Update dependency Werkzeug to v3 [SECURITY] #81
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This PR contains the following updates:
==0.16.1
->==3.0.6
GitHub Vulnerability Alerts
CVE-2023-23934
Browsers may allow "nameless" cookies that look like
=value
instead ofkey=value
. A vulnerable browser may allow a compromised application on an adjacent subdomain to exploit this to set a cookie like=__Host-test=bad
for another subdomain.Werkzeug <= 2.2.2 will parse the cookie
=__Host-test=bad
as__Host-test=bad
. If a Werkzeug application is running next to a vulnerable or malicious subdomain which sets such a cookie using a vulnerable browser, the Werkzeug application will see the bad cookie value but the valid cookie key.CVE-2023-25577
Werkzeug's multipart form data parser will parse an unlimited number of parts, including file parts. Parts can be a small amount of bytes, but each requires CPU time to parse and may use more memory as Python data. If a request can be made to an endpoint that accesses
request.data
,request.form
,request.files
, orrequest.get_data(parse_form_data=False)
, it can cause unexpectedly high resource usage.This allows an attacker to cause a denial of service by sending crafted multipart data to an endpoint that will parse it. The amount of CPU time required can block worker processes from handling legitimate requests. The amount of RAM required can trigger an out of memory kill of the process. Unlimited file parts can use up memory and file handles. If many concurrent requests are sent continuously, this can exhaust or kill all available workers.
CVE-2023-46136
Werkzeug multipart data parser needs to find a boundary that may be between consecutive chunks. That's why parsing is based on looking for newline characters. Unfortunately, code looking for partial boundary in the buffer is written inefficiently, so if we upload a file that starts with CR or LF and then is followed by megabytes of data without these characters: all of these bytes are appended chunk by chunk into internal bytearray and lookup for boundary is performed on growing buffer.
This allows an attacker to cause a denial of service by sending crafted multipart data to an endpoint that will parse it. The amount of CPU time required can block worker processes from handling legitimate requests. The amount of RAM required can trigger an out of memory kill of the process. If many concurrent requests are sent continuously, this can exhaust or kill all available workers.
CVE-2024-34069
The debugger in affected versions of Werkzeug can allow an attacker to execute code on a developer's machine under some circumstances. This requires the attacker to get the developer to interact with a domain and subdomain they control, and enter the debugger PIN, but if they are successful it allows access to the debugger even if it is only running on localhost. This also requires the attacker to guess a URL in the developer's application that will trigger the debugger.
CVE-2024-49766
On Python < 3.11 on Windows,
os.path.isabs()
does not catch UNC paths like//server/share
. Werkzeug'ssafe_join()
relies on this check, and so can produce a path that is not safe, potentially allowing unintended access to data. Applications using Python >= 3.11, or not using Windows, are not vulnerable.CVE-2024-49767
Applications using Werkzeug to parse
multipart/form-data
requests are vulnerable to resource exhaustion. A specially crafted form body can bypass theRequest.max_form_memory_size
setting.The
Request.max_content_length
setting, as well as resource limits provided by deployment software and platforms, are also available to limit the resources used during a request. This vulnerability does not affect those settings. All three types of limits should be considered and set appropriately when deploying an application.Configuration
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