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IPv4 address

31.12.75.113

Last fetched

31.12.75.113 is announced in 31.12.75.0/24 by CLOUDFLARESPECTRUM - Cloudflare London, LLC and geolocates to RU. 31.12.75.113 is listed by 1 threat feed; reconciled level LOW.

Threat posture

0.5threat score (procedure-native scale)

LOW

Listed by 1 threat feed.

Threat feeds listing this
1
Verdict coverage
malicious-evidenced
First seen on a feed
Wed, 26 Aug 2026 11:01:20 GMT
Last seen on a feed
Sun, 04 Oct 2026 20:53:06 GMT

Nutrition Label

WHISPER CANON · 31.12.75.113Routing diversity10.0/10Peering density1.2/10MOAS conflict✓ noneThreat-feed listings8.0/10WHOIS transparency—Resolver footprint—canon.whisper.security/ip/31.12.75.113

Attribution

Announced prefix
31.12.75.0/24
RIR-registered prefix
31.12.75.0/24
RPKI
not-found

Abuse contact

Report abuse from 31.12.75.113 to the address block's holder first and copy the announcing network. These are the abuse contacts WhisperGraph holds for the block and the network.

Address block
ipmagnat@yandex.ru
Network (AS209242)
abuse@cloudflare.com

Signals on the covering block

  • toxic-neighborhoodShares this address block with a disproportionate share of listed neighbours.
  • prefix-age-anomalyThis block's registration age is inconsistent with its routing history.

Anycast detection

This does not appear to be an anycast address on the three signals Canon evaluates: reverse DNS, announced-prefix width and the announcing network's peer count.

Reverse DNS

Geographic detail

City
Kaliningrad, RU
Country
RU
Dominant city of the prefix
Kaliningrad, RU

Threat-feed listings

Threat-feed evidence

History

Related pages

Pivot from 31.12.75.113 into the prefix, network and country that carry it.

Queries

This address's full card — routing attribution, reverse DNS and listed feeds.


MATCH (ip:IPV4 {name: $ip})
OPTIONAL MATCH (ip)-[:BELONGS_TO]->(rp:REGISTERED_PREFIX)
OPTIONAL MATCH (ip)-[:ANNOUNCED_BY]->(ap:ANNOUNCED_PREFIX)
OPTIONAL MATCH (a:ASN)-[:ROUTES]->(ap)
OPTIONAL MATCH (a)-[:HAS_NAME]->(an:ASN_NAME)
OPTIONAL MATCH (ip)-[:LOCATED_IN]->(city:CITY)
OPTIONAL MATCH (ip)-[:HAS_COUNTRY]->(ipc:COUNTRY)
WITH ip, rp, ap, a, an, city, ipc
LIMIT 10
WITH ip,
     collect(rp.name) AS registeredPrefixes,
     collect(rp.abuseEmail) AS registeredAbuseEmails,
     collect({prefix: ap.name, asn: a.name, network: an.name, isMoas: ap.isMoas, rpkiStatus: ap.rpkiStatus, isAnycast: ap.isAnycast, dominantCity: ap.dominantCity, abuseEmail: ap.abuseEmail, networkAbuseEmail: a.abuseEmail}) AS announcements,
     collect(city.name) AS cities,
     collect(ipc.name) AS countries,
     collect(a.name) AS announcerNames,
     head(collect(a)) AS primaryAsn,
     head(collect(ap)) AS primaryPrefix
OPTIONAL MATCH (primaryPrefix)-[:CONFLICTS_WITH]->(conflict:ASN)
WITH ip, registeredPrefixes, registeredAbuseEmails, announcements, cities, countries, announcerNames, primaryAsn,
     collect(conflict.name) AS conflictAsns
CALL { WITH primaryAsn MATCH (primaryAsn)-[:ROUTES]->(p:ANNOUNCED_PREFIX) RETURN count(p) AS asnPrefixCount }
CALL { WITH primaryAsn MATCH (primaryAsn)-[:BGP_NEIGHBOR]-(peer:ASN) RETURN count(peer) AS asnPeerCount }
RETURN ip.name AS name,
       ip.verdictLevel AS verdictLevel,
       ip.verdictScore AS verdictScore,
       ip.verdictBlocking AS verdictBlocking,
       ip.verdictCoverage AS verdictCoverage,
       ip.verdictAdvisory AS verdictAdvisory,
       ip.threatSources AS threatSources,
       ip.threatFirstSeen AS threatFirstSeen,
       ip.threatLastSeen AS threatLastSeen,
       ip.isTor AS isTor,
       ip.isVpn AS isVpn,
       ip.isProxy AS isProxy,
       ip.isC2 AS isC2,
       ip.isPhishing AS isPhishing,
       registeredPrefixes, registeredAbuseEmails, announcements, cities, countries, announcerNames, conflictAsns,
       asnPrefixCount, asnPeerCount
Run yourself →

Network context — Tor exit relays, attributed actors, and the covering blocks' signals, cloud region and vendor.


MATCH (ip:IPV4 {name: $ip})
OPTIONAL MATCH (ip)-[:OPERATES_EXIT_NODE]->(tor:TOR_RELAY)
WITH ip, count(tor) AS torRelays
OPTIONAL MATCH (ip)-[:ATTRIBUTED_TO]->(actor:ACTOR)
WITH ip, torRelays, collect(actor.name)[0..5] AS actors
OPTIONAL MATCH (ip)-[:BELONGS_TO]->(p:PREFIX)
WITH torRelays, actors, collect(p.name) AS coveringPrefixes
UNWIND (CASE WHEN size(coveringPrefixes) = 0 THEN [null] ELSE coveringPrefixes END) AS pn
OPTIONAL MATCH (cp:PREFIX {name: pn})
OPTIONAL MATCH (cp)-[:HAS_SIGNAL]->(sig:THREAT_SIGNAL_TYPE)
OPTIONAL MATCH (cp)-[:PREFIX_IN_REGION]->(reg:CLOUD_REGION)
OPTIONAL MATCH (cp)-[:DELEGATED_TO]->(v:VENDOR)
RETURN torRelays, actors,
       collect(sig.name) AS signals,
       collect(reg.name) AS regions,
       collect(v.name) AS vendors
Run yourself →

Or query Whisper from your own LLM workflow via the Whisper MCP server.