Compare commits
1 Commits
achalmers/
...
achalmers/
Author | SHA1 | Date | |
---|---|---|---|
7711bf768c |
@ -918,13 +918,55 @@ impl Node<MemberExpression> {
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impl Node<BinaryExpression> {
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#[async_recursion]
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pub async fn get_result(&self, exec_state: &mut ExecState, ctx: &ExecutorContext) -> Result<KclValue, KclError> {
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let left_value = self.left.get_result(exec_state, ctx).await?;
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let right_value = self.right.get_result(exec_state, ctx).await?;
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let mut meta = left_value.metadata();
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meta.extend(right_value.metadata());
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let mut partial = self.right.get_result(exec_state, ctx).await?;
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let mut next = &self.left;
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let source_range = self.into();
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// Don't recurse through a big chain of binary operations, iterate instead.
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while let BinaryPart::BinaryExpression(next_binary_expr) = next {
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let metadata = partial.metadata();
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partial = do_binary_op(
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partial,
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next_binary_expr.right.get_result(exec_state, ctx).await?,
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next_binary_expr.operator,
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metadata,
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source_range,
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exec_state,
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ctx,
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)
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.await?;
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next = &next_binary_expr.left;
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}
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let next_value = next.get_result(exec_state, ctx).await?;
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let mut meta = partial.metadata();
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meta.extend(next_value.metadata());
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let value = do_binary_op(partial, next_value, self.operator, meta, self.into(), exec_state, ctx).await?;
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Ok(value)
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}
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}
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fn warn_on_unknown(source_range: SourceRange, ty: &NumericType, verb: &str, exec_state: &mut ExecState) {
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if *CHECK_NUMERIC_TYPES && ty == &NumericType::Unknown {
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// TODO suggest how to fix this
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exec_state.warn(CompilationError::err(
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source_range,
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format!("{} numbers which have unknown or incompatible units.", verb),
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));
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}
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}
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async fn do_binary_op(
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left_value: KclValue,
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right_value: KclValue,
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operator: BinaryOperator,
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meta: Vec<Metadata>,
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source_range: SourceRange,
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exec_state: &mut ExecState,
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ctx: &ExecutorContext,
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) -> Result<KclValue, KclError> {
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// First check if we are doing string concatenation.
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if self.operator == BinaryOperator::Add {
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if operator == BinaryOperator::Add {
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if let (KclValue::String { value: left, meta: _ }, KclValue::String { value: right, meta: _ }) =
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(&left_value, &right_value)
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{
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@ -936,26 +978,24 @@ impl Node<BinaryExpression> {
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}
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// Then check if we have solids.
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if self.operator == BinaryOperator::Add || self.operator == BinaryOperator::Or {
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if operator == BinaryOperator::Add || operator == BinaryOperator::Or {
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if let (KclValue::Solid { value: left }, KclValue::Solid { value: right }) = (&left_value, &right_value) {
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let args = crate::std::Args::new(Default::default(), self.into(), ctx.clone(), None);
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let result =
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crate::std::csg::inner_union(vec![*left.clone(), *right.clone()], exec_state, args).await?;
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let args = crate::std::Args::new(Default::default(), source_range, ctx.clone(), None);
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let result = crate::std::csg::inner_union(vec![*left.clone(), *right.clone()], exec_state, args).await?;
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return Ok(result.into());
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}
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} else if self.operator == BinaryOperator::Sub {
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} else if operator == BinaryOperator::Sub {
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// Check if we have solids.
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if let (KclValue::Solid { value: left }, KclValue::Solid { value: right }) = (&left_value, &right_value) {
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let args = crate::std::Args::new(Default::default(), self.into(), ctx.clone(), None);
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let args = crate::std::Args::new(Default::default(), source_range, ctx.clone(), None);
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let result =
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crate::std::csg::inner_subtract(vec![*left.clone()], vec![*right.clone()], exec_state, args)
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.await?;
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crate::std::csg::inner_subtract(vec![*left.clone()], vec![*right.clone()], exec_state, args).await?;
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return Ok(result.into());
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}
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} else if self.operator == BinaryOperator::And {
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} else if operator == BinaryOperator::And {
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// Check if we have solids.
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if let (KclValue::Solid { value: left }, KclValue::Solid { value: right }) = (&left_value, &right_value) {
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let args = crate::std::Args::new(Default::default(), self.into(), ctx.clone(), None);
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let args = crate::std::Args::new(Default::default(), source_range, ctx.clone(), None);
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let result =
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crate::std::csg::inner_intersect(vec![*left.clone(), *right.clone()], exec_state, args).await?;
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return Ok(result.into());
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@ -963,7 +1003,7 @@ impl Node<BinaryExpression> {
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}
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// Check if we are doing logical operations on booleans.
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if self.operator == BinaryOperator::Or || self.operator == BinaryOperator::And {
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if operator == BinaryOperator::Or || operator == BinaryOperator::And {
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let KclValue::Bool {
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value: left_value,
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meta: _,
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@ -974,7 +1014,7 @@ impl Node<BinaryExpression> {
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"Cannot apply logical operator to non-boolean value: {}",
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left_value.human_friendly_type()
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),
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source_ranges: vec![self.left.clone().into()],
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source_ranges: left_value.into(),
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}));
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};
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let KclValue::Bool {
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@ -987,10 +1027,10 @@ impl Node<BinaryExpression> {
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"Cannot apply logical operator to non-boolean value: {}",
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right_value.human_friendly_type()
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),
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source_ranges: vec![self.right.clone().into()],
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source_ranges: right_value.into(),
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}));
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};
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let raw_value = match self.operator {
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let raw_value = match operator {
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BinaryOperator::Or => left_value || right_value,
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BinaryOperator::And => left_value && right_value,
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_ => unreachable!(),
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@ -998,33 +1038,33 @@ impl Node<BinaryExpression> {
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return Ok(KclValue::Bool { value: raw_value, meta });
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}
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let left = number_as_f64(&left_value, self.left.clone().into())?;
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let right = number_as_f64(&right_value, self.right.clone().into())?;
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let left = number_as_f64(&left_value, (&left_value).into())?;
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let right = number_as_f64(&right_value, (&left_value).into())?;
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let value = match self.operator {
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let value = match operator {
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BinaryOperator::Add => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Adding", exec_state);
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warn_on_unknown(source_range, &ty, "Adding", exec_state);
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KclValue::Number { value: l + r, meta, ty }
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}
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BinaryOperator::Sub => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Subtracting", exec_state);
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warn_on_unknown(source_range, &ty, "Subtracting", exec_state);
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KclValue::Number { value: l - r, meta, ty }
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}
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BinaryOperator::Mul => {
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let (l, r, ty) = NumericType::combine_mul(left, right);
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self.warn_on_unknown(&ty, "Multiplying", exec_state);
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warn_on_unknown(source_range, &ty, "Multiplying", exec_state);
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KclValue::Number { value: l * r, meta, ty }
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}
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BinaryOperator::Div => {
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let (l, r, ty) = NumericType::combine_div(left, right);
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self.warn_on_unknown(&ty, "Dividing", exec_state);
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warn_on_unknown(source_range, &ty, "Dividing", exec_state);
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KclValue::Number { value: l / r, meta, ty }
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}
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BinaryOperator::Mod => {
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let (l, r, ty) = NumericType::combine_div(left, right);
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self.warn_on_unknown(&ty, "Modulo of", exec_state);
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warn_on_unknown(source_range, &ty, "Modulo of", exec_state);
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KclValue::Number { value: l % r, meta, ty }
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}
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BinaryOperator::Pow => KclValue::Number {
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@ -1034,49 +1074,37 @@ impl Node<BinaryExpression> {
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},
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BinaryOperator::Neq => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l != r, meta }
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}
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BinaryOperator::Gt => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l > r, meta }
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}
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BinaryOperator::Gte => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l >= r, meta }
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}
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BinaryOperator::Lt => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l < r, meta }
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}
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BinaryOperator::Lte => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l <= r, meta }
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}
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BinaryOperator::Eq => {
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let (l, r, ty) = NumericType::combine_eq(left, right);
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self.warn_on_unknown(&ty, "Comparing", exec_state);
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warn_on_unknown(source_range, &ty, "Comparing", exec_state);
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KclValue::Bool { value: l == r, meta }
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}
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BinaryOperator::And | BinaryOperator::Or => unreachable!(),
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};
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Ok(value)
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}
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fn warn_on_unknown(&self, ty: &NumericType, verb: &str, exec_state: &mut ExecState) {
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if *CHECK_NUMERIC_TYPES && ty == &NumericType::Unknown {
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// TODO suggest how to fix this
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exec_state.warn(CompilationError::err(
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self.as_source_range(),
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format!("{} numbers which have unknown or incompatible units.", verb),
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));
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}
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}
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}
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impl Node<UnaryExpression> {
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|
@ -2832,7 +2832,7 @@ impl BinaryExpression {
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}
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}
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#[derive(Debug, Clone, Deserialize, Serialize, PartialEq, ts_rs::TS, JsonSchema, FromStr, Display)]
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#[derive(Debug, Clone, Copy, Deserialize, Serialize, PartialEq, Eq, ts_rs::TS, JsonSchema, FromStr, Display)]
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#[ts(export)]
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#[serde(rename_all = "snake_case")]
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#[display(style = "snake_case")]
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|
File diff suppressed because it is too large
Load Diff
@ -2,6 +2,6 @@ fn f(i) {
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return i * 2
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}
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x = f(0) + f(1) + f(2) + f(3) + f(4) + f(5) + f(6) + f(7) + f(8) + f(9) + f(10) + f(11) + f(12) + f(13) + f(14) + f(15) + f(16) + f(17) + f(18) + f(19) + f(20) + f(21) + f(22) + f(23) + f(24) + f(25) + f(26) + f(27) + f(28) + f(29) + f(30) + f(31) + f(32) + f(33) + f(34) + f(35) + f(36) + f(37) + f(38) + f(39) + f(40) + f(41) + f(42) + f(43) + f(44) + f(45) + f(46) + f(47) + f(48) + f(49) + f(50) + f(51) + f(52) + f(53) + f(54) + f(55) + f(56) + f(57) + f(58) + f(59) + f(60) + f(61) + f(62) + f(63) + f(64) + f(65) + f(66) + f(67) + f(68) + f(69) + f(70)
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x = f(0) + f(1) + f(2) + f(3) + f(4) + f(5) + f(6) + f(7) + f(8) + f(9) + f(10) + f(11) + f(12) + f(13) + f(14) + f(15) + f(16) + f(17) + f(18) + f(19) + f(20) + f(21) + f(22) + f(23) + f(24) + f(25) + f(26) + f(27) + f(28) + f(29) + f(30) + f(31) + f(32) + f(33) + f(34) + f(35) + f(36) + f(37) + f(38) + f(39) + f(40) + f(41) + f(42) + f(43) + f(44) + f(45) + f(46) + f(47) + f(48) + f(49) + f(50) + f(51) + f(52) + f(53) + f(54) + f(55) + f(56) + f(57) + f(58) + f(59) + f(60) + f(61) + f(62) + f(63) + f(64) + f(65) + f(66) + f(67) + f(68) + f(69) + f(70) + f(71) + f(72) + f(73) + f(74) + f(75) + f(76) + f(77) + f(78) + f(79) + f(80) + f(81) + f(82) + f(83) + f(84) + f(85) + f(86) + f(87) + f(88) + f(89) + f(90) + f(91) + f(92) + f(93) + f(94) + f(95) + f(96) + f(97) + f(98) + f(99) + f(100)
|
||||
|
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assertEqual(x, 4970, 0.1, "Big sum")
|
||||
assertEqual(x, 10100, 0.1, "Big sum")
|
||||
|
@ -1278,6 +1278,546 @@ description: Operations executed add_lots.kcl
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
"functionSourceRange": [
|
||||
4,
|
||||
26,
|
||||
0
|
||||
],
|
||||
"unlabeledArg": null,
|
||||
"labeledArgs": {}
|
||||
},
|
||||
"sourceRange": []
|
||||
},
|
||||
{
|
||||
"type": "GroupEnd"
|
||||
},
|
||||
{
|
||||
"type": "GroupBegin",
|
||||
"group": {
|
||||
"type": "FunctionCall",
|
||||
"name": "f",
|
||||
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"type": "GroupEnd"
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{
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"type": "GroupBegin",
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"group": {
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"type": "GroupEnd"
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}
|
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|
@ -8,7 +8,7 @@ description: Variables in memory after executing add_lots.kcl
|
||||
},
|
||||
"x": {
|
||||
"type": "Number",
|
||||
"value": 4970.0,
|
||||
"value": 10100.0,
|
||||
"ty": {
|
||||
"type": "Default",
|
||||
"len": {
|
||||
|
@ -6,6 +6,6 @@ fn f(i) {
|
||||
return i * 2
|
||||
}
|
||||
|
||||
x = f(0) + f(1) + f(2) + f(3) + f(4) + f(5) + f(6) + f(7) + f(8) + f(9) + f(10) + f(11) + f(12) + f(13) + f(14) + f(15) + f(16) + f(17) + f(18) + f(19) + f(20) + f(21) + f(22) + f(23) + f(24) + f(25) + f(26) + f(27) + f(28) + f(29) + f(30) + f(31) + f(32) + f(33) + f(34) + f(35) + f(36) + f(37) + f(38) + f(39) + f(40) + f(41) + f(42) + f(43) + f(44) + f(45) + f(46) + f(47) + f(48) + f(49) + f(50) + f(51) + f(52) + f(53) + f(54) + f(55) + f(56) + f(57) + f(58) + f(59) + f(60) + f(61) + f(62) + f(63) + f(64) + f(65) + f(66) + f(67) + f(68) + f(69) + f(70)
|
||||
x = f(0) + f(1) + f(2) + f(3) + f(4) + f(5) + f(6) + f(7) + f(8) + f(9) + f(10) + f(11) + f(12) + f(13) + f(14) + f(15) + f(16) + f(17) + f(18) + f(19) + f(20) + f(21) + f(22) + f(23) + f(24) + f(25) + f(26) + f(27) + f(28) + f(29) + f(30) + f(31) + f(32) + f(33) + f(34) + f(35) + f(36) + f(37) + f(38) + f(39) + f(40) + f(41) + f(42) + f(43) + f(44) + f(45) + f(46) + f(47) + f(48) + f(49) + f(50) + f(51) + f(52) + f(53) + f(54) + f(55) + f(56) + f(57) + f(58) + f(59) + f(60) + f(61) + f(62) + f(63) + f(64) + f(65) + f(66) + f(67) + f(68) + f(69) + f(70) + f(71) + f(72) + f(73) + f(74) + f(75) + f(76) + f(77) + f(78) + f(79) + f(80) + f(81) + f(82) + f(83) + f(84) + f(85) + f(86) + f(87) + f(88) + f(89) + f(90) + f(91) + f(92) + f(93) + f(94) + f(95) + f(96) + f(97) + f(98) + f(99) + f(100)
|
||||
|
||||
assertEqual(x, 4970, 0.1, "Big sum")
|
||||
assertEqual(x, 10100, 0.1, "Big sum")
|
||||
|
Reference in New Issue
Block a user