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  • Do I need a Point and a Vector object? Or just using a Vector object to represent a Point is ok?

    - by JCM
    Structuring the components of an engine that I am developing along with a friend (learning purposes), I came to this doubt. Initially we had a Point constructor, like the following: var Point = function( x, y ) { this.x = x; this.y = y; }; But them we started to add some Vector math to it, and them decided to rename it to Vector2d. But now, some methods are a bit confusing (at least in my opinion), such as the following, which is used to make a line: //before the renaming of Point to Vector2, the parameters were startingPoint and endingPoint Geometry.Line = function( startingVector, endingVector ) { //... }; I should make a specific constructor for the Point object, or there are no problems in defining a point as a vector? I know a vector have magnitude and direction, but I see so many people using a vector to just represent the position of an object.

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  • Adding 2D vector movement with rotation applied

    - by Michael Zehnich
    I am trying to apply a slight sine wave movement to objects that float around the screen to make them a little more interesting. I would like to apply this to the objects so that they oscillate from side to side, not front to back (so the oscillation does not affect their forward velocity). After reading various threads and tutorials, I have come to the conclusion that I need to create and add vectors, but I simply cannot come up with a solution that works. This is where I'm at right now, in the object's update method (updated based on comments): Vector2 oldPosition = new Vector2(spritePos.X, spritePos.Y); //note: newPosition is initially set in the constructor to spritePos.x/y Vector2 direction = newPosition - oldPosition; Vector2 perpendicular = new Vector2(direction.Y, -direction.X); perpendicular.Normalize(); sinePosAng += 0.1f; perpendicular.X += 2.5f * (float)Math.Sin(sinePosAng); spritePos.X += velocity * (float)Math.Cos(radians); spritePos.Y += velocity * (float)Math.Sin(radians); spritePos += perpendicular; newPosition = spritePos;

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  • Rotate a vector

    - by marc wellman
    I want my first-person camera to smoothly change its viewing direction from direction d1 to direction d2. The latter direction is indicated by a target position t2. So far I have implemented a rotation that works fine but the speed of the rotation slows down the closer the current direction gets to the desired one. This is what I want to avoid. Here are the two very simple methods I have written so far: // this method initiates the direction change and sets the parameter public void LookAt(Vector3 target) { _desiredDirection = target - _cameraPosition; _desiredDirection.Normalize(); _rotation = new Matrix(); _rotationAxis = Vector3.Cross(Direction, _desiredDirection); _isLooking = true; } // this method gets execute by the Update()-method if _isLooking flag is up. private void _lookingAt() { dist = Vector3.Distance(Direction, _desiredDirection); // check whether the current direction has reached the desired one. if (dist >= 0.00001f) { _rotationAxis = Vector3.Cross(Direction, _desiredDirection); _rotation = Matrix.CreateFromAxisAngle(_rotationAxis, MathHelper.ToRadians(1)); Direction = Vector3.TransformNormal(Direction, _rotation); } else { _onDirectionReached(); _isLooking = false; } } Again, rotation works fine; camera reaches its desired direction. But the speed is not equal over the course of movement - it slows down. How to achieve a rotation with constant speed ?

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  • Vector transform equation explanation

    - by cyberdemon
    I'm trying to understand the maths of moving points in a 3d space by making a game written in C#. I'm looking at this wolfire blog series which explains some basic 3d maths. I've read the first two parts but am stuck on the 3rd. I know it's all really rudimentary stuff but I find Googling for help with equations really hard. The one I'm struggling with is: 0*(0.66,0.75) + 2*(-0.75, 0.66) = (-1.5, 1.3) How can anything multiplied by 0 not be 0? So my question is how does this look in code: x(a,b) + y(c,d) I know it's basic stuff but I just can't see it.

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  • std::vector elements initializing

    - by Chameleon
    std::vector<int> v1(1000); std::vector<std::vector<int>> v2(1000); std::vector<std::vector<int>::const_iterator> v3(1000); How elements of these 3 vectors initialized? About int, I test it and I saw that all elements become 0. Is this standard? I believed that primitives remain undefined. I create a vector with 300000000 elements, give non-zero values, delete it and recreate it, to avoid OS memory clear for data safety. Elements of recreated vector were 0 too. What about iterator? Is there a initial value (0) for default constructor or initial value remains undefined? When I check this, iterators point to 0, but this can be OS When I create a special object to track constructors, I saw that for first object, vector run the default constructor and for all others it run the copy constructor. Is this standard? Is there a way to completely avoid initialization of elements? Or I must create my own vector? (Oh my God, I always say NOT ANOTHER VECTOR IMPLEMENTATION) I ask because I use ultra huge sparse matrices with parallel processing, so I cannot use push_back() and of course I don't want useless initialization, when later I will change the value.

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  • Cast vector<T> to vector<const T>

    - by user345386
    I have a member variable of type vector (where is T is a custom class, but it could be int as well.) I have a function from which I want to return a pointer to this vector, but I don't want the caller to be able to change the vector or it's items. So I want the return type to be const vector* None of the casting methods I tried worked. The compiler keeps complaining that T is not compatible with const T. Here's some code that demonstrates the gist of what I'm trying to do; vector<int> a; const vector<const int>* b = (const vector<const int>* ) (&a); This code doesn't compile for me. Thanks in advance!

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  • Would vector of vectors be contiguous?

    - by user1150989
    I need to allocate a vector of rows where row contains a vector of rows. I know that a vector would be contiguous. I wanted to know whether a vector of vectors would also be contiguous. Example code is given below vector<long> firstRow; firstRow.push_back(0); firstRow.push_back(1); vector<long> secondRow; secondRow.push_back(0); secondRow.push_back(1); vector< vector < long> > data; data.push_back(firstRow); data.push_back(secondRow); Would the sequence in memory be 0 1 0 1?

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  • C++ vector reference parameter

    - by Archanimus
    Hello folks, let's say we have a class class MyClass { vector<vector<int > > myMatrice; public : MyClass(vector<vector<int > > &); } MyClass::MyClass(vector<vector<int > > & m) { myMatrice = m; } During the instanciation of MyClass, I pass a big vector < vector < int and I find that the object is actually copied and not only the reference, so it takes the double of the memory ... Please, can anyone help me out with this problem, I'm stuck since too many time ... And thanks a lot!

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  • Populate array from vector

    - by Zag zag..
    Hi, I would like to populate an 2 dimensional array, from a vector. I think the best way to explain myself is to put some examples (with a array of [3,5] length). When vector is: [1, 0] [ [4, 3, 2, 1, 0], [4, 3, 2, 1, 0], [4, 3, 2, 1, 0] ] When vector is: [-1, 0] [ [0, 1, 2, 3, 4], [0, 1, 2, 3, 4], [0, 1, 2, 3, 4] ] When vector is: [-2, 0] [ [0, 0, 1, 1, 2], [0, 0, 1, 1, 2], [0, 0, 1, 1, 2] ] When vector is: [1, 1] [ [2, 2, 2, 1, 0], [1, 1, 1, 1, 0], [0, 0, 0, 0, 0] ] When vector is: [0, 1] [ [2, 2, 2, 2, 2], [1, 1, 1, 1, 1], [0, 0, 0, 0, 0] ] Have you got any ideas, a good library or a plan? Any comments are welcome. Thanks. Note: I consulted Ruby "Matrix" and "Vector" classes, but I don't see any way to use it in my way... Edit: In fact, each value is the number of cells (from the current cell to the last cell) according to the given vector. If we take the example where the vector is [-2, 0], with the value *1* (at array[2, 3]): array = [ [<0>, <0>, <1>, <1>, <2>], [<0>, <0>, <1>, <1>, <2>], [<0>, <0>, <1>, *1*, <2>] ] ... we could think such as: The vector [-2, 0] means that -2 is for cols and 0 is for rows. So if we are in array[2, 3], we can move 1 time on the left (left because 2 is negative) with 2 length (because -2.abs == 2). And we don't move on the top or bottom, because of 0 for rows.

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  • How can I move a polygon edge 1 unit away from the center?

    - by Stephen
    Let's say I have a polygon class that is represented by a list of vector classes as vertices, like so: var Vector = function(x, y) { this.x = x; this.y = y; }, Polygon = function(vectors) { this.vertices = vectors; }; Now I make a polygon (in this case, a square) like so: var poly = new Polygon([ new Vector(2, 2), new Vector(5, 2), new Vector(5, 5), new Vector(2, 5) ]); So, the top edge would be [poly.vertices[0], poly.vertices[1]]. I need to stretch this polygon by moving each edge away from the center of the polygon by one unit, along that edge's normal. The following example shows the first edge, the top, moved one unit up: The final polygon should look like this new one: var finalPoly = new Polygon([ new Vector(1, 1), new Vector(6, 1), new Vector(6, 6), new Vector(1, 6) ]); It is important that I iterate, moving one edge at a time, because I will be doing some collision tests after moving each edge. Here is what I tried so far (simplified for clarity), which fails triumphantly: for(var i = 0; i < vertices.length; i++) { var a = vertices[i], b = vertices[i + 1] || vertices[0]; // in case of final vertex var ax = a.x, ay = a.y, bx = b.x, by = b.y; // get some new perpendicular vectors var a2 = new Vector(-ay, ax), b2 = new Vector(-by, bx); // make into unit vectors a2.convertToUnitVector(); b2.convertToUnitVector(); // add the new vectors to the original ones a.add(a2); b.add(b2); // the rest of the code, collision tests, etc. } This makes my polygon start slowly rotating and sliding to the left, instead of what I need. Finally, the example shows a square, but the polygons in question could be anything. They will always be convex, and always with vertices in clockwise order.

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  • How to stop a ICMP attack?

    - by cumhur onat
    We are under a heavy icmp flood attack. Tcpdump shows the result below. Altough we have blocked ICMP with iptables tcpdump still prints icmp packets. I've also attached iptables configuration and "top" result. Is there any thing I can do to completely stop icmp packets? [root@server downloads]# tcpdump icmp -v -n -nn tcpdump: listening on eth0, link-type EN10MB (Ethernet), capture size 96 bytes 03:02:47.810957 IP (tos 0x0, ttl 49, id 16007, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 124, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.811559 IP (tos 0x0, ttl 49, id 16010, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 52, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.811922 IP (tos 0x0, ttl 49, id 16012, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 122, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.812485 IP (tos 0x0, ttl 49, id 16015, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 126, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.812613 IP (tos 0x0, ttl 49, id 16016, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 122, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.812992 IP (tos 0x0, ttl 49, id 16018, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 122, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.813582 IP (tos 0x0, ttl 49, id 16020, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 52, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.814092 IP (tos 0x0, ttl 49, id 16023, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 120, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.814233 IP (tos 0x0, ttl 49, id 16024, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 120, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.815579 IP (tos 0x0, ttl 49, id 16025, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 50, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.815726 IP (tos 0x0, ttl 49, id 16026, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 IP (tos 0x0, ttl 50, id 31864, offset 0, flags [none], proto: ICMP (1), length: 76) 77.92.136.196 > 94.201.175.188: [|icmp] 03:02:47.815890 IP (tos 0x0, ttl 49, id 16027, offset 0, flags [none], proto: ICMP (1), length: 56) 80.227.64.183 > 77.92.136.196: ICMP redirect 94.201.175.188 to host 80.227.64.129, length 36 iptables configuration: [root@server etc]# iptables -L Chain INPUT (policy ACCEPT) target prot opt source destination ofis tcp -- anywhere anywhere tcp dpt:mysql ofis tcp -- anywhere anywhere tcp dpt:ftp DROP icmp -- anywhere anywhere Chain FORWARD (policy ACCEPT) target prot opt source destination Chain OUTPUT (policy ACCEPT) target prot opt source destination DROP icmp -- anywhere anywhere Chain ofis (2 references) target prot opt source destination ACCEPT all -- OUR_OFFICE_IP anywhere DROP all -- anywhere anywhere top: top - 03:12:19 up 400 days, 15:43, 3 users, load average: 1.49, 1.67, 2.61 Tasks: 751 total, 3 running, 748 sleeping, 0 stopped, 0 zombie Cpu(s): 8.2%us, 1.0%sy, 0.0%ni, 87.9%id, 2.1%wa, 0.1%hi, 0.7%si, 0.0%st Mem: 32949948k total, 26906844k used, 6043104k free, 4707676k buffers Swap: 10223608k total, 0k used, 10223608k free, 14255584k cached PID USER PR NI VIRT RES SHR S %CPU %MEM TIME+ COMMAND 36 root 39 19 0 0 0 R 100.8 0.0 17:03.56 ksoftirqd/11 10552 root 15 0 11408 1460 676 R 5.7 0.0 0:00.04 top 7475 lighttpd 15 0 304m 22m 15m S 3.8 0.1 0:05.37 php-cgi 1294 root 10 -5 0 0 0 S 1.9 0.0 380:54.73 kjournald 3574 root 15 0 631m 11m 5464 S 1.9 0.0 0:00.65 node 7766 lighttpd 16 0 302m 19m 14m S 1.9 0.1 0:05.70 php-cgi 10237 postfix 15 0 52572 2216 1692 S 1.9 0.0 0:00.02 scache 1 root 15 0 10372 680 572 S 0.0 0.0 0:07.99 init 2 root RT -5 0 0 0 S 0.0 0.0 0:16.72 migration/0 3 root 34 19 0 0 0 S 0.0 0.0 0:00.06 ksoftirqd/0 4 root RT -5 0 0 0 S 0.0 0.0 0:00.00 watchdog/0 5 root RT -5 0 0 0 S 0.0 0.0 1:10.46 migration/1 6 root 34 19 0 0 0 S 0.0 0.0 0:01.11 ksoftirqd/1 7 root RT -5 0 0 0 S 0.0 0.0 0:00.00 watchdog/1 8 root RT -5 0 0 0 S 0.0 0.0 2:36.15 migration/2 9 root 34 19 0 0 0 S 0.0 0.0 0:00.19 ksoftirqd/2 10 root RT -5 0 0 0 S 0.0 0.0 0:00.00 watchdog/2 11 root RT -5 0 0 0 S 0.0 0.0 3:48.91 migration/3 12 root 34 19 0 0 0 S 0.0 0.0 0:00.20 ksoftirqd/3 13 root RT -5 0 0 0 S 0.0 0.0 0:00.00 watchdog/3 uname -a [root@server etc]# uname -a Linux thisis.oursite.com 2.6.18-238.19.1.el5 #1 SMP Fri Jul 15 07:31:24 EDT 2011 x86_64 x86_64 x86_64 GNU/Linux arp -an [root@server downloads]# arp -an ? (77.92.136.194) at 00:25:90:04:F0:90 [ether] on eth0 ? (192.168.0.2) at 00:25:90:04:F0:91 [ether] on eth1 ? (77.92.136.193) at 00:23:9C:0B:CD:01 [ether] on eth0

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  • Looking for "bitmap-vector" image editor

    - by Borek
    I used to use PhotoImpact which is no longer developed so I'm looking for a replacement. What made PhotoImpact great to me was the ability to work in both bitmap and vector modes. What I mean by that: I could have an image or screenshot and easily add arrows, text captions or shapes to it. These shapes were vector objects so I could come back to them later and amend their properties easily. Software I know of: Paint.NET is purely bitmap so please don't recommend it - layers are not enough for my needs Drawing tools in MS Office work pretty much the way I'd like - you can paste an image and then add vector objects on top of it. It just doesn't feel right to have the full-fidelity original images stored as .docx or .pptx (I don't fully trust Word/Powerpoint that they don't compress the image) I'm not sure about GIMP but if it's just "better Paint.NET" (i.e., layers but no vector objects) I'm not interested Photoshop is out of question purely because of its price tag Corel killed PhotoImpact because they already had a competing product (Paint Shop Pro) but AFAIK it lacks vector features. Any tips for PhotoImpact alternatives would be very welcome.

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  • KD-Trees and missing values (vector comparison)

    - by labratmatt
    I have a system that stores vectors and allows a user to find the n most similar vectors to the user's query vector. That is, a user submits a vector (I call it a query vector) and my system spits out "here are the n most similar vectors." I generate the similar vectors using a KD-Tree and everything works well, but I want to do more. I want to present a list of the n most similar vectors even if the user doesn't submit a complete vector (a vector with missing values). That is, if a user submits a vector with three dimensions, I still want to find the n nearest vectors (stored vectors are of 11 dimensions) I have stored. I have a couple of obvious solutions, but I'm not sure either one seem very good: Create multiple KD-Trees each built using the most popular subset of dimensions a user will search for. That is, if a user submits a query vector of thee dimensions, x, y, z, I match that query to my already built KD-Tree which only contains vectors of three dimensions, x, y, z. Ignore KD-Trees when a user submits a query vector with missing values and compare the query vector to the vectors (stored in a table in a DB) one by one using something like a dot product. This has to be a common problem, any suggestions? Thanks for the help.

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  • Httpd problem, suspect an attack but not sure

    - by Bob
    On one of my servers when I type netstat -n I get a huge output, something like 400 entries for httpd. The bandwidth on the server isn't high, so I'm confused as to what's causing it. I'm suspecting an attack, but not sure. Intermittently, the web server will stop responding. When this happens all other services such as ping, ftp, work just normally. System load is also normal. The only thing that isn't normal I think is the "netstat -n" output. Can you guys take a look and see if there's something I can do? I have APF installed, but not sure what rules I should put into place to mitigate the problem. Btw, I'm running CentOS 5 Linux with Apache 2. root@linux [/backup/stuff/apf-9.7-1]# netstat -n|grep :80 tcp 0 0 120.136.23.56:80 220.181.94.220:48397 TIME_WAIT tcp 0 0 120.136.23.56:80 218.86.49.153:1734 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:48316 TIME_WAIT tcp 0 0 120.136.23.56:80 208.80.193.33:54407 TIME_WAIT tcp 0 0 120.136.23.56:80 65.49.2.180:46768 TIME_WAIT tcp 0 0 120.136.23.56:80 120.0.70.180:9414 FIN_WAIT2 tcp 0 0 120.136.23.56:80 221.130.177.101:43386 TIME_WAIT tcp 0 0 120.136.23.92:80 220.181.7.112:51601 TIME_WAIT tcp 0 0 120.136.23.94:80 220.181.94.215:53097 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.188.236:53203 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:62297 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:64345 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.115.105:36600 TIME_WAIT tcp 0 0 120.136.23.56:80 118.77.25.129:1743 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.220:35107 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:61801 TIME_WAIT tcp 0 0 120.136.23.56:80 66.249.69.155:57641 TIME_WAIT tcp 0 1009 120.136.23.56:80 114.249.218.24:17204 CLOSING tcp 0 0 120.136.23.93:80 119.235.237.85:45355 TIME_WAIT tcp 0 0 120.136.23.56:80 217.212.224.182:45195 TIME_WAIT tcp 0 0 120.136.23.56:80 220.189.10.170:1556 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.102:35701 TIME_WAIT tcp 0 0 120.136.23.56:80 118.77.25.129:1745 TIME_WAIT tcp 0 0 120.136.23.56:80 118.77.25.129:1749 TIME_WAIT tcp 0 0 120.136.23.56:80 118.77.25.129:1748 TIME_WAIT tcp 0 0 120.136.23.56:80 221.195.76.250:26635 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.111.239:58417 TIME_WAIT tcp 0 0 120.136.23.56:80 67.218.116.164:53370 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.236:56168 TIME_WAIT tcp 0 0 120.136.23.93:80 120.136.23.93:36947 TIME_WAIT tcp 0 1009 120.136.23.56:80 114.249.218.24:16991 CLOSING tcp 0 305 120.136.23.56:80 59.58.149.147:1881 ESTABLISHED tcp 0 0 120.136.23.56:80 61.186.48.148:1405 ESTABLISHED tcp 0 0 120.136.23.56:80 123.125.66.46:26703 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4814 TIME_WAIT tcp 0 0 120.136.23.56:80 218.86.49.153:1698 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4813 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4810 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.236:60508 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4811 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.125.71:43991 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.125.71:52182 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4806 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.125.71:56024 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4805 TIME_WAIT tcp 0 0 120.136.23.56:80 222.89.251.167:2133 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:48340 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:63543 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.220:39544 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.125.71:48066 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4822 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.113.253:55817 TIME_WAIT tcp 0 0 120.136.23.56:80 219.141.124.130:11316 FIN_WAIT2 tcp 0 0 120.136.23.56:80 222.84.58.254:4820 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4816 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.140:40743 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.125.71:60979 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29255 LAST_ACK tcp 0 0 120.136.23.56:80 117.36.231.149:4078 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29251 LAST_ACK tcp 0 0 120.136.23.56:80 117.36.231.149:4079 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29260 LAST_ACK tcp 0 0 120.136.23.56:80 220.181.94.236:51379 TIME_WAIT tcp 0 0 120.136.23.56:80 114.237.16.26:1363 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29263 LAST_ACK tcp 0 0 120.136.23.56:80 220.181.94.220:63106 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.101:45795 TIME_WAIT tcp 0 0 120.136.23.56:80 111.224.115.203:46315 ESTABLISHED tcp 0 0 120.136.23.56:80 66.249.69.5:35081 ESTABLISHED tcp 0 0 120.136.23.56:80 203.209.252.26:51590 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29268 LAST_ACK tcp 0 0 120.136.23.80:80 216.7.175.100:54555 TIME_WAIT tcp 0 0 120.136.23.92:80 220.181.7.38:47180 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:64467 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29265 LAST_ACK tcp 0 0 120.136.23.92:80 220.181.7.110:46593 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29276 LAST_ACK tcp 0 0 120.136.23.56:80 117.36.231.149:4080 TIME_WAIT tcp 0 0 120.136.23.56:80 117.36.231.149:4081 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:50215 TIME_WAIT tcp 0 101505 120.136.23.56:80 111.166.41.15:1315 ESTABLISHED tcp 0 2332 120.136.23.56:80 221.180.12.66:29274 LAST_ACK tcp 0 0 120.136.23.56:80 222.84.58.254:4878 TIME_WAIT tcp 0 1 120.136.23.93:80 58.33.226.66:4715 FIN_WAIT1 tcp 0 0 120.136.23.56:80 222.84.58.254:4877 TIME_WAIT tcp 0 1009 120.136.23.56:80 114.249.218.24:17062 CLOSING tcp 0 2332 120.136.23.56:80 221.180.12.66:29280 LAST_ACK tcp 0 0 120.136.23.56:80 222.84.58.254:4874 TIME_WAIT tcp 0 0 120.136.23.93:80 124.115.0.28:59777 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4872 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4870 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:50449 TIME_WAIT tcp 0 0 120.136.23.56:80 222.84.58.254:4868 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.107:37579 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.114.238:34255 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.105:35530 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.220:43960 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.111.229:41667 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.220:52669 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.111.239:56779 TIME_WAIT tcp 1 16560 120.136.23.56:80 210.13.118.102:43675 CLOSE_WAIT tcp 0 1009 120.136.23.56:80 114.249.218.24:17084 CLOSING tcp 0 0 120.136.23.56:80 221.130.177.105:33501 TIME_WAIT tcp 0 0 120.136.23.93:80 123.116.230.132:9703 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:49414 TIME_WAIT tcp 0 0 120.136.23.56:80 220.168.66.48:3360 ESTABLISHED tcp 0 0 120.136.23.56:80 220.168.66.48:3361 FIN_WAIT2 tcp 0 0 120.136.23.56:80 220.168.66.48:3362 ESTABLISHED tcp 0 0 120.136.23.80:80 66.249.68.183:39813 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:51569 TIME_WAIT tcp 0 0 120.136.23.56:80 216.129.119.11:58377 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.111.229:41914 TIME_WAIT tcp 0 0 120.136.23.56:80 60.213.146.54:33921 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:50287 TIME_WAIT tcp 0 0 120.136.23.56:80 61.150.84.6:2094 TIME_WAIT tcp 0 0 120.136.23.56:80 67.218.116.166:33262 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.101:38064 TIME_WAIT tcp 0 0 120.136.23.56:80 110.75.167.223:39895 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.99:48991 TIME_WAIT tcp 1 16560 120.136.23.56:80 210.13.118.102:61893 CLOSE_WAIT tcp 0 0 120.136.23.93:80 61.152.250.144:42832 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.174:37484 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:63403 TIME_WAIT tcp 0 0 120.136.23.56:80 119.119.247.249:62121 TIME_WAIT tcp 0 0 120.136.23.56:80 66.249.69.155:62189 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.80:60303 TIME_WAIT tcp 0 363 120.136.23.56:80 123.89.153.157:39067 ESTABLISHED tcp 0 0 127.0.0.1:80 127.0.0.1:49406 TIME_WAIT tcp 0 0 120.136.23.92:80 66.249.65.226:61423 TIME_WAIT tcp 0 0 120.136.23.56:80 122.136.173.33:19652 TIME_WAIT tcp 0 2332 120.136.23.56:80 221.180.12.66:29243 LAST_ACK tcp 0 0 120.136.23.56:80 122.136.173.33:19653 FIN_WAIT2 tcp 0 0 120.136.23.56:80 122.86.41.132:5061 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.179.90:51318 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5060 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:54333 TIME_WAIT tcp 0 1 120.136.23.56:80 122.86.41.132:5062 LAST_ACK tcp 0 0 120.136.23.56:80 220.181.94.229:42547 ESTABLISHED tcp 0 0 120.136.23.56:80 123.125.66.135:39557 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5057 TIME_WAIT tcp 0 0 120.136.23.56:80 202.127.20.37:17012 ESTABLISHED tcp 0 0 120.136.23.56:80 202.127.20.37:17013 ESTABLISHED tcp 0 0 120.136.23.93:80 222.190.105.186:4641 FIN_WAIT2 tcp 0 0 120.136.23.56:80 122.86.41.132:5059 TIME_WAIT tcp 0 0 120.136.23.56:80 202.127.20.37:17014 ESTABLISHED tcp 0 0 120.136.23.56:80 60.169.49.238:64078 ESTABLISHED tcp 0 0 120.136.23.56:80 122.86.41.132:5058 TIME_WAIT tcp 0 0 120.136.23.56:80 202.127.20.37:17015 ESTABLISHED tcp 0 0 120.136.23.56:80 60.169.49.238:64079 ESTABLISHED tcp 0 0 120.136.23.56:80 202.127.20.37:17016 ESTABLISHED tcp 0 0 120.136.23.56:80 67.195.113.224:53092 TIME_WAIT tcp 0 1 120.136.23.56:80 122.86.41.132:5065 LAST_ACK tcp 0 0 120.136.23.56:80 122.86.41.132:5064 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5067 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5066 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:58200 TIME_WAIT tcp 0 27544 120.136.23.56:80 124.160.125.8:8189 LAST_ACK tcp 0 0 120.136.23.56:80 123.125.66.27:30477 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.102:60019 TIME_WAIT tcp 0 0 120.136.23.56:80 60.169.49.238:64080 FIN_WAIT2 tcp 0 0 120.136.23.56:80 220.181.94.229:37673 TIME_WAIT tcp 0 26136 120.136.23.56:80 60.169.49.238:64081 ESTABLISHED tcp 0 0 120.136.23.56:80 202.127.20.37:17002 ESTABLISHED tcp 0 0 120.136.23.56:80 60.169.49.238:64082 ESTABLISHED tcp 0 0 120.136.23.56:80 60.169.49.238:64083 ESTABLISHED tcp 0 0 120.136.23.56:80 60.169.49.238:64084 FIN_WAIT2 tcp 0 0 120.136.23.56:80 60.169.49.238:64085 FIN_WAIT2 tcp 0 0 120.136.23.56:80 219.131.92.53:4084 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4085 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4086 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:42269 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56911 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56910 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4081 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.221:34606 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4082 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:25451 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4083 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.100:55875 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.100:51522 TIME_WAIT tcp 0 0 120.136.23.56:80 111.9.9.224:49650 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4088 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4089 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18753 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18752 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18755 TIME_WAIT tcp 0 0 120.136.23.56:80 66.249.69.2:43954 ESTABLISHED tcp 0 0 120.136.23.56:80 124.224.63.144:18754 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.231:48903 TIME_WAIT tcp 0 0 120.136.23.56:80 121.0.29.194:61655 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56915 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56914 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:16247 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56913 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:59909 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:48389 TIME_WAIT tcp 0 0 120.136.23.56:80 125.238.149.46:56912 TIME_WAIT tcp 0 0 120.136.23.93:80 222.190.105.186:4635 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.106:44326 TIME_WAIT tcp 0 0 120.136.23.56:80 222.170.217.26:1812 TIME_WAIT tcp 0 0 120.136.23.56:80 222.170.217.26:1810 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.104:36898 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:39033 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.231:58229 TIME_WAIT tcp 0 0 120.136.23.56:80 222.170.217.26:1822 TIME_WAIT tcp 0 0 120.136.23.56:80 222.170.217.26:1820 TIME_WAIT tcp 0 0 120.136.23.56:80 121.206.183.172:2214 FIN_WAIT2 tcp 0 0 120.136.23.56:80 220.181.94.221:54341 TIME_WAIT tcp 0 0 120.136.23.56:80 222.170.217.26:1818 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18751 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18750 TIME_WAIT tcp 0 0 120.136.23.56:80 61.177.143.210:4226 TIME_WAIT tcp 0 0 120.136.23.56:80 116.9.9.250:55700 TIME_WAIT tcp 0 39599 120.136.23.93:80 125.107.166.221:3083 ESTABLISHED tcp 0 0 120.136.23.56:80 120.86.215.180:62554 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.100:48442 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34199 TIME_WAIT tcp 0 69227 120.136.23.93:80 125.107.166.221:3084 ESTABLISHED tcp 0 0 120.136.23.56:80 220.181.94.231:53605 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34196 TIME_WAIT tcp 0 0 120.136.23.56:80 120.86.215.180:62556 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34203 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.104:40252 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34202 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18731 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34201 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34200 TIME_WAIT tcp 0 0 120.136.23.56:80 111.9.9.224:49538 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.57:49229 TIME_WAIT tcp 0 0 120.136.23.56:80 124.224.63.144:18734 TIME_WAIT tcp 0 0 120.136.23.56:80 123.150.182.221:34204 TIME_WAIT tcp 0 0 120.136.23.56:80 111.72.156.95:2517 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.229:59728 TIME_WAIT tcp 0 0 120.136.23.56:80 116.20.61.208:50598 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5031 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5030 TIME_WAIT tcp 0 0 120.136.23.56:80 220.191.255.196:46290 FIN_WAIT2 tcp 0 0 120.136.23.56:80 122.86.41.132:5037 TIME_WAIT tcp 0 1 120.136.23.56:80 122.86.41.132:5036 LAST_ACK tcp 0 0 120.136.23.80:80 115.56.48.140:38058 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5039 TIME_WAIT tcp 0 0 120.136.23.80:80 115.56.48.140:38057 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5038 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:45862 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5033 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5032 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5034 TIME_WAIT tcp 0 0 120.136.23.56:80 111.9.9.224:49582 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.221:38777 TIME_WAIT tcp 0 0 120.136.23.56:80 123.125.66.15:27007 TIME_WAIT tcp 0 0 120.136.23.56:80 67.195.37.98:59848 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5040 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:14651 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.221:58495 TIME_WAIT tcp 0 0 120.136.23.56:80 111.72.156.95:2765 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5053 TIME_WAIT tcp 0 0 120.136.23.56:80 120.86.215.180:62578 ESTABLISHED tcp 0 0 120.136.23.56:80 202.160.179.58:36715 TIME_WAIT tcp 0 0 120.136.23.56:80 122.86.41.132:5048 TIME_WAIT tcp 0 0 120.136.23.93:80 61.153.27.172:4889 TIME_WAIT tcp 0 0 120.136.23.56:80 111.72.156.95:1995 TIME_WAIT tcp 0 0 120.136.23.56:80 111.9.9.224:49501 TIME_WAIT tcp 0 12270 120.136.23.56:80 119.12.4.49:49551 ESTABLISHED tcp 0 6988 120.136.23.56:80 119.12.4.49:49550 ESTABLISHED tcp 0 0 120.136.23.56:80 66.249.67.106:60516 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.179.76:56301 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.178.41:32907 TIME_WAIT tcp 0 0 120.136.23.93:80 61.153.27.172:24811 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.155:35617 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.229:50081 TIME_WAIT tcp 0 3650 120.136.23.56:80 119.12.4.49:49555 ESTABLISHED tcp 0 0 120.136.23.56:80 116.9.9.250:55632 TIME_WAIT tcp 0 4590 120.136.23.56:80 119.12.4.49:49554 ESTABLISHED tcp 0 823 120.136.23.56:80 119.12.4.49:49553 ESTABLISHED tcp 0 778 120.136.23.56:80 119.12.4.49:49552 ESTABLISHED tcp 0 31944 120.136.23.93:80 222.67.49.170:52229 ESTABLISHED tcp 0 0 120.136.23.93:80 219.219.127.2:44661 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.102:38602 TIME_WAIT tcp 0 0 120.136.23.56:80 61.177.143.210:4208 TIME_WAIT tcp 0 0 120.136.23.56:80 117.23.111.2:3297 TIME_WAIT tcp 0 0 120.136.23.56:80 111.72.156.95:2079 TIME_WAIT tcp 0 0 120.136.23.92:80 220.181.7.49:44133 TIME_WAIT tcp 0 0 120.136.23.80:80 125.46.48.20:38627 TIME_WAIT tcp 0 660 120.136.23.56:80 113.16.37.24:62908 LAST_ACK tcp 0 0 120.136.23.56:80 220.181.94.231:62850 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.235:33423 TIME_WAIT tcp 0 0 120.136.23.56:80 216.129.119.40:53331 TIME_WAIT tcp 0 0 120.136.23.56:80 116.248.65.32:2580 ESTABLISHED tcp 0 0 120.136.23.56:80 61.177.143.210:4199 TIME_WAIT tcp 0 0 120.136.23.93:80 125.107.166.221:3052 TIME_WAIT tcp 0 0 120.136.23.56:80 216.7.175.100:36933 TIME_WAIT tcp 0 1 120.136.23.56:80 183.35.149.94:2414 FIN_WAIT1 tcp 0 26963 120.136.23.56:80 124.160.125.8:8274 LAST_ACK tcp 0 0 120.136.23.93:80 61.153.27.172:16350 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.229:64907 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4116 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.102:32937 TIME_WAIT tcp 0 0 120.136.23.56:80 218.59.137.178:52731 FIN_WAIT2 tcp 0 0 120.136.23.56:80 123.125.66.53:31474 ESTABLISHED tcp 0 8950 120.136.23.56:80 221.194.136.245:21574 ESTABLISHED tcp 0 0 120.136.23.56:80 216.7.175.100:36922 TIME_WAIT tcp 0 0 120.136.23.56:80 216.7.175.100:36923 TIME_WAIT tcp 0 0 120.136.23.56:80 221.130.177.106:41386 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.221:62681 TIME_WAIT tcp 0 0 120.136.23.56:80 111.72.156.95:1639 ESTABLISHED tcp 0 0 120.136.23.56:80 219.131.92.53:4103 TIME_WAIT tcp 0 0 120.136.23.56:80 220.181.94.231:44007 TIME_WAIT tcp 0 0 120.136.23.93:80 61.153.27.172:15026 TIME_WAIT tcp 0 0 120.136.23.56:80 202.160.180.125:59521 TIME_WAIT tcp 0 660 120.136.23.56:80 113.16.37.24:62921 FIN_WAIT1 tcp 0 0 120.136.23.56:80 220.181.94.229:54767 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4148 ESTABLISHED tcp 0 0 120.136.23.93:80 202.104.103.210:2423 TIME_WAIT tcp 0 0 120.136.23.56:80 219.131.92.53:4149 ESTABLISHED tcp 0 0 120.136.23.56:80 219.131.

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  • Direct3D Rotation Matrix from Vector and vice-versa

    - by Beta Carotin
    I need to compute a rotation matrix from a direction vector, and a direction vector from a rotation matrix. The up direction should correspond to the z-axis, forward is y and right is x; D3DXMATRIX m; // the rotation matrix D3DXVECTOR3 v; // this is the direction vector wich is given D3DXVECTOR3 r; // resulting direction vector float len = D3DXVec3Length(&v); // length of the initial direction vector // compute matrix D3DXMatrixLookAtLH(&m, &v, &D3DXVECTOR3(0,0,0), &D3DXVECTOR3(0,0,1)); // use the matrix on a vector { 0, len, 0 } D3DXVec3TransformCoord(&r, &D3DXVECTOR3(0,len,0), &m); Now, the vector r should be equal to v, but it isnt. What exactly do I have to do to get the results I need?

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  • What sort of attack URL is this?

    - by Asker
    I set up a website with my own custom PHP code. It appears that people from places like Ukraine are trying to hack it. They're trying a bunch of odd accesses, seemingly to detect what PHP files I've got. They've discovered that I have PHP files called mail.php and sendmail.php, for instance. They've tried a bunch of GET options like: http://mydomain.com/index.php?do=/user/register/ http://mydomain.com/index.php?app=core&module=global§ion=login http://mydomain.com/index.php?act=Login&CODE=00 I suppose these all pertain to something like LiveJournal? Here's what's odd, and the subject of my question. They're trying this URL: http://mydomain.com?3e3ea140 What kind of website is vulnerable to a 32-bit hex number?

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  • SSH attack CentOS Amazon EC2

    - by user37143
    Hi, I run a few Rightscale CentOS AMI based instances on Amazon EC2. Two months back I found that our SSHD security is compromised( I had added host.allow and host.deny for ssh). So I created new instances and done an IP based ssh that allows only our IPs through AWS Firewall(ec2-authorize) and chnaged the ssh 22 default port to some other port but two days back I found I was not able to login to the server and when I tried on 22 port the ssh got connected and I found that sshd_conf was changed and when I tried to edit sshd_config I found root had no write permission on the file. So I tried a chmod and it said access denied for 'root' user. This is very strange. I checked secure log and history and found nothing informative. I have PHP, Ruby On Rails, Java, Wordpress apps running on these server. This time I did a chkrootkit scan and found nothing. I renamed the /etc/ssh folder and reinstalled openssh through yum. I had faced this on 3 instances on CentOS(5.2, 5.4) I have instances on Debian as well those working fine. Is this a CentOS/Rightscale issue. Guys, what security measures I should take to prevent this. Please support me this is very critical. Thanks

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  • Some questions about Vector in STL

    - by skydoor
    I have some questions about vector in STL to clarify..... Where are the objects in vector allocated? heap? does vector have boundary check? If the index out of the boundary, what error will happen? Why array is faster than vector? Is there any case in which vector is not applicable but array is a must?

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  • some qeustions about Vector in STL

    - by skydoor
    I have some questions about vector in STL to clarify..... 1 Where are the objects in vector allocated? heap? 2 does vector have boundary check? If the index out of the boundary, what error will happen? 3 Why array is faster than vector? 4 Is there any case in which vector is not applicable but array is a must?

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  • Finding character in String in Vector.

    - by SoulBeaver
    Judging from the title, I kinda did my program in a fairly complicated way. BUT! I might as well ask anyway xD This is a simple program I did in response to question 3-3 of Accelerated C++, which is an awesome book in my opinion. I created a vector: vector<string> countEm; That accepts all valid strings. Therefore, I have a vector that contains elements of strings. Next, I created a function int toLowerWords( vector<string> &vec ) { for( int loop = 0; loop < vec.size(); loop++ ) transform( vec[loop].begin(), vec[loop].end(), vec[loop].begin(), ::tolower ); that splits the input into all lowercase characters for easier counting. So far, so good. I created a third and final function to actually count the words, and that's where I'm stuck. int counter( vector<string> &vec ) { for( int loop = 0; loop < vec.size(); loop++ ) for( int secLoop = 0; secLoop < vec[loop].size(); secLoop++ ) { if( vec[loop][secLoop] == ' ' ) That just looks ridiculous. Using a two-dimensional array to call on the characters of the vector until I find a space. Ridiculous. I don't believe that this is an elegant or even viable solution. If it was a viable solution, I would then backtrack from the space and copy all characters I've found in a separate vector and count those. My question then is. How can I dissect a vector of strings into separate words so that I can actually count them? I thought about using strchr, but it didn't give me any epiphanies.

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  • C++ STL Map vs Vector speed

    - by sub
    In the interpreter for my experimental programming language I have a symbol table. Each symbol consists of a name and a value (the value can be e.g.: of type string, int, function, etc.). At first I represented the table with a vector and iterated through the symbols checking if the given symbol name fitted. Then I though using a map, in my case map<string,symbol>, would be better than iterating through the vector all the time but: It's a bit hard to explain this part but I'll try. If a variable is retrieved the first time in a program in my language, of course its position in the symbol table has to be found (using vector now). If I would iterate through the vector every time the line gets executed (think of a loop), it would be terribly slow (as it currently is, nearly as slow as microsoft's batch). So I could use a map to retrieve the variable: SymbolTable[ myVar.Name ] But think of the following: If the variable, still using vector, is found the first time, I can store its exact integer position in the vector with it. That means: The next time it is needed, my interpreter knows that it has been "cached" and doesn't search the symbol table for it but does something like SymbolTable.at( myVar.CachedPosition ). Now my (rather hard?) question: Should I use a vector for the symbol table together with caching the position of the variable in the vector? Should I rather use a map? Why? How fast is the [] operator? Should I use something completely different?

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  • C++ std::vector problems

    - by Faur Ioan-Aurel
    For 2 days i tried to explain myself some of the things that are happening in my c++ code,and i can't get a good explanation.I must say that i'm more a java programmer.Long time i used quite a bit the C language but i guess Java erased those skills and now i'm hitting a wall trying to port a few classes from java to c++. So let's say that we have this 2 classes: class ForwardNetwork { protected: ForwardLayer* inputLayer; ForwardLayer* outputLayer; vector<ForwardLayer* > layers; public: void ForwardNetwork::getLayers(std::vector< ForwardLayer* >& result ) { for(int i= 0 ;i< layers.size(); i++){ ForwardLayer* lay = dynamic_cast<ForwardLayer*>(this->layers.at(i)); if(lay != NULL) result.push_back(lay); else cout << "Layer at#" << i << " is null" << endl; } } void ForwardNetwork::addLayer ( ForwardLayer* layer ) { if(layer != NULL) cout << "Before push layer is not null" << endl; //setup the forward and back pointer if ( this->outputLayer != NULL ) { layer->setPrevious ( this->outputLayer ); this->outputLayer->setNext ( layer ); } //update the input layer and outputLayer variables if ( this->layers.size() == 0 ) this->inputLayer = this->outputLayer = layer; else this->outputLayer = layer; //push layer in vector this->layers.push_back ( layer ); for(int i = 0; i< layers.size();i++) if(layers[i] != NULL) cout << "Check::Layer[" << i << "] is not null!" << endl; } }; Second class: class Backpropagation : public Train { public: Backpropagation::Backpropagation ( FeedForwardNetwork* network ){ this->network = network; vector<FeedforwardLayer*> vec; network->getLayers(vec); } }; Now if i add from main() some layers into network via addLayer(..) method it's all good.My vector is just as it should.But after i call Backpropagation() constructor with a network object ,when i enter getLayers(), some of my objects from vector have their address set to NULL(they are randomly chosen:for example if i run my app once with 3 layer's into vector ,the first object from vector is null.If i run it second time first 2 objects are null,third time just first object null and so on). Now i can't explain why this is happening.I must say that all the objects that should be in vector they also live inside the network and they are not NULL; This happens everywhere after i done with addLayer() so not just in the getLayers(). I cant get a good grasp to this problem.I thought first that i might modify my vector.But i can't find such thing. Also why if the reference from vector is NULL ,the reference that lives inside ForwardNetwork as a linked list (inputLayer and outputLayer) is not NULL? I must ask for your help.Please ,if you have some advices don't hesitate! PS: as compiler i use g++ part of gcc 4.6.1 under ubuntu 11.10

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  • Ping flood attack every 5 seconds

    - by Mario
    My router's log, which is a D-Link DIR-600, shows 40 pages (and updating) of entries like: Nov 19 11:17:08 PING-FLOODING flooding attack from WAN (ip:85.250.85.11) detected. Nov 19 11:17:02 PING-FLOODING flooding attack from WAN (ip:85.131.129.176) detected. Nov 19 11:16:57 PING-FLOODING flooding attack from WAN (ip:122.107.244.152) detected. Nov 19 11:16:50 PING-FLOODING flooding attack from WAN (ip:88.103.8.96) detected. Nov 19 11:16:46 PING-FLOODING flooding attack from WAN (ip:212.142.91.106) detected. Nov 19 11:16:38 PING-FLOODING flooding attack from WAN (ip:184.170.6.63) detected. Nov 19 11:16:34 PING-FLOODING flooding attack from WAN (ip:1.239.96.192) detected. Nov 19 11:16:26 PING-FLOODING flooding attack from WAN (ip:120.29.76.184) detected. Nov 19 11:16:20 PING-FLOODING flooding attack from WAN (ip:110.77.137.228) detected. Nov 19 11:16:15 PING-FLOODING flooding attack from WAN (ip:201.141.51.210) detected. What should I do? ICMP is disabled (router does not respond to WAN pings).

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  • Weird behaviour with vector::erase and std::remove_if with end range different from vector.end()

    - by Edison Gustavo Muenz
    Hi, I need to remove elements from the middle of a std::vector. So I tried: struct IsEven { bool operator()(int ele) { return ele % 2 == 0; } }; int elements[] = {1, 2, 3, 4, 5, 6}; std::vector<int> ints(elements, elements+6); std::vector<int>::iterator it = std::remove_if(ints.begin() + 2, ints.begin() + 4, IsEven()); ints.erase(it, ints.end()); After this I would expect that the ints vector have: [1, 2, 3, 5, 6]. In the debugger of Visual studio 2008, after the std::remove_if line, the elements of ints are modified, I'm guessing I'm into some sort of undefined behaviour here. So, how do I remove elements from a Range of a vector?

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