Fix function call optimizations.
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@ -698,7 +698,7 @@ impl Engine {
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}
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// If it is a 2-operand operator, see if it is built in
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if native_only && args.len() == 2 && args[0].type_id() == args[1].type_id() {
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if !is_ref && native_only && args.len() == 2 && args[0].type_id() == args[1].type_id() {
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match run_builtin_binary_op(fn_name, args[0], args[1])? {
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Some(v) => return Ok((v, false)),
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None => (),
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@ -1327,7 +1327,7 @@ impl Engine {
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) -> Result<Dynamic, Box<EvalAltResult>> {
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self.inc_operations(state, rhs.position())?;
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let mut lhs_value = self.eval_expr(scope, state, lhs, level)?;
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let lhs_value = self.eval_expr(scope, state, lhs, level)?;
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let rhs_value = self.eval_expr(scope, state, rhs, level)?;
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match rhs_value {
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@ -1338,17 +1338,17 @@ impl Engine {
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// Call the `==` operator to compare each value
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for value in rhs_value.iter_mut() {
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let args = &mut [&mut lhs_value, value];
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let args = &mut [&mut lhs_value.clone(), value];
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let def_value = Some(&def_value);
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let pos = rhs.position();
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// Qualifiers (none) + function name + argument `TypeId`'s.
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// Qualifiers (none) + function name + number of arguments + argument `TypeId`'s.
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let hash_fn =
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calc_fn_hash(empty(), op, args.len(), args.iter().map(|a| a.type_id()));
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let hashes = (hash_fn, 0);
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let (r, _) = self
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.call_fn_raw(None, state, op, hashes, args, true, def_value, pos, level)?;
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.call_fn_raw(None, state, op, hashes, args, false, def_value, pos, level)?;
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if r.as_bool().unwrap_or(false) {
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return Ok(true.into());
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}
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@ -110,18 +110,18 @@ impl<'a> State<'a> {
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}
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/// Call a registered function
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fn call_fn(
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fn call_fn_with_constant_arguments(
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state: &State,
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fn_name: &str,
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args: &mut FnCallArgs,
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arg_values: &mut [Dynamic],
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pos: Position,
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) -> Result<Option<Dynamic>, Box<EvalAltResult>> {
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// Search built-in's and external functions
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let hash_fn = calc_fn_hash(
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empty(),
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fn_name,
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args.len(),
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args.iter().map(|a| a.type_id()),
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arg_values.len(),
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arg_values.iter().map(|a| a.type_id()),
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);
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state
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@ -131,8 +131,8 @@ fn call_fn(
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&mut EngineState::new(&Default::default()),
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fn_name,
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(hash_fn, 0),
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args,
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true,
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arg_values.iter_mut().collect::<StaticVec<_>>().as_mut(),
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false,
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None,
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pos,
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0,
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@ -556,24 +556,24 @@ fn optimize_expr<'a>(expr: Expr, state: &mut State<'a>) -> Expr {
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let ((name, native_only, pos), _, _, args, def_value) = x.as_mut();
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// First search in script-defined functions (can override built-in)
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if !*native_only && state.fn_lib.iter().find(|(id, len)| *id == name && *len == args.len()).is_some() {
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// Cater for both normal function call style and method call style (one additional arguments)
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if !*native_only && state.fn_lib.iter().find(|(id, len)| *id == name && (*len == args.len() || *len == args.len() + 1)).is_some() {
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// A script-defined function overrides the built-in function - do not make the call
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x.3 = x.3.into_iter().map(|a| optimize_expr(a, state)).collect();
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return Expr::FnCall(x);
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}
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let mut arg_values: StaticVec<_> = args.iter().map(Expr::get_constant_value).collect();
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let mut call_args: StaticVec<_> = arg_values.iter_mut().collect();
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// Save the typename of the first argument if it is `type_of()`
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// This is to avoid `call_args` being passed into the closure
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let arg_for_type_of = if name == KEYWORD_TYPE_OF && call_args.len() == 1 {
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state.engine.map_type_name(call_args[0].type_name())
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let arg_for_type_of = if name == KEYWORD_TYPE_OF && arg_values.len() == 1 {
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state.engine.map_type_name(arg_values[0].type_name())
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} else {
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""
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};
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call_fn(&state, name, call_args.as_mut(), *pos).ok()
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call_fn_with_constant_arguments(&state, name, arg_values.as_mut(), *pos).ok()
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.and_then(|result|
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result.or_else(|| {
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if !arg_for_type_of.is_empty() {
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