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168 lines
5.8 KiB
Plaintext
168 lines
5.8 KiB
Plaintext
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README - ocf-linux-20100325
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---------------------------
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This README provides instructions for getting ocf-linux compiled and
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operating in a generic linux environment. For other information you
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might like to visit the home page for this project:
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http://ocf-linux.sourceforge.net/
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Adding OCF to linux
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-------------------
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Not much in this file for now, just some notes. I usually build
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the ocf support as modules but it can be built into the kernel as
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well. To use it:
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* mknod /dev/crypto c 10 70
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* to add OCF to your kernel source, you have two options. Apply
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the kernel specific patch:
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cd linux-2.4*; gunzip < ocf-linux-24-XXXXXXXX.patch.gz | patch -p1
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cd linux-2.6*; gunzip < ocf-linux-26-XXXXXXXX.patch.gz | patch -p1
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if you do one of the above, then you can proceed to the next step,
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or you can do the above process by hand with using the patches against
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linux-2.4.35 and 2.6.33 to include the ocf code under crypto/ocf.
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Here's how to add it:
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for 2.4.35 (and later)
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cd linux-2.4.35/crypto
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tar xvzf ocf-linux.tar.gz
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cd ..
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patch -p1 < crypto/ocf/patches/linux-2.4.35-ocf.patch
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for 2.6.23 (and later), find the kernel patch specific (or nearest)
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to your kernel versions and then:
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cd linux-2.6.NN/crypto
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tar xvzf ocf-linux.tar.gz
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cd ..
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patch -p1 < crypto/ocf/patches/linux-2.6.NN-ocf.patch
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It should be easy to take this patch and apply it to other more
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recent versions of the kernels. The same patches should also work
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relatively easily on kernels as old as 2.6.11 and 2.4.18.
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* under 2.4 if you are on a non-x86 platform, you may need to:
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cp linux-2.X.x/include/asm-i386/kmap_types.h linux-2.X.x/include/asm-YYY
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so that you can build the kernel crypto support needed for the cryptosoft
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driver.
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* For simplicity you should enable all the crypto support in your kernel
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except for the test driver. Likewise for the OCF options. Do not
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enable OCF crypto drivers for HW that you do not have (for example
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ixp4xx will not compile on non-Xscale systems).
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* make sure that cryptodev.h (from ocf-linux.tar.gz) is installed as
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crypto/cryptodev.h in an include directory that is used for building
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applications for your platform. For example on a host system that
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might be:
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/usr/include/crypto/cryptodev.h
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* patch your openssl-0.9.8n code with the openssl-0.9.8n.patch.
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(NOTE: there is no longer a need to patch ssh). The patch is against:
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openssl-0_9_8e
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If you need a patch for an older version of openssl, you should look
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to older OCF releases. This patch is unlikely to work on older
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openssl versions.
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openssl-0.9.8n.patch
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- enables --with-cryptodev for non BSD systems
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- adds -cpu option to openssl speed for calculating CPU load
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under linux
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- fixes null pointer in openssl speed multi thread output.
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- fixes test keys to work with linux crypto's more stringent
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key checking.
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- adds MD5/SHA acceleration (Ronen Shitrit), only enabled
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with the --with-cryptodev-digests option
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- fixes bug in engine code caching.
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* build crypto-tools-XXXXXXXX.tar.gz if you want to try some of the BSD
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tools for testing OCF (ie., cryptotest).
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How to load the OCF drivers
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---------------------------
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First insert the base modules:
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insmod ocf
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insmod cryptodev
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You can then install the software OCF driver with:
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insmod cryptosoft
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and one or more of the OCF HW drivers with:
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insmod safe
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insmod hifn7751
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insmod ixp4xx
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...
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all the drivers take a debug option to enable verbose debug so that
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you can see what is going on. For debug you load them as:
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insmod ocf crypto_debug=1
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insmod cryptodev cryptodev_debug=1
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insmod cryptosoft swcr_debug=1
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You may load more than one OCF crypto driver but then there is no guarantee
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as to which will be used.
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You can also enable debug at run time on 2.6 systems with the following:
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echo 1 > /sys/module/ocf/parameters/crypto_debug
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echo 1 > /sys/module/cryptodev/parameters/cryptodev_debug
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echo 1 > /sys/module/cryptosoft/parameters/swcr_debug
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echo 1 > /sys/module/hifn7751/parameters/hifn_debug
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echo 1 > /sys/module/safe/parameters/safe_debug
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echo 1 > /sys/module/ixp4xx/parameters/ixp_debug
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...
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Testing the OCF support
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-----------------------
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run "cryptotest", it should do a short test for a couple of
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des packets. If it does everything is working.
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If this works, then ssh will use the driver when invoked as:
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ssh -c 3des username@host
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to see for sure that it is operating, enable debug as defined above.
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To get a better idea of performance run:
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cryptotest 100 4096
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There are more options to cryptotest, see the help.
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It is also possible to use openssl to test the speed of the crypto
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drivers.
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openssl speed -evp des -engine cryptodev -elapsed
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openssl speed -evp des3 -engine cryptodev -elapsed
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openssl speed -evp aes128 -engine cryptodev -elapsed
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and multiple threads (10) with:
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openssl speed -evp des -engine cryptodev -elapsed -multi 10
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openssl speed -evp des3 -engine cryptodev -elapsed -multi 10
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openssl speed -evp aes128 -engine cryptodev -elapsed -multi 10
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for public key testing you can try:
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cryptokeytest
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openssl speed -engine cryptodev rsa -elapsed
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openssl speed -engine cryptodev dsa -elapsed
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David McCullough
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david_mccullough@mcafee.com
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