Related
The original thread:http://forum.xda-developers.com/showthread.php?t=396782 needs an abridged version.
==================================================
Go to http://www.androidonhtc.com/ if you're just starting as it has the latest info. This thread is to highlight the info from the original thread only.
Latest Builds
Port Status
==================================================
Compiling Android Kernel for Kaiser
Modify initrd.gz files and CPIO handling
system.img mounting, editing and rebuilding with ext2/3
system.img mounting, editing and rebuilding with cramfs
Howto: Pull from git (new/update/resync)
[WIP] Configuring WiFi Interface
==================================================
system.img mounting, editing and rebuilding with ext2/3
seidler2547: Post:
Actually I've played with Android a bit for now, and I changed to ext3. It doesn't only work - it's much faster, too! Startup time during the blinking android is about half of what it was before.
How-To:
Code:
Code:
cd /tmp
# prepare dirs
mkdir a-sys
mkdir a-ext
# prepare image
dd if=/dev/zero of=/where/is/sdcard/system.img.new bs=1M count=64
mkfs.ext3 /where/is/sdcard/system.img.new
# mount old image and copy to new
mount -o loop /where/is/the/system.img a-sys
mount -o loop /where/is/sdcard/system.img.new a-ext
cp -a a-sys/* a-ext/
Now you can unmount the old image and happily edit in the new image. Don't forget to rename the system.img.new to system.img (after you have unmounted it).
In your initrd, in file init, where it says
Code:
losetup /dev/block/loop1 /sdcard/system.img
...
mount -t cramfs -o ro,noatime,nodiratime /dev/block/loop1 /system
change "-t cramfs" to "-t ext2" or "-t ext3". You can also change the path (/sdcard/system.img) there.
Click to expand...
Click to collapse
Modify initrd.gz files and CPIO handling
dcordes: Post:
There is no magick in the initrd files. They are .cpio.gz files, gzipped cpio balls. To extract a .cpio.gz file named initrd-android.cpio.gz simply do
Code:
gunzip initrd-android.cpio.gz && cpio -i < initrd.android.cpio
Then you have the extracted rootfs. The reverse way would be, assuming you are inside your rootfs folder:
Code:
find ./ | cpio -H newc -o | gzip > ../my-initr-android-with-custom-stuffs.cpio.gz
And yes, you can remove and add applications you find that way.
Click to expand...
Click to collapse
system.img mounting, editing and rebuilding with cramfs
dzo: Post:
Hi, you can't just use mkcramfs on the system folder because the permissions will be wrong. This is the script I use:
Code:
Code:
out/host/linux-x86/bin/genext2fs -d out/target/product/generic/system -b 80000 -a system.ext2
mount -o loop system.ext2 /mnt/system
cp /mnt/system/usr/keychars/qwerty2.kcm.bin /mnt/system/usr/keychars/vogue-ts.kcm.bin
cp com.google.android.maps.jar /mnt/system/framework
cp Maps.apk Street.apk /mnt/system/app
mkfs.cramfs /mnt/system system.img
umount /mnt/system
#pcp system.img :/Storage\ Card/system.img
This also puts the maps app in (just copy from one of my images) and the vogue keymap. Without the source for the ril you will also need to copy my RIL (libreference-ril.so).
Click to expand...
Click to collapse
[WIP] Configuring WiFi Interface
This has been able to initialize the interface, assign arbitrary IP addresses but can not go further at the moment.
Code:
# ifconfig tiwlan0 192.168.1.100
# ifconfig tiwlan0 up
error: SIOCSIFFLAGS (Cannot assign requested address)
# ifconfig tiwlan0
tiwlan0: ip 192.168.1.100 mask 255.255.255.0 flags (down broadcast multicast)
dmesg will show:
Code:
wlan: no version for "struct_module" found: kernel tainted.
TIWLAN: Driver loading
trout_wifi_power: 1
trout_wifi_reset: 0
trout_wifi_set_carddetect: 1
TIWLAN: Found SDIO control (vendor 0x104c, device 0x9066)
TIWLAN: Driver initialized (rc 0)
TIWLAN: Driver loaded
Android's built-in wireless settings seem to disable the interface beyond just interfering with it, therefore it's best to stay with terminal and using 'ash' will give you a shell with command history (up/down scroll).
markya23: Post:
Need to create a folder in you system image package called /etc/wifi and copy tiwlan.ini, wpa_supplicant.conf and fw1251r1c.bin.
Need to copy the wlan.ko to /lib/modules in the system image (create the dir if required).
Create the new system image and boot Android. Start the dev console and type:
Code:
cp /system/etc/wifi/wpa_supplicant.conf /data/misc/wifi/wpa_supplicant.conf
insmod /system/lib/modules/wlan.ko
wlan_loader -f /system/etc/wifi/Fw1251r1c.bin -e /proc/calibration -i /system/etc/wifi/tiwlan.ini
cd /data/local/tmp
wpa_supplicant -f -Dtiwlan0 -itiwlan0 -c/data/misc/wifi/wpa_supplicant.conf &
ifconfig tiwlan0 192.168.1.100 netmask 255.255.255.0
ifconfig tiwlan0 up
Click to expand...
Click to collapse
Compiling Android Kernel for Kaiser
dwaradzyn: Post:
Here are brief instructions on how to compile android kernel for Kaiser from git.linuxtogo.org repository. I assume that running OS is Linux and it has everything required to build x86 or ia64 kernel. Beside that latest git software should be installed. The shell is assumed to be bash.
1. Let's start with creating a directory for kernel in home directory:
Code:
mkdir ~/android-kernel
cd android-kernel
2. Next thing is to get the sources from repository. To make it happen (this could take a while, it downloads 280MB):
Code:
git clone git://git.linuxtogo.org/home/groups/mobile-linux/kernel.git
OUTPUT:
Code:
Initialized empty Git repository in /home/user/android-kernel/kernel/.git/
remote: Counting objects: 908251, done.
remote: Compressing objects: 100% (153970/153970), done.
remote: Total 908251 (delta 755115), reused 906063 (delta 753016)
Receiving objects: 100% (908251/908251), 281.86 MiB | 292 KiB/s, done.
Resolving deltas: 100% (755115/755115), done.
Checking out files: 100% (22584/22584), done.
3. The htc-msm branch is of our interest (again it could take a few seconds):
Click to expand...
Click to collapse
*** Update, poly_poly-man states we are working off of htc-vogue not htc-msm. I'm leaving the original code here but I would urge you to modify the next line as poly has suggested:
Code:
cd kernel
git checkout -b htc-msm origin/htc-msm
OUTPUT:
Code:
Branch htc-msm set up to track remote branch refs/remotes/origin/htc-msm.
Switched to a new branch "htc-msm"
4. Let's take care of arm toolchain. Download this file (64MB) into ~/android-kernel:
Code:
[url]http://www.codesourcery.com/gnu_toolchains/arm/portal/package2549/public/arm-none-linux-gnueabi/arm-2008q1-126-arm-none-linux-gnueabi-i686-pc-linux-gnu.tar.bz2[/url]
Unpack it:
Code:
cd ~/android-kernel
tar xjf arm-2008q1-126-arm-none-linux-gnueabi-i686-pc-linux-gnu.tar.bz2
5. Compile the kernel
Prepare default .config for Kaiser:
Code:
cd ~/android-kernel/kernel
make htckaiser_defconfig ARCH=arm
OUTPUT:
Code:
........
lots of output
........
# configuration written to .config
#
And finally compile the kernel to get zImage (takes a minute or two):
Code:
export PATH=~/android-kernel/arm-2008q1/bin:$PATH
make zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
OUTPUT:
Code:
........
lots of output
........
Kernel: arch/arm/boot/zImage is ready
Now copy ~/android-kernel/kernel/arch/arm/boot/zImage to your phone and play with it.
Some ending tips:
A. You can compile earlier versions of sources in repository. To do that click on one of "commit" links on page:
Code:
http://git.linuxtogo.org/?p=groups/mobile-linux/kernel.git;a=summary
and read commit id (for example: f9d1bcea9342348623f5a57588044f76d8b649cd):
Code:
git reset --hard f9d1bcea9342348623f5a57588044f76d8b649cd
It will override any changes you made to files in ~/android-kernel/kernel.
B. Once you have downloaded git repository, you can swallow latest changes by issuing:
Code:
cd ~/android-kernel/kernel
git pull
C. If your machine has more than one cpus/cores you can speed up kernel compilation by adding -j <cores/cpus_number>, for example (dual core):
Code:
make -j 2 zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
Click to expand...
Click to collapse
bad internet makes for double post. Please delete
wrong directions for kernel - we are working off of htc-vogue branch... not htc-msm...
can we make the internet work through the usb cable?
how does android know which device node is gps? it's not picking it up for kaiser...
if you enable gps in winmo (or enable it in smd0 - I believe the command is @startgps), smd7 is a nmea stream (acts as a serial GPS).... could a symlink possibly be the right solution to this?
Howto: Pull from git (new/update/resync)
This will download the latest from git:
dwaradzyn: Post:
Here are brief instructions on how to compile android kernel for Kaiser from git.linuxtogo.org repository. I assume that running OS is Linux and it has everything required to build x86 or ia64 kernel. Beside that latest git software should be installed. The shell is assumed to be bash.
1. Let's start with creating a directory for kernel in home directory:
Code:
mkdir ~/android-kernel
cd android-kernel
2. Next thing is to get the sources from repository. To make it happen (this could take a while, it downloads 280MB):
Code:
git clone git://git.linuxtogo.org/home/grou
ps/mobile-linux/kernel.git
OUTPUT:
Code:
Initialized empty Git repository in /home/user/android-kernel/kernel/.git/
remote: Counting objects: 908251, done.
remote: Compressing objects: 100% (153970/153970), done.
remote: Total 908251 (delta 755115), reused 906063 (delta 753016)
Receiving objects: 100% (908251/908251), 281.86 MiB | 292 KiB/s, done.
Resolving deltas: 100% (755115/755115), done.
Checking out files: 100% (22584/22584), done.
3. The htc-msm branch is of our interest (again it could take a few seconds):
Code:
cd kernel
git checkout -b htc-msm origin/htc-msm
OUTPUT:
Code:
Branch htc-msm set up to track remote branch refs/remotes/origin/htc-msm.
Switched to a new branch "htc-msm"
4. Let's take care of arm toolchain. Download this file (64MB) into ~/android-kernel:
Code:
http://www.codesourcery.com/gnu_toolchains/arm/portal/package2549/public/arm-none-linux-gnueabi/arm-2008q1-126-arm-none-linux-gnueabi-i686-pc-linux-gnu.tar.bz2
Unpack it:
Code:
cd ~/android-kernel
tar xjf arm-2008q1-126-arm-none-linux-gnueabi-i686-pc-linux-gnu.tar.bz2
5. Compile the kernel
Prepare default .config for Kaiser:
Code:
cd ~/android-kernel/kernel
make htckaiser_defconfig ARCH=arm
OUTPUT:
Code:
........
lots of output
........
# configuration written to .config
#
And finally compile the kernel to get zImage (takes a minute or two):
Code:
export PATH=~/android-kernel/arm-2008q1/bin:$PATH
make zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
OUTPUT:
Code:
........
lots of output
........
Kernel: arch/arm/boot/zImage is ready
Now copy ~/android-kernel/kernel/arch/arm/boot/zImage to your phone and play with it.
Some ending tips:
A. You can compile earlier versions of sources in repository. To do that click on one of "commit" links on page:
http://git.linuxtogo.org/?p=groups/mobile-linux/kernel.git;a=summary
and read commit id (for example: f9d1bcea9342348623f5a57588044f76d8b649cd):
Code:
git reset --hard f9d1bcea9342348623f5a57588044f76d8b649cd
It will override any changes you made to files in ~/android-kernel/kernel.
B. Once you have downloaded git repository, you can swallow latest changes by issuing:
Code:
cd ~/android-kernel/kernel
git pull
C. If your machine has more than one cpus/cores you can speed up kernel compilation by adding -j <cores/cpus_number>, for example (dual core):
Code:
make -j 2 zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
Click to expand...
Click to collapse
poly_poly-man: Post:
This will pull from git which will update/resync a git pull:
Code:
mkdir foo
cd foo
git init
git pull git://git.linuxtogo.org/home/groups/mobile-linux/kernel.git htc-vogue
Click to expand...
Click to collapse
I'll follow-up with some nice, full instructions...
1. prerequisites: arm-none-linux-gnueabi toolchain (gentoo users can use crossdev - otherwise.... uhh... idk?), git, a host toolchain (gentoo users have this by default, most other distros have this under "development" in their package managment... if you have gcc, you're probably set).
2. mkdir kernel
cd kernel
git init
git pull git://git.linuxtogo.org/home/groups/mobile-linux/kernel.git htc-vogue
3. make vogue_defconfig
4. make
5. cp arch/arm/boot/bzImage /path/to/sdcard/
6. to update, run the git pull command by itself again, run make (may have to do the config line again if it's changed) and cp.
Thanks for the post poly. I don't know how that's different from what the post I referenced as I'm not +4 at this stuff.. I did what you posted with android kernel from git and got a 1.2mb zImage that crashed HaRET.. I'm guessing this is my bad. What could I have overlooked? Thanks
enatefox said:
Thanks for the post poly. I don't know how that's different from what the post I referenced as I'm not +4 at this stuff.. I did what you posted with android kernel from git and got a 1.2mb zImage that crashed HaRET.. I'm guessing this is my bad. What could I have overlooked? Thanks
Click to expand...
Click to collapse
where'd you get your toolchain?
does building a regular (host arch) kernel work?
Also - what's the proper way to build a system.img by hand? I'm looking to modify that quite a bit, but can't find a persistent source tree besides the main one, which is seriously crippled.
I thought you were one of the experts, lol. I've been left with no support on how dzo, et all are customizing kernels so I've been in read only mode on the 'other thread' looking elsewhere for support.
Just wanted to ask you first, what's with the Dream radio? I know you posted the mods censored it but what's with the sig now? It piqued my interest... as I'm using (shudder) winmo on the regular while Android is being worked on I was hoping it would be worth looking into if it doesn't brick my phone.
Answers to your questions:
As I said, my own zImage is no go. Check this link (not for our phone but the links at the bottom are pretty useful): http://wiki.xda-developers.com/index.php?pagename=BlackstoneLinux#Runningx20.Linuxx20.onx20.blackstone
I got the toolchain from the steps I (re)posted on this thread:
http://forum.xda-developers.com/showpost.php?p=2269384&postcount=184 so that gave me a 1.2mb zImage where everyone's been posting 1.4mb-- I know there's something not right. As far as building a system.img by hand? I've taken existing ones either from posted bundles or from Android src directly. Maybe I suck (real possibility) but cupcake and 1.0 have been pretty flaky for me (there are system.img's included in the source). You should know how to mount and edit them though (look at the first post on this thread). My experience is the git source is useless unless you've got a G1-- I don't know how to make it run on Tilts. If it does work, then the answer to your question about host arch compiling is no-- it has to be ARMv5 for our phones. That's where this line comes in:
make zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
Click to expand...
Click to collapse
Seriously, I need help learning how to modify the kernel-- I've been a "google will have the answer for me" Linux bystander for a while and while I'm good at what I've done I'm not so good at this uncharted territory. I'm really looking for help to figure out how to compile modules (saurik and dzo never got back to me about that) and all I've gotten is "wait while I do it myself" which is cool they're working on it but we're obviously here to work on it too.
I've even been trying to get Debian installed (familiar territory for me) so I can at least get stuff working. You do know that Android is nothing but a Java VM layer for Linux and it will (could be) put on any self-respecting distro. Personally, I want Debian on my phone with an Android chroot as that would trump all.
Sorry to rant but you seem more about figuring this out like me and I don't know who else is really working on this besides the dev-gods who have no tutorials.
enatefox said:
I thought you were one of the experts, lol. I've been left with no support on how dzo, et all are customizing kernels so I've been in read only mode on the 'other thread' looking elsewhere for support.
Just wanted to ask you first, what's with the Dream radio? I know you posted the mods censored it but what's with the sig now? It piqued my interest... as I'm using (shudder) winmo on the regular while Android is being worked on I was hoping it would be worth looking into if it doesn't brick my phone.
Click to expand...
Click to collapse
It never actually worked... maybe. My phone was reporting the wrong version on a *different* radio (1.65.21.18, was saying 19) before, and trying to flash this changed the version to be correct. 0x300 radios will never flash, and this as a 0x301 *will* brick your phone. Then again... like 2 people reported epic success... In other words, no, it never really existed.
Answers to your questions:
As I said, my own zImage is no go. Check this link (not for our phone but the links at the bottom are pretty useful): http://wiki.xda-developers.com/index.php?pagename=BlackstoneLinux#Runningx20.Linuxx20.onx20.blackstone
I got the toolchain from the steps I (re)posted on this thread:
http://forum.xda-developers.com/showpost.php?p=2269384&postcount=184 so that gave me a 1.2mb zImage where everyone's been posting 1.4mb-- I know there's something not right. As far as building a system.img by hand? I've taken existing ones either from posted bundles or from Android src directly. Maybe I suck (real possibility) but cupcake and 1.0 have been pretty flaky for me (there are system.img's included in the source). You should know how to mount and edit them though (look at the first post on this thread). My experience is the git source is useless unless you've got a G1-- I don't know how to make it run on Tilts. If it does work, then the answer to your question about host arch compiling is no-- it has to be ARMv5 for our phones. That's where this line comes in:
make zImage ARCH=arm CROSS_COMPILE=arm-none-linux-gnueabi-
Click to expand...
Click to collapse
unnecessary - zImage is implied, and the other two are in the Makefile already.
Seriously, I need help learning how to modify the kernel-- I've been a "google will have the answer for me" Linux bystander for a while and while I'm good at what I've done I'm not so good at this uncharted territory. I'm really looking for help to figure out how to compile modules (saurik and dzo never got back to me about that) and all I've gotten is "wait while I do it myself" which is cool they're working on it but we're obviously here to work on it too.
Click to expand...
Click to collapse
we have 0 modules at the moment (but perhaps support - I forget). Just compile stuff in - modules are very bad.
I've even been trying to get Debian installed (familiar territory for me) so I can at least get stuff working. You do know that Android is nothing but a Java VM layer for Linux and it will (could be) put on any self-respecting distro. Personally, I want Debian on my phone with an Android chroot as that would trump all.
Click to expand...
Click to collapse
It's a nice idea, but remember where a lot of the current coding is taking place - the ril, which is part of android (the system.img, at least), and doesn't go across to other distros quite as well. I think running Dalvik alongside whatever you're running in Debian might be too much for this phone's epically slow processor (compared to msm7201a).
Sorry to rant but you seem more about figuring this out like me and I don't know who else is really working on this besides the dev-gods who have no tutorials.
Click to expand...
Click to collapse
my instructions should work - they are what I use, at least.
Someone should change the instructions to (in the Wiki they are correct):
make ARCH=arm vogue_defconfig
I compiled my kernel, booted in Ubuntu, but had no touchscreen at all, I am not sure if the vogue_defconfig file takes care of everything necessary, so now I am checking everything via menuconfig to see whether eveything is all right or not.
DOMy
Do not Use Ext3 on SD cards
enatefox said:
seidler2547: Post:
Click to expand...
Click to collapse
You should NOT be using ext3 on any sort of flash ram device. You will wear out the medium. Journaling is just a bad idea in this sort of situation.
http://www.handhelds.org/hypermail/familiar/273/27320.html
3) ext3 is "very bad" because of the way it does journaling. It does journal, which seems like a good idea, but it also automatically periodically writes a lot of things out to the same secors on disk. I don't have first hand experience with this, but I remember somebody familiar with ext3 writing about this. It's method of journaling is not particularly intended for any kind of wear leveling at all.
Click to expand...
Click to collapse
http://www.mail-archive.com/[email protected]/msg38988.html
There are three disadvantages with the journaled file system:
- lower performance at write time, since there is the extra work of the
journal
- increased chance of damaging the SD card due to extra use of the
journal causing wearing
- increased space usage (for the journal)
Click to expand...
Click to collapse
And this is the general consensus within most of linux on ext3 and wearing mediums. I'm not sure if Andriod's kernel can do ext4, but ext4 can run without a journal.
Yet another reason not to use ext3 is that is near impossible to undelete something, something you can do with ext2.
-edit-
It looks like Android can use Ext4
http://thatsbadass.com/android/tag/ext4/
haha! is a good job, i like it
can't run android on my kaiser
hi folks,
i have read many threads here and on androidonhtc.com, i have read also the install instructions, but it seems im too stupid to run it.
it fails on "can't find system.img". i wil not flash it, i will run it from sd-card.
so, please can anyone attached an actually zip file which i just unpack und run haret.exe to work android on my kaiser ?
thanks and best regards
lenzen
For SHW-M110s development/discussion. (Korean Anycall SGS ONLY yes for any who don't know, we are officially part of the I9000 forum.
Koe1974 suggested this thread and will I think act as a co-OP on this discussion. Look for front page updates, links, whatever from him 3 posts down, (below the lost guy from China) in the future too.
Version 4 released
Version 4.0r1 released to fix Odin flashing problem
link to kernel
with tegrak_voodoo sound (v2) module, tegrak ext4 module, root (superuser.apk) and busybox 1.17.1 optional, safe mount option overides by default, auto detect lag fixed partitions (improves upgradeability and interchageability) [/B][/size] Compatible with previously z4modded ext2 setups. All ROM versions, SK05 through TA13 tested and released (link is below).
안녕하세요 to any of the Korean developers who find this. Please update us in English about what you are doing. Your English is probably MUCH better than my korean, and I live in Korea.. There are some people in China, Iran, Philippines, etc using this device who might be helped.
-------------------------------------------------------------------------------------------------------------------------
Ext4 (tegrak modules) z4build rooted voodoo sounds kernel link
A stock z4moded kernel with added ext4 support ( presently by "stealing" tegrak kernel modules.) and many tweaks to make it actually work.
This is now working with z4control to get an easy to apply ext4 lag fix!
------------------------------------------------------------------------------------------------------------------------------------
Bug discussion here please, usage discussion (how do get the file into odin?) .. maybe the general thread is better.
For now, our rooting guide is linked from my sig also, although the above linked kernel can also be made to provide root with no effort.
This type of initramfs modification can be done by unpacking a stock kernel making customizations and then applying z4build to it. But I used a z4modded kernel and then applied customizations and repacked. I did this because I set up to repack by hand anyway before knowing I wanted to use z4mod and even then, when I thought I needed to pack into a tegrak kernel (which z4build can't do). It turned out to cause complications, but also taught me a good bit about the process and about z4mod, and probably helped me find bugs.
Some other related useful links for Reference:
kernel extraction (commented by me specifically for tegrak lzma compressed initramfs and z4build split initramfs)
http://forum.xda-developers.com/wiki/index.php?title=Extract_initramfs_from_zImage
kernel repacking
http://forum.xda-developers.com/showthread.php?t=789712
It needs the initramfs to be cpio'd already something like this:
Code:
cd $initram
find ./ | cpio -H newc -o > $repackdir/newramfs.cpio
It also needs the editor.sh script modified to point to the cross-compiler.
By default it can only pack you initramfs into an image which previously had an uncompressed initramfs. This can be modified though easily.
kernel compiling
This old thread probably isn't too useful now..
http://forum.xda-developers.com/showthread.php?t=740740&page=2
We have much better info 3 posts down by koe1974.
Kernel sources here:
http://opensource.samsung.com/
search SHW-M110S.
The first froyo update has a nice readme with a link to the compiler (I don't have the link right this moment)
Not sure if we need to figure/find .configs, or if the ones included are ok to start. Just need to compile one once and see.
I got my compiler toolchain here:
http://www.codesourcery.com/sgpp/li...1-188-arm-none-eabi-i686-pc-linux-gnu.tar.bz2
I thought it's the one recommended is the original froyo source from samsung, but Koe says they point to 2009 version, so I don't know now.
............
I flashed the korean voodoo sk22 kernel just to boot it into recovery. It has CW mod recovery. Might be useful. (BTW I don't recommend flashing unfamiliar kernels haphazardly, ex: this one injected a file into my ROM that interefered with z4mod until I realized it ) Mine BTW injects only one empty directory (/etc/init.d) and nothing else. Remove the kernel and all other changes dissappear. (z4control adds a tad more, but very little, most of its additions self destruct after use.)
Post reserved.
Post Removed, as requested.
Sent from my GT-I9000 using XDA App
Links:
Korea's equivalent to XDA
Lilinser's GitHub - kernel repack, deodexer, etc.
Project-Voodoo - initramfs (SK05)
Just for hobbies - Voodoo for SL28
Tegrak Kernel
SHW-M110S intramfs Requires further research.
Older M110S from someone at MIT working on the M110S potential resource
bml7 & initramfs possible resource
more initramfs
initramfs SK05 Tested .. OK
How-Tos:
Basic How-To Build Environment with built kernel test
First this diff is from a z4modded stock SL28 image to the custom kernel image. It's not against stock. So it includes tegrak files and scripts I changed. Also note the -N option. It pretends like files that don't exist do.. Any binary files that "differ" are actually added from tegrak.
Code:
diff -rbpN z4mod_sl28/initramfs/init.rc z4grak-construction-sl28/initramfs/init.rc
*** z4mod_sl28/initramfs/init.rc 2011-01-13 02:20:12.000000000 -0500
--- z4grak-construction-sl28/initramfs/init.rc 2011-01-11 07:43:34.000000000 -0500
*************** loglevel 3
*** 58,63 ****
--- 58,72 ----
mount j4fs /dev/block/stl6 /mnt/.lfs
insmod /lib/modules/param.ko
+ #ext4 modules by woo
+ insmod /tegrak/lib/modules/mbcache.ko
+ insmod /tegrak/lib/modules/jbd2.ko
+ insmod /tegrak/lib/modules/ext4.ko
+
+ # tegrak system lagfix by woo
+ #
+ insmod /tegrak/lib/modules/tegrak_module.ko
+
# Backwards Compat - XXX: Going away in G*
symlink /mnt/sdcard /sdcard
*************** service vt /system/bin/vtserver
*** 728,734 ****
#user system
#group system
-
service dumpstate /system/bin/dumpstate -s
socket dumpstate stream 0660 shell log
disabled
--- 737,742 ----
*************** service dumpstate /system/bin/dumpstate
*** 739,747 ****
# oneshot
-
# Added by z4mod
service z4postinit /init
oneshot
--- 747,761 ----
# oneshot
# Added by z4mod
service z4postinit /init
oneshot
+ #install root ingore the mount type, it doesn't matter
+ # syntax looks a little strange to me.. we'll see if it works
+ mount rfs /dev/block/stl9 /system rw remount
+ cat /sbin/su > /system/bin/su
+ chown root /system/bin/su
+ chmod 4755 /system/bin/su
+ mount rfs /dev/block/stl9 /system ro remount
\ No newline at end of file
diff -rbpN z4mod_sl28/initramfs/lpm.rc z4grak-construction-sl28/initramfs/lpm.rc
*** z4mod_sl28/initramfs/lpm.rc 2011-01-13 02:20:12.000000000 -0500
--- z4grak-construction-sl28/initramfs/lpm.rc 2011-01-11 06:37:28.000000000 -0500
*************** on init
*** 16,21 ****
--- 16,26 ----
insmod /lib/modules/param.ko
insmod /lib/modules/vibrator.ko
+ #ext4 modules by woo
+ insmod /tegrak/lib/modules/mbcache.ko
+ insmod /tegrak/lib/modules/jbd2.ko
+ insmod /tegrak/lib/modules/ext4.ko
+
mount rfs /dev/block/stl9 /system check=no
mount rfs /dev/block/mmcblk0p2 /data nosuid nodev check=no
Binary files z4mod_sl28/initramfs/sbin/sslvpn and z4grak-construction-sl28/initramfs/sbin/sslvpn differ
Binary files z4mod_sl28/initramfs/tegrak/bin/mkfs.ext4 and z4grak-construction-sl28/initramfs/tegrak/bin/mkfs.ext4 differ
Binary files z4mod_sl28/initramfs/tegrak/bin/tune2fs and z4grak-construction-sl28/initramfs/tegrak/bin/tune2fs differ
Binary files z4mod_sl28/initramfs/tegrak/lib/modules/ext4.ko and z4grak-construction-sl28/initramfs/tegrak/lib/modules/ext4.ko differ
Binary files z4mod_sl28/initramfs/tegrak/lib/modules/jbd2.ko and z4grak-construction-sl28/initramfs/tegrak/lib/modules/jbd2.ko differ
Binary files z4mod_sl28/initramfs/tegrak/lib/modules/mbcache.ko and z4grak-construction-sl28/initramfs/tegrak/lib/modules/mbcache.ko differ
Binary files z4mod_sl28/initramfs/tegrak/lib/modules/tegrak_module.ko and z4grak-construction-sl28/initramfs/tegrak/lib/modules/tegrak_module.ko differ
I'm a bit confused about sslvpn It's in my SL28 , it's not in my z4moded SL28. everything else diff as expected. Maybe I just lost it, maybe z4mod removed it. It's a small unimportant mystery.
BTW it looks like what I believe are the recovery keys have changed from SK22 to SL28, so maybe using the wrong kernel breaks something.
and my slightly modified version of the extraction script with commented lines to deal with lzma.
it's much faster (well.. why not), and it handles direcories a little better. It need a "/" somewhere in the file name though so use "./zImage".
Code:
#!/bin/bash
#MUCH faster than dd bs=1 skip=blah
#
# syntas is fastdd file skip <length_in_bytes_optional>
# skip is NOT optional and should be set to 0 read from begining.
#
fastdd () {
#dd with a skip is crazy slower cause it forces bs=1
#credit goes to somebody on the internet.
local bs=1024
local file=$1
local skip=$2
local count=$3
(
dd bs=1 skip=$skip count=0 2>/dev/null
if [[ "$count" != "" ]]; then
dd bs=$bs count=$(($count / $bs))
dd bs=$(($count % $bs)) count=1
else
dd bs=1024 2> /dev/null
fi
) < "$file"
}
zImage=$1
basedir=${1%/*}
echo working directory $basedir
mkdir $basedir/initramfs
outdir=$basedir/initramfs/
#========================================================
# find start of gziped kernel object in the zImage file:
#========================================================
pos=`grep -P -a -b -m 1 --only-matching $'\x1F\x8B\x08' $zImage | cut -f 1 -d :`
echo "-I- Extracting kernel image from $zImage (start = $pos)"
echo
echo "*** Start of compressed kernel image:" $pos
#========================================================================
# the cpio archive might be gzipped too, so two gunzips could be needed:
#========================================================================
fastdd $zImage $pos | gunzip > /tmp/kernel.img
pos=`grep -P -a -b -m 1 --only-matching $'\x1F\x8B\x08' /tmp/kernel.img | cut -f 1 -d :`
#
# Use next one for tegrak secuere 11 SL28
# It's an lzma header
# It's found by looking for 5D 00 in the exact same place as cpio (070701) is found in stock.
# The long string of FF's is the real give away since 5D 00 is too vague.
# pos=`grep -P -a -b -m 1 --only-matching '\x{5D}\x{00}\x..\x{FF}\x{FF}\x{FF}\x{FF}\x{FF}\x{FF}' /tmp/kernel.img| cut -f 1 -d :`
echo
echo "*** gzip position in kernel.img :" $pos "(start of gzipped cpio)"
#===========================================================================
# find start and end of the "cpio" initramfs image inside the kernel object:
# ASCII cpio header starts with '070701'
# The end of the cpio archive is marked with an empty file named TRAILER!!!
#===========================================================================
if [ ! $pos = "" ]; then
echo "-I- Extracting compressed cpio image from kernel image (start = $pos)"
# use either one of the next two lines for gzip
# dd if=/tmp/kernel.img bs=1 skip=$pos | gunzip > /tmp/cpio.img
fastdd /tmp/kernel.img $pos |gunzip > /tmp/cpio.img
# comment above and uncomment one of next two lines for lzma, if decompressing tegrak image.
# dd if=/tmp/kernel.img bs=1 skip=$pos | unlzma > /tmp/cpio.img
# fastdd /tmp/kernel.img $pos | unlzma > /tmp/cpio.img
start=`grep -a -b -m 1 --only-matching '070701' /tmp/cpio.img | head -1 | cut -f 1 -d :`
end=`grep -a -b -m 1 --only-matching 'TRAILER!!!' /tmp/cpio.img | head -1 | cut -f 1 -d :`
inputfile=/tmp/cpio.img
else
echo "-I- Already uncompressed cpio.img, not decompressing"
start=`grep -a -b -m 1 --only-matching '070701' /tmp/kernel.img | head -1 | cut -f 1 -d :`
echo start $start
end=`grep -a -b -m 1 --only-matching 'TRAILER!!!' /tmp/kernel.img | head -1 | cut -f 1 -d :`
echo end $end
inputfile=/tmp/kernel.img
fi
end=$((end + 10))
count=$((end - start))
if (($count < 0)); then
echo "-E- Couldn't match start/end of the initramfs image."
exit
fi
echo "-I- Extracting initramfs image from $inputfile (start = $start, end = $end)"
echo inputfile: $inputfile
echo start $start
echo count $count
echo outdir $outdir
# dd if=$inputfile bs=1 skip=$start count=$count > $outdir/initramfs.cpio
fastdd $inputfile $start $count > $basedir/initramfs.cpio
cd $basedir
basedir=`pwd`
cd $outdir; cpio -v -i --no-absolute-filenames < $basedir/initramfs.cpio
cp /tmp/kernel.img $basedir/
More to come.
I like the way this is going, appagom, please put [MOD] in the title.
GL on the new thread, if you hope to have Koreans stumbled upon the thread it might be good to add more phrases like:
루팅
갤럭시s
안드로이드
프로요
업그레이드
업데이트
I never really fully utilized it myself. I hope you get more done here or I'll just take the move personally. Actually, now that you guys were moving into compiling and building I thought this would come. Also, you should look to get some Soju out of this with some donate links or something, even if you aren't looking to take in any cash perhaps you could use it as a seed pot for bounties.
Most importantly, I need to know what "the lost guy from China" said...ㅋㅋㅋ
@Koe, don't waste your time on Gingerbread, get us Honeycomb
Compile a Kernel in 13 Lucky Steps
If you are not familiar with Linux, you might have a hard time following this. Just as I am writing how to do get setup to compile a kernel and compile Android apps, others have written how to setup VirtualBox, Ubuntu, AndroidSDK, etc. Please see documentation provided by Oracle, Google, Ubuntu, etc. before you ask for help about VirtualBox, Ubuntu and the SDK. Thanks.
This is written for people who have used Linux but have not compiled much. Or for the brave at heart who are looking for a nice weekend project. This will tell/guide you through getting a system setup that will not destroy your existing OS.
My host OS is Ubuntu 10.10 64-bit. I wanted had to make an Ubuntu 10.04 32-bit 64-bit system for development because I didn't want to deal with 64-bit vs. 32-bit issues but since Gingerbread requires a 64-bit compiler, I had to. Might as well just use my host system, but since we're here let's keep going!
So you're about to begin. Let's just get one thing straight. No! This will not result in a kernel you can flash. “Then why do this?, you ask. Ask yourself that!
1. Install VirtualBox and the Oracle VM VirtualBox Extension Pack (Currently 4.0.0 r69151)
http://www.virtualbox.org/wiki/Downloads
2. Download an Ubuntu ISO (I suggest Ubuntu Desktop 10.04 64-bit)
http://www.ubuntu.com/desktop/get-ubuntu/download
3. Create a new VM in VirtualBox (You may/have to modify the settings)
Operating System: Linux
Version: Ubuntu64
Extended Features: IO APIC
Processors: 2
RAM: 2048MB
Video Mem: 128MB
HDD: 32GB
Enable PAE/NX
Shared Drive: (I use a shared folder, more detail later)
Click to expand...
Click to collapse
4. Install VirtualBox Guest Additions
5. Install Ubuntu and Update Ubuntu
TIP: Mount your Shared Folder with fstab (Optional but helpful)
If you chose to use a shared folder you can auto-mount it via /etc/fstab.
NOTE: I use a shared folder named andDEV and I mount it on my desktop (~/Desktop). Below is what I add to my /etc/fstab (You may/have to change it)
Code:
andDev /home/koe/Desktop/andDev vboxsf uid=1000,gid=1000 0 0
Click to expand...
Click to collapse
6. Enable multiverse and partner "Software Sources"
7. Install additional software: NOTE: I would also recommend installing preload, but it is not required.
Code:
sudo apt-get install qt3-dev-tools texinfo git-core gnupg flex bison gperf libsdl-dev libesd0-dev libwxgtk2.6-dev build-essential zip curl libncurses5-dev zlib1g-dev sun-java6-jdk eclipse ia32-libs
8. Get and Setup the AndroidSDK (Everything you need to know is there or just Google for help)
http://developer.android.com/sdk/index.html
NOTE: Ubuntu 10.04 does not have Java 5 in it's repositories. Follow this link to setup to Java 5
9. Get and Setup ADT Plugin for Eclipse (Everything you need to know is there or just Google for help)
http://developer.android.com/sdk/eclipse-adt.html#installing
TIP: At this point you might want to try Google's “Hello, Android” tutorial.
Click to expand...
Click to collapse
10. Download and Install the Sourcery G++ Lite for ARM EABI Toolchain (Currently arm-2010.09)
http://www.codesourcery.com/sgpp/lite/arm/portal/subscription3053
Look for and click the link for Recommended Release
Look for and click the link for IA32 GNU/Linux TAR
Extract the archive. You will have a folder named arm-2010.09
Make a directory in your home directory named CodeSourcery
Ex. mkdir ~/CodeSourcery
copy the entire arm-2010.09 folder into CodeSourcery
Click to expand...
Click to collapse
11. Update your $PATH
You should be familiar with this because you had to do it to setup the AndroidSDK
Append the following to your PATH in .bashrc
Code:
~/CodeSourcery/arm-2010.09/bin
12 Download and Prepare the Samsung Source Code (Currently SHW-M110S_Opensource_Froyo_update2.zip)
http://opensource.samsung.com/
Click Mobile - Mobile Phones
Look for and download SHW-M110S_Opensource_Froyo_update2.zip
Extract the archive. Inside the new folder are two more archives.
Extract SHW-M110S_Kernel.tar.gz Inside there is a new folder Kernel
You can copy this to a more convenient location. I copy it to my desktop.
In the Kernel folder is a file named Makefile. Open it with your editor of choice.
Go to line 184. You will see ...
CROSS_COMPILE ?= /opt/toolchains/arm-2009q3/bin/arm-none-linux-gnueabi-
You have to change it to something like below, but see the koe? That is my username so you have to change it to your username.
CROSS_COMPILE ?= /home/koe/CodeSourcery/arm-2010.09/bin/arm-none-eabi-
Save Makefile.
Click to expand...
Click to collapse
13. Compile a Kernel
NOTES:
1. Do not try to compile the code in your Shared Folder. It will fail.
2. When issuing these commands you will see lots of output during this part, most of which is not useful to you at this point.
3. The amount of time it takes for the final make command to run will depend on your computer.
Click to expand...
Click to collapse
Open a terminal window and move into the Kernel directory. Issue the following commands.
Code:
$ make shw-m110s_defconfig
$ make menuconfig
When the config editor opens do the following:
DOWN ARROW to Userspace binary formats and press ENTER
DOWN ARROW to Kernel support for a.out and ECOFF binaries and press SPACE
RIGHT ARROW to Exit and press ENTER
RIGHT ARROW to Exit and press ENTER
Press ENTER again and it will exit back to the command line
NOTE: If you have a powerful computer and you want to speed up the build time, make can be run as, make -j# The # represents how much it will try to do at once. $ make does 1 operation, make -j3 tries to do 3. I have a 2.66 Ghz dual-core CPU and I allow the VirtualBox guest OS access to both cores, so I use make -j3 The compile finishes in about 12 minutes and allows me to still use my host OS. For now, you might just want to run make without the -j option to get a full understanding of how long it takes. Later you can test with values.
Click to expand...
Click to collapse
WARNING: Time is relative. This will take some time ... go make a sandwich or maybe even watch a movie.
Code:
$ make
When you see $ again check the last couple of lines of output. You want to see …
OBJCOPY arch/arm/boot/zImage
Kernel: arch/arm/boot/zImage is ready
Click to expand...
Click to collapse
Congratulation! You just built a kernel for the m110s!
good write up.. Glad to see you hit the same a.out snag as me. Just makes me think it's not configured right and so I have low hopes. Will be fun to see what happens when you put an initramfs in it. I'd just unpack the stock one and try that first.
As for z4control.. I'm pretty interested in getting this working as something like this was the real reason I started messing with this. It seems there may be some issue with the z4mod's init wrapper not doing things it should but anyway.. just now seeing issues. flashed one kernel where I added some debug output added.. trying to understand it (not understanding it yet). I'm optimistic that I can track it down. edit:... definitely making progress, not quite there yet but getting closer.
appagom said:
good write up.. Glad to see you hit the same a.out snag as me. Just makes me think it's not configured right and so I have low hopes. Will be fun to see what happens when you put an initramfs in it. I'd just unpack the stock one and try that first.
Click to expand...
Click to collapse
Strictly to see if it would build completely and to get more info on how to do it, I did do an initramfs & kernel test build.
used the update2 kernel source
used the initramfs linked above (SHW-M110S intramfs Requires further research.)
ran find ./ | cpio -H newc -o > ~/Desktop/newramfs.cpio
added the cpio via menuconfig with no compression
It did build successfully and I ended up with a 7mb zImage vs. a 2.5mb.
There is no way in hell I am going to flash it because I do not know which initramfs (maybe from sk05) it is or what it contains but it did complete.
Now isn't this a kick in the nuts!
Since I got the toolchain all set I decided to focus on the Android source code. Following these directions .. http://source.android.com/source/download.html I got to "Building the code"
Code:
[email protected]:~/Desktop/myAnd$ source build/envsetup.sh
including device/htc/passion/vendorsetup.sh
including device/samsung/crespo/vendorsetup.sh
[email protected]:~/Desktop/myAnd$ lunch
You're building on Linux
Lunch menu... pick a combo:
1. full-eng
2. full_x86-eng
3. simulator
4. full_passion-userdebug
5. full_crespo-userdebug
Which would you like? [full-eng] 1
============================================
PLATFORM_VERSION_CODENAME=AOSP
PLATFORM_VERSION=AOSP
TARGET_PRODUCT=full
TARGET_BUILD_VARIANT=eng
TARGET_SIMULATOR=false
TARGET_BUILD_TYPE=release
TARGET_BUILD_APPS=
TARGET_ARCH=arm
TARGET_ARCH_VARIANT=armv5te
HOST_ARCH=x86
HOST_OS=linux
HOST_BUILD_TYPE=release
BUILD_ID=OPENMASTER
============================================
[email protected]:~/Desktop/myAnd$ make
============================================
PLATFORM_VERSION_CODENAME=AOSP
PLATFORM_VERSION=AOSP
TARGET_PRODUCT=full
TARGET_BUILD_VARIANT=eng
TARGET_SIMULATOR=false
TARGET_BUILD_TYPE=release
TARGET_BUILD_APPS=
TARGET_ARCH=arm
TARGET_ARCH_VARIANT=armv5te
HOST_ARCH=x86
HOST_OS=linux
HOST_BUILD_TYPE=release
BUILD_ID=OPENMASTER
============================================
Checking build tools versions...
build/core/main.mk:76: ************************************************************
build/core/main.mk:77: You are attempting to build on a 32-bit system.
build/core/main.mk:78: Only 64-bit build environments are supported beyond froyo/2.2.
build/core/main.mk:79: ************************************************************
build/core/main.mk:80: *** stop. Stop.
Well, 32-bit will do for now seeing how ::cough:: I'm not the one building gingerbread.
I guess my next how-to is going to be how to go out and buy a PC and setup a 64-bit development environment.
Well, 32-bit will do fro now see how ::cough:: I'm not the one building gingerbread.
I guess my next how-to is going to be how to go out and buy a PC and setup a 64-bit development environment.
Click to expand...
Click to collapse
Could try the gnu cross compiler I suppose maybe it's clever enough to work around it. Your computer really isn't 64 bit though? You could just install a 64 bit VM assuming it is.
koe1974 said:
added the cpio via menuconfig with no compression
Click to expand...
Click to collapse
Ok, that procedure is easier than it used to be, or than what I read it used to be. I'm not afraid to add one and flash it. Just busy with making one I like right now though.. then again.. sounds like a 10 minute interruption.. so.. we'll see... oh and I don't remember what was stopping xconfig from working, but something annoying.. it's quite a bit nicer than menuconfig. I need to learn how that works though.. cause really you should add modules from the compilation itself right.. so you cant have the initramfs already before you compile, unless make opens it and add the modules and re-cpio's it. Anyway.. I'll shoot first, ask later.
edit: just flashed.. it gave about 1 tenth of a blue bar and froze. Ok, that was fun, back to fixing and ext4 kernel up.
appagom said:
Could try the gnu cross compiler I suppose maybe it's clever enough to work around it. Your computer really isn't 64 bit though? You could just install a 64 bit VM assuming it is.
Click to expand...
Click to collapse
The VM I setup was 32bit, but it's 64bit now. I will just modify the How-To for a 64bit system.
4 bugs related z4control issues solved(ok 2 were probably the same as well as a fifth, so really 3)..
one, it's failing to create a directory it needs (/system/etc/init.d), reported, work around create by hand.
2) It's rfs formatting wrapper script which checked for voodoo, failed. Strange bug in sh actually.. workaround in script found and reported
bugs 3 and 4 details unimportant, were related to the mystery of where sslvpn went. z4build was splitting the initramfs by tacking it some of it brute force on to the end of the zImage. The init script found it again and unpacked the files before continuing. Oddly, it seems an uneeded because I fit the only big displaced file in just fine without splitting and I didn't even use heavy compression. Anyway, needed or not it caused two files to go missing, this one, and a small text file that reported the version of z4mod. this file prevented z4control from working.
I will not fix this tonight, but I mostly understand it (altough not in exact detail of precisely understanding some of the odd symptoms, but I think dealing with this will likely solve it all) My diffs could never find the version file, cuase I never unpacked it to know it even existed in the first place. Waaaah.. bug tracking is tiring. We should have this all running very shortly.
update: my first attempt at fixing the repacking bug.. resulted (I already feared this but hoped it would just go away) in a kernel that seems totaly complete, but where it seems something in the init wrapper isn't working... getting closer to finding it.
update: LAST BUG FIXED
The last bug(which I previously assumed was part of the repack bug) was actually aslo part of z4build, now documented here:
http://forum.xda-developers.com/showpost.php?p=10638535&postcount=1062
I'm pretty sure that one should really get it all going now. there are no lines of code left to break. I've tested almost every line now. I'll get a new kernel out, but will need to wait for an updated z4control. z4ziggy seems busy right now maybe (no complaint obviously).
I can fix this last bug in my roll out of the kernel. The other remaining ones can be worked around pretty easily, but not pretty for user instructions, better to wait probably.
SK05 Rebuild test (PASS)
We have doubts about if the shw-m110s_defconfig is what is used by samsung so I decided to try to make a working kernel from an initramfs and froyo_update source code.
General idea of what I did...
sk05 source code froyo_update (from samsung)
sk05 initramfs (link in post 4 "initramfs SK05 Tested .. OK")
cd initramfs_dir
find . -print0 | cpio -o0 -H newc | gzip -9 -f > some/path/initramfs.cpio.gz
cd kernel source code root directory
modify Makefile ln. 184
make aries_android_rfs_defconfig
make menuconfig
disable a.out
add path to initramfs archive
compression gzip
make
tar --format=ustar SK05rebuilt.tar zImage
Click to expand...
Click to collapse
Results in a zImage the same size (4.6mb) as samsung's, and it boots.
awesome..
I GOT IT
That was big fat B to solve. Debugging self destructing scripts that run in a startup environment with different mounts and different PATH variable is no fun and requires some imagination. I had to work around 2 more bugs in z4build but now I have user transparent workarounds to all of them.. plug and play. Unfortunately I have about 30 minutes more free time today so I probably wont post it today. I should clean up some comments and such in it first probably. We'll see.
appagom said:
awesome..
I GOT IT
Click to expand...
Click to collapse
Very nice!
Sent from my SHW-M110S using XDA App
the "awesome" comment was referring to you. Should be able to take the grak of z4grak with some compiling , but I'm happy with it in too.. doesn't matter.
Anyway.. I updated the kernel page (from the link on OP). The new kernel is there, but I pushed it out very fast. Didn't flash last repack myself yet after changing comments.. but I only changed comments. (I am running the posted copy now) It needs testing since my system has gotten a been used and non-pristine. Get z4control, you can use it to flash it if you want. the rest is all push button I hope.
Oh and default settings are less safe than Tegrak, not much if any better than ext2 actually. I think.. can't confirm right now. I recommend modifying etc/fstab to data=ordered,barrier=1 personally.. but that's what I like about z4.. you can decide for yourself.
Sent from my SHW-M110S using XDA App
Hi,
I have compile a kernel from archos source but wifi module wont load on Android. I use this howto : http://www.omappedia.org/wiki/Porting_MCP_WLAN_to_Android#To_Build_WLAN_Driver_Procedures
Happy Christmas/Joyeux Noël !
Thaolia
Could you please post the output of "adb shell uname -a" and upload your module here?
a1Pha said:
Could you please post the output of "adb shell uname -a" and upload your module here?
Click to expand...
Click to collapse
Ok, I will make an archive tomorrow =).
Tha0lia said:
I have compile a kernel from archos source but wifi module wont load on Android. I use this howto : http://www.omappedia.org/wiki/Porting_MCP_WLAN_to_Android#To_Build_WLAN_Driver_Procedures
Click to expand...
Click to collapse
Hi Thaolia,
I don't know if it helps, but if you're not porting to a new kernel version, you can use Archos compiled module as-is. There is a little trick though, you have to modify the build to remove the '+' it adds to kernel version.
Here is the diff I have on mine:
Code:
diff --git a/scripts/setlocalversion b/scripts/setlocalversion
index 64a9cb5..7c8445b 100755
--- a/scripts/setlocalversion
+++ b/scripts/setlocalversion
@@ -52,7 +52,7 @@ scm_version()
# If only the short version is requested, don't bother
# running further git commands
if $short; then
- echo "+"
+ # echo "+"
return
fi
# If we are past a tagged commit (like
@@ -164,7 +164,7 @@ else
# state and LOCALVERSION= is not specified
if test "${LOCALVERSION+set}" != "set"; then
scm=$(scm_version --short)
- res="$res${scm:++}"
+# res="$res${scm:++}"
fi
fi
With this, module loads fine and works.
Cheers,
LeTama
Hello,
I am trying to apply some patches to the currently running kernel:
Code:
[email protected]:/ # uname -a
Linux localhost 2.6.38.8-tiamat-ics+ #1 PREEMPT Fri May 25 21:49:58 CDT 2012 armv7l GNU/Linux
Is this the correct process?
1) Download the kernel source (I'm downloading this branch now, do you think this is correct : http : // git.tiamat-dev.com/htc-kernel-msm8x50/log/?h=android-msm-2.6.38-ics-tiamat ? )
Code:
cd ~/kernel/
git clone git://git.tiamat-dev.com/htc-kernel-msm8x50 -b android-msm-2.6.38-ics-tiamat
2) Grab the current config from the android device /proc/config.gz over to my laptop
Code:
adb pull /proc/config.gz /tmp/config.gz && gzip -d /tmp/config.gz && cp /tmp/config ~/kernel/htc-kernel-msm8x50/.config
3) Follow android kernel compiling instructions (from showthread.php?t=1774035 )
Code:
cd ~/kernel/
git clone https://android.googlesource.com/platform/prebuilt -b ics-plus-aosp
export PATH=~/kernel/prebuilt/linux-x86/toolchain/arm-eabi-4.4.3/bin:$PATH
export ARCH=arm
export SUBARCH=arm
### export CROSS_COMPILE=arm-eabi- (WRONG! this gave me a "sorry, unimplemented: -mfloat-abi=hard and VFP" error, use the below line instead)
export CROSS_COMPILE=arm-linux-androideabi-
make ARCH=arm oldconfig
make
edit: currently compiling here.. see how it goes
4) Copy the compiled kernel into a zip archive (in similar format to current installable kernel zip file) and install custom kernel via recovery
Am I missing anything here?
Thanks!
Dave (android kernel compiling newb)
Last Update : August, 19, 2014
Hi,
I'm still try to bypass the MMU protection.
I have fixe a lot of bug, like memory misalignment, bad adresses allocation, dtb correction, etc...
Last sources and binaries here :
kexec-tools V11.zip : http://forum.xda-developers.com/attachment.php?attachmentid=2902912&stc=1&d=1408401794
kexec-tools binaries V11.zip : http://forum.xda-developers.com/attachment.php?attachmentid=2902913&stc=1&d=1408401794
Sorry, i have always 13 sec reboot after new kernel boot.
"cpu_proc_fin" use a "mcr p15" to init cache and proc that cause freeze.
I try to find solution for that.
Last Update : June, 22, 2014
Hi,
My sources are horrible... but i give something new.
This kexec is for stock kernel only (tested on .757). I thinks theses sources work on other kernel too.
In "kexec-tools V10.zip", you have all my sources. It's highly recommended to mod them to have something OK.
In "kexec binaries.zip", you have binaries to install
=> "kexec_load.ko" and "procfs_rw.ko" must be placed in "/system/lib/modules" folder with "chmod 777"
=> "kexec" must be placed in /system/bin" folder with "chmod 777"
=> cd /system/lib/modules
=> insmod kexec_load.ko
For sources :
Mod and adapt all you want, it's free.
You have 2 scripts in Zip : "./compil-kexec" in "kexec-tools" folder to rebuild and send in device directly (install Adbtcp on device and send by tcp with : adb connect xxx.xxx.xxx.xxx) = work perfectly with me.
"scriptZ1" is for compil stock kernel or another kernel (doomlord kernel for eg)
You must rename "custom_final_files" folder after compil to "final_file" manually ; You can have guest kernel in "custom_final_files" and stock kernel in "final_files" for "kexec-tools" path ... Don't mix a guest and host kernel please ^^
I am tired... i let you test and say if it's ok for you...
Thank a lot to munjeni for his help.
kexec-tools V10.zip : http://forum.xda-developers.com/attachment.php?attachmentid=2811994&stc=1&d=1403456181
kexec binaries.zip : http://forum.xda-developers.com/attachment.php?attachmentid=2811995&stc=1&d=1403456181
Last Update : November, 23, 2013
Hi,
For few days now, i haven't no more kernel panic with my kexec.
I have fixed few stuffs into sources, and add a lot.
These adds are, to include a "dt.img" image file into kexec load process.
This image file is a "device_tree" image to match hardware to software.
So, i assume to don't include atags into boot process, but pass bootloader informations by this DT.
I have programmed a little scan memory to found dynamicly all magic tags, because i found 3 device_tree into memory (magic is "0xd00dfeed").
These 2 device_tree are echo from first and nice structure.
The boot process need to have informations from this DT, and need all informations to initialize hardware (no HDW initialisation by the kernel)
I must first fix issues ; Regroup zImage and dt.img into memory to load a solid bloc to kexec_load module to boot into, and second, fix an offset i can't explain, 0x800 in memory causing misalignment memory
Keep tuned..
Last Update : November, 17, 2013
Hi everybody,
My kexec-tools work for Sony Xperia Z1 stock kernel "3.4.0-perf"
This tools can work on all locked bootloader for all locked device, not only Sony or Z1 models.
This kexec-tools add a kexec_load kernel module (LKM) and use a driver to grant a communication between "kexec" user program and kexec_load.ko module
what is for ?
"kexec" user program load in memory a custom kernel in zImage format, but can load ".tar" image too
This user tool load ramdisk in memory if necessary
This tool is for this purpose only, and don't keep in memory the custom kernel at device reboot.
It is a "user" program, not a "kernel" extension... So, to really do the magic, we need the host kernel (stock sony locked kernel) have a kexec_load capability to reboot in a new gest kernel (custom kernel).
Infortuntly, stock kernel don't have kexec_load capability.
Sony have compiled his stock kernel without this option, and "standard" kexec-tools "need" this option to work.
To see all system call capability of kernel, you can run theses command :
Code:
echo 0 > /proc/sys/kernel/dmesg_restrict
echo 0 > /proc/sys/kernel/kptr_restrict
cat /proc/kallsyms
Do all grep you want here.
The "echo 0" "restrict" is here to unmask logical adresses to "system calls"
Like you can see, "__NR_kexec_load" capability isn't here.
To add kexec_load capability in stock locked kernel, we need to add manualy a kernel module wich add this function into the kernel.
Why ? Because the way to keep in memory a custom kernel need to know a lot of parameters, and keep a specific memory range alive at reboot.
Only kernel can do this.
All user program will be terminated at reboot.
"Standard" kexec_load.ko module use a method to implement the "__NR_kexec_load" function in system call table.
Since 2.6.0 kernel, linux for security reason, have locked in memory the "system_call_table" ; No more add or modification is authorized.
If kexec tool try to add a value, "kexec_load" for us, we causes a kernel panic, and reboot device.
For this reason, i have modify kexec user program and kexec_load module to implement a driver to talk to each other.
this driver replace syscall method, and we no more need to use a system call table.
For this reason, this tool is now compatible with modern kernel like our "3.4.0"
For this reason, this tool must work for other device (Xperia X, P, S, etc...) and another brand
For this reason, if kernel is locked, we can bootstrap to run a new kernel.
Installation
First, you can compil your own kexec tool
Here, sources : http://forum.xda-developers.com/attachment.php?attachmentid=2397299&stc=1&d=1384689174
And here, the binaries : http://forum.xda-developers.com/attachment.php?attachmentid=2397305&stc=1&d=1384689406
(it's not a cwm zip, i have no time to create an installer for now ; use "./compil-kexec" if you want an automatic install)
Install *.ko in /system/lib/modules
Install kexec and kdump in /system/bin
Grant with "chmod 777"
Unzip in kexec-tools folder
Install a toolchain (sudo apt-get install gcc-arm-linux-gnueabi)
launch => ./compil-kexec
what's all
This script can do everythinks for you
- Compilation of tools
- Compilation of modules
- installation in device
This script can compil for every brand you have.
Except you must remove or adapt the patch (see below why)
Patch ??
This patch is because a module must be compiled in the same time the kernel himself.
For this reason a "vermagic", an identifier, is used by system to block every module not compil with kernel
Some custom kernel bypass this to authorize every modules.
But for stock kernel, it is not allowed.
You can easely strapp this by busybox.
"busybox modprobe" for help
"-f" to force load without vermagic
To see this vermagic :
Code:
# uname -r
This "uname -r" must be the same that
Code:
# strings kexec_load.ko | grep vermagic
vermagic=3.4.0-perf-g66807d4-02450-g9a218f1 SMP preempt mod_unload modversions ARMv7
If you want use automaticaly this vermagic, you can modify into the custom kernel this file :
Code:
"include/config/kernel.release" and add :
"3.4.0-perf-g66807d4-02450-g9a218f1"
This file will be use at module compil to match the vermagic.
Infortunatly, it is not enought. :silly:
The infamous "no symbol version for module_layout"
When a module compil is created, it use symbols link to system call function, translate by adresses
Theses symbols are not at same physical adresses in stock kernel and modules (compiled from DooMLoRD kernel).
So, theses adresses must be convert into modules itself to match with stock symbols adress.
A patch is needed.
If you use my script, modules are automatically patched.
Here patches :
Code:
sed -i 's/\x32\x76\x86\x29/\x72\xFF\x5E\x20/' procfs_rw.ko
sed -i 's/\x32\x76\x86\x29/\x72\xFF\x5E\x20/' kexec_load.ko
sed -i 's/\xBB\xD0\xF8\x4D/\x0E\x1C\x63\x77/' kexec_load.ko
sed -i 's/\xA6\x26\x81\x1A/\xD4\x56\x02\x7E/' kexec_load.ko
sed -i 's/\xA3\xD1\xEC\x96/\xEC\x43\x28\x1A/' kexec_load.ko
sed -i 's/\x8C\xE6\x6A\x5F/\x3D\xDF\x02\xF2/' kexec_load.ko
sed -i 's/\x3E\xF3\xEF\xE9/\x18\x7F\xA6\x8A/' kexec_load.ko
sed -i 's/\x8B\xD2\x92\x10/\xC8\x19\x08\x9C/' kexec_load.ko
sed -i 's/\x1C\xE8\x18\xE1/\x7C\x71\x9E\xEF/' kexec_load.ko
sed -i 's/\xAB\x2C\x2F\x8B/\x8E\xD7\x63\xC0/' kexec_load.ko
sed -i 's/\xF5\x62\xAA\x4B/\x34\x80\x1B\x74/' kexec_load.ko
sed -i 's/\x00\x52\xD6\xD7/\x6F\x80\x91\x20/' kexec_load.ko
sed -i 's/\x4F\x77\x57\x6A/\x0C\x57\xC7\x63/' kexec_load.ko
sed -i 's/\xCA\x2F\x65\x71/\x92\xB8\x7F\x53/' kexec_load.ko
sed -i 's/\x0F\xD0\xA0\x91/\xFA\x80\x15\xB4/' kexec_load.ko
sed -i 's/\x29\xA0\x6D\x48/\x6C\x6B\x96\x54/' kexec_load.ko
sed -i 's/\x6D\x1F\x1F\x37/\xCC\x5E\x79\x8B/' kexec_load.ko
sed -i 's/\xFD\x23\xD0\xFB/\xE3\xE3\x68\x52/' kexec_load.ko
You can use hexedit or hexdump to see these adresses :
Code:
hexdump kexec_load.ko | grep ff72
0003d50 b0b0 80ac ff72 205e 6f6d 7564 656c 6c5f
how does it work ?
# kexec --help
For kexec help... nothing more to say.
# lsmod
List loaded modules... You must see
kexec_load 31369 0 - Live 0x00000000 (O)
# rmmod kexec_load.ko
Remove kexec_load module from memory.
# grep kexec /proc/device
To see installed driver.
You must see :
100 kexec_driver
First number is "major" number to identify your driver in system.
# mknod /dev/kexec_driver c 100 0
Install driver.
Major number (here 100), is important for module.
This Major must be the same between module and driver.
By default, 100 is used.
# insmod kexec_load.ko
To install "LKM", kexec_load kernel module.
If another Major is needed, you can use "insmod kexec_load.ko 101" for Major 101
You can use "modprob" if you want, but you must configure the module folder.
How kexec and module exchange informations ?
By the driver.
Normal output for a kernel module is to write in "dmsg" file.
To see kernel output, launch this command :
Code:
# dmesg
To see last kernel log, see in :
Code:
# cat /proc/last_kmsg
For kexec module, this normal way still exist, and give a lot of informations, but to speak with, you must use the driver.
/dev/kexec_driver
You can yourself test communication:
Code:
# cat /dev/kexec_driver
You can send kernel by this communication channel.
Type following commands for help
=> echo help >/dev/kexec_driver
=> dmesg | grep Kexec
Code:
# echo help >/dev/kexec_driver
# cat /dev/kexec_driver
Last command : 'help'
Please type following command :
=> dmesg|grep Kexec
Every command send into driver is receive by kexec_load.ko module and running into the kernel.
The answer can by read thru the driver
Here, you can see that normal way to see messages is allway dmesg.
Code:
# dmesg|grep Kexec
<4>[15050.521628] Kexec: Starting kexec_module...
<6>[15050.521656] Kexec: kexec_driver_contener allocation
<6>[15050.521673] Kexec: kexec_memory_buffer allocation
<4>[15050.521691] Kexec:----------------------------------------------------
<4>[15050.521710] Kexec: kexec_driver created with major : '100'
<4>[15050.521728] Kexec: Please, prepare by typing the following commands :
<4>[15050.521746] Kexec: => mknod /dev/kexec_driver c 100 0
<4>[15050.521761] Kexec: => cat /dev/kexec_driver
<4>[15050.521775] Kexec:-----------------------------------------------------
<4>[15050.521791] Kexec: For help
<4>[15050.521803] Kexec: => echo help >/dev/kexec_driver
(...)
I have add a lot of informations to help to configure kexec.
rdtags, atags ??
Not sure for this part of kernel.
"atags" is the most used method to bootloader to parse commands and informations to kernel at boot.
"atags" is a form of structure in memory to organise informations.
At boot, a address chain is created and can be compulse in /proc/atags file.
This file is read only system.
"rdtags" is another way to bootloader to parse information to kernel.
"rdtags" is not stocked in "/proc"
But, as i see, stock kernel can use "atags" from bootloader.
kexec can substitute bootloader function to create fromscratch a atags chain, and parse to new kernel.
I have change this part to stock atags in "/data/atags", and reuse or change if need.
If this don't work, i must create a rdtags chain to replace atags ; It's not a hard work.
Status
For the moment, kexec tools works.
=> Phase one OK.
I can start Phase Two : new kernel patch.
If you want to help me...
Actually, load a custom kernel and boot into with kexec tools work.
But at boot into, a kernel panic occurs.
It seems, a part of kexec patch is missing in custom kernel.
Hi new thread created for kernel kexec development.
Status: not working: wrong values for mem defines under the kernel is giving segmentation fault as its attempting to write to memory areas that are currently being used byyyyy the system
Instructions:
Make kernel compatible?:
1. Download kernel diff patch from below
2. Terminal - diff patch > diff.txt
How to use:
1. Download kexec-tools (kexec binary) from below
2. Copy into system/bin directory and give it executable permission
3. Download compatible kernel
4. Terminal - kexec --load-hardboot zImage --initrd=initrd.img --mem-min=0x20000000 --command-line="$(cat /proc/cmdline)"
kexec -e
Download links:
Kexec tool- https://db.tt/8DZXQ9eV
Ramdisk firmware 1.548 : https://db.tt/8DZXQ9eV
zImage (kernel):
Source code:
Kernel diff patch: https://db.tt/Xi2htT7Q (currently contains wrong values for mem defines)
Kexec-tools: https://db.tt/I22ofr3b
Special thanks: @delewer @krabappel2548
Reserved
Please move this thread to Xda Devdb, then I can also edit first post etc if I find new stuff
Sent from my C6903 using xda app-developers app
krabappel2548 said:
Please move this thread to Xda Devdb, then I can also edit first post etc if I find new stuff
Sent from my C6903 using xda app-developers app
Click to expand...
Click to collapse
Devdb?
Pm me i dont know what Devdb is lol
Recieved segmentation fault with delewers calculated mem values too
We need to write to memory where we have write access to, maybe lockedbootloader is not allowing us to write? Orrr we are just writing to wrong area of memory
If kexec works on the Z1, can it be ported over to Xperia Z/ZL/T/Ultra? I believe they don't all share the same processor.
Shaky156 said:
Devdb?
Pm me i dont know what Devdb is lol
Click to expand...
Click to collapse
Shaky156 said:
Recieved segmentation fault with delewers calculated mem values too
We need to write to memory where we have write access to, maybe lockedbootloader is not allowing us to write? Orrr we are just writing to wrong area of memory
Click to expand...
Click to collapse
I'll discuss with Kali- today if he's available.
Knucklessg1 said:
If kexec works on the Z1, can it be ported over to Xperia Z/ZL/T/Ultra? I believe they don't all share the same processor.
Click to expand...
Click to collapse
Doesn't need to be same processor, can be ported
Sent from my C6903 using xda app-developers app
Knucklessg1 said:
If kexec works on the Z1, can it be ported over to Xperia Z/ZL/T/Ultra? I believe they don't all share the same processor.
Click to expand...
Click to collapse
Yes it wont matter much, since its not s800 it should be easier for you guys , take the kexec-tool use that, implement the patch write to the correct mem addresses which is free, it should boot if you guys have issues let me know,
I need to calculate the correct addresses.
Ive noticed s800 uses a dt.img, might need to modify kexec-tool to support dt.img, not sure what dt.img does yet, only know it holds values
Shaky156 said:
I need to calculate the correct addresses.
Ive noticed s800 uses a dt.img, might need to modify kexec-tool to support dt.img, not sure what dt.img does yet, only know it holds values
Click to expand...
Click to collapse
the dt.img is needed by the kernel to boot, so I guess we need to load that too in kexec.
EDIT: people that wanna try add kexec patch to their kernel, check github: android_kernel_sony_msm8974/commits/kexec
krabappel2548, i have compil your kernel by my script (fromscratch)
My script (instruction in "DoomLord Build kernel thread" : scriptZ1 http://forum.xda-developers.com/attachment.php?attachmentid=2346163&d=1382568778
(for thoses who want to help us...)
You have a little mod to do here (bad compil) :
In "sound/soc/msm/qdsp6v2/rtac.c"
you must change
#include <q6voice.h>
by
#include "q6voice.h"
btw : no more ideas to load kexec for the moment ...
delewer said:
krabappel2548, i have compil your kernel by my script (fromscratch)
My script (instruction in "DoomLord Build kernel thread" : scriptZ1 http://forum.xda-developers.com/attachment.php?attachmentid=2346163&d=1382568778
(for thoses who want to help us...)
You have a little mod to do here (bad compil) :
In "sound/soc/msm/qdsp6v2/rtac.c"
you must change
#include <q6voice.h>
by
#include "q6voice.h"
btw : no more ideas to load kexec for the moment ...
Click to expand...
Click to collapse
Sorry, I'm trying to get caught up on the forum, but what seems to be the current standing issue to get kexec working?
Knucklessg1 said:
Sorry, I'm trying to get caught up on the forum, but what seems to be the current standing issue to get kexec working?
Click to expand...
Click to collapse
Read the OP
Status paragraph
Memory regions
00000000-07afffff : System RAM
00008000-00b79383 : Kernel code
00d04000-00f0cddb : Kernel data
0ff00000-779fffff : System RAM
7ff00000-7ff3ffff : rdtags_mem
7ff80000-7ffa0fff : last_kmsg
7ffa1000-7ffa5fff : last_amsslog
System RAM MEM = 00000000
So --min-mem=0x20000000
Now need to find a free memory area thatll allow us to write and hopefully the mmu/pmu on locked bootloader wont cancel it
@delewer? @DooMLoRD @kali @Bin4ry
I know I shouldn't disturb, but i must ask: if You achieve Your goal, would it be possible to port it to devices like Xperia P, S, T, U and other NXT? It would be great, many ppl are ready to give a prize for it. Thanks in advance, good luck and sorry again.
Sent from my LT22i using xda app-developers app
king960 said:
I know I shouldn't disturb, but i must ask: if You achieve Your goal, would it be possible to port it to devices like Xperia P, S, T, U and other NXT? It would be great, many ppl are ready to give a prize for it. Thanks in advance, good luck and sorry again.
Sent from my LT22i using xda app-developers app
Click to expand...
Click to collapse
These devices are not 2013 devices, they arent s800 socs, so they are much easier to do, simply take the kexec-tools from op, implement the patch in your kernel, write the correct memory values for your specific device and execute in terminal via the command in op, minmem depends on your device too, good luck
I think some1 tried it already, but it works only for unlocked devices... Anyway, thanks for help.
Sent from my LT22i using xda app-developers app
king960 said:
I know I shouldn't disturb, but i must ask: if You achieve Your goal, would it be possible to port it to devices like Xperia P, S, T, U and other NXT? It would be great, many ppl are ready to give a prize for it. Thanks in advance, good luck and sorry again.
Sent from my LT22i using xda app-developers app
Click to expand...
Click to collapse
Does doing this require having an Unlocked Boot loader prior to implementation?
Sent from my C6603 using xda app-developers app
A few informations about kexec-tools debug
in kexec.c
Fonction :
if (file_type.load(argc, argv, kernel_buf,
kernel_size, &info) < 0) {
fprintf(stderr, "Cannot load %s\n", kernel);
return -1;
}
With a forced execution of kexec (bypass error to see...)
--mem-min=0x90000000
kernel: 0xb6b9d008 kernel_size: 3e9340
debug: 1 - after get memory range
debug: 2 - after type test
debug: 3 - after type test
debug: 4 - after info.kexec
debug: Focus 1 - argc '5' ; argv 'be856774' ; kernel_buf 'b6b9d008' ; kernel_size '3e9340' ; info 'be856548' ; i '1' ; file_type.name 'zImage'
Could not find a free area of memory of 3f1340 bytes...
Cannot load zImage
debug: 10 - before trampoline
debug: 11 - after trampoline
debug: 12 - before segment load
debug: 13 - after segment load
debug: 8 - before sort_segment
debug: 9 - after sort_segment
debug: 6 - before purgatory
debug: 7 - after purgatory
kexec_load: entry = (nil) flags = 280004
nr_segments = 0
kexec_load failed: Function not implemented
entry = (nil) flags = 280004
nr_segments = 0
debug: 5 - return result : ffffffff
With a forced bypass on file_type.load , we have this :
--mem-min=0x20000000
debug: Focus 1 - argc '5' ; argv 'bef18774' ; kernel_buf 'b6bc7008' ; kernel_size '3e9340' ; info 'bef18548' ; i '1' ; file_type.name 'zImage'
Segmentation fault
delewer said:
A few informations about kexec-tools debug
in kexec.c
Fonction :
if (file_type.load(argc, argv, kernel_buf,
kernel_size, &info) < 0) {
fprintf(stderr, "Cannot load %s\n", kernel);
return -1;
}
With a forced execution of kexec (bypass error to see...)
--mem-min=0x90000000
kernel: 0xb6b9d008 kernel_size: 3e9340
debug: 1 - after get memory range
debug: 2 - after type test
debug: 3 - after type test
debug: 4 - after info.kexec
debug: Focus 1 - argc '5' ; argv 'be856774' ; kernel_buf 'b6b9d008' ; kernel_size '3e9340' ; info 'be856548' ; i '1' ; file_type.name 'zImage'
Could not find a free area of memory of 3f1340 bytes...
Cannot load zImage
debug: 10 - before trampoline
debug: 11 - after trampoline
debug: 12 - before segment load
debug: 13 - after segment load
debug: 8 - before sort_segment
debug: 9 - after sort_segment
debug: 6 - before purgatory
debug: 7 - after purgatory
kexec_load: entry = (nil) flags = 280004
nr_segments = 0
kexec_load failed: Function not implemented
entry = (nil) flags = 280004
nr_segments = 0
debug: 5 - return result : ffffffff
With a forced bypass on file_type.load , we have this :
--mem-min=0x20000000
debug: Focus 1 - argc '5' ; argv 'bef18774' ; kernel_buf 'b6bc7008' ; kernel_size '3e9340' ; info 'bef18548' ; i '1' ; file_type.name 'zImage'
Segmentation fault
Click to expand...
Click to collapse
Did you compile this kexec yourself? Or did you get this from krapabbel? I issued krapabbel to compile a new debug version have gave him the code but never heard back from him :/
Anywayz so cannot find free memory is the issue