Comparison Overview
Wonder

Wonder
150 Greenwich St, New York, 10007, US
Last Update: 01/04/2026
Wonder is the mealtime platform built to satisfy every craving without compromise. With options including dine-in, delivery, pickup, and meal kits, Wonder makes every dining experience effortless. With the Wonder app, you can combine hundreds of dishes from the menus of...

Restaurant Associates
132 W 31st Street, Suite 601, New York, New York, US, 10001
Last Update: 01/04/2026
Restaurant Associates is a chef-driven hospitality company known for elevating culinary and brand experiences for our clients and guests across the country. Our lines of business include restaurants, workplace, higher education, cultural centers, and event catering. ...
Compliance Ranges Comparison

Wonder







Restaurant Associates






Benchmark & Cyber Underwriting Signals
Incidents vs Food & Beverages Industry Avg (This Year)
No incidents recorded for Wonder in 2026.
Incidents vs Food & Beverages Industry Avg (This Year)
No incidents recorded for Restaurant Associates in 2026.
Incident History - Wonder (X = Date, Y = Severity)
Wonder cyber incidents detection timeline including parent company and subsidiaries.
Incident History - Restaurant Associates (X = Date, Y = Severity)
Restaurant Associates cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

Wonder

Restaurant Associates
FAQ
Latest Global CVEs
Uncontrolled Resource Consumption (CWE-400) in Kibana can lead to denial of service via Excessive Allocation (CAPEC-130). A low-privileged authenticated user can send a specially crafted request to a Kibana machine learning feature, causing the server to exhaust available memory and become unavailable to all users.
Uncontrolled Resource Consumption (CWE-400) in Kibana can lead to denial of service via Excessive Allocation (CAPEC-130). An authenticated attacker with low-privilege access can trigger a denial of service condition in Kibana by sending a specially crafted, oversized request payload. Processing this user-supplied input requires resource-intensive memory allocation that can exhaust the available heap memory in the Kibana process, causing it to crash and become unavailable to all users.
Authorization Bypass Through User-Controlled Key (CWE-639) in Kibana can lead to information disclosure via user-supplied identifiers that reference scheduled query result data from Kibana Spaces the requester is not authorized to access.
Incorrect Authorization (CWE-863) in Kibana can lead to integrity compromise of Machine Learning audit and notification records via Accessing Functionality Not Properly Constrained by ACLs (CAPEC-1). A vulnerability exists in Kibana's Machine Learning functionality where a Machine Learning management endpoint performs an insufficient authorization check. The endpoint validates only a coarse privilege level but does not verify that the requesting user has access to the specific Machine Learning job or notification resources provided in the request. As a result, a low-privileged user with Machine Learning access in any Kibana space can manipulate Machine Learning audit and notification records for arbitrary jobs—including jobs in other spaces or belonging to other users—by leveraging Kibana's internally elevated credentials to write to restricted Machine Learning system indices that the user cannot access directly.
Uncontrolled Recursion (CWE-674) in Elasticsearch can lead to denial of service via a specially crafted search request submitted by a low-privileged authenticated user. A user with read-level index access can submit a request that triggers unbounded recursive processing within the Elasticsearch query evaluation component, causing a fatal error that terminates the affected node. In single-node deployments, this results in complete service outage; in multi-node clusters, it causes repeated node restarts and sustained availability degradation.