forked from M-Labs/nac3
statement inference: assignment
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@ -7,6 +7,7 @@ extern crate rustpython_parser;
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pub mod expression_inference;
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pub mod inference_core;
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pub mod statement_inference;
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mod magic_methods;
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pub mod primitives;
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pub mod typedef;
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95
nac3core/src/statement_inference.rs
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95
nac3core/src/statement_inference.rs
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@ -0,0 +1,95 @@
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use crate::context::InferenceContext;
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use crate::expression_inference::infer_expr;
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use crate::inference_core::resolve_call;
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use crate::magic_methods::*;
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use crate::primitives::*;
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use crate::typedef::{Type, TypeEnum::*};
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use rustpython_parser::ast::*;
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fn get_target_type<'b: 'a, 'a>(
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ctx: &mut InferenceContext<'a>,
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target: &'b Expression,
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) -> Result<Type, String> {
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match &target.node {
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ExpressionType::Subscript { a, b } => {
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let int32 = ctx.get_primitive(INT32_TYPE);
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if infer_expr(ctx, &a)? == Some(int32) {
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let b = get_target_type(ctx, &b)?;
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if let ParametricType(LIST_TYPE, t) = b.as_ref() {
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Ok(t[0].clone())
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} else {
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Err("subscript is only supported for list".to_string())
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}
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} else {
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Err("subscript must be int32".to_string())
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}
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}
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ExpressionType::Attribute { value, name } => {
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let t = get_target_type(ctx, &value)?;
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let base = t.get_base(ctx).ok_or_else(|| "no attributes".to_string())?;
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Ok(base
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.fields
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.get(name.as_str())
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.ok_or_else(|| "no such attribute")?
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.clone())
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}
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ExpressionType::Identifier { name } => Ok(ctx.resolve(name.as_str())?),
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_ => Err("not supported".to_string()),
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}
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}
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fn check_stmt_binding<'b: 'a, 'a>(
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ctx: &mut InferenceContext<'a>,
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target: &'b Expression,
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ty: Type,
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) -> Result<(), String> {
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match &target.node {
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ExpressionType::Identifier { name } => {
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if name.as_str() == "_" {
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Ok(())
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} else {
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match ctx.resolve(name.as_str()) {
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Ok(t) if t == ty => Ok(()),
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Err(_) => {
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ctx.assign(name.as_str(), ty).unwrap();
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Ok(())
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}
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_ => Err("conflicting type".into()),
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}
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}
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}
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ExpressionType::Tuple { elements } => {
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if let ParametricType(TUPLE_TYPE, ls) = ty.as_ref() {
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if ls.len() != elements.len() {
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return Err("incorrect pattern length".into());
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}
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for (x, y) in elements.iter().zip(ls.iter()) {
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check_stmt_binding(ctx, x, y.clone())?;
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}
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Ok(())
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} else {
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Err("pattern matching supports tuple only".into())
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}
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}
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_ => {
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let t = get_target_type(ctx, target)?;
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if ty == t {
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Ok(())
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} else {
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Err("type mismatch".into())
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}
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}
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}
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}
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fn check_assign<'b: 'a, 'a>(
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ctx: &mut InferenceContext<'a>,
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targets: &'b [Expression],
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value: &'b Expression,
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) -> Result<(), String> {
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let ty = infer_expr(ctx, value)?.ok_or_else(|| "no value".to_string())?;
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for t in targets.iter() {
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check_stmt_binding(ctx, t, ty.clone())?;
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}
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Ok(())
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}
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