Merge branch 'master' into plugins_dev
This commit is contained in:
commit
3042e3d9db
@ -1,6 +1,6 @@
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[package]
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[package]
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name = "rhai"
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name = "rhai"
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version = "0.19.0"
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version = "0.18.3"
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edition = "2018"
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edition = "2018"
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authors = ["Jonathan Turner", "Lukáš Hozda", "Stephen Chung"]
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authors = ["Jonathan Turner", "Lukáš Hozda", "Stephen Chung"]
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description = "Embedded scripting for Rust"
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description = "Embedded scripting for Rust"
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12
RELEASES.md
12
RELEASES.md
@ -1,7 +1,17 @@
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Rhai Release Notes
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Rhai Release Notes
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==================
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==================
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Version 0.19.0
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Version 0.18.3
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==============
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Bug fixes
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---------
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* `Engine::compile_expression`, `Engine::eval_expression` etc. no longer parse anonymous functions and closures.
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* Imported modules now work inside closures.
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Version 0.18.2
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==============
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==============
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New features
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New features
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@ -11,9 +11,11 @@ In these cases, use the `Engine::compile_expression` and `Engine::eval_expressio
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let result = engine.eval_expression::<i64>("2 + (10 + 10) * 2")?;
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let result = engine.eval_expression::<i64>("2 + (10 + 10) * 2")?;
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```
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```
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When evaluating _expressions_, no full-blown statement (e.g. `if`, `while`, `for`) - not even variable assignment -
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When evaluating _expressions_, no full-blown statement (e.g. `if`, `while`, `for`, `fn`) - not even variable assignment -
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is supported and will be considered parse errors when encountered.
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is supported and will be considered parse errors when encountered.
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[Closures] and [anonymous functions] are also not supported because in the background they compile to functions.
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```rust
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```rust
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// The following are all syntax errors because the script is not an expression.
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// The following are all syntax errors because the script is not an expression.
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@ -1645,11 +1645,22 @@ fn parse_primary(
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}
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}
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Expr::Variable(Box::new(((s, settings.pos), None, 0, None)))
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Expr::Variable(Box::new(((s, settings.pos), None, 0, None)))
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}
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}
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// Module qualification
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#[cfg(not(feature = "no_module"))]
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Token::Identifier(s) if *next_token == Token::DoubleColon => {
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// Once the identifier consumed we must enable next variables capturing
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#[cfg(not(feature = "no_closure"))]
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{
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state.allow_capture = true;
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}
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Expr::Variable(Box::new(((s, settings.pos), None, 0, None)))
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}
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// Normal variable access
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// Normal variable access
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Token::Identifier(s) => {
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Token::Identifier(s) => {
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let index = state.access_var(&s, settings.pos);
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let index = state.access_var(&s, settings.pos);
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Expr::Variable(Box::new(((s, settings.pos), None, 0, index)))
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Expr::Variable(Box::new(((s, settings.pos), None, 0, index)))
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}
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}
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// Function call is allowed to have reserved keyword
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// Function call is allowed to have reserved keyword
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Token::Reserved(s) if *next_token == Token::LeftParen || *next_token == Token::Bang => {
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Token::Reserved(s) if *next_token == Token::LeftParen || *next_token == Token::Bang => {
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if is_keyword_function(&s) {
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if is_keyword_function(&s) {
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@ -1658,6 +1669,7 @@ fn parse_primary(
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return Err(PERR::Reserved(s).into_err(settings.pos));
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return Err(PERR::Reserved(s).into_err(settings.pos));
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}
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}
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}
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}
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// Access to `this` as a variable is OK
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// Access to `this` as a variable is OK
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Token::Reserved(s) if s == KEYWORD_THIS && *next_token != Token::LeftParen => {
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Token::Reserved(s) if s == KEYWORD_THIS && *next_token != Token::LeftParen => {
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if !settings.is_function_scope {
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if !settings.is_function_scope {
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@ -1669,9 +1681,11 @@ fn parse_primary(
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Expr::Variable(Box::new(((s, settings.pos), None, 0, None)))
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Expr::Variable(Box::new(((s, settings.pos), None, 0, None)))
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}
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}
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}
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}
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Token::Reserved(s) if is_valid_identifier(s.chars()) => {
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Token::Reserved(s) if is_valid_identifier(s.chars()) => {
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return Err(PERR::Reserved(s).into_err(settings.pos));
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return Err(PERR::Reserved(s).into_err(settings.pos));
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}
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}
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Token::LeftParen => parse_paren_expr(input, state, lib, settings.level_up())?,
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Token::LeftParen => parse_paren_expr(input, state, lib, settings.level_up())?,
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#[cfg(not(feature = "no_index"))]
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#[cfg(not(feature = "no_index"))]
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Token::LeftBracket => parse_array_literal(input, state, lib, settings.level_up())?,
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Token::LeftBracket => parse_array_literal(input, state, lib, settings.level_up())?,
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@ -1680,6 +1694,7 @@ fn parse_primary(
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Token::True => Expr::True(settings.pos),
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Token::True => Expr::True(settings.pos),
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Token::False => Expr::False(settings.pos),
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Token::False => Expr::False(settings.pos),
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Token::LexError(err) => return Err(err.into_err(settings.pos)),
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Token::LexError(err) => return Err(err.into_err(settings.pos)),
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_ => {
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_ => {
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return Err(
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return Err(
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PERR::BadInput(format!("Unexpected '{}'", token.syntax())).into_err(settings.pos)
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PERR::BadInput(format!("Unexpected '{}'", token.syntax())).into_err(settings.pos)
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@ -1862,7 +1877,7 @@ fn parse_unary(
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}
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}
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// | ...
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// | ...
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#[cfg(not(feature = "no_function"))]
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#[cfg(not(feature = "no_function"))]
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Token::Pipe | Token::Or => {
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Token::Pipe | Token::Or if settings.allow_anonymous_fn => {
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let mut new_state = ParseState::new(
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let mut new_state = ParseState::new(
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state.engine,
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state.engine,
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#[cfg(not(feature = "unchecked"))]
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#[cfg(not(feature = "unchecked"))]
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@ -3353,6 +3368,8 @@ impl Engine {
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};
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};
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let expr = parse_expr(input, &mut state, &mut functions, settings)?;
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let expr = parse_expr(input, &mut state, &mut functions, settings)?;
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assert!(functions.is_empty());
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match input.peek().unwrap() {
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match input.peek().unwrap() {
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(Token::EOF, _) => (),
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(Token::EOF, _) => (),
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// Return error if the expression doesn't end
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// Return error if the expression doesn't end
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42
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42
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);
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);
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assert_eq!(
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engine.eval::<INT>(
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r#"
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fn foo(x, y) { this += x + y; }
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let x = 40;
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let v = 1;
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x.bar(Fn("foo").curry(v), 1);
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x
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"#
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)?,
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42
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);
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assert!(matches!(
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assert!(matches!(
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*engine.eval::<INT>(
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*engine.eval::<INT>(
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r#"
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r#"
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#![cfg(not(feature = "no_function"))]
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#![cfg(not(feature = "no_function"))]
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use rhai::{Dynamic, Engine, EvalAltResult, FnPtr, Module, RegisterFn, INT};
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use rhai::{
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Dynamic, Engine, EvalAltResult, FnPtr, Map, Module, ParseErrorType, RegisterFn, Scope, INT,
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};
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use std::any::TypeId;
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use std::any::TypeId;
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use std::cell::RefCell;
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use std::mem::take;
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use std::mem::take;
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use std::rc::Rc;
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#[test]
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#[test]
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fn test_fn_ptr_curry_call() -> Result<(), Box<EvalAltResult>> {
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fn test_fn_ptr_curry_call() -> Result<(), Box<EvalAltResult>> {
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@ -39,6 +43,14 @@ fn test_fn_ptr_curry_call() -> Result<(), Box<EvalAltResult>> {
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fn test_closures() -> Result<(), Box<EvalAltResult>> {
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fn test_closures() -> Result<(), Box<EvalAltResult>> {
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let mut engine = Engine::new();
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let mut engine = Engine::new();
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assert!(matches!(
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*engine
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.compile_expression("let f = |x| {};")
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.expect_err("should error")
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.0,
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ParseErrorType::BadInput(_)
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));
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assert_eq!(
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assert_eq!(
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engine.eval::<INT>(
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engine.eval::<INT>(
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r#"
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r#"
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@ -181,3 +193,59 @@ fn test_closures_data_race() -> Result<(), Box<EvalAltResult>> {
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Ok(())
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Ok(())
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}
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}
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type MyType = Rc<RefCell<INT>>;
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#[test]
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#[cfg(not(feature = "no_object"))]
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#[cfg(not(feature = "sync"))]
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fn test_closure_shared_obj() -> Result<(), Box<EvalAltResult>> {
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let mut engine = Engine::new();
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// Register API on MyType
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engine
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.register_type_with_name::<MyType>("MyType")
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.register_get_set(
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"data",
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|p: &mut MyType| *p.borrow(),
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|p: &mut MyType, value: INT| *p.borrow_mut() = value,
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)
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.register_fn("+=", |p1: &mut MyType, p2: MyType| {
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*p1.borrow_mut() += *p2.borrow()
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})
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.register_fn("-=", |p1: &mut MyType, p2: MyType| {
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*p1.borrow_mut() -= *p2.borrow()
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});
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let engine = engine; // Make engine immutable
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let code = r#"
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#{
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name: "A",
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description: "B",
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cost: 1,
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health_added: 0,
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action: |p1, p2| { p1 += p2 }
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}
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"#;
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let ast = engine.compile(code)?;
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let res = engine.eval_ast::<Map>(&ast)?;
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// Make closure
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let f = move |p1: MyType, p2: MyType| -> Result<(), Box<EvalAltResult>> {
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let action_ptr = res["action"].clone().cast::<FnPtr>();
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let name = action_ptr.fn_name();
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engine.call_fn::<_, ()>(&mut Scope::new(), &ast, name, (p1, p2))
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};
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// Test closure
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let p1 = Rc::new(RefCell::new(41));
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let p2 = Rc::new(RefCell::new(1));
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f(p1.clone(), p2.clone())?;
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assert_eq!(*p1.borrow(), 42);
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Ok(())
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}
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