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Document the broken C ABI of wasm32-unknown-unknown
Inspired by discussion on https://github.com/rust-lang/rust/issues/129486 this is intended to at least document the current state of the world in a more public location than throughout a series of issues.
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@ -195,3 +195,116 @@ conditionally compile code instead. This is notably different to the way native
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platforms such as x86\_64 work, and this is due to the fact that WebAssembly
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platforms such as x86\_64 work, and this is due to the fact that WebAssembly
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binaries must only contain code the engine understands. Native binaries work so
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binaries must only contain code the engine understands. Native binaries work so
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long as the CPU doesn't execute unknown code dynamically at runtime.
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long as the CPU doesn't execute unknown code dynamically at runtime.
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## Broken `extern "C"` ABI
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This target has what is considered a broken `extern "C"` ABI implementation at
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this time. Notably the same signature in Rust and C will compile to different
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WebAssembly functions and be incompatible. This is considered a bug and it will
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be fixed in a future version of Rust.
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For example this Rust code:
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```rust
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#[repr(C)]
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struct MyPair {
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a: u32,
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b: u32,
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}
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extern "C" {
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fn take_my_pair(pair: MyPair) -> u32;
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}
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#[no_mangle]
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pub unsafe extern "C" fn call_c() -> u32 {
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take_my_pair(MyPair { a: 1, b: 2 })
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}
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```
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compiles to a WebAssembly module that looks like:
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```wasm
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(module
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(import "env" "take_my_pair" (func $take_my_pair (param i32 i32) (result i32)))
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(func $call_c
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i32.const 1
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i32.const 2
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call $take_my_pair
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)
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)
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```
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The function when defined in C, however, looks like
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```c
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struct my_pair {
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unsigned a;
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unsigned b;
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};
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unsigned take_my_pair(struct my_pair pair) {
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return pair.a + pair.b;
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}
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```
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```wasm
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(module
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(import "env" "__linear_memory" (memory 0))
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(func $take_my_pair (param i32) (result i32)
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local.get 0
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i32.load offset=4
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local.get 0
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i32.load
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i32.add
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)
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)
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```
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Notice how Rust thinks `take_my_pair` takes two `i32` parameters but C thinks it
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only takes one.
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The correct definition of the `extern "C"` ABI for WebAssembly is located in the
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[WebAssembly/tool-conventions](https://github.com/WebAssembly/tool-conventions/blob/main/BasicCABI.md)
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repository. The `wasm32-unknown-unknown` target (and only this target, not other
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WebAssembly targets Rust support) does not correctly follow this document.
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Example issues in the Rust repository about this bug are:
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* [#115666](https://github.com/rust-lang/rust/issues/115666)
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* [#129486](https://github.com/rust-lang/rust/issues/129486)
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This current state of the `wasm32-unknown-unknown` backend is due to an
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unfortunate accident which got relied on. The `wasm-bindgen` project prior to
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0.2.89 was incompatible with the "correct" definition of `extern "C"` and it was
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seen as not worth the tradeoff of breaking `wasm-bindgen` historically to fix
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this issue in the compiler.
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Thanks to the heroic efforts of many involved in this, however, the nightly
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compiler currently supports a `-Zwasm-c-abi` implemented in
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[#117919](https://github.com/rust-lang/rust/pull/117919). This nightly-only flag
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can be used to indicate whether the spec-defined version of `extern "C"` should
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be used instead of the "legacy" version of
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whatever-the-Rust-target-originally-implemented. For example using the above
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code you can see (lightly edited for clarity):
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```
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$ rustc +nightly -Zwasm-c-abi=spec foo.rs --target wasm32-unknown-unknown --crate-type lib --emit obj -O
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$ wasm-tools print foo.o
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(module
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(import "env" "take_my_pair" (func $take_my_pair (param i32) (result i32)))
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(func $call_c (result i32)
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)
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;; ...
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)
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```
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which shows that the C and Rust definitions of the same function now agree like
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they should.
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The `-Zwasm-c-abi` compiler flag is tracked in
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[#122532](https://github.com/rust-lang/rust/issues/122532) and a lint was
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implemented in [#117918](https://github.com/rust-lang/rust/issues/117918) to
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help warn users about the transition. The current plan is to, in the future,
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switch `-Zwasm-c-api=spec` to being the default. Some time after that the
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`-Zwasm-c-abi` flag and the "legacy" implementation will all be removed.
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