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Add support for expression statements in compiler passes
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@ -276,6 +276,7 @@ impl<'a> CodeGenerator<'a> {
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}
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}
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// TODO: Fix to allow zero or multiple outputs.
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fn visit_call(&mut self, input: &'a CallExpression) -> (String, String) {
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let mut call_instruction = match &input.external {
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Some(external) => format!(" call {external}.aleo/{} ", input.function),
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@ -18,8 +18,8 @@ use crate::CodeGenerator;
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use leo_ast::{
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AssignStatement, Block, ConditionalStatement, ConsoleFunction, ConsoleStatement, DecrementStatement,
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DefinitionStatement, Expression, FinalizeStatement, IncrementStatement, IterationStatement, Mode, Output,
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ReturnStatement, Statement,
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DefinitionStatement, Expression, ExpressionStatement, FinalizeStatement, IncrementStatement, IterationStatement,
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Mode, Output, ReturnStatement, Statement,
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};
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use itertools::Itertools;
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@ -34,6 +34,7 @@ impl<'a> CodeGenerator<'a> {
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Statement::Console(stmt) => self.visit_console(stmt),
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Statement::Decrement(stmt) => self.visit_decrement(stmt),
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Statement::Definition(stmt) => self.visit_definition(stmt),
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Statement::Expression(stmt) => self.visit_expression_statement(stmt),
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Statement::Finalize(stmt) => self.visit_finalize(stmt),
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Statement::Increment(stmt) => self.visit_increment(stmt),
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Statement::Iteration(stmt) => self.visit_iteration(stmt),
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@ -110,6 +111,13 @@ impl<'a> CodeGenerator<'a> {
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unreachable!("DefinitionStatement's should not exist in SSA form.")
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}
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fn visit_expression_statement(&mut self, input: &'a ExpressionStatement) -> String {
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match input.expression {
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Expression::Call(_) => self.visit_expression(&input.expression).1,
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_ => unreachable!("ExpressionStatement's can only contain CallExpression's."),
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}
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}
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fn visit_increment(&mut self, input: &'a IncrementStatement) -> String {
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let (index, mut instructions) = self.visit_expression(&input.index);
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let (amount, amount_instructions) = self.visit_expression(&input.amount);
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@ -18,8 +18,8 @@ use crate::{RenameTable, StaticSingleAssigner};
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use leo_ast::{
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AssignStatement, Block, ConditionalStatement, ConsoleFunction, ConsoleStatement, DecrementStatement,
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DefinitionStatement, Expression, ExpressionConsumer, FinalizeStatement, Identifier, IncrementStatement,
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IterationStatement, ReturnStatement, Statement, StatementConsumer, TernaryExpression,
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DefinitionStatement, Expression, ExpressionConsumer, ExpressionStatement, FinalizeStatement, Identifier,
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IncrementStatement, IterationStatement, ReturnStatement, Statement, StatementConsumer, TernaryExpression,
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};
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use leo_span::Symbol;
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@ -234,6 +234,20 @@ impl StatementConsumer for StaticSingleAssigner<'_> {
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statements
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}
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/// Consumes the expressions associated with `ExpressionStatement`, returning the simplified `ExpressionStatement`.
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fn consume_expression_statement(&mut self, input: ExpressionStatement) -> Self::Output {
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// Process the expression associated with the `ExpressionStatement`.
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let (expression, mut statements) = self.consume_expression(input.expression);
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// Add the `ExpressionStatement` to the list of produced statements.
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statements.push(Statement::Expression(ExpressionStatement {
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expression,
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span: input.span,
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}));
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statements
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}
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/// Consumes the expressions associated with the `FinalizeStatement`, returning the simplified `FinalizeStatement`.
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fn consume_finalize(&mut self, input: FinalizeStatement) -> Self::Output {
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let mut statements = Vec::new();
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@ -34,6 +34,7 @@ impl<'a> StatementVisitor<'a> for TypeChecker<'a> {
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Statement::Console(stmt) => self.visit_console(stmt),
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Statement::Decrement(stmt) => self.visit_decrement(stmt),
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Statement::Definition(stmt) => self.visit_definition(stmt),
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Statement::Expression(stmt) => self.visit_expression_statement(stmt),
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Statement::Finalize(stmt) => self.visit_finalize(stmt),
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Statement::Increment(stmt) => self.visit_increment(stmt),
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Statement::Iteration(stmt) => self.visit_iteration(stmt),
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@ -224,6 +225,19 @@ impl<'a> StatementVisitor<'a> for TypeChecker<'a> {
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}
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}
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fn visit_expression_statement(&mut self, input: &'a ExpressionStatement) {
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// Expression statements can only be function calls.
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if !matches!(input.expression, Expression::Call(_)) {
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self.emit_err(TypeCheckerError::expression_statement_must_be_function_call(
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input.span(),
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));
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} else {
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// Check the expression.
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// TODO: Should the output type be restricted to unit types?
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self.visit_expression(&input.expression, &None);
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}
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}
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fn visit_finalize(&mut self, input: &'a FinalizeStatement) {
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if self.is_finalize {
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self.emit_err(TypeCheckerError::finalize_in_finalize(input.span()));
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@ -512,4 +512,11 @@ create_messages!(
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msg: format!("A finalize statement cannot contain tuple expressions."),
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help: None,
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}
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@formatted
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expression_statement_must_be_function_call {
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args: (),
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msg: format!("An expression statement must be a function call."),
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help: None,
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}
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);
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