enjarify-adapter


Nameenjarify-adapter JSON
Version 1.0.2 PyPI version JSON
download
home_pagehttps://github.com/LucasFaudman/enjarify-adapter.git
SummaryEnjarify is a tool for translating Dalvik bytecode to equivalent Java bytecode. This enjarify-adapter fork exports the `enjarify` method for use in external scripts and is type optimized for building with mypyc.
upload_time2024-06-07 16:35:14
maintainerNone
docs_urlNone
authorLucas Faudman
requires_python>=3.7
license Apache License Version 2.0, January 2004 http://www.apache.org/licenses/ TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION 1. Definitions. "License" shall mean the terms and conditions for use, reproduction, and distribution as defined by Sections 1 through 9 of this document. "Licensor" shall mean the copyright owner or entity authorized by the copyright owner that is granting the License. "Legal Entity" shall mean the union of the acting entity and all other entities that control, are controlled by, or are under common control with that entity. For the purposes of this definition, "control" means (i) the power, direct or indirect, to cause the direction or management of such entity, whether by contract or otherwise, or (ii) ownership of fifty percent (50%) or more of the outstanding shares, or (iii) beneficial ownership of such entity. "You" (or "Your") shall mean an individual or Legal Entity exercising permissions granted by this License. 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keywords enjarify dalvik java bytecode android apk decompiler disassembler reverse engineering
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            ## Introduction

Enjarify is a tool for translating Dalvik bytecode to equivalent Java bytecode. This enjarify-adapter fork exports the `enjarify` method for use in external scripts and is type optimized for building with mypyc.


## Setup
> Install with pip:
```bash
pip install enjarify-adapter
```

## Usage

### Python API
The main entry point is the `enjarify` function. It requires an `.apk` or `.dex` input file path and returns the path the output `.jar` file. If no output arg is provided the output is saved in the same directory as the input file with the name `[INPUT_FILENAME].jar`.


```python
def enjarify(
    input_file: str|Path, # Input .apk or .dex file as a str or pathlib.Path.
    output_file: Optional[str|Path]=None, # Output .jar file as a str or pathlib.Path.
    overwrite=False, # Force overwrite if output file already exists. (Error will raise if not set and output file exists.) 
    raise_translation_errors=False, # Ignore translation errors without raising exceptions.
    quiet=True, # Suppress output to stdout.
    inline_consts=True, # Inline constants.
    prune_store_loads=True, # Remove unnecessary store/load pairs.
    copy_propagation=True, # Perform copy propagation.
    remove_unused_regs=True, # Remove unused registers.
    dup2ize=False, # Replace dup instructions with dup2.
    sort_registers=False, # Sort registers.
    split_pool=False, # Split constant pool.
    delay_consts=False # Delay constant pool entries.
    ) -> Path: # Returns the output .jar file path as a pathlib.Path.
```

The `enjarify` function can be used as follows:

```python
from enjarify import enjarify

inputfile = "yourapp.apk"
outputfile = enjarify(inputfile)
print(f"Output file: {outputfile}")
# Prints: 'Output file: yourapp-enjarify.jar'

inputfile = "classes2.dex"
outputfile = enjarify(inputfile, output="yourapp.jar", force=True)
print(f"Output file: {outputfile}")
# Prints: 'Output file: yourapp.jar'
```

### Command Line Interface
Assuming you set up the script on your path correctly, you can call it from anywhere by just typing enjarify, e.g.

    enjarify yourapp.apk

The most basic form of usage is to just specify an apk file or dex file as input. If you specify a multidex apk, Enjarify will automatically translate all of the dex files and output the results in a single combined jar. If you specify a dex file, only that dex file will be translated. E.g. assuming you manually extracted the dex files you could do

    enjarify classes2.dex

The default output file is [INPUT_FILENAME].jar in the current directory. To specify the filename for the output explicitly, pass the -o or --output option.

    enjarify yourapp.apk -o yourapp.jar

By default, Enjarify will refuse to overwrite the output file if it already exists. To overwrite the output, pass the -f or --force option.

#### CLI options can be found by running `enjarify --help`.
```base
usage: enjarify [-h] [-o OUTPUT] [-f] [-q] [--inline-consts | --no-inline-consts] [--prune-store-loads | --no-prune-store-loads] [--copy-propagation | --no-copy-propagation]
                [--remove-unused-regs | --no-remove-unused-regs] [--dup2ize | --no-dup2ize] [--sort-registers | --no-sort-registers] [--split-pool | --no-split-pool] [--delay-consts | --no-delay-consts]
                INPUT_FILE

Translates Dalvik bytecode (.dex or .apk) to Java bytecode (.jar)

positional arguments:
  INPUT_FILE            Input .dex or .apk file

options:
  -h, --help            show this help message and exit
  -o OUTPUT, --output OUTPUT
                        Output .jar file. Default is [input-filename]-enjarify.jar.
  -f, --overwrite       Force overwrite. If output file already exists, this option is required to overwrite.
  -q, --quiet           Suppress output messages.
  --inline-consts, --no-inline-consts
                        Inline constants. Default is True.
  --prune-store-loads, --no-prune-store-loads
                        Prune store and load instructions. Default is True.
  --copy-propagation, --no-copy-propagation
                        Enable copy propagation optimization. Default is True.
  --remove-unused-regs, --no-remove-unused-regs
                        Remove unused registers. Default is True.
  --dup2ize, --no-dup2ize
                        Enable dup2ize optimization. Default is False.
  --sort-registers, --no-sort-registers
                        Sort registers. Default is False.
  --split-pool, --no-split-pool
                        Split constant pool. Default is False.
  --delay-consts, --no-delay-consts
                        Delay constants. Default is False.
  ```


## Why not dex2jar?

Dex2jar is an older tool that also tries to translate Dalvik to Java bytecode. It works reasonably well most of the time, but a lot of obscure features or edge cases will cause it to fail or even silently produce incorrect results. By contrast, Enjarify is designed to work in as many cases as possible, even for code where Dex2jar would fail. Among other things, Enjarify correctly handles unicode class names, constants used as multiple types, implicit casts, exception handlers jumping into normal control flow, classes that reference too many constants, very long methods, exception handlers after a catchall handler, and static initial values of the wrong type.


## Limitations

Currently, only version 35 dex files are supported. This means that the Java 8 related bytecode features introduced in Android N, O, and P are not supported.

Enjarify does not currently translate optional metadata such as sourcefile attributes, line numbers, and annotations.

Enjarify tries hard to successfully translate as many classes as possible, but there are some potential cases where it is simply not possible due to limitations in Android, Java, or both. Luckily, this only happens in contrived circumstances, so it shouldn't be a problem in practice.


## Performance tips

PyPy is much faster than CPython. To install PyPy, see http://pypy.org/. Make sure you get PyPy3 rather than regular PyPy. The Linux wrapper script will automatically use the command pypy3 if available. On Windows, you'll need to edit the wrapper script yourself.

By default, Enjarify runs optimizations on the bytecode which make it more readable for humans (copy propagation, unused value removal, etc.). If you don't need this, you can speed things up by disabling the optimizations with the --fast option. Note that in the very rare case where a class is too big to fit in a classfile without optimization, Enjarify will automatically retry it with all optimizations enabled, so this option does not affect the number of classes that are successfully translated.

### Linux Wrapper Script

For convenience, a wrapper shell script is provided, enjarify.sh. This will try to use Pypy if available, since it is faster than CPython. If you want to be able to call Enjarify from anywhere, you can create a symlink from somewhere on your PATH, such as ~/bin. To do this, assuming you are inside the top level of the repository,

    ln -s "$PWD/enjarify.sh" ~/bin/enjarify

### Windows Wrapper Script

A wrapper batch script, enjarify.bat, is provided. To be able to call it from anywhere, just add the root directory of the repository to your PATH. The batch script will always invoke python3 as interpreter. If you want to use pypy, just edit the script.

            

Raw data

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    "_id": null,
    "home_page": "https://github.com/LucasFaudman/enjarify-adapter.git",
    "name": "enjarify-adapter",
    "maintainer": null,
    "docs_url": null,
    "requires_python": ">=3.7",
    "maintainer_email": null,
    "keywords": "enjarify, Dalvik, Java, Bytecode, Android, APK, Decompiler, Disassembler, Reverse Engineering",
    "author": "Lucas Faudman",
    "author_email": "Lucas Faudman <lucasfaudman@gmail.com>, \"Google Inc. 2015\" <google@gmail.com>, Robert Grosse <Storyyeller@github.com>",
    "download_url": "https://files.pythonhosted.org/packages/ed/ee/9b12c239eeaafba71abe160da3e95dd0388f791270496a51923a98534e40/enjarify_adapter-1.0.2.tar.gz",
    "platform": null,
    "description": "## Introduction\n\nEnjarify is a tool for translating Dalvik bytecode to equivalent Java bytecode. This enjarify-adapter fork exports the `enjarify` method for use in external scripts and is type optimized for building with mypyc.\n\n\n## Setup\n> Install with pip:\n```bash\npip install enjarify-adapter\n```\n\n## Usage\n\n### Python API\nThe main entry point is the `enjarify` function. It requires an `.apk` or `.dex` input file path and returns the path the output `.jar` file. If no output arg is provided the output is saved in the same directory as the input file with the name `[INPUT_FILENAME].jar`.\n\n\n```python\ndef enjarify(\n    input_file: str|Path, # Input .apk or .dex file as a str or pathlib.Path.\n    output_file: Optional[str|Path]=None, # Output .jar file as a str or pathlib.Path.\n    overwrite=False, # Force overwrite if output file already exists. (Error will raise if not set and output file exists.) \n    raise_translation_errors=False, # Ignore translation errors without raising exceptions.\n    quiet=True, # Suppress output to stdout.\n    inline_consts=True, # Inline constants.\n    prune_store_loads=True, # Remove unnecessary store/load pairs.\n    copy_propagation=True, # Perform copy propagation.\n    remove_unused_regs=True, # Remove unused registers.\n    dup2ize=False, # Replace dup instructions with dup2.\n    sort_registers=False, # Sort registers.\n    split_pool=False, # Split constant pool.\n    delay_consts=False # Delay constant pool entries.\n    ) -> Path: # Returns the output .jar file path as a pathlib.Path.\n```\n\nThe `enjarify` function can be used as follows:\n\n```python\nfrom enjarify import enjarify\n\ninputfile = \"yourapp.apk\"\noutputfile = enjarify(inputfile)\nprint(f\"Output file: {outputfile}\")\n# Prints: 'Output file: yourapp-enjarify.jar'\n\ninputfile = \"classes2.dex\"\noutputfile = enjarify(inputfile, output=\"yourapp.jar\", force=True)\nprint(f\"Output file: {outputfile}\")\n# Prints: 'Output file: yourapp.jar'\n```\n\n### Command Line Interface\nAssuming you set up the script on your path correctly, you can call it from anywhere by just typing enjarify, e.g.\n\n    enjarify yourapp.apk\n\nThe most basic form of usage is to just specify an apk file or dex file as input. If you specify a multidex apk, Enjarify will automatically translate all of the dex files and output the results in a single combined jar. If you specify a dex file, only that dex file will be translated. E.g. assuming you manually extracted the dex files you could do\n\n    enjarify classes2.dex\n\nThe default output file is [INPUT_FILENAME].jar in the current directory. To specify the filename for the output explicitly, pass the -o or --output option.\n\n    enjarify yourapp.apk -o yourapp.jar\n\nBy default, Enjarify will refuse to overwrite the output file if it already exists. To overwrite the output, pass the -f or --force option.\n\n#### CLI options can be found by running `enjarify --help`.\n```base\nusage: enjarify [-h] [-o OUTPUT] [-f] [-q] [--inline-consts | --no-inline-consts] [--prune-store-loads | --no-prune-store-loads] [--copy-propagation | --no-copy-propagation]\n                [--remove-unused-regs | --no-remove-unused-regs] [--dup2ize | --no-dup2ize] [--sort-registers | --no-sort-registers] [--split-pool | --no-split-pool] [--delay-consts | --no-delay-consts]\n                INPUT_FILE\n\nTranslates Dalvik bytecode (.dex or .apk) to Java bytecode (.jar)\n\npositional arguments:\n  INPUT_FILE            Input .dex or .apk file\n\noptions:\n  -h, --help            show this help message and exit\n  -o OUTPUT, --output OUTPUT\n                        Output .jar file. Default is [input-filename]-enjarify.jar.\n  -f, --overwrite       Force overwrite. If output file already exists, this option is required to overwrite.\n  -q, --quiet           Suppress output messages.\n  --inline-consts, --no-inline-consts\n                        Inline constants. Default is True.\n  --prune-store-loads, --no-prune-store-loads\n                        Prune store and load instructions. Default is True.\n  --copy-propagation, --no-copy-propagation\n                        Enable copy propagation optimization. Default is True.\n  --remove-unused-regs, --no-remove-unused-regs\n                        Remove unused registers. Default is True.\n  --dup2ize, --no-dup2ize\n                        Enable dup2ize optimization. Default is False.\n  --sort-registers, --no-sort-registers\n                        Sort registers. Default is False.\n  --split-pool, --no-split-pool\n                        Split constant pool. Default is False.\n  --delay-consts, --no-delay-consts\n                        Delay constants. Default is False.\n  ```\n\n\n## Why not dex2jar?\n\nDex2jar is an older tool that also tries to translate Dalvik to Java bytecode. It works reasonably well most of the time, but a lot of obscure features or edge cases will cause it to fail or even silently produce incorrect results. By contrast, Enjarify is designed to work in as many cases as possible, even for code where Dex2jar would fail. Among other things, Enjarify correctly handles unicode class names, constants used as multiple types, implicit casts, exception handlers jumping into normal control flow, classes that reference too many constants, very long methods, exception handlers after a catchall handler, and static initial values of the wrong type.\n\n\n## Limitations\n\nCurrently, only version 35 dex files are supported. This means that the Java 8 related bytecode features introduced in Android N, O, and P are not supported.\n\nEnjarify does not currently translate optional metadata such as sourcefile attributes, line numbers, and annotations.\n\nEnjarify tries hard to successfully translate as many classes as possible, but there are some potential cases where it is simply not possible due to limitations in Android, Java, or both. Luckily, this only happens in contrived circumstances, so it shouldn't be a problem in practice.\n\n\n## Performance tips\n\nPyPy is much faster than CPython. To install PyPy, see http://pypy.org/. Make sure you get PyPy3 rather than regular PyPy. The Linux wrapper script will automatically use the command pypy3 if available. On Windows, you'll need to edit the wrapper script yourself.\n\nBy default, Enjarify runs optimizations on the bytecode which make it more readable for humans (copy propagation, unused value removal, etc.). If you don't need this, you can speed things up by disabling the optimizations with the --fast option. Note that in the very rare case where a class is too big to fit in a classfile without optimization, Enjarify will automatically retry it with all optimizations enabled, so this option does not affect the number of classes that are successfully translated.\n\n### Linux Wrapper Script\n\nFor convenience, a wrapper shell script is provided, enjarify.sh. This will try to use Pypy if available, since it is faster than CPython. If you want to be able to call Enjarify from anywhere, you can create a symlink from somewhere on your PATH, such as ~/bin. To do this, assuming you are inside the top level of the repository,\n\n    ln -s \"$PWD/enjarify.sh\" ~/bin/enjarify\n\n### Windows Wrapper Script\n\nA wrapper batch script, enjarify.bat, is provided. To be able to call it from anywhere, just add the root directory of the repository to your PATH. The batch script will always invoke python3 as interpreter. If you want to use pypy, just edit the script.\n",
    "bugtrack_url": null,
    "license": " Apache License Version 2.0, January 2004 http://www.apache.org/licenses/  TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION  1. Definitions.  \"License\" shall mean the terms and conditions for use, reproduction, and distribution as defined by Sections 1 through 9 of this document.  \"Licensor\" shall mean the copyright owner or entity authorized by the copyright owner that is granting the License.  \"Legal Entity\" shall mean the union of the acting entity and all other entities that control, are controlled by, or are under common control with that entity. For the purposes of this definition, \"control\" means (i) the power, direct or indirect, to cause the direction or management of such entity, whether by contract or otherwise, or (ii) ownership of fifty percent (50%) or more of the outstanding shares, or (iii) beneficial ownership of such entity.  \"You\" (or \"Your\") shall mean an individual or Legal Entity exercising permissions granted by this License.  \"Source\" form shall mean the preferred form for making modifications, including but not limited to software source code, documentation source, and configuration files.  \"Object\" form shall mean any form resulting from mechanical transformation or translation of a Source form, including but not limited to compiled object code, generated documentation, and conversions to other media types.  \"Work\" shall mean the work of authorship, whether in Source or Object form, made available under the License, as indicated by a copyright notice that is included in or attached to the work (an example is provided in the Appendix below).  \"Derivative Works\" shall mean any work, whether in Source or Object form, that is based on (or derived from) the Work and for which the editorial revisions, annotations, elaborations, or other modifications represent, as a whole, an original work of authorship. For the purposes of this License, Derivative Works shall not include works that remain separable from, or merely link (or bind by name) to the interfaces of, the Work and Derivative Works thereof.  \"Contribution\" shall mean any work of authorship, including the original version of the Work and any modifications or additions to that Work or Derivative Works thereof, that is intentionally submitted to Licensor for inclusion in the Work by the copyright owner or by an individual or Legal Entity authorized to submit on behalf of the copyright owner. For the purposes of this definition, \"submitted\" means any form of electronic, verbal, or written communication sent to the Licensor or its representatives, including but not limited to communication on electronic mailing lists, source code control systems, and issue tracking systems that are managed by, or on behalf of, the Licensor for the purpose of discussing and improving the Work, but excluding communication that is conspicuously marked or otherwise designated in writing by the copyright owner as \"Not a Contribution.\"  \"Contributor\" shall mean Licensor and any individual or Legal Entity on behalf of whom a Contribution has been received by Licensor and subsequently incorporated within the Work.  2. Grant of Copyright License. Subject to the terms and conditions of this License, each Contributor hereby grants to You a perpetual, worldwide, non-exclusive, no-charge, royalty-free, irrevocable copyright license to reproduce, prepare Derivative Works of, publicly display, publicly perform, sublicense, and distribute the Work and such Derivative Works in Source or Object form.  3. Grant of Patent License. Subject to the terms and conditions of this License, each Contributor hereby grants to You a perpetual, worldwide, non-exclusive, no-charge, royalty-free, irrevocable (except as stated in this section) patent license to make, have made, use, offer to sell, sell, import, and otherwise transfer the Work, where such license applies only to those patent claims licensable by such Contributor that are necessarily infringed by their Contribution(s) alone or by combination of their Contribution(s) with the Work to which such Contribution(s) was submitted. If You institute patent litigation against any entity (including a cross-claim or counterclaim in a lawsuit) alleging that the Work or a Contribution incorporated within the Work constitutes direct or contributory patent infringement, then any patent licenses granted to You under this License for that Work shall terminate as of the date such litigation is filed.  4. Redistribution. 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