we now parse witx paths and the ctx type name in the macro invocation
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@@ -1,64 +1,98 @@
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use std::path::PathBuf;
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use proc_macro2::Span;
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use syn::{
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bracketed,
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braced, bracketed,
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parse::{Parse, ParseStream},
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punctuated::Punctuated,
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token, LitStr, Result, Token,
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Error, Ident, LitStr, Result, Token,
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};
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#[derive(Debug, Clone)]
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pub struct Config {
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_bracket_token: token::Bracket,
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path_lits: Punctuated<LitStr, Token![,]>,
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pub witx: WitxConf,
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pub ctx: CtxConf,
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}
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enum ConfigField {
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Witx(WitxConf),
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Ctx(CtxConf),
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}
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impl Parse for ConfigField {
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fn parse(input: ParseStream) -> Result<Self> {
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let id: Ident = input.parse()?;
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let _colon: Token![:] = input.parse()?;
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match id.to_string().as_ref() {
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"witx" => Ok(ConfigField::Witx(input.parse()?)),
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"ctx" => Ok(ConfigField::Ctx(input.parse()?)),
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_ => Err(Error::new(id.span(), "expected `witx` or `ctx`")),
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}
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}
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}
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impl Config {
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pub fn witx_paths(&self) -> Vec<PathBuf> {
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self.path_lits
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.iter()
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.map(|lit| PathBuf::from(lit.value()))
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.collect()
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fn build(fields: impl Iterator<Item = ConfigField>, err_loc: Span) -> Result<Self> {
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let mut witx = None;
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let mut ctx = None;
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for f in fields {
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match f {
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ConfigField::Witx(c) => {
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witx = Some(c);
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}
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ConfigField::Ctx(c) => {
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ctx = Some(c);
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}
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}
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}
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Ok(Config {
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witx: witx
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.take()
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.ok_or_else(|| Error::new(err_loc, "`witx` field required"))?,
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ctx: ctx
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.take()
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.ok_or_else(|| Error::new(err_loc, "`ctx` field required"))?,
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})
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}
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}
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impl Parse for Config {
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fn parse(input: ParseStream) -> Result<Self> {
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let contents;
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let _lbrace = braced!(contents in input);
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let fields: Punctuated<ConfigField, Token![,]> =
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contents.parse_terminated(ConfigField::parse)?;
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Ok(Config::build(fields.into_iter(), input.span())?)
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}
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}
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#[derive(Debug, Clone)]
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pub struct WitxConf {
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pub paths: Vec<PathBuf>,
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}
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impl Parse for WitxConf {
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fn parse(input: ParseStream) -> Result<Self> {
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let content;
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Ok(Config {
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_bracket_token: bracketed!(content in input),
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path_lits: content.parse_terminated(Parse::parse)?,
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let _ = bracketed!(content in input);
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let path_lits: Punctuated<LitStr, Token![,]> = content.parse_terminated(Parse::parse)?;
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let paths: Vec<PathBuf> = path_lits
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.iter()
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.map(|lit| PathBuf::from(lit.value()))
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.collect();
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Ok(WitxConf { paths })
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}
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}
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#[derive(Debug, Clone)]
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pub struct CtxConf {
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pub name: Ident,
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}
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impl Parse for CtxConf {
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fn parse(input: ParseStream) -> Result<Self> {
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Ok(CtxConf {
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name: input.parse()?,
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})
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}
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}
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/*
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let arg_strings = args
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.into_iter()
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.map(|arg| match arg {
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TokenTree::Literal(lit) => string_literal(lit),
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_ => bail!("expected string literal, got: {:?}", arg),
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})
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.collect::<Result<Vec<String>>>()?;
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if arg_strings.is_empty() {
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bail!("expected at least one argument");
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}
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Ok(arg_strings)
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}
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fn string_literal(literal: Literal) -> Result<String> {
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let s = literal.to_string();
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if !s.starts_with('"') || !s.ends_with('"') {
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bail!("string literal must be enclosed in double quotes");
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}
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let trimmed = s[1..s.len() - 1].to_owned();
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if trimmed.contains('"') {
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bail!("string literal must not contain quotes");
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}
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if trimmed.contains('\\') {
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bail!("string literal must not contain backslashes");
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}
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Ok(trimmed)
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}
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*/
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@@ -4,11 +4,9 @@ use quote::quote;
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use crate::names::Names;
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use crate::types::struct_is_copy;
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// FIXME need to template what argument is required to an import function - some context
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// struct (e.g. WasiCtx) should be provided at the invocation of the `gen` proc macro.
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//
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pub fn define_func(names: &Names, func: &witx::InterfaceFunc) -> TokenStream {
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let ident = names.func(&func.name);
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let ctx_type = names.ctx_type();
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let coretype = func.core_type();
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let params = coretype.args.iter().map(|arg| match arg.signifies {
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@@ -30,7 +28,7 @@ pub fn define_func(names: &Names, func: &witx::InterfaceFunc) -> TokenStream {
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});
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let abi_args = quote!(
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ctx: &mut WasiCtx, memory: ::memory::GuestMemory,
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ctx: &mut #ctx_type, memory: ::memory::GuestMemory,
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#(#params),*
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);
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let abi_ret = if let Some(ret) = &coretype.ret {
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@@ -20,9 +20,9 @@ use types::define_datatype;
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pub fn from_witx(args: TokenStream) -> TokenStream {
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let config = parse_macro_input!(args as Config);
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let names = Names::new(); // TODO parse the names from the invocation of the macro, or from a file?
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let doc = witx::load(&config.witx.paths).expect("loading witx");
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let doc = witx::load(&config.witx_paths()).expect("loading witx");
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let names = Names::new(config); // TODO parse the names from the invocation of the macro, or from a file?
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let types = doc.typenames().map(|t| define_datatype(&names, &t));
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@@ -30,9 +30,10 @@ pub fn from_witx(args: TokenStream) -> TokenStream {
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let modname = names.module(&module.name);
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let fs = module.funcs().map(|f| define_func(&names, &f));
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let modtrait = define_module_trait(&names, &module);
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let ctx_type = names.ctx_type();
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quote!(
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mod #modname {
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use super::WasiCtx;
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use super::#ctx_type;
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use super::types::*;
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#(#fs)*
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@@ -3,14 +3,19 @@ use proc_macro2::{Ident, TokenStream};
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use quote::{format_ident, quote};
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use witx::{AtomType, BuiltinType, Id, TypeRef};
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use crate::Config;
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#[derive(Debug, Clone)]
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pub struct Names {
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// FIXME: overrides go in here, so we can map e.g. 2big => TooBig
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config: Config,
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}
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impl Names {
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pub fn new() -> Names {
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Names {}
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pub fn new(config: Config) -> Names {
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Names { config }
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}
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pub fn ctx_type(&self) -> Ident {
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self.config.ctx.name.clone()
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}
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pub fn type_(&self, id: &Id) -> TokenStream {
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let ident = format_ident!("{}", id.as_str().to_camel_case());
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@@ -1,6 +1,9 @@
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pub mod test {
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// FIXME: parameterize macro on what ctx type is used here
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generate::from_witx!(["test.witx"]);
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generate::from_witx!({
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witx: ["test.witx"],
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ctx: WasiCtx,
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});
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pub struct WasiCtx {
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guest_errors: Vec<::memory::GuestError>,
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