原帖由 wa2000 於 2008-4-24 23:06 發表


用兩個vm行呢個:

http://reilly.homeip.net/folding/

如果只行一個smp fah既話只會用到~70%cpu. 行兩個就可以~90%

by the way
running 4 thread using just the old CLI method
is that no longer good?

http://www.xsso.com.au/xtreme2k/fahdualhtcht/
this way
no longer worth it for 4 threads?

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原帖由 xtreme2k 於 2008-4-24 23:23 發表

by the way
running 4 thread using just the old CLI method
is that no longer good?

http://www.xsso.com.au/xtreme2k/fahdualhtcht/
this way
no longer worth it for 4 threads?


而家4核應該係行兩個linux f@h smp最多分(ppd).

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原帖由 wa2000 於 2008-4-25 06:10 發表


而家4核應該係行兩個linux f@h smp最多分(ppd).

Thru VMWARE?

any tutorial on that?

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原帖由 xtreme2k 於 2008-4-25 18:11 發表

Thru VMWARE?

any tutorial on that?


Download VMSERVER, 囉埋s/n(free).

安裝完之後, 行"VMware Server Console", File -> New -> Virtual Machine.

"next" -> Custom -> Guest operating system -> Linux, Version -> Other Linux 2.6.x kernel 64bit.

之後去到選幾多"Processors" -> Two. 之後memory要最少512(比多dd好d).

Network就一係bridge, 一係NAT. 睇你自己需要.

VIRTUAL DISK有咁細整咁細, 因為冇用.

之後去 http://reilly.homeip.net/folding/ 用FOLDING CD GENERATOR. 打入username同team. 之後download.

下載完成之後去VMware Server Console, double click CD-ROM (IDE 1:0). Use ISO image指返去剛剛download落黎個folding cd iso. 之後一boot個vm就會自己run.

run緊個時可以用web browser指返去vm個ip address. 有log睇.

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原帖由 wa2000 於 2008-4-26 01:42 發表
Download VMSERVER, 囉埋s/n(free).
安裝完之後, 行"VMware Server Console", File -> New -> Virtual Machine.
"next" -> Custom -> Guest operating system -> Linux, Version -> Other Linux 2.6.x kernel 64 ...

Thanks for the information.

Will try tomorrow

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原帖由 oc 於 2008-4-26 09:48 發表


You need to 'pause' the working wu. If you 'stop' it, all progress will be lost.


可以用usb key save低進度, 不過我冇試過點做.

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呢個同
World Community Grid
http://www.worldcommunitygrid.org/index.jsp
Human Proteome Folding - Phase 2
有乜唔同.
我玩開 WCG.

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What is the difference between what Human Proteome Folding does and what Folding@home does?

There are large differences between the Human Proteome Folding Project and folding@home. Both projects are excellent but have very different objectives.

Folding@home aims to get at how a few proteins of KNOWN structure fold DYNAMICALLY. Folding@home is a project to further understanding of the folding process itself. Understanding why protein folding works (and why it doesn't) could have a significant impact in certain diseases like Alzheimer's and Huntington's Disease, which Folding@Home is actively studying.

The Human Proteome Folding Project will PREDICT the structures of large numbers of proteins of UNKNOWN-structure. The aim of this project is to get structures and functions for huge numbers of proteins so that biologists and biomedical researchers who run into these mystery proteins in their research can look to ISB's database for functional/mechanistic clues about their favorite mystery-proteins.

可以參考

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