YAMAMOTO Takashi 562a5dd1b6 Fix data/elem drop (#2747) 2 lat temu
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basic 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
bh-atomic 923e8d6471 Fix windows link error and clear windows warnings (#2463) 2 lat temu
file 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
gui 3570a94a08 Fix issues reported by Coverity (#2681) 2 lat temu
inst-context 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
inst-context-threads 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
littlevgl 9cf7b88bad Enhance cmake makefiles (#1390) 3 lat temu
mem-allocator 923e8d6471 Fix windows link error and clear windows warnings (#2463) 2 lat temu
multi-module 3570a94a08 Fix issues reported by Coverity (#2681) 2 lat temu
multi-thread 216dc43ab4 Use shared memory lock for threads generated from same module (#1960) 2 lat temu
native-lib a550f4d9f7 iwasm: call native lib init/deinit if exists (#2439) 2 lat temu
ref-types 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
sgx-ra 365cdfeb71 Upgrade SGX-RA integration for 0.1.2 and Ubuntu 20.04 (#2454) 2 lat temu
shared-module 562a5dd1b6 Fix data/elem drop (#2747) 2 lat temu
simple 289fc5efbf Enhance/Fix sample socket-api and workload (#2006) 2 lat temu
socket-api 289fc5efbf Enhance/Fix sample socket-api and workload (#2006) 2 lat temu
spawn-thread 654ac5feca Use cmake POSITION_INDEPENDENT_CODE instead of hardcoding -pie -fPIE (#1598) 3 lat temu
wasi-threads 53d7027de0 Implement strict validation of thread IDs according to the specification (#2521) 2 lat temu
wasm-c-api 5fd530610a Enable MASM automatically in runtime_lib.cmake (#2634) 2 lat temu
wasm-c-api-imports 289fc5efbf Enhance/Fix sample socket-api and workload (#2006) 2 lat temu
workload 43a3cbf2ce Build more benchmarks in workload XNNPACK (#2417) 2 lat temu
README.md 7701b379e4 Update documents (#2100) 2 lat temu

README.md

Samples

  • basic: Demonstrating how to use runtime exposed API's to call WASM functions, how to register native functions and call them, and how to call WASM function from native function.
  • simple: The runtime is integrated with most of the WAMR APP libraries, and a few WASM applications are provided for testing the WAMR APP API set. It uses built-in libc and executes apps in interpreter mode by default.
  • file: Demonstrating the supported file interaction API of WASI. This sample can also demonstrate the SGX IPFS (Intel Protected File System), enabling an enclave to seal and unseal data at rest.
  • littlevgl: Demonstrating the graphic user interface application usage on WAMR. The whole LVGL 2D user graphic library and the UI application are built into WASM application. It uses WASI libc and executes apps in AOT mode by default.
  • gui: Move the LVGL library into the runtime and define a WASM application interface by wrapping the littlevgl API. It uses WASI libc and executes apps in interpreter mode by default.
  • multi-thread: Demonstrating how to run wasm application which creates multiple threads to execute wasm functions concurrently, and uses mutex/cond by calling pthread related API's.
  • spawn-thread: Demonstrating how to execute wasm functions of the same wasm application concurrently, in threads created by host embedder or runtime, but not the wasm application itself.
  • wasi-threads: Demonstrating how to run wasm application which creates multiple threads to execute wasm functions concurrently based on lib wasi-threads.
  • multi-module: Demonstrating the multiple modules as dependencies feature which implements the load-time dynamic linking.
  • ref-types: Demonstrating how to call wasm functions with argument of externref type introduced by reference types proposal.
  • wasm-c-api: Demonstrating how to run some samples from wasm-c-api proposal and showing the supported API's.
  • socket-api: Demonstrating how to run wasm tcp server and tcp client applications, and how they communicate with each other.
  • native-lib: Demonstrating how to write required interfaces in native library, build it into a shared library and register the shared library to iwasm.
  • sgx-ra: Demonstrating how to execute Remote Attestation on SGX with librats, which enables mutual attestation with other runtimes or other entities that support librats to ensure that each is running within the TEE.
  • workload: Demonstrating how to build and run some complex workloads, e.g. tensorflow-lite, XNNPACK, wasm-av1, meshoptimizer and bwa.