Earlier quoted context omitted.
How many people have local DNS at home? Not many, I'd wager. How many know how to access their router? Also not many. Besides, "In your router’s configuration page, locate the DNS server settings."
I've been running my own DNS servers since 1996, when I had my first dedicated connection (an ISDN line.) I never use my ISP's DNS.
1.1.1.1: Fast, privacy-first consumer DNS service
661–670 of 695 posts
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#662Earlier quoted context omitted.
Beijing: PING 1.1.1.1 (1.1.1.1): 56 data bytes 64 bytes from 1.1.1.1: icmp_seq=0 ttl=52 time=241.529 ms 64 bytes from 1.1.1.1: icmp_seq=1 ttl=52 time=318.034 ms 64 bytes from 1.1.1.1: icmp_seq=2 ttl=52 time=337.291 ms 64 bytes from 1.1.1.1: icmp_seq=3 ttl=52 time=255.748 ms 64 bytes from 1.1.1.1: icmp_seq=4 ttl=52 time=247.765 ms 64 bytes from 1.1.1.1: icmp_seq=5 ttl=52 time=235.611 ms 64 bytes from 1.1.1.1: icmp_seq…
Copenhagen: PING 1.1.1.1 (1.1.1.1): 56 data bytes 64 bytes from 1.1.1.1: icmp_seq=0 ttl=55 time=14.053 ms 64 bytes from 1.1.1.1: icmp_seq=1 ttl=55 time=12.715 ms 64 bytes from 1.1.1.1: icmp_seq=2 ttl=55 time=13.615 ms 64 bytes from 1.1.1.1: icmp_seq=3 ttl=55 time=14.018 ms 64 bytes from 1.1.1.1: icmp_seq=4 ttl=55 time=12.261 ms 64 bytes from 1.1.1.1: icmp_seq=5 ttl=55 time=11.428 ms 64 bytes from 1.1.1.1: icmp_seq=6…
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#663Earlier quoted context omitted.
Copenhagen: PING 1.1.1.1 (1.1.1.1): 56 data bytes 64 bytes from 1.1.1.1: icmp_seq=0 ttl=55 time=14.053 ms 64 bytes from 1.1.1.1: icmp_seq=1 ttl=55 time=12.715 ms 64 bytes from 1.1.1.1: icmp_seq=2 ttl=55 time=13.615 ms 64 bytes from 1.1.1.1: icmp_seq=3 ttl=55 time=14.018 ms 64 bytes from 1.1.1.1: icmp_seq=4 ttl=55 time=12.261 ms 64 bytes from 1.1.1.1: icmp_seq=5 ttl=55 time=11.428 ms 64 bytes from 1.1.1.1: icmp_seq=6…
Pinging 1.1.1.1 with 32 bytes of data: Reply from 89.228.6.1: Destination net unreachable. Reply from 89.228.6.1: Destination net unreachable. Reply from 89.228.6.1: Destination net unreachable. Reply from 89.228.6.1: Destination net unreachable. Any idea why my ISP redirects this IP?
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#664> We will never sell your data or use it to target ads. Period. Won't sell != Won't collect > We will never log your IP address (the way other companies identify you) Never log IP != Never log anything Bonus: The way other companies identify you ~= There are other ways Edit: Looks like many people assume I'm nitpicking. So here are more specific questions: * Is logging a hashcode of the IP considered as "not logging…
I'm fine with nitpicking. Let me try and be clear: We're not logging IPs. We inherently receive them when they connect to the service, but we don't write them to disk and flush them quickly (i.e., seconds or minutes). We're not logging hashes of IPs. We're not logging ASNs of the IPs connecting to the service. We do log the other parts of a DNS query in order to help prevent abuse and debug issues. However, we've com…
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#665Earlier quoted context omitted.
From a residential connection in New Zealand: $ ping 1.1.1.1 Pinging 1.1.1.1 with 32 bytes of data: Reply from 1.1.1.1: bytes=32 time=4ms TTL=60 Reply from 1.1.1.1: bytes=32 time=4ms TTL=60 Reply from 1.1.1.1: bytes=32 time=4ms TTL=60 Reply from 1.1.1.1: bytes=32 time=4ms TTL=60 $ ping 8.8.8.8 Pinging 8.8.8.8 with 32 bytes of data: Reply from 8.8.8.8: bytes=32 time=27ms TTL=60 Reply from 8.8.8.8: bytes=32 time=27ms T…
Fastest Bigpipe residential connection available in the middle of Auckland: $ ping -c 4 1.1.1.1 PING 1.1.1.1 (1.1.1.1) 56(84) bytes of data. 64 bytes from 1.1.1.1: icmp_seq=1 ttl=56 time=29.0 ms 64 bytes from 1.1.1.1: icmp_seq=2 ttl=56 time=27.7 ms 64 bytes from 1.1.1.1: icmp_seq=3 ttl=56 time=30.5 ms 64 bytes from 1.1.1.1: icmp_seq=4 ttl=56 time=28.6 ms --- 1.1.1.1 ping statistics --- 4 packets transmitted, 4 receiv…
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#666Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#667Earlier quoted context omitted.
Sorry, confused. Https requests are prolific, while encrypted DNS requests aren't. Why isn't the former less hard to detect?
How would you tell that an encrypted chunk of data is HTTPS instead of DNS? The best you'd be able to do is guess based on behavior that it's DNS.
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#668A big PITA for me right now with friends and family is changing DNS. They all have these Xfinity cable modem boxes that have integrated WiFi and Ethernet. It's not possible to change the DNS through the web interface. So I have to convince everyone to buy a separate AP or a 3rd party (but ISP approved) cable modem, and then what ensues is I'm now responsible for that device because Xfinity washes their hands entirely…
I'm not sure which modem you have, but the Cisco modem I used to use with the built-in WiFi just as you describe absolutely has the ability to go in and edit the DNS servers assigned by DHCP under Connection > Local IP Network. I also have the remote access enabled for my family members so I can diagnose and make changes like this directly on their modem.
Anyway, there is a Connection > Local IP Network. But no DNS settings anywhere.
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#669Earlier quoted context omitted.
That's probably because AT&T is using 1.1.1.1 for something internal and breaking the public internet for it's users: you get a really fast ping on 1.1.1.1, but it's not the 1.1.1.1 you are trying to reach.
Is this just speculation or can anybody confirm? traceroute to 1.1.1.1 (1.1.1.1), 64 hops max, 52 byte packets 1 1dot1dot1dot1.cloudflare-dns.com (1.1.1.1) 1.117 ms 0.710 ms 0.727 ms
Re: 1.1.1.1: Fast, privacy-first consumer DNS service
#670Earlier quoted context omitted.
An auditing company is pointless if they can't find fraud on such a massive scale or recognize that something is being hidden from them.
Thats like saying Linux is a useless project because of giant security holes that stay hidden for decades. I prefer to live in the real world, which is a lot more nuanced, and my question still stands.
It's like calling a home security system pointless if it doesn't detect any forced entries.