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Still 1 (0x1) Unknown error number
with https://srbase.my-firewall.org/sr5/show_host_detail.php?hostid=222534
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ PRST.exe -boinc -fermat "13288*96^204730-1"
bash: PRST.exe: command not found
[dirk@Asrock-J5005-iTX Downloads]$ dir
banner.go
Oracle_VM_VirtualBox_Extension_Pack-7.0.10.vbox-extpack
PRST-11-test.zip
PRST.exe
Sierpinski Bases +1 should work but cant find any output on prst11 test?
I'm afraid Linux works more differently from Windows than think. I've made PRST.exe an executable file, but Linux can't make chocolate of it, even when I improve the command to
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ ./PRST.exe -boinc -fermat "13288*96^204730-1"
bash: ./PRST.exe: cannot execute binary file: Exec format error
[dirk@Asrock-J5005-iTX Downloads]$ |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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Still 1 (0x1) Unknown error number
with https://srbase.my-firewall.org/sr5/show_host_detail.php?hostid=222534
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ PRST.exe -boinc -fermat "13288*96^204730-1"
bash: PRST.exe: command not found
[dirk@Asrock-J5005-iTX Downloads]$ dir
banner.go
Oracle_VM_VirtualBox_Extension_Pack-7.0.10.vbox-extpack
PRST-11-test.zip
PRST.exe
Sierpinski Bases +1 should work but cant find any output on prst11 test?
I'm afraid Linux works more differently from Windows than think. I've made PRST.exe an executable file, but Linux can't make chocolate of it, even when I improve the command to
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ ./PRST.exe -boinc -fermat "13288*96^204730-1"
bash: ./PRST.exe: cannot execute binary file: Exec format error
[dirk@Asrock-J5005-iTX Downloads]$
goto properties-permissions-allow executing file as program, you can only use a linux app to run on linux not from windows
https://github.com/patnashev/prst/releases |
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Still 1 (0x1) Unknown error number
with https://srbase.my-firewall.org/sr5/show_host_detail.php?hostid=222534
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ PRST.exe -boinc -fermat "13288*96^204730-1"
bash: PRST.exe: command not found
[dirk@Asrock-J5005-iTX Downloads]$ dir
banner.go
Oracle_VM_VirtualBox_Extension_Pack-7.0.10.vbox-extpack
PRST-11-test.zip
PRST.exe
Sierpinski Bases +1 should work but cant find any output on prst11 test?
I'm afraid Linux works more differently from Windows than think. I've made PRST.exe an executable file, but Linux can't make chocolate of it, even when I improve the command to
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ ./PRST.exe -boinc -fermat "13288*96^204730-1"
bash: ./PRST.exe: cannot execute binary file: Exec format error
[dirk@Asrock-J5005-iTX Downloads]$
goto properties-permissions-allow executing file as program, you can only use a linux app to run on linux not from windows
https://github.com/patnashev/prst/releases
This is a Manjaro Linux system that gives the "1 (0x1) Unknown error number" message. If PRST.exe -boinc -fermat "13288*96^204730-1" does not work under Linux, how am I suppose to test it? |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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Still 1 (0x1) Unknown error number
with https://srbase.my-firewall.org/sr5/show_host_detail.php?hostid=222534
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ PRST.exe -boinc -fermat "13288*96^204730-1"
bash: PRST.exe: command not found
[dirk@Asrock-J5005-iTX Downloads]$ dir
banner.go
Oracle_VM_VirtualBox_Extension_Pack-7.0.10.vbox-extpack
PRST-11-test.zip
PRST.exe
Sierpinski Bases +1 should work but cant find any output on prst11 test?
I'm afraid Linux works more differently from Windows than think. I've made PRST.exe an executable file, but Linux can't make chocolate of it, even when I improve the command to
[dirk@Asrock-J5005-iTX ~]$ cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ ./PRST.exe -boinc -fermat "13288*96^204730-1"
bash: ./PRST.exe: cannot execute binary file: Exec format error
[dirk@Asrock-J5005-iTX Downloads]$
goto properties-permissions-allow executing file as program, you can only use a linux app to run on linux not from windows
https://github.com/patnashev/prst/releases
This is a Manjaro Linux system that gives the "1 (0x1) Unknown error number" message. If PRST.exe -boinc -fermat "13288*96^204730-1" does not work under Linux, how am I suppose to test it?
The available download was only for windows. If you click on the link here download the linux64 and run this.
https://github.com/patnashev/prst/releases/download/v11.1/prst-11.1-linux64.7z
rename the app to PRST and use
./PRST -d -fermat "13288*96^204730-1
as it is the non boinc version |
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What should I expect to be the outcome when all is well, and what will be the outcome if it isn't?
For now i have this as output:
>
to be augmented with this comment after a few minutes
Unknown option 13288*96^204730-1
I've added the missing " now, so it is
./PRST -d -fermat "13288*96^204730-1" |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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What should I expect to be the outcome when all is well, and what will be the outcome if it isn't?
For now i have this as output:
>
to be augmented with this comment after a few minutes
Unknown option 13288*96^204730-1
I've added the missing " now, so it is
./PRST -d -fermat "13288*96^204730-1"
Thats fine, if you want to make it faster use -t option |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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pls also try to retest 22068*115^208783+1 |
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pls also try to retest 22068*115^208783+1
I'll try -with the t option (t=4?)- next run. The previous is still running. |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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pls also try to retest 22068*115^208783+1
I'll try -with the t option (t=4?)- next run. The previous is still running.
ok, lets see. |
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22068*115^208783+1
cd Downloads
[dirk@Asrock-J5005-iTX Downloads]$ ./PRST -d -fermat "22068*115^208783+1"
Using negacyclic FFT length 192K, Pass1=768, Pass2=256, clm=4.
Fermat probabilistic test of 22068*115^208783+1, a = 3, complexity = 1442551.
22068*115^208783+1 Gerbicz-Li check enabled, L2 = 397*225.
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded FFT length 224K, Pass1=896, Pass2=256, clm=4
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded Pentium4 FFT length 240K, Pass1=320, Pass2=768, clm=4
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded FFT length 256K, Pass1=1K, Pass2=256, clm=4
22068*115^208783+1 Value initialization error.
22068*115^208783+1 Arithmetic error, restarting at 0.0%.
22068*115^208783+1 Too many restarts, aborting. |
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cd Downloads
./PRST -d -fermat "13288*96^204730-1"
Using FFT length 160K, Pass1=640, Pass2=256, clm=4.
Fermat probabilistic test of 13288*96^204730-1, a = 3, complexity = 1360059.
13288*96^204730-1 Gerbicz-Li check enabled, L2 = 302*279.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using FFT length 192K, Pass1=768, Pass2=256, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded Pentium4 FFT length 240K, Pass1=320, Pass2=768, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded FFT length 256K, Pass1=1K, Pass2=256, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Too many restarts, aborting. |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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cd Downloads
./PRST -d -fermat "13288*96^204730-1"
Using FFT length 160K, Pass1=640, Pass2=256, clm=4.
Fermat probabilistic test of 13288*96^204730-1, a = 3, complexity = 1360059.
13288*96^204730-1 Gerbicz-Li check enabled, L2 = 302*279.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using FFT length 192K, Pass1=768, Pass2=256, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded Pentium4 FFT length 240K, Pass1=320, Pass2=768, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
Restarting using zero-padded FFT length 256K, Pass1=1K, Pass2=256, clm=4
13288*96^204730-1 Value initialization error.
13288*96^204730-1 Arithmetic error, restarting at 0.0%.
13288*96^204730-1 Too many restarts, aborting.
If both tests are from prst v11 we could need more tests with llr3.8.21 and llr2 to track down the issue. Dont forget to use -t2 or -t4 option.
You need to run in this form
./llr -d -q"13288*96^204730-1"
http://jpenne.free.fr/index2.html
and
./llr2 -d -Gerbicz=1 -q"13288*96^204730-1"
https://github.com/patnashev/llr2/releases |
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I see a LLR2 app at https://github.com/patnashev/llr2/releases
should I use that for both
./llr -d -q"13288*96^204730-1"
and
./llr2 -d -q"13288*96^204730-1"
? |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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I see a LLR2 app at https://github.com/patnashev/llr2/releases
should I use that for both
./llr -d -q"13288*96^204730-1"
and
./llr2 -d -q"13288*96^204730-1"
?
no, these are 2 different apps
I have reported the first issues to dev. Iam pretty sure if llr is not failing but llr2, the gwnum lib is bugged. Its also possible to have broken RAM. |
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I'll test with the llr2 app tomorrow (it is 02:00 here now), where to find the llr app? |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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I'll test with the llr2 app tomorrow (it is 02:00 here now), where to find the llr app?
Same here, https://srbase.my-firewall.org/sr5/forum_thread.php?id=1813&postid=9489
Use -Gerbicz=1 with llr2 |
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./llr -d -q"13288*96^204730-1"
Starting probable prime test of 13288*96^204730-1
Using Pentium4 FFT length 160K, Pass1=640, Pass2=256, a = 3
13288*96^204730-1 is not prime. RES64: EDDE501C3B66633F. OLD64: C99AF054B23329BB Time : 3423.282 sec. |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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./llr -d -q"13288*96^204730-1"
Starting probable prime test of 13288*96^204730-1
Using Pentium4 FFT length 160K, Pass1=640, Pass2=256, a = 3
13288*96^204730-1 is not prime. RES64: EDDE501C3B66633F. OLD64: C99AF054B23329BB Time : 3423.282 sec.
That's good, now all what's left is overheating or broken RAM.
If llr2 is running with -Gerbicz=1 and no errors then the hardware is fine. If not then run llr2 without -Gerbicz=1, the residue must be the same as from llr.
Thx in advance for testing!
Here is a quicktest on my Ryzen with -t4
13288*96^204730-1 is not prime. RES64: EDDE501C3B66633F Time: 228 s.
So llr is fine. |
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./llr2 -d -t4 Gerbicz=1 -q"13288*96^204730-1"
Starting probable prime test of 13288*96^204730-1 = 13288*3^204730*2^1023650-1
Using FFT length 160K, Pass1=640, Pass2=256, clm=4, 4 threads, a = 3
13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 10000 / 1348154 [0.74%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 20000 / 1348154 [1.48%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 30000 / 1348154 [2.22%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 40000 / 1348154 [2.96%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 50000 / 1348154 [3.70%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 60000 / 1348154 [4.45%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 70000 / 1348154 [5.19%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 80000 / 1348154 [5.93%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 90000 / 1348154 [6.67%]. T13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 100000 / 1348154 [7.41%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 110000 / 1348154 [8.15%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 120000 / 1348154 [8.90%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 130000 / 1348154 [9.64%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 140000 / 1348154 [10.38%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 150000 / 1348154 [11.12%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 160000 / 1348154 [11.86%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 170000 / 1348154 [12.60%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 180000 / 1348154 [13.35%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 190000 / 1348154 [14.09%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 200000 / 1348154 [14.83%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 210000 / 1348154 [15.57%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 220000 / 1348154 [16.31%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 230000 / 1348154 [17.06%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 240000 / 1348154 [17.80%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 250000 / 1348154 [18.54%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 260000 / 1348154 [19.28%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 270000 / 1348154 [20.02%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 280000 / 1348154 [20.76%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 290000 / 1348154 [21.51%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 300000 / 1348154 [22.25%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 310000 / 1348154 [22.99%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 320000 / 1348154 [23.73%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 330000 / 1348154 [24.47%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 340000 / 1348154 [25.21%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 350000 / 1348154 [25.96%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 360000 / 1348154 [26.70%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 370000 / 1348154 [27.44%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 380000 / 1348154 [28.18%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 390000 / 1348154 [28.92%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 400000 / 1348154 [29.67%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 410000 / 1348154 [30.41%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 420000 / 1348154 [31.15%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 430000 / 1348154 [31.89%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 440000 / 1348154 [32.63%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 450000 / 1348154 [33.37%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 460000 / 1348154 [34.12%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 470000 / 1348154 [34.86%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 480000 / 1348154 [35.60%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 490000 / 1348154 [36.34%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 500000 / 1348154 [37.08%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 510000 / 1348154 [37.82%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 520000 / 1348154 [38.57%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 530000 / 1348154 [39.31%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 540000 / 1348154 [40.05%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 550000 / 1348154 [40.79%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 560000 / 1348154 [41.53%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 570000 / 1348154 [42.28%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 580000 / 1348154 [43.02%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 590000 / 1348154 [43.76%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 600000 / 1348154 [44.50%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 610000 / 1348154 [45.24%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 620000 / 1348154 [45.98%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 630000 / 1348154 [46.73%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 640000 / 1348154 [47.47%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 650000 / 1348154 [48.21%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 660000 / 1348154 [48.95%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 670000 / 1348154 [49.69%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 680000 / 1348154 [50.43%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 690000 / 1348154 [51.18%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 700000 / 1348154 [51.92%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 710000 / 1348154 [52.66%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 720000 / 1348154 [53.40%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 730000 / 1348154 [54.14%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 740000 / 1348154 [54.88%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 750000 / 1348154 [55.63%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 760000 / 1348154 [56.37%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 770000 / 1348154 [57.11%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 780000 / 1348154 [57.85%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 790000 / 1348154 [58.59%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 800000 / 1348154 [59.34%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 810000 / 1348154 [60.08%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 820000 / 1348154 [60.82%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 830000 / 1348154 [61.56%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 840000 / 1348154 [62.30%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 850000 / 1348154 [63.04%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 860000 / 1348154 [63.79%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 870000 / 1348154 [64.53%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 880000 / 1348154 [65.27%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 890000 / 1348154 [66.01%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 900000 / 1348154 [66.75%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 910000 / 1348154 [67.49%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 920000 / 1348154 [68.24%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 930000 / 1348154 [68.98%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 940000 / 1348154 [69.72%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 950000 / 1348154 [70.46%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 960000 / 1348154 [71.20%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 970000 / 1348154 [71.95%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 980000 / 1348154 [72.69%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 990000 / 1348154 [73.43%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1000000 / 1348154 [74.17%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1010000 / 1348154 [74.91%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1020000 / 1348154 [75.65%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1030000 / 1348154 [76.40%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1040000 / 1348154 [77.14%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1050000 / 1348154 [77.88%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1060000 / 1348154 [78.62%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1070000 / 1348154 [79.36%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1080000 / 1348154 [80.10%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1090000 / 1348154 [80.85%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1100000 / 1348154 [81.59%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1110000 / 1348154 [82.33%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1120000 / 1348154 [83.07%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1130000 / 1348154 [83.81%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1140000 / 1348154 [84.56%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1150000 / 1348154 [85.30%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1160000 / 1348154 [86.04%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1170000 / 1348154 [86.78%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1180000 / 1348154 [87.52%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1190000 / 1348154 [88.26%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1200000 / 1348154 [89.01%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1210000 / 1348154 [89.75%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1220000 / 1348154 [90.49%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1230000 / 1348154 [91.23%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1240000 / 1348154 [91.97%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1250000 / 1348154 [92.71%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1260000 / 1348154 [93.46%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1270000 / 1348154 [94.20%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1280000 / 1348154 [94.94%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1290000 / 1348154 [95.68%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1300000 / 1348154 [96.42%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1310000 / 1348154 [97.16%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1320000 / 1348154 [97.91%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1330000 / 1348154 [98.65%].13288*96^204730-1 = 13288*3^204730*2^1023650-1, bit: 1340000 / 1348154 [99.39%]. 13288*96^204730-1 = 13288*3^204730*2^1023650-1 is not prime. RES64: 0000000000000000. OLD64: 0000000000000003 Time : 1116.646 sec.
Overheating could be a possibility, as most J5005's and the like are passively cooled. |
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rebirtherVolunteer moderator Project administrator Project developer Project tester Project scientist
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Joined: 2 Jan 13 Posts: 8385 Credit: 159,120,213 RAC: 1,117
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residues are 0, not correct, Gerbicz=1 must be -Gerbicz=1
How are the CPU temps? Without Gerbiczcheck running you cant find hardware errors. |
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