Hi people. This kernel aims to be fast, compatible, stable, and have good battery life. It makes our Galaxy S run the way it should.
This kernel is for the International Galaxy S (I9000) and Bell Mobility Vibrant (I9000M)
The SpeedMod kernel for the AT&T Captivate is available here: http://forum.xda-developers.com/showthread.php?t=893880
Note: Only lagfixes using EXT4 are robust. Other lagfixes run the risk of data loss on freezing, hard-reboots, or sudden power loss.
WARNING: Before you try any lagfix, make sure that you have enough free space on your Internal SD. You should have at least more free space than data+dbdata+cache combined.
Latest K13E (12-Apr) - Voodoo Sound v7. Lowmemorykiller fixes. Improved display sharpness using AMOLED processing mode in MDNIE. Support for voice calls through headphones. Check here for more info and downloads.
>>> Click here for the installation procedure using Odin.
>>> If you have questions, please read the FAQ: Frequently Asked Questions first!
>>> What is the SpeedMod kernel?
Latest features:
- Compiled using codesourcery 2010.09: Faster and more battery efficient
- The only properly working Tiny RCU implementation, thanks to Paul McKenney
- More efficient: Removed debug logging from kernel and Android
- Most updated version of my Enhanced Universal Lagfix fork with improved stability
- Full Android 2.2.1 ROM compatibility
This kernel has:
- Based on JPX Android 2.2.1 kernel source
- Works on all stock Froyo 2.2 and 2.2.1 ROMs and popular custom ROMs
- 340MB RAM
- Enhanced version of sztupy's Universal Lagfix
- Includes neldar's BackLightNotification 2.3 from https://github.com/project-voodoo/backlightnotification/tree/master/kernel_patches/
- Sharpness (AMOLED mode) & color fixes for the screen
- SpeedMod: Replaced kernel jhash2 with jhash3
- Includes my Startup Tweaks from http://forum.xda-developers.com/showthread.php?t=813309
- Adjusted kernel HZ value to improve smoothness
- Uses BFQ IO scheduler by default, from http://algo.ing.unimo.it/people/paolo/disk_sched/sources.php
- Updated ext4 code in kernel from http://www2.kernel.org/pub/linux/kernel/people/tytso/ext4-patches/
- Properly working Tiny RCU for better speed and efficiency from http://android.git.kernel.org/?p=ke...it;h=9b1d82fa1611706fa7ee1505f290160a18caf95d
- Patched lowmemorykiller for compatibility with Tiny RCU from http://android.git.kernel.org/?p=ke...ff;h=5545554aac04918ece318270d63cbfcb015577a9
- Optimized compiler flags: -mcpu=cortex-a8 -mfpu=neon -mfloat-abi=softfp
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FOR BEGINNERS:
This kernel is based on sztupy's Universal Lagfix: Lagfix and root options are accessible by booting into the Recovery Menu.
To get the best speed, it is recommended that you enable all Tweaks from the Recovery Menu. Tweaks are under SpeedMod features. Info on Tweaks: http://forum.xda-developers.com/showthread.php?t=813309
How to root: http://forum.xda-developers.com/showpost.php?p=8896862&postcount=90
Kernel HZ value: HZ=500 is smoother, HZ=256 is Samsung default.
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Memory configs (K10J and later):
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM=2048
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM_GPU1=4096
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM_ADSP=1500
CONFIG_WLAN_SAMSUNG_MEMSIZE_BCM=256
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC0=12288
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC1=1024
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC2=12288
CONFIG_VIDEO_SAMSUNG_MEMSIZE_MFC0=32768
CONFIG_VIDEO_SAMSUNG_MEMSIZE_MFC1=32768
CONFIG_VIDEO_SAMSUNG_MEMSIZE_TEXSTREAM=10240
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMD=3072
Memory configs (K10I and earlier):
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM=4096 *#
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM_GPU1=8192 *#
CONFIG_ANDROID_PMEM_MEMSIZE_PMEM_ADSP=1500
CONFIG_WLAN_SAMSUNG_MEMSIZE_BCM=256
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC0=11264 **
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC1=1024
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMC2=11264 **
CONFIG_VIDEO_SAMSUNG_MEMSIZE_MFC0=30720 ##
CONFIG_VIDEO_SAMSUNG_MEMSIZE_MFC1=30720 ##
CONFIG_VIDEO_SAMSUNG_MEMSIZE_JPEG=1024 *#
CONFIG_VIDEO_SAMSUNG_MEMSIZE_TEXSTREAM=6144 ^^
CONFIG_VIDEO_SAMSUNG_MEMSIZE_FIMD=3072
** FIMC0/2 = Below this and 720P video recording won't work
## MFC0/1 = Below this and 720P video playback won't work
*# PMEM/PMEM_GPU1/JPEG = Taken from default values for Galaxy Tab
^^ TEXTREAM = Too low and 3G video call stops working
THANKS: Big thanks to sztupy for his kernel compiler VM and ULFK, lastufo for testing compiler optimizations, ykk_five for testing memory configs, and others who gave ideas or helped.
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WARNING: If you use a custom boot animation, apps like One Click Lag Fix will not work because it disables the playlogos1 script hack.
The files with ending with -CWM are for flashing using Clockwork Recovery.
These other zip files are for flashing with ODIN.
--------------------------------
About USB Mounts:
>>> Click here to download the USB mount fixes. Latest SpeedMod versions do not need this fix. The fix is for using K12E or older with 2.2 ROMs. It fixes the problem where Internal SD mounts as a read-only drive on the PC, or if the External SD does not get mounted.
>>> If you have questions, please read the FAQ: Frequently Asked Questions first!
>>> CLICK HERE to DOWNLOAD the kernels.
Thank you! very useful..
Sounds good!
Could it be used in conjunction with Doc's ROM?
Implementing this in my next "Darky's Raw Steel Edition v3.1"
Cant wait. How about version A3 - O3, standart HZ (or 200, which ever you think is better) and OC (sources are already out)?
For now this is the ultimate kernel, without a doubt.
Btw, tried out HZ 100 quite extensively last night (plus ext4-ext2 and all tweaks). It is indeed not as smooth (with 6 pages of widgets in launcherpro, maximum memory consumption with 100 HZ - when you go to screen previews first drawing is slightly laggy. Without 100 - it is smooth on first attempt).
Battery life.. Well, subjectively - better, I would even say much better. But it needs more testing.
Startup script speed tweaks
# Tweak cfq io scheduler
Tweaked settings of the disk io scheduler more for flash memory. Defaults are optimized for spinning harddisks. Lowered the idle wait, re-enable the low latency mode of cfq, removed the penalty for back-seeks and explicitly tell the kernel the storage is not a spinning disk.
# Tweak kernel VM management
Set tendency of kernel to swap to minimum, since we don't use swap anyway.
Lower the amount of unwritten write cache to reduce lags when a huge write is required.
Increase tendency of kernel to keep block-cache to help with slower RFS filesystem.
Increase minimum free memory, in theory this should make the kernel less likely to suddenly run out of memory.
# Tweak kernel scheduler
Make the task scheduler more 'fair' when multiple tasks are running. This has a huge effect on UI and App responsiveness. These values (less aggressive settings) are 20% of the Linux defaults, and about half of the Android defaults.
# Miscellaneous tweaks
Manually set the starting dalvik heap size.
Increase wifi scanning gap to reduce battery usage.
@ Hardcore can you paste your Startup Reference, on your post too for a quick Faq for ppl here, looking for details on the tweaks.
Thanks
Ferdimage said:
Startup script speed tweaks
# Tweak cfq io scheduler
Tweaked settings of the disk io scheduler more for flash memory. Defaults are optimized for spinning harddisks. Lowered the idle wait, re-enable the low latency mode of cfq, removed the penalty for back-seeks and explicitly tell the kernel the storage is not a spinning disk.
# Tweak kernel VM management
Set tendency of kernel to swap to minimum, since we don't use swap anyway.
Lower the amount of unwritten write cache to reduce lags when a huge write is required.
Increase tendency of kernel to keep block-cache to help with slower RFS filesystem.
Increase minimum free memory, in theory this should make the kernel less likely to suddenly run out of memory.
# Tweak kernel scheduler
Make the task scheduler more 'fair' when multiple tasks are running. This has a huge effect on UI and App responsiveness. These values (less aggressive settings) are 20% of the Linux defaults, and about half of the Android defaults.
# Miscellaneous tweaks
Manually set the starting dalvik heap size.
Increase wifi scanning gap to reduce battery usage.
@ Hardcore can you paster this Ref on your post too for a quick Faq for ppl here, looking for details.
Thanks
Credit: Extralife (for pasting on another thread)
Click to expand...
Click to collapse
Thanks mate, very informative.
Ferdimage said:
Credit: Extralife (for pasting on another thread)
Click to expand...
Click to collapse
These tweaks are actually by hardcore, and his explanation =))
Any chance of incorporating the 1.2Ghz overclock?
Very interested in A1 gonna try it out when im home. I preffer speed over battery ^^
You actually changed any code in the source. Or just in config and compile flags? Want to compile kernel (voodoo sources) with this.
Sent from my GT-I9000 using XDA App
dereknas said:
Any chance of incorporating the 1.2Ghz overclock?
Click to expand...
Click to collapse
+1
Hope you could compile with the latest alpha OC using http://forum.xda-developers.com/showthread.php?t=822027
EDIT: Seems raspdeep already has this on his OC kernel, trying
Will this work on stock JP6?
_Rayearth said:
Will this work on stock JP6?
Click to expand...
Click to collapse
yes
10 char
dupel said:
yes
10 char
Click to expand...
Click to collapse
Kewl!
Looking forward to it
mms will fc when I receive or send mms. I think it has to do with the jpg memory size?
zenkinz said:
mms will fc when I receive or send mms. I think it has to do with the jpg memory size?
Click to expand...
Click to collapse
Thanks for the feedback. I'll test it. UPDATE: Just tested sending MMS with Image. It works for me.
BTW, files uploaded!
Can you post some details about jhash3? What's the gain?
First Impression with O2 and HZ=500. It is just me or it is waaay much smoooother the user interface? The scrolling and even opening applications experience feels closer my old HTC Desire.
Let's see battery life, but something changed with this latest kernel (Have been using your ones from the other thread).
Hi! Who can explain to me what is the difference miz these compilations nucleus.
Phone now works flawlessly. It should change or not???
http://forum.xda-developers.com/showthread.php?t=811660
Attention!
If you're looking for scripts, here it is:
[CWM][SCRIPTS][TWEAKS] Thunderbolt!
Script Reviews are here:
Script Reviews
Introduction
I've been meaning to share this with the whole Android community. It seems unfair that only the i9000 folks have access to the vast research that I've done so far. Hence I'm sharing this in the general Android thread in hopes that it'll benefit everyone in the long run
A lot of people often asked about how Android really works and the optimizations can be made to their Android to make it perform better in terms of:
- battery life
- raw performance
- GUI smoothness
With Android based on Linux, and with the experience I have with Linux/Unix (I deal with Unix/Linux on a daily basis for my work) I managed to find some tweaks that we can do to optimize our phones.
I also hope that people will experiment with the tweaks posted here and feedback to me if there are certain ways that I'm doing incorrectly or there are better ways than what I've posted here.
Script tweaks
There are a lot of scripts in XDA that specifically uses the optimizations (Linux or Android based) that I will explain below to actually increase performance/battery life. However, you need to know what those scripts do before using it.
I've done some reviews of the script here:
Script Reviews by Pikachu01
There are good scripts that are properly tested and made sure that it works. It's a script by Zacharias maladroit, the kernel dev who makes the platypus kernel for CM7 and snail kernel for i9000. I modded it to be compatible with i9000 and it'll probably do more than some of the scripts I reviewed
From there, I've also taken the liberty of modifying it some more based on my knowledge and research I've done. It's called ThunderBolt!:
LINK
Now onwards to what actually goes on beneath the hood.
Android Governors
Some custom kernels provide customized governors for you to choose. These are currently known:
- Ondemand (CPU scales to the highest frequency immediately after a certain CPU threshold)
- Conservative (CPU scales to the highest or 1 scale lower than that after a certain threshold gradually and scales down if CPU is below a certain threshold
- OndemandX (Has sleep codes that scales down the CPU when device is asleep. Threshold is set to scale slower)
OndemandX
OndemandX has a suspend frequency that it maintains when the phone is sleeping. It does have a known issue of waking up too slowly when a call comes in.
Conservative
Conservative is used when you would like the CPU to scale to the maximum through each frequency slowly before reaching the maximum. It saves more battery at the expense of smoothness. There are a few tunables that can be configured in Conservative governor, namely the freq_step and both the up and down thresholds.
freq_step is a tunable that determines how much frequency (a percentage of the maximum frequency of your device) to increase at each sampling rate. e.g. you have 5 as freq_step and your maximum frequency is 1GHz. At each sampling rate, it'll increase by 50MHz. If your current frequency is 100MHz, it'll increase to 150MHz at the next sampling. What if your device doesn't support 150MHz? This is done by splitting time between 100MHz and 200MHz (assuming your next frequency is 200MHz) so that in average, your phone is performing at 150MHz.
The up_threshold is how much threshold to wait for before increasing the base frequency to the next freq_step. I.e. if it is 80, the CPU will wait until it is 80% loaded before increasing the frequency. The down threshold is the opposite of up_threshold, which is the threshold to wait until the CPU downscales the frequency to the next frequency step.
Ondemand
Ondemand is a governor that basically a simpler version of conservative. One difference is that it scales to the maximum frequency after load has exceeded a threshold. This is usually 80. After that, it looks at the load again when it's at the max frequency. If it's below 80 (example), it'll scale down one frequency step. The frequency step mentioned here is the available frequency step. I.e. if your device has frequencies of 100,200,400,800 to 1GHz then it'll scale down from 1GHZ to 800, 400 then 200 and 100.
One optimization I have for Ondemand for i9000 TalonDev is that I tuned it to be 80 rather than 65. I have not felt any slowdowns from using this setting and it saves a tiny bit more battery. You can experiment on this value however you want, but bear in mind that I'm not responsible for any slowdowns or damage that is caused by it. Read up a bit more on thresholds to know more (Google it).
I/O scheduler tweaks
Another tweak that can be done is the I/O scheduler tweak. Some kernels come with a few standard I/O schedulers while others have extra schedulers that you can choose from. I'll explain the few that I know and if you have more information on the schedulers, you can post it here for everyone to discuss/share
CFQ - Completely fair. Most will come with this, but this is not optimized for android. Some kernels do optimize it and use it.
Noop - Simple and least overhead of all I/O schedulers. Produces the best outcome for some cases and some do swear by it. It's downside is that it is easily bogged down by high I/O transactions.
Deadline - Optimized for mobile-like devices like Android. Also, some do swear by this. If its writes_starve sysfs is tweaked to be fair, it's the same as SIO.
SIO - It's a fair deadline scheduler. It's the best scheduler. Nuff said.
VR - A newer I/O scheduler that places penalty on reverse seeks. Not for flash drives, though the R penalty can be tweaked to be a multiplier of 1. Even if this is done, it has a high overhead.. Read more here: http://www.gelato.unsw.edu.au/IA64wiki/IOScheduling/VRscheduler
BFQ - Too high of an overhead, it is optimized for spindle disks.
You can pick and choose from Voltage Control or other UV/OC apps and apply it immediately to feel the difference.
Here's my assessment of all the schedulers that I know:
SIO> NOOP> Deadline > VR > BFQ > CFQ
NOOP is a simple I/O scheduler without overhead that tries to do each I/O transaction as it comes (FIFO). When a group of transactions is detected, it will try to merge it together to make batches of transactions (makes the whole transaction faster). NOOP doesn't have starvation detection, hence if an I/O transaction takes a painfully long amount of time, it will still continue to do it rather than switch the CPU into doing something else e.g. GUI interrupts (i.e. scrolling lists, flicking screens). All other schedulers also have the "merge" feature. NOOP is the only one that makes the "merge" feature its only feature.
CFQ is a complex I/O scheduler that tries to determine the address space of the transaction and applies a cost algorithm in that if the address is close together, it will group them up and perform them. It also tries to make the transaction incremental (i.e. reading/writing through address incrementally so that the disk spindle needs to wind down the least in conventional platter hard disks) The problem is, our flash devices have very little delta between reading a far reaching address space (than the one currently being written/read) or a closer one as it doesn't rely on spindle/rotations. Hence, having this costing algorithm adds overhead and slows down the overall transaction. CFQ has a lot of algorithms to make sure each process gets a fair slice of time on I/O transcations. Too much overhead.
Deadline has a starvation detector and is simple enough that it doesn't have all the overhead of doing rotational/costing disks algorithm. However, reads are done 2x more likely than writes as it has a algorithm based on weights in that reads must be done first if both a read and a write is detected. It has a 2:1 ratio of read to write weights coded into the scheduler (that can be tweaked - writes_starved, will include it in the next version of system_tweak). Hence it's not a fair scheduler.
SIO is Simple I/O that tries to implement a NOOP type scheduler that has starvation detection. Hence, long I/O transactions will be preempted and given CPU time only after other faster transactions are completed, guaranteeing smoothness. Also, it doesn't have overhead of calculating costs. Also, it has a fair number of writes to read, guaranteeing that all transactions are equal.
BFQ has a lot of algorithms to make sure each process gets a fair slice of bandwidth (Budget Fair Queueing). Too much overhead.
V(R) tries to make sure that each transaction has a weight associated with it, being R. And if the seek is reversed, the R will be multiplied by a penalty making it less likely to be processed. Not for flash drives as reverse seek in a flash drive is just as fast as a forward seek.
In benchmarking tests, the tests normally consists of testing the time it takes for a contiguous I/O transfer from 1 point to another. NOOP excels at that because it won't let itself get interrupted to perform another I/O task. This would mean that in real life testing, NOOP will let a long arduous task to finish while at the expense of UI functionality (you will get UI lags)
SIO on the other hand will perform badly at benchmarking as it gets pre-empted when the contiguous tasks takes more than 0.5secs (for synchronous tasks as benchmarking tools perform a synchronous I/O task from one point to another) to another more important task like UI interrupt (when you're scrolling) or Kernel interrupt (when your kernel needs to perform garbage collecting or swap memory etc)
The 0.5 secs can be tuned in the SIO tuneables though, but I would think 0.5 secs for synchronous tasks and 5 secs for async tasks is pretty good to maintain a balance between long/short tasks enabling a smoother experience in Android.
LowMemoryKiller
The LowMemoryKiller is a constant debate between more free RAM and more multitasking capabilities as free RAM (more than 60MB free) is actually wasted RAM. The fact is SGS only has a puny amount of RAM left after a few big chunks are allocated to the Graphics, Modem, Sound and Video (and some others that I do not know a lot about). With that knowledge, Samsung decided to give the SGS SL a bigger amount of RAM when they released it ( about ~650MB of RAM read that from somewhere, can't remember).
The LowMemoryKiller is actually a feature in the Android OS for better memory management.
You can read about it more here:
http://forum.xda-developers.com/showpost.php?p=5442369&postcount=1
This is an important feature due to the perennial problem of having low free memory causing lagginess and slowness in launching apps. When you have free memory lingering around the number of 40MB or less, the Android OS just lags like hell.
What this would mean is, you would want to tweak the LMK to not have the situation of it having less than 40MB (or even close to that).
The modern Linux machine in the Android ecosystem relies on a mechanism called Low Memory Killer (LMK) to consistently free up RAM. This is due to Android's internal mechanism of caching apps (and never fully exiting them) when you press the back button. This is to enable faster app switching and provide a seamless experience for apps usage model. Android also, by itself will also constantly look for often used apps to cache them for faster app opening. This will happen even before your system fully boots.
Now, when you mention LMK, the most obvious thoughts that come up are minfrees and Out Of Memory (OOM) groupings. Yes, those two are integral parts when it comes to LMK. The issue here is that no one actually mentioned that there are two LMK systems in Android, that being:
- Linux LMK
- Android Dalvik VM LMK
Both are separate entities that kills/removes app/dalvik cache from RAM when RAM reaches a certain level.
What confuses most people (including me) is that the OOM groupings of both mechanisms have the same names being (Android 2.3 based):
LMK App Categories
FOREGROUND_APP: Your apps in the foreground, being used currently, interfacing with the user.
VISIBLE_APP: Visible app that is still viewable by the user, but not interacting with the user, example could be apps that reside in the status bar, and giving live information i.e. Os monitor graphs.
PERCEPTIBLE_APP: App that the user can still perceive i.e. Music app that is playing music.
HEAVY_WEIGHT_APP: RAM heavy apps that are not being interacted with, but will be a pain to load if its information is cleared in the memory.
SECONDARY_SERVER: App that acts as a secondary server. Not sure what this really means, but client-server thingy but secondary? Could be something that syncs with an app, but is not syncing currently?
BACKUP_APP: App that is currently making a backup (like Titanium backup?)
HOME_APP: Your launcher.
HIDDEN_APP: An exited app that still significant residual memory in the RAM. Exited only some time ago, or is constantly used by the user.
EMPTY_APP: An exited app that only has small remnants of residual memory in RAM. App that is exited quite some time ago.
Take note that this is my understanding of the OOM groupings. If there are mistakes, please correct me
Tuning LMK
Both the LMK and Dalvik VM has this groupings and they can be tunable by using prop and lowmemorykiller/parameters/adj respectively.
One errata about this is that the Dalvik LMK has one extra tunable which is CONTENT_PROVIDER, which affects widgets that are not currently refreshing or displaying information. The ADJ (which I will explain later) is not available to be tuned though. And it is clearly missing from the Linux LMK.
The ADJ is the so-called priority of the app categories, with 0 being the highest (should not be killed) and 15 being the lowest (should be the first to be killed). I haven't seen values other than 0-15 but I have a feeling that the numbers are arbitrary, and can be extended up to 65535, but who would want to do that since they're only 9 app categories
LMK are specified by pages, with memory = 4 * pages.
e.g.
4096 pages represents 16MB RAM (16 *1.024)
From the Linux LMK source code, the parameters can be adjusted as such:
Code:
* For example, write "0,8" to /sys/module/lowmemorykiller/parameters/adj and
* "1024,4096" to /sys/module/lowmemorykiller/parameters/minfree to kill processes
* with a oom_adj value of 8 or higher when the free memory drops below 4096 pages
* and kill processes with a oom_adj value of 0 or higher when the free memory
* drops below 1024 pages.
Take note that the oom_adj so far takes only 6 values (although I am confident that it can take more than that). Haven't experimented enough to validate that, but I shouldn't need to as assigning different oom_adj should be a given for all the app categories. This is to make the LMK intelligent enough to determine which app to kill first rather than grouping different app categories into one priority, in which a lot of popular LMK settings that devs provide do that.
And for the Dalvik LMK, my understanding is that it will remove all dalvik caches of <INSERT_APP_CATEGORY_ADJ> or higher if free RAM/pages reaches the level specified.
Hence, two things are learned here:
- Linux LMK will kill an app category of that particular RAM level or higher if free RAM drops below a certain level e.g.
Hidden_APP has a minfree of 16384 pages. If pages fall below this level, Empty_App will be killed first, free pages is recalculated, then if RAM is still below that, Hidden_Apps will be killed next.
- Dalvik LMK will clear all dalvik caches in RAM of all the App category if free RAM reaches the level e.g.
SECONDARY_SERVER_MEM is 8192 pages. When RAM reaches 8192 pages, all SECONDARY_SERVER caches are cleared.
Best Practices
Now, how do we tweak both so that it is efficient in doing its job, i.e. LMK.
From my experiments I can safely say that:
- Below 60MB free RAM you will feel lag 5-10% of the time.
- Below 52MB free RAM you will feel lag 5-15% of the time.
- Below 46MB free RAM you will feel lag 15-20% of the time.
- Below 42MB free RAM you will feel lag 20-50% of the time.
- Below 36MB free RAM you will feel lag 100% of the time.
The experience of lag increases exponentially from 60 down to 36MB. Hence, the LMK should be tweaked against that.
Also, it is considered best practices to group oom_adj settings of Linux LMK with the Dalvik LMK as when free RAM drops to that level, both the Linux LMK and Dalvik LMK will work together to free up at both sides.
The 6 oom_adj that can be tuned for Linux minfree also need to be tuned correctly, failing this would make the LMK too aggressive/under aggressive in mid levels (even if your EMPTY_APP is aggressive, if your oom_adj is selected incorrectly, you'll get to a point where memory leak occurs).
Talon LMK - This is obsolete, TalonDev is using ThunderBolt! LMK from 0.5.x
Take for example, the Talon default LMK setting where:
LMK_ADJ is 0,1,2,3,7,15.
It's EMPTY_APP is 15
It's HIDDEN_APP is 5
It's HEAVYWEIGHT, SECONDARY and BACKUP is 3
Last three values of MINFREE is 4096, 9216, 12288.
Where's the issue here? If you noticed it congrats.
If you didn't, here's the issue:
The minfree 12288 is tied to EMPTY_APP which has a OOM_ADJ of 15.
The minfree 9216 is tied to nothing but has a OOM_ADJ of 7
The minfree 4096 is tied to HEAVYWEIGHT,SECONDARY and BACKUP with the OOM_ADJ of 3.
The LMK_ADJ is important as it represents the checkpoints where the Linux kernel will check for minfrees and kill them. Here's a situation:
Memory is below 12288 pages, OOM is triggered and Linux looks for EMPTY_APP to kill and kills all of them. Job done. Memory is back to >12288 pages.
After a few days, memory is below 12288 pages again, OOM kills all EMPTY_APP, but free memory is still lower than that. It sees if the next checkpoint is fulfilled, which is 9216 pages, and yes memory is still below 9216 pages. It looks for an OOM_ADJ of 7 and above to kill, but fails to find any as 7 and above OOM_ADJ only consists of EMPTY_APP.
Here comes the quandary. The next checkpoint is 4096. We're not ever going to reach that as you'll need memory to fall below 16MB, and at that time it'll be super sluggish to even support GUI. Hence BAM, memory leak or lag or something.
Supercharger LMK 512HP - Multitasking
Let me just paste this to avoid a lot of retyping
Code:
FOREGROUND_APP_ADJ=0
VISIBLE_APP_ADJ=4
PERCEPTIBLE_APP_ADJ=2
HEAVY_WEIGHT_APP_ADJ=5
SECONDARY_SERVER_ADJ=6
BACKUP_APP_ADJ=7
HOME_APP_ADJ=1
HIDDEN_APP_MIN_ADJ=8
EMPTY_APP_ADJ=15
FOREGROUND_APP_MEM=1536
VISIBLE_APP_MEM=3072
PERCEPTIBLE_APP_MEM=1024
HEAVY_WEIGHT_APP_MEM=10240
SECONDARY_SERVER_MEM=10240
BACKUP_APP_MEM=15360
HOME_APP_MEM=1024
HIDDEN_APP_MEM=15360
EMPTY_APP_MEM=25600
LMK_ADJ="0,4,6,8,14,15"
LMK_MINFREE="1536,3072,10240,15360,20480,25600"
A few things here:
It's EMPTY_APP and HIDDEN_APP is too large, 80 and 100MB respectively, but the 80MB is a false flag hence it doesn't really matter if you tweak that and you can get a very minor degree of multitasking because of this false flag. I'll get to that in a moment.
It's PERCEPTIBLE_APP has higher OOM_ADJ than VISIBLE_APP (odd selection, but RAM rarely goes below 40MB before it starts lagging like hell) People would reboot their phones when it gets to that, but it rarely gets to that for this configuration as LMK is pretty aggressive here.
Now, it's LMK_ADJ is "0,4,6,8,14,15"
15 is EMPTY_APP,
14 is nothing
8 is HIDDEN_APP - it looks like it'll only kill HIDDEN_APPs when it reaches 60MB, with HIDDEN_APPs being the heavy hitter of apps as most apps will end up in this category. Hence why multitasking is still doable (to an extent) but an aggressive LMK means taking a call or switching to a browser will kill your game (losing saves). Inconvenient, but it works for some people who haven't played a long game without saving and never took a call in between. Imagine the horror LOL!
Juwe's RAM Script
Code:
if [ -e /sys/module/lowmemorykiller/parameters/adj ]; then
echo "0,1,2,4,6,15" > /sys/module/lowmemorykiller/parameters/adj
fi
if [ -e /sys/module/lowmemorykiller/parameters/minfree ]; then
echo "2560,4096,5632,10240,11776,14848" > /sys/module/lowmemorykiller/parameters/minfree
fi
No OOM_ADJ are given, hence the stock ones are in effect here.
From init.rc, this is the stock 2.3.5 OOM_ADJ.
FOREGROUND 0
VISIBLE, PERCEPTIBLE 1
HEAVY_WEIGHT, SECONDARY_SERVER, BACKUP 2
HOME 4
HIDDEN_APP 7
EMPTY_APP 15
This one also suffers from the false flag of the 2nd last minfree not being used. It will start killing HIDDEN_APP at 40MB, which is usable (you'll only get lags 15-20% of the time, and most probably after long usage). Other than that, it's pretty stable.
Misc
There are a few known scripts that tweaks the LMK as well as the app priority (yes, the priority of the process categories can be changed too by using setprop.)
Supercharger is one of them:
http://forum.xda-developers.com/showthread.php?t=991276
Take note that Talon doesn't permit Supercharger to be used (it will override it when booting through boot scripts) as Talon itself uses its own LMK settings that are optimized for ZRAM/Swap.
Kickasskernel script is also included in Supercharger. The script will clash with Zach's script in ThunderBolt! too as both of them tries to set different values for the same settings.
Note that Zach's script doesn't tweak LMK settings as i9000 Talon doesn't permit it. With that, if you're using Zach's scripts, you would need to find other ways of tweaking the LMK. Using Auto Memory Manager is good. You can download Supercharger, look at the presets and apply it using Auto Memory Manager. The preset is the only thing important here
LMK App Category Priorities
Using setprop, there is a way to set the priorities of the category. Since, app categories are different, I can only offer one recommendation: The HOME_APP_ADJ.
This prop setting sets how high of a priority your launcher is. A 1 or 2 is sufficient to make sure your launcher doesn't get killed. However, do you really want it to be on 1 or 2. Based on the previous article (LMK/OOM), you would know that OOM priorities are comparatively based on one another. Setting it 1 or 2 in stock 2.3.5 values would basically override PERCEPTIBLE/VISIBLE app priorities. Do you want your launcher to be killed only after your keyboard/music player to be killed? You decide
Journaling/Barriers
This has been a touchy subject here in XDA for most people who debate about it. Most recently, the SAS/Acid tweaks included a way to disable journaling on these partitions:
/system (System is read only, it's safe to remove journaling. However, you will not see speed increase by removing it as you're not writing onto /system 99.99% of the time unless you're using Titanium backup to remove system apps or copying init.d scripts to it)
/cache (Cache can be rebuilt on the fly. Data corruption on it is not game breaking)
/data (All of your data on your phone is here. Removing journaling can risk data corruption. Read more below)
On whether we need journaling or not, I will pose this situation:
Journaling is required to maintain data consistency in events that could lead to data corruption. Data could get corrupted in a number of situations:
- Misbehaving app that constantly writes without syncing/committing data to the disk
- Power loss due to forced reboots or bootloops when data is partially written/committed into disk
Android will normally buffer its writes before committing to the disk. This way, data stays in the RAM before data would only get written into the disk after a period of time. Take note that we as Android enthusiasts seek ways to better our phone to get the most out of it through experimental and sometimes wacky ways. Take OC/UV for example. When we OCed or UVed too much, sometimes our phone will get deadsleep or constant reboots. This leads to corruption if journaling is not turned on. However, we can get corruption too even with journaling but the risk is smaller.
Mount options too, play a role in whether journaling can be safe/unsafe. Most lagfixes will place a "barrier=1" in the /data to make sure that journals are actually committed before an out-of-order write is done. With that, the risk is greatly reduced at the cost of performance. You could experiment by removing barriers and see if it works for you. No guarantees on data if you remove barriers! More info on ext4/barriers:
http://lwn.net/Articles/283161/
http://kernelnewbies.org/Ext4#head-25c0a1275a571f7332fa196d4437c38e79f39f63
If you do disable journaling, make sure to manually run an fsck on your disk. Make sure the fsck binaries are in your binary paths (echo $PATH to show your binary paths). Don't ask how to do this if you're unable to do fsck. It is your own risk that you are disabling journaling/barriers.
One experiencing I would like to relate is this:
I've personally disabled ext4 journaling on my device. After experiencing a sudden power loss (forced reboot), my apps started FCing left and right and device became unstable that it sometimes rebooted when the device is sleeping. In other words, it's a lost case. Reflashing was the only way to restore my phone. This happened 1 day after disabling my journals.
Also note that ext2 is basically an ext4 without journaling. However, ext4 is updated all the time while ext2 source is not updated for quite some time (2 or 3 years?). Most optimizations are already in ext4 while ext2 even without journaling is slower than ext4 without journaling. A comparison of performance:
No journal:
ext4 > ext2
With Journal:
ext2 (can't do journaling in ext2) > ext4 > ext3
Update: Attached is a JournalingOn.zip for i9000 only that you can flash to rejournal your partitions (Only for i9000 devices!). Also attached is Acid Tweaksv6 - Removed Useless Stuff that will disable journaling only for /system and /cache, if anyone is interested. You will need to rejournal first before unjournaling. To be sure that /system and /cache has no journaling and your mounts are applied correctly, type "mount" without the quotes.
You'll be able to see that /data will have:
Code:
barrier=1, data=ordered
/system and /cache will have:
Code:
barrier=0, data=writeback
To be really sure, you can check by using tune2fs included in both the JournalingOn.zip and Acid Tweaksv6 - Removed Useless Stuff.zip.
Copy the tune2fs to /tmp and set rwxr-xr-x as its permissions using Root Explorer/File Expert
Code:
/tmp/tune2fs -l /dev/block/mmcblk0p2 | grep features
You can substitute the /dev/block/mmcblk0p2 (which is /data) to /dev/block/stl10 (/dbdata) /dev/block/stl9 (/system) /dev/block/stl11 (/cache) to check each partition.
Continued in Post #2 - Lack of space
Still posting ...
Question
I guess this is safe too on a deodexed ROM, too freeze those bloatwares u listed?
Page 2
Undervolting/Overclocking
This is also another touchy subject, but more towards people complaining about phones that get forced reboots or bootloops. OCing is done to get better performance on your android. WARNING: Ocing will cause more wear and tear on your CPU and will reduce your CPU lifetime. How much it will reduce it? No one knows. It depends on how sturdy your CPU is, and that cannot be measured by any means. It could be reducing months out of year e.g. 6months out of 3 years? No one actually knows.
UVing on the other hand reduces battery drain especially when you UV your 100MHz as 90% of the time in normal usage, your CPU will idle at 100MHz. How much can it save? No one actually did a benchmark on it. Save to say, UVing does not harm your CPU, it will actually extend the life of it by reducing wear and tear Oh, bootloops do corrupt data if you're without journaling
Always remember to clear your UV/OC settings before flashing another kernel!
Take note that the ability to OC/UV depend on your phone. Some SGS can UV better or OC better and some might not.
On how to UV:
1. You can UV more on the lower frequencies than the higher frequencies.
2. Do a UV for
100MHz with (950-150=800) - Take note that 950 is the base value for the voltage. Some kernels might have changed this value to 925 or 900. This is why clearing your OC/UV settings is important as the OC/UV settings will only load the voltage difference, which in this case -150. If the base voltage is 900 and you do a -150 for it, you'll end up with 750 which might cause bootloops.
3. Limit the max frequency to 100MHz. WARNING: Doing this will significantly slow down your system to a crawl, but it is still running. This is done only to test the stability of your system. You can skip this if you want, but you would need to find a way to stress test your CPU at the 100MHz value (and other values as well by limiting the max frequency). Failing in testing this will result in deadsleeping (as your phone is in 100MHz when you sleep and if you undervolt too much, you deadsleep)
3. Test with RockPlayer (or MX Video Player) and play an RMVB file using software decoding for 10mins. If your settings is unstable, Android will freeze up and reboot. (this is just an example, but I find that this way stresses the CPU to the max. I fail to find another way of stressing it as even playing NFS is stable on some voltages but fails when I play rockplayer. Hence rockplayer is the best way so far)
4. After doing this, remove the limit and move on with the next few frequencies.
The rest of the voltages, just rinse and repeat.
200MHz with (950-100 = 850)
400MHz with (1050-75 = 975)
800MHz with (1200-25= 1175)
1000MHz with (no change)
You can experiment with lesser values than these if you get freezes/bootloops as this is by no means a one size fits all value. Some might think this UV is overly aggressive or some might think that this UV value is too underwhelming.
Mine if you're interested:
Code:
100MHz = -200 (950 base)
200MHz = -150 (950 base)
400MHz = -125 (1050 base)
800MHz = -75 (1200 base)
1000MHz = -50 (1275 base)
As for OCing, you would do the same to test the stability. Just that you will be enabling a higher clock for your L0 frequency (L0 is the highest frequency). Some kernels might add more frequency states i.e. from the 5 states above to 6. You can try using Tegrak OC app too. It all depends on your own experimentation.
Memory Leaks
If you found out that your Android is laggy after sometime and a reboot will make it faster, then you're experiencing memory leaks. "free" is a command to show your currently free memory. It will not necessarily be the same value as your phone's free memory (as it takes into account swaps and buffers)
1. Go to terminal emulator (or download the script at Post #3)
Code:
su <ENTER>
free <ENTER>
This will show your buffers and free memory.
My example:
Code:
total used free shared buffers
Mem: 348548 340280 8268 0 1320
Swap: 163836 47292 116544
Total: 512384 387572 124812
Then do this:
Code:
sync <ENTER>
echo 3 > /proc/sys/vm/drop_caches <ENTER>
Type:
Code:
free<ENTER>
And you'll realize that the buffers will reduce and free memory will increase, like this example:
Code:
total used free shared buffers
Mem: 348548 305212 43336 0 88
Swap: 163836 46804 117032
Total: 512384 352016 160368
That means it's done.
Click to expand...
Click to collapse
If this solves the laggginess problem, it's due to vfs_cache_pressure being too low and dirty_ratio being too high. However, in most cases, you don't have to do this as Linux will manage to clear the RAM in a timely manner as long as there are no apps that constantly hold on to the memory (not releasing it). Hence, only do this when necessary (lagginess and such).
With that, I've updated the system_tweak yet again, with this knowledge by making the VM settings more aggressive, which will trigger the memory leak faster. I made this so, as there's a workaround to clear the caches when it gets full.
Having a low vfs_cache_pressure and a high dirty_ratio will save battery and make your device perform faster at the cost of higher RAM usage.
You can actually automate it by using Script Manager by making a script, pasting the instructions and making a widget out of it. To learn more, read the android market description or the in-help guide in the app.
Some commonly asked questions about drop_caches that were answered by me from flolep:
http://forum.xda-developers.com/showpost.php?p=17727859&postcount=3428
http://forum.xda-developers.com/showpost.php?p=17731938&postcount=3446
http://forum.xda-developers.com/showpost.php?p=17736421&postcount=3450
Checking for Battery Drain/ Saving battery
Starting from Gingerbread, you can't really look for Partial wakelocks anymore to determine what is draining your battery at night. BetterBatteryStats is a way to check for that. It also can provide the process that drains your battery most of the time.
A high partial wakelock usually says that something is waking up your phone at night. With that, checking partial wakelock, you can see if these are the culprit:
-Network Location
-Location Manager Service
If so, disable Lattitude or any location check-in app that you're using. It's checking you in every few minutes that drains the battery.
Disabling Wifi/3G/HSDPA saves battery too. I find that Wifi/Edge drains the least amount of battery when idling. To switch to EDGE as opposed to HSDPA/3G.
Go to:
Code:
Settings > Wireless > Mobile Networks > Network Mode > GSM Only
Disabling "Use Wireless Networks" in location and security would save a little bit of battery too I guess. It's in:
Code:
Settings > Locations and Security > Use wireless networks
CSC
CSC is a folder that defines your APN settings and country/region specific configurations aside from Language/Time that is configured in build.prop(also for Samsung Apps).
Having to manually set your APN is annoying right?
Your product code being KOR by default is another annoying thing to deal with. How do I resolve this?
1. Get your CSC from your own country here: http://forum.xda-developers.com/showthread.php?t=948790
2. Extract from the zip file /system/csc/<folder> (where <folder> is your Country's CSC)
3. Use Root Explorer/File Expert to copy it to the phone's /system/csc/.
4. Use nitrality to change your product code. WARNING: This will wipe all your data.
Odexed vs Deodexed
I've been using Deodexed ROMs since I first flash my custom ROMs. One gripe I have is that I seem to have lost the stock smoothness/speed that I experience when I'm using a stock ROM. I found out that deodexing actually extracts the customization files back to the APK (using APK manager) and Odexed files are actually done to optimize the speed of those files itself.
The only reason ROM chefs are using deodexed files is that it is easier to theme. There is no need to decompile the odex files and make the changes as all the theme files are in the APK themselves.
Only other reason that I know of is the overscroll glow. Odexed files can't support it. However, that is a small price to pay for speed/smoothness that I am willing to sacrifice.
Busybox
Busybox is required to perform all of your superuser activities in your android phone. There are some problems associated with this when ROM developers decide to use a certain version of Busybox that are incompatible with the binaries that we use in our phones. When you found out that after changing your kernel/ROM:
- You still have superuser and Titanium Backup still works but,
- Root Explorer/File Expert can't copy files correctly to the /system after mounting rw
- Voltage Control/ Pimp My CPU/ Control Freak/ SetCPU cannot create the Svolt_scheduler file in /etc/init.d
You have a clashing busybox version issue. This can be remedied by:
- Installing the busybox installer from the market
- Installing busybox 1.17.x into /xbin
- Removing all other busybox binaries from your binary path. (This is optional if you found out that after installing busybox, everything works. Try it first before removing) To know your binary path, do an
Code:
echo $PATH
Nandroid Backup
Nandroid Backup is done in recovery (VolumeUp + Home + Power). In recovery, choose Backup And Restore. What it does is it backs up your:
- Boot
- System
- Data
- Cache
When you restore, you should preferably use Advanced restore and restore the /system and /data. All others can be built from scratch (except /boot). If you're converting from CM7 to Samsung Roms, it's best to start from scratch either ways. Restoring nandroid from any is considered dangerous and not supported by most cases. Best is to use Titanium Backup to backup as it can be restored both ways (only restore app though, restore data sometimes can lead to FCs)
Voodoo Color
Voodoo Color is also a point of contention among users. Some like it and some hate it with a passion. If your kernel does support it, here's a way to tweak it:
1. Tweak the color profiles. Can't see a difference, hence I would just pick Voodoo most of the time.
2. Tweak the gamma first to a comfortable value. I.e. drag the 3 sliders together to a comfortable gamma level. After that, try looking in the gradient (the gray slab below the slider) and try to find for neutral gray values. Adjust each slider until you find a neutral gray (i.e. left and right until you see that slab is truly gray)
3. Tweak the RGB multiplier until you have a comfortable level (3 sliders together). Then tweak it the same by referring to the gradient until you're comfortable.
4. Switch off your display for a while and look at your surroundings to reset your eyes. Then turn on your screen again and see if its too green/yellow/blue etc. Adjust the gamma/RGB multiplier until you're satisfied.
This might take a few rounds of testing, but in the end you'll be truly satisfied with it
i9000 Specific
i9000 Kernels - In Depth
You will need to have a stock odexed (why odexed? read a few passages below)ROM with root. You can easily do this by flashing stock XXJVS 2.3.5 and then flashing a custom kernel through Odin like:
- Dark Core - Uses Voodoo initramfs
- CF-root - Uses CF-root initramfs
- Semaphore - Uses CF-root initramfs
- Midnight - Uses Speedmod initramfs
- Galaxian - Uses CF-root initramfs
- Voodoo - Uses Voodoo initramfs
You can flash the custom kernel through Odin by placing the tar file into the PDA section and pressing Start. At this point, do not convert your partitions to ext4 (lagfix) unless you're using a Voodoo based initramfs as Voodoo based initramfs will convert your partitions to ext4 automatically at first boot.
After flashing a custom kernel through Odin, you will gain root. From there, you can choose to use any other custom kernels that use CWM to install or stick with the custom kernel that you've flashed through Odin like:
- TalonDev - Uses Voodoo initramfs
- TalonSH - Uses Voodoo initramfs
There are other kernels as well, but since I did not stress test them, I will not include them here. This thread lists the full repertoire of custom kernels that you can choose from:
http://forum.xda-developers.com/showthread.php?t=1196704
On which custom kernel to pick, you're advised to look at the individual threads original post as well as the last 5 pages of the thread to know about its stability and features. I pick TalonDev myself as it has compache as well as the latest upstream (kernel updates from the Linux OS as well as the official Android Open Source Project/AOSP and optimizations) patches.
At this point, you should decide if you would want to convert to ext4 (lagfix) or not. Your phone by default will reside in an RFS system. The RFS at this point in time is pretty stable and its performance can easily match ext4. Too bad Quadrant scores are bad for RFS, but who cares about Quadrant anyways. I myself choose to use ext4 as the TalonDev kernel has a lot of ext4 upstream patches that optimizes the usage of ext4 on Android.
If you're using Voodoo initramfs, you'll be converted to ext4 automatically.
If you're using CF-root initramfs, you will require the CF-root ext4 app to convert that can be found here:
http://forum.xda-developers.com/showpost.php?p=12651371&postcount=7
Note that on some kernels that use CF-root initramfs, the ext4 app will warn you that you're not on CF-root type kernels. Ignore this warning. You'll be able to convert to ext4 anyways unless you're on Galaxian. Certain Galaxian versions (since the kernels are not versioned, I can't tell which versions are not working) will bar you from converting to ext4 using the ext4 app. If that is the case, just flash CF-root, convert to ext4 and then flash back to Galaxian.
Also not that CF-root based initramfs kernels will remove your bootsounds on first boot. Don't be alarmed by this.
In terms of which lagfix is better (Voodoo vs CF-root lagfix), I can't tell at this point in time. Both are equally good. Since TalonDev uses the Voodoo initramfs, I am inclined to use the same when I am using the same kernel. That should be a good yardstick to follow.
BIGMEM/ Non-BIGMEM:
Some kernel developers released BIGMEM versions of their kernel:
-TalonDev BIGMEM
-TalonSH BIGMEM
-Semaphore bm version
The only difference a bigmem kernel can bring is more memory at the expense of 720p video recording. Playing a 720p video is still possible. Recording it is not on a bigmem kernel. Bigmem kernels normally have 13MB more than their non-bigmem counterparts. How this 13MB could affect you? It depends on the apps you use and how aggressive your LowMemoryKiller is.
XXJVT System apps
System apps can be frozen/removed to make your system faster/less battery draining.
In order to remove/freeze system apps, you would need Titanium Backup (Pro) or System Tuner.
The choice whether we want to remove or freeze the system apps should now be decided. Titanium Backup Pro and System Tuner uses a built in Android mechanism to freeze your system apps - PM disable. PM disable will actually disable the app from the system itself. It will not drain the battery or even launch itself. It is a safer way so to speak. Removing will physically delete the APK app from the system freeing up disk space. If you decide to remove, make sure to have a backup before proceeding. Even if you have a backup, restoring from Titanium Backup may sometime fail. Hence, do this only if you're sure you want to remove that certain app. Freezing an app will make it easier to defrost without any consequences.
Here are the apps that I disabled:
Code:
AngryGPS > Used to manually configure GPS. Not needed if GPS works OK.
BluetoothTest
Buddies Now
lcdtest
screencapture > Screen capture app
Daily Briefing
Days
EncryptApp
Factory Test
Gallery -> I use QuickPic as a replacement. It's faster than Gallery.
Google Partner Setup
Google Search > Google search widget
Home screen tips
HTML Viewer
Market Feedback Agent
Market Updater > I froze this to avoid being updated to Market 3.0. It currently sucks now
Mobile tracker > Mobile tracker, only if you use it, then keep it
Mobile tracker settings > Mobile tracker, only if you use it, then keep it
Perso
PhoneSetupWizard > Required if you're first booting/installing the ROM, not needed afterwards
PopupuiReceiver
Press Reader
Print via Bluetooth
RoseEuKor
Samsung Account
Samsung Keypad -> I use Swype beta instead
Self Test Mode
Service mode
SimDetachNotifier > Will notify you if you detached your sim card. Seems pointless
SNS > Only necessary to sync your contacts if you're using Social hub to do so or syncing calendar from Facebook
SNSAccount > Same as above
Social Hub
Software Update
Synchronise
TwLauncher -> Using Go Launcher Ex instead
wipeoutreceiver > Wipe if phone is stolen. Not needed if you don't use the Samsung service
WlanTest
wssyncmlnps
There are others that you can remove as well. I'm hoping to gather feedback on the other APKs that can be removed and what will be affected by its removal. Please post if you have more information
Disabling Lagfix
Most ROMs would advice you to disable lagfix before flashing a new ROM. Although this is not necessary in most cases (as all Gingerbread kernels support ext4 from the get-go) moving from one kernel to another might need it (to optimize the initramfs it is used on). Hence if you're swapping from one kernel (that has a different initramfs) to another. It is adviseable to undo the lagfix.
CF's lagfix can be undone by using the ext4 app.
Voodoo lagfix can be undone by using the Voodoo Control App.
Speedmod lagfix can be undone by using it's recovery.
Odexed ROM
You might say, hey if I'm using stock, I'll be missing extended power menu, battery percentage and all other theme mods that are not in the stock ROM. Fear not, you can get all these back including Gtalk2, CRT screen off etc here:
$omator's stock+
Gtalk2
There are odexed themes too, in which the developers would decompile the odex files into APKs, make the changes then compile the APKs into odex files again. It is more tedious than deodexed themes but odexing generally makes the phone smoother
You can find the themes here:
http://forum.xda-developers.com/forumdisplay.php?f=666
WIFI Issue on JVR/JVS/JVT
You might be facing some wifi connectivity issues on JVR/JVS/JVT ROMs i.e. it disconnects every few seconds.
This is due to some changes in the ROM that doesn't permit a "Forever" lease time from your modem. Change your lease time to an hour (or two) or if you don't have that option, remove your address reservation option from your modem (Yes, it's a modem only tweak, nothing you can do on your phone)
Memory Freak
Memory Freak is an app in TalonDev that tweaks the ZRAM/Swap and LMK settings. There's a golden rule to the ZRAM/Swap that is:
Swapping to and from the ZRAM will be slower if the amount of ZRAM is more than 50% of the total usable memory, . Hence, I set mine to 160MB (from the 340 total usable RAM). Swappiness in most Linux machines is 60. This means, the system will be inclined to swap in/out more than just using the RAM. I set mine to 50 as a personal preference so that there would be 50% chance that the system will use swap or RAM.
HiddenApp is the amount of free memory to be when LMK starts looking for hiddenapps to kill. I set mine to 52 for my multitasking preference. Experiment with it to see how much multitasking vs smoothness you're looking for. My preference will change in time. Check my signature for the most updated ones.
WIP:
This is obviously a work in progress article that will undergo changes as the Android scene improves. I will spend time to make edits and additions to the post whenever I see fit. Sometimes I will post changelogs at the end of the thread, sometimes I won't if I only make minor edits. Just be sure to check back often to see any new tips offered
Credits:
I claim no credit on these findings except for the ones that I've researched on my own. However, all of it is not of original work since I form my own opinions after reading a lot. I also don't claim that the settings I posted are the most optimal there is. It might not even work well for most of you guys. The key here is tweaking it to your own perfection as there is no setting that will cater to everyone's needs. Hence the real people who deserve credits are:
* All the devs' kernel/apps that I posted here
* XDA forum
* Google
Attention!
If you're looking for scripts, here it is:
[CWM][SCRIPTS][TWEAKS] Thunderbolt!
Script Reviews are here:
Script Reviews
GUIDE UPDATES
UPDATE 1/10/12
* Edited some sections with some new knowledge that I have. A few places, can't name them all Check them out and see if you can spot them.
UPDATE 10/19/11
* Moved around some guides and grouped them together
* Updated some guides to make them more Android centric (as opposed to i9000 centric)
UPDATE 10/18/2011 - Added an indepth article about LMK/OOM. CTRL-F for LMK.
UPDATE 10/12/2011
* Added some comments on the apps removed/frozen so that you can make an informed choice of why the apps can be removed/frozen.
* Added my analysis of most schedulers that I know of and why they are good/bad.
* Moved the scripts to ThunderBolt!: LINK
* Added a guide on the wifi issue for JVR/JVS/JVT
UPDATE 10/1/2011 - Moved the script reviews to this post LINK
UPDATE 9/23/2011:
* Removed the JournalingOn.zip and Acid Tweaksv6 - Removed Useless Stuff.zip because people might use it for devices other than the i9000. This is because in other devices such as SGS4G, the /dev/block/stl10 is /data while in i9000 it's /dbdata. The JournalingOn.zip will not enable journaling on /dbdata without some editing. Hence, I removed it as I don't have a time to put up a warning or notice, and didn't have time to edit the script inside the zip file.
* Readded an edited JournalingOn.zip and readded the Acid Tweaksv6 - Removed Useless Stuff.zip (did not change) to the first post. Only for i9000 devices!!
* Added another way to check if you're journaled or unjournaled. Check the guide below.
* Added some more explanation on common scripts I found.
* Moved the guides around due to lack of space. I added some minor changes to most of the guides. See if you can detect them
Helpful!
pikachu01 said:
Yes it is safe to remove for a deodexed ROM too
My point of stating odexed is that my tweaks can be used from the stock odexed ROM itself
Click to expand...
Click to collapse
oh ok, now I understand, thanks for this thread, very helpful indeed .
Awesome post thanks!
Not only for the tips but for teaching me a lot too!
Sent From My Android Shizzle!
thx dude!! awesomely useful!!
Great information thanks
Can you please include GPS tweaks as well?
awesomeandroid said:
oh ok, now I understand, thanks for this thread, very helpful indeed .
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Thank you for reading it.
SkinBobUk said:
Awesome post thanks!
Not only for the tips but for teaching me a lot too!
Sent From My Android Shizzle!
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It was my hope that it will give knowledge so that people could pass it on to more people
midikarma said:
thx dude!! awesomely useful!!
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Thank you
ajazz said:
Great information thanks
Can you please include GPS tweaks as well?
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Thank you for reading it What kind of GPS tweaks? There are a few notable ones. The most useful ones are disabling AGPS as well as updating the gps.conf. Do you mean that?
Oh man... Thx for your work... This thread is very useful.
I take my hat off.
Sent from nobody knows where
Wonderful job, pikachu01! A new user will need weeks, maybe months to gather all the bits of info you put here, served on a silver platter! Thank you veeeery much.
Mods, this should be stickied!
demonstone said:
Oh man... Thx for your work... This thread is very useful.
I take my hat off.
Sent from nobody knows where
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Thank you
ZioGTS said:
Wonderful job, pikachu01! A new user will need weeks, maybe months to gather all the bits of info you put here, served on a silver platter! Thank you veeeery much.
Mods, this should be stickied!
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Thank you Zio I forgot to add a few more posts to reserve. I guess I will add links if I do have any other things to add
Indeed lots of good info here for people just starting out, and some for people like me who've been around the block once or twice too!
I figured out how to do the CSC change myself, I just put the BMC folder from stock ROM into /system/csc and used one off the CSC selector apps from the market. Is this much different from the instructions here?
Since this has brought up the topic of freezing apps I will ask a question here if I may: Is there a way to keep apps from starting services, without getting rid of them? For example I use Skype and Facebook but I don't want their services running all of the time sucking up memory. Also I notice now that I game I installed recently (E Warriors) is running a service! WTF this is out of control. Any ideas?
haloimplant said:
Indeed lots of good info here for people just starting out, and some for people like me who've been around the block once or twice too!
I figured out how to do the CSC change myself, I just put the BMC folder from stock ROM into /system/csc and used one off the CSC selector apps from the market. Is this much different from the instructions here?
Since this has brought up the topic of freezing apps I will ask a question here if I may: Is there a way to keep apps from starting services, without getting rid of them? For example I use Skype and Facebook but I don't want their services running all of the time sucking up memory. Also I notice now that I game I installed recently (E Warriors) is running a service! WTF this is out of control. Any ideas?
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Click to collapse
Yes, the CSC instruction does the same thing. I'm just a bit thorough sometimes
You could use System Tuner or Titanium Backup Pro to freeze the app and then unfreeze it when you want to use it. Freezing is actually just doing a PM disable. PM disable basically makes Android think that the app is gone when it's actually still there. Unfreezing an app is basically just 1 click, hence its hassle free.
ZioGTS said:
Wonderful job, pikachu01!
Mods, this should be stickied!
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Agreed +1
Excellent & informative
Awsome post pika.. Great work.. thx
Very nice tutorial. Should be pinned
Sticky please (with sgs chlorine).
Great work, much appreciated.
Sent from my Galaxy S using XDA Premium App
pikachu01 said:
Thank you for reading it.
It was my hope that it will give knowledge so that people could pass it on to more people
Thank you
Thank you for reading it What kind of GPS tweaks? There are a few notable ones. The most useful ones are disabling AGPS as well as updating the gps.conf. Do you mean that?
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Click to collapse
I have tried lot of Roms and none gave me satisfactory GPS performance except InnOvaTioN v2 by bezke,this Rom gave me almost instantaneous gps lock , when under partial cover it took a minute or so !
Then i moved on to v3 and was back to square one!
unfortunately v2 is no longer available for download.
I have tried Faster Fix, Gps Aids, tried changing setting through sgs tools but no go.
even tried different modems.
ajazz said:
I have tried lot of Roms and none gave me satisfactory GPS performance except InnOvaTioN v2 by bezke,this Rom gave me almost instantaneous gps lock , when under partial cover it took a minute or so !
Then i moved on to v3 and was back to square one!
unfortunately v2 is no longer available for download.
I have tried Faster Fix, Gps Aids, tried changing setting through sgs tools but no go.
even tried different modems.
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Click to collapse
well, then open a thread on general, Q&A, etc.
and let someone upload it
hopefully there are still copys of it out there
so there's a way to analyze and understand what was done to get those great results
@pikachu01:
great work on collecting all of this information & putting it in a central place !
*subscribes*
+1 for sticky
Very nice guide. It'll be very helpful for begginers. +1 for the idea to stick it
Mpokang kernel​
This kernel focuses on MAX USABLE RAM. As we know, the GNex has 1GB of RAM. A big part of it (300+ MB) is reserved for various things.
Is it really needed? No, it looks like that actual usable RAM can be much much more.
Feature List:
Many features, just as many as every other kernel. The differentiating points of this kernel are:
1) First kernel with the pioneering RAM reclaiming: from 693 --> 773 MB RAM.
2) Most available RAM: Still has the most RAM available.
3) Flexibility: Choose any of the 3 variations that suits you
4) Sophisticated ZRAM mechanism: zsmalloc from Linux kernel 3.11, enhanced zram mem operations
5) First and only kernel at the moment with huge 50%+ memory performance boost
As of v10, three (3) variations of Mpokang kernel for everyone to choose according to his needs.
Performance is the same, only the available RAM changes:
SuperRAM: 773 MB RAM -- Some rare video apps (or the gay CM video camera) may not work properly.
CM "gay" :silly: : 762 MB RAM -- All video apps work OK but still 720p, suitable for CM based roms.
1080p version: 751 MB RAM -- 1080p fully working, compatible with everything, even Android 4.2.2. Does not contain ramdisk. Clean rom installation required.
To sum up: For Android 4.3 all variations are applicable. For Android 4.2.2 ONLY the 1080p variation applies.
Valuable Notes
Note 1: Many redundant and practically useless stuff is removed. Badass sounding governors and schedulers, which don't actually offer anything were removed.
Note 2: Interactive gov from kernel 3.4, hyper gov and SIOPlus, deadline and row are the best out there. Maybe FIOPS on the future.
Note 3: In general .. more useless stuff removed equals more RAM. This does not apply to the SuperRAM variation, where many many features can be added as modules without reducing the available memory.
Kernel source: https://github.com/mpokwsths/mpokang_kernel
DOWNLOADS:
Moderation - Deleted Links.
FAQs:
Q: When using SuperRAM version I have trouble running apps like Video editor, video calling in some apps.
A: Some rare apps don't like this extreme RAM reclaiming. Use another variation.
Q: My screen colors seem a bit changed. Even if I change them like I used to in TricksterMod...
A: It's because of Purple Tint Fix. Many users experience that ugly tint, and this kernel cures it. Slightly change your color settings in Trickster. If, whatever you do, the colors look bad, report it here and I will see what I can do.
Q: I want the full 1GB of RAM. Is this possible?
A: No, full 1GB is unachievable (with TI's ION code). But if someone is willing to drop all the media support (camera, video, media playback) close to 900MB is achievable.
Changelog:
Ver. 1:
- Now using ramdisk (Osmosis modified). Now you can flash the kernel unconditionally (no more screwing from other ramdisks) and my preferred settings are kept.
- Introduction of Cleancache from kernel 3.7
- Introduction of Zsmalloc, Zcache and Frontswap from kernel version 3.8
Ver. 2:
- Reclaimed 4 MB of RAM (now it should be at 771 MB) from the frame buffer. TI has been very generous spending GNex's RAM all over the place.
- Pushed some commits from ASPK, mainly memory hotplugging related
- Went back to Anykernel format. No ramdisk since there were some complains of problems with some roms.
- Fixed vfs_cache_pressure (script not needed)
- Some memory reservation and ram leaks fixing (900KB RAM more).
- Should have a bit better battery consumption since I altered the dirty ratios.
Ver. 3:
- Modified the installation script. Now it copies the hacked Power HAL to the system so that altered gov settings do not reset after screen off (No need to check "Frequency Lock" in Trickster now).
- Removed a bunch of useless stuff. The kernel itself shrunk significantly. Boot time should be faster than ever.
- Reclaimed another 600K
- Changed interactive governor default settings. Only above_highspeed_delay needs to change to 20000 now.
Ver 4:
- Disabled all kernel debugging (should be a bit faster)
- Reclaimed another 512KB (compared to 4.1)
- Added some battery preservation routines (should consume a little less battery when watching videos)
- Some scheduler tinking
Ver. 5:
- Updated Linux kernel 3.0.88 --> 3.0.94
- Enabled ZRAM from kernel 3.7 (thanks Boype & Faux)
- Disabled Cleancache & Zcache
- Some more battery preservation additions
- Enabled full Hard Float kernel building.
Ver. 6
- ARM patches for slightly improved performance
- pushed a commit for ZRAM that will provide somewhat better memory management
- some other changes for the next version (ZRAM working together with Zcache & Frontswap)
Ver. 7
- Using Linaro Toolchain 2013.09
- Updated Linux 3.0.94 --> 3.0.96
- Improved mem operations of zram
- Backported zsmalloc from latest kernel 3.11 (zsmalloc = zram memory allocator)
- Some kernel scheduler and timer fixes
- Changes in VFS cache pressure and swappiness values to find the sweet spot
Ver. 8
- Several mutex code commits (multithreading optimization)
------ ARM: 7467/1: mutex: use generic xchg-based implementation for ARMv6+
------ mutex: place lock in contended state after fastpath_lock failure
------ ARM: mutex: use generic atomic_dec-based implementation for ARMv6+
------ mutex: dynamically disable mutex spinning at high load
- Added VUSIM voltage regulation. This is a screen regulator, so undervolting it should save some power (I have it at 1500mV without problems)
- ARM: mm: lazy cache flushing on non-mapped pages
- A couple of cache related optimizations for Cortex-A9
- Set default temperature limit @ 75C. Should be absolutely safe.
- voltage.h: Set VDDMIN to 810 - Smartreflex calibrated MPU min voltage now is 810mV
- i2c: use usleep_range to wait instead of msleep (imoseyon reported potential performance benefits)
- ARM: 7178/1: fault.c: Port OOM changes into do_page_fault
- readahead: fault retry breaks mmap file read random detection
- Some scheduler improvements?
Ver. 9
- Updated Linux 3.0.96 --> 3.0.98
- New ramdisk for the kernel. Now it can be flashed unconditionally anytime.
- Enabled loadable module support.
- Compiled many modules as external modules. Reclaimed 400KB of RAM.
- Reverted the 300Hz kernel timer. The load calculation was all over the place
- Reverted some UV commits (especially IVA) that seemed to produce freezes and SODs. Hopefully they are fixed.
- Some CPU cache code and kernel scheduler improvements.
- Added the io_is_busy interface to Interactive governor
- Now, apps that seeked 1080p won't crash anynore. 1080p support is removed in the media_profiles.xml
- Altered some default settings: color scheme slightly colder, interactive above_highspeed_delay=20000, io_is_busy=1
Yay, new kernel! Gonna test it when you pushed a build up
Looking forward to it
Sent from my Galaxy Nexus using Tapatalk 2
Going to need some testers. Are you interested? All the people interested for testing, sign up here.
I'm ready if you can enable module for PGM. Can't live without it
ronnie_1712 said:
I'm ready if you can enable module for PGM. Can't live without it
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+1
Sent from my Galaxy Nexus using Tapatalk 2
A kernel who can be really different ! It deserve to be tested. I'm interested :good:
I shall test this kernel.
Also, it would be nice if you could list down stuff that you changed/added compared to stock kernel.
Looks awesome! I could be a tester!
Sent from my Galaxy Nexus using xda premium
Tester !!
Def would love being a tester for this. Always on the edge
Sent from my Galaxy Nexus using xda app-developers app
---------- Post added at 07:25 AM ---------- Previous post was at 07:22 AM ----------
Question- does it break anything such as 1080p recording an such, I remember a time when I had my sensation that a couple of devs had kernels that gave more ram but took away some of the functionality, jus wondering if this is the case, bcuz in all honesty I can live without such high end things when they simply eat away at my battery lol
Sent from my Galaxy Nexus using xda app-developers app
Another tester!
Yes,give me something to test.:thumbup:
sent from my maguro via tapatalk
Subbed, this is going to be awesome.
Well, it seems that there are many components than can provide some RAM slices. 1080p in camera seems to cost almost 40 MBs. With fully usable 720p and photos etc, we are at 72-73 MBytes more RAM than other kernels. Test build will be up tonight or tomorrow morning.
I would also love to test this kernel. Good luck!
Sent from my Galaxy Nexus using XDA Premium 4 mobile app
mpokwsths said:
Well, it seems that there are many components than can provide some RAM slices. 1080p in camera seems to cost almost 40 MBs. With fully usable 720p and photos etc, we are at 72-73 MBytes more RAM than other kernels. Test build will be up tonight or tomorrow morning.
Click to expand...
Click to collapse
Ahhh I see figures, this is gonna b friggin sweet
Sent from my Galaxy Nexus using xda app-developers app
mpokwsths said:
Started my own kernel development.
This kernel focuses on MAX USABLE RAM.
As we know, the GNex has 1GB of RAM. A big part of it (300+ MB) is reserved for various things.
Is it really needed? No, it looks like that actual usable RAM can be much much more. Started testing some builds and the results are very encouraging. Only a screenshot for now:
Stay tuned!
Click to expand...
Click to collapse
Sik-1 said:
Ahhh I see figures, this is gonna b friggin sweet
Sent from my Galaxy Nexus using xda app-developers app
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Click to collapse
+1 !!
This will be awesome !!
Will this be based off on AK, just curious as you had the Ak kernel re-released many times ?
Great job !