leo/compiler/tests/mod.rs

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pub mod array;
pub mod boolean;
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pub mod circuits;
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// pub mod field;
// pub mod function;
// pub mod group;
// pub mod import;
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pub mod integers;
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// pub mod mutability;
// pub mod statements;
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pub mod syntax;
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use leo_compiler::{
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compiler::Compiler,
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errors::CompilerError,
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group::edwards_bls12::EdwardsGroupType,
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ConstrainedValue,
};
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use snarkos_curves::edwards_bls12::Fq;
use snarkos_models::gadgets::r1cs::TestConstraintSystem;
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pub type EdwardsTestCompiler = Compiler<Fq, EdwardsGroupType>;
pub type EdwardsConstrainedValue = ConstrainedValue<Fq, EdwardsGroupType>;
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pub(crate) fn get_output(program: EdwardsTestCompiler) -> EdwardsConstrainedValue {
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let mut cs = TestConstraintSystem::<Fq>::new();
let output = program.compile_constraints(&mut cs).unwrap();
assert!(cs.is_satisfied());
output
}
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pub(crate) fn get_error(program: EdwardsTestCompiler) -> CompilerError {
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let mut cs = TestConstraintSystem::<Fq>::new();
program.compile_constraints(&mut cs).unwrap_err()
}
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// pub(crate) fn fail_enforce(program: EdwardsTestCompiler) {
// match get_error(program) {
// CompilerError::FunctionError(FunctionError::StatementError(StatementError::AssertionFailed(_, _))) => {}
// error => panic!("Expected evaluate error, got {}", error),
// }
// }
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pub(crate) fn parse_program(bytes: &[u8]) -> Result<EdwardsTestCompiler, CompilerError> {
let program_string = String::from_utf8_lossy(bytes);
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let mut compiler = EdwardsTestCompiler::new();
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compiler.parse_program(&program_string)?;
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Ok(compiler)
}