mirror of https://github.com/ConsenSys/mythril
blockchainethereumsmart-contractssoliditysecurityprogram-analysissecurity-analysissymbolic-execution
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308 lines
8.5 KiB
308 lines
8.5 KiB
from setuptools import setup, find_packages
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long_description = '''
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Mythril is a security analysis tool for Ethereum smart contracts. It
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uses concolic analysis to detect various types of issues. Use it to
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analyze source code or as a nmap-style black-box blockchain scanner (an
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"ethermap" if you will).
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Installation and setup
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----------------------
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Install from Pypi:
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.. code:: bash
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$ pip install mythril
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Or, clone the GitHub repo to install the newest master branch:
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.. code:: bash
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$ git clone https://github.com/b-mueller/mythril/
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$ cd mythril
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$ python setup.py install
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Note that Mythril requires Python 3.5 to work.
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Function signatures
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~~~~~~~~~~~~~~~~~~~
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Whenever you disassemble or analyze binary code, Mythril will try to
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resolve function names using its local signature database. The database
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must be provided at ``~/.mythril/signatures.json``. You can start out
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with the `default file <signatures.json>`__ as follows:
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::
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$ cd ~/.mythril
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$ wget https://raw.githubusercontent.com/b-mueller/mythril/master/signatures.json
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When you analyze Solidity code, new function signatures are added to the
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database automatically.
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Security analysis
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-----------------
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Run ``myth -x`` with one of the input options described below to run the
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analysis. This will run the Python modules in the
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`/analysis/modules <https://github.com/b-mueller/mythril/tree/master/mythril/analysis/modules>`__
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directory.
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Mythril detects a range of `security issues <security_checks.md>`__,
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including integer underflows, owner-overwrite-to-Ether-withdrawal, and
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others. However, the analysis will not detect business logic issues and
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is not equivalent to formal verification.
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Analyzing Solidity code
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~~~~~~~~~~~~~~~~~~~~~~~
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In order to work with Solidity source code files, the `solc command line
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compiler <http://solidity.readthedocs.io/en/develop/using-the-compiler.html>`__
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needs to be installed and in path. You can then provide the source
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file(s) as positional arguments, e.g.:
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.. code:: bash
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$ myth -x myContract.sol
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Alternatively, compile the code on `Remix <http://remix.ethereum.org>`__
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and pass the runtime binary code to Mythril:
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.. code:: bash
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$ myth -x -c "0x5060(...)"
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If you have multiple interdependent contracts, pass them to Mythril as
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separate input files. Mythril will map the first contract to address
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"0x0000(..)", the second one to "0x1111(...)", and so forth (make sure
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that contract addresses are set accordingly in the source). The contract
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passed in the first argument will be executed as the "main" contract.
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.. code:: bash
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$ myth -x myContract.sol myLibrary.sol
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Working with on-chain contracts
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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To analyze contracts on the blockchain you need an Ethereum node. By
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default, Mythril will query a local node via RPC. Alternatively, you can
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use `INFURA <https://infura.io>`__:
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::
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$ myth --infura-mainnet -x -a 0x5c436ff914c458983414019195e0f4ecbef9e6dd
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If you are planning to do batch operations or use the contract search
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features, running a
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`go-ethereum <https://github.com/ethereum/go-ethereum>`__ node is
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recommended. Start your local node as follows:
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.. code:: bash
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$ geth --rpc --rpcapi eth,debug --syncmode fast
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Specify the target contract with the ``-a`` option:
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.. code:: bash
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$ myth -x -a 0x5c436ff914c458983414019195e0f4ecbef9e6dd -v1
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Adding the ``-l`` flag will cause Mythril to automatically retrieve
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dependencies, such as library contracts:
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.. code:: bash
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$ myth -x -a 0xEbFD99838cb0c132016B9E117563CB41f2B02264 -l -v1
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Control flow graph
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------------------
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The ``-g FILENAME`` option generates an `interactive jsViz
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graph <http://htmlpreview.github.io/?https://github.com/b-mueller/mythril/blob/master/static/mythril.html>`__:
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.. code:: bash
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$ myth -g ./graph.html -a 0xEbFD99838cb0c132016B9E117563CB41f2B02264 -l
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.. figure:: https://raw.githubusercontent.com/b-mueller/mythril/master/static/callgraph7.png
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:alt: Call graph
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callgraph
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[STRIKEOUT:The "bounce" effect, while awesome (and thus enabled by
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default), sometimes messes up the graph layout.] Try adding the
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``--enable-physics`` flag for a very entertaining "bounce" effect that
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unfortunately completely destroys usability.
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Blockchain exploration
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----------------------
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Mythril builds its own contract database to enable fast search
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operations. This enables operations like those described in the
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`legendary "Mitch Brenner" blog
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post <https://medium.com/@rtaylor30/how-i-snatched-your-153-037-eth-after-a-bad-tinder-date-d1d84422a50b>`__
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in [STRIKEOUT:seconds] minutes instead of days. Unfortunately, the
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initial sync process is slow. You don't need to sync the whole
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blockchain right away though: If you abort the syncing process with
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``ctrl+c``, it will be auto-resumed the next time you run the
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``--init-db`` command.
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.. code:: bash
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$ myth --init-db
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Starting synchronization from latest block: 4323706
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Processing block 4323000, 3 individual contracts in database
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(...)
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The default behavior is to only sync contracts with a non-zero balance.
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You can disable this behavior with the ``--sync-all`` flag, but be aware
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that this will result in a huge (as in: dozens of GB) database.
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Searching from the command line
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
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The search feature allows you to find contract instances that contain
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specific function calls and opcode sequences. It supports simple boolean
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expressions, such as:
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.. code:: bash
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$ myth --search "func#changeMultisig(address)#"
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$ myth --search "code#PUSH1 0x50,POP#"
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$ myth --search "func#changeMultisig(address)# and code#PUSH1 0x50#"
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Reading contract storage
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~~~~~~~~~~~~~~~~~~~~~~~~
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You can read the contents of storage slots from a deployed contract as
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follows.
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.. code:: bash
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./myth --storage 0 -a "0x76799f77587738bfeef09452df215b63d2cfb08a"
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0x0000000000000000000000000000000000000000000000000000000000000003
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Utilities
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---------
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Disassembler
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~~~~~~~~~~~~
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Use the ``-d`` flag to disassemble code. The disassembler accepts a
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bytecode string or a contract address as its input.
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.. code:: bash
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$ myth -d -c "0x6060"
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0 PUSH1 0x60
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Specifying an address via ``-a ADDRESS`` will download the contract code
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from your node.
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.. code:: bash
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$ myth -d -a "0x2a0c0dbecc7e4d658f48e01e3fa353f44050c208"
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0 PUSH1 0x60
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2 PUSH1 0x40
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4 MSTORE
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(...)
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1135 - FUNCTION safeAdd(uint256,uint256) -
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1136 CALLVALUE
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1137 ISZERO
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Finding cross-references
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~~~~~~~~~~~~~~~~~~~~~~~~
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It is often useful to find other contracts referenced by a particular
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contract. E.g.:
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.. code:: bash
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$ myth --search "code#DELEGATECALL#"
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Matched contract with code hash 07459966443977122e639cbf7804c446
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Address: 0x76799f77587738bfeef09452df215b63d2cfb08a, balance: 1000000000000000
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$ myth --xrefs -a 0x76799f77587738bfeef09452df215b63d2cfb08a
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5b9e8728e316bbeb692d22daaab74f6cbf2c4691
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Calculating function hashes
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~~~~~~~~~~~~~~~~~~~~~~~~~~~
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To print the Keccak hash for a given function signature:
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.. code:: bash
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$ myth --hash "setOwner(address)"
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0x13af4035
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Credit
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------
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- JSON RPC library is adapted from
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`ethjsonrpc <https://github.com/ConsenSys/ethjsonrpc>`__ (it doesn't
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seem to be maintained anymore, and I needed to make some changes to
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it).
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- The signature data in ``signatures.json`` was initially obtained from
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the `Ethereum Function Signature
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Database <https://www.4byte.directory>`__.
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'''
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setup(
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name='mythril',
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version='0.12.4',
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description='Security analysis tool for Ethereum smart contracts',
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long_description=long_description,
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url='https://github.com/b-mueller/mythril',
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author='Bernhard Mueller',
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author_email='bernhard.mueller11@gmail.com',
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license='MIT',
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classifiers=[
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'Development Status :: 3 - Alpha',
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'Intended Audience :: Science/Research',
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'Topic :: Software Development :: Disassemblers',
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'License :: OSI Approved :: MIT License',
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'Programming Language :: Python :: 2',
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'Programming Language :: Python :: 2.7',
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'Programming Language :: Python :: 3',
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'Programming Language :: Python :: 3.3',
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'Programming Language :: Python :: 3.4',
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'Programming Language :: Python :: 3.5',
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],
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keywords='hacking disassembler security ethereum',
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packages=find_packages(exclude=['contrib', 'docs', 'tests']),
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install_requires=[
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'ethereum>=2.0.4',
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'web3',
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'ZODB>=5.3.0',
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'z3-solver>=4.5',
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'laser-ethereum==0.4.4',
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'requests',
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'BTrees',
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'py-solc'
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],
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python_requires='>=3.5',
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extras_require={
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},
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include_package_data=True,
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scripts=['myth']
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)
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