Vulnerabilities > CVE-2017-12643 - Allocation of Resources Without Limits or Throttling vulnerability in Imagemagick 7.0.61

047910
CVSS 7.1 - HIGH
Attack vector
NETWORK
Attack complexity
MEDIUM
Privileges required
NONE
Confidentiality impact
NONE
Integrity impact
NONE
Availability impact
COMPLETE
network
imagemagick
CWE-770
nessus

Summary

ImageMagick 7.0.6-1 has a memory exhaustion vulnerability in ReadOneJNGImage in coders\png.c.

Vulnerable Configurations

Part Description Count
Application
Imagemagick
1

Common Attack Pattern Enumeration and Classification (CAPEC)

  • Locate and Exploit Test APIs
    An attacker exploits a sample, demonstration, or test API that is insecure by default and should not be resident on production systems. Some applications include APIs that are intended to allow an administrator to test and refine their domain. These APIs should usually be disabled once a system enters a production environment. Testing APIs may expose a great deal of diagnostic information intended to aid an administrator, but which can also be used by an attacker to further refine their attack. Moreover, testing APIs may not have adequate security controls or may not have undergone rigorous testing since they were not intended for use in production environments. As such, they may have many flaws and vulnerabilities that would allow an attacker to severely disrupt a target.
  • Flooding
    An attacker consumes the resources of a target by rapidly engaging in a large number of interactions with the target. This type of attack generally exposes a weakness in rate limiting or flow control in management of interactions. Since each request consumes some of the target's resources, if a sufficiently large number of requests must be processed at the same time then the target's resources can be exhausted. The degree to which the attack is successful depends upon the volume of requests in relation to the amount of the resource the target has access to, and other mitigating circumstances such as the target's ability to shift load or acquired additional resources to deal with the depletion. The more protected the resource and the greater the quantity of it that must be consumed, the more resources the attacker may need to have at their disposal. A typical TCP/IP flooding attack is a Distributed Denial-of-Service attack where many machines simultaneously make a large number of requests to a target. Against a target with strong defenses and a large pool of resources, many tens of thousands of attacking machines may be required. When successful this attack prevents legitimate users from accessing the service and can cause the target to crash. This attack differs from resource depletion through leaks or allocations in that the latter attacks do not rely on the volume of requests made to the target but instead focus on manipulation of the target's operations. The key factor in a flooding attack is the number of requests the attacker can make in a given period of time. The greater this number, the more likely an attack is to succeed against a given target.
  • Excessive Allocation
    An attacker causes the target to allocate excessive resources to servicing the attackers' request, thereby reducing the resources available for legitimate services and degrading or denying services. Usually, this attack focuses on memory allocation, but any finite resource on the target could be the attacked, including bandwidth, processing cycles, or other resources. This attack does not attempt to force this allocation through a large number of requests (that would be Resource Depletion through Flooding) but instead uses one or a small number of requests that are carefully formatted to force the target to allocate excessive resources to service this request(s). Often this attack takes advantage of a bug in the target to cause the target to allocate resources vastly beyond what would be needed for a normal request. For example, using an Integer Attack, the attacker could cause a variable that controls allocation for a request to hold an excessively large value. Excessive allocation of resources can render a service degraded or unavailable to legitimate users and can even lead to crashing of the target.
  • XML Ping of the Death
    An attacker initiates a resource depletion attack where a large number of small XML messages are delivered at a sufficiently rapid rate to cause a denial of service or crash of the target. Transactions such as repetitive SOAP transactions can deplete resources faster than a simple flooding attack because of the additional resources used by the SOAP protocol and the resources necessary to process SOAP messages. The transactions used are immaterial as long as they cause resource utilization on the target. In other words, this is a normal flooding attack augmented by using messages that will require extra processing on the target.
  • XML Entity Expansion
    An attacker submits an XML document to a target application where the XML document uses nested entity expansion to produce an excessively large output XML. XML allows the definition of macro-like structures that can be used to simplify the creation of complex structures. However, this capability can be abused to create excessive demands on a processor's CPU and memory. A small number of nested expansions can result in an exponential growth in demands on memory.

Nessus

  • NASL familySuSE Local Security Checks
    NASL idSUSE_SU-2018-0350-1.NASL
    descriptionThis update for ImageMagick fixes several issues. These security issues were fixed : - CVE-2018-5685: Prevent infinite loop and application hang in the ReadBMPImage function. Remote attackers could leverage this vulnerability to cause a denial of service via an image file with a crafted bit-field mask value (bsc#1075939) - CVE-2017-11639: Prevent heap-based buffer over-read in the WriteCIPImage() function, related to the GetPixelLuma function in MagickCore/pixel-accessor.h (bsc#1050635). - CVE-2017-11525: Prevent memory consumption in the ReadCINImage function that allowed remote attackers to cause a denial of service (bsc#1050098). - CVE-2017-9262: The ReadJNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043353) - CVE-2017-9261: The ReadMNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043354) - CVE-2017-10995: The mng_get_long function in coders/png.c allowed remote attackers to cause a denial of service (heap-based buffer over-read and application crash) via a crafted MNG image (bsc#1047908) - CVE-2017-11539: Prevent memory leak in the ReadOnePNGImage() function in coders/png.c (bsc#1050037) - CVE-2017-11505: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050072) - CVE-2017-11526: The ReadOneMNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050100) - CVE-2017-11750: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (NULL pointer dereference) via a crafted file (bsc#1051442) - CVE-2017-12565: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052470) - CVE-2017-12676: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052708) - CVE-2017-12673: Prevent memory leak in the function ReadOneMNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052717) - CVE-2017-12671: Added NULL assignment in coders/png.c to prevent an invalid free in the function RelinquishMagickMemory in MagickCore/memory.c, which allowed attackers to cause a denial of service (bsc#1052721) - CVE-2017-12643: Prevent a memory exhaustion vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052768) - CVE-2017-12641: Prevent a memory leak vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052777) - CVE-2017-12640: Prevent an out-of-bounds read vulnerability in ReadOneMNGImage in coders/png.c (bsc#1052781) - CVE-2017-12935: The ReadMNGImage function in coders/png.c mishandled large MNG images, leading to an invalid memory read in the SetImageColorCallBack function in magick/image.c (bsc#1054600) - CVE-2017-13147: Prevent allocation failure in the function ReadMNGImage in coders/png.c when a small MNG file has a MEND chunk with a large length value (bsc#1055374) - CVE-2017-13142: Added additional checks for short files to prevent a crafted PNG file from triggering a crash (bsc#1055455) - CVE-2017-13141: Prevent memory leak in ReadOnePNGImage in coders/png.c (bsc#1055456) - CVE-2017-14103: The ReadJNGImage and ReadOneJNGImage functions in coders/png.c did not properly manage image pointers after certain error conditions, which allowed remote attackers to conduct use-after-free attacks via a crafted file, related to a ReadMNGImage out-of-order CloseBlob call (bsc#1057000) - CVE-2017-14649: ReadOneJNGImage in coders/png.c did not properly validate JNG data, leading to a denial of service (assertion failure in magick/pixel_cache.c, and application crash) (bsc#1060162) - CVE-2017-15218: Prevent memory leak in ReadOneJNGImage in coders/png.c (bsc#1062752) - CVE-2017-17504: Prevent heap-based buffer over-read via a crafted file in Magick_png_read_raw_profile, related to ReadOneMNGImage (bsc#1072362) - CVE-2017-17879: Prevent heap-based buffer over-read in ReadOneMNGImage in coders/png.c, related to length calculation and caused by an off-by-one error (bsc#1074125) - CVE-2017-17914: Prevent crafted files to cause a large loop in ReadOneMNGImage (bsc#1074185) - CVE-2017-17884: Prevent memory leak in the function WriteOnePNGImage in coders/png.c, which allowed attackers to cause a denial of service via a crafted PNG image file (bsc#1074120) - Prevent memory leak in svg.c, which allowed attackers to cause a denial of service via a crafted SVG image file (bsc#1074120) - Prevent small memory leak when processing PWP image files (bsc#1074309) - CVE-2017-18029: Prevent memory leak in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076021) - CVE-2017-18027: Prevent memory leak vulnerability in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076051) Note that Tenable Network Security has extracted the preceding description block directly from the SUSE security advisory. Tenable has attempted to automatically clean and format it as much as possible without introducing additional issues.
    last seen2020-06-01
    modified2020-06-02
    plugin id106603
    published2018-02-05
    reporterThis script is Copyright (C) 2018-2019 and is owned by Tenable, Inc. or an Affiliate thereof.
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    titleSUSE SLES11 Security Update : ImageMagick (SUSE-SU-2018:0350-1)
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    #
    # The descriptive text and package checks in this plugin were
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      - CVE-2018-5685: Prevent infinite loop and application
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        could leverage this vulnerability to cause a denial of
        service via an image file with a crafted bit-field mask
        value (bsc#1075939)
    
      - CVE-2017-11639: Prevent heap-based buffer over-read in
        the WriteCIPImage() function, related to the
        GetPixelLuma function in MagickCore/pixel-accessor.h
        (bsc#1050635).
    
      - CVE-2017-11525: Prevent memory consumption in the
        ReadCINImage function that allowed remote attackers to
        cause a denial of service (bsc#1050098).
    
      - CVE-2017-9262: The ReadJNGImage function in coders/png.c
        allowed attackers to cause a denial of service (memory
        leak) via a crafted file (bsc#1043353)
    
      - CVE-2017-9261: The ReadMNGImage function in coders/png.c
        allowed attackers to cause a denial of service (memory
        leak) via a crafted file (bsc#1043354)
    
      - CVE-2017-10995: The mng_get_long function in
        coders/png.c allowed remote attackers to cause a denial
        of service (heap-based buffer over-read and application
        crash) via a crafted MNG image (bsc#1047908)
    
      - CVE-2017-11539: Prevent memory leak in the
        ReadOnePNGImage() function in coders/png.c (bsc#1050037)
    
      - CVE-2017-11505: The ReadOneJNGImage function in
        coders/png.c allowed remote attackers to cause a denial
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        crafted file (bsc#1050072)
    
      - CVE-2017-11526: The ReadOneMNGImage function in
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        crafted file (bsc#1050100)
    
      - CVE-2017-11750: The ReadOneJNGImage function in
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      - CVE-2017-12565: Prevent memory leak in the function
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      - CVE-2017-12676: Prevent memory leak in the function
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      - CVE-2017-12935: The ReadMNGImage function in
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        invalid memory read in the SetImageColorCallBack
        function in magick/image.c (bsc#1054600)
    
      - CVE-2017-13147: Prevent allocation failure in the
        function ReadMNGImage in coders/png.c when a small MNG
        file has a MEND chunk with a large length value
        (bsc#1055374)
    
      - CVE-2017-13142: Added additional checks for short files
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      - CVE-2017-13141: Prevent memory leak in ReadOnePNGImage
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      - CVE-2017-14103: The ReadJNGImage and ReadOneJNGImage
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      - CVE-2017-14649: ReadOneJNGImage in coders/png.c did not
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      - CVE-2017-15218: Prevent memory leak in ReadOneJNGImage
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      - CVE-2017-17504: Prevent heap-based buffer over-read via
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      - CVE-2017-17879: Prevent heap-based buffer over-read in
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      - CVE-2017-17914: Prevent crafted files to cause a large
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      - CVE-2017-17884: Prevent memory leak in the function
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        image file (bsc#1074120)
    
      - Prevent memory leak in svg.c, which allowed attackers to
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        (bsc#1074120)
    
      - Prevent small memory leak when processing PWP image
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      - CVE-2017-18029: Prevent memory leak in the function
        ReadMATImage which allowed remote attackers to cause a
        denial of service via a crafted file (bsc#1076021)
    
      - CVE-2017-18027: Prevent memory leak vulnerability in the
        function ReadMATImage which allowed remote attackers to
        cause a denial of service via a crafted file
        (bsc#1076051)
    
    Note that Tenable Network Security has extracted the preceding
    description block directly from the SUSE security advisory. Tenable
    has attempted to automatically clean and format it as much as possible
    without introducing additional issues."
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        value:"https://www.suse.com/security/cve/CVE-2017-9262/"
      );
      script_set_attribute(
        attribute:"see_also",
        value:"https://www.suse.com/security/cve/CVE-2018-5685/"
      );
      # https://www.suse.com/support/update/announcement/2018/suse-su-20180350-1/
      script_set_attribute(
        attribute:"see_also",
        value:"http://www.nessus.org/u?1f6d88f2"
      );
      script_set_attribute(
        attribute:"solution", 
        value:
    "To install this SUSE Security Update use YaST online_update.
    Alternatively you can run the command listed for your product :
    
    SUSE Linux Enterprise Software Development Kit 11-SP4:zypper in -t
    patch sdksp4-ImageMagick-13453=1
    
    SUSE Linux Enterprise Server 11-SP4:zypper in -t patch
    slessp4-ImageMagick-13453=1
    
    SUSE Linux Enterprise Debuginfo 11-SP4:zypper in -t patch
    dbgsp4-ImageMagick-13453=1
    
    To bring your system up-to-date, use 'zypper patch'."
      );
      script_set_cvss_base_vector("CVSS2#AV:N/AC:M/Au:N/C:N/I:N/A:C");
      script_set_cvss_temporal_vector("CVSS2#E:U/RL:OF/RC:C");
      script_set_cvss3_base_vector("CVSS:3.0/AV:N/AC:L/PR:N/UI:R/S:U/C:H/I:H/A:H");
      script_set_cvss3_temporal_vector("CVSS:3.0/E:U/RL:O/RC:C");
      script_set_attribute(attribute:"exploitability_ease", value:"No known exploits are available");
      script_set_attribute(attribute:"exploit_available", value:"false");
    
      script_set_attribute(attribute:"plugin_type", value:"local");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:novell:suse_linux:libMagickCore1");
      script_set_attribute(attribute:"cpe", value:"cpe:/o:novell:suse_linux:11");
    
      script_set_attribute(attribute:"vuln_publication_date", value:"2017/05/29");
      script_set_attribute(attribute:"patch_publication_date", value:"2018/02/02");
      script_set_attribute(attribute:"plugin_publication_date", value:"2018/02/05");
      script_set_attribute(attribute:"generated_plugin", value:"current");
      script_end_attributes();
    
      script_category(ACT_GATHER_INFO);
      script_copyright(english:"This script is Copyright (C) 2018-2019 and is owned by Tenable, Inc. or an Affiliate thereof.");
      script_family(english:"SuSE Local Security Checks");
    
      script_dependencies("ssh_get_info.nasl");
      script_require_keys("Host/local_checks_enabled", "Host/cpu", "Host/SuSE/release", "Host/SuSE/rpm-list");
    
      exit(0);
    }
    
    
    include("audit.inc");
    include("global_settings.inc");
    include("rpm.inc");
    
    
    if (!get_kb_item("Host/local_checks_enabled")) audit(AUDIT_LOCAL_CHECKS_NOT_ENABLED);
    release = get_kb_item("Host/SuSE/release");
    if (isnull(release) || release !~ "^(SLED|SLES)") audit(AUDIT_OS_NOT, "SUSE");
    os_ver = pregmatch(pattern: "^(SLE(S|D)\d+)", string:release);
    if (isnull(os_ver)) audit(AUDIT_UNKNOWN_APP_VER, "SUSE");
    os_ver = os_ver[1];
    if (! preg(pattern:"^(SLES11)$", string:os_ver)) audit(AUDIT_OS_NOT, "SUSE SLES11", "SUSE " + os_ver);
    
    if (!get_kb_item("Host/SuSE/rpm-list")) audit(AUDIT_PACKAGE_LIST_MISSING);
    
    cpu = get_kb_item("Host/cpu");
    if (isnull(cpu)) audit(AUDIT_UNKNOWN_ARCH);
    if (cpu !~ "^i[3-6]86$" && "x86_64" >!< cpu && "s390x" >!< cpu) audit(AUDIT_LOCAL_CHECKS_NOT_IMPLEMENTED, "SUSE " + os_ver, cpu);
    
    sp = get_kb_item("Host/SuSE/patchlevel");
    if (isnull(sp)) sp = "0";
    if (os_ver == "SLES11" && (! preg(pattern:"^(4)$", string:sp))) audit(AUDIT_OS_NOT, "SLES11 SP4", os_ver + " SP" + sp);
    
    
    flag = 0;
    if (rpm_check(release:"SLES11", sp:"4", cpu:"x86_64", reference:"libMagickCore1-32bit-6.4.3.6-7.78.29.2")) flag++;
    if (rpm_check(release:"SLES11", sp:"4", cpu:"s390x", reference:"libMagickCore1-32bit-6.4.3.6-7.78.29.2")) flag++;
    if (rpm_check(release:"SLES11", sp:"4", reference:"libMagickCore1-6.4.3.6-7.78.29.2")) flag++;
    
    
    if (flag)
    {
      if (report_verbosity > 0) security_hole(port:0, extra:rpm_report_get());
      else security_hole(0);
      exit(0);
    }
    else
    {
      tested = pkg_tests_get();
      if (tested) audit(AUDIT_PACKAGE_NOT_AFFECTED, tested);
      else audit(AUDIT_PACKAGE_NOT_INSTALLED, "ImageMagick");
    }
    
  • NASL familyUbuntu Local Security Checks
    NASL idUBUNTU_USN-3681-1.NASL
    descriptionIt was discovered that ImageMagick incorrectly handled certain malformed image files. If a user or automated system using ImageMagick were tricked into opening a specially crafted image, an attacker could exploit this to cause a denial of service or possibly execute code with the privileges of the user invoking the program. Note that Tenable Network Security has extracted the preceding description block directly from the Ubuntu security advisory. Tenable has attempted to automatically clean and format it as much as possible without introducing additional issues.
    last seen2020-06-01
    modified2020-06-02
    plugin id110516
    published2018-06-13
    reporterUbuntu Security Notice (C) 2018-2019 Canonical, Inc. / NASL script (C) 2018-2019 and is owned by Tenable, Inc. or an Affiliate thereof.
    sourcehttps://www.tenable.com/plugins/nessus/110516
    titleUbuntu 14.04 LTS / 16.04 LTS / 17.10 / 18.04 LTS : imagemagick vulnerabilities (USN-3681-1)
    code
    #
    # (C) Tenable Network Security, Inc.
    #
    # The descriptive text and package checks in this plugin were
    # extracted from Ubuntu Security Notice USN-3681-1. The text 
    # itself is copyright (C) Canonical, Inc. See 
    # <http://www.ubuntu.com/usn/>. Ubuntu(R) is a registered 
    # trademark of Canonical, Inc.
    #
    
    include("compat.inc");
    
    if (description)
    {
      script_id(110516);
      script_version("1.3");
      script_cvs_date("Date: 2019/09/18 12:31:48");
    
      script_cve_id("CVE-2017-1000445", "CVE-2017-1000476", "CVE-2017-10995", "CVE-2017-11352", "CVE-2017-11533", "CVE-2017-11535", "CVE-2017-11537", "CVE-2017-11639", "CVE-2017-11640", "CVE-2017-12140", "CVE-2017-12418", "CVE-2017-12429", "CVE-2017-12430", "CVE-2017-12431", "CVE-2017-12432", "CVE-2017-12433", "CVE-2017-12435", "CVE-2017-12563", "CVE-2017-12587", "CVE-2017-12640", "CVE-2017-12643", "CVE-2017-12644", "CVE-2017-12670", "CVE-2017-12674", "CVE-2017-12691", "CVE-2017-12692", "CVE-2017-12693", "CVE-2017-12875", "CVE-2017-12877", "CVE-2017-12983", "CVE-2017-13058", "CVE-2017-13059", "CVE-2017-13060", "CVE-2017-13061", "CVE-2017-13062", "CVE-2017-13131", "CVE-2017-13134", "CVE-2017-13139", "CVE-2017-13142", "CVE-2017-13143", "CVE-2017-13144", "CVE-2017-13145", "CVE-2017-13758", "CVE-2017-13768", "CVE-2017-13769", "CVE-2017-14060", "CVE-2017-14172", "CVE-2017-14173", "CVE-2017-14174", "CVE-2017-14175", "CVE-2017-14224", "CVE-2017-14249", "CVE-2017-14325", "CVE-2017-14326", "CVE-2017-14341", "CVE-2017-14342", "CVE-2017-14343", "CVE-2017-14400", "CVE-2017-14505", "CVE-2017-14531", "CVE-2017-14532", "CVE-2017-14533", "CVE-2017-14607", "CVE-2017-14624", "CVE-2017-14625", "CVE-2017-14626", "CVE-2017-14682", "CVE-2017-14684", "CVE-2017-14739", "CVE-2017-14741", "CVE-2017-14989", "CVE-2017-15015", "CVE-2017-15016", "CVE-2017-15017", "CVE-2017-15032", "CVE-2017-15033", "CVE-2017-15217", "CVE-2017-15218", "CVE-2017-15277", "CVE-2017-15281", "CVE-2017-16546", "CVE-2017-17499", "CVE-2017-17504", "CVE-2017-17680", "CVE-2017-17681", "CVE-2017-17682", "CVE-2017-17879", "CVE-2017-17881", "CVE-2017-17882", "CVE-2017-17884", "CVE-2017-17885", "CVE-2017-17886", "CVE-2017-17887", "CVE-2017-17914", "CVE-2017-17934", "CVE-2017-18008", "CVE-2017-18022", "CVE-2017-18027", "CVE-2017-18028", "CVE-2017-18029", "CVE-2017-18209", "CVE-2017-18211", "CVE-2017-18251", "CVE-2017-18252", "CVE-2017-18254", "CVE-2017-18271", "CVE-2017-18273", "CVE-2018-10177", "CVE-2018-10804", "CVE-2018-10805", "CVE-2018-11251", "CVE-2018-11625", "CVE-2018-11655", "CVE-2018-11656", "CVE-2018-5246", "CVE-2018-5247", "CVE-2018-5248", "CVE-2018-5357", "CVE-2018-5358", "CVE-2018-6405", "CVE-2018-7443", "CVE-2018-8804", "CVE-2018-8960", "CVE-2018-9133");
      script_xref(name:"USN", value:"3681-1");
    
      script_name(english:"Ubuntu 14.04 LTS / 16.04 LTS / 17.10 / 18.04 LTS : imagemagick vulnerabilities (USN-3681-1)");
      script_summary(english:"Checks dpkg output for updated packages.");
    
      script_set_attribute(
        attribute:"synopsis", 
        value:
    "The remote Ubuntu host is missing one or more security-related
    patches."
      );
      script_set_attribute(
        attribute:"description", 
        value:
    "It was discovered that ImageMagick incorrectly handled certain
    malformed image files. If a user or automated system using ImageMagick
    were tricked into opening a specially crafted image, an attacker could
    exploit this to cause a denial of service or possibly execute code
    with the privileges of the user invoking the program.
    
    Note that Tenable Network Security has extracted the preceding
    description block directly from the Ubuntu security advisory. Tenable
    has attempted to automatically clean and format it as much as possible
    without introducing additional issues."
      );
      script_set_attribute(
        attribute:"see_also",
        value:"https://usn.ubuntu.com/3681-1/"
      );
      script_set_attribute(attribute:"solution", value:"Update the affected packages.");
      script_set_cvss_base_vector("CVSS2#AV:N/AC:L/Au:N/C:N/I:N/A:C");
      script_set_cvss3_base_vector("CVSS:3.0/AV:N/AC:L/PR:N/UI:N/S:U/C:H/I:H/A:H");
    
      script_set_attribute(attribute:"plugin_type", value:"local");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:imagemagick");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:imagemagick-6.q16");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagick++-6.q16-5v5");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagick++-6.q16-7");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagick++5");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore-6.q16-2");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore-6.q16-2-extra");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore-6.q16-3");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore-6.q16-3-extra");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore5");
      script_set_attribute(attribute:"cpe", value:"p-cpe:/a:canonical:ubuntu_linux:libmagickcore5-extra");
      script_set_attribute(attribute:"cpe", value:"cpe:/o:canonical:ubuntu_linux:14.04");
      script_set_attribute(attribute:"cpe", value:"cpe:/o:canonical:ubuntu_linux:16.04");
      script_set_attribute(attribute:"cpe", value:"cpe:/o:canonical:ubuntu_linux:17.10");
      script_set_attribute(attribute:"cpe", value:"cpe:/o:canonical:ubuntu_linux:18.04:-:lts");
    
      script_set_attribute(attribute:"vuln_publication_date", value:"2017/07/07");
      script_set_attribute(attribute:"patch_publication_date", value:"2018/06/12");
      script_set_attribute(attribute:"plugin_publication_date", value:"2018/06/13");
      script_set_attribute(attribute:"generated_plugin", value:"current");
      script_end_attributes();
    
      script_category(ACT_GATHER_INFO);
      script_copyright(english:"Ubuntu Security Notice (C) 2018-2019 Canonical, Inc. / NASL script (C) 2018-2019 and is owned by Tenable, Inc. or an Affiliate thereof.");
      script_family(english:"Ubuntu Local Security Checks");
    
      script_dependencies("ssh_get_info.nasl");
      script_require_keys("Host/cpu", "Host/Ubuntu", "Host/Ubuntu/release", "Host/Debian/dpkg-l");
    
      exit(0);
    }
    
    
    include("audit.inc");
    include("ubuntu.inc");
    include("misc_func.inc");
    
    if ( ! get_kb_item("Host/local_checks_enabled") ) audit(AUDIT_LOCAL_CHECKS_NOT_ENABLED);
    release = get_kb_item("Host/Ubuntu/release");
    if ( isnull(release) ) audit(AUDIT_OS_NOT, "Ubuntu");
    release = chomp(release);
    if (! preg(pattern:"^(14\.04|16\.04|17\.10|18\.04)$", string:release)) audit(AUDIT_OS_NOT, "Ubuntu 14.04 / 16.04 / 17.10 / 18.04", "Ubuntu " + release);
    if ( ! get_kb_item("Host/Debian/dpkg-l") ) audit(AUDIT_PACKAGE_LIST_MISSING);
    
    cpu = get_kb_item("Host/cpu");
    if (isnull(cpu)) audit(AUDIT_UNKNOWN_ARCH);
    if ("x86_64" >!< cpu && cpu !~ "^i[3-6]86$") audit(AUDIT_LOCAL_CHECKS_NOT_IMPLEMENTED, "Ubuntu", cpu);
    
    flag = 0;
    
    if (ubuntu_check(osver:"14.04", pkgname:"imagemagick", pkgver:"8:6.7.7.10-6ubuntu3.11")) flag++;
    if (ubuntu_check(osver:"14.04", pkgname:"libmagick++5", pkgver:"8:6.7.7.10-6ubuntu3.11")) flag++;
    if (ubuntu_check(osver:"14.04", pkgname:"libmagickcore5", pkgver:"8:6.7.7.10-6ubuntu3.11")) flag++;
    if (ubuntu_check(osver:"14.04", pkgname:"libmagickcore5-extra", pkgver:"8:6.7.7.10-6ubuntu3.11")) flag++;
    if (ubuntu_check(osver:"16.04", pkgname:"imagemagick", pkgver:"8:6.8.9.9-7ubuntu5.11")) flag++;
    if (ubuntu_check(osver:"16.04", pkgname:"imagemagick-6.q16", pkgver:"8:6.8.9.9-7ubuntu5.11")) flag++;
    if (ubuntu_check(osver:"16.04", pkgname:"libmagick++-6.q16-5v5", pkgver:"8:6.8.9.9-7ubuntu5.11")) flag++;
    if (ubuntu_check(osver:"16.04", pkgname:"libmagickcore-6.q16-2", pkgver:"8:6.8.9.9-7ubuntu5.11")) flag++;
    if (ubuntu_check(osver:"16.04", pkgname:"libmagickcore-6.q16-2-extra", pkgver:"8:6.8.9.9-7ubuntu5.11")) flag++;
    if (ubuntu_check(osver:"17.10", pkgname:"imagemagick", pkgver:"8:6.9.7.4+dfsg-16ubuntu2.2")) flag++;
    if (ubuntu_check(osver:"17.10", pkgname:"imagemagick-6.q16", pkgver:"8:6.9.7.4+dfsg-16ubuntu2.2")) flag++;
    if (ubuntu_check(osver:"17.10", pkgname:"libmagick++-6.q16-7", pkgver:"8:6.9.7.4+dfsg-16ubuntu2.2")) flag++;
    if (ubuntu_check(osver:"17.10", pkgname:"libmagickcore-6.q16-3", pkgver:"8:6.9.7.4+dfsg-16ubuntu2.2")) flag++;
    if (ubuntu_check(osver:"17.10", pkgname:"libmagickcore-6.q16-3-extra", pkgver:"8:6.9.7.4+dfsg-16ubuntu2.2")) flag++;
    if (ubuntu_check(osver:"18.04", pkgname:"imagemagick", pkgver:"8:6.9.7.4+dfsg-16ubuntu6.2")) flag++;
    if (ubuntu_check(osver:"18.04", pkgname:"imagemagick-6.q16", pkgver:"8:6.9.7.4+dfsg-16ubuntu6.2")) flag++;
    if (ubuntu_check(osver:"18.04", pkgname:"libmagick++-6.q16-7", pkgver:"8:6.9.7.4+dfsg-16ubuntu6.2")) flag++;
    if (ubuntu_check(osver:"18.04", pkgname:"libmagickcore-6.q16-3", pkgver:"8:6.9.7.4+dfsg-16ubuntu6.2")) flag++;
    if (ubuntu_check(osver:"18.04", pkgname:"libmagickcore-6.q16-3-extra", pkgver:"8:6.9.7.4+dfsg-16ubuntu6.2")) flag++;
    
    if (flag)
    {
      security_report_v4(
        port       : 0,
        severity   : SECURITY_HOLE,
        extra      : ubuntu_report_get()
      );
      exit(0);
    }
    else
    {
      tested = ubuntu_pkg_tests_get();
      if (tested) audit(AUDIT_PACKAGE_NOT_AFFECTED, tested);
      else audit(AUDIT_PACKAGE_NOT_INSTALLED, "imagemagick / imagemagick-6.q16 / libmagick++-6.q16-5v5 / etc");
    }
    
  • NASL familySuSE Local Security Checks
    NASL idOPENSUSE-2018-145.NASL
    descriptionThis update for ImageMagick fixes several issues. These security issues were fixed : - CVE-2017-18027: Prevent memory leak vulnerability in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076051) - CVE-2017-18029: Prevent memory leak in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076021) - CVE-2017-17681: Prevent infinite loop in the function ReadPSDChannelZip in coders/psd.c, which allowed attackers to cause a denial of service (CPU exhaustion) via a crafted psd image file (bsc#1072901). - CVE-2017-18008: Prevent memory Leak in ReadPWPImage which allowed attackers to cause a denial of service via a PWP file (bsc#1074309). - CVE-2018-5685: Prevent infinite loop and application hang in the ReadBMPImage function. Remote attackers could leverage this vulnerability to cause a denial of service via an image file with a crafted bit-field mask value (bsc#1075939) - CVE-2017-11639: Prevent heap-based buffer over-read in the WriteCIPImage() function, related to the GetPixelLuma function in MagickCore/pixel-accessor.h (bsc#1050635) - CVE-2017-11525: Prevent memory consumption in the ReadCINImage function that allowed remote attackers to cause a denial of service (bsc#1050098) - CVE-2017-9262: The ReadJNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043353). - CVE-2017-9261: The ReadMNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043354). - CVE-2017-10995: The mng_get_long function in coders/png.c allowed remote attackers to cause a denial of service (heap-based buffer over-read and application crash) via a crafted MNG image (bsc#1047908). - CVE-2017-11539: Prevent memory leak in the ReadOnePNGImage() function in coders/png.c (bsc#1050037). - CVE-2017-11505: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050072). - CVE-2017-11526: The ReadOneMNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050100). - CVE-2017-11750: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (NULL pointer dereference) via a crafted file (bsc#1051442). - CVE-2017-12565: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052470). - CVE-2017-12676: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052708). - CVE-2017-12673: Prevent memory leak in the function ReadOneMNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052717). - CVE-2017-12671: Added NULL assignment in coders/png.c to prevent an invalid free in the function RelinquishMagickMemory in MagickCore/memory.c, which allowed attackers to cause a denial of service (bsc#1052721). - CVE-2017-12643: Prevent a memory exhaustion vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052768). - CVE-2017-12641: Prevent a memory leak vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052777). - CVE-2017-12640: Prevent an out-of-bounds read vulnerability in ReadOneMNGImage in coders/png.c (bsc#1052781). - CVE-2017-12935: The ReadMNGImage function in coders/png.c mishandled large MNG images, leading to an invalid memory read in the SetImageColorCallBack function in magick/image.c (bsc#1054600). - CVE-2017-13059: Prevent memory leak in the function WriteOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (WriteJNGImage memory consumption) via a crafted file (bsc#1055068). - CVE-2017-13147: Prevent allocation failure in the function ReadMNGImage in coders/png.c when a small MNG file has a MEND chunk with a large length value (bsc#1055374). - CVE-2017-13142: Added additional checks for short files to prevent a crafted PNG file from triggering a crash (bsc#1055455). - CVE-2017-13141: Prevent memory leak in ReadOnePNGImage in coders/png.c (bsc#1055456). - CVE-2017-14103: The ReadJNGImage and ReadOneJNGImage functions in coders/png.c did not properly manage image pointers after certain error conditions, which allowed remote attackers to conduct use-after-free attacks via a crafted file, related to a ReadMNGImage out-of-order CloseBlob call (bsc#1057000). - CVE-2017-14649: ReadOneJNGImage in coders/png.c did not properly validate JNG data, leading to a denial of service (assertion failure in magick/pixel_cache.c, and application crash) (bsc#1060162). - CVE-2017-15218: Prevent memory leak in ReadOneJNGImage in coders/png.c (bsc#1062752). - CVE-2017-17504: Prevent heap-based buffer over-read via a crafted file in Magick_png_read_raw_profile, related to ReadOneMNGImage (bsc#1072362). - CVE-2017-17884: Prevent memory leak in the function WriteOnePNGImage in coders/png.c, which allowed attackers to cause a denial of service via a crafted PNG image file (bsc#1074120). - CVE-2017-17879: Prevent heap-based buffer over-read in ReadOneMNGImage in coders/png.c, related to length calculation and caused by an off-by-one error (bsc#1074125). - CVE-2017-17914: Prevent crafted files to cause a large loop in ReadOneMNGImage (bsc#1074185). This update was imported from the SUSE:SLE-12:Update update project.
    last seen2020-06-05
    modified2018-02-08
    plugin id106668
    published2018-02-08
    reporterThis script is Copyright (C) 2018-2020 Tenable Network Security, Inc.
    sourcehttps://www.tenable.com/plugins/nessus/106668
    titleopenSUSE Security Update : ImageMagick (openSUSE-2018-145)
  • NASL familyDebian Local Security Checks
    NASL idDEBIAN_DLA-1785.NASL
    descriptionNumerous security vulnerabilities were fixed in Imagemagick. Various memory handling problems and cases of missing or incomplete input sanitizing may result in denial of service, memory or CPU exhaustion, information disclosure or potentially the execution of arbitrary code when a malformed image file is processed. For Debian 8
    last seen2020-06-01
    modified2020-06-02
    plugin id125093
    published2019-05-15
    reporterThis script is Copyright (C) 2019-2020 and is owned by Tenable, Inc. or an Affiliate thereof.
    sourcehttps://www.tenable.com/plugins/nessus/125093
    titleDebian DLA-1785-1 : imagemagick security update
  • NASL familySuSE Local Security Checks
    NASL idSUSE_SU-2018-0349-1.NASL
    descriptionThis update for ImageMagick fixes several issues. These security issues were fixed : - CVE-2017-18027: Prevent memory leak vulnerability in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076051) - CVE-2017-18029: Prevent memory leak in the function ReadMATImage which allowed remote attackers to cause a denial of service via a crafted file (bsc#1076021) - CVE-2017-17681: Prevent infinite loop in the function ReadPSDChannelZip in coders/psd.c, which allowed attackers to cause a denial of service (CPU exhaustion) via a crafted psd image file (bsc#1072901). - CVE-2017-18008: Prevent memory Leak in ReadPWPImage which allowed attackers to cause a denial of service via a PWP file (bsc#1074309). - CVE-2018-5685: Prevent infinite loop and application hang in the ReadBMPImage function. Remote attackers could leverage this vulnerability to cause a denial of service via an image file with a crafted bit-field mask value (bsc#1075939) - CVE-2017-11639: Prevent heap-based buffer over-read in the WriteCIPImage() function, related to the GetPixelLuma function in MagickCore/pixel-accessor.h (bsc#1050635) - CVE-2017-11525: Prevent memory consumption in the ReadCINImage function that allowed remote attackers to cause a denial of service (bsc#1050098) - CVE-2017-9262: The ReadJNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043353). - CVE-2017-9261: The ReadMNGImage function in coders/png.c allowed attackers to cause a denial of service (memory leak) via a crafted file (bsc#1043354). - CVE-2017-10995: The mng_get_long function in coders/png.c allowed remote attackers to cause a denial of service (heap-based buffer over-read and application crash) via a crafted MNG image (bsc#1047908). - CVE-2017-11539: Prevent memory leak in the ReadOnePNGImage() function in coders/png.c (bsc#1050037). - CVE-2017-11505: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050072). - CVE-2017-11526: The ReadOneMNGImage function in coders/png.c allowed remote attackers to cause a denial of service (large loop and CPU consumption) via a crafted file (bsc#1050100). - CVE-2017-11750: The ReadOneJNGImage function in coders/png.c allowed remote attackers to cause a denial of service (NULL pointer dereference) via a crafted file (bsc#1051442). - CVE-2017-12565: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052470). - CVE-2017-12676: Prevent memory leak in the function ReadOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052708). - CVE-2017-12673: Prevent memory leak in the function ReadOneMNGImage in coders/png.c, which allowed attackers to cause a denial of service (bsc#1052717). - CVE-2017-12671: Added NULL assignment in coders/png.c to prevent an invalid free in the function RelinquishMagickMemory in MagickCore/memory.c, which allowed attackers to cause a denial of service (bsc#1052721). - CVE-2017-12643: Prevent a memory exhaustion vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052768). - CVE-2017-12641: Prevent a memory leak vulnerability in ReadOneJNGImage in coders\png.c (bsc#1052777). - CVE-2017-12640: Prevent an out-of-bounds read vulnerability in ReadOneMNGImage in coders/png.c (bsc#1052781). - CVE-2017-12935: The ReadMNGImage function in coders/png.c mishandled large MNG images, leading to an invalid memory read in the SetImageColorCallBack function in magick/image.c (bsc#1054600). - CVE-2017-13059: Prevent memory leak in the function WriteOneJNGImage in coders/png.c, which allowed attackers to cause a denial of service (WriteJNGImage memory consumption) via a crafted file (bsc#1055068). - CVE-2017-13147: Prevent allocation failure in the function ReadMNGImage in coders/png.c when a small MNG file has a MEND chunk with a large length value (bsc#1055374). - CVE-2017-13142: Added additional checks for short files to prevent a crafted PNG file from triggering a crash (bsc#1055455). - CVE-2017-13141: Prevent memory leak in ReadOnePNGImage in coders/png.c (bsc#1055456). - CVE-2017-14103: The ReadJNGImage and ReadOneJNGImage functions in coders/png.c did not properly manage image pointers after certain error conditions, which allowed remote attackers to conduct use-after-free attacks via a crafted file, related to a ReadMNGImage out-of-order CloseBlob call (bsc#1057000). - CVE-2017-14649: ReadOneJNGImage in coders/png.c did not properly validate JNG data, leading to a denial of service (assertion failure in magick/pixel_cache.c, and application crash) (bsc#1060162). - CVE-2017-15218: Prevent memory leak in ReadOneJNGImage in coders/png.c (bsc#1062752). - CVE-2017-17504: Prevent heap-based buffer over-read via a crafted file in Magick_png_read_raw_profile, related to ReadOneMNGImage (bsc#1072362). - CVE-2017-17884: Prevent memory leak in the function WriteOnePNGImage in coders/png.c, which allowed attackers to cause a denial of service via a crafted PNG image file (bsc#1074120). - CVE-2017-17879: Prevent heap-based buffer over-read in ReadOneMNGImage in coders/png.c, related to length calculation and caused by an off-by-one error (bsc#1074125). - CVE-2017-17914: Prevent crafted files to cause a large loop in ReadOneMNGImage (bsc#1074185). Note that Tenable Network Security has extracted the preceding description block directly from the SUSE security advisory. Tenable has attempted to automatically clean and format it as much as possible without introducing additional issues.
    last seen2020-06-01
    modified2020-06-02
    plugin id106602
    published2018-02-05
    reporterThis script is Copyright (C) 2018-2019 and is owned by Tenable, Inc. or an Affiliate thereof.
    sourcehttps://www.tenable.com/plugins/nessus/106602
    titleSUSE SLED12 / SLES12 Security Update : ImageMagick (SUSE-SU-2018:0349-1)
  • NASL familyDebian Local Security Checks
    NASL idDEBIAN_DLA-1081.NASL
    descriptionThis updates fixes numerous vulnerabilities in imagemagick: Various memory handling problems and cases of missing or incomplete input sanitising may result in denial of service, memory disclosure or the execution of arbitrary code if malformed DPX, RLE, CIN, DIB, EPT, MAT, VST, PNG, JNG, MNG, DVJU, JPEG, TXT, PES, MPC, UIL, PS, PALM, CIP, TIFF, ICON, MAGICK, DCM, MSL, WMF, MIFF, PCX, SUN, PSD, MVG, PWP, PICT, PDB, SFW, or XCF files are processed. For Debian 7
    last seen2020-03-17
    modified2017-09-01
    plugin id102889
    published2017-09-01
    reporterThis script is Copyright (C) 2017-2020 and is owned by Tenable, Inc. or an Affiliate thereof.
    sourcehttps://www.tenable.com/plugins/nessus/102889
    titleDebian DLA-1081-1 : imagemagick security update