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[aospa 4.4.2 kvt49l] paranoidandroid 4.3+ GEEB [05/20]

OP houstonn

10th April 2013, 11:58 AM   |  #1  
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AOSPA 4.3+ PARANOIDANDROID
Kitkat 4.4.2 KVT49L android-4.4.2_r2.1

Download ROMS from DOWNLOAD HERE

1. DOWNLOAD YOUR ROM

2. DOWNLOAD THE LATEST PA GAPPS PACKAGE - always check/use up to date Gapps unless otherwise noted

http://goo.gl/mYKmfL - RECOMMEND mini modular PA Gapps

or BANKS - if having issues with PA Gapps

Wipe Fresh Clean Install (you all know the procedure)

3. COMPLETE CLEAN WIPE - *includes system*

4. FLASH ROM & GAPPS

5. WIPE CACHE & DALVIK

5. RUN INITIAL SETUP & REBOOT

Let boot take as much time as needed. This will help avoid boot issues.

GIT
GERRIT
FAQ + HELP
BUG TRACKER
COMMUNITY + CHANGELOGS

Disclaimer / Warning!: I'm not responsible for any reason should you bork your phone

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My Github Sources
Last edited by houstonn; 20th May 2014 at 12:04 PM.
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10th April 2013, 11:58 AM   |  #2  
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Please stick to development here!!! Take all questions to Q&A thread - thanks Pony Express!!!

RULES
  • You must read the OP & Installation Instructions before installing this ROM or posting in this thread
    If you don't like how I run this thread. Leave. You do not have to be here and you are not forced to read it. You are doing so on your own free will.
    Search before posting here. You are most likely not the only one to have the question/issue.
    Have fun in this thread. I don't mind if we have some fun, joke around, or whatever. As long as it's fun.
    If you're going to post here, keep it to this ROM and this ROM only (unless its fun as mentioned above). It is useless to compare to Stock ROMs, CM10 ROMS, ect...
Please watch the 2 videos provided below before posting in this thread. thanks



Thank g33k3r for TOT file or whoever else involved in getting it.. You can go to HIS THREAD HERE to get the official lg image..
Last edited by houstonn; 7th October 2013 at 10:17 PM.
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10th April 2013, 11:59 AM   |  #3  
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This is an paste from Harsh from his thread here
Quote:

Well, our cpu are made at some quality standards. We have 4 different quality of cpu for apq8064 from Qualcomm. so depending on which one is on your phone it selects frequency table from slow, nominal, fast and faster.
Google kernel source have same frequency table for fast and faster. So those with faster are not getting their extra advantage

Quote:

You can identify you CPU chip by below command in terminal.
adb shell dmesg | grep PVS
It will give you some output as given example below

Code:
adb shell dmesg | grep PVS
[ 0.873920] acpuclk-8064 acpuclk-8064: ACPU PVS: FAST
And faster binned CPU has lot to do with UV, when you look as frequency table of faster, it is already preconfigured to have lower voltages than fast, and lot lower than slow binned.
Phones with faster binned should have better battery than slower binned phone out of box without any other configuration.
And for UV its already hardcoded and can be adjusted by System Tuner app further. And OC I am not willing to add. ( I don't think there's any gain in running our phones hotter with higher voltages by OC'ing)

default voltages for SLOW:

{ 1, { 384000, PLL_8, 0, 2, 0x00 }, L2(0), 950000 },
{ 0, { 432000, HFPLL, 2, 0, 0x20 }, L2(6), 975000 },
{ 1, { 486000, HFPLL, 2, 0, 0x24 }, L2(6), 975000 },
{ 0, { 540000, HFPLL, 2, 0, 0x28 }, L2(6), 1000000 },
{ 1, { 594000, HFPLL, 1, 0, 0x16 }, L2(6), 1000000 },
{ 0, { 648000, HFPLL, 1, 0, 0x18 }, L2(6), 1025000 },
{ 1, { 702000, HFPLL, 1, 0, 0x1A }, L2(6), 1025000 },
{ 0, { 756000, HFPLL, 1, 0, 0x1C }, L2(6), 1075000 },
{ 1, { 810000, HFPLL, 1, 0, 0x1E }, L2(6), 1075000 },
{ 0, { 864000, HFPLL, 1, 0, 0x20 }, L2(6), 1100000 },
{ 1, { 918000, HFPLL, 1, 0, 0x22 }, L2(6), 1100000 },
{ 0, { 972000, HFPLL, 1, 0, 0x24 }, L2(6), 1125000 },
{ 1, { 1026000, HFPLL, 1, 0, 0x26 }, L2(6), 1125000 },
{ 0, { 1080000, HFPLL, 1, 0, 0x28 }, L2(15), 1175000 },
{ 1, { 1134000, HFPLL, 1, 0, 0x2A }, L2(15), 1175000 },
{ 0, { 1188000, HFPLL, 1, 0, 0x2C }, L2(15), 1200000 },
{ 1, { 1242000, HFPLL, 1, 0, 0x2E }, L2(15), 1200000 },
{ 0, { 1296000, HFPLL, 1, 0, 0x30 }, L2(15), 1225000 },
{ 1, { 1350000, HFPLL, 1, 0, 0x32 }, L2(15), 1225000 },
{ 0, { 1404000, HFPLL, 1, 0, 0x34 }, L2(15), 1237500 },
{ 1, { 1458000, HFPLL, 1, 0, 0x36 }, L2(15), 1237500 },
{ 1, { 1512000, HFPLL, 1, 0, 0x38 }, L2(15), 1250000 },

default voltages for NORM:

{ 1, { 384000, PLL_8, 0, 2, 0x00 }, L2(0), 900000 },
{ 0, { 432000, HFPLL, 2, 0, 0x20 }, L2(6), 925000 },
{ 1, { 486000, HFPLL, 2, 0, 0x24 }, L2(6), 925000 },
{ 0, { 540000, HFPLL, 2, 0, 0x28 }, L2(6), 950000 },
{ 1, { 594000, HFPLL, 1, 0, 0x16 }, L2(6), 950000 },
{ 0, { 648000, HFPLL, 1, 0, 0x18 }, L2(6), 975000 },
{ 1, { 702000, HFPLL, 1, 0, 0x1A }, L2(6), 975000 },
{ 0, { 756000, HFPLL, 1, 0, 0x1C }, L2(6), 1025000 },
{ 1, { 810000, HFPLL, 1, 0, 0x1E }, L2(6), 1025000 },
{ 0, { 864000, HFPLL, 1, 0, 0x20 }, L2(6), 1050000 },
{ 1, { 918000, HFPLL, 1, 0, 0x22 }, L2(6), 1050000 },
{ 0, { 972000, HFPLL, 1, 0, 0x24 }, L2(6), 1075000 },
{ 1, { 1026000, HFPLL, 1, 0, 0x26 }, L2(6), 1075000 },
{ 0, { 1080000, HFPLL, 1, 0, 0x28 }, L2(15), 1125000 },
{ 1, { 1134000, HFPLL, 1, 0, 0x2A }, L2(15), 1125000 },
{ 0, { 1188000, HFPLL, 1, 0, 0x2C }, L2(15), 1150000 },
{ 1, { 1242000, HFPLL, 1, 0, 0x2E }, L2(15), 1150000 },
{ 0, { 1296000, HFPLL, 1, 0, 0x30 }, L2(15), 1175000 },
{ 1, { 1350000, HFPLL, 1, 0, 0x32 }, L2(15), 1175000 },
{ 0, { 1404000, HFPLL, 1, 0, 0x34 }, L2(15), 1187500 },
{ 1, { 1458000, HFPLL, 1, 0, 0x36 }, L2(15), 1187500 },
{ 1, { 1512000, HFPLL, 1, 0, 0x38 }, L2(15), 1200000 },

default voltages for FAST & FASTER:

{ 1, { 384000, PLL_8, 0, 2, 0x00 }, L2(0), 850000 },
{ 0, { 432000, HFPLL, 2, 0, 0x20 }, L2(6), 875000 },
{ 1, { 486000, HFPLL, 2, 0, 0x24 }, L2(6), 875000 },
{ 0, { 540000, HFPLL, 2, 0, 0x28 }, L2(6), 900000 },
{ 1, { 594000, HFPLL, 1, 0, 0x16 }, L2(6), 900000 },
{ 0, { 648000, HFPLL, 1, 0, 0x18 }, L2(6), 925000 },
{ 1, { 702000, HFPLL, 1, 0, 0x1A }, L2(6), 925000 },
{ 0, { 756000, HFPLL, 1, 0, 0x1C }, L2(6), 975000 },
{ 1, { 810000, HFPLL, 1, 0, 0x1E }, L2(6), 975000 },
{ 0, { 864000, HFPLL, 1, 0, 0x20 }, L2(6), 1000000 },
{ 1, { 918000, HFPLL, 1, 0, 0x22 }, L2(6), 1000000 },
{ 0, { 972000, HFPLL, 1, 0, 0x24 }, L2(6), 1025000 },
{ 1, { 1026000, HFPLL, 1, 0, 0x26 }, L2(6), 1025000 },
{ 0, { 1080000, HFPLL, 1, 0, 0x28 }, L2(15), 1075000 },
{ 1, { 1134000, HFPLL, 1, 0, 0x2A }, L2(15), 1075000 },
{ 0, { 1188000, HFPLL, 1, 0, 0x2C }, L2(15), 1100000 },
{ 1, { 1242000, HFPLL, 1, 0, 0x2E }, L2(15), 1100000 },
{ 0, { 1296000, HFPLL, 1, 0, 0x30 }, L2(15), 1125000 },
{ 1, { 1350000, HFPLL, 1, 0, 0x32 }, L2(15), 1125000 },
{ 0, { 1404000, HFPLL, 1, 0, 0x34 }, L2(15), 1137500 },
{ 1, { 1458000, HFPLL, 1, 0, 0x36 }, L2(15), 1137500 },
{ 1, { 1512000, HFPLL, 1, 0, 0x38 }, L2(15), 1150000 },
Last edited by houstonn; 30th June 2013 at 05:29 AM.
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10th April 2013, 02:26 PM   |  #4  
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So glad to see this here, houstonn! Excellent job my friend.

Sent from my Optimus G using xda app-developers app
Last edited by Jank4AU; 10th April 2013 at 03:39 PM.
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10th April 2013, 02:38 PM   |  #5  
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Agreed. I'm still rocking the 3/29 build haha

Pie Control works fine for me. It only gave me issues when I flashed the build from 4/2

____
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10th April 2013, 03:47 PM   |  #6  
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And here we go! Comm. take off time!I'm so happy!!!
10th April 2013, 04:29 PM   |  #7  
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Wow for a moment I was confused whether I was looking at N4 forums...
Great work Devs! You guys are awesome!

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10th April 2013, 04:46 PM   |  #8  
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This is awesome, I'm loving it. Thanks to all the devs involved, great work.

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10th April 2013, 05:01 PM   |  #9  
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Curious as to why it will not let me lower min frequency. I lower it but it always puts it right back at 1026....killing my battery.

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10th April 2013, 05:09 PM   |  #10  
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Look at cpu spy, I think you will find it actually is going below and just not reporting correctly.

Edit: I just looked at cpu spy and you are in fact correct. Holding steady at 1026+...getting great deep sleep though!

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