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Comparison Overview

Daiichi Sankyo USDaiichi Sankyo US
VS
Hikma PharmaceuticalsHikma Pharmaceuticals
Daiichi Sankyo US

Daiichi Sankyo US

211 Mt. Airy Road Basking Ridge, Basking Ridge, 07920, US

Last Update: 31/03/2026

View Profile
Between 800 and 849
https://daiichisankyo.us/
804/1000Good

At Daiichi Sankyo, we create essential medicine for longer, better lives. By uniting cutting edge science and technology with a genuine interest in people, we develop high quality, life changing solutions for the patients of today and tomorrow with great care and unwave...

NAICS:3254
NAICS Definition:Pharmaceutical and Medicine Manufacturing
Employees:4,317
Subsidiaries:0
12-month incidents
0
Known data breaches
0
Attack type number
0
Hikma Pharmaceuticals

Hikma Pharmaceuticals

1 New Burlington Place, London, W1S 2HR, GB

Last Update: 03/04/2026

View Profile
Between 750 and 799
http://www.hikma.com
767/1000Fair

For almost 50 years, we’ve been creating high-quality medicines and making them accessible to the people who need them. We are a trusted, reliable partner and dependable source of over 800* high-quality generic, specialty and branded pharmaceutical products that hospita...

NAICS:3254
NAICS Definition:Pharmaceutical and Medicine Manufacturing
Employees:10,252
Subsidiaries:0
12-month incidents
0
Known data breaches
0
Attack type number
0

Compliance Ranges Comparison

Based On Specific Ai Models Category
Daiichi Sankyo US

Daiichi Sankyo US

-
ISO 27001Not verified
ISO 27001
-
SOC2 Type 1Not verified
SOC2 Type 1
-
SOC2 Type 2Not verified
SOC2 Type 2
-
GDPRNot verified
GDPR
-
PCI DSSNot verified
PCI DSS
-
HIPAANot verified
HIPAA
Hikma Pharmaceuticals

Hikma Pharmaceuticals

-
ISO 27001Not verified
ISO 27001
-
SOC2 Type 1Not verified
SOC2 Type 1
-
SOC2 Type 2Not verified
SOC2 Type 2
-
GDPRNot verified
GDPR
-
PCI DSSNot verified
PCI DSS
-
HIPAANot verified
HIPAA

Benchmark & Cyber Underwriting Signals

Incidents vs Pharmaceutical Manufacturing Industry Avg (This Year)

No incidents recorded for Daiichi Sankyo US in 2026.

Incidents

Incidents vs Pharmaceutical Manufacturing Industry Avg (This Year)

No incidents recorded for Hikma Pharmaceuticals in 2026.

Incidents

Incident History - Daiichi Sankyo US (X = Date, Y = Severity)

Daiichi Sankyo US cyber incidents detection timeline including parent company and subsidiaries.

No timeline data available
R - Ransomware
C - Cyber Attack
D - Data Breach
V - Vulnerability

Incident History - Hikma Pharmaceuticals (X = Date, Y = Severity)

Hikma Pharmaceuticals cyber incidents detection timeline including parent company and subsidiaries.

No timeline data available
R - Ransomware
C - Cyber Attack
D - Data Breach
V - Vulnerability

Notable Incidents

Last Cyber / HR Incidents / Global...
Daiichi Sankyo US

Daiichi Sankyo US

Incidents
No explicit notable incidents reported.
Hikma Pharmaceuticals

Hikma Pharmaceuticals

Incidents
No explicit notable incidents reported.

FAQ

Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has the best AI Cybersecurity Score ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced more cyber incidents in the past ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced more cyber incidents this year ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced at least one ransomware attack ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced at least one data breach ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced at least one targeted cyberattack ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has experienced at least one vulnerability ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one holds the most compliance certifications ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one holds the fewest compliance certifications ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has the most subsidiaries ?
Between Daiichi Sankyo US company and Hikma Pharmaceuticals company, which one has the largest number of employees ?
Between Daiichi Sankyo US and Hikma Pharmaceuticals, which company holds both SOC 2 Type 1 certifications ?
Between Daiichi Sankyo US and Hikma Pharmaceuticals, which company holds both SOC 2 Type 2 certifications ?
Which company is ISO 27001 certified - Daiichi Sankyo US or Hikma Pharmaceuticals ?
Which company is PCI DSS compliant - Daiichi Sankyo US or Hikma Pharmaceuticals ?
Between Daiichi Sankyo US and Hikma Pharmaceuticals, which company complies with HIPAA regulations for healthcare data ?
Between Daiichi Sankyo US and Hikma Pharmaceuticals, which company complies with GDPR requirements ?

Latest Global CVEs

CVE-2026-52880
SUMMARY

Klever-Go is the Go implementation of the Klever blockchain protocol. Versions from 1.7.14 through 1.7.17 are vulnerable to a remotely triggerable denial of service. Both REST APIs are started with the Gin Engine.Run convenience method, which serves requests through Go's default HTTP server with no ReadHeaderTimeout, ReadTimeout, or MaxHeaderBytes configured. As a result, incoming connections that never complete their request headers are held open indefinitely. When a REST listener is reachable beyond localhost through the documented all-interface bind or a Docker port-publish deployment, a single unauthenticated client can open many slow-header connections and hold them open until server file descriptors are exhausted, preventing the API from accepting new connections. This renders the REST API unavailable to legitimate clients. This issue is fixed in version 1.7.18.

PUBLISHED
Date2026-08-07
UPDATED
Date2026-08-07
RISK INFORMATION (Score: 7.5)
CVSS3
Base Score: 7.5
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
3.9
CVE-2026-52879
SUMMARY

Klever-Go is the Go implementation of the Klever blockchain protocol. In versions 1.7.14 through 1.7.17, the direct-message ingress handler spawns a new goroutine for every incoming direct message before the processor-level antiflood layer makes any admission decision, with no semaphore, throttler, or bound on the number of concurrent in-flight spawns. Because the antiflood check runs inside the spawned goroutine rather than before it, a single connected peer can open a direct-send stream and send a stream of well-formed messages to force unbounded goroutine creation, where each goroutine allocates its own stack and holds a message reference until processing completes, adding scheduler and garbage-collection pressure faster than the runtime can drain it. This lets one peer degrade the node's availability and its ability to process legitimate traffic, resulting in a remotely triggerable denial of service. The issue is fixed in 1.7.18.

PUBLISHED
Date2026-08-07
UPDATED
Date2026-08-07
RISK INFORMATION (Score: 7.5)
CVSS3
Base Score: 7.5
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
3.9
CVE-2026-52878
SUMMARY

Klever-Go is the Go implementation of the Klever blockchain protocol. Versions 1.7.14 through 1.7.17 are vulnerable to a nil-pointer panic triggered by a protobuf Transaction whose embedded RawData sub-message is omitted. This omission causes RawData to decode to nil. Every transaction gossiped on the Klever-Go P2P network is decoded and validated synchronously inside the libp2p pubsub topic-validator callback, where txVersionChecker.CheckTxVersion dereferences tx.RawData.Version with no nil check. Because the libp2p pubsub callback, the underlying go-libp2p-pubsub validation worker, and Klever's own network/p2p layer install no recover(), the panic propagates and crashes the entire node process. The attacker payload is a 3-byte protobuf message; no validator key, stake, funds, or on-chain account is required, and delivery aimed at enough of the BLS validator set can halt block production, resulting in a chain halt. This issue has been fixed in version 1.7.18.

PUBLISHED
Date2026-08-07
UPDATED
Date2026-08-07
RISK INFORMATION (Score: 7.5)
CVSS3
Base Score: 7.5
Complexity: LOW
CVSS:3.1/AV:N/AC:L/PR:N/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
3.9
CVE-2026-49343
SUMMARY

Klever-Go is the Go implementation of the Klever blockchain protocol. In versions prior to 1.7.18, the account-data trie syncers are vulnerable to a resource-exhaustion flaw that leaks bounded throttler slots on error paths. In syncDataTrie() (in both userAccountsSyncer.go and kappAccountsSyncer.go), StartProcessing() reserves a slot from the NumGoRoutinesThrottler, but the corresponding EndProcessing() is only called on the success path and on the duplicate-root early return. As a result, any error from trie.NewTrie(), trie.NewTrieSyncer(), or trieSyncer.StartSyncing() (including the network-dependent timeout path) permanently consumes one slot for the lifetime of the throttler. An attacker who can repeatedly cause trie-node sync failures or timeouts during bootstrap can exhaust the bounded throttler, after which further account-data trie syncs stop making progress and SyncAccounts() returns a timeout. Because epoch bootstrap in syncUserAccountsState() and syncKappAccountsState() aborts on any such error, this causes bootstrap to fail, a core availability issue affecting fresh, restarting, or resyncing nodes and validators. This issue is fixed in version 1.7.18.

PUBLISHED
Date2026-08-07
UPDATED
Date2026-08-07
RISK INFORMATION (Score: 5.9)
CVSS3
Base Score: 5.9
Complexity: HIGH
CVSS:3.1/AV:N/AC:H/PR:N/UI:N/S:U/C:N/I:N/A:H
IMPACT SCORE
3.6
EXPLOITABILITY
2.2
CVE-2026-48122
SUMMARY

Ruby LSP is an implementation of the language server protocol for Ruby. Several workspace-level settings in the Ruby LSP VS Code extension prior to version 0.10.4 could override the path to the Ruby executable, the version manager executables, or the Bundler `Gemfile` used at startup. A malicious repository containing a `.vscode/settings.json` could set these values to attacker-controlled targets. Opening and trusting the repository would then execute code with the privileges of the developer. The Ruby LSP gem and clients of the language server in other editors are not affected. Version 0.10.4 of the Ruby LSP VS Code extension fixes the issue.

PUBLISHED
Date2026-08-07
UPDATED
Date2026-08-07
RISK INFORMATION (Score: )
CVSS4
Base Score: 5.4
Complexity: LOW
CVSS:4.0/AV:L/AC:L/AT:P/PR:L/UI:A/VC:H/VI:H/VA:H/SC:N/SI:N/SA:N/E:X/CR:X/IR:X/AR:X/MAV:X/MAC:X/MAT:X/MPR:X/MUI:X/MVC:X/MVI:X/MVA:X/MSC:X/MSI:X/MSA:X/S:X/AU:X/R:X/V:X/RE:X/U:X
IMPACT SCORE
NA
EXPLOITABILITY
NA