Explaining the recent issues with the site

Author: WyIted

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WyIted
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There was a recent and extremely large DDOS attack and it effected servers from mostly Russia and former USSR countries. https://www.bleepingcomputer.com/news/security/cloudflare-blocks-largest-recorded-ddos-attack-peaking-at-38tbps/

Many of the attacks aimed at the target’s network infrastructure (network and transport layers L3/4) exceeded two billion packets per second (pps) and three terabits per second (Tbps).
According to researchers at internet infrastructure company Cloudflare, the infected devices were spread across the globe but many of them were located in Russia, Vietnam, the U.S., Brazil, and Spain.
DDoS packets delivered from all over the world
source: Cloudflare
The threat actor behind the campaign leveraged multiple types of compromised devices, which included a large number of Asus home routers, Mikrotik systems, DVRs, and web servers.
Cloudflare mitigated all the DDoS attacks autonomously and noted that the one peaking at 3.8 Tbps lasted 65 seconds.
Largest publicly recorded volumetric DDoS attack peaking at 3.8Tbps
The researchers say that the network of malicious devices used mainly the User Datagram Protocol (UDP) on a fixed port, a protocol with fast data transfers but which does not require establishing a formal connection.

Previously, Microsoft held the record for defending against the largest volumetric DDoS attack of 3.47 Tbps, which targeted an Azure customer in Asia.
Typically, threat actors launching DDoS attacks rely on large networks of infected devices (botnets) or look for ways to amplify the delivered data at the target, which requires a smaller number of systems.
In a report this week, cloud computing company Akamai confirmed that the recently disclosed CUPS vulnerabilities in Linux could be a viable vector for DDoS attacks.
After scanning the public internet for systems vulnerable to CUPS, Akamai found that more than 58,000 were exposed to DDoS attacks from exploiting the Linux security issue.

More testing revealed that hundreds of vulnerable “CUPS servers will beacon back repeatedly after receiving the initial requests, with some of them appearing to do it endlessly in response to HTTP/404 responses.”
These servers sent thousands of requests to Akamai’s testing systems, showing significant potential for amplification from exploiting the CUP flaws.


Sidewalker
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3.8 terabits per second of garbage data is just free speech. it's right there in the Constitution next to the stuff about lies, misinformation, and conspiracy theories.
WyIted
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@Sidewalker
The constitution does not apply to the countries where this occurred but no this would fall under the computer fraud and abuse act and be illegal in The United States. 


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@WyIted
Hey.

With stuff comes issues.

And with issues comes stuff.

And so on.
ebuc
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@zedvictor4
With stuff comes issues.  And with issues comes stuff

In my younger days the smart-ass youth saying was ' cram-it Bozo ".

Apparrently now days it has morphed into ' stuff-it with  DDOS ' aka Diddly Damn Odd Stuff

3.8 Tera-bytes per second is new stuff-it iny servers mail box record.

Give it a few days and we will begin hearing  that it is illegal migrants bloating the servers with DDOS

8 billion plus humans on Earth and rising > > >  Human Resource Dysfunction Systems { HRDS }

However, on the bright side of life,




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@ebuc
On the bright side of life.

Yep.

Can't stop the Earth rotating.




Errrrrrr.....Or can we.
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@zedvictor4
Can't stop the Earth rotating...Errrrrrr.....Or can we.

Our moon does not spin in relationship to Earth, yet it does spin in relationship to Sol if not all other celestial objects.

Six fundamental kinds of motion:

> spin....around an axis...,

> orbit,

> precession --often at 90 degrees--,

> expansion-contraction,

> inside-outed...stick your tongue is kinda of sorta that, not exactly tho or turn a glove inside-out,

> torque ...think twist.

48 days later

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@ebuc
Our moon does not spin in relationship to Earth, yet it does spin in relationship to Sol if not all other celestial objects.

Six fundamental kinds of motion:

> spin....around an axis...,

> orbit,

> precession --often at 90 degrees--,

> expansion-contraction,

> inside-outed...stick your tongue is kinda of sorta that, not exactly tho or turn a glove inside-out,

> torque ...think twist.
There are approximately 500 other variations in the Moon's motion which are too complicated or too minor to be enumerated here.

1. Daily apparent revolution:
Like all celestial bodies, the moon appears to revolve around the Earth, once every 24 hours. This is caused by the rotation of the Earth. However, the moon revolves eastward in its orbit, ie: in the same direction as the Earth. Therefore, it takes a little longer for the earth to catch up, lengthening the apparent revolution to 24h 50m.
2. Daily growth and shrinking:
Since an observer is slightly closer to the Moon when it is at the zenith than when it is at the Horizon, the moon is slightly larger in apparent diameter at that time. This amounts to about 1 part in 120, or about 15 seconds of arc.
3. Synodic revolution:
The Moon appears to move from the right ascension of the Sun (New Moon) around the celestial sphere and back to the Right Ascension of the sun in 29d 12h 44m. The Moon's orbital speed is 632 wiles per second.
4. Sidereal revolution:
The Moon appears to move from a point in space around the celestial sphere and back to the same point in space in 27d 7h 43m.
5. Secular slowing of the moon's motion:
As the Moon exerts a tidal influence on the Earth, the earth is slowing down. This means that it apparently takes a little longer for the celestial sphere to revolve, slowing down the motions respectively. Conversely, the Earth exerts a tidal influence on the Moon, causing it to slow down in orbit. According to the laws of celestial mechanics this causes the Moon to move away from the earth.
6. Monthly growth and shrinking:
Since the Moon's orbit is an ellipse Varying in size, the moon appears to be a little larger at times. When the Moon is closest, (226,000 miles), its apparent diameter is 33'28". When it is farthest, (252,000 miles), its apparent diameter is 25'22". (This is the reason for annular solar eclipses. When the moon is farthest away, it will not cover the sun, whose diameter is approx. 32'.
7. Rotation on its axis:
Although the Moon appears to have no rotation, it must, in fact, rotate once per revolution in order to keep the same face toward the Earth.
8. East-west Libration:
The moon appears to rock from side to side as it revolves around the Earth. This is because the Moon does not exactly face toward the centre of the Earth, but rather, toward the Centre of its orbit. Consequently, we see a bit around one side of the Moon, and then a bit around the other as a month passes.
9. Daily variation in East West Libration:
Since the observer moves approximately 8,000 miles (the diameter of the earth) between Moonrise and Moonset) he is looking at the moon from a slightly different angle. This allows him to see around the edges, (limbs) of the Moon, more than the ordinary libration would allow.
10. North-South Libration
The Moon's orbit is inclined to the Earth's orbit. Thus at times the Moon is farther "North" in space. At this time we see a bit under the south limb of the Moon. At other times the Moon is farther "South" in space and we see over its top.
11. Revolution of the Major Orbital Axis:
The major axis of the Moon's orbit revolves eastward with a period of 3232 days, or 8 years 310 days.
12. Revolution of the Nodes:
If the Moon's orbit, and the Earth's orbit are represented by planes, the line of intersection of the two planes is called the line of nodes. This line is revolving westward in 6798 days, or 18 years 224 days.
13. Variation of the inclination:
The inclination of the Moon's orbit to the earth's orbit is about 5° 8'. However there is a small variation in this inclination, from 5° 0' 1" to 5° 17'35". The period of oscillation is 173 days.
14. Equation of the Centre:
If the Moon's orbit were circular the Moon would revolve at a constant speed. However, the orbit is elliptical so that the Moon travels faster at certain times, and slower at other times. This makes the Moon up to 6° early or late during the period of a month.
15. Evection:
Evection is the sun’s influence on the Moon. It causes the Moon to speed up and slow down in its orbit, causing the quarter phases to occur unevenly (i.e. New Moon, 1st Quarter, Full Moon, and Last Quarter are not equidistant in time.) (Other factors influence this too, but evection is in there, causing accelerations and decelerations.)
16. Parallactic Displacement:
If the earth did not rotate, the Moon would appear to move eastward through the stars by a given amount each night. However, since the Earth rotates eastward, the Moon is displaced slightly westward and does not appear to make as much eastward progress as it normally does.
There are approximately 500 other variations in the Moon's motion which are too complicated or too minor to be enumerated here. However, they have tormented geometers for years, and it is only with the advent of the computer, and with the landing of man and his laser reflectors on the lunar surface, that we have been able to precisely measure the Motions of the Moon.