Open source binary analysis tools.
Go to file
2020-04-06 15:56:43 -07:00
base add support for redundant nested muxes 2020-04-04 22:24:47 -07:00
deps Rename macaw-asl to macaw-aarch32 2020-04-05 15:16:39 -07:00
doc Documentation updates 2018-05-21 17:53:01 -07:00
macaw-aarch32 Add a test with a call 2020-04-06 15:56:43 -07:00
macaw-aarch32-symbolic Add a missing symbolic instance 2020-04-05 22:08:58 -07:00
macaw-arm This makes a number of changes to abstract domains. 2019-08-21 23:29:16 -07:00
macaw-ppc Update macaw-ppc to the macaw-semmc endianness parameterization 2020-04-05 14:44:53 -07:00
macaw-ppc-symbolic Wip/ppc no block labels (#66) 2019-08-09 16:11:59 -07:00
macaw-semmc Merge branch 'feature/asl' of https://github.com/GaloisInc/macaw into feature/asl 2020-04-04 19:17:07 -07:00
refinement Update Macaw to use HasLLVMAnn. (#122) 2020-04-02 17:58:47 -07:00
scripts update test script to use asl-lite 2020-03-25 15:40:42 -07:00
symbolic Update Macaw to use HasLLVMAnn. (#122) 2020-04-02 17:58:47 -07:00
x86 Update/ghc 8.8 (#112) 2020-03-03 13:28:26 -08:00
x86_symbolic Update Macaw to use HasLLVMAnn. (#122) 2020-04-02 17:58:47 -07:00
.gitignore bump submodules 2020-02-26 23:05:08 -08:00
.gitmodules Merge remote-tracking branch 'origin/master' into feature/asl 2020-04-03 23:38:19 -07:00
.travis.yml add yices to travis dependency 2020-02-26 23:49:27 -08:00
cabal.project.dist Add a (dummy) symbolic backend for AArch32 2020-04-05 21:16:03 -07:00
LICENSE Add x86 specific code. 2017-09-27 15:54:43 -07:00
README.md No-op change to re-trigger Travis. 2019-07-18 10:56:19 -07:00
stack-8.4.yaml Update/ghc 8.8 (#112) 2020-03-03 13:28:26 -08:00
stack-8.6.yaml Update/ghc 8.8 (#112) 2020-03-03 13:28:26 -08:00

This is the main repository for the Macaw binary analysis framework. This framework is implemented to offer extensible support for architectures.

Overview

The main algorithm implemented so far is a code discovery procedure which will discover reachable code in the binary given one or more entry points such as _start or the current symbols.

The Macaw libraries are:

  • macaw-base -- The core architecture-independent operations and algorithms.
  • macaw-symbolic -- Library that provides symbolic simulation of Macaw programs via Crucible.
  • macaw-x86 -- Provides definitions enabling Macaw to be used on X86_64 programs.
  • macaw-x86-symbolic -- Adds Macaw-symbolic extensions needed to support x86.
  • macaw-semmc -- Contains the architecture-independent components of the translation from semmc semantics into macaw IR. This provides the shared infrastructure for all of our backends; this will include the Template Haskell function to create a state transformer function from learned semantics files provided by the semmc library.
  • macaw-arm -- Enables macaw for ARM (32-bit) binaries by reading the semantics files generated by semmc and using Template Haskell to generate a function that transforms machine states according to the learned semantics.
  • macaw-arm-symbolic -- Enables macaw/crucible symbolic simulation for ARM (32-bit) architectures.
  • macaw-ppc -- Enables macaw for PPC (32-bit and 64-bit) binaries by reading the semantics files generated by semmc and using Template Haskell to generate a function that transforms machine states according to the learned semantics..
  • macaw-ppc-symbolic -- Enables macaw/crucible symbolic simulation for PPC architectures
  • macaw-refinement -- Enables additional architecture-independent refinement of code discovery. This can enable discovery of more functionality than is revealed by the analysis in macaw-base.

The libraries that make up Macaw are released under the BSD license.

These Macaw core libraries depend on a number of different supporting libraries, including:

  • elf-edit -- loading and parsing of ELF binary files
  • galois-dwarf -- retrieval of Dwarf debugging information from binary files
  • flexdis86 -- disassembly and semantics for x86 architectures
  • dismantle -- disassembly for ARM and PPC architectures
  • semmc -- semantics definitions for ARM and PPC architectures
  • crucible -- Symbolic execution and analysis
  • what4 -- Symbolic representation for the crucible backend
  • parameterized-utils -- utilities for working with parameterized types

Building

Preparation

Dependencies for building Macaw that are not obtained from Hackage are supported via Git submodules:

$ git submodule update --init

Building with Cabal

The Macaw libraries can be individually built with Cabal v1, but as a group and more easily with Cabal v2:

$ ln -s cabal.project.dist cabal.project
$ cabal v2-configure
$ cabal v2-build all

To build a single library, either specify that library name instaed of all, or change to that library's subdirectory before building:

$ cabal v2-build macaw-refinement

or

$ cd refinement
$ cabal v2-build

Building with Stack

To build with Stack, first create a top-level stack.yaml file by symlinking to one of the provided stack-ghc-<version>.yaml files. E.g.

$ ln -s stack-ghc-8.6.3.yaml stack.yaml
$ stack build

Status

This codebase is a work in progress. Support for PowerPC support (both 32 and 64 bit) and X86_64 is reasonably robust. Support for ARM is ongoing.

License

This code is made available under the BSD3 license and without any support.