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GHSA-x287-5c68-36wp
Summary
OpenWISP IPAM is multi-tenant: every Subnet belongs to an organization, and API access is scoped to the organizations a user belongs to. The CSV export endpoint, ExportSubnetView, omits the organization-membership check that its import sibling performs, and loads the subnet by primary key with no organization filter. An authenticated user who is a member of one organization can therefore export a subnet belonging to another organization — its name, CIDR, organization slug and every IP address in it — by issuing an export request for that subnet's id.
Details
ImportSubnetView.post() authorizes first, by calling assert_organization_permissions():
# openwisp_ipam/api/views.py (ImportSubnetView)
def post(self, request, *args, **kwargs):
self.assert_organization_permissions(request) # <-- org-membership check
file = request.FILES["csvfile"]
...
self.subnet_model().import_csv(file)
# openwisp_ipam/api/utils.py:16 (AuthorizeCSVImport)
def assert_organization_permissions(self, request):
if request.user.is_superuser:
return
# ... otherwise verifies the user belongs to the target organization
ExportSubnetView.post() performs no such check. It is declared with IpAddressOrgMixin (whose organization scoping lives in get_queryset()), but its overridden post() never calls get_queryset() or assert_organization_permissions() — it goes straight to export_csv():
# openwisp_ipam/api/views.py:246
class ExportSubnetView(ProtectedAPIMixin, IpAddressOrgMixin, CreateAPIView):
subnet_model = Subnet
def post(self, request, *args, **kwargs):
response = HttpResponse(content_type="text/csv")
response["Content-Disposition"] = 'attachment; filename="ip_address.csv"'
writer = csv.writer(response)
self.subnet_model().export_csv(kwargs["subnet_id"], writer) # no org check reached
return response
export_csv() resolves the subnet by primary key with no organization filter and writes its full contents:
# openwisp_ipam/base/models.py:242
def export_csv(self, subnet_id, writer):
ipaddress_model = load_model("openwisp_ipam", "IpAddress")
subnet = load_model("openwisp_ipam", "Subnet").objects.get(pk=subnet_id) # any org's subnet
# ... writes subnet name, CIDR, organization slug, and every IpAddress (address, description, …)
The subnet_id is a random UUIDField (migrations/0001_initial.py: models.UUIDField(default=uuid.uuid4)), so an attacker must obtain the target subnet's id rather than enumerate it — hence Attack Complexity: High. This is a genuine missing-authorization flaw regardless: the import/export asymmetry shows the check was intended, and subnet ids routinely appear in URLs, logs, shared CSV exports and support tickets, from which a cross-organization id can leak.
The same single-object pattern (resolving the subnet by subnet_id outside the org-scoped queryset) also appears in AvailableIpView.get() and RequestIPView.post() (the latter additionally writes an IP into the target subnet); these are worth reviewing alongside the export fix.
Proof of concept
Prerequisites: an OpenWISP IPAM instance with two organizations OrgA and OrgB; a normal (non-superuser) user who is a member of OrgB only; a subnet in OrgA whose id S is known to the attacker (e.g. leaked via a URL/log/shared export).
- As the OrgB user, authenticate to the API.
POST /api/v1/subnet/{S}/export/(OrgA's subnet id).- Result: a CSV download containing OrgA's subnet name, CIDR, organization slug and every IP address in it — even though the user belongs only to OrgB.
- Control (proves it's an oversight): the corresponding import endpoint
POST /api/v1/import-subnet/with OrgA data is rejected for the same user byassert_organization_permissions().
(Reported from a first-hand source review of the current master: the missing check in ExportSubnetView.post, the guarded ImportSubnetView.post sibling, the un-filtered Subnet.objects.get(pk=…) in export_csv, and the UUIDField primary key were each verified by hand. The fix is a one-line authorization call, so a maintainer can confirm trivially with two organizations.)
Impact
A member of one organization can read the complete contents of another organization's subnet — its IP allocation inventory (addresses, descriptions, organization slug, CIDR). In a WISP / network-management deployment this discloses another tenant's network topology and host inventory. Exploitation requires obtaining the target subnet's UUID (AC:H), but the authorization check is missing outright. (RequestIPView shares the pattern and additionally allows writing an IP into another organization's subnet — a separate integrity concern for the maintainer to confirm.)
Remediation
Add the organization-membership check to ExportSubnetView.post() — call self.assert_organization_permissions(request) (as ImportSubnetView does), or resolve the subnet through the org-scoped get_queryset() / get_object() and return 404 when it isn't in the caller's organizations. Apply the same to AvailableIpView and RequestIPView.
The vulnerability can be exploited over the network without needing physical access. It is difficult for an attacker to exploit this vulnerability and may require special conditions. An attacker needs basic access or low-level privileges. No user interaction is needed for the attacker to exploit this vulnerability. The impact is confined to the system where the vulnerability exists. There is a high impact on the confidentiality of the information.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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