Comparison Overview
Sei Brasil (Sumitomo Electric Group Company)

Sei Brasil (Sumitomo Electric Group Company)
Avenida Victor Andrew, 1209, Sorocaba, 18086-390, BR
Last Update: 01/04/2026
For over 30 years present in the brazilian market of telecommunications, SUMITOMO ELETRIC INDUSTRIES now has a manufacturing unit, SEI BRASIL Soluções Ópticas, in the city of Sorocaba - SP, for the manufacture of optical fiber cables and supply of solutions for FTTH net...

Dabur India Limited
Kaushambi, Sahibabad, Ghaziabad, Uttar Pradesh, IN, 201010
Last Update: 13/09/2026
We are Dabur, an Indian Transnational offering the best nature-based solutions to provide holistic Health & Well-Being to households in more than 120 markets spanning Asia, Europe and The US. A world leader in Ayurveda, we are a family of over 7,000 individuals continuo...
Compliance Ranges Comparison

Sei Brasil (Sumitomo Electric Group Company)







Dabur India Limited






Benchmark & Cyber Underwriting Signals
Incidents vs Manufacturing Industry Avg (This Year)
No incidents recorded for Sei Brasil (Sumitomo Electric Group Company) in 2026.
Incidents vs Manufacturing Industry Avg (This Year)
No incidents recorded for Dabur India Limited in 2026.
Incident History - Sei Brasil (Sumitomo Electric Group Company) (X = Date, Y = Severity)
Sei Brasil (Sumitomo Electric Group Company) cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Dabur India Limited (X = Date, Y = Severity)
Dabur India Limited cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Sei Brasil (Sumitomo Electric Group Company)

Dabur India Limited
FAQ
Latest Global CVEs
A vulnerability was determined in xuxueli xxl-job up to 3.5.0. The impacted element is an unknown function of the file /jobgroup/insert. This manipulation of the argument Name causes cross site scripting. The attack can be initiated remotely. The exploit has been publicly disclosed and may be utilized. The vendor was contacted early about this disclosure but did not respond in any way.
A vulnerability was found in Moore Threads MTT S80 Driver Package 340.150. The affected element is the function sub_140006F0C in the library mtdispkm64.sys of the component IOCTL Handler. The manipulation results in improper privilege management. Attacking locally is a requirement. The vendor was contacted early about this disclosure but did not respond in any way.
vLLM Mooncake connector through 0.29.0 fails to properly manage GPU KV cache block ownership when concurrent child requests share a single transfer ID in prefill/decode disaggregated deployments. Attackers can trigger GPU memory exhaustion by submitting completion requests with multiple prompts, causing orphaned KV cache blocks to accumulate until process restart and eventually preventing legitimate requests from executing.
- https://github.com/vllm-project/vllm
- https://github.com/vllm-project/vllm/blob/v0.29.0/vllm/distributed/kv_transfer/kv_connector/v1/mooncake/mooncake_connector.py#L1978-L1989
- https://github.com/vllm-project/vllm/pull/49796
- https://www.vulncheck.com/advisories/vllm-through-0.29.0-gpu-kv-cache-leak-via-mooncake-transfer-id-collision
vLLM through 0.29.0 fails to validate the tp_size parameter in kv_transfer_params on OpenAI-compatible completion endpoints, allowing attackers to allocate unbounded memory. Attackers can supply arbitrary tp_size values in prefill/decode disaggregated deployments to exhaust memory and trigger kernel OOM-kill of the decode worker process.
- https://github.com/vllm-project/vllm
- https://github.com/vllm-project/vllm/blob/v0.29.0/vllm/distributed/kv_transfer/kv_connector/utils.py#L569-L573
- https://github.com/vllm-project/vllm/blob/v0.29.0/vllm/distributed/kv_transfer/kv_connector/v1/nixl/metadata.py#L277
- https://github.com/vllm-project/vllm/pull/51137
- https://www.vulncheck.com/advisories/vllm-through-0.29.0-memory-exhaustion-via-unvalidated-nixl-tp-size
vLLM through 0.29.0 contains a resource exhaustion vulnerability in MooncakeConnector where rejected prefill requests create ownerless transfer placeholders that are never reclaimed. Attackers can send rejected requests to exhaust sender task pools, causing valid requests to be delayed by up to 480 seconds while health checks continue returning success.
- https://github.com/vllm-project/vllm
- https://github.com/vllm-project/vllm/blob/v0.29.0/vllm/distributed/kv_transfer/kv_connector/v1/mooncake/mooncake_connector.py#L1234-L1242
- https://github.com/vllm-project/vllm/pull/51236
- https://www.vulncheck.com/advisories/vllm-through-0.29.0-resource-exhaustion-via-ownerless-mooncake-transfer-placeholders