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  • MPI signal handling

    - by Seth Johnson
    When using mpirun, is it possible to catch signals (for example, the SIGINT generated by ^C) in the code being run? For example, I'm running a parallelized python code. I can except KeyboardInterrupt to catch those errors when running python blah.py by itself, but I can't when doing mpirun -np 1 python blah.py. Does anyone have a suggestion? Even finding how to catch signals in a C or C++ compiled program would be a helpful start. If I send a signal to the spawned Python processes, they can handle the signals properly; however, signals sent to the parent orterun process (i.e. from exceeding wall time on a cluster, or pressing control-C in a terminal) will kill everything immediately.

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  • Gratuitous CRLF in Subject: line - why is it there, and is it legal?

    - by MadHatter
    I'm running into a problem with a NAGIOS system sending emails to a popular email-to-SMS service. The email-to-SMS service takes emails with text in the Subject: line, and sends them on to the mobile number encoded in the To: field. So far so good. Sadly, sendmail (and postfix before it) seem to be inserting a gratuitous CRLF into the (necessarily long) Subject: line, and that's causing my SMS messages to be truncated at the CRLF if and only if the Subject: line contains one or more colons past the gratuitous CRLF. I am confident that the messages are being created correctly, but just to be sure, here's me creating a completely noddy test message to myself, with a long Subject: line: echo "foo" | mail -s "1234567 101234567 201234567 301234567 401234567 501234567 601234567 701234567 801234567 90123456789" [email protected] Note there's no extra colon in this Subject: line; all I'm doing here is showing that an extra CRLF is inserted on the wire. Here's the result of sudo ngrep -x port 25: 44 61 74 65 3a 20 46 72    69 2c 20 33 31 20 4d 61    Date: Fri, 31 Ma 79 20 32 30 31 33 20 31    30 3a 34 33 3a 35 35 20    y 2013 10:43:55 2b 30 31 30 30 0d 0a 54    6f 3a 20 72 65 61 70 65    +0100..To: reape 72 40 74 65 61 70 61 72    74 79 2e 6e 65 74 0d 0a    [email protected].. 53 75 62 6a 65 63 74 3a    20 31 32 33 34 35 36 37    Subject: 1234567 20 31 30 31 32 33 34 35    36 37 20 32 30 31 32 33     101234567 20123 34 35 36 37 20 33 30 31    32 33 34 35 36 37 20 34    4567 301234567 4 30 31 32 33 34 35 36 37    20 35 30 31 32 33 34 35    01234567 5012345 36 37 0d 0a 20 36 30 31    32 33 34 35 36 37 20 37    67.. 601234567 7 30 31 32 33 34 35 36 37    20 38 30 31 32 33 34 35    01234567 8012345 36 37 20 39 30 31 32 33    34 35 36 37 38 39 0d 0a    67 90123456789.. 55 73 65 72 2d 41 67 65    6e 74 3a 20 48 65 69 72    User-Agent: Heir 6c 6f 6f 6d 20 6d 61 69    6c 78 20 31 32 2e 34 20    loom mailx 12.4 37 2f 32 39 2f 30 38 0d    0a 4d 49 4d 45 2d 56 65    7/29/08..MIME-Ve 72 73 69 6f 6e 3a 20 31    2e 30 0d 0a 43 6f 6e 74    rsion: 1.0..Cont 65 6e 74 2d 54 79 70 65    3a 20 74 65 78 74 2f 70    ent-Type: text/p 6c 61 69 6e 3b 20 63 68    61 72 73 65 74 3d 75 73    lain; charset=us About half way down (marked in bold+italic), between the 501234567 and the 601234567 in the original Subject: header, you can see a CRLF being inserted (0x0d 0x0a, on the left-hand side hex dump, .. on the right-hand side plain text). The receiving MTA seems happy to post-process this, and when I look at the on-disc stored mail at the receiving end, I see only a LF (0x0a) in the Subject: line, and the line is parsed correctly and in its entirety by, eg, alpine. Nevertheless, the CRLF is there on the wire, and between me and the (excellent) email-to-SMS support people, we've established that these are the cause of the problem. So my question is: is it lawful for an MTA to insert a gratuitous CRLF on the wire? If it is, and I can prove it, then it's the email-to-SMS house's problem, because they are being intolerant. If it isn't, or it is but I can't prove it, then it becomes my problem, so an answer with references would be most useful. Edit: I can now come clean that the email-to-SMS service in question is kapow. Once this problem was explained to them, they got it, worked with me to develop and test a fix, and have deployed the fix. My long subject lines with colons in now get relayed correctly into SMSes. I don't normally trumpet individual companies, especially not on SF, but I thought it worthy of note that kapow Did The Right Thing. (Disclaimer: I have no connection with kapow except as a paying customer who's happy about the way they dealt with his problem.)

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  • Operating systems theory -- using minimum number of semaphores

    - by stackuser
    This situation is prone to deadlock of processes in an operating system and I'd like to solve it with the minimum of semaphores. Basically there are three cooperating processes that all read data from the same input device. Each process, when it gets the input device, must read two consecutive data. I want to use mutual exclusion to do this. Semaphores should be used to synchronize: P1: P2: P3: input(a1,a2) input (b1,b2) input(c1,c2) Y=a1+c1 W=b2+c2 Z=a2+b1 Print (X) X=Z-Y+W The declaration and initialization that I think would work here are: semaphore s=1 sa1 = 0, sa2 = 0, sb1 = 0, sb2 = 0, sc1 = 0, sc2 = 0 I'm sure that any kernel programmers that happen on this can knock this out in a minute or 2. Diagram of cooperating Processes and one input device: It seems like P1 and P2 would start something like: wait(s) input (a1/b1, a2/b2) signal(s)

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  • PyQt - How to connect multiple signals to the same widget

    - by Orchainu
    [ ]All1 [ ]All2 [ ]checkbox1A [ ]checkbox1B [ ]checkbox2A [ ]checkbox2B Based on the chart above, a few things need to happen: The All checkboxes only affect the on/off of the column it resides in, and checks on/off all the checkboxes in that column. All checkboxes work in pairs, so if checkbox1A is on/off, checkbox1B needs to be on/off If an All checkbox is checked on, and then the user proceeds to check off one or more checkbox in the column, the All checkbox should be unchecked, but all the checkboxes that are already checked should remain checked. So really this is more like a chain reaction setup. If checkbox All1 is on, then chieckbox1A and 2A will be on, and because they are on, checkbox1B and 2B are also on, but checkbox All2 remains off. I tried hooking up the signals based on this logic, but only the paired logic works 100%. The All checkbox logic only works 50% of the time, and not accurately, and there's no way for me to turn off the All checkbox without turning all already checked checkboxes off. Really really need help ... T-T Sample code: cbPairKeys = cbPairs.keys() for key in cbPairKeys: cbOne = cbPairs[key][0][0] cbTwo = cbPairs[key][1][0] cbOne.stateChanged.connect(self.syncCB) cbTwo.stateChanged.connect(self.syncCB) def syncCB(self): pairKeys = cbPairs.keys() for keys in pairKeys: cbOne = cbPairs[keys][0][0] cbOneAllCB = cbPairs[keys][0][4] cbTwo = cbPairs[keys][1][0] cbTwoAllCB = cbPairs[keys][1][4] if self.sender() == cbOne: if cbOne.isChecked() or cbTwoAllCB.isChecked(): cbTwo.setChecked(True) else: cbTwo.setChecked(False) else: if cbTwo.isChecked() or cbOneAllCB.isChecked(): cbOne.setChecked(True) else: cbOne.setChecked(False) EDIT Thanks to user Avaris's help and patience, I was able to reduce the code down to something much cleaner and works 100% of the time on the 1st and 2nd desired behavior: #Connect checkbox pairs cbPairKeys = cbPairs.keys() for key in cbPairKeys: cbOne = cbPairs[key][0][0] cbTwo = cbPairs[key][1][0] cbOne.toggled.connect(cbTwo.setChecked) cbTwo.toggled.connect(cbOne.setChecked) #Connect allCB and allRO signals cbsKeys = allCBList.keys() for keys in cbsKeys: for checkbox in allCBList[keys]: keys.toggled.connect(checkbox.setChecked) Only need help on turning off the All checkbox when the user selectively turns off the modular checkboxes now

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  • Convolving two signals

    - by John Elway
    Calculate the convolution of the following signals (your answer will be in the form of an equation): h[n] = delta[n-1] + delta[n+1], x[n] = delta[n-a] + delta[n+b] I'm lost as to what I do with h and x. Do I simply multiply them? h[n]*x[n]? I programmed convolution with several types of blurs and edge detectors, but I don't see how to translate that knowledge to this problem. please 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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  • BIND9 DNS Problems - Not resolving

    - by clone1018
    I host a BIND9 DNS server for my VirtualMin users to use. And It only resolves for 75% of the people. It has been WELL over 1 week now. Here is a sample. $ttl 38400 @ IN SOA axxim.net. root.axxim.net. ( 1274031391 10800 3600 604800 38400 ) @ IN NS axxim.net. day7tech.com. IN A 96.226.216.37 www.day7tech.com. IN A 96.226.216.37 ftp.day7tech.com. IN A 96.226.216.37 m.day7tech.com. IN A 96.226.216.37 localhost.day7tech.com. IN A 127.0.0.1 webmail.day7tech.com. IN A 96.226.216.37 admin.day7tech.com. IN A 96.226.216.37 mail.day7tech.com. IN A 96.226.216.37 day7tech.com. IN MX 5 mail.day7tech.com.

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  • Difference between focus and focus-in(out)-event signals

    - by spajak
    Hello What's the difference between "focus" and "focus-in(out)-event" signals in GTK+? Which one is emitted firs? How are they related to keyboard(TAB) & mouse clicks. Do they depend on each other? I'm asking this because I want to keep track of currently focused widget within toplevel window and I don't want to test HAS_FOCUS flag of every widget when I need it. The widgets I'm interested of are deep inside other containers, boxes etc. What would be the best way in this situation for keeping & updating focused widget pointer?

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  • Signals and slots in PyQt

    - by Skilldrick
    In the past I've had some experience of Qt in C++. I've now started using PyQt, and finding it a bit bewildering. There doesn't seem to be any definitive source of documentation, apart from a small amount at Riverbank. I guess the first thing I'd like to know is that there's an initial hump with PyQt, and it does get easier. The Riverbank docs talk about new style signals and slots for PyQt, as well as old style. They suggest that the new style is better, but I was wondering if that is what most users of PyQt do.

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  • Paypal recuring IPN signals

    - by user1548981
    When creating Paypal recurring payments i don't receive any notifications from IPN that the recurring payments were actually made. I do receive the notifications that recurring profiles are created, that regular payments are made, that profile is canceled and so on. But no notifications when Paypal make the recurring payment. The file that process the ipn notification works fine and i think is bug free.It also send me an email every time he got something from Paypal(with row POST data) so i don't think the problem is here. Does Paypal send these notifications.If i set a daily recurring payment i should get a daily notification that payment was made? From what i read in documentation i should get these signals but.. Thanks

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  • Sending custom PyQt signals?

    - by Enfors
    I'm practicing PyQt and (Q)threads by making a simple Twitter client. I have two Qthreads. Main/GUI thread. Twitter fetch thread - fetches data from Twitter every X minutes. So, every X minutes my Twitter thread downloads a new set of status updates (a Python list). I want to hand this list over to the Main/GUI thread, so that it can update the window with these statuses. I'm assuming that I should be using the signal / slot system to transfer the "statuses" Python list from the Twitter thread, to the Main/GUI thread. So, my question is twofold: How do I send the statuses from the Twitter thread? How do I receive them in the Main/GUI thread? As far as I can tell, PyQt can by default only send PyQt-objects via signals / slots. I think I'm supposed to somehow register a custom signal which I can then send, but the documentation on this that I've found is very unclear to a newbie like me. I have a PyQt book on order, but it won't arrive in another week, and I don't want to wait until then. :-) I'm using PyQt 4.6-1 on Ubuntu Update: This is an excert from the code that doesn't work. First, I try to "connect" the signal ("newStatuses", a name I just made up) to the function self.update_tweet_list in the Main/GUI thread: QtCore.QObject.connect(self.twit_in, QtCore.SIGNAL("newStatuses (statuses)"), self.update_tweet_list) Then, in the Twitter thread, I do this: self.emit(SIGNAL("newStatuses (statuses)"), statuses) When this line is called, I get the following message: QObject::connect: Cannot queue arguments of type 'statuses' (Make sure 'statuses' is registered using qRegisterMetaType().) I did a search for qRegisterMetaType() but I didn't find anything relating to Python that I could understand.

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  • Updating Pointer using signals and slots

    - by Umesha MS
    Hi, I am very new to the QT; please help me to solve the problem. I am using thread to perform intensive operation in back ground. Meanwhile I want to update the UI, so I am using SIGNALS and SLOTS. To update UI I emit a signal and update UI. Let us consider bellow sample code, struct sample { QString name; QString address; }; void Update(sample *); void sampleFunction() { sample a; a.name = "Sachin Tendulkar"; a.address = "India" emit Update(&a); } In the above code we are creating a local object and passing the address of local object. In the QT document, it says that when we emit a signal it will be placed in the queue and late it will be delivered to the windows. Since my object is in local scope it will be delete once it goes out of the scope. Please tell me a way to send a pointer in a signal.

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  • Django "comment_was_flagged" signal

    - by tsoporan
    Hello, This is my first time working with django signals and I would like to hook the "comment_was_flagged" signal provided by the comments app to notify me when a comment is flagged. This is my code, but it doesn't seem to work, am I missing something? from django.contrib.comments.signals import comment_was_flagged from django.core.mail import send_mail def comment_flagged_notification(sender, **kwargs): send_mail('testing moderation', 'testing', 'test@localhost', ['[email protected]',]) comment_was_flagged.connect(comment_flagged_notification) (I am just testing the email for now, but I have assured the email is sending properly.) Thanks!

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  • PyQt threads and signals - how to properly retrieve values

    - by Cawas
    Using Python 2.5 and PyQt, I couldn't find any question this specific in Python, so sorry if I'm repeating the other Qt referenced questions below, but I couldn't easily understand that C code. I've got two classes, a GUI and a thread, and I'm trying to get return values from the thread. I've used the link in here as base to write my code, which is working just fine. To sum it up and illustrate the question in code here (I don't think this code will run on itself): class MainWindow (QtGui.QWidget): # this is just a reference and not really relevant to the question def __init__ (self, parent = None): QtGui.QWidget.__init__(self, parent) self.thread = Worker() # this does not begin a thread - look at "Worker.run" for mor details self.connect(self.thread, QtCore.SIGNAL('finished()'), self.unfreezeUi) self.connect(self.thread, QtCore.SIGNAL('terminated()'), self.unfreezeUi) self.connect(self.buttonDaemon, QtCore.SIGNAL('clicked()'), self.pressDaemon) # the problem begins below: I'm not using signals, or queue, or whatever, while I believe I should def pressDaemon (self): self.buttonDaemon.setEnabled(False) if self.thread.isDaemonRunning(): self.thread.setDaemonStopSignal(True) self.buttonDaemon.setText('Daemon - converts every %s sec'% args['daemonInterval']) else: self.buttonConvert.setEnabled(False) self.thread.startDaemon() self.buttonDaemon.setText('Stop Daemon') self.buttonDaemon.setEnabled(True) # this whole class is just another reference class Worker (QtCore.QThread): daemonIsRunning = False daemonStopSignal = False daemonCurrentDelay = 0 def isDaemonRunning (self): return self.daemonIsRunning def setDaemonStopSignal (self, bool): self.daemonStopSignal = bool def __init__ (self, parent = None): QtCore.QThread.__init__(self, parent) self.exiting = False self.thread_to_run = None # which def will be running def __del__ (self): self.exiting = True self.thread_to_run = None self.wait() def run (self): if self.thread_to_run != None: self.thread_to_run(mode='continue') def startDaemon (self, mode = 'run'): if mode == 'run': self.thread_to_run = self.startDaemon # I'd love to be able to just pass this as an argument on start() below return self.start() # this will begin the thread # this is where the thread actually begins self.daemonIsRunning = True self.daemonStopSignal = False sleepStep = 0.1 # don't know how to interrupt while sleeping - so the less sleepStep, the faster StopSignal will work # begins the daemon in an "infinite" loop while self.daemonStopSignal == False and not self.exiting: # here, do any kind of daemon service delay = 0 while self.daemonStopSignal == False and not self.exiting and delay < args['daemonInterval']: time.sleep(sleepStep) # delay is actually set by while, but this holds for N second delay += sleepStep # daemon stopped, reseting everything self.daemonIsRunning = False self.emit(QtCore.SIGNAL('terminated')) Tho it's quite big, I hope this is pretty clear. The main point is on def pressDaemon. Specifically all 3 self.thread calls. The last one, self.thread.startDaemon() is just fine, and exactly as the example. I doubt that represents any issue. The problem is being able to set the Daemon Stop Signal and retrieve the value if it's running. I'm not sure that it's possible to set a stop signal on QtCore.QtThread, because I've tried doing the same way and it didn't work. But I'm pretty sure it's not possible to retrieve a return result from the emit. So, there it is. I'm using direct calls to the thread class, and I'm almost positive that's not a good design and will probably fail when running under stress. I read about that queue, but I'm not sure it's the proper solution here, or if I should be using Qt at all, since this is Python. And just maybe there's nothing wrong with the way I'm doing.

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  • Tracing UNIX signal origins?

    - by jdizzle
    If I have a process that receives signals from other processes, is there a way for me to somehow tell which process (if any) sent a signal? strace lets me trace which signals a process has received, but doesn't allow me to trace who issued them.

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  • php-fpm or nginx: bad gateway

    - by John Tate
    I'm getting a bad gateway error all the sudden for a site. I didn't change the configuration for the site, I just added a new server config where I put them under /etc/nginx/servers and it stopped working. The new server works, and there is no conflict between the php-fpm listen addresses. server { listen 80; server_name obfuscated.onion; location = / { root /var/www/sites/obfuse; index index.php; } location / { root /var/www/sites/obfuse; index index.php; if (!-f $request_filename) { rewrite ^(.*)$ /index.php?q=$1 last; break; } if (!-d $request_filename) { rewrite ^(.*)$ /index.php?q=$1 last; break; } } error_page 404 /index.php; location ~* ^.+.(jpg|jpeg|gif|css|png|js|ico)$ { root /var/www/sites/obfuse; access_log off; expires 30d; } location ~ \.php$ { fastcgi_pass 127.0.0.1:9000; fastcgi_index index.php; fastcgi_param SCRIPT_FILENAME /var/www/sites/obfuse$fastcgi_script_name; fastcgi_param QUERY_STRING $query_string; fastcgi_param REQUEST_METHOD $request_method; fastcgi_param CONTENT_TYPE $content_type; fastcgi_param CONTENT_LENGTH $content_length; fastcgi_param PATH_INFO $fastcgi_script_name; include fastcgi_params; } } There is nothing unusual in php-fpm's log even when I raised the level to debug. [24-Jun-2013 09:10:37.357943] DEBUG: pid 6756, fpm_scoreboard_init_main(), line 40: got clock tick '100' [24-Jun-2013 09:10:37.358950] DEBUG: pid 6756, fpm_event_init_main(), line 333: event module is kqueue and 1 fds have been reserved [24-Jun-2013 09:10:37.358978] NOTICE: pid 6756, fpm_init(), line 83: fpm is running, pid 6756 [24-Jun-2013 09:10:37.359009] DEBUG: pid 6756, main(), line 1832: Sending "1" (OK) to parent via fd=5 [24-Jun-2013 09:10:37.389215] DEBUG: pid 6756, fpm_children_make(), line 421: [pool cyruserv] child 22288 started [24-Jun-2013 09:10:37.391343] DEBUG: pid 6756, fpm_children_make(), line 421: [pool cyruserv] child 21911 started [24-Jun-2013 09:10:37.391914] DEBUG: pid 6756, fpm_event_loop(), line 362: 5776 bytes have been reserved in SHM [24-Jun-2013 09:10:37.391941] NOTICE: pid 6756, fpm_event_loop(), line 363: ready to handle connections [24-Jun-2013 09:10:38.393048] DEBUG: pid 6756, fpm_pctl_perform_idle_server_maintenance(), line 379: [pool cyruserv] currently 0 active children, 2 spare children, 2 running children. Spawning rate 1 [24-Jun-2013 09:10:39.403032] DEBUG: pid 6756, fpm_pctl_perform_idle_server_maintenance(), line 379: [pool cyruserv] currently 0 active children, 2 spare children, 2 running children. Spawning rate 1 [24-Jun-2013 09:10:40.413070] DEBUG: pid 6756, fpm_pctl_perform_idle_server_maintenance(), line 379: [pool cyruserv] currently 0 active children, 2 spare children, 2 running children. Spawning rate 1 I don't know why this has started happening, but the logs are not telling me anything. Please ask for more information than this, you'll probably need it.

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  • Signals and threads - good or bad design decision?

    - by Jens
    I have to write a program that performs highly computationally intensive calculations. The program might run for several days. The calculation can be separated easily in different threads without the need of shared data. I want a GUI or a web service that informs me of the current status. My current design uses BOOST::signals2 and BOOST::thread. It compiles and so far works as expected. If a thread finished one iteration and new data is available it calls a signal which is connected to a slot in the GUI class. My question(s): Is this combination of signals and threads a wise idea? I another forum somebody advised someone else not to "go down this road". Are there potential deadly pitfalls nearby that I failed to see? Is my expectation realistic that it will be "easy" to use my GUI class to provide a web interface or a QT, a VTK or a whatever window? Is there a more clever alternative (like other boost libs) that I overlooked? following code compiles with g++ -Wall -o main -lboost_thread-mt <filename>.cpp code follows: #include <boost/signals2.hpp> #include <boost/thread.hpp> #include <boost/bind.hpp> #include <iostream> #include <iterator> #include <string> using std::cout; using std::cerr; using std::string; /** * Called when a CalcThread finished a new bunch of data. */ boost::signals2::signal<void(string)> signal_new_data; /** * The whole data will be stored here. */ class DataCollector { typedef boost::mutex::scoped_lock scoped_lock; boost::mutex mutex; public: /** * Called by CalcThreads call the to store their data. */ void push(const string &s, const string &caller_name) { scoped_lock lock(mutex); _data.push_back(s); signal_new_data(caller_name); } /** * Output everything collected so far to std::out. */ void out() { typedef std::vector<string>::const_iterator iter; for (iter i = _data.begin(); i != _data.end(); ++i) cout << " " << *i << "\n"; } private: std::vector<string> _data; }; /** * Several of those can calculate stuff. * No data sharing needed. */ struct CalcThread { CalcThread(string name, DataCollector &datcol) : _name(name), _datcol(datcol) { } /** * Expensive algorithms will be implemented here. * @param num_results how many data sets are to be calculated by this thread. */ void operator()(int num_results) { for (int i = 1; i <= num_results; ++i) { std::stringstream s; s << "["; if (i == num_results) s << "LAST "; s << "DATA " << i << " from thread " << _name << "]"; _datcol.push(s.str(), _name); } } private: string _name; DataCollector &_datcol; }; /** * Maybe some VTK or QT or both will be used someday. */ class GuiClass { public: GuiClass(DataCollector &datcol) : _datcol(datcol) { } /** * If the GUI wants to present or at least count the data collected so far. * @param caller_name is the name of the thread whose data is new. */ void slot_data_changed(string caller_name) const { cout << "GuiClass knows: new data from " << caller_name << std::endl; } private: DataCollector & _datcol; }; int main() { DataCollector datcol; GuiClass mc(datcol); signal_new_data.connect(boost::bind(&GuiClass::slot_data_changed, &mc, _1)); CalcThread r1("A", datcol), r2("B", datcol), r3("C", datcol), r4("D", datcol), r5("E", datcol); boost::thread t1(r1, 3); boost::thread t2(r2, 1); boost::thread t3(r3, 2); boost::thread t4(r4, 2); boost::thread t5(r5, 3); t1.join(); t2.join(); t3.join(); t4.join(); t5.join(); datcol.out(); cout << "\nDone" << std::endl; return 0; }

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  • QObject::connect not connecting signal to slot

    - by user1662800
    I am using C++ and Qt in my project and my problem is QObject::connect function doesn't connect signal to a slot. I have the following classes: class AddCommentDialog : public QDialog { Q_OBJECT public: ...some functions signals: void snippetAdded(); private slots: void on_buttonEkle_clicked(); private: Ui::AddCommentDialog *ui; QString snippet; }; A part of my Main window: class MainWindow : public QMainWindow { Q_OBJECT public: explicit MainWindow(QWidget *parent = 0); ~MainWindow(); private slots: void commentAddedSlot(); void variableAddedSlot(); ... private: AddCommentDialog *addCommentDialog; ... }; Ant the last dialog; class AddDegiskenDialog : public QDialog { Q_OBJECT public: ... signals: void variableAdded(); private slots: void on_buttonEkle_clicked(); private: Ui::AddDegiskenDialog *ui; ... }; In the main window constructor i connect signals and slots: addCommentDialog=new AddCommentDialog(); addDegiskenDialog=new AddDegiskenDialog(); connect(addDegiskenDialog, SIGNAL(variableAdded()), this, SLOT(variableAddedSlot())); connect(addCommentDialog, SIGNAL(snippetAdded()), this, SLOT(commentAddedSlot())); The point is my commentAddedSlot is connected to it's signal successfully, but commentAddedSlot is failed. There is the Q_OBJECT macros, no warning such as about no x slot. In addition to this, receivers(SIGNAL(snippetAdded())) gives me 1 but receivers(SIGNAL(variableAdded())) gives me 0 and i used commands qmake -project; qmake and make to fully compile. What am i missing?

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  • Running command transparently over ssh

    - by jnsg
    By transparently I mean forwarding of: stdin, stdout and stderr standard signals (SIGHUP or SIGINT would be great for a start) As an example, consider these invocations of a (pointless) local and remote command: $ `cat - > /dev/null; sleep 10` < /local/file $ ssh user@host "cat - > /dev/null; sleep 10" < /local/file I can interrupt the first one with ^C just fine. But if I try this during the second one it only affects ssh, leaving the command running on the remote server if cat has already finished. I know about launching sshwith -t, but this way I can't send data via stdin. Is this possible with ssh alone at all?

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  • Simple Observation in Django: How Can I Correctly Modify The `attrs` sent to __new__ of a Django Mod

    - by DGGenuine
    Hello, I'm a strong proponent of the observer pattern, and this is what I'd like to be able to do in my Django models.py: class AModel(Model): __metaclass__ = SomethingMagical @post_save(AnotherModel) @classmethod def observe_another_model_saved(klass, sender, instance, created, **kwargs): pass @pre_init('YetAnotherModel') @classmethod def observe_yet_another_model_initializing(klass, sender, *args, **kwargs): pass @post_delete('DifferentApp.SomeModel') @classmethod def observe_some_model_deleted(klass, sender, **kwargs): pass This would connect a signal with sender = the decorator's argument and receiver = the decorated method. Right now my signal connection code all exists in __init__.py which is okay, but a little unmaintainable. I want this code all in one place, the models.py file. Thanks to helpful feedback from the community I'm very close (I think.) (I'm using a metaclass solution instead of the class decorator solution in the previous question/answer because you can't set attributes on classmethods, which I need.) I am having a strange error I don't understand. At the end of my post are the contents of a models.py that you can pop into a fresh project/application to see the error. Set your database to sqlite and add the application to installed apps. This is the error: Validating models... Unhandled exception in thread started by Traceback (most recent call last): File "/Library/Python/2.6/site-packages//lib/python2.6/site-packages/django/core/management/commands/runserver.py", line 48, in inner_run File "/Library/Python/2.6/site-packages/django/core/management/base.py", line 253, in validate raise CommandError("One or more models did not validate:\n%s" % error_text) django.core.management.base.CommandError: One or more models did not validate: local.myothermodel: 'my_model' has a relation with model MyModel, which has either not been installed or is abstract. I've indicated a few different things you can comment in/out to fix the error. First, if you don't modify the attrs sent to the metaclass's __new__, then the error does not arise. (Note even if you copy the dictionary element by element into a new dictionary, it still fails; only using the exact attrs dictionary works.) Second, if you reference the first model by class rather than by string, the error also doesn't arise regardless of what you do in __new__. I appreciate your help. I'll be githubbing the solution if and when it works. Maybe other people would enjoy a simplified way to use Django signals to observe application happenings. #models.py from django.db import models from django.db.models.base import ModelBase from django.db.models import signals import pdb class UnconnectedMethodWrapper(object): sender = None method = None signal = None def __init__(self, signal, sender, method): self.signal = signal self.sender = sender self.method = method def post_save(sender): return _make_decorator(signals.post_save, sender) def _make_decorator(signal, sender): def decorator(view): return UnconnectedMethodWrapper(signal, sender, view) return decorator class ConnectableModel(ModelBase): """ A meta class for any class that will have static or class methods that need to be connected to signals. """ def __new__(cls, name, bases, attrs): unconnecteds = {} ## NO WORK newattrs = {} for name, attr in attrs.iteritems(): if isinstance(attr, UnconnectedMethodWrapper): unconnecteds[name] = attr newattrs[name] = attr.method #replace the UnconnectedMethodWrapper with the method it wrapped. else: newattrs[name] = attr ## NO WORK # newattrs = {} # for name, attr in attrs.iteritems(): # newattrs[name] = attr ## WORKS # newattrs = attrs new = super(ConnectableModel, cls).__new__(cls, name, bases, newattrs) for name, unconnected in unconnecteds.iteritems(): _connect_signal(unconnected.signal, unconnected.sender, getattr(new, name), new._meta.app_label) return new def _connect_signal(signal, sender, receiver, default_app_label): # full implementation also accepts basestring as sender and will look up model accordingly signal.connect(sender=sender, receiver=receiver) class MyModel(models.Model): __metaclass__ = ConnectableModel @post_save('In my application this string matters') @classmethod def observe_it(klass, sender, instance, created, **kwargs): pass @classmethod def normal_class_method(klass): pass class MyOtherModel(models.Model): ## WORKS # my_model = models.ForeignKey(MyModel) ## NO WORK my_model = models.ForeignKey('MyModel')

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  • QTcpServer not emiting signals

    - by Timothy Baldridge
    Okay, I'm sure this is simple, but I'm not seeing it: HTTPServer::HTTPServer(QObject *parent) : QTcpServer(parent) { connect(this, SIGNAL(newConnection()), this, SLOT(acceptConnection())); } void HTTPServer::acceptConnection() { qDebug() << "Got Connection"; QTcpSocket *clientconnection = this->nextPendingConnection(); connect(clientconnection, SIGNAL(disconnected()), clientconnection, SLOT(deleteLater())); HttpRequest *req = new HttpRequest(clientconnection, this); req->processHeaders(); delete req; } int main(int argc, char *argv[]) { QCoreApplication a(argc, argv); HTTPServer http(0); http.listen(QHostAddress::Any, 8011); qDebug() << "Started: " << http.isListening() << http.serverAddress() << ":" << http.serverPort(); return a.exec(); } According to the docs my acceptConnection() slot should be called whenever there is a new connection. I can connect into this tcp port with a browser or telnet, and I don't get any errors, so I know it's listening, execution never goes to my acceptConnection() function? And yes my objects inherit from QObject, I've just stripped the code down to the essential parts above. There's no build errors....

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  • PyQt and unittest - how to handle signals and slots

    - by Einar
    Hello, some small application I'm developing uses a module I have written to check certain web services via a REST API. I've been trying to add unit tests to it so I don't break stuff, and I stumbled upon a problem. I use a lot of signal-slot connections to perform operations asynchronously. For example a typical test would be (pseudo-Python), with postDataDownloaded as a signal: def testConnection(self): "Test connection and posts retrieved" def length_test(): self.assertEqual(len(self.client.post_data), 5) self.client.postDataReady.connect(length_test) self.client.get_post_list(limit=5) Now, unittest will report this test to be "ok" when running, regardless of the result (as another slot is being called), even if asserts fail (I will get an unhandled AssertionError). Example when deliberatiely making the test fail: Test connection and posts retrieved ... ok [... more tests...] OK Traceback (most recent call last): [...] AssertionError: 4 != 5 The slot inside the test is merely an experiment: I get the same results if it's outside (instance method). I also have to add that the various methods I'm calling all make HTTP requests, which means they take a bit of time (I need to mock the request - in the mean time I'm using SimpleHTTPServer to fake the connections and give them proper data). Is there a way around this problem?

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