Easypak A.I CyberSecurity Scoring
15/07/2026
Access Monitoring Plan
Access Monitoring Plan
Easypak has 0.0% fewer incidents than the average of same-industry companies with at least one recorded incident.
Easypak has 2.91% fewer incidents than the average of all companies with at least one recorded incident.
Easypak reported 1 incidents this year: 0 cyber attacks, 1 ransomware, 0 vulnerabilities, 0 data breaches, compared to industry peers with at least 1 incident.
Packaging and Containers Manufacturing
Sealed Air is in business to protect, to solve critical packaging challenges, and to make our world better than we find it. Our automated packaging solutions promote a safer, more resilient, and less wasteful global food, fluids and liquids supply chain, enable e-commerce, and protect goods in transit from damage. Our globally recognized solution brands include CRYOVAC® food packaging, LIQUIBOX® fluids and liquids systems, SEALED AIR® protective packaging, AUTOBAG® automated packaging systems, BUBBLE WRAP® packaging, SEE Automation™ and prismiq™ digital packaging and printing. Our partnership with customers creates value through sustainable, automated, and digital packaging solutions, leveraging our industry-leading expertise in materials, automation systems, engineering and technology. In 2024, Sealed Air generated $5.4 billion in sales and has approximately 16,400 employees who serve customers in 117 countries/territories. To learn more, visit sealedair.com.
Graphic Packaging Holding Company (NYSE: GPK), headquartered in Atlanta, Georgia, designs and produces consumer packaging, made primarily from renewable or recycled materials. An industry leader in innovation, the Company is committed to reducing the environmental footprint of consumer packaging. Graphic Packaging operates a global network of design and manufacturing facilities serving the world's most widely recognized brands in food, beverage, foodservice, household, and other consumer products.
We’re here to make food safe and available. It’s why we provide advanced food production systems, from product creation and recipe testing to processing, filling, packaging, logistics, services and beyond. We support almost every food and beverage category with tailored solutions for category-specific needs. In collaboration with our customers and suppliers, driven by more than 24,000 dedicated employees worldwide, we protect food sustainably every day for hundreds of millions of people in more than 160 countries. Because we’re here to fulfil a purpose: We commit to making food safe and available, everywhere, and we promise to protect what’s good: food, people and the planet. LinkedIn Community Guidelines for Tetra Pak As part of our commitment to you we will endeavour to ensure that the content on this page is positive and respectful. In doing so we ask that you respect our LinkedIn page guidelines. These guidelines also apply to all company spokespeople. While we welcome any posts and comments, it’s important to note that postings to the Tetra Pak LinkedIn page, from other users, are not representative of the opinions of Tetra Pak, therefore do we not confirm their accuracy. Since we can't monitor every posting or conversation, we realise that the occasional objectionable post will pop up from time to time. We therefore reserve the right to remove posts or comments that are: - Abusive, defamatory, obscene, or offensive - Fraudulent, deceptive, misleading, or unlawful - Hateful in language targeting race/ethnicity, religion, gender, nationality, or political beliefs - In violation of any intellectual property right - Sales pitches or commercial solicitation - Not being relevant to the topic or content in the post that has been published - Spamming or link baiting
As a global leader in packaging solutions for consumer and healthcare products, our industry-leading innovation capabilities, global scale and technical expertise help our customers grow and meet the needs of millions of consumers every day. We accelerate the possible by redefining what can be done, constantly anticipating what our customers will need next, rethinking what is scientifically feasible and always helping our customers find the right solution to their challenges. Social Media Community Guidelines Thank you for being part of our online community and contributing to our discussions by sharing your voice. We’re happy to have you here and are committed to fostering a welcoming, respectful and engaging community. We encourage open conversation and do not pre-screen or moderate comments or messages before they are posted. However, we reserve the right to remove content that violates our community guidelines outlined below. - Off-topic or clearly misrepresents Amcor - Includes hate speech, discriminatory remarks or any attacks based on someone’s race, ethnicity, gender, religion, nationality or other personal characteristics - Misleading or deceptive content that promotes fraud or false information - Irrelevant to the conversation, including spam, promotional or trolling - Potentially violates copyright laws and/or any form of intellectual property rights - We appreciate your cooperation in maintaining a positive space for all. Thank you for helping us create a positive and respectful community.
Founded in 1899, Sonoco (NYSE: SON) is a global leader in value-added, sustainable metal and paper consumer and industrial packaging. The Company had net sales of $7.5 billion from continuing operations in 2025 and has approximately 22,000 employees working in 265 operations in 37 countries, serving some of the world’s best-known brands. Guided by our purpose of Better Packaging. Better Life., we strive to foster a culture of innovation, collaboration and excellence to provide solutions that better serve all our stakeholders and support a more sustainable future. Sonoco was proudly named one of the World’s Most Admired Companies by Fortune in 2026 as well as one of America’s Most Admired and Responsible Companies by Fortune and Newsweek and by USA TODAY’s list of America’s Climate Leaders. For more information on the Company, visit our website at www.sonoco.com. Our integrated packaging solutions help define brand personalities, create unique customer experiences and enhance the quality of products and the quality of life for people around the world. It’s all in the service of our purpose: Better Packaging. Better Life. Sonoco is committed to creating sustainable products, services and programs for our customers, employees and communities. Sonoco was listed as one of Fortune’s World’s Most Admired Companies for 2021 as well as being included in Barron’s 100 Most Sustainable Companies for the third year in a row. Learn more at Sonoco.com.
We are a global materials science and digital identification solutions company with locations in over 50 countries, and approximately 35,000 employees worldwide. We are Making Possible™ products and solutions that provide branding and information solutions that optimize labor and supply chain efficiency, reduce waste, advance sustainability, circularity and transparency, and better connect brands and consumers. We design and develop labeling and functional materials, radio frequency identification (RFID) inlays and tags, software applications that connect the physical and digital, and offerings that carry information that improves the customer experience. We lead in serving an array of industries worldwide — including home and personal care, apparel, general retail, e-commerce, logistics, food and grocery, pharmaceuticals and automotive.
Latest updates, reports, and threat intel affecting the global network.
tls_opt_dtls_peer_connection_id_value_get() in subsys/net/lib/sockets/sockets_tls.c, which handles getsockopt(SOL_TLS, TLS_DTLS_PEER_CID_VALUE), passed the caller-supplied optval directly to mbedtls_ssl_get_peer_cid() without verifying the buffer was at least MBEDTLS_SSL_CID_OUT_LEN_MAX (default 32) bytes. mbedtls_ssl_get_peer_cid() copies the peer-negotiated DTLS Connection ID (length 1..MBEDTLS_SSL_CID_OUT_LEN_MAX) into that buffer without a destination-size parameter, so a caller-supplied optlen smaller than the CID causes a write of up to 31 bytes past the buffer end. In CONFIG_USERSPACE builds the getsockopt syscall verifier (z_vrfy_zsock_getsockopt) bounce-buffers the user's optval into a kernel allocation of exactly optlen bytes (k_usermode_alloc_from_copy -> z_thread_malloc), so an unprivileged user thread that passes a small optlen on a connected DTLS socket with Connection ID enabled induces a kernel-heap buffer overflow, with the overflowing content being the remote peer's CID. The defect requires CONFIG_MBEDTLS_SSL_DTLS_CONNECTION_ID, an established DTLS session with a negotiated peer CID, and (for the kernel-crossing case) CONFIG_USERSPACE. Introduced when the TLS_DTLS_CID option was added (v3.5.0). The fix rejects callers whose optlen is below MBEDTLS_SSL_CID_OUT_LEN_MAX with -EINVAL.
react18-use is a React 19 use hook shim. Between 2026-05-19 01:07:01 and 2026-05-19 15:20:43, the default branch contained malicious commits 7b79148d1495a2505f9277da295a98cf176f4496 through 7b79148d1495a2505f9277da295a98cf176f4496 that executed remote attacker-controlled code on developer machines during `npm install`. The commits were removed by force-push, but local clones, forks, and direct-SHA URLs may still contain them, and `npm install` against an affected checkout will still execute the code today. The package was not published to npm. `src/install.js` was added and wired into the `postinstall` script. It fetched a JavaScript payload from an attacker-controlled HTTPS endpoint (configurable via an environment variable), disabled TLS verification, and evaluated the response as code with `require` available. Execution was deliberately skipped on CI and cloud/serverless environments, targeting developer workstations. The second-stage payload was attacker-hosted and cannot be reconstructed. Assume full compromise of anything reachable from a Node process with the user's permissions. Those who ran `npm install` against an affected checkout on a developer machine on or after 2026-05-19 01:07:01 should treat the machine as compromised, rotate every credential the machine could reach, audit account activity since 2026-05-19 01:07:01, and clean local clones.
The UpdateHub management subsystem (subsys/mgmt/updatehub/updatehub.c) drives every update operation through a single file-scope ctx structure that holds the CoAP block context, payload buffer, status code, socket, and a one-element poll-fd array fds[1]. Access to ctx was not serialized, and prepare_fds() wrote ctx.fds[ctx.nfds] and incremented ctx.nfds with no bounds check. Two independent paths mutate ctx concurrently: the background autohandler running on the system workqueue, and user-triggered operations reached through the updatehub run shell command, direct API calls, or — since the operations are exposed as syscalls — userspace threads. When a second flow enters prepare_fds() while ctx.nfds is already 1, the write lands one element past the array; by struct layout it overlaps the adjacent ctx.sock/ctx.nfds members. More broadly, the unsynchronized sharing lets two flows interleave connection setup and teardown, double-closing a socket descriptor or scribbling the shared buffers. The result is corruption of the update subsystem's internal state and denial of service of the firmware-update path; the out-of-bounds write is contained within the ctx structure and there is no demonstrated path to memory outside it or to code execution. Triggering requires a local actor able to invoke update operations (or, with CONFIG_USERSPACE, an unprivileged userspace thread) and to win a timing race against the background handler; remote peers cannot control the race timing. The fix serializes the entry points with a mutex and adds a bounds check to prepare_fds().
The UpdateHub over-the-air update client's start_coap_client() in subsys/mgmt/updatehub/updatehub.c leaks the CoAP/DTLS socket descriptor on its connection-setup failure paths. The shared error: cleanup gated socket closing on a ret > 0 flag, but ret was set to -1 immediately after the socket was created, so when zsock_setsockopt() (DTLS) or zsock_connect() subsequently failed the gate was false and cleanup_connection() was never called. The open descriptor in the global ctx.sock was then overwritten by the next attempt, permanently leaking it from the socket / net_context pool until reboot. The failing setup path is reached every time the OTA client tries to contact the UpdateHub server and the connection cannot be established — driven automatically by the periodic autohandler() poll (and on demand via the updatehub_probe()/updatehub_update() API or the updatehub run shell command). The DTLS handshake/connect outcome is influenceable by a network or on-path attacker who drops, resets, or otherwise disrupts traffic to the server, and also fails naturally whenever the server is unreachable. Each failed attempt permanently leaks one descriptor; once the shared socket pool is exhausted, networking degrades device-wide until the device is rebooted, a denial-of-service condition. Severity is low because the leak rate is bounded by the configured OTA poll interval (default once per 24 hours), the effect is gradual and recovered by reboot, and only builds with the UpdateHub client enabled are affected. There is no memory-corruption, information-disclosure, or authentication impact.
Certain web interface components in affected TP-Link Aginet devices do not validate and sanitize user-supplied input properly before passing it to system-level command execution functions. An authenticated adjacent attacker may inject specially crafted input to execute arbitrary operation system commands with elevated privileges. Successful exploitation may allow execution of arbitrary system commands, potentially leading to full device compromise.
curl -i -X GET 'https://api.rankiteo.com/underwriter-getcompany-history?
linkedin_id=axa' -H 'apikey: YOUR_API_KEY_HERE'
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