Remove the module linking implementation in Wasmtime (#3958)
* Remove the module linking implementation in Wasmtime This commit removes the experimental implementation of the module linking WebAssembly proposal from Wasmtime. The module linking is no longer intended for core WebAssembly but is instead incorporated into the component model now at this point. This means that very large parts of Wasmtime's implementation of module linking are no longer applicable and would change greatly with an implementation of the component model. The main purpose of this is to remove Wasmtime's reliance on the support for module-linking in `wasmparser` and tooling crates. With this reliance removed we can move over to the `component-model` branch of `wasmparser` and use the updated support for the component model. Additionally given the trajectory of the component model proposal the embedding API of Wasmtime will not look like what it looks like today for WebAssembly. For example the core wasm `Instance` will not change and instead a `Component` is likely to be added instead. Some more rationale for this is in #3941, but the basic idea is that I feel that it's not going to be viable to develop support for the component model on a non-`main` branch of Wasmtime. Additionaly I don't think it's viable, for the same reasons as `wasm-tools`, to support the old module linking proposal and the new component model at the same time. This commit takes a moment to not only delete the existing module linking implementation but some abstractions are also simplified. For example module serialization is a bit simpler that there's only one module. Additionally instantiation is much simpler since the only initializer we have to deal with are imports and nothing else. Closes #3941 * Fix doc link * Update comments
This commit is contained in:
@@ -382,7 +382,6 @@ impl Config {
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let mut cfg = wasmtime::Config::new();
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cfg.wasm_bulk_memory(true)
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.wasm_reference_types(true)
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.wasm_module_linking(self.module_config.config.module_linking_enabled)
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.wasm_multi_value(self.module_config.config.multi_value_enabled)
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.wasm_multi_memory(self.module_config.config.max_memories > 1)
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.wasm_simd(self.module_config.config.simd_enabled)
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@@ -1,7 +1,6 @@
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//! Dummy implementations of things that a Wasm module can import.
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use anyhow::Result;
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use std::fmt::Write;
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use wasmtime::*;
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/// Create a set of dummy functions/globals/etc for the given imports.
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@@ -9,27 +8,13 @@ pub fn dummy_linker<'module, T>(store: &mut Store<T>, module: &Module) -> Result
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let mut linker = Linker::new(store.engine());
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linker.allow_shadowing(true);
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for import in module.imports() {
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match import.name() {
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Some(name) => {
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linker
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.define(import.module(), name, dummy_extern(store, import.ty())?)
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.unwrap();
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}
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None => match import.ty() {
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ExternType::Instance(ty) => {
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for ty in ty.exports() {
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linker
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.define(import.module(), ty.name(), dummy_extern(store, ty.ty())?)
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.unwrap();
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}
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}
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other => {
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linker
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.define_name(import.module(), dummy_extern(store, other)?)
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.unwrap();
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}
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},
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}
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linker
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.define(
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import.module(),
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import.name(),
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dummy_extern(store, import.ty())?,
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)
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.unwrap();
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}
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Ok(linker)
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}
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@@ -41,8 +26,6 @@ pub fn dummy_extern<T>(store: &mut Store<T>, ty: ExternType) -> Result<Extern> {
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ExternType::Global(global_ty) => Extern::Global(dummy_global(store, global_ty)),
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ExternType::Table(table_ty) => Extern::Table(dummy_table(store, table_ty)?),
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ExternType::Memory(mem_ty) => Extern::Memory(dummy_memory(store, mem_ty)?),
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ExternType::Instance(instance_ty) => Extern::Instance(dummy_instance(store, instance_ty)?),
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ExternType::Module(module_ty) => Extern::Module(dummy_module(store.engine(), module_ty)),
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})
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}
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@@ -91,297 +74,12 @@ pub fn dummy_memory<T>(store: &mut Store<T>, ty: MemoryType) -> Result<Memory> {
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Memory::new(store, ty)
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}
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/// Construct a dummy instance for the given instance type.
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///
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/// This is done by using the expected type to generate a module on-the-fly
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/// which we the instantiate.
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pub fn dummy_instance<T>(store: &mut Store<T>, ty: InstanceType) -> Result<Instance> {
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let mut wat = WatGenerator::new();
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for ty in ty.exports() {
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wat.export(&ty);
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}
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let module = Module::new(store.engine(), &wat.finish()).unwrap();
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Instance::new(store, &module, &[])
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}
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/// Construct a dummy module for the given module type.
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///
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/// This is done by using the expected type to generate a module on-the-fly.
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pub fn dummy_module(engine: &Engine, ty: ModuleType) -> Module {
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let mut wat = WatGenerator::new();
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for ty in ty.imports() {
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wat.import(&ty);
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}
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for ty in ty.exports() {
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wat.export(&ty);
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}
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Module::new(engine, &wat.finish()).unwrap()
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}
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struct WatGenerator {
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tmp: usize,
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dst: String,
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}
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impl WatGenerator {
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fn new() -> WatGenerator {
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WatGenerator {
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tmp: 0,
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dst: String::from("(module\n"),
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}
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}
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fn finish(mut self) -> String {
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self.dst.push_str(")\n");
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self.dst
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}
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fn import(&mut self, ty: &ImportType<'_>) {
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write!(self.dst, "(import ").unwrap();
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self.str(ty.module());
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write!(self.dst, " ").unwrap();
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if let Some(field) = ty.name() {
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self.str(field);
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write!(self.dst, " ").unwrap();
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}
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self.item_ty(&ty.ty());
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writeln!(self.dst, ")").unwrap();
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}
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fn item_ty(&mut self, ty: &ExternType) {
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match ty {
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ExternType::Memory(mem) => {
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write!(
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self.dst,
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"(memory {} {})",
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mem.minimum(),
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match mem.maximum() {
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Some(max) => max.to_string(),
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None => String::new(),
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}
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)
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.unwrap();
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}
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ExternType::Table(table) => {
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write!(
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self.dst,
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"(table {} {} {})",
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table.minimum(),
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match table.maximum() {
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Some(max) => max.to_string(),
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None => String::new(),
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},
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wat_ty(&table.element()),
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)
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.unwrap();
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}
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ExternType::Global(ty) => {
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if ty.mutability() == Mutability::Const {
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write!(self.dst, "(global {})", wat_ty(ty.content())).unwrap();
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} else {
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write!(self.dst, "(global (mut {}))", wat_ty(ty.content())).unwrap();
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}
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}
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ExternType::Func(ty) => {
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write!(self.dst, "(func ").unwrap();
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self.func_sig(ty);
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write!(self.dst, ")").unwrap();
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}
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ExternType::Instance(ty) => {
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writeln!(self.dst, "(instance").unwrap();
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for ty in ty.exports() {
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write!(self.dst, "(export ").unwrap();
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self.str(ty.name());
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write!(self.dst, " ").unwrap();
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self.item_ty(&ty.ty());
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writeln!(self.dst, ")").unwrap();
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}
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write!(self.dst, ")").unwrap();
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}
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ExternType::Module(ty) => {
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writeln!(self.dst, "(module").unwrap();
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for ty in ty.imports() {
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self.import(&ty);
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writeln!(self.dst, "").unwrap();
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}
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for ty in ty.exports() {
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write!(self.dst, "(export ").unwrap();
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self.str(ty.name());
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write!(self.dst, " ").unwrap();
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self.item_ty(&ty.ty());
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writeln!(self.dst, ")").unwrap();
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}
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write!(self.dst, ")").unwrap();
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}
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}
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}
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fn export(&mut self, ty: &ExportType<'_>) {
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let wat_name = format!("item{}", self.tmp);
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self.tmp += 1;
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let item_ty = ty.ty();
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self.item(&wat_name, &item_ty);
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write!(self.dst, "(export ").unwrap();
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self.str(ty.name());
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write!(self.dst, " (").unwrap();
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match item_ty {
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ExternType::Memory(_) => write!(self.dst, "memory").unwrap(),
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ExternType::Global(_) => write!(self.dst, "global").unwrap(),
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ExternType::Func(_) => write!(self.dst, "func").unwrap(),
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ExternType::Instance(_) => write!(self.dst, "instance").unwrap(),
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ExternType::Table(_) => write!(self.dst, "table").unwrap(),
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ExternType::Module(_) => write!(self.dst, "module").unwrap(),
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}
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writeln!(self.dst, " ${}))", wat_name).unwrap();
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}
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fn item(&mut self, name: &str, ty: &ExternType) {
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match ty {
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ExternType::Memory(mem) => {
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write!(
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self.dst,
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"(memory ${} {} {})\n",
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name,
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mem.minimum(),
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match mem.maximum() {
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Some(max) => max.to_string(),
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None => String::new(),
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}
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)
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.unwrap();
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}
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ExternType::Table(table) => {
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write!(
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self.dst,
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"(table ${} {} {} {})\n",
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name,
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table.minimum(),
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match table.maximum() {
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Some(max) => max.to_string(),
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None => String::new(),
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},
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wat_ty(&table.element()),
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)
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.unwrap();
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}
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ExternType::Global(ty) => {
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write!(self.dst, "(global ${} ", name).unwrap();
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if ty.mutability() == Mutability::Var {
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write!(self.dst, "(mut ").unwrap();
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}
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write!(self.dst, "{}", wat_ty(ty.content())).unwrap();
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if ty.mutability() == Mutability::Var {
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write!(self.dst, ")").unwrap();
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}
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write!(self.dst, " (").unwrap();
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self.value(ty.content());
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writeln!(self.dst, "))").unwrap();
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}
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ExternType::Func(ty) => {
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write!(self.dst, "(func ${} ", name).unwrap();
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self.func_sig(ty);
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for ty in ty.results() {
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writeln!(self.dst, "").unwrap();
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self.value(&ty);
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}
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writeln!(self.dst, ")").unwrap();
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}
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ExternType::Module(ty) => {
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writeln!(self.dst, "(module ${}", name).unwrap();
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for ty in ty.imports() {
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self.import(&ty);
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}
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for ty in ty.exports() {
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self.export(&ty);
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}
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self.dst.push_str(")\n");
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}
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ExternType::Instance(ty) => {
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writeln!(self.dst, "(module ${}_module", name).unwrap();
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for ty in ty.exports() {
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self.export(&ty);
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}
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self.dst.push_str(")\n");
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writeln!(self.dst, "(instance ${} (instantiate ${0}_module))", name).unwrap();
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}
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}
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}
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fn func_sig(&mut self, ty: &FuncType) {
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write!(self.dst, "(param ").unwrap();
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for ty in ty.params() {
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write!(self.dst, "{} ", wat_ty(&ty)).unwrap();
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}
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write!(self.dst, ") (result ").unwrap();
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for ty in ty.results() {
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write!(self.dst, "{} ", wat_ty(&ty)).unwrap();
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}
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write!(self.dst, ")").unwrap();
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}
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fn value(&mut self, ty: &ValType) {
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match ty {
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ValType::I32 => write!(self.dst, "i32.const 0").unwrap(),
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ValType::I64 => write!(self.dst, "i64.const 0").unwrap(),
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ValType::F32 => write!(self.dst, "f32.const 0").unwrap(),
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ValType::F64 => write!(self.dst, "f64.const 0").unwrap(),
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ValType::V128 => write!(self.dst, "v128.const i32x4 0 0 0 0").unwrap(),
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ValType::ExternRef => write!(self.dst, "ref.null extern").unwrap(),
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ValType::FuncRef => write!(self.dst, "ref.null func").unwrap(),
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}
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}
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fn str(&mut self, name: &str) {
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let mut bytes = [0; 4];
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self.dst.push_str("\"");
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for c in name.chars() {
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let v = c as u32;
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if v >= 0x20 && v < 0x7f && c != '"' && c != '\\' && v < 0xff {
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self.dst.push(c);
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} else {
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for byte in c.encode_utf8(&mut bytes).as_bytes() {
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self.hex_byte(*byte);
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}
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}
|
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}
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self.dst.push_str("\"");
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}
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fn hex_byte(&mut self, byte: u8) {
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fn to_hex(b: u8) -> char {
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if b < 10 {
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(b'0' + b) as char
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} else {
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(b'a' + b - 10) as char
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}
|
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}
|
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self.dst.push('\\');
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self.dst.push(to_hex((byte >> 4) & 0xf));
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self.dst.push(to_hex(byte & 0xf));
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}
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}
|
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|
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fn wat_ty(ty: &ValType) -> &'static str {
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match ty {
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ValType::I32 => "i32",
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ValType::I64 => "i64",
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ValType::F32 => "f32",
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ValType::F64 => "f64",
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ValType::V128 => "v128",
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ValType::ExternRef => "externref",
|
||||
ValType::FuncRef => "funcref",
|
||||
}
|
||||
}
|
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|
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#[cfg(test)]
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mod tests {
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use super::*;
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use std::collections::HashSet;
|
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|
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fn store() -> Store<()> {
|
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let mut config = Config::default();
|
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config.wasm_module_linking(true);
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config.wasm_multi_memory(true);
|
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let engine = wasmtime::Engine::new(&config).unwrap();
|
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Store::new(&engine, ())
|
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@@ -423,171 +121,4 @@ mod tests {
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let func = dummy_func(&mut store, func_ty.clone());
|
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assert_eq!(func.ty(&store), func_ty);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn dummy_instance_import() {
|
||||
let mut store = store();
|
||||
|
||||
let mut instance_ty = InstanceType::new();
|
||||
|
||||
// Functions.
|
||||
instance_ty.add_named_export("func0", FuncType::new(vec![ValType::I32], vec![]).into());
|
||||
instance_ty.add_named_export("func1", FuncType::new(vec![], vec![ValType::I64]).into());
|
||||
|
||||
// Globals.
|
||||
instance_ty.add_named_export(
|
||||
"global0",
|
||||
GlobalType::new(ValType::I32, Mutability::Const).into(),
|
||||
);
|
||||
instance_ty.add_named_export(
|
||||
"global1",
|
||||
GlobalType::new(ValType::I64, Mutability::Var).into(),
|
||||
);
|
||||
|
||||
// Tables.
|
||||
instance_ty.add_named_export("table0", TableType::new(ValType::ExternRef, 1, None).into());
|
||||
instance_ty.add_named_export("table1", TableType::new(ValType::ExternRef, 1, None).into());
|
||||
|
||||
// Memories.
|
||||
instance_ty.add_named_export("memory0", MemoryType::new(1, None).into());
|
||||
instance_ty.add_named_export("memory1", MemoryType::new(1, None).into());
|
||||
|
||||
// Modules.
|
||||
instance_ty.add_named_export("module0", ModuleType::new().into());
|
||||
instance_ty.add_named_export("module1", ModuleType::new().into());
|
||||
|
||||
// Instances.
|
||||
instance_ty.add_named_export("instance0", InstanceType::new().into());
|
||||
instance_ty.add_named_export("instance1", InstanceType::new().into());
|
||||
|
||||
let instance = dummy_instance(&mut store, instance_ty.clone()).unwrap();
|
||||
|
||||
let mut expected_exports = vec![
|
||||
"func0",
|
||||
"func1",
|
||||
"global0",
|
||||
"global1",
|
||||
"table0",
|
||||
"table1",
|
||||
"memory0",
|
||||
"memory1",
|
||||
"module0",
|
||||
"module1",
|
||||
"instance0",
|
||||
"instance1",
|
||||
]
|
||||
.into_iter()
|
||||
.collect::<HashSet<_>>();
|
||||
for exp in instance.ty(&store).exports() {
|
||||
let was_expected = expected_exports.remove(exp.name());
|
||||
assert!(was_expected);
|
||||
}
|
||||
assert!(expected_exports.is_empty());
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn dummy_module_import() {
|
||||
let store = store();
|
||||
|
||||
let mut module_ty = ModuleType::new();
|
||||
|
||||
// Multiple exported and imported functions.
|
||||
module_ty.add_named_export("func0", FuncType::new(vec![ValType::I32], vec![]).into());
|
||||
module_ty.add_named_export("func1", FuncType::new(vec![], vec![ValType::I64]).into());
|
||||
module_ty.add_named_import(
|
||||
"func2",
|
||||
None,
|
||||
FuncType::new(vec![ValType::I64], vec![]).into(),
|
||||
);
|
||||
module_ty.add_named_import(
|
||||
"func3",
|
||||
None,
|
||||
FuncType::new(vec![], vec![ValType::I32]).into(),
|
||||
);
|
||||
|
||||
// Multiple exported and imported globals.
|
||||
module_ty.add_named_export(
|
||||
"global0",
|
||||
GlobalType::new(ValType::I32, Mutability::Const).into(),
|
||||
);
|
||||
module_ty.add_named_export(
|
||||
"global1",
|
||||
GlobalType::new(ValType::I64, Mutability::Var).into(),
|
||||
);
|
||||
module_ty.add_named_import(
|
||||
"global2",
|
||||
None,
|
||||
GlobalType::new(ValType::I32, Mutability::Var).into(),
|
||||
);
|
||||
module_ty.add_named_import(
|
||||
"global3",
|
||||
None,
|
||||
GlobalType::new(ValType::I64, Mutability::Const).into(),
|
||||
);
|
||||
|
||||
// Multiple exported and imported tables.
|
||||
module_ty.add_named_export("table0", TableType::new(ValType::ExternRef, 1, None).into());
|
||||
module_ty.add_named_export("table1", TableType::new(ValType::ExternRef, 1, None).into());
|
||||
module_ty.add_named_import(
|
||||
"table2",
|
||||
None,
|
||||
TableType::new(ValType::ExternRef, 1, None).into(),
|
||||
);
|
||||
module_ty.add_named_import(
|
||||
"table3",
|
||||
None,
|
||||
TableType::new(ValType::ExternRef, 1, None).into(),
|
||||
);
|
||||
|
||||
// Multiple exported and imported memories.
|
||||
module_ty.add_named_export("memory0", MemoryType::new(1, None).into());
|
||||
module_ty.add_named_export("memory1", MemoryType::new(1, None).into());
|
||||
module_ty.add_named_import("memory2", None, MemoryType::new(1, None).into());
|
||||
module_ty.add_named_import("memory3", None, MemoryType::new(1, None).into());
|
||||
|
||||
// An exported and an imported module.
|
||||
module_ty.add_named_export("module0", ModuleType::new().into());
|
||||
module_ty.add_named_import("module1", None, ModuleType::new().into());
|
||||
|
||||
// An exported and an imported instance.
|
||||
module_ty.add_named_export("instance0", InstanceType::new().into());
|
||||
module_ty.add_named_import("instance1", None, InstanceType::new().into());
|
||||
|
||||
// Create the module.
|
||||
let module = dummy_module(store.engine(), module_ty);
|
||||
|
||||
// Check that we have the expected exports.
|
||||
assert!(module.get_export("func0").is_some());
|
||||
assert!(module.get_export("func1").is_some());
|
||||
assert!(module.get_export("global0").is_some());
|
||||
assert!(module.get_export("global1").is_some());
|
||||
assert!(module.get_export("table0").is_some());
|
||||
assert!(module.get_export("table1").is_some());
|
||||
assert!(module.get_export("memory0").is_some());
|
||||
assert!(module.get_export("memory1").is_some());
|
||||
assert!(module.get_export("instance0").is_some());
|
||||
assert!(module.get_export("module0").is_some());
|
||||
|
||||
// Check that we have the exported imports.
|
||||
let mut expected_imports = vec![
|
||||
"func2",
|
||||
"func3",
|
||||
"global2",
|
||||
"global3",
|
||||
"table2",
|
||||
"table3",
|
||||
"memory2",
|
||||
"memory3",
|
||||
"instance1",
|
||||
"module1",
|
||||
]
|
||||
.into_iter()
|
||||
.collect::<HashSet<_>>();
|
||||
for imp in module.imports() {
|
||||
assert!(imp.name().is_none());
|
||||
let was_expected = expected_imports.remove(imp.module());
|
||||
assert!(was_expected);
|
||||
}
|
||||
assert!(expected_imports.is_empty());
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user