leo/compiler/src/compiler.rs

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use crate::{ast, Program, ResolvedProgram, ResolvedValue};
use crate::errors::CompilerError;
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use snarkos_errors::gadgets::SynthesisError;
use snarkos_models::{
curves::{Field, PrimeField},
gadgets::r1cs::{ConstraintSynthesizer, ConstraintSystem},
};
use from_pest::FromPest;
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use std::{fs, marker::PhantomData, path::PathBuf};
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#[derive(Clone)]
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pub struct Compiler<F: Field + PrimeField> {
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package_name: String,
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main_file_path: PathBuf,
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output: Option<ResolvedValue<F>>,
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_engine: PhantomData<F>,
}
impl<F: Field + PrimeField> Compiler<F> {
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pub fn init(package_name: String, main_file_path: PathBuf) -> Self {
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Self {
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package_name,
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main_file_path,
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output: None,
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_engine: PhantomData,
}
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}
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pub fn evaluate_program<CS: ConstraintSystem<F>>(self, cs: &mut CS) -> Result<ResolvedValue<F>, CompilerError> {
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// Read in the main file as string
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let unparsed_file = fs::read_to_string(&self.main_file_path).map_err(|_| CompilerError::FileReadError(self.main_file_path.clone()))?;
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// Parse the file using leo.pest
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let mut file = ast::parse(&unparsed_file).map_err(|_| CompilerError::FileParsingError)?;
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// Build the abstract syntax tree
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let syntax_tree = ast::File::from_pest(&mut file).map_err(|_| CompilerError::SyntaxTreeError)?;
log::debug!("{:#?}", syntax_tree);
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// Build program from abstract syntax tree
let package_name = self.package_name.clone();
let program = Program::<'_, F>::from(syntax_tree).name(package_name);
log::info!("Compiled -\n{:#?}", program);
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Ok(ResolvedProgram::generate_constraints(cs, program))
}
}
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impl<F: Field + PrimeField> ConstraintSynthesizer<F> for Compiler<F> {
fn generate_constraints<CS: ConstraintSystem<F>>(
self,
cs: &mut CS,
) -> Result<(), SynthesisError> {
self.evaluate_program(cs);
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Ok(())
}
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}