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Author SHA1 Message Date
be218fc0d4 a mess.. 2021-01-19 13:55:13 +08:00

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@ -2,7 +2,9 @@
use super::context::TopLevelContext;
use super::primitives::*;
use super::typedef::*;
use rustpython_parser::ast::{ExpressionType, Statement, StatementType, StringGroup, ComprehensionKind};
use rustpython_parser::ast::{
ComprehensionKind, ExpressionType, Statement, StatementType, StringGroup,
};
use std::collections::HashMap;
// TODO: fix condition checking, return error message instead of panic...
@ -49,10 +51,7 @@ fn name_from_expr<'a>(expr: &'a ExpressionType) -> &'a str {
}
}
fn type_from_expr<'a>(
ctx: &'a TopLevelContext,
expr: &'a ExpressionType,
) -> Result<Type, String> {
fn type_from_expr<'a>(ctx: &'a TopLevelContext, expr: &'a ExpressionType) -> Result<Type, String> {
match expr {
ExpressionType::Identifier { name } => {
ctx.get_type(name).ok_or_else(|| "no such type".into())
@ -161,7 +160,11 @@ fn resolve_function<'a>(
}
}
fn get_expression_unknowns<'a>(defined: &mut Vec<&'a str>, unknowns: &mut Vec<&'a str>, expr: &'a ExpressionType) {
fn get_expression_unknowns<'a>(
defined: &[&'a str],
unknowns: &mut Vec<&'a str>,
expr: &'a ExpressionType,
) {
match expr {
ExpressionType::BoolOp { values, .. } => {
for v in values.iter() {
@ -209,16 +212,16 @@ fn get_expression_unknowns<'a>(defined: &mut Vec<&'a str>, unknowns: &mut Vec<&'
}
let g = &generators[0];
get_expression_unknowns(defined, unknowns, &g.iter.node);
let mut scoped = defined.clone();
let mut scoped = defined.to_owned();
get_expression_unknowns(defined, &mut scoped, &g.target.node);
for if_expr in g.ifs.iter() {
get_expression_unknowns(&mut scoped, unknowns, &if_expr.node);
get_expression_unknowns(&scoped, unknowns, &if_expr.node);
}
match kind.as_ref() {
ComprehensionKind::List { element } => {
get_expression_unknowns(&mut scoped, unknowns, &element.node);
get_expression_unknowns(&scoped, unknowns, &element.node);
}
_ => unimplemented!()
_ => unimplemented!(),
}
}
ExpressionType::Slice { elements } => {
@ -236,10 +239,95 @@ fn get_expression_unknowns<'a>(defined: &mut Vec<&'a str>, unknowns: &mut Vec<&'
get_expression_unknowns(defined, unknowns, &body.node);
get_expression_unknowns(defined, unknowns, &orelse.node);
}
_ => ()
_ => (),
};
}
pub fn get_pattern_match_unknowns<'a>(
defined: &mut Vec<&'a str>,
unknowns: &mut Vec<&'a str>,
expr: &'a ExpressionType,
) {
match expr {
ExpressionType::Identifier { name } => {
defined.push(&name.as_str());
}
ExpressionType::Tuple { elements } => {
for v in elements.iter() {
get_pattern_match_unknowns(defined, unknowns, &v.node);
}
}
_ => {
get_expression_unknowns(defined, unknowns, expr);
}
}
}
pub fn get_statement_unknowns<'a>(
defined: &mut Vec<&'a str>,
unknowns: &mut Vec<&'a str>,
stmts: &'a [Statement],
) {
for stmt in stmts.iter() {
match &stmt.node {
StatementType::Return { value } => {
if let Some(v) = value {
get_expression_unknowns(defined, unknowns, &v.node);
}
}
StatementType::Assign { targets, value } => {
get_expression_unknowns(defined, unknowns, &value.node);
for t in targets.iter() {
get_pattern_match_unknowns(defined, unknowns, &t.node);
}
}
StatementType::AugAssign { target, value, .. } => {
get_expression_unknowns(defined, unknowns, &target.node);
get_expression_unknowns(defined, unknowns, &value.node);
}
StatementType::AnnAssign { target, value, .. } => {
if let Some(v) = value {
get_expression_unknowns(defined, unknowns, &v.node);
}
get_pattern_match_unknowns(defined, unknowns, &target.node);
}
StatementType::Expression { expression } => {
get_expression_unknowns(defined, unknowns, &expression.node);
}
StatementType::If { test, body, orelse }
| StatementType::While { test, body, orelse } => {
get_expression_unknowns(defined, unknowns, &test.node);
get_statement_unknowns(defined, unknowns, body.as_slice());
if let Some(orelse) = orelse {
get_statement_unknowns(defined, unknowns, orelse.as_slice());
}
}
StatementType::For { is_async, target, body, orelse, iter } => {
if *is_async {
unimplemented!();
}
let mut scoped = defined.to_owned();
get_expression_unknowns(defined, unknowns, &iter.node);
get_expression_unknowns(defined, &mut scoped, &target.node);
get_statement_unknowns(&mut scoped, unknowns, body.as_slice());
if let Some(orelse) = orelse {
get_statement_unknowns(&mut scoped, unknowns, orelse.as_slice());
}
}
StatementType::With { is_async, items, body } => {
if *is_async {
unimplemented!();
}
let mut scoped = defined.to_owned();
for item in items.iter() {
}
}
_ => {}
}
}
}
pub fn resolve_signatures<'a>(ctx: &mut TopLevelContext<'a>, stmts: &'a [Statement]) {
for stmt in stmts.iter() {
match &stmt.node {