forked from M-Labs/nac3
nac3standalone usable
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3279f7a776
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39545c0005
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@ -503,6 +503,7 @@ version = "0.1.0"
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dependencies = [
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"inkwell",
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"nac3core",
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"parking_lot",
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"rustpython-parser",
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]
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@ -5,6 +5,7 @@ authors = ["M-Labs"]
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edition = "2018"
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[dependencies]
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inkwell = { git = "https://github.com/TheDan64/inkwell", branch = "master", features = ["llvm10-0"] }
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inkwell = { git = "https://github.com/TheDan64/inkwell", branch = "master", features = ["llvm11-0"] }
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rustpython-parser = { git = "https://github.com/RustPython/RustPython", branch = "master" }
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parking_lot = "0.11.1"
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nac3core = { path = "../nac3core" }
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@ -1,18 +1,18 @@
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def run() -> int32:
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minX = -2.0
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maxX = 1.0
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width = 78
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height = 36
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width = 78.0
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height = 36.0
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aspectRatio = 2.0
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yScale = float64(maxX-minX)*(float64(height)/float64(width))*aspectRatio
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yScale = (maxX-minX)*(height/width)*aspectRatio
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y = 0
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y = 0.0
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while y < height:
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x = 0
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x = 0.0
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while x < width:
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c_r = minX+float64(x)*(maxX-minX)/float64(width)
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c_i = float64(y)*yScale/float64(height)-yScale/2.0
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c_r = minX+x*(maxX-minX)/width
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c_i = y*yScale/height-yScale/2.0
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z_r = c_r
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z_i = c_i
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i = 0
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@ -24,7 +24,8 @@ def run() -> int32:
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z_r = new_z_r
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i = i + 1
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output(i)
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x = x + 1
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x = x + 1.0
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output(-1)
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y = y + 1
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y = y + 1.0
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return 0
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@ -0,0 +1,35 @@
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use nac3core::{
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location::Location,
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symbol_resolver::{SymbolResolver, SymbolValue},
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top_level::DefinitionId,
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typecheck::{
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type_inferencer::PrimitiveStore,
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typedef::{Type, Unifier},
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},
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};
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use std::collections::HashMap;
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#[derive(Clone)]
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pub struct Resolver {
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pub id_to_type: HashMap<String, Type>,
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pub id_to_def: HashMap<String, DefinitionId>,
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pub class_names: HashMap<String, Type>,
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}
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impl SymbolResolver for Resolver {
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fn get_symbol_type(&self, _: &mut Unifier, _: &PrimitiveStore, str: &str) -> Option<Type> {
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self.id_to_type.get(str).cloned()
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}
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fn get_symbol_value(&self, _: &str) -> Option<SymbolValue> {
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unimplemented!()
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}
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fn get_symbol_location(&self, _: &str) -> Option<Location> {
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unimplemented!()
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}
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fn get_identifier_def(&self, id: &str) -> Option<DefinitionId> {
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self.id_to_def.get(id).cloned()
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}
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}
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@ -1,30 +1,162 @@
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use std::fs;
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use inkwell::context::Context;
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use inkwell::targets::*;
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use rustpython_parser::parser;
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use inkwell::{targets::*, OptimizationLevel};
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use parking_lot::RwLock;
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use rustpython_parser::{
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ast::{fold::Fold, StmtKind},
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parser,
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};
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use std::{cell::RefCell, collections::HashMap, path::Path, sync::Arc};
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use nac3core::CodeGen;
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use nac3core::{
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codegen::{CodeGenTask, WithCall, WorkerRegistry},
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top_level::{DefinitionId, TopLevelComposer, TopLevelContext, TopLevelDef},
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typecheck::{
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type_inferencer::{FunctionData, Inferencer},
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typedef::{FunSignature, FuncArg, TypeEnum},
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},
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};
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mod basic_symbol_resolver;
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fn main() {
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Target::initialize_all(&InitializationConfig::default());
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let program = match fs::read_to_string("mandelbrot.py") {
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Ok(program) => program,
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Err(err) => { println!("Cannot open input file: {}", err); return; }
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};
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let ast = match parser::parse_program(&program) {
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Ok(ast) => ast,
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Err(err) => { println!("Parse error: {}", err); return; }
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Err(err) => {
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println!("Cannot open input file: {}", err);
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return;
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}
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};
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let context = Context::create();
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let mut codegen = CodeGen::new(&context);
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match codegen.compile_toplevel(&ast.statements[0]) {
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Ok(_) => (),
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Err(err) => { println!("Compilation error: {}", err); return; }
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let statements = match parser::parse_program(&program) {
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Ok(mut ast) => {
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let first = ast.remove(0);
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if let StmtKind::FunctionDef { name, body, .. } = first.node {
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if name != "run" {
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panic!("Parse error: expected function \"run\" but got {}", name);
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}
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codegen.print_ir();
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codegen.output("mandelbrot.o");
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body
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} else {
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panic!(
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"Parse error: expected function \"run\" but got {:?}",
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first.node
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);
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}
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}
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Err(err) => {
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panic!("Parse error: {}", err);
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}
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};
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let (_, composer) = TopLevelComposer::new();
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let mut unifier = composer.unifier.clone();
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let primitives = composer.primitives.clone();
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let top_level = composer.to_top_level_context();
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let fun = unifier.add_ty(TypeEnum::TFunc(RefCell::new(FunSignature {
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args: vec![FuncArg {
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name: "c".into(),
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ty: primitives.int32,
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default_value: None,
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}],
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ret: primitives.none,
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vars: HashMap::new(),
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})));
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let def_id = top_level.definitions.read().len();
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top_level
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.definitions
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.write()
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.push(Arc::new(RwLock::new(TopLevelDef::Function {
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name: "output".into(),
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signature: fun,
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instance_to_stmt: HashMap::new(),
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instance_to_symbol: [("".to_string(), "output".to_string())]
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.iter()
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.cloned()
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.collect(),
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resolver: None,
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})));
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let resolver = Arc::new(basic_symbol_resolver::Resolver {
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id_to_type: [("output".into(), fun)].iter().cloned().collect(),
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id_to_def: [("output".into(), DefinitionId(def_id))]
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.iter()
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.cloned()
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.collect(),
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class_names: Default::default(),
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});
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let threads = ["test"];
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let signature = FunSignature {
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args: vec![],
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ret: primitives.int32,
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vars: HashMap::new(),
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};
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let mut function_data = FunctionData {
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resolver: resolver.clone(),
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bound_variables: Vec::new(),
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return_type: Some(primitives.int32),
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};
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let mut virtual_checks = Vec::new();
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let mut calls = HashMap::new();
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let mut inferencer = Inferencer {
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top_level: &top_level,
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function_data: &mut function_data,
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unifier: &mut unifier,
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variable_mapping: Default::default(),
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primitives: &primitives,
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virtual_checks: &mut virtual_checks,
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calls: &mut calls,
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};
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let statements = statements
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.into_iter()
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.map(|v| inferencer.fold_stmt(v))
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.collect::<Result<Vec<_>, _>>()
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.unwrap();
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let mut identifiers = vec!["output".to_string()];
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inferencer
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.check_block(&statements, &mut identifiers)
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.unwrap();
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let top_level = Arc::new(TopLevelContext {
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definitions: Arc::new(RwLock::new(std::mem::take(
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&mut *top_level.definitions.write(),
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))),
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unifiers: Arc::new(RwLock::new(vec![(
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unifier.get_shared_unifier(),
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primitives.clone(),
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)])),
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});
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let task = CodeGenTask {
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subst: Default::default(),
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symbol_name: "run".to_string(),
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body: statements,
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unifier_index: 0,
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resolver,
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calls,
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signature,
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};
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let f = Arc::new(WithCall::new(Box::new(|module| {
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let triple = TargetMachine::get_default_triple();
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let target =
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Target::from_triple(&triple).expect("couldn't create target from target triple");
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let target_machine = target
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.create_target_machine(
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&triple,
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"",
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"",
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OptimizationLevel::Default,
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RelocMode::Default,
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CodeModel::Default,
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)
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.expect("couldn't create target machine");
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target_machine
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.write_to_file(module, FileType::Object, Path::new("mandelbrot.o"))
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.expect("couldn't write module to file");
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})));
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let (registry, handles) = WorkerRegistry::create_workers(&threads, top_level, f);
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registry.add_task(task);
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registry.wait_tasks_complete(handles);
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println!("object file is in mandelbrot.o")
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}
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