Hackers are scanning the web for vulnerable Fortinet, Pulse Secure installs
Vulnerabilities mentionedAll →
| CVE | Vulnerability | CVSS | EPSS | Flags | Affected | Exposure | Published |
|---|---|---|---|---|---|---|---|
| CVE-2018-13379 | Unauthenticated Path Traversal in Fortinet FortiOS SSL VPN CVE-2018-13379 is a path traversal flaw (CWE-22) in the Fortinet FortiOS SSL VPN web portal that allows an unauthenticated attacker to download FortiOS system files via specially crafted HTTP resource requests. By traversing directories through crafted requests to the exposed web portal, the attacker can retrieve sensitive files, a technique publicly documented as yielding the SSL VPN session file containing usernames and passwords in plaintext. Any organization running the SSL VPN web portal on a FortiGate appliance is affected, and risk is highest where the portal is directly reachable from the internet. The flaw is confirmed in the wild: it was added to the CISA KEV catalog on 2021-11-03 with known ransomware use, and EPSS assigns it a 100% probability of exploitation within 30 days. No public PoC is listed in the provided data, but credential theft tied to this bug has been widely reused by threat actors. Do: Apply the patched FortiOS release per Fortinet's vendor advisory immediately, as this is a CISA KEV required action; if the fixed version is not known from this data, follow Fortinet's FG-IR-18-384 advisory for the correct upgrade path. Rotate SSL VPN credentials and review VPN access logs for path-traversal requests, since successful exploitation exposes plaintext session credentials, and restrict SSL VPN portal exposure to trusted sources where possible. | 9.8 | 100% | KEV ransomware |
| mass≈500,000 internet-exposed FortiOS SSL VPN portals (Fortinet cited ~480,000 affected devices) | |
| CVE-2019-11510 | Unauthenticated Arbitrary File Read in Ivanti Pulse Connect Secure VPN Ivanti Pulse Connect Secure, an enterprise SSL VPN appliance, contains an arbitrary file read vulnerability (CWE-22, path traversal) that requires no authentication. An unauthenticated remote attacker with network access to the appliance over HTTPS can send a specially crafted URI containing traversal sequences to read arbitrary files from the device. The attacker gains access to sensitive appliance files, potentially including configuration or credential material useful for further compromise, and CISA records known ransomware use of this flaw. Any organization running Pulse Connect Secure, especially gateways exposed to the internet for remote access, is affected. Exploitation is established: CISA added the flaw to its Known Exploited Vulnerabilities catalog on 2021-11-03 with known ransomware use, EPSS assigns a 100% probability of exploitation in the next 30 days, and no public PoC is known. Do: Apply updates per Ivanti's instructions, the required action in the CISA KEV entry, prioritizing internet-facing Pulse Connect Secure gateways, and consult the vendor advisory for the applicable fixed release since no version range is provided here. Where patching is not immediate, restrict HTTPS access to the appliance and hunt for signs of exploitation (unexpected file reads, anomalous VPN logins or sessions, and follow-on ransomware activity), as CISA reports known ransomware use. | 10.0 | 100% | KEV ransomware PoC ×2 |
| largeTens of thousands of internet-exposed gateways (order of 10,000-100,000 systems; each typically serves hundreds of VPN users, so potentially millions of users) |
Full article344 words · extracted from securityaffairs.com · click to collapse

Hackers are exploiting recently disclosed flaws in enterprise virtual private network (VPN) products from Fortinet and Pulse Secure.
The popular cybersecurity expert Kevin Beaumont has observed threat actors attempting to exploit the CVE-2018-13379 in the FortiOS SSL VPN web portal and CVE-2019-11510 flaw in Pulse Connect Secure.
https://twitter.com/GossiTheDog/status/1164536461665996800
The CVE-2018-13379 is a path traversal vulnerability in the FortiOS SSL VPN web portal that could be exploited by an unauthenticated attacker to download FortiOS system files.
“A path traversal vulnerability in the FortiOS SSL VPN web portal may allow an unauthenticated attacker to download FortiOS system files through specially crafted HTTP resource requests.” reads the security advisory.
The CVE-2019-11510 flaw in Pulse Connect Secure is a critical arbitrary file read vulnerability.
“Unauthenticated remote attacker with network access via HTTPS can send a specially crafted URI to perform an arbitrary file reading vulnerability.” reads the advisory.
The vulnerabilities were first reported in July by researchers Orange Tsai and Meh Chang from DEVCORE that found several flaws in Fortinet, Palo Alto Networks and Pulse Secure products. The issues could be exploited by threat actors to access corporate networks and steal sensitive documents.
The security duo shared the results of their analysis at the Black Hat and DEFCON hacking conferences and proof-of-concept (PoC) exploits were publicly disclosed after their talks.
Even if the impacted vendors have released security advisories for the vulnerabilities discovered by the experts, attackers are attempting to exploit them in attacks in the wild.
https://twitter.com/GossiTheDog/status/1164601729347981312
Beaumont pointed out that an attacker could exploit the CVE-2018-13379 flaw to obtain administrator credentials in plain text, using the binaryedge online scanner he also found nearly half a million IP addresses associated with Fortinet devices exposed online.
Beaumont detected scanning activity aimed at vulnerable Fortinet systems on August 21, while he spotted threat actors targeting Pulse Secure systems on August 22.
Clearly, it is important that admins will apply security patches released by vendors as soon as possible to mitigate possible attacks.
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(SecurityAffairs – Pulse Security Products, hacking)
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Text extracted automatically; images, tables and formatting may be missing. Original: https://securityaffairs.com/90264/hacking/fortinet-pulse-secure-products-flaws.html