Implement imports of structs and type aliases #2
119
src/lib.rs
119
src/lib.rs
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@ -25,7 +25,7 @@ pub struct Import {
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imports: Vec<String>,
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}
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#[derive(Clone)]
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#[derive(Clone, PartialEq, Eq, Hash)]
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pub struct DefRequirement {
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/// None if the requirement is local
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module: Option<String>,
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@ -34,6 +34,7 @@ pub struct DefRequirement {
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#[derive(Clone)]
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pub struct Definition {
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#[allow(dead_code)]
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name: String,
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requirements: Vec<DefRequirement>,
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/// The start byte position as a `usize`.
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@ -51,6 +52,7 @@ pub struct Module {
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/// Constants that this module defines
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pub vars: HashMap<String, Definition>,
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pub structs: HashMap<String, Definition>,
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pub aliases: HashMap<String, Definition>,
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/// Functions that this module defines
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pub functions: HashMap<String, Definition>,
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/// Imports of things per module
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@ -62,6 +64,16 @@ pub struct Module {
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module_imports: HashSet<String>,
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}
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impl Module {
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/// Get a definition of any type from this module.
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pub fn get_definition(&self, name: &str) -> Option<&Definition> {
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self.functions.get(name)
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.or_else(|| self.vars.get(name))
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.or_else(|| self.structs.get(name))
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.or_else(|| self.aliases.get(name))
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}
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}
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/// Recursively find files in `path`.
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pub(crate) fn recurse_files(path: impl AsRef<Path>) -> std::io::Result<Vec<PathBuf>> {
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let mut buf = vec![];
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@ -138,6 +150,12 @@ fn main() -> vec4<f32> {
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/// i.e., `simple::some_const`.
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#[test]
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fn double_layer_import_indirect_imports() {
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init(); */
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let mut p = Processor::new();
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p.parse_module(&INNER_MODULE).unwrap()
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.expect("failed to find module");
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@ -151,7 +169,7 @@ fn main() -> vec4<f32> {
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assert!(out.contains("const simple_scalar"), "definition of imported `const simple_scalar` is missing!");
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assert!(out.contains("fn do_something_cool("), "definition of imported `fn do_something_cool` is missing!");
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assert!(out.contains("const scalar"), "definition of imported dependency, `const scalar` is missing!");
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assert!(out.contains("const scalar"), "definition of imported dependency, `const scalar` is missing! {}", out);
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assert!(out.contains("fn mult_some_nums("), "definition of imported dependency, `fn mult_some_nums` is missing!");
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assert!(out.contains("fn do_something_cool("), "definition of imported `fn do_something_cool` is missing!");
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@ -181,11 +199,11 @@ fn main() -> vec4<f32> {
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return vec4<f32>(1.0);
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}"#;
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tracing_subscriber::fmt()
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init();
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.init(); */
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let mut p = Processor::new();
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p.parse_module(BINDINGS_MODULE).unwrap()
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@ -222,11 +240,11 @@ fn main() -> vec4<f32> {
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return vec4<f32>(1.0);
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}"#;
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tracing_subscriber::fmt()
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init();
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.init(); */
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let mut p = Processor::new();
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p.parse_module(BINDINGS_MODULE).unwrap()
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@ -272,11 +290,11 @@ fn main() -> vec4<f32> {
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return vec4<f32>(1.0);
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}"#;
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tracing_subscriber::fmt()
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init();
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.init(); */
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let mut p = Processor::new();
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p.parse_module(BINDINGS_MODULE).unwrap()
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@ -315,11 +333,11 @@ fn main() -> vec4<f32> {
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return vec4<f32>(1.0);
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}"#;
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tracing_subscriber::fmt()
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init();
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.init(); */
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let mut p = Processor::new();
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p.parse_module(BINDINGS_MODULE).unwrap()
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@ -363,11 +381,11 @@ fn main() -> vec4<f32> {
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return vec4<f32>(1.0);
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}"#;
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tracing_subscriber::fmt()
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init();
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.init(); */
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let mut p = Processor::new();
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p.parse_module(TYPE_MODULE).unwrap()
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@ -384,4 +402,81 @@ fn main() -> vec4<f32> {
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assert!(out.contains("struct Light"), "missing `Light` struct definition: {}", out);
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assert!(out.contains("struct Something"), "missing `Something` struct definition: {}", out);
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}
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#[test]
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fn import_type_alias() {
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const TYPE_MODULE: &'static str =
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r#"#define_module engine::types
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alias LightIntensity = f32;"#;
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const IMPORTING_MODULE: &'static str =
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r#"#define_module engine::main
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#import engine::types::{LightIntensity}
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fn main() -> vec4<f32> {
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// imports must be used to be generated
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let intensity: LightIntensity = 1.0;
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return vec4<f32>(1.0);
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}"#;
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init(); */
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let mut p = Processor::new();
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p.parse_module(TYPE_MODULE).unwrap()
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.expect("failed to find bindings module def");
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let importing_mod = p.parse_module(IMPORTING_MODULE).unwrap()
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.expect("failed to find main module def");
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let out = p.process_file(&importing_mod, &IMPORTING_MODULE).unwrap();
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assert!(out.contains("alias LightIntensity"), "missing `LightIntensity` type alias: {}", out);
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}
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#[test]
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fn import_type_alias_with_imports() {
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const TYPE_MODULE: &'static str =
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r#"#define_module engine::types
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alias Number = f32;"#;
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const LIGHT_MODULE: &'static str =
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r#"#define_module engine::light
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#import engine::types::{Number}
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alias LightIntensity = Number;"#;
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const IMPORTING_MODULE: &'static str =
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r#"#define_module engine::main
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#import engine::light::{LightIntensity}
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fn main() -> vec4<f32> {
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// imports must be used to be generated
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let intensity: LightIntensity = 1.0;
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return vec4<f32>(1.0);
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}"#;
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/* tracing_subscriber::fmt()
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// enable everything
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.with_max_level(tracing::Level::TRACE)
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// sets this to be the default, global collector for this application.
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.init(); */
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let mut p = Processor::new();
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p.parse_module(TYPE_MODULE).unwrap()
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.expect("failed to find bindings module def");
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p.parse_module(LIGHT_MODULE).unwrap()
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.expect("failed to find bindings module def");
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let importing_mod = p.parse_module(IMPORTING_MODULE).unwrap()
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.expect("failed to find main module def");
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let out = p.process_file(&importing_mod, &IMPORTING_MODULE).unwrap();
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assert!(out.contains("alias LightIntensity"), "missing `LightIntensity` type alias: {}", out);
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assert!(out.contains("alias Number"), "missing `Number` type alias: {}", out);
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}
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}
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@ -427,11 +427,11 @@ impl Processor {
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},
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Rule::shader_struct_def => {
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let mut struct_inner = line.clone().into_inner();
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let struct_name = struct_inner.next().unwrap();
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// iterate through fields in struct
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let mut requirements = vec![];
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while let (Some(ident), Some(field_ty)) = (struct_inner.next(), struct_inner.next()) {
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while let (Some(_), Some(field_ty)) = (struct_inner.next(), struct_inner.next()) {
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//panic!("got {} of type {}", ident.as_str(), field_ty.as_str());
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let mut ty_inner = field_ty.into_inner();
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let ty_inner = ty_inner.next().unwrap();
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@ -459,6 +459,33 @@ impl Processor {
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end_pos,
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});
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},
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Rule::shader_type_alias_def => {
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let mut inner = line.clone().into_inner();
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// get rules
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let alias_name = inner.next().unwrap();
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let alias_to = inner.next().unwrap();
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// get the requirements of the alias if there are any
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let requirements = if let Some(req) = get_external_var_requirement(&module, alias_to) {
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debug!("Type req: {}", req.name);
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vec![req]
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} else { vec![] };
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let aname = alias_name.as_str().to_string();
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debug!("Type alias `{}`", aname);
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let line_span = line.as_span();
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let start_pos = line_span.start();
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let end_pos = line_span.end();
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module.aliases.insert(aname.clone(), Definition {
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name: aname,
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requirements,
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start_pos,
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end_pos,
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});
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},
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Rule::cws => (),
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Rule::newline => (),
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_ => unimplemented!("ran into unhandled rule: ({:?}) {:?}", line.as_rule(), line.as_span())
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@ -631,7 +658,7 @@ impl Processor {
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}
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fn try_find_requirement_module(module: &Module, req_name: &str) -> Option<String> {
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//debug!("imports: {:?}", module.item_imports.values());
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debug!("looking for '{}' in module '{}' that imports: {:?}", req_name, module.name, module.item_imports.values());
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//debug!("Module: {}, req: {}", module.name, req_name);
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for import in module.item_imports.values() {
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@ -647,10 +674,10 @@ fn try_find_requirement_module(module: &Module, req_name: &str) -> Option<String
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}
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//#[instrument(fields(module = module.name, require=tracing::field::Empty), skip_all)]
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fn compile_definitions(modules: &HashMap<String, Module>, module: &Module, compiled_modules: &mut HashSet<String>, output: &mut String) -> Result<(), PreprocessorError> {
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let e = debug_span!("compile_definitions", module = module.name, require = tracing::field::Empty).entered();
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fn compile_definitions(modules: &HashMap<String, Module>, module: &Module, compiled_definitions: &mut HashSet<DefRequirement>, output: &mut String) -> Result<(), PreprocessorError> {
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let e = debug_span!("compile_definitions", module = module.name, require = tracing::field::Empty, sub_require = tracing::field::Empty).entered();
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let defs = module.functions.iter().chain(module.vars.iter()).chain(module.structs.iter());
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let defs = module.functions.iter().chain(module.vars.iter()).chain(module.structs.iter()).chain(module.aliases.iter());
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for (_, funcs) in defs { //&module.functions {
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let mut requirements = VecDeque::from(funcs.requirements.clone());
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@ -668,34 +695,43 @@ fn compile_definitions(modules: &HashMap<String, Module>, module: &Module, compi
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.unwrap_or_else(|| panic!("invalid module import: {}", module_name));
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// get the definition from the module that defines the import
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let req_def = req_module.functions.get(&req.name)
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.or_else(|| req_module.vars.get(&req.name))
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.or_else(|| req_module.structs.get(&req.name))
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let req_def = req_module.get_definition(&req.name)
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.unwrap_or_else(|| panic!("invalid import: {} from {}", req.name, module_name));
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if !req_def.requirements.is_empty() {
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for sub in &req_def.requirements {
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let sub_module = sub.module.clone().or_else(|| try_find_requirement_module(&module, &req.name));
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for mut sub in req_def.requirements.clone() {
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e.record("sub_require", sub.name.clone());
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if let Some(sub_mod) = &sub_module {
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if !compiled_modules.contains(sub_mod) {
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//panic!("NEED TO COMPILE");
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compiled_modules.insert(sub_mod.clone());
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println!("searching for sub requirement module in module: '{}'", req_module.name);
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if sub.module.is_none() {
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sub.module = try_find_requirement_module(&req_module, &sub.name);
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}
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if let Some(sub_mod) = &sub.module {
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if !compiled_definitions.contains(&sub) {
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compiled_definitions.insert(sub.clone());
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let sub_mod = modules.get(sub_mod).expect("unknown module from import");
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debug!("found sub requirement module: {}", sub_mod.name);
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let module_name = &sub_mod.name;
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/* let sub_req_names: Vec<String> = req_def.requirements.iter().map(|r| r.name.clone()).collect();
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debug!("Found requirement: {}, with the following sub-requirements: {:?} from {}", req_def.name, sub_req_names, req_module.name); */
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let mut requirements_output = String::new();
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compile_definitions(modules, sub_mod, compiled_modules, &mut requirements_output)?;
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compile_definitions(modules, sub_mod, compiled_definitions, &mut requirements_output)?;
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output.write_fmt(format_args!("\n// REQUIREMENTS OF {}::{}\n", module_name, req.name))?;
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output.push_str(&requirements_output);
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output.push_str("\n");
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// find the definition of the sub requirement
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let sub_def = sub_mod.get_definition(&sub.name)
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.unwrap_or_else(|| panic!("invalid import: {} from {}", req.name, module_name));
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// write the source of the sub requirement to the output
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let req_src = &sub_mod.src[sub_def.start_pos..sub_def.end_pos];
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output.write_fmt(format_args!("// SOURCE {}::{}\n", module_name, sub.name))?;
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output.push_str(req_src);
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output.push_str("\n");
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} else {
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debug!("Requirement module is already compiled, skipping...");
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}
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@ -37,6 +37,7 @@ shader_value = { shader_value_bool | shader_value_num }
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shader_var_type = { ":" ~ ws* ~ (shader_external_variable | shader_type) }
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shader_const_def = { "const" ~ ws ~ shader_ident ~ (ws* ~ shader_var_type)? ~ ws* ~ "=" ~ ws* ~ shader_value ~ ";" }
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shader_type_alias_def = { ("alias" | "type") ~ ws ~ shader_ident ~ ws* ~ "=" ~ ws* ~ (shader_external_variable | shader_type) ~ ";" }
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shader_struct_def = {
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"struct" ~ ws ~ shader_ident ~ ws* ~ "{" ~ NEWLINE ~
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ws* ~ shader_ident ~ shader_var_type ~
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@ -44,7 +45,6 @@ shader_struct_def = {
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","? ~ NEWLINE? ~
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"}"
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}
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shader_type_alias_def = { "alias" ~ ws ~ shader_ident ~ ws* ~ "=" ~ ws* ~ (shader_external_variable | shader_type) ~ ";" }
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shader_group_binding = { "@group(" ~ NUMBER ~ ") @binding(" ~ NUMBER ~ ")" }
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shader_binding_var_constraint = {
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