\n opera was updated to 89.0.4447.37\n\n - CHR-8929 Update chromium on desktop-stable-103-4447 to 103.0.5060.66\n - DNA-99780 Crash at zmq::zmq_abort(char const*)\n - DNA-100377 New opera account popup doesn\ufffd\ufffd\ufffdt open on Linux\n - DNA-100589 Crash at base::internal::Invoker<T>::RunOnce\n (base::internal::BindStateBase*, scoped_refptr<T>&&)\n - DNA-100607 Sync \ufffd\ufffd\ufffdSign in\ufffd\ufffd\ufffd button doesn\ufffd\ufffd\ufffdt work with Opera Account\n popup\n\n\nPatch Instructions:\n\n To install this openSUSE Security Update use the SUSE recommended installation methods\n like YaST online_update or \"zypper patch\".\n\n Alternatively you can run the command listed for your product:\n\n - openSUSE Leap 15.3:NonFree:\n\n zypper in -t patch openSUSE-2022-10087=1", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-08-16T00:00:00", "type": "suse", "title": "Security update for opera (important)", "bulletinFamily": "unix", "cvss2": {}, "cvelist": ["CVE-2022-2163", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296", "CVE-2022-2477", "CVE-2022-2478", "CVE-2022-2479", "CVE-2022-2480", "CVE-2022-2481"], "modified": "2022-08-16T00:00:00", "id": "OPENSUSE-SU-2022:10087-1", "href": "https://lists.opensuse.org/archives/list/security-announce@lists.opensuse.org/thread/SBC3VMU74SRNP6PNL6PMNTJCIFN32DXR/", "cvss": {"score": 0.0, "vector": "NONE"}}, {"lastseen": "2022-11-09T22:08:22", "description": "An update that fixes 9 vulnerabilities is now available.\n\nDescription:\n\n This update for opera fixes the following issues:\n\n Opera was updated to 89.0.4447.71\n\n - CHR-8957 Update chromium on desktop-stable-103-4447 to 103.0.5060.134\n - DNA-100492 authPrivate.storeCredentials should work with running auth\n session\n - DNA-100649 \ufffd\ufffd\ufffdSign out\ufffd\ufffd\ufffd from settings doesn\ufffd\ufffd\ufffdt also sign out from\n auth\n - DNA-100653 VPN Badge popup \ufffd\ufffd\ufffd not working well with different page\n zoom being set in browser settings\n - DNA-100712 Wrong spacing on text to reset sync passphrase in settings\n - DNA-100799 VPN icon is \ufffd\ufffd\ufffdpro\ufffd\ufffd\ufffd on disconnected\n - DNA-100841 Remove Get Subscription and Get button from VPN pro settings\n - DNA-100883 Update missing translations from chromium\n - DNA-100899 Translation error in Turkish\n - DNA-100912 Unable to select pinboards when sync everything is enabled\n - DNA-100959 Use after move RecentSearchProvider::ExecuteWithDB\n - DNA-100960 Use after move\n CountryBlacklistServiceImpl::DownloadCountryBlacklist\n - DNA-100961 Use after move\n CategorizationDataCollection::Iterator::Iterator\n - DNA-100989 Crash at\n opera::EasyFileButton::SetThumbnail(gfx::ImageSkia const&)\n\n - The update to chromium 103.0.5060.134 fixes following issues:\n CVE-2022-2163, CVE-2022-2477, CVE-2022-2478, CVE-2022-2479\n CVE-2022-2480, CVE-2022-2481\n\n - Update to 89.0.4447.51\n\n - DNA-99538 Typed content of address bar shared between tabs\n - DNA-100418 Set 360 so as search engine in China\n - DNA-100629 Launch Auth login when enabling sync while logged in\n - DNA-100776 Popup is too long if there are no services available\n\n - Update to 89.0.4447.48\n\n - CHR-8940 Update chromium on desktop-stable-103-4447 to 103.0.5060.114\n - DNA-100247 Make it possible to display hint when tab scrolling gets\n triggered\n - DNA-100482 Shopping corner icon availability\n - DNA-100575 Add unique IDs to all web element in opera account popup\n - DNA-100625 Opera account popup appears too high on Linux\n - DNA-100627 Enable #snap-from-panel on all stream\n - DNA-100636 DCHECK at suggestion_item.cc(484)\n - DNA-100685 Fix crash when attaching to tab strip scroll buttons\n - DNA-100693 Enable Sticky Site sidebar item to have notification bubble\n - DNA-100698 [AdBlock] Unhandled Disconnect list category:\n \"emailaggressive\"\n - DNA-100716 Misstype Settings \"Enhanced address bar\"\n - DNA-100732 Fix & escaping in translated strings\n - DNA-100759 Crash when loading personal news in private window\n\n - The update to chromium 103.0.5060.114 fixes following issues:\n CVE-2022-2294, CVE-2022-2295, CVE-2022-2296\n\n - Update to 89.0.4447.38\n\n - DNA-100283 Translations for O89\n\n - Complete Opera 89.0 changelog at:\n https://blogs.opera.com/desktop/changelog-for-89/\n\n - Changes in 89.0.4447.37\n\n - CHR-8929 Update chromium on desktop-stable-103-4447 to 103.0.5060.66\n - DNA-99780 Crash at zmq::zmq_abort(char const*)\n - DNA-100377 New opera account popup doesn\ufffd\ufffd\ufffdt open on Linux\n - DNA-100589 Crash at base::internal::Invoker<T>::RunOnce\n (base::internal::BindStateBase*, scoped_refptr<T>&&)\n - DNA-100607 Sync \ufffd\ufffd\ufffdSign in\ufffd\ufffd\ufffd button doesn\ufffd\ufffd\ufffdt work with Opera Account\n popup\n\n\nPatch Instructions:\n\n To install this openSUSE Security Update use the SUSE recommended installation methods\n like YaST online_update or \"zypper patch\".\n\n Alternatively you can run the command listed for your product:\n\n - openSUSE Leap 15.4:NonFree:\n\n zypper in -t patch openSUSE-2022-10088=1", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-08-16T00:00:00", "type": "suse", "title": "Security update for opera (important)", "bulletinFamily": "unix", "cvss2": {}, "cvelist": ["CVE-2022-2163", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296", "CVE-2022-2477", "CVE-2022-2478", "CVE-2022-2479", "CVE-2022-2480", "CVE-2022-2481"], "modified": "2022-08-16T00:00:00", "id": "OPENSUSE-SU-2022:10088-1", "href": "https://lists.opensuse.org/archives/list/security-announce@lists.opensuse.org/thread/C6CFP4ALDNAUZ4ZAOFXUPGCPSV42N26M/", "cvss": {"score": 0.0, "vector": "NONE"}}], "osv": [{"lastseen": "2022-08-10T07:21:05", "description": "\nMultiple security issues were discovered in Chromium, which could result\nin the execution of arbitrary code, denial of service or information\ndisclosure.\n\n\nFor the stable distribution (bullseye), these problems have been fixed in\nversion 103.0.5060.114-1~deb11u1.\n\n\nWe recommend that you upgrade your chromium packages.\n\n\nFor the detailed security status of chromium please refer to\nits security tracker page at:\n[\\\nhttps://security-tracker.debian.org/tracker/chromium](https://security-tracker.debian.org/tracker/chromium)\n\n\n", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "baseScore": 8.8, "privilegesRequired": "NONE", "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "userInteraction": "REQUIRED", "version": "3.1"}, "impactScore": 5.9}, "published": "2022-07-11T00:00:00", "type": "osv", "title": "chromium - security update", "bulletinFamily": "software", "cvss2": {}, "cvelist": ["CVE-2022-2296", "CVE-2022-2294", "CVE-2022-2295"], "modified": "2022-08-10T07:21:00", "id": "OSV:DSA-5180-1", "href": "https://osv.dev/vulnerability/DSA-5180-1", "cvss": {"score": 0.0, "vector": "NONE"}}], "debian": [{"lastseen": "2023-12-02T15:33:48", "description": "- -------------------------------------------------------------------------\nDebian Security Advisory DSA-5180-1 security@debian.org\nhttps://www.debian.org/security/ Moritz Muehlenhoff\nJuly 11, 2022 https://www.debian.org/security/faq\n- -------------------------------------------------------------------------\n\nPackage : chromium\nCVE ID : CVE-2022-2294 CVE-2022-2295 CVE-2022-2296\n\nMultiple security issues were discovered in Chromium, which could result\nin the execution of arbitrary code, denial of service or information\ndisclosure.\n\nFor the stable distribution (bullseye), these problems have been fixed in\nversion 103.0.5060.114-1~deb11u1.\n\nWe recommend that you upgrade your chromium packages.\n\nFor the detailed security status of chromium please refer to\nits security tracker page at:\nhttps://security-tracker.debian.org/tracker/chromium\n\nFurther information about Debian Security Advisories, how to apply\nthese updates to your system and frequently asked questions can be\nfound at: https://www.debian.org/security/\n\nMailing list: debian-security-announce@lists.debian.org", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-11T17:47:32", "type": "debian", "title": "[SECURITY] [DSA 5180-1] chromium security update", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-11T17:47:32", "id": "DEBIAN:DSA-5180-1:E631C", "href": "https://lists.debian.org/debian-security-announce/2022/msg00148.html", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "freebsd": [{"lastseen": "2023-12-02T18:54:43", "description": "\n\nChrome Releases reports:\n\nThis release contains 4 security fixes, including:\n\n[1341043] High CVE-2022-2294: Heap buffer overflow in WebRTC. Reported by Jan Vojtesek from the Avast Threat Intelligence team on 2022-07-01\n[1336869] High CVE-2022-2295: Type Confusion in V8. Reported by avaue and Buff3tts at S.S.L. on 2022-06-16\n[1327087] High CVE-2022-2296: Use after free in Chrome OS Shell. Reported by Khalil Zhani on 2022-05-19\n\n\n\n", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-04T00:00:00", "type": "freebsd", "title": "chromium -- multiple vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-04T00:00:00", "id": "744EC9D7-FE0F-11EC-BCD2-3065EC8FD3EC", "href": "https://vuxml.freebsd.org/freebsd/744ec9d7-fe0f-11ec-bcd2-3065ec8fd3ec.html", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "threatpost": [{"lastseen": "2022-07-05T11:54:40", "description": "While people were celebrating the Fourth of July holiday in the United States, Google quietly rolled out a stable channel update for Chrome to patch an actively exploited zero-day vulnerability, the fourth such flaw the vendor has had to patch in its browser product so far this year.\n\nChrome 103 (103.0.5060.71) for Android and Version 103.0.5060.114 for Windows and Mac, outlined in [separate ](<https://chromereleases.googleblog.com/>)[blog posts](<https://chromereleases.googleblog.com/2022/07/extended-stable-channel-update-for.html>) published Monday, fix a heap buffer overflow flaw in WebRTC, the engine that gives the browser its real-time communications capability.\n\nThe vulnerability, tracked as [CVE-2022-2294](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-2294>) and reported by Jan Vojtesek from the Avast Threat Intelligence team on July 1**, **is described as a buffer overflow, \u201cwhere the buffer that can be overwritten is allocated in the heap portion of memory,\u201d according to the vulnerability\u2019s [listing](<https://cwe.mitre.org/data/definitions/122.html>) on the Common Weakness Enumeration (CWE) website.\n\nAs per usual, Google did not reveal specific details about the bug, as it generally waits until most have updated to the patched version of the affected product. Indeed, updating is strongly recommended, as exploits for the vulnerability already exist in the wild, Google said.\n\nMoreover, with scant details revealed about the flaw\u2014a habit of Google\u2019s that many security researchers find frustrating\u2014at this point an update is really only way to defend against attacks exploiting the flaw. Fortunately, Google Chrome updates are pushed out without user intervention, so most users will be protected once patches are available.\n\nBuffer overflows generally lead to crashes or other attacks that make the affected program unavailable including putting the program into an infinite loop, according to the CWE listing. Attackers can take advantage of the situation by using the crash to execute arbitrary code typically outside of the scope of the program\u2019s security policy.\n\n\u201cBesides important user data, heap-based overflows can be used to overwrite function pointers that may be living in memory, pointing it to the attacker\u2019s code,\u201d according to the listing. \u201cEven in applications that do not explicitly use function pointers, the run-time will usually leave many in memory.\u201d\n\n## **Other Fixes**\n\nIn addition to fixing the zero-day buffer overflow flaw, the Chrome releases also patch a type confusion flaw in the V8 JavaScript engine tracked as [CVE-2022-2295](<https://security-tracker.debian.org/tracker/CVE-2022-2295>) and reported June 16 by researchers \u201cavaue\u201d and \u201cBuff3tts\u201d at S.S.L., according to the post.\n\nThis is the third such flaw in the open-source engine used by Chrome and Chromium-based web browsers patched this year alone. In March a separate type-confusion issue in the V8 JavaScript engine tracked as [CVE-2022-1096](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=2022-1096>) and under active attack [spurred a hasty patch](<https://threatpost.com/google-chrome-bug-actively-exploited-zero-day/179161/>) from Google.\n\nThen in April, the company patched [CVE-2022-1364](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=2022-1364>), another type confusion flaw affecting Chrome\u2019s use of V8 on which attackers already had pounced.\n\nAnother flaw patched in Monday\u2019s Chrome update is a use-after-free flaw in Chrome OS Shell reported by Khalil Zhani on May 19 and tracked as [CVE-2022-2296](<https://cve.report/CVE-2022-2296>), according to Google. All of the flaws patched in this week\u2019s update received a rating of high. The updates also includes several fixes from internal audits, fuzzing and other initiatives, Google said.\n\nPrior to patching the Chrome V8 JavaScript engine flaws in March and April, Google in February already had patched a zero-day use-after-free flaw in Chrome\u2019s Animation component tracked as [CVE-2022-0609](<https://nvd.nist.gov/vuln/detail/CVE-2022-0609>) that [was under active attack](<https://threatpost.com/google-chrome-zero-day-under-attack/178428/>).\n", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-05T11:54:21", "type": "threatpost", "title": "Google Patches Actively Exploited Chrome Bug", "bulletinFamily": "info", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": true, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-0609", "CVE-2022-1096", "CVE-2022-1364", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-05T11:54:21", "id": "THREATPOST:91A97EE2BD6933FEB9A07162BD4ED8B5", "href": "https://threatpost.com/actively-exploited-chrome-bug/180118/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "qualysblog": [{"lastseen": "2022-07-15T23:58:32", "description": "# **Microsoft Patch Tuesday Summary**\n\nMicrosoft has fixed 84 vulnerabilities (aka flaws) in the July 2022 update, including four (4) vulnerabilities classified as **_Critical_** as they allow Remote Code Execution (RCE). This month's Patch Tuesday cumulative Windows update includes the fix for one (1) actively exploited zero-day vulnerability ([CVE-2022-22047](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>)). Earlier this month, July 6, 2022, Microsoft also released two (2) Microsoft Edge (Chromium-Based) security updates as well.\n\nMicrosoft has fixed several flaws in its software, including Denial of Service (DoS), Elevation of Privilege, Information Disclosure, Microsoft Edge (Chromium-based), Remote Code Execution (RCE), Security Feature Bypass, and Tampering.\n\nMany of the vulnerabilities patched this month relate to remote code execution, but there are no reports of active exploitation (in the wild) except for [](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-30190>)[CVE-2022-22047](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>), a Windows CSRSS Elevation of Privilege Vulnerability.\n\n## The July 2022 Microsoft vulnerabilities are classified as follows: \n\n\n\n [Related Threat Protection Post](<https://threatprotect.qualys.com/2022/07/13/microsoft-patches-84-vulnerabilities-including-one-zero-day-and-four-critical-in-the-july-2022-patch-tuesday/>)\n\n* * *\n\n# **Notable Microsoft Vulnerabilities Patched**\n\n### [](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>)[CVE-2022-22047](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>) | Windows CSRSS Elevation of Privilege Vulnerability\n\nThis vulnerability has a CVSSv3.1 score of 7.8/10.\n\nElevation of Privilege - Important - An attacker who successfully exploited this vulnerability could gain SYSTEM privileges. (Article [5015874](<https://support.microsoft.com/help/5015874>))\n\n[Exploitability Assessment](<https://www.microsoft.com/en-us/msrc/exploitability-index?rtc=1>): **_Exploitation Detected_**\n\n* * *\n\n# **Microsoft Critical Vulnerability Highlights**\n\nThis month\u2019s [advisory](<https://msrc.microsoft.com/update-guide/releaseNote/2022-Jul>) covers multiple Microsoft product families, including Azure, Browser, ESU, Microsoft Dynamics, Microsoft Office, System Center, and Windows.\n\nA total of 63 unique Microsoft products/versions are affected.\n\nDownloads include Monthly Rollup, Security Only, and Security Updates.\n\n* * *\n\n### [CVE-2022-30221](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-30221>) | Windows Graphics Component Remote Code Execution Vulnerability\n\nThis vulnerability has a CVSSv3.1 score of 8.8/10.\n\nAn attacker would have to convince a targeted user to connect to a malicious RDP server. Upon connecting, the malicious server could execute code on the victim's system in the context of the targeted user.\n\nWindows 7 Service Pack 1 or Windows Server 2008 R2 Service Pack 1 are only affected by this vulnerability if either RDP 8.0 or RDP 8.1 is installed. If you do not have either of these versions of RDP installed on Windows 7 SP1 or Window Server 2008 R2 SP1, then you are not affected by this vulnerability.\n\n[Exploitability Assessment](<https://www.microsoft.com/en-us/msrc/exploitability-index?rtc=1>): **_Exploitation Less Likely_**\n\n* * *\n\n### [CVE-2022-22029](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22029>) | Windows Network File System Remote Code Execution Vulnerability\n\nThis vulnerability has a CVSSv3.1 score of 8.1/10.\n\nThis vulnerability could be exploited over the network by making an unauthenticated, specially crafted call to a Network File System (NFS) service to trigger a Remote Code Execution (RCE).\n\nSuccessful exploitation of this vulnerability requires an attacker to invest time in repeated exploitation attempts through sending constant or intermittent data.\n\n[Exploitability Assessment](<https://www.microsoft.com/en-us/msrc/exploitability-index?rtc=1>): **_Exploitation Less Likely_**\n\n* * *\n\n### [CVE-2022-22038](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22038>) | Remote Procedure Call Runtime Remote Code Execution Vulnerability\n\nThis vulnerability has a CVSSv3.1 score of 8.1/10.\n\nSuccessful exploitation of this vulnerability requires an attacker to invest time in repeated exploitation attempts through sending constant or intermittent data.\n\n[Exploitability Assessment](<https://www.microsoft.com/en-us/msrc/exploitability-index?rtc=1>): **_Exploitation Less Likely_**\n\n* * *\n\n### [CVE-2022-22039](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22039>) | Windows Network File System Remote Code Execution Vulnerability\n\nThis vulnerability has a CVSSv3.1 score of 7.5/10.\n\nSuccessful exploitation of this vulnerability requires an attacker to win a race condition.\n\nThis vulnerability could be exploited over the network by making an unauthenticated, specially crafted call to a Network File System (NFS) service to trigger a Remote Code Execution (RCE).\n\n[Exploitability Assessment](<https://www.microsoft.com/en-us/msrc/exploitability-index?rtc=1>): **_Exploitation Less Likely_**\n\n* * *\n\n# **Microsoft Last But Not Least**\n\nEarlier in July, Microsoft released Microsoft Edge (Chromium-based) vulnerabilities [CVE-2022-2294](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-2294>) and [CVE-2022-2295](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-2295>). The vulnerability assigned to each of these CVEs is in the Chromium Open Source Software (OSS) which is consumed by Microsoft Edge. It is being documented in the Security Update Guide to announce that the latest version of Microsoft Edge (Chromium-based) is no longer vulnerable. Please see [Security Update Guide Supports CVEs Assigned by Industry Partners](<https://msrc-blog.microsoft.com/2021/01/13/security-update-guide-supports-cves-assigned-by-industry-partners/>) for more information.\n\n* * *\n\n# **Adobe Security Bulletins and Advisories**\n\nAdobe released four (4) [advisories](<https://helpx.adobe.com/security/security-bulletin.html>) with updates to fix 27 vulnerabilities affecting Adobe Acrobat, Character Animator, Photoshop, Reader, and RoboHelp applications. Of these 27 vulnerabilities, 18 are rated as **_[Critical](<https://helpx.adobe.com/security/severity-ratings.html>)_**; ranging in severity from a CVSS score of 6.5/10 to 7.8/10, as summarized below.\n\n\n\n* * *\n\n### [APSB22-10](<https://helpx.adobe.com/security/products/robohelp/apsb22-10.html>) | Security update available for RoboHelp\n\nThis update resolves one (1) [**_Important_** ](<https://helpx.adobe.com/security/severity-ratings.html>)vulnerability.\n\n_[Adobe Priority](<https://helpx.adobe.com/security/severity-ratings.html>): 3_\n\nAdobe has released a security update for RoboHelp. This update resolves a vulnerability rated [important](<https://helpx.adobe.com/security/severity-ratings.html>). Successful exploitation could lead to arbitrary code execution in the context of current user. \n\n* * *\n\n### [APSB22-32](<https://helpx.adobe.com/security/products/acrobat/apsb22-32.html>) | Security update available for Adobe Acrobat and Reader\n\nThis update resolves 22 vulnerabilities; 15 **_[Critical](<https://helpx.adobe.com/security/severity-ratings.html>)_**, and seven (7) **_[Important](<https://helpx.adobe.com/security/severity-ratings.html>)_**.\n\n_**[Adobe Priority](<https://helpx.adobe.com/security/severity-ratings.html>): 2**_\n\nAdobe has released security updates for Adobe Acrobat and Reader for Windows and macOS. These updates address multiple [critical](<https://helpx.adobe.com/security/severity-ratings.html>), and [important](<https://helpx.adobe.com/security/severity-ratings.html>) vulnerabilities. Successful exploitation could lead to arbitrary code execution and memory leak. \n\n* * *\n\n### [APSB22-34](<https://helpx.adobe.com/security/products/character_animator/apsb22-34.html>) | Security Updates Available for Adobe Character Animator\n\nThis update resolves two (2) **_[Critical](<https://helpx.adobe.com/security/severity-ratings.html>) _**vulnerabilities.\n\n_[Adobe Priority](<https://helpx.adobe.com/security/severity-ratings.html>): 3_\n\nAdobe has released an update for Adobe Character Animator for Windows and macOS. This update resolves [critical](<https://helpx.adobe.com/security/severity-ratings.html>) vulnerabilities. Successful exploitation could lead to arbitrary code execution.\n\n* * *\n\n### [APSB22-35](<https://helpx.adobe.com/security/products/photoshop/apsb22-35.html>) | Security update available for Adobe Photoshop\n\nThis update resolves two (2) vulnerabilities; one (1) **_[Critical](<https://helpx.adobe.com/security/severity-ratings.html>)_**, and one (1) **_[Important](<https://helpx.adobe.com/security/severity-ratings.html>)_**.\n\n_[Adobe Priority](<https://helpx.adobe.com/security/severity-ratings.html>): 3_\n\nAdobe has released an update for Photoshop for Windows and macOS. This update resolves a [critical](<https://helpx.adobe.com/security/severity-ratings.html>) vulnerability and an [important](<https://helpx.adobe.com/security/severity-ratings.html>) vulnerability. Successful exploitation could lead to arbitrary code execution and memory leak. \n\n* * *\n\n* * *\n\n# Discover and Prioritize Vulnerabilities in [Vulnerability Management Detection Response (VMDR)](<https://www.qualys.com/apps/vulnerability-management-detection-response/>) \n\nQualys VMDR automatically detects new Patch Tuesday vulnerabilities using continuous updates to its KnowledgeBase (KB). \n\nYou can see all your impacted hosts by these vulnerabilities using the following QQL query:\n \n \n vulnerabilities.vulnerability:( qid:`91921` OR qid:`91922` OR qid:`91923` OR qid:`91924` OR qid:`91927` OR qid:`110411` OR qid:`110412` OR qid:`376725` ) \n\n\n\n* * *\n\n# Rapid Response with [Patch Management (PM)](<https://www.qualys.com/apps/patch-management/>)\n\nVMDR rapidly remediates Windows hosts by deploying the most relevant and applicable per-technology version patches. You can simply select respective QIDs in the Patch Catalog and filter on the \u201cMissing\u201d patches to identify and deploy the applicable, available patches in one go.\n\nThe following QQL will return the missing patches for this Patch Tuesday:\n \n \n ( qid:`91921` OR qid:`91922` OR qid:`91923` OR qid:`91924` OR qid:`91927` OR qid:`110411` OR qid:`110412` OR qid:`376725` ) \n\n\n\n [Risk-based Remediation Powered by Patch Management in Qualys VMDR 2.0](<https://blog.qualys.com/product-tech/2022/06/22/risk-based-remediation-powered-by-patch-management-in-qualys-vmdr-2-0>)\n\n* * *\n\n# Qualys Monthly Webinar Series \n\n\n\nThe Qualys Research team hosts a monthly webinar series to help our existing customers leverage the seamless integration between Qualys[ Vulnerability Management Detection Response (VMDR)](<https://www.qualys.com/apps/vulnerability-management-detection-response/>) and Qualys [Patch Management](<https://www.qualys.com/apps/patch-management/>). Combining these two solutions can reduce the median time to remediate critical vulnerabilities. \n\nDuring the webcast, we will discuss this month\u2019s high-impact vulnerabilities, including those that are part of this month's Patch Tuesday alert. We will walk you through the necessary steps to address the key vulnerabilities using Qualys VMDR and Qualys Patch Management. \n\n* * *\n\n### **Join the webinar**\n\n## **This Month in Vulnerabilities & Patches**\n\n[Register Now](<https://gateway.on24.com/wcc/eh/3347108/category/97049/patch-tuesday>)", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-12T20:09:23", "type": "qualysblog", "title": "July 2022 Patch Tuesday | Microsoft Releases 84 Vulnerabilities with 4 Critical, plus 2 Microsoft Edge (Chromium-Based); Adobe Releases 4 Advisories, 27 Vulnerabilities with 18 Critical.", "bulletinFamily": "blog", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": true, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 9.3, "vectorString": "AV:N/AC:M/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-22029", "CVE-2022-22038", "CVE-2022-22039", "CVE-2022-22047", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-30190", "CVE-2022-30221"], "modified": "2022-07-12T20:09:23", "id": "QUALYSBLOG:65C282BB0F312A3AD8A043024FD3D866", "href": "https://blog.qualys.com/category/vulnerabilities-threat-research", "cvss": {"score": 9.3, "vector": "AV:N/AC:M/Au:N/C:C/I:C/A:C"}}], "fedora": [{"lastseen": "2023-12-02T17:37:42", "description": "Chromium is an open-source web browser, powered by WebKit (Blink). ", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-28T01:30:57", "type": "fedora", "title": "[SECURITY] Fedora 35 Update: chromium-103.0.5060.114-1.fc35", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2156", "CVE-2022-2157", "CVE-2022-2158", "CVE-2022-2160", "CVE-2022-2161", "CVE-2022-2162", "CVE-2022-2163", "CVE-2022-2164", "CVE-2022-2165", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-28T01:30:57", "id": "FEDORA:1AA1C30A3C1B", "href": "https://lists.fedoraproject.org/archives/list/package-announce@lists.fedoraproject.org/thread/5BQRTR4SIUNIHLLPWTGYSDNQK7DYCRSB/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}, {"lastseen": "2023-12-02T17:37:42", "description": "Chromium is an open-source web browser, powered by WebKit (Blink). ", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "UNCHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 5.9}, "published": "2022-07-28T01:28:06", "type": "fedora", "title": "[SECURITY] Fedora 36 Update: chromium-103.0.5060.114-1.fc36", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2156", "CVE-2022-2157", "CVE-2022-2158", "CVE-2022-2160", "CVE-2022-2161", "CVE-2022-2162", "CVE-2022-2163", "CVE-2022-2164", "CVE-2022-2165", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296"], "modified": "2022-07-28T01:28:06", "id": "FEDORA:29E5830A072A", "href": "https://lists.fedoraproject.org/archives/list/package-announce@lists.fedoraproject.org/thread/H2C4XOJVIILDXTOSMWJXHSQNEXFWSOD7/", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "securelist": [{"lastseen": "2022-11-30T12:08:22", "description": "\n\n * [IT threat evolution in Q3 2022](<https://securelist.com/it-threat-evolution-q3-2022/107957/>)\n * **IT threat evolution in Q3 2022. Non-mobile statistics**\n * [IT threat evolution in Q3 2022. Mobile statistics](<https://securelist.com/it-threat-evolution-in-q3-2022-mobile-statistics/107978/>)\n\n_These statistics are based on detection verdicts of Kaspersky products and services received from users who consented to providing statistical data._\n\n## Quarterly figures\n\nAccording to Kaspersky Security Network, in Q3 2022:\n\n * Kaspersky solutions blocked 956,074,958 attacks from online resources across the globe.\n * Web Anti-Virus recognized 251,288,987 unique URLs as malicious.\n * Attempts to run malware for stealing money from online bank accounts were stopped on the computers of 99,989 unique users.\n * Ransomware attacks were defeated on the computers of 72,941 unique users.\n * Our File Anti-Virus detected 49,275,253 unique malicious and potentially unwanted objects.\n\n## Financial threats\n\n### Number of users attacked by banking malware\n\nIn Q3 2022, Kaspersky solutions blocked the launch of at least one piece of banking malware on the computers of 99,989 unique users.\n\n_Number of unique users attacked by financial malware, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154318/01-en-malware-report-q3-2022-pc-stat.png>))_\n\n### TOP 10 banking malware families\n\n| **Name** | **Verdicts** | **%*** \n---|---|---|--- \n1 | Ramnit/Nimnul | Trojan-Banker.Win32.Ramnit | 33.2 \n2 | Zbot/Zeus | Trojan-Banker.Win32.Zbot | 15.2 \n3 | IcedID | Trojan-Banker.Win32.IcedID | 10.0 \n4 | CliptoShuffler | Trojan-Banker.Win32.CliptoShuffler | 5.8 \n5 | Trickster/Trickbot | Trojan-Banker.Win32.Trickster | 5.8 \n6 | SpyEye | Trojan-Spy.Win32.SpyEye | 2.1 \n7 | RTM | Trojan-Banker.Win32.RTM | 1.9 \n8 | Danabot | Trojan-Banker.Win32.Danabot | 1.4 \n9 | Tinba/TinyBanker | Trojan-Banker.Win32.Tinba | 1.4 \n10 | Gozi | Trojan-Banker.Win32.Gozi | 1.1 \n \n_* Unique users who encountered this malware family as a percentage of all users attacked by financial malware._\n\n### Geography of financial malware attacks\n\n**TOP 10 countries and territories by share of attacked users**\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | Turkmenistan | 4.7 \n2 | Afghanistan | 4.6 \n3 | Paraguay | 2.8 \n4 | Tajikistan | 2.8 \n5 | Yemen | 2.3 \n6 | Sudan | 2.3 \n7 | China | 2.0 \n8 | Switzerland | 2.0 \n9 | Egypt | 1.9 \n10 | Venezuela | 1.8 \n \n_* Excluded are countries and territories with relatively few Kaspersky users (under 10,000). \n** Unique users whose computers were targeted by financial malware as a percentage of all unique users of Kaspersky products in the country._\n\n## Ransomware programs\n\n### Quarterly trends and highlights\n\nThe third quarter of 2022 saw the builder for LockBit, a well-known ransomware, [leaked online](<https://www.bleepingcomputer.com/news/security/lockbit-ransomware-builder-leaked-online-by-angry-developer-/>). LockBit themselves attributed the leakage to one of their developers' personal initiative, not the group's getting hacked. One way or another, the LockBit 3.0 build kit is now accessible to the broader cybercriminal community. Similarly to other ransomware families in the past, such as Babuk and Conti, Trojan builds generated with the leaked builder began to serve other groups unrelated to LockBit. One example was Bloody/Bl00dy [spotted back in May](<https://www.bleepingcomputer.com/news/security/leaked-lockbit-30-builder-used-by-bl00dy-ransomware-gang-in-attacks/>). A borrower rather than a creator, this group added the freshly available LockBit to its arsenal in September 2022.\n\nMass attacks on NAS (network attached storage) devices continue. QNAP issued warnings about Checkmate and Deadbolt infections in Q3 2022. The [former](<https://www.qnap.com/en/security-advisory/QSA-22-21>) threatened files accessible from the internet over SMB protocol and protected by a weak account password. The latter [attacked](<https://www.qnap.com/en/security-news/2022/take-immediate-action-to-update-photo-station-to-the-latest-available-version>) devices that had a vulnerable version of the Photo Station software installed. Threats that target NAS remain prominent, so we recommend keeping these devices inaccessible from the internet to ensure maximum safety of your data.\n\nThe United States Department of Justice [announced](<https://www.justice.gov/opa/pr/justice-department-seizes-and-forfeits-approximately-500000-north-korean-ransomware-actors>) that it had teamed up with the FBI to seize about $500,000 paid as ransom after a Maui ransomware attack. The Trojan was likely [used](<https://securelist.com/andariel-deploys-dtrack-and-maui-ransomware/107063/>) by the North Korean operators Andariel. The DOJ said victims had started getting their money back.\n\nThe creators of the little-known AstraLocker and Yashma ransomware [published](<https://www.bleepingcomputer.com/news/security/astralocker-ransomware-shuts-down-and-releases-decryptors/>) decryptors and stopped spreading both of them. The hackers provided no explanation for the move, but it appeared to be related to an increase in media coverage.\n\n### Number of new modifications\n\nIn Q3 2022, we detected 17 new ransomware families and 14,626 new modifications of this malware type. More than 11,000 of those were assigned the verdict of Trojan-Ransom.Win32.Crypmod, which hit the sixth place in our rankings of the most widespread ransomware Trojans.\n\n_Number of new ransomware modifications, Q3 2021 \u2014 Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154421/03-en-ru-es-malware-report-q3-2022-pc-stat.png>))_\n\n### Number of users attacked by ransomware Trojans\n\nIn Q3 2022, Kaspersky products and technologies protected 72,941 users from ransomware attacks.\n\n_Number of unique users attacked by ransomware Trojans, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154500/04-en-malware-report-q3-2022-pc-stat.png>))_\n\n**TOP 10 most common families of ransomware Trojans**\n\n| **Name** | **Verdicts** | **%*** \n---|---|---|--- \n1 | (generic verdict) | Trojan-Ransom.Win32.Encoder | 14.76 \n2 | WannaCry | Trojan-Ransom.Win32.Wanna | 12.12 \n3 | (generic verdict) | Trojan-Ransom.Win32.Gen | 11.68 \n4 | Stop/Djvu | Trojan-Ransom.Win32.Stop | 6.59 \n5 | (generic verdict) | Trojan-Ransom.Win32.Phny | 6.53 \n6 | (generic verdict) | Trojan-Ransom.Win32.Crypmod \n7 | Magniber | Trojan-Ransom.Win64.Magni | 4.93 \n8 | PolyRansom/VirLock | Trojan-Ransom.Win32.PolyRansom / Virus.Win32.PolyRansom | 4.84 \n9 | (generic verdict) | Trojan-Ransom.Win32.Instructions | 4.35 \n10 | Hive | Trojan-Ransom.Win32.Hive | 3.87 \n \n_* Unique users who encountered this malware family as a percentage of all users attacked by financial malware._\n\n### Geography of attacked users\n\n**TOP 10 countries and territories attacked by ransomware Trojans**\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | Bangladesh | 1.66 \n2 | Yemen | 1.30 \n3 | South Korea | 0.98 \n4 | Taiwan | 0.77 \n5 | Mozambique | 0.64 \n6 | China | 0.52 \n7 | Colombia | 0.43 \n8 | Nigeria | 0.40 \n9 | Pakistan | 0.39 \n10 | Venezuela | 0.32 \n \n_* Excluded are countries with relatively few Kaspersky users (under 50,000). \n** Unique users whose computers were attacked by ransomware Trojans as a percentage of all unique users of Kaspersky products in the country._\n\n### TOP 10 most common families of ransomware Trojans\n\n| **Name** | **Verdicts*** | **Percentage of attacked users**** \n---|---|---|--- \n1 | (generic verdict) | Trojan-Ransom.Win32.Encoder | 14.76 \n2 | WannaCry | Trojan-Ransom.Win32.Wanna | 12.12 \n3 | (generic verdict) | Trojan-Ransom.Win32.Gen | 11.68 \n4 | Stop/Djvu | Trojan-Ransom.Win32.Stop | 6.59 \n5 | (generic verdict) | Trojan-Ransom.Win32.Phny | 6.53 \n6 | (generic verdict) | Trojan-Ransom.Win32.Crypmod | 5.46 \n7 | Magniber | Trojan-Ransom.Win64.Magni | 4.93 \n8 | PolyRansom/VirLock | Trojan-Ransom.Win32.PolyRansom / Virus.Win32.PolyRansom | 4.84 \n9 | (generic verdict) | Trojan-Ransom.Win32.Instructions | 4.35 \n10 | Hive | Trojan-Ransom.Win32.Hive | 3.87 \n \n_* Statistics are based on detection verdicts of Kaspersky products. The information was provided by Kaspersky product users who consented to providing statistical data. \n** Unique Kaspersky users attacked by specific ransomware Trojan families as a percentage of all unique users attacked by ransomware Trojans._\n\n## Miners\n\n### Number of new miner modifications\n\nIn Q3 2022, Kaspersky systems detected 153,773 new miner mods. More than 140,000 of these were found in July and August; combined with June's figure of more than 35,000, this suggests that miner creators kept themselves abnormally busy this past summer.\n\n_Number of new miner modifications, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154533/06-en-malware-report-q3-2022-pc-stat.png>))_\n\n### Number of users attacked by miners\n\nIn Q3, we detected attacks that used miners on the computers of 432,363 unique users of Kaspersky products worldwide. A quieter period from late spring through the early fall was followed by another increase in activity.\n\n_Number of unique users attacked by miners, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154601/07-en-malware-report-q3-2022-pc-stat.png>))_\n\n### Geography of miner attacks\n\n**TOP 10 countries and territories attacked by miners**\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | Ethiopia | 2.38 \n2 | Kazakhstan | 2.13 \n3 | Uzbekistan | 2.01 \n4 | Rwanda | 1.93 \n5 | Tajikistan | 1.83 \n6 | Venezuela | 1.78 \n7 | Kyrgyzstan | 1.73 \n8 | Mozambique | 1.57 \n9 | Tanzania | 1.56 \n10 | Ukraine | 1.54 \n \n_* Excluded are countries and territories with relatively few users of Kaspersky products (under 50,000). \n** Unique users attacked by miners as a percentage of all unique users of Kaspersky products in the country._\n\n## Vulnerable applications used by criminals during cyberattacks\n\n### Quarterly highlights\n\nQ3 2022 was remembered for a series of vulnerabilities discovered in various software products. Let's begin with Microsoft Windows and some of its components. Researchers found new vulnerabilities that affected the CLFS driver: [CVE-2022-30220](<https://nvd.nist.gov/vuln/detail/CVE-2022-30220>), along with [CVE-2022-35803](<https://nvd.nist.gov/vuln/detail/CVE-2022-35803>) and [CVE-2022-37969](<https://nvd.nist.gov/vuln/detail/CVE-2022-37969>), both encountered in the wild. By manipulating Common Log File System data in a specific way, an attacker can make the kernel write their own data to arbitrary memory addresses, allowing cybercriminals to hijack kernel control and elevate their privileges in the system. Several vulnerabilities were discovered in the Print Spooler service: [CVE-2022-22022](<https://nvd.nist.gov/vuln/detail/CVE-2022-22022>), [CVE-2022-30206](<https://nvd.nist.gov/vuln/detail/CVE-2022-30206>), and [CVE-2022-30226](<https://nvd.nist.gov/vuln/detail/CVE-2022-30226>). These allow elevating the system privileges through a series of manipulations while installing a printer. Serious vulnerabilities were also discovered in the Client/Server Runtime Subsystem (CSRSS), an essential Windows component. Some of these can be exploited for privilege escalation ([CVE-2022-22047](<https://nvd.nist.gov/vuln/detail/CVE-2022-22047>), [CVE-2022-22049](<https://nvd.nist.gov/vuln/detail/CVE-2022-22049>), and [CVE-2022-22026](<https://nvd.nist.gov/vuln/detail/CVE-2022-22026>)), while [CVE-2022-22038](<https://nvd.nist.gov/vuln/detail/CVE-2022-22038>) affects remote procedure call (RPC) protocol, allowing an attacker to execute arbitrary code remotely. A series of critical vulnerabilities were discovered in the graphics subsystem, including [CVE-2022-22034](<https://nvd.nist.gov/vuln/detail/CVE-2022-22034>) and [CVE-2022-35750](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-35750>), which can also be exploited for privilege escalation. Note that most of the above vulnerabilities require that exploits entrench in the system before an attacker can run their malware. The Microsoft Support Diagnostic Tool (MSDT) was found to contain a further two vulnerabilities, [CVE-2022-34713](<https://nvd.nist.gov/vuln/detail/CVE-2022-34713>) and [CVE-2022-35743](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-35743>), which can be exploited to take advantage of security flaws in the link handler to remotely run commands in the system.\n\nMost of the network threats detected in Q3 2022 were again attacks associated with [brute-forcing](<https://encyclopedia.kaspersky.com/glossary/brute-force/?utm_source=securelist&utm_medium=blog&utm_campaign=termin-explanation>) passwords for Microsoft SQL Server, RDP, and other services. Network attacks on vulnerable versions of Windows via EternalBlue, EternalRomance, and other exploits were still common. The attempts at exploiting network services and other software via vulnerabilities in the Log4j library ([CVE-2021-44228](<https://nvd.nist.gov/vuln/detail/CVE-2021-44228>), [CVE-2021-44832](<https://nvd.nist.gov/vuln/detail/CVE-2021-44832>), [CVE-2021-45046](<https://nvd.nist.gov/vuln/detail/CVE-2021-45046>), and [CVE-2021-45105](<https://nvd.nist.gov/vuln/detail/cve-2021-45105>)) also continued. Several vulnerabilities were found in the Microsoft Windows Network File System (NFS) driver. These are [CVE-2022-22028](<https://nvd.nist.gov/vuln/detail/CVE-2022-22028>), which can lead to leakage of confidential information, as well as [CVE-2022-22029](<https://nvd.nist.gov/vuln/detail/CVE-2022-22029>), [CVE-2022-22039](<https://nvd.nist.gov/vuln/detail/CVE-2022-22039>) and [CVE-2022-34715](<https://nvd.nist.gov/vuln/detail/CVE-2022-34715>), which a cybercriminal can use to remotely execute arbitrary code in the system \u2014 in kernel context \u2014 by using a specially crafted network packet. The TCP/IP stack was found to contain the critical vulnerability [CVE-2022-34718](<https://nvd.nist.gov/vuln/detail/CVE-2022-34718>), which allows in theory to remotely exploit a target system by taking advantage of errors in the IPv6 protocol handler. Finally, it is worth mentioning the [CVE-2022-34724](<https://nvd.nist.gov/vuln/detail/CVE-2022-34724>) vulnerability, which affects Windows DNS Server and can lead to denial of service if exploited.\n\nTwo vulnerabilities in Microsoft Exchange Server, [CVE-2022-41040](<https://nvd.nist.gov/vuln/detail/CVE-2022-41040>) and [CVE-2022-41082](<https://nvd.nist.gov/vuln/detail/CVE-2022-41082>), received considerable media coverage. They were collectively dubbed "ProxyNotShell" in reference to the ProxyShell vulnerabilities with similar exploitation technique (they were closed earlier). Researchers discovered the ProxyNotShell exploits while investigating an APT attack: an authenticated user can use the loopholes to elevate their privileges and run arbitrary code on an MS Exchange server. As a result, the attacker can steal confidential data, encrypt critical files on the server to to extort money from the victim, etc.\n\n### Vulnerability statistics\n\nIn Q3 2022, malicious Microsoft Office documents again accounted for the greatest number of detections \u2014 80% of the exploits we discovered, although the number decreased slightly compared to Q2. Most of these detections were triggered by exploits that targeted the following vulnerabilities:\n\n * [CVE-2018-0802](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2018-0802>) and [CVE-2017-11882](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2017-11882>), in the Equation Editor component, which allow corrupting the application memory when processing formulas, and subsequently running arbitrary code in the system;\n * [CVE-2017-0199](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2017-0199>), which allows downloading and running malicious script files;\n * [CVE-2022-30190](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30190>), also known as "Follina", which exploits a flaw in the Microsoft Windows Support Diagnostic Tool (MSDT) for running arbitrary programs in a vulnerable system even in Protected Mode or when macros are disabled;\n * [CVE-2021-40444](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2021-40444>), which allows an attacker to deploy malicious code using a special ActiveX template due to inadequate input validation.\n\n_Distribution of exploits used by cybercriminals, by type of attacked application, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154631/09-en-malware-report-q3-2022-pc-stat.png>))_\n\nThese were followed by exploits that target browsers. Their share amounted to 6%, or 1% higher than in Q2. We will list the most serious vulnerabilities, all of them targeting Google Chrome:\n\n * [CVE-2022-2294](<https://nvd.nist.gov/vuln/detail/CVE-2022-2294>), in the WebRTC component, which leads to buffer overflow;\n * [CVE-2022-2624](<https://nvd.nist.gov/vuln/detail/CVE-2022-2624>), which exploits a memory overflow error in the PDF viewing component;\n * [CVE-2022-2295](<https://nvd.nist.gov/vuln/detail/CVE-2022-2295>), a Type Confusion error that allows an attacker to corrupt the browser process memory remotely and run arbitrary code in a sandbox;\n * [CVE-2022-3075](<https://nvd.nist.gov/vuln/detail/CVE-2022-3075>), an error linked to inadequate input validation in the Mojo interprocess communication component in Google Chromium-based browsers that allows escaping the sandbox and running arbitrary commands in the system.\n\nSince many modern browsers are based on Google Chromium, attackers can often take advantage of the shared vulnerabilities to attack the other browsers as long as they run on one engine.\n\nA series of vulnerabilities were identified in Microsoft Edge. Worth noting is [CVE-2022-33649](<https://nvd.nist.gov/vuln/detail/CVE-2022-33649>), which allows running an application in the system by circumventing the browser protections; [CVE-2022-33636](<https://nvd.nist.gov/vuln/detail/CVE-2022-33636>) and [CVE-2022-35796](<https://nvd.nist.gov/vuln/detail/CVE-2022-35796>), Race Condition vulnerabilities that ultimately allow a sandbox escape; and [CVE-2022-38012](<https://nvd.nist.gov/vuln/detail/CVE-2022-38012>), which exploits an application memory corruption error, with similar results.\n\nThe Mozilla Firefox browser was found to contain vulnerabilities associated with memory corruption, which allow running arbitrary code in the system: [CVE-2022-38476](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-38476>), a Race Condition vulnerability that leads to a subsequent Use-After-Free scenario, and the similar vulnerabilities [CVE-2022-38477](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-38477>) and [CVE-2022-38478](<https://cve.mitre.org/cgi-bin/cvename.cgi?name=CVE-2022-38478>), which exploit memory corruption. As you can see from our reports, browsers are an attractive target for cybercriminals, as these are widely used and allow attackers to infiltrate the system remotely and virtually unbeknownst to the user. That said, browser vulnerabilities are not simple to exploit, as attackers often have to use a chain of vulnerabilities to work around the protections of modern browsers.\n\nThe remaining positions in our rankings were distributed among Android (5%) and Java (4%) exploits. The fifth-highest number of exploits (3%) targeted Adobe Flash, a technology that is obsolete but remains in use. Rounding out the rankings with 2% were exploits spread through PDF documents.\n\n## Attacks on macOS\n\nThe third quarter of 2022 brought with it a significant number of interesting macOS malware discoveries. In particular, researchers found [Operation In(ter)ception](<https://www.sentinelone.com/blog/lazarus-operation-interception-targets-macos-users-dreaming-of-jobs-in-crypto/>), a campaign operated by North Korean Lazarus group, which targets macOS users looking for cryptocurrency jobs. The malware was disguised as documents containing summaries of positions at Coinbase and Crypto.com.\n\n[CloudMensis](<https://www.welivesecurity.com/2022/07/19/i-see-what-you-did-there-look-cloudmensis-macos-spyware/>), a spy program written in Objective-C, used cloud storage services as C&C servers and [shared several characteristics](<https://twitter.com/ESETresearch/status/1575103839115804672>) with the RokRAT Windows malware operated by ScarCruft.\n\nThe creators of XCSSET [adapted](<https://www.sentinelone.com/blog/xcsset-malware-update-macos-threat-actors-prepare-for-life-without-python/>) their toolset to macOS Monterey and migrated from Python 2 to Python 3.\n\nIn Q3, cybercrooks also began to make use of open-source tools in their attacks. July saw the discovery of two campaigns that used a fake [VPN application](<https://www.sentinelone.com/blog/from-the-front-lines-new-macos-covid-malware-masquerades-as-apple-wears-face-of-apt/>) and fake [Salesforce updates](<https://twitter.com/ESETresearch/status/1547943014860894210>), both built on the Sliver framework.\n\nIn addition to this, researchers announced a new multi-platform [find](<https://blog.sekoia.io/luckymouse-uses-a-backdoored-electron-app-to-target-macos/>): the LuckyMouse group (APT27 / Iron Tiger / Emissary Panda) attacked Windows, Linux, and macOS users with a malicious mod of the Chinese MiMi instant messaging application.\n\n### TOP 20 threats for macOS\n\n| **Verdict** | **%*** \n---|---|--- \n1 | AdWare.OSX.Amc.e | 14.77 \n2 | AdWare.OSX.Pirrit.ac | 10.45 \n3 | AdWare.OSX.Agent.ai | 9.40 \n4 | Monitor.OSX.HistGrabber.b | 7.15 \n5 | AdWare.OSX.Pirrit.j | 7.10 \n6 | AdWare.OSX.Bnodlero.at | 6.09 \n7 | AdWare.OSX.Bnodlero.ax | 5.95 \n8 | Trojan-Downloader.OSX.Shlayer.a | 5.71 \n9 | AdWare.OSX.Pirrit.ae | 5.27 \n10 | Trojan-Downloader.OSX.Agent.h | 3.87 \n11 | AdWare.OSX.Bnodlero.bg | 3.46 \n12 | AdWare.OSX.Pirrit.o | 3.32 \n13 | AdWare.OSX.Agent.u | 3.13 \n14 | AdWare.OSX.Agent.gen | 2.90 \n15 | AdWare.OSX.Pirrit.aa | 2.85 \n16 | Backdoor.OSX.Twenbc.e | 2.85 \n17 | AdWare.OSX.Ketin.h | 2.82 \n18 | AdWare.OSX.Pirrit.gen | 2.69 \n19 | Trojan-Downloader.OSX.Lador.a | 2.52 \n20 | Downloader.OSX.InstallCore.ak | 2.28 \n \n_* Unique users who encountered this malware as a percentage of all users of Kaspersky security solutions for macOS who were attacked._\n\nAs usual, our TOP 20 ranking for biggest threats encountered by users of Kaspersky security solutions for macOS were dominated by adware. AdWare.OSX.Amc.e, touted as "Advanced Mac Cleaner," had taken the top place for a second quarter in a row. This application displays fake system issue messages, offering to buy the full version to fix those. Second and third places went to members of the AdWare.OSX.Pirrit and AdWare.OSX.Agent families.\n\n### Geography of threats for macOS\n\n**TOP 10 countries and territories by share of attacked users**\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | France | 1.71 \n2 | Canada | 1.70 \n3 | Russia | 1.57 \n4 | India | 1.53 \n5 | United States | 1.52 \n6 | Spain | 1.48 \n7 | Australia | 1.36 \n8 | Italy | 1.35 \n9 | Mexico | 1.27 \n10 | United Kingdom | 1.24 \n \n_* Excluded from the rankings are countries with relatively few users of Kaspersky security solutions for macOS (under 10,000). \n** Unique users attacked as a percentage of all users of Kaspersky security solutions for macOS in the country._\n\nFrance, with 1.71%, was again the most attacked country by number of users. Canada, with 1.70%, and Russia, with 1.57%, followed close behind. The most frequently encountered family in France and Canada was AdWare.OSX.Amc.e, and in Russia, it was AdWare.OSX.Pirrit.ac.\n\n## IoT attacks\n\n### IoT threat statistics\n\nIn Q3 2022, three-fourths of the devices that attacked Kaspersky honeypots used the Telnet protocol.\n\nTelnet | 75.92% \n---|--- \nSSH | 24.08% \n \n_Distribution of attacked services by number of unique IP addresses of attacking devices, Q3 2022_\n\nA majority of the attacks on Kaspersky honeypots in terms of sessions were controlled via Telnet as well.\n\nTelnet | 97.53% \n---|--- \nSSH | 2.47% \n \n_Distribution of cybercriminal working sessions with Kaspersky traps, Q3 2022_\n\n**TOP 10 threats delivered to IoT devices via Telnet**\n\n| **Verdict** | **%*** \n---|---|--- \n1 | Backdoor.Linux.Mirai.b | 28.67 \n2 | Trojan-Downloader.Linux.NyaDrop.b | 18.63 \n3 | Backdoor.Linux.Mirai.ba | 11.63 \n4 | Backdoor.Linux.Mirai.cw | 10.94 \n5 | Backdoor.Linux.Gafgyt.a | 3.69 \n6 | Backdoor.Linux.Mirai.ew | 3.49 \n7 | Trojan-Downloader.Shell.Agent.p | 2.56 \n8 | Backdoor.Linux.Gafgyt.bj | 1.63 \n9 | Backdoor.Linux.Mirai.et | 1.17 \n10 | Backdoor.Linux.Mirai.ek | 1.08 \n \n_* Share of each threat delivered to infected devices as a result of a successful Telnet attack out of the total number of delivered threats._\n\nDetailed IoT-threat statistics are published in the DDoS report for Q3 2022.\n\n## Attacks via web resources\n\n_The statistics in this section are based on Web Anti-Virus, which protects users when malicious objects are downloaded from malicious/infected web pages. Cybercriminals create these sites on purpose; they can infect hacked legitimate resources as well as web resources with user-created content, such as forums._\n\n### Countries and territories that serve as sources of web-based attacks: TOP 10\n\n_The following statistics show the distribution by country or territory of the sources of internet attacks blocked by Kaspersky products on user computers (web pages with redirects to exploits, sites hosting malicious programs, botnet C&C centers, etc.). Any unique host could be the source of one or more web-based attacks._\n\n_To determine the geographic source of web attacks, the GeoIP technique was used to match the domain name to the real IP address at which the domain is hosted._\n\nIn Q3 2022, Kaspersky solutions blocked 956,074,958 attacks launched from online resources across the globe. A total of 251,288,987 unique URLs were recognized as malicious by Web Anti-Virus components.\n\n_Distribution of web-attack sources country and territory, Q3 2022 ([download](<https://media.kasperskycontenthub.com/wp-content/uploads/sites/43/2022/11/15154703/11-en-malware-report-q3-2022-pc-stat.png>))_\n\n### Countries and territories where users faced the greatest risk of online infection\n\nTo assess the risk of online infection faced by users in different countries and territories, for each country or territory we calculated the percentage of Kaspersky users on whose computers Web Anti-Virus was triggered during the quarter. The resulting data provides an indication of the aggressiveness of the environment in which computers operate in different countries and territories.\n\nNote that these rankings only include attacks by malicious objects that fall under the **_Malware_**_ class_; they do not include Web Anti-Virus detections of potentially dangerous or unwanted programs, such as RiskTool or adware.\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | Taiwan | 19.65 \n2 | Belarus | 17.01 \n3 | Serbia | 15.05 \n4 | Russia | 14.12 \n5 | Algeria | 14.01 \n6 | Turkey | 13.82 \n7 | Tunisia | 13.31 \n8 | Bangladesh | 13.30 \n9 | Moldova | 13.22 \n10 | Palestine | 12.61 \n11 | Yemen | 12.58 \n12 | Ukraine | 12.25 \n13 | Libya | 12.23 \n14 | Sri Lanka | 11.97 \n15 | Kyrgyzstan | 11.69 \n16 | Estonia | 11.65 \n17 | Hong Kong | 11.52 \n18 | Nepal | 11.52 \n19 | Syria | 11.39 \n20 | Lithuania | 11.33 \n \n_* Excluded are countries and territories with relatively few Kaspersky users (under 10,000)._ \n_** Unique users targeted by **Malware**-class attacks as a percentage of all unique users of Kaspersky products in the country._\n\nOn average during the quarter, 9.08% of internet users' computers worldwide were subjected to at least one **Malware**-class web attack.\n\n## Local threats\n\n_In this section, we analyze statistical data obtained from the OAS and ODS modules of Kaspersky products. It takes into account malicious programs that were found directly on users' computers or removable media connected to them (flash drives, camera memory cards, phones, external hard drives), or which initially made their way onto the computer in non-open form (for example, programs in complex installers, encrypted files, etc.)._\n\nIn Q3 2022, our File Anti-Virus detected **49,275,253** malicious and potentially unwanted objects.\n\n### Countries and territories where users faced the highest risk of local infection\n\nFor each country, we calculated the percentage of Kaspersky product users on whose computers File Anti-Virus was triggered during the reporting period. These statistics reflect the level of personal computer infection in different countries.\n\nThese rankings only include attacks by malicious programs that fall under the **Malware** class; they do not include File Anti-Virus triggerings in response to potentially dangerous or unwanted programs, such as RiskTool or adware.\n\n| **Country or territory*** | **%**** \n---|---|--- \n1 | Turkmenistan | 46.48 \n2 | Yemen | 45.12 \n3 | Afghanistan | 44.18 \n4 | Cuba | 40.48 \n5 | Tajikistan | 39.17 \n6 | Bangladesh | 37.06 \n7 | Uzbekistan | 37.00 \n8 | Ethiopia | 36.96 \n9 | South Sudan | 36.89 \n10 | Myanmar | 36.64 \n11 | Syria | 34.82 \n12 | Benin | 34.56 \n13 | Burundi | 33.91 \n14 | Tanzania | 33.05 \n15 | Rwanda | 33.03 \n16 | Chad | 33.01 \n17 | Venezuela | 32.79 \n18 | Cameroon | 32.30 \n19 | Sudan | 31.93 \n20 | Malawi | 31.88 \n \n_* Excluded are countries with relatively few Kaspersky users (under 10,000)._ \n_** Unique users on whose computers **Malware**-class local threats were blocked, as a percentage of all unique users of Kaspersky products in the country._\n\nOn average worldwide, Malware-class local threats were registered on 14.74% of users' computers at least once during Q3. Russia scored 16.60% in this ranking.", "cvss3": {"exploitabilityScore": 3.9, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "CHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 10.0, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:C/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 6.0}, "published": "2022-11-18T08:10:34", "type": "securelist", "title": "IT threat evolution in Q3 2022. Non-mobile statistics", "bulletinFamily": "blog", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": true, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 9.3, "vectorString": "AV:N/AC:M/Au:N/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 10.0, "obtainUserPrivilege": false}, "cvelist": ["CVE-2017-0199", "CVE-2017-11882", "CVE-2018-0802", "CVE-2021-40444", "CVE-2021-44228", "CVE-2021-44832", "CVE-2021-45046", "CVE-2021-45105", "CVE-2022-22022", "CVE-2022-22026", "CVE-2022-22028", "CVE-2022-22029", "CVE-2022-22034", "CVE-2022-22038", "CVE-2022-22039", "CVE-2022-22047", "CVE-2022-22049", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2624", "CVE-2022-30190", "CVE-2022-30206", "CVE-2022-30220", "CVE-2022-30226", "CVE-2022-3075", "CVE-2022-33636", "CVE-2022-33649", "CVE-2022-34713", "CVE-2022-34715", "CVE-2022-34718", "CVE-2022-34724", "CVE-2022-35743", "CVE-2022-35750", "CVE-2022-35796", "CVE-2022-35803", "CVE-2022-37969", "CVE-2022-38012", "CVE-2022-38476", "CVE-2022-38477", "CVE-2022-38478", "CVE-2022-41040", "CVE-2022-41082"], "modified": "2022-11-18T08:10:34", "id": "SECURELIST:C1F2E1B6711C8D84F3E78D203B3CE837", "href": "https://securelist.com/it-threat-evolution-in-q3-2022-non-mobile-statistics/107963/", "cvss": {"score": 9.3, "vector": "AV:N/AC:M/Au:N/C:C/I:C/A:C"}}], "gentoo": [{"lastseen": "2023-12-02T18:55:09", "description": "### Background\n\nChromium is an open-source browser project that aims to build a safer, faster, and more stable way for all users to experience the web. Google Chrome is one fast, simple, and secure browser for all your devices. Microsoft Edge is a browser that combines a minimal design with sophisticated technology to make the web faster, safer, and easier.\n\n### Description\n\nMultiple vulnerabilities have been discovered in Chromium and its derivatives. Please review the CVE identifiers referenced below for details.\n\n### Impact\n\nPlease review the referenced CVE identifiers for details.\n\n### Workaround\n\nThere is no known workaround at this time.\n\n### Resolution\n\nAll Chromium users should upgrade to the latest version:\n \n \n # emerge --sync\n # emerge --ask --oneshot --verbose \">=www-client/chromium-104.0.5112.101\"\n \n\nAll Chromium binary users should upgrade to the latest version:\n \n \n # emerge --sync\n # emerge --ask --oneshot --verbose \">=www-client/chromium-bin-104.0.5112.101\"\n \n\nAll Google Chrome users should upgrade to tha latest version:\n \n \n # emerge --sync\n # emerge --ask --oneshot --verbose \">=www-client/google-chrome-104.0.5112.101\"\n \n\nAll Microsoft Edge users should upgrade to tha latest version:\n \n \n # emerge --sync\n # emerge --ask --oneshot --verbose \">=www-client/microsoft-edge-104.0.1293.63\"", "cvss3": {"exploitabilityScore": 2.8, "cvssV3": {"baseSeverity": "CRITICAL", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "CHANGED", "attackVector": "NETWORK", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "NONE", "baseScore": 9.6, "vectorString": "CVSS:3.1/AV:N/AC:L/PR:N/UI:R/S:C/C:H/I:H/A:H", "version": "3.1", "userInteraction": "REQUIRED"}, "impactScore": 6.0}, "published": "2022-08-21T00:00:00", "type": "gentoo", "title": "Chromium, Google Chrome, Microsoft Edge: Multiple Vulnerabilities", "bulletinFamily": "unix", "cvss2": {"severity": "MEDIUM", "exploitabilityScore": 8.6, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "MEDIUM", "confidentialityImpact": "PARTIAL", "availabilityImpact": "PARTIAL", "integrityImpact": "PARTIAL", "baseScore": 6.8, "vectorString": "AV:N/AC:M/Au:N/C:P/I:P/A:P", "version": "2.0", "accessVector": "NETWORK", "authentication": "NONE"}, "impactScore": 6.4, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-2163", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-2296", "CVE-2022-2477", "CVE-2022-2478", "CVE-2022-2479", "CVE-2022-2480", "CVE-2022-2481", "CVE-2022-2603", "CVE-2022-2604", "CVE-2022-2605", "CVE-2022-2606", "CVE-2022-2607", "CVE-2022-2608", "CVE-2022-2609", "CVE-2022-2610", "CVE-2022-2611", "CVE-2022-2612", "CVE-2022-2613", "CVE-2022-2614", "CVE-2022-2615", "CVE-2022-2616", "CVE-2022-2617", "CVE-2022-2618", "CVE-2022-2619", "CVE-2022-2620", "CVE-2022-2621", "CVE-2022-2622", "CVE-2022-2623", "CVE-2022-2624", "CVE-2022-2852", "CVE-2022-2853", "CVE-2022-2854", "CVE-2022-2855", "CVE-2022-2856", "CVE-2022-2857", "CVE-2022-2858", "CVE-2022-2859", "CVE-2022-2860", "CVE-2022-2861", "CVE-2022-33636", "CVE-2022-33649", "CVE-2022-35796"], "modified": "2022-08-21T00:00:00", "id": "GLSA-202208-35", "href": "https://security.gentoo.org/glsa/202208-35", "cvss": {"score": 6.8, "vector": "AV:N/AC:M/Au:N/C:P/I:P/A:P"}}], "rapid7blog": [{"lastseen": "2022-07-16T21:58:42", "description": "\n\nMicrosoft\u2019s updates for [July's Patch Tuesday](<https://msrc.microsoft.com/update-guide/releaseNote/2022-Jul>) fix 86 CVEs, including two vulnerabilities in their Chromium-based Edge browser that were patched earlier in the month.\n\nOne 0-day vulnerability has been patched: [CVE-2022-22047](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>) affects all currently supported versions of Microsoft\u2019s pervasive operating system. This is an elevation-of-privilege vulnerability in the Windows Client Server Runtime Subsystem (CSRSS), a critical service that is often impersonated by malware. An attacker with an already-existing foothold can exploit this vulnerability to gain SYSTEM-level privileges. Two similar vulnerabilities in CSRSS ([CVE-2022-22049](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22049>) and [CVE-2022-22026](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22026>)) were also fixed, likely as a result of Microsoft\u2019s investigation into the in-the-wild exploitation of [CVE-2022-22047](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22047>).\n\nFour critical remote code execution (RCE) vulnerabilities were fixed today. [CVE-2022-22029](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22029>) and [CVE-2022-22039](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22039>) affect network file system (NFS) servers, and [CVE-2022-22038](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-22038>) affects the remote procedure call (RPC) runtime. Although all three of these will be relatively tricky for attackers to exploit due to the amount of sustained data that needs to be transmitted, administrators should patch sooner rather than later. [CVE-2022-30221](<https://msrc.microsoft.com/update-guide/vulnerability/CVE-2022-30221>) supposedly affects the Windows Graphics Component, though Microsoft\u2019s FAQ indicates that exploitation requires users to access a malicious RDP server.\n\nOver a third of today\u2019s vulnerabilities (a whopping 32 CVEs) affect their Azure Site Recovery offering. Anyone making use of this VMWare-to-Azure backup solution should be sure to upgrade to version 9.49 of the Microsoft Azure Site Recovery Unified Setup, available in [Update rollup 62](<https://support.microsoft.com/en-us/topic/update-rollup-62-for-azure-site-recovery-e7aff36f-b6ad-4705-901c-f662c00c402b>).\n\n## Summary charts\n\n\n\n## Summary tables\n\n### Azure vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-33676](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33676>) | Azure Site Recovery Remote Code Execution Vulnerability | No | No | 7.2 | Yes \n[CVE-2022-33678](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33678>) | Azure Site Recovery Remote Code Execution Vulnerability | No | No | 7.2 | Yes \n[CVE-2022-33674](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33674>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 8.3 | Yes \n[CVE-2022-33675](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33675>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-33677](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33677>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 7.2 | Yes \n[CVE-2022-30181](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30181>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33641](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33641>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33643](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33643>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33655](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33655>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33656](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33656>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33657](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33657>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33661](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33661>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33662](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33662>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33663](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33663>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33665](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33665>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33666](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33666>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33667](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33667>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33672](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33672>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33673](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33673>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-33642](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33642>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33650](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33650>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33651](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33651>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33653](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33653>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33654](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33654>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33659](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33659>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33660](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33660>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33664](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33664>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33668](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33668>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33669](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33669>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33671](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33671>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.9 | Yes \n[CVE-2022-33652](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33652>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.4 | Yes \n[CVE-2022-33658](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33658>) | Azure Site Recovery Elevation of Privilege Vulnerability | No | No | 4.4 | Yes \n \n### Azure Microsoft Dynamics vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-30187](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30187>) | Azure Storage Library Information Disclosure Vulnerability | No | No | 4.7 | Yes \n \n### Browser vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-2295](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-2295>) | Chromium: CVE-2022-2295 Type Confusion in V8 | No | No | N/A | Yes \n[CVE-2022-2294](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-2294>) | Chromium: CVE-2022-2294 Heap buffer overflow in WebRTC | No | No | N/A | Yes \n \n### Microsoft Office vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-33633](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33633>) | Skype for Business and Lync Remote Code Execution Vulnerability | No | No | 7.2 | Yes \n[CVE-2022-33632](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33632>) | Microsoft Office Security Feature Bypass Vulnerability | No | No | 4.7 | Yes \n \n### System Center vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-33637](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33637>) | Microsoft Defender for Endpoint Tampering Vulnerability | No | No | 6.5 | Yes \n \n### Windows vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-33644](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-33644>) | Xbox Live Save Service Elevation of Privilege Vulnerability | No | No | 7 | Yes \n[CVE-2022-22045](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22045>) | Windows.Devices.Picker.dll Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30222](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30222>) | Windows Shell Remote Code Execution Vulnerability | No | No | 8.4 | Yes \n[CVE-2022-30216](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30216>) | Windows Server Service Tampering Vulnerability | No | No | 8.8 | Yes \n[CVE-2022-22041](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22041>) | Windows Print Spooler Elevation of Privilege Vulnerability | No | No | 6.8 | Yes \n[CVE-2022-30214](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30214>) | Windows DNS Server Remote Code Execution Vulnerability | No | No | 6.6 | Yes \n[CVE-2022-22031](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22031>) | Windows Credential Guard Domain-joined Public Key Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30212](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30212>) | Windows Connected Devices Platform Service Information Disclosure Vulnerability | No | No | 4.7 | Yes \n[CVE-2022-22711](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22711>) | Windows BitLocker Information Disclosure Vulnerability | No | No | 6.7 | Yes \n[CVE-2022-22038](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22038>) | Remote Procedure Call Runtime Remote Code Execution Vulnerability | No | No | 8.1 | Yes \n[CVE-2022-27776](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-27776>) | HackerOne: CVE-2022-27776 Insufficiently protected credentials vulnerability might leak authentication or cookie header data | No | No | N/A | Yes \n[CVE-2022-30215](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30215>) | Active Directory Federation Services Elevation of Privilege Vulnerability | No | No | 7.5 | Yes \n \n### Windows ESU vulnerabilities\n\nCVE | Title | Exploited? | Publicly disclosed? | CVSSv3 base score | Has FAQ? \n---|---|---|---|---|--- \n[CVE-2022-30208](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30208>) | Windows Security Account Manager (SAM) Denial of Service Vulnerability | No | No | 6.5 | No \n[CVE-2022-30206](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30206>) | Windows Print Spooler Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30226](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30226>) | Windows Print Spooler Elevation of Privilege Vulnerability | No | No | 7.1 | Yes \n[CVE-2022-22022](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22022>) | Windows Print Spooler Elevation of Privilege Vulnerability | No | No | 7.1 | Yes \n[CVE-2022-22023](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22023>) | Windows Portable Device Enumerator Service Security Feature Bypass Vulnerability | No | No | 6.6 | Yes \n[CVE-2022-22029](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22029>) | Windows Network File System Remote Code Execution Vulnerability | No | No | 8.1 | Yes \n[CVE-2022-22039](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22039>) | Windows Network File System Remote Code Execution Vulnerability | No | No | 7.5 | Yes \n[CVE-2022-22028](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22028>) | Windows Network File System Information Disclosure Vulnerability | No | No | 5.9 | Yes \n[CVE-2022-30225](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30225>) | Windows Media Player Network Sharing Service Elevation of Privilege Vulnerability | No | No | 7.1 | Yes \n[CVE-2022-30211](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30211>) | Windows Layer 2 Tunneling Protocol (L2TP) Remote Code Execution Vulnerability | No | No | 7.5 | Yes \n[CVE-2022-21845](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-21845>) | Windows Kernel Information Disclosure Vulnerability | No | No | 4.7 | Yes \n[CVE-2022-22025](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22025>) | Windows Internet Information Services Cachuri Module Denial of Service Vulnerability | No | No | 7.5 | No \n[CVE-2022-30209](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30209>) | Windows IIS Server Elevation of Privilege Vulnerability | No | No | 7.4 | Yes \n[CVE-2022-22042](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22042>) | Windows Hyper-V Information Disclosure Vulnerability | No | No | 6.5 | Yes \n[CVE-2022-30223](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30223>) | Windows Hyper-V Information Disclosure Vulnerability | No | No | 5.7 | Yes \n[CVE-2022-30205](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30205>) | Windows Group Policy Elevation of Privilege Vulnerability | No | No | 6.6 | Yes \n[CVE-2022-30221](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30221>) | Windows Graphics Component Remote Code Execution Vulnerability | No | No | 8.8 | Yes \n[CVE-2022-22034](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22034>) | Windows Graphics Component Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30213](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30213>) | Windows GDI+ Information Disclosure Vulnerability | No | No | 5.5 | Yes \n[CVE-2022-22024](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22024>) | Windows Fax Service Remote Code Execution Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-22027](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22027>) | Windows Fax Service Remote Code Execution Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-22050](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22050>) | Windows Fax Service Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-22043](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22043>) | Windows Fast FAT File System Driver Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30220](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30220>) | Windows Common Log File System Driver Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-22026](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22026>) | Windows CSRSS Elevation of Privilege Vulnerability | No | No | 8.8 | Yes \n[CVE-2022-22047](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22047>) | Windows CSRSS Elevation of Privilege Vulnerability | Yes | No | 7.8 | Yes \n[CVE-2022-22049](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22049>) | Windows CSRSS Elevation of Privilege Vulnerability | No | No | 7.8 | Yes \n[CVE-2022-30203](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30203>) | Windows Boot Manager Security Feature Bypass Vulnerability | No | No | 7.4 | Yes \n[CVE-2022-22037](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22037>) | Windows Advanced Local Procedure Call Elevation of Privilege Vulnerability | No | No | 7.5 | Yes \n[CVE-2022-30202](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30202>) | Windows Advanced Local Procedure Call Elevation of Privilege Vulnerability | No | No | 7 | Yes \n[CVE-2022-30224](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-30224>) | Windows Advanced Local Procedure Call Elevation of Privilege Vulnerability | No | No | 7 | Yes \n[CVE-2022-22036](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22036>) | Performance Counters for Windows Elevation of Privilege Vulnerability | No | No | 7 | Yes \n[CVE-2022-22040](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22040>) | Internet Information Services Dynamic Compression Module Denial of Service Vulnerability | No | No | 7.3 | Yes \n[CVE-2022-22048](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-22048>) | BitLocker Security Feature Bypass Vulnerability | No | No | 6.1 | Yes \n[CVE-2022-23825](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-23825>) | AMD: CVE-2022-23825 AMD CPU Branch Type Confusion | No | No | N/A | Yes \n[CVE-2022-23816](<https://portal.msrc.microsoft.com/en-US/security-guidance/advisory/CVE-2022-23816>) | AMD: CVE-2022-23816 AMD CPU Branch Type Confusion | No | No | N/A | Yes \n \n#### NEVER MISS A BLOG\n\nGet the latest stories, expertise, and news about security today.\n\nSubscribe", "cvss3": {"exploitabilityScore": 2.0, "cvssV3": {"baseSeverity": "HIGH", "confidentialityImpact": "HIGH", "attackComplexity": "LOW", "scope": "CHANGED", "attackVector": "LOCAL", "availabilityImpact": "HIGH", "integrityImpact": "HIGH", "privilegesRequired": "LOW", "baseScore": 8.8, "vectorString": "CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:C/C:H/I:H/A:H", "version": "3.1", "userInteraction": "NONE"}, "impactScore": 6.0}, "published": "2022-07-12T19:40:15", "type": "rapid7blog", "title": "Patch Tuesday - July 2022", "bulletinFamily": "info", "cvss2": {"severity": "HIGH", "exploitabilityScore": 8.0, "obtainAllPrivilege": false, "userInteractionRequired": false, "obtainOtherPrivilege": false, "cvssV2": {"accessComplexity": "LOW", "confidentialityImpact": "COMPLETE", "availabilityImpact": "COMPLETE", "integrityImpact": "COMPLETE", "baseScore": 9.0, "vectorString": "AV:N/AC:L/Au:S/C:C/I:C/A:C", "version": "2.0", "accessVector": "NETWORK", "authentication": "SINGLE"}, "impactScore": 10.0, "acInsufInfo": false, "obtainUserPrivilege": false}, "cvelist": ["CVE-2022-21845", "CVE-2022-22022", "CVE-2022-22023", "CVE-2022-22024", "CVE-2022-22025", "CVE-2022-22026", "CVE-2022-22027", "CVE-2022-22028", "CVE-2022-22029", "CVE-2022-22031", "CVE-2022-22034", "CVE-2022-22036", "CVE-2022-22037", "CVE-2022-22038", "CVE-2022-22039", "CVE-2022-22040", "CVE-2022-22041", "CVE-2022-22042", "CVE-2022-22043", "CVE-2022-22045", "CVE-2022-22047", "CVE-2022-22048", "CVE-2022-22049", "CVE-2022-22050", "CVE-2022-22711", "CVE-2022-2294", "CVE-2022-2295", "CVE-2022-23816", "CVE-2022-23825", "CVE-2022-27776", "CVE-2022-30181", "CVE-2022-30187", "CVE-2022-30202", "CVE-2022-30203", "CVE-2022-30205", "CVE-2022-30206", "CVE-2022-30208", "CVE-2022-30209", "CVE-2022-30211", "CVE-2022-30212", "CVE-2022-30213", "CVE-2022-30214", "CVE-2022-30215", "CVE-2022-30216", "CVE-2022-30220", "CVE-2022-30221", "CVE-2022-30222", "CVE-2022-30223", "CVE-2022-30224", "CVE-2022-30225", "CVE-2022-30226", "CVE-2022-33632", "CVE-2022-33633", "CVE-2022-33637", "CVE-2022-33641", "CVE-2022-33642", "CVE-2022-33643", "CVE-2022-33644", "CVE-2022-33650", "CVE-2022-33651", "CVE-2022-33652", "CVE-2022-33653", "CVE-2022-33654", "CVE-2022-33655", "CVE-2022-33656", "CVE-2022-33657", "CVE-2022-33658", "CVE-2022-33659", "CVE-2022-33660", "CVE-2022-33661", "CVE-2022-33662", "CVE-2022-33663", "CVE-2022-33664", "CVE-2022-33665", "CVE-2022-33666", "CVE-2022-33667", "CVE-2022-33668", "CVE-2022-33669", "CVE-2022-33671", "CVE-2022-33672", "CVE-2022-33673", "CVE-2022-33674", "CVE-2022-33675", "CVE-2022-33676", "CVE-2022-33677", "CVE-2022-33678"], "modified": "2022-07-12T19:40:15", "id": "RAPID7BLOG:B54637535A9D368B19D4D9881C6C34B3", "href": "https://blog.rapid7.com/2022/07/12/patch-tuesday-july-2022/", "cvss": {"score": 9.0, "vector": "AV:N/AC:L/Au:S/C:C/I:C/A:C"}}]}