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Engineer's DNS Intelligence Report

web-hosting.com
9 Mar 2026, 15:41 UTC · 23.6s ·v26.35.32 · SHA-3-512: abfa✱✱✱✱ Verify
Recon ModeRecon Mode Snapshot Re-analyze New Domain
Footprint
DNS Security & Trust Posture
Risk Level: Medium Risk
3 protocols configured, 6 not configured Domain appears to be in deliberate DMARC monitoring phase with aggregate reporting enabled Why we go beyond letter grades
Analysis Confidence (ICD 203)
MODERATE 70/100
Resolver agreement is inconsistent for some protocols, limiting confidence. Data currency and system maturity are adequate.
Accuracy 66% Currency 75/100 Maturity verified
Limiting factor: Resolver agreement is low for this scan — some protocols returned inconsistent results across resolvers
Intelligence Currency
Data Currency: Adequate 75/100
ICuAE Details
Currentness Excellent TTL Compliance Excellent Completeness Degraded Source Credibility Excellent TTL Relevance Degraded
DNS data shows some aging or gaps — consider re-scanning for critical decisions

The following DNS record TTLs deviate from recommended values. Incorrect TTLs can cause caching issues, slow propagation, or unnecessary DNS traffic.

Record Type Observed TTL Typical TTL Severity Context
TXT 20 minutes (1200s) 1 hour (3600s) medium TXT TTL is below typical — observed 20 minutes (1200s), typical value is 1 hour (3600s). Short TTLs increase DNS query volume but enable faster propagation. If you are preparing for a migration or need rapid failover, this may be intentional (RFC 1035 §3.2.1). For steady-state production, consider 3600 seconds per NIST SP 800-53 SI-7 relevance guidance. Use the TTL Tuner for profile-specific recommendations.
A 1174s 1 hour (3600s) medium A TTL is below typical — observed 1174s, typical value is 1 hour (3600s). Short TTLs increase DNS query volume but enable faster propagation. If you are preparing for a migration or need rapid failover, this may be intentional (RFC 1035 §3.2.1). For steady-state production, consider 3600 seconds per NIST SP 800-53 SI-7 relevance guidance. Use the TTL Tuner for profile-specific recommendations.
MX 1170s 1 hour (3600s) medium MX TTL is below typical — observed 1170s, typical value is 1 hour (3600s). Short TTLs increase DNS query volume but enable faster propagation. If you are preparing for a migration or need rapid failover, this may be intentional (RFC 1035 §3.2.1). For steady-state production, consider 3600 seconds per NIST SP 800-53 SI-7 relevance guidance. Use the TTL Tuner for profile-specific recommendations.
SOA 6 hours (21600s) 1 hour (3600s) high SOA TTL is above typical — observed 6 hours (21600s), typical value is 1 hour (3600s). Long TTLs reduce DNS query volume but slow propagation when records change. Consider 3600 seconds for a balance of performance and flexibility per NIST SP 800-53 SI-7 relevance guidance.
NS 6 hours (21600s) 1 day (86400s) medium NS TTL is below typical — observed 6 hours (21600s), typical value is 1 day (86400s). Short TTLs increase DNS query volume but enable faster propagation. If you are preparing for a migration or need rapid failover, this may be intentional (RFC 1035 §3.2.1). For steady-state production, consider 86400 seconds per NIST SP 800-53 SI-7 relevance guidance. Use the TTL Tuner for profile-specific recommendations.

Big Picture Questions

  • How often do you actually change this record? If it hasn’t changed in months, a short TTL is generating unnecessary DNS queries without any benefit.
  • Are you preparing for a migration or IP change? Short TTLs make sense temporarily — but should be raised back to 1 hour (3600s) once the change is complete.
  • Every DNS lookup adds 20–150ms of latency. With a 60s TTL, returning visitors trigger a fresh lookup every minute. With 3600s, they get cached responses for an hour — faster page loads, no extra infrastructure needed.
  • Google runs A records at ~30s because they operate a global anycast network and need to steer traffic dynamically. For a typical website without that infrastructure, copying those TTLs increases query volume with zero upside.
Tune TTL for web-hosting.com
Reference: NIST SP 800-53 SI-7 (Information Integrity) · RFC 8767 (Serve Stale) · RFC 1035 §3.2.1 (TTL semantics) DNS provider detected: Namecheap — provider-specific RFC compliance notes are shown inline above where applicable.
Primary NS edns.registrar-servers.com
Serial 1772726002
Admin support.namecheap.com
Provider Namecheap
Timer Value RFC 1912 Range
Refresh86400s1,200–43,200s (20 min – 12 hrs)
Retry7200sFraction of Refresh
Expire3600000s1,209,600–2,419,200s (14–28 days)
Minimum (Neg. Cache)86400s300–86,400s (5 min – 1 day)
All SOA timer values are within RFC 1912 recommended ranges.
Email Spoofing
Partial
Brand Impersonation
Not Setup
DNS Tampering
Unsigned
Certificate Control
Open
Recommended
Move DMARC policy from 'none' to 'quarantine' or 'reject'
Monitoring
DMARC record has configuration warnings — review recommended
Configured
SPF, DMARC (with warnings), DKIM
Not Configured
MTA-STS, TLS-RPT, BIMI, DANE, DNSSEC, CAA
Priority Actions 5 total Achievable posture: Low Risk
High Upgrade DMARC from p=none

Your DMARC policy is monitor-only (p=none). Upgrade to p=quarantine or p=reject after reviewing reports to actively prevent spoofing.

A quarantine or reject policy instructs receivers to take action on failing mail.
FieldValue
TypeTXT
Host_dmarc.web-hosting.com (DMARC policy record)
Valuev=DMARC1; p=quarantine; rua=mailto:dmarc-reports@web-hosting.com
Medium Enable DNSSEC

DNSSEC is not enabled for this domain. DNSSEC provides cryptographic authentication of DNS responses, preventing cache poisoning and DNS spoofing attacks.

Low Add CAA Records

CAA records specify which Certificate Authorities may issue certificates for your domain, reducing the risk of unauthorized certificate issuance.

CAA constrains which CAs can issue certificates for this domain.
FieldValue
TypeCAA
Hostweb-hosting.com (root of domain — adjust CA to match your provider)
Value0 issue "letsencrypt.org"
Low Add TLS-RPT Reporting

TLS-RPT (TLS Reporting) sends you reports about TLS connection failures when other servers try to deliver mail to your domain.

TLS-RPT sends you reports about TLS connection failures to your mail servers.
FieldValue
TypeTXT
Host_smtp._tls.web-hosting.com (SMTP TLS reporting record)
Valuev=TLSRPTv1; rua=mailto:tls-reports@web-hosting.com
Low Deploy MTA-STS

MTA-STS enforces TLS encryption for inbound mail delivery, preventing downgrade attacks on your mail transport.

MTA-STS tells sending servers to require TLS when delivering mail to your domain.
FieldValue
TypeTXT
Host_mta-sts.web-hosting.com (MTA-STS policy record)
Valuev=STSv1; id=web-hosting.com
Registrar (RDAP) OBSERVED LIVE
NameCheap, Inc.
Registrar for web-hosting.com
Email Service Provider
Unknown
Moderately Protected
Web Hosting
Unknown
Where website is hosted
DNS Hosting OBSERVED
Namecheap
Where DNS records are edited
Email Security Methodology Can this domain be impersonated by email? Yes DMARC is monitor-only (p=none)

SPF Record RFC 7208 §4 Verified

Does this domain declare who may send email on its behalf? Yes
Success ~all 3/10 lookups

SPF valid with industry-standard soft fail (~all), 3/10 lookups

v=spf1 include:spf.privateemail.com include:spf.mandrillapp.com include:vpspanel.web-hosting.com ip4:199.188.203.161 ~all
RFC 7208 Conformant — This SPF record conforms to the syntax and semantics defined in RFC 7208 §4.
RFC Failure Mode: Unlike DMARC (where unknown tags are silently ignored per RFC 7489 §6.3), SPF with unrecognized mechanisms produces a PermError per RFC 7208 §4.6 — the record fails loudly rather than silently.
Related CVEs: CVE-2024-7208 (multi-tenant domain spoofing), CVE-2024-7209 (shared SPF exploitation), CVE-2023-51764 (SMTP smuggling bypasses SPF)
~all is the industry standard. Google, Apple, and most providers default to soft fail. CISA (BOD 18-01) and RFC 7489 confirm that DMARC policy — not SPF alone — is the primary enforcement control. Using ~all allows DKIM to be evaluated before a DMARC decision is made. This domain has DMARC p=none (monitoring only). Enforcing quarantine or reject is recommended to gain real protection.

DMARC Policy RFC 7489 §6.3 Verified

Are spoofed emails rejected or quarantined? Monitoring only
Warning p=none

DMARC in monitoring mode (p=none) - spoofed mail still delivered, no enforcement

v=DMARC1; p=none; sp=none; rua=mailto:dmarc-rua@namecheap.com; ruf=mailto:dmarc-ruf@namecheap.com
Policy p=none provides no protection - spoofed emails reach inboxes
Forensic reporting (ruf) is configured, but most major providers do not send forensic reports. RFC 7489 §7.3 warns that forensic reports can expose PII (full message headers or bodies). Google, Microsoft, and Yahoo do not honour ruf= requests. The DMARCbis draft (draft-ietf-dmarc-dmarcbis) has formally removed ruf= from the specification. Consider removing this tag to simplify your record. RFC 7489 §7.3 — Forensic Reports
Advanced cryptographic posture detected. Domain appears to be in deliberate DMARC monitoring phase with aggregate reporting enabled
RFC 7489 Present — DMARC record published per RFC 7489 §6.3.
DMARCbis (Pending): draft-ietf-dmarc-dmarcbis will elevate DMARC to Standards Track, obsolete RFC 7489, replace pct= with t= (testing flag), add np= (non-existent subdomain policy), and mandate DNS tree walk for policy discovery instead of the Public Suffix List.
Related CVEs: CVE-2024-49040 (Exchange sender spoofing), CVE-2024-7208 (multi-tenant DMARC bypass)

DKIM Records RFC 6376 §3.6 Verified

Are outbound emails cryptographically signed? Yes — verified
Found 2048-bit

Found DKIM for 1 selector(s) with strong keys (2048-bit)

mandrill._domainkey MailChimp (Mandrill) 2048-bit Adequate
v=DKIM1; k=rsa; p=MIGfMA0GCSqGSIb3DQEBAQUAA4GNADCBiQKBgQCrLHiExVd55zd/IQ/J/mRwSRMAocV/hMB3jXwaHH36d9NaVynQFYV8NaWi69c1veUtRzGt7yAioXqLj7Z4TeEUoOLgrKsn8YnckGs9i3B3tVFB+Ch/4mPhXWiNfNdynHWBcPcbJ8kjEQ2U8y78dHZj1YeRXXVvWob2OaKynO8/lQIDAQAB;
RFC 6376 Conformant — DKIM keys and signatures conform to RFC 6376 §3.6 (Internet Standard).
Known Vulnerabilities: DKIM l= tag body length vulnerability (attacker appends unsigned content to signed mail), weak key exploitation (keys below 1024-bit are cryptographically breakable per RFC 6376 §3.3.3), DKIM replay attacks (re-sending legitimately signed messages at scale)

MTA-STS RFC 8461 §3 Verified

Can attackers downgrade SMTP to intercept mail? Not prevented
Warning

No MTA-STS record found

MTA-STS policy enforcement is evaluated in Mail Transport Security below.

TLS-RPT RFC 8460 §3 Verified

Will failures in TLS delivery be reported? No reporting
Warning

No TLS-RPT record found

DMARC External Reporting Authorization RFC 7489 §7.1

Are external report receivers authorized? Yes — all authorized
Success

All 1 external reporting domains properly authorized

External Domain Authorization Auth Record
namecheap.com Authorized v=DMARC1;

DANE / TLSA Verified Recon Methodology Can mail servers establish identity without a public CA? No
RFC 7672 §3 RFC 6698 §2 Not Configured

No DANE/TLSA records found (checked 2 MX hosts)

DANE (RFC 7672) binds TLS certificates to DNSSEC-signed DNS records, protecting email transport against man-in-the-middle attacks and rogue CAs. It is the primary transport security standard — MTA-STS (RFC 8461) was created as the alternative for domains that cannot deploy DNSSEC. Over 1 million domains use DANE globally, including Microsoft Exchange Online, Proton Mail, and Fastmail. Best practice: deploy both for defense in depth.

Email Transport Security

Two mechanisms protect email in transit. DANE is the primary standard; MTA-STS is the alternative for domains that cannot deploy DNSSEC:

  • DNSSEC + DANE (RFC 7672) — Cryptographic chain of trust from DNS root to mail server certificate. Eliminates reliance on certificate authorities. No trust-on-first-use weakness. Requires DNSSEC.
  • MTA-STS (RFC 8461) — HTTPS-based policy requiring TLS for mail delivery. Works without DNSSEC but relies on CA trust and is vulnerable on first use (§10). Created for domains where “deploying DNSSEC is undesirable or impractical” (§2).
This domain has neither DANE nor MTA-STS. Mail transport relies on opportunistic TLS without policy enforcement, leaving it vulnerable to downgrade attacks. Deploy DANE (RFC 7672) with DNSSEC for the strongest protection, or MTA-STS (RFC 8461) if DNSSEC is not feasible.

Industry trend: Microsoft Exchange Online enforces inbound DANE with DNSSEC (GA October 2024), and providers like Proton Mail and Fastmail also support DANE. Google Workspace does not support DANE and relies on MTA-STS. Both mechanisms coexist because DANE is backward-compatible — senders skip the check if the domain isn't DNSSEC-signed (RFC 7672 §1.3).


Brand Security Can this brand be convincingly faked? Likely DMARC is monitor-only p=none (RFC 7489 §6.3) — spoofed mail is not blocked, brand faking is trivial

BIMI BIMI Spec Verified Warning

Is the brand identity verified and displayed in inboxes? No

No BIMI record found

CAA RFC 8659 §4 Verified Warning

Does this domain restrict who can issue TLS certificates? No

No CAA records found - any CA can issue certificates

Vulnerability Disclosure Policy (security.txt) Is there a verified way to report security issues? No RFC 9116

No security.txt found

A security.txt file at /.well-known/security.txt provides security researchers with a standardized way to report vulnerabilities. See securitytxt.org for a generator.

AI Surface Scanner Beta Is this domain discoverable by AI — and protected from abuse? No

No significant AI surface findings

llms.txt llmstxt.org
Is this domain publishing AI-readable brand context? No
No llms.txt found
No llms-full.txt found
AI Crawler Governance (robots.txt) RFC 9309 IETF Draft
Are AI crawlers explicitly allowed or blocked? No directives
No robots.txt found
Content-Usage Directive IETF Draft
Does the site express AI content-usage preferences? Not Configured
No Content-Usage directive detected. The IETF AI Preferences working group is developing a Content-Usage: directive for robots.txt that lets site owners declare whether their content may be used for AI training and inference. This is an active draft, not yet a ratified standard.
Example: Add Content-Usage: ai=no to robots.txt to deny AI training, or Content-Usage: ai=allow to explicitly permit it. Without this directive, AI crawler behavior depends on individual crawler policies and User-agent rules.
AI Recommendation Poisoning
Is this site trying to manipulate AI recommendations? No
No AI recommendation poisoning indicators found
Hidden Prompt Artifacts
Is hidden prompt-injection text present in the source? No
No hidden prompt-like artifacts detected
Public Exposure Checks Are sensitive files or secrets exposed? No

No exposed secrets detected in public page source — same-origin, non-intrusive scan of publicly visible page source and scripts.

No exposed secrets, API keys, or credentials were detected in publicly accessible page source or scripts.
What type of scan is this?

This is OSINT (Open Source Intelligence) collection — we check the same publicly accessible URLs that any web browser could visit. No authentication is bypassed, no ports are probed, no vulnerabilities are exploited.

Is this a PCI compliance scan? No. PCI DSS requires scans performed by an Approved Scanning Vendor (ASV) certified by the PCI Security Standards Council. DNS Tool is not an ASV. If you need PCI compliance scanning, engage a certified ASV such as Qualys, Tenable, or Trustwave.

Is this a penetration test? No. Penetration testing involves active exploitation attempts against systems with authorization. Our checks are passive observation of publicly accessible resources — the same methodology used by Shodan, Mozilla Observatory, and other OSINT platforms.

DNS Server Security Hardened

No DNS server misconfigurations found on edns4.registrar-servers.com — Nmap NSE probes for zone transfer (AXFR), open recursion (RFC 5358), nameserver identity disclosure, and DNS cache snooping.

Check Result Detail
Zone Transfer (AXFR) Denied Test inconclusive
Open Recursion Disabled Test inconclusive
Nameserver Identity Hidden Test inconclusive
Cache Snooping Protected Test inconclusive

Tested nameservers: edns4.registrar-servers.com, edns3.registrar-servers.com, edns2.registrar-servers.com, edns1.registrar-servers.com

Delegation Consistency 1 Issue

Delegation consistency: 1 issue(s) found — Parent/child NS delegation alignment: DS↔DNSKEY, glue records, TTL drift, SOA serial sync.

Findings:
  • Could not retrieve NS TTL from parent zone

DS ↔ DNSKEY Alignment Aligned

Glue Record Completeness Complete

NameserverIn-BailiwickIPv4 GlueIPv6 GlueStatus
edns1.registrar-servers.com No N/A N/A OK
edns2.registrar-servers.com No N/A N/A OK
edns3.registrar-servers.com No N/A N/A OK
edns4.registrar-servers.com No N/A N/A OK

NS TTL Comparison Drift

Child TTL: 86400s Drift: 0s

SOA Serial Consistency Consistent

edns1.registrar-servers.com: 1.772726002e+09
edns2.registrar-servers.com: 1.772726002e+09
edns3.registrar-servers.com: 1.772726002e+09
edns4.registrar-servers.com: 1.772726002e+09
Nameserver Fleet Matrix Healthy

Analyzed 4 nameserver(s) for web-hosting.com — Per-nameserver reachability, ASN diversity, SOA serial sync, and lame delegation checks.

Nameserver IPv4 IPv6 ASN / Operator UDP TCP AA SOA Serial
edns4.registrar-servers.com 2.22.230.67
23.211.132.64
96.7.49.64
2600:1408:1c::40
2600:1406:1b::40
2600:1480:800::43
AS21342 1772726002
edns2.registrar-servers.com 51.222.46.83 2607:5300:203:7f53::2 AS16276
OVH SAS
1772726002
edns3.registrar-servers.com 193.108.91.149
95.100.175.67
2.16.130.65
2600:1401:2::95
2600:1480:9800::41
2a02:26f0:67::43
AS20940
Akamai International B.V.
1772726002
edns1.registrar-servers.com 51.89.217.44 2001:41d0:800:2d2c::2 AS16276
OVH SAS
1772726002
Unique ASNs
3
Unique Operators
2
Unique /24 Prefixes
8
Diversity Score
Excellent

3 ASNs, 2 operators, 8 /24 prefixes across 4 nameservers

Mail Transport Security Beta Is mail transport encrypted and verified? No No MTA-STS or DANE — mail transport encryption is opportunistic only

All 2 server(s) verified: encrypted transport confirmed via direct SMTP probe and DNS policy

Policy Assessment Primary

No transport enforcement policies detected. Mail delivery relies on opportunistic STARTTLS, which is vulnerable to downgrade attacks (RFC 3207). Consider deploying MTA-STS (RFC 8461) or DANE (RFC 7672).

Telemetry
TLS-RPT not configured — domain has no visibility into TLS delivery failures from real senders
Live Probe Supplementary
MX Host STARTTLS TLS Version Cipher Certificate
mx2.privateemail.com TLSv1.3 TLS_AES_256_GCM_SHA384 Valid
Expires: 2026-12-23 (289 days)
Issuer: Sectigo Limited
mx1.privateemail.com TLSv1.3 TLS_AES_256_GCM_SHA384 Valid
Expires: 2026-12-23 (289 days)
Issuer: Sectigo Limited
Multi-Vantage Probe Results
Unanimous: TLS verified 2 probes, 1 responded
US-East (Boston) observed
All servers support TLS
4.02s
France - EU skipped
Infrastructure Intelligence Who hosts this domain and what services power it? Direct

ASN / Network Success

Resolved 1 unique ASN(s) across 1 IP address(es)

ASNNameCountry
AS22612 US
IPv4 Mappings:
198.54.117.170AS22612 (198.54.112.0/20)

Edge / CDN Success

Domain appears to use direct origin hosting

SaaS TXT Footprint Success

No SaaS services detected

Detects SaaS services that leave DNS TXT verification records (e.g., domain ownership proofs). Does not detect all SaaS platforms — only those indicated by DNS.


Domain Security Methodology Can DNS responses be tampered with in transit? Possible DNSSEC is not deployed, DNS responses are not cryptographically verified

DNSSEC RFC 4033 §2 Verified Unsigned

DNSSEC not configured - DNS responses are unsigned

Enterprise DNS Context: DNSSEC is the only standardized, DNS-verifiable mechanism that cryptographically authenticates responses between authoritative servers and resolvers (RFC 4033 §2, RFC 4035). Without it, DNS responses are technically vulnerable to in-transit tampering. Enterprise operators may employ compensating controls (anycast, DDoS mitigation, private peering, TSIG) — however, these do not provide DNS-layer data authentication to third-party resolvers and are not verifiable via DNS alone.
Visibility: DNS-only — network-layer compensating controls cannot be observed or verified through DNS queries. This assessment reflects what is provable from the DNS evidence available.

NS Delegation Verified

4 nameserver(s) configured

Nameservers: edns1.registrar-servers.com edns2.registrar-servers.com edns3.registrar-servers.com edns4.registrar-servers.com
Managed DNS
All 4 nameservers hosted by Namecheap. Managed DNS provides reliable resolution with provider-maintained infrastructure.
DNS provider(s): Namecheap
Multi-Resolver Verification Recon: Consensus reached - 5 resolvers (Cloudflare, Google, Quad9, OpenDNS, DNS4EU) agree on DNS records
Traffic & Routing Where does this domain's traffic actually terminate?

AIPv4 Address

198.54.117.170
Where the domain points for web traffic

AAAAIPv6 Address

No AAAA records
IPv6 not configured

MXMail Servers

0 mx2.privateemail.com.
0 mx1.privateemail.com.
Priority + mail server for email delivery

SRVServices

No SRV records
No service-specific routing configured
Web: Reachable (1 IPv4, 0 IPv6) Mail: 2 servers Services: None
Subdomain Discovery RFC 6962 Recon LIVE What subdomains and infrastructure are exposed in certificate logs? 483 subdomains discovered
How did we find these?
CT logs unavailable 483 current 0 expired 3 CNAMEs Source: Certificate Transparency + DNS Intelligence
Subdomains discovered via CT logs (RFC 6962), DNS probing of common service names, and CNAME chain traversal.
Subdomain Source Status Provider / CNAME Certificates First Seen Issuer(s)
a.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
academy.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
account.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
accounting.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
accounts.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ad.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
adfs.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
admin.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
admin1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
admin2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
alert.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
alerts.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
alpha.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
analytics.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ap-south.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ap.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
apac.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
api.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
api1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
api2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
api3.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
apigw.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
apis.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
apm.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
app.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
app1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
app2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
appointments.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
apps.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
archive.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
archives.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
asia.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
assets.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
atom.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
auth.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
auth0.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
autoconfig.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
autodiscover.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
b.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
backup.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
backup1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
backup2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
beta.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
bi.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
bigdata.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
billing.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
bitbucket.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
blob.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
booking.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
broker.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
bucket.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
build.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
builds.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
c.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ca.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cache.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cal.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
calendar.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
campaign.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
campaigns.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
careers.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cart.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
catalog.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cd.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cdn.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cdn1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cdn2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cdn3.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cert.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
certs.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
chat.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
checkout.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ci.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
client.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
clients.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cloud.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cms.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
cname.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
code.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
community.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
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secrets.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
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ssh.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
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url.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
us-east.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
us-west.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
us.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
utility.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
varnish.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vault.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vendor.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vendors.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
video.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
videos.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
voip.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vpn.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vpn1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vpn2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vpn3.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
vps.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
waf.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
wan.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
warehouse.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
web.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
web1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
web2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
webex.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
webinar.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
webinars.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
webmail.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
websocket.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
whm.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
wiki.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
wordpress.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
work.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
worker.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
worker1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
worker2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
workspace.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
wp.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
ws.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
www.web-hosting.com DNS Current web-hosting.com 2 2025-03-13 Sectigo Limited
www1.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
www2.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
www3.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
xml.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
zabbix.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
zoom.web-hosting.com DNS Current 2 2025-03-13 Sectigo Limited
Δ No Propagation Issues: All DNS records are synchronized between resolver and authoritative nameserver.
DNS Intelligence What does DNS look like right now — and what changed over time?
DNS Evidence Diff Side-by-side comparison
Resolver Records (Public DNS cache)
Authoritative Records (Source of truth)
A Synchronized 1 / 1 records
198.54.117.170
198.54.117.170
AAAA 0 / 0 records
No records
No records
CAA RFC 8659 §4 0 / 0 records
No records
No records
DMARC _dmarc.web-hosting.com RFC 7489 §6.3 Synchronized 1 / 1 records
v=DMARC1; p=none; sp=none; rua=mailto:dmarc-rua@namecheap.com; ruf=mailto:dmarc-ruf@namecheap.com
v=DMARC1; p=none; sp=none; rua=mailto:dmarc-rua@namecheap.com; ruf=mailto:dmarc-ruf@namecheap.com
MX RFC 5321 Synchronized 2 / 2 records
0 mx2.privateemail.com.
0 mx1.privateemail.com.
0 mx1.privateemail.com.
0 mx2.privateemail.com.
NS RFC 1035 Synchronized 4 / 4 records
edns1.registrar-servers.com.
edns2.registrar-servers.com.
edns3.registrar-servers.com.
edns4.registrar-servers.com.
edns4.registrar-servers.com.
edns1.registrar-servers.com.
edns2.registrar-servers.com.
edns3.registrar-servers.com.
SOA RFC 1035 Synchronized 1 / 1 records
edns.registrar-servers.com. support.namecheap.com. 1772726002 86400 7200 3600000 86400
edns.registrar-servers.com. support.namecheap.com. 1772726002 86400 7200 3600000 86400
TXT RFC 7208 §4 Synchronized 2 / 2 records
v=spf1 include:spf.privateemail.com include:spf.mandrillapp.com include:vpspanel.web-hosting.com ip4:199.188.203.161 ~all
mailfoundry.namecheap.com
mailfoundry.namecheap.com
v=spf1 include:spf.privateemail.com include:spf.mandrillapp.com include:vpspanel.web-hosting.com ip4:199.188.203.161 ~all
DNS History Timeline BETA
Your key is sent directly to SecurityTrails and is never stored on our servers. Get an API key
DNS History Timeline BETA

When was a record added, removed, or changed — and could that change be the problem?

Analyze Another Domain

Confirm Your Email Configuration

This tool analyzes DNS records, but to verify actual email delivery, send a test email to Red Sift Investigate. Their tool shows exactly how your emails arrive, including SPF/DKIM/DMARC pass/fail results in the headers.

DATA FRESHNESS & METHODOLOGY

All security-critical records (SPF, DMARC, DKIM, DANE/TLSA, DNSSEC, MTA-STS, TLS-RPT, BIMI, CAA) are queried live from authoritative nameservers and cross-referenced against 5 independent public DNS resolvers (Cloudflare, Google, Quad9, OpenDNS, DNS4EU) at the time of each analysis. No security verdict uses cached data.

Registrar data (RDAP) is cached for up to 24 hours because domain ownership and registration details change infrequently. Certificate Transparency logs (subdomain discovery via RFC 6962) are cached for 1 hour because CT entries are append-only historical records. Sections using cached data are marked with a CACHED badge; live queries show LIVE.

Intelligence Sources

This analysis used 4 DNS resolvers (consensus), reverse DNS (PTR), Team Cymru (ASN attribution), IANA RDAP (registrar), crt.sh (CT logs), and SMTP probing (transport). All using open-standard protocols.

Full List
Verify Report Integrity SHA-3-512 Has this report been altered since generation? Verify below

This cryptographic hash seals the analysis data, domain, timestamp, and tool version into a tamper-evident fingerprint. Any modification to the report data will produce a different hash. This is distinct from the posture hash (used for drift detection) — the integrity hash uniquely identifies this specific report instance.

abfa60cb58f1e169b38489221d28e5bd6dc858cf4ad9c6bf747986b366edb5340e0e1952946328c7bdf916cc8900f5bf75d2982e406ef0e914e2a65534bdf6aa
Evaluations reference 12 RFCs. Methods are reproducible using the verification commands provided. Results reflect DNS state at 9 Mar 2026, 15:41 UTC.

Download the intelligence dump and verify its integrity, like you would a Kali ISO or any critical artifact. The SHA-3-512 checksum covers every byte of the download — deterministic serialization ensures identical hashes across downloads.

After downloading, verify with any of these commands:

Tip: cd ~/Downloads first (or wherever you saved the files).

OpenSSL + Sidecar (macOS, Linux, WSL)
cat dns-intelligence-web-hosting.com.json.sha3 && echo '---' && openssl dgst -sha3-512 dns-intelligence-web-hosting.com.json
Python 3 (cross-platform)
python3 -c "import hashlib; print(hashlib.sha3_512(open('dns-intelligence-web-hosting.com.json','rb').read()).hexdigest())"
sha3sum (coreutils 9+)
sha3sum -a 512 dns-intelligence-web-hosting.com.json
Compare the output against the .sha3 file or the checksum API at /api/analysis/6934/checksum. Hash algorithm: SHA-3-512 (Keccak, NIST FIPS 202).

Every finding in this report is backed by DNS queries you can run yourself. These vetted one-liners reproduce the exact checks used to build this report for web-hosting.com. Our analysis adds multi-resolver consensus, RFC-based evaluation, and cross-referencing — but the underlying data is always independently verifiable. We are intelligence analysts, not gatekeepers.

DNS Records

Query A records (IPv4) RFC 1035
dig +noall +answer web-hosting.com A
Query AAAA records (IPv6) RFC 1035
dig +noall +answer web-hosting.com AAAA
Query MX records (mail servers) RFC 1035
dig +noall +answer web-hosting.com MX
Query NS records (nameservers) RFC 1035
dig +noall +answer web-hosting.com NS
Query TXT records RFC 1035
dig +noall +answer web-hosting.com TXT

Email Authentication

Check SPF record RFC 7208
dig +short web-hosting.com TXT | grep -i spf
Check DMARC policy RFC 7489
dig +short _dmarc.web-hosting.com TXT
Check DKIM key for selector 'mandrill' RFC 6376
dig +short mandrill._domainkey.web-hosting.com TXT

Domain Security

Check DNSSEC DNSKEY records RFC 4035
dig +dnssec +noall +answer web-hosting.com DNSKEY
Check DNSSEC DS records RFC 4035
dig +noall +answer web-hosting.com DS
Validate DNSSEC chain (requires DNSSEC-validating resolver) RFC 4035
dig +dnssec +cd web-hosting.com A @1.1.1.1

Transport Security

Check TLSA record for mx2.privateemail.com RFC 7672
dig +noall +answer _25._tcp.mx2.privateemail.com TLSA
Check TLSA record for mx1.privateemail.com RFC 7672
dig +noall +answer _25._tcp.mx1.privateemail.com TLSA
Verify TLS certificate on primary MX (mx2.privateemail.com) RFC 6698
openssl s_client -starttls smtp -connect mx2.privateemail.com:25 -servername mx2.privateemail.com 2>/dev/null | openssl x509 -noout -subject -dates
Check MTA-STS DNS record RFC 8461
dig +short _mta-sts.web-hosting.com TXT
Fetch MTA-STS policy file RFC 8461
curl -sL https://mta-sts.web-hosting.com/.well-known/mta-sts.txt
Check TLS-RPT record RFC 8460
dig +short _smtp._tls.web-hosting.com TXT

Brand & Trust

Check BIMI record BIMI Draft
dig +short default._bimi.web-hosting.com TXT
Check CAA records (certificate authority authorization) RFC 8659
dig +noall +answer web-hosting.com CAA

DNS Records

Check HTTPS/SVCB records RFC 9460
dig +noall +answer web-hosting.com HTTPS

Domain Security

Check CDS/CDNSKEY automation records RFC 7344
dig +noall +answer web-hosting.com CDS

Infrastructure Intelligence

RDAP domain registration lookup RFC 9083
curl -sL 'https://rdap.org/domain/web-hosting.com' | python3 -m json.tool | head -50

Transport Security

Test STARTTLS on primary MX (mx2.privateemail.com) RFC 3207
openssl s_client -starttls smtp -connect mx2.privateemail.com:25 -servername mx2.privateemail.com </dev/null 2>/dev/null | head -5

Infrastructure Intelligence

Search Certificate Transparency logs RFC 6962
curl -s 'https://crt.sh/?q=%25.web-hosting.com&output=json' | python3 -c "import json,sys; [print(e['name_value']) for e in json.load(sys.stdin)]" | sort -u | head -20
Check security.txt RFC 9116
curl -sL https://web-hosting.com/.well-known/security.txt | head -20

AI Surface

Check for llms.txt
curl -sI https://web-hosting.com/llms.txt | head -5
Check robots.txt for AI crawler rules
curl -s https://web-hosting.com/robots.txt | grep -i -E 'GPTBot|ChatGPT|Claude|Anthropic|Google-Extended|CCBot|PerplexityBot'

Infrastructure Intelligence

ASN lookup for 198.54.117.170 (Team Cymru)
dig +short 170.117.54.198.origin.asn.cymru.com TXT
Commands use dig, openssl, and curl — standard tools available on macOS, Linux, and WSL. Results may vary slightly due to DNS propagation timing and resolver caching.
Intelligence Confidence Audit Engine verified · 9/9 Evaluated
How confident are these results? Each protocol is independently verified against RFC standards. No self-awarded badges.
SPF
Verified 4851 runs
DKIM
Verified 4670 runs
DMARC
Verified 4835 runs
DANE/TLSA
Verified 4654 runs
DNSSEC
Verified 4832 runs
BIMI
Verified 4669 runs
MTA-STS
Verified 4672 runs
TLS-RPT
Verified 4674 runs
CAA
Verified 4666 runs
Maturity: Development Verified Consistent Gold Gold Master
Running Multi-Source Intelligence Audit

web-hosting.com

0s
DNS records — Cloudflare, Google, Quad9, OpenDNS, DNS4EU
Email auth — SPF, DMARC, DKIM selectors
DNSSEC chain of trust & DANE/TLSA
Certificate Transparency & subdomain discovery
SMTP transport & STARTTLS verification
MTA-STS, TLS-RPT, BIMI, CAA
Registrar & infrastructure analysis
Intelligence Classification & Interpretation

Every result includes terminal commands you can run to independently verify the underlying data. No proprietary magic.