A Minimal WebAssembly interpreter written in C. Supports the WebAssembly MVP (minimum viable product) version of the WebAssembly specification.
There are two different builds of wac:
- wac: (WebAssembly in C) Minimal client with an interactive REPL
mode. Designed to run standalone wasm files compiled with
wast2wasm
orwasm-as
. Passes most spec tests apart from some multi-module import/export tests. - wace: (WebAssembly in C with Emscripten) Client with host
library/memory integration. Designed to run wasm code that has been
built with Emscripten (using
-s SIDE_MODULE=1 -s LEGALIZE_JS_FFI=0
).
To build wac and wace you need a 32-bit version of gcc and 32-bit versions of SDL2 and libedit. On 64-bit Ubuntu/Debian these can be installed like this:
dpkg --add-architecture i386
apt-get update
apt-get install lib32gcc-4.9-dev libSDL2-dev:i386 libedit-dev:i386
To compile wast source files to binary wasm modules you will need the wasm-as tool from Binaryen. To compile C programs to wasm modules you will need a patched version of emscripten, the incoming branch of fastcomp and the master branch of binaryen.
As an alternative to downloading and building the above tools, the
kanaka/emscripten
docker image (1.7GB) has 32-bit gcc
compiler/libraries, patched emscripten, and binaryen preinstalled. The
docker image can be started with appropriate file mounts like this:
docker run -v `pwd`:/wac -w /wac -it kanaka/emscripten bash
All the build commands below can be run within the docker container.
Build wac:
$ make wac
Use wasm-as
to compile a simple wast program to a wasm:
$ make examples_wast/arith.wasm
Now load the compiled wasm file and invoke some functions:
$./wac examples_wast/arith.wasm add 2 3
0x5:i32
$./wac examples_wast/arith.wasm mul 7 8
0x38:i32
wac also supports a very simple REPL (read-eval-print-loop) mode that
runs commands in the form of FUNC ARG...
:
$ ./wac --repl examples_wast/arith.wasm
> sub 10 5
0x5:i32
> div 13 4
0x3:i32
Build wace:
$ make wace
Use emscripten/binaryen to compile some simple C programs and run them using wace:
$ make examples_c/hello1.wasm
$ ./wace examples_c/hello1.wasm
hello world
$ make examples_c/hello2.wasm
$ ./wace examples_c/hello2.wasm
hello malloc people
Use emscripten/binaryen to compile some C SDL programs and run them using wace:
$ make examples_c/hello_sdl.wasm
$ ./wace examples_c/hello_sdl.wasm
INFO: OpenGL shaders: ENABLED
INFO: Created renderer: opengl
# Blue Window displayed for 2 seconds
Done.
$ make examples_c/triangle.wasm
$ ./wace examples_c/triangle.wasm
# A colorfully shaded triangle is rendered
$ make examples_c/hello_owl/hello_owl.wasm
$ ./wace examples_c/hello_owl/hello_owl.wasm
# An Owl image displayed for 2 seconds
wac includes a runtest.py
test driver which can be used for running
tests from the WebAssembly specification.
Check out the spec:
git clone https://github.com/WebAssembly/spec
You will need wast2wasm
to compile the spec tests. Check-out and
build wabt (wabbit):
git clone --recursive https://github.com/WebAssembly/wabt
make -C wabt gcc-release
Run the func.wast
test file (to test function calls) from the spec:
./runtest.py --wast2wasm ./wabt/out/gcc/Release/wast2wasm --interpreter ./wac spec/test/core/func.wast
MPL-2.0