Flash Army Knife App Download
LazyFlasher & no-verity-opt-encrypt INTRODUCTION Hello Users and Developers of XDA! LazyFlasher is a custom kernel flashing tool designed to make it easy to dynamically modify ramdisks and inject kernel binaries into the current boot image. It's the swiss army knife of kernel flashing for use in Team Win Recovery Project. The intent behind it was to allow a 1 custom kernel fits all approach, where your users can flash single zip on any ROM for a particular device, allowing your kernel to be compatible with the vast majority of custom ROMs already out there. It takes away the pain of building custom boot.img for each and every variant a user requests and puts it into 1 low maintenance intelligent universal flashable zip. You might already know of @osm0sis's project.
Swiss Army Knife APK This app contains a set of tiny tools: a flashlight, a unit converter, a timer, a stop watch, a compass a bubble level, a calculator, a magnifying glass (Android 2.2+ required), a mirror (Android 2.3+ and front camera required) and a ruler. At least this is true for FlashArmyKnife, an iOS app that allows you to circumvent carrier restrictions by enabling free tethering functionality.The app itself its basically a “Swiss Army Knife” that provides various utilities, like an advanced calculator, a satellite map, a currency converter, a battery power monitor, and more.
This approach is similar to that. Back in late 2015 I decided to design a more compatible, more friendly, and more feature filled version. Since then, AnyKernel2 has apparently improved a lot so if LazyFlasher doesn't accomplish what you need, AnyKernel2 probably will.
LazyFlasher does not currently support ELF boot images. For users of no-verity-opt-encrypt: This thread can also be used to discuss the no-verity-opt-encrypt project which is just a minimal version of the LazyFlasher framework. Disqus thread: THE GITHUB REPOSITORY You can find LazyFlasher's development and download it here: LazyFlasher source code is distributed under the BSD 2-clause license. You can do anything you want with it, however, some of the binaries used by it are under GPLv2 or GPLv3 licenses. FEATURES • ChromeOS support (ChromeOS test-key signing and recognition) • MediaTek device support (MTK headers) • SELinux policy injection support via sepolicy-inject • Example scripts to disable dm-verity or forced encryption during the install process (010-no-force-encrypt, 015-no-dm-verity) • A process that executes a sorted list of scripts for making the desired modifications (separate from the framework) • Handily unpacks, decompresses, applies changes, compresses, and repacks boot images quickly and safely • Supports Gzip, LZ4, Bzip2, and LZO ramdisks.
Code: cd ~/build git clone -b kernel-flasher cd lazyflasherTo use LazyFlasher, you'll probably want to take a look at the Makefile, config.sh, and META-INF/com/google/android/update-binary (a shell script). There's a few things you can change there to personalize it to your needs. (make another git commit to save your setup!) You should also check out the! There is a lot of useful information there. Once the installer is set up to your liking, all you have to do to build it is copy the resulting kernel binary from your kernel build output into the lazyflasher folder. If you have built with kernel modules (make modules_install), copy build/lib/modules -> lazyflasher/modules.
Now simply run. Code: makeA TWRP flashable zip and sha1sum is created! You should consider signing the zip with AOSP test-keys so that users can verify its integrity before flashing it. LOOKING TO TRIM DOWN THE INSTALLER? I have forked the kernel-flasher branch to a branch called kernel-flasher-arm64-minimal. This provides all the features of kernel-flasher except sepolicy injection and bbe, and only supports arm64 devices.
It reduces the minimum zip size from 1860 KB to 200 KB. You can use this branch instead if you like.
If you're using another architecture, just look at the trimming commit as an example and apply it for your arch. BUT I AM ON LE WINDOWS!
How did you build your kernel binary?! Anyways, there is an alternative for building it on Windows. You can download the LazyFlasher kernel-flasher branch as a zip file from GitHub and extract it somewhere on your PC. Make your modifications using Notepad++.
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You can then use a tool such as 7-zip to create a zip file by selecting everything in the folder, right clicking, and going to 7-Zip -> Add to 'lazyflasher.zip'. LIMITATIONS AND KNOWN ISSUES • It will not run on TWRP built in Android 4.3 or earlier (usually builds older than 2.8.0.0) • Requires Busybox to exist in the TWRP build. All official builds should have this. There may occasionally be some devices that are unsupported due to extreme modifications made to the boot image format by the manufacturer. If you have one of these devices, feel free to contact me and I will try to add support for it if it is worth the effort. If you have an issue, please gather a recovery.log from TWRP after flashing and I will try to look into it.