mirror of
https://github.com/zaphar/ucg.git
synced 2025-07-22 18:19:54 -04:00
750 lines
20 KiB
Rust
750 lines
20 KiB
Rust
// Copyright 2017 Jeremy Wall <jeremy@marzhillstudios.com>
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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//! The definitions of the ucg AST and Tokens.
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use std;
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use std::borrow::Borrow;
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use std::cmp::Eq;
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use std::cmp::Ordering;
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use std::cmp::PartialEq;
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use std::cmp::PartialOrd;
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use std::convert::Into;
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use std::fmt;
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use std::hash::Hash;
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use std::hash::Hasher;
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use std::path::PathBuf;
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use std::rc::Rc;
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use abortable_parser;
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use crate::build::scope::Scope;
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use crate::build::Val;
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pub mod walk;
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macro_rules! enum_type_equality {
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( $slf:ident, $r:expr, $( $l:pat ),* ) => {
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match $slf {
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$(
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$l => {
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if let $l = $r {
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true
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} else {
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false
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}
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}
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)*
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}
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}
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}
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/// Represents a line and a column position in UCG code.
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///
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/// It is used for generating error messages mostly. Most all
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/// parts of the UCG AST have a positioned associated with them.
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#[derive(Debug, PartialEq, Eq, Clone, PartialOrd, Ord, Hash)]
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pub struct Position {
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pub file: Option<PathBuf>,
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pub line: usize,
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pub column: usize,
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pub offset: usize,
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}
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impl Position {
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/// Construct a new Position.
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pub fn new(line: usize, column: usize, offset: usize) -> Self {
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Position {
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file: None,
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line: line,
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column: column,
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offset: offset,
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}
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}
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pub fn with_file<P: Into<PathBuf>>(mut self, file: P) -> Self {
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self.file = Some(file.into());
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self
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}
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}
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impl<'a> From<&'a Position> for Position {
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fn from(source: &'a Position) -> Self {
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source.clone()
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}
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}
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/// Defines the types of tokens in UCG syntax.
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#[derive(Debug, PartialEq, Eq, Clone, PartialOrd, Ord, Hash)]
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pub enum TokenType {
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EMPTY,
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BOOLEAN,
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END,
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WS,
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COMMENT,
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QUOTED,
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PIPEQUOTE,
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DIGIT,
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BAREWORD,
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PUNCT,
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}
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/// Defines a Token representing a building block of UCG syntax.
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///
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/// Token's are passed to the parser stage to be parsed into an AST.
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#[derive(Debug, PartialEq, Eq, Clone, PartialOrd, Ord, Hash)]
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pub struct Token {
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pub typ: TokenType,
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pub fragment: String,
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pub pos: Position,
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}
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impl Token {
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/// Constructs a new Token with a type and line and column information.
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pub fn new<S: Into<String>, P: Into<Position>>(f: S, typ: TokenType, p: P) -> Self {
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Self::new_with_pos(f, typ, p.into())
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}
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// Constructs a new Token with a type and a Position.
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pub fn new_with_pos<S: Into<String>>(f: S, typ: TokenType, pos: Position) -> Self {
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Token {
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typ: typ,
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fragment: f.into(),
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pos: pos,
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}
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}
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}
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impl abortable_parser::Positioned for Token {
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fn line(&self) -> usize {
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self.pos.line
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}
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fn column(&self) -> usize {
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self.pos.column
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}
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}
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impl Borrow<str> for Token {
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fn borrow(&self) -> &str {
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&self.fragment
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}
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}
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/// Helper macro for making a Positioned Value.
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macro_rules! value_node {
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($v:expr, $p:expr) => {
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PositionedItem::new_with_pos($v, $p)
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};
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}
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/// Helper macro for making a Token.
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#[allow(unused_macros)]
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macro_rules! make_tok {
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(EOF => $i:expr) => {
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Token::new("", TokenType::END, &$i)
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};
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(WS => $i:expr) => {
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Token::new("", TokenType::WS, &$i)
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};
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(CMT => $e:expr, $i:expr) => {
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Token::new($e, TokenType::COMMENT, &$i)
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};
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(QUOT => $e:expr, $i:expr) => {
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Token::new($e, TokenType::QUOTED, &$i)
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};
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(PUNCT => $e:expr, $i:expr) => {
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Token::new($e, TokenType::PUNCT, &$i)
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};
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(DIGIT => $e:expr, $i:expr) => {
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Token::new($e, TokenType::DIGIT, &$i)
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};
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($e:expr, $i:expr) => {
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Token::new($e, TokenType::BAREWORD, &$i)
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};
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}
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/// Helper macro for making expressions.
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#[allow(unused_macros)]
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macro_rules! make_expr {
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($e:expr, $i:expr) => {
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Expression::Simple(Value::Symbol(PositionedItem::new_with_pos(
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$e.to_string(),
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$i,
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)))
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};
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($e:expr => int, $i:expr) => {
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Expression::Simple(Value::Int(PositionedItem::new_with_pos($e, $i)))
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};
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}
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/// An ordered list of Name = Value pairs.
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///
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/// This is usually used as the body of a tuple in the UCG AST.
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pub type FieldList = Vec<(Token, Expression)>; // Token is expected to be a symbol
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/// Represents a Value in the UCG parsed AST.
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#[derive(Debug, PartialEq, Clone)]
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pub enum Value {
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// Constant Values
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Empty(Position),
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Boolean(PositionedItem<bool>),
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Int(PositionedItem<i64>),
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Float(PositionedItem<f64>),
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Str(PositionedItem<String>),
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Symbol(PositionedItem<String>),
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// Complex Values
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Tuple(PositionedItem<FieldList>),
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List(ListDef),
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}
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impl Value {
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/// Returns the type name of the Value it is called on as a string.
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pub fn type_name(&self) -> String {
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match self {
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&Value::Empty(_) => "EmptyValue".to_string(),
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&Value::Boolean(_) => "Boolean".to_string(),
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&Value::Int(_) => "Integer".to_string(),
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&Value::Float(_) => "Float".to_string(),
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&Value::Str(_) => "String".to_string(),
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&Value::Symbol(_) => "Symbol".to_string(),
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&Value::Tuple(_) => "Tuple".to_string(),
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&Value::List(_) => "List".to_string(),
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}
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}
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fn fields_to_string(v: &FieldList) -> String {
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let mut buf = String::new();
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buf.push_str("{\n");
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for ref t in v.iter() {
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buf.push_str("\t");
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buf.push_str(&t.0.fragment);
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buf.push_str("\n");
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}
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buf.push_str("}");
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return buf;
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}
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fn elems_to_string(v: &Vec<Expression>) -> String {
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return format!("{}", v.len());
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}
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/// Returns a stringified version of the Value.
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pub fn to_string(&self) -> String {
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match self {
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&Value::Empty(_) => "EmptyValue".to_string(),
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&Value::Boolean(ref b) => format!("{}", b.val),
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&Value::Int(ref i) => format!("{}", i.val),
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&Value::Float(ref f) => format!("{}", f.val),
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&Value::Str(ref s) => format!("{}", s.val),
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&Value::Symbol(ref s) => format!("{}", s.val),
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&Value::Tuple(ref fs) => format!("{}", Self::fields_to_string(&fs.val)),
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&Value::List(ref def) => format!("[{}]", Self::elems_to_string(&def.elems)),
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}
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}
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/// Returns the position for a Value.
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pub fn pos(&self) -> &Position {
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match self {
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&Value::Empty(ref pos) => pos,
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&Value::Boolean(ref b) => &b.pos,
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&Value::Int(ref i) => &i.pos,
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&Value::Float(ref f) => &f.pos,
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&Value::Str(ref s) => &s.pos,
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&Value::Symbol(ref s) => &s.pos,
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&Value::Tuple(ref fs) => &fs.pos,
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&Value::List(ref def) => &def.pos,
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}
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}
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/// Returns true if called on a Value that is the same type as itself.
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pub fn type_equal(&self, target: &Self) -> bool {
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enum_type_equality!(
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self,
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target,
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&Value::Empty(_),
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&Value::Boolean(_),
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&Value::Int(_),
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&Value::Float(_),
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&Value::Str(_),
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&Value::Symbol(_),
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&Value::Tuple(_),
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&Value::List(_)
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)
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}
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}
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/// Represents an expansion of a Macro that is expected to already have been
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/// defined.
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#[derive(PartialEq, Debug, Clone)]
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pub struct CallDef {
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pub funcref: Value,
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pub arglist: Vec<Expression>,
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pub pos: Position,
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}
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/// Encodes a select expression in the UCG AST.
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#[derive(PartialEq, Debug, Clone)]
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pub struct SelectDef {
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pub val: Box<Expression>,
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pub default: Box<Expression>,
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pub tuple: FieldList,
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pub pos: Position,
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}
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/// Adds position information to any type `T`.
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#[derive(Debug, Clone)]
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pub struct PositionedItem<T> {
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pub pos: Position,
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pub val: T,
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}
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impl<T: std::fmt::Display> std::fmt::Display for PositionedItem<T> {
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fn fmt(&self, f: &mut std::fmt::Formatter) -> Result<(), std::fmt::Error> {
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write!(f, "{}", self.val)
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}
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}
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impl<T> PositionedItem<T> {
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/// Constructs a new Positioned<T> with a value, line, and column information.
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pub fn new<P: Into<Position>>(v: T, p: P) -> Self {
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Self::new_with_pos(v, p.into())
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}
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/// Constructs a new Positioned<T> with a value and a Position.
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pub fn new_with_pos(v: T, pos: Position) -> Self {
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PositionedItem { pos: pos, val: v }
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}
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}
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impl<T: PartialEq> PartialEq for PositionedItem<T> {
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fn eq(&self, other: &Self) -> bool {
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self.val == other.val
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}
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}
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impl<T: Eq> Eq for PositionedItem<T> {}
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impl<T: Ord> Ord for PositionedItem<T> {
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fn cmp(&self, other: &Self) -> Ordering {
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self.val.cmp(&other.val)
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}
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}
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impl<T: PartialOrd> PartialOrd for PositionedItem<T> {
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fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
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self.val.partial_cmp(&other.val)
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}
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}
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impl<T: Hash> Hash for PositionedItem<T> {
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fn hash<H: Hasher>(&self, state: &mut H) {
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self.val.hash(state);
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}
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}
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impl<'a> From<&'a Token> for PositionedItem<String> {
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fn from(t: &'a Token) -> PositionedItem<String> {
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PositionedItem {
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pos: t.pos.clone(),
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val: t.fragment.to_string(),
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}
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}
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}
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impl<'a> From<&'a PositionedItem<String>> for PositionedItem<String> {
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fn from(t: &PositionedItem<String>) -> PositionedItem<String> {
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PositionedItem {
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pos: t.pos.clone(),
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val: t.val.clone(),
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}
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}
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}
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/// Encodes a func expression in the UCG AST..
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///
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/// A func is a pure function over a tuple.
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#[derive(PartialEq, Debug, Clone)]
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pub struct FuncDef {
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pub scope: Option<Scope>,
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pub argdefs: Vec<PositionedItem<String>>,
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pub fields: Box<Expression>,
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pub pos: Position,
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}
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/// Specifies the types of binary operations supported in
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/// UCG expression.
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#[derive(Debug, PartialEq, Clone)]
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pub enum BinaryExprType {
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// Math
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Add,
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Sub,
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Mul,
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Div,
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Mod,
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// Boolean
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AND,
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OR,
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// Comparison
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Equal,
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GT,
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LT,
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NotEqual,
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GTEqual,
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LTEqual,
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REMatch,
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NotREMatch,
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IN,
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IS,
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// Selector operator
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DOT,
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}
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impl BinaryExprType {
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/// Returns the precedence level for the binary operator.
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///
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/// Higher values bind tighter than lower values.
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pub fn precedence_level(&self) -> u32 {
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match self {
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// Equality operators are least tightly bound
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BinaryExprType::Equal => 1,
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BinaryExprType::NotEqual => 1,
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BinaryExprType::GTEqual => 1,
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BinaryExprType::LTEqual => 1,
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BinaryExprType::GT => 1,
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BinaryExprType::LT => 1,
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BinaryExprType::REMatch => 1,
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BinaryExprType::NotREMatch => 1,
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BinaryExprType::IN => 2,
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BinaryExprType::IS => 2,
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// Sum operators are next least tightly bound
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BinaryExprType::Add => 3,
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BinaryExprType::Sub => 3,
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// Product operators are next tightly bound
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BinaryExprType::Mul => 4,
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BinaryExprType::Div => 4,
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BinaryExprType::Mod => 4,
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// Boolean operators bind tighter than math
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BinaryExprType::AND => 5,
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BinaryExprType::OR => 5,
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// Dot operators are most tightly bound.
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BinaryExprType::DOT => 6,
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}
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}
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}
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/// Represents an expression with a left and a right side.
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#[derive(Debug, PartialEq, Clone)]
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pub struct BinaryOpDef {
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pub kind: BinaryExprType,
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pub left: Box<Expression>,
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pub right: Box<Expression>,
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pub pos: Position,
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}
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/// Encodes a tuple Copy expression in the UCG AST.
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#[derive(Debug, PartialEq, Clone)]
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pub struct CopyDef {
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pub selector: Value,
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pub fields: FieldList,
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pub pos: Position,
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}
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/// Encodes one of two possible forms for format expression arguments.
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#[derive(Debug, PartialEq, Clone)]
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pub enum FormatArgs {
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List(Vec<Expression>),
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Single(Box<Expression>),
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}
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/// Encodes a format expression in the UCG AST.
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#[derive(Debug, PartialEq, Clone)]
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pub struct FormatDef {
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pub template: String,
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pub args: FormatArgs,
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pub pos: Position,
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}
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/// Encodes an import statement in the UCG AST.
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#[derive(Debug, PartialEq, Clone)]
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pub struct IncludeDef {
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pub pos: Position,
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pub path: Token,
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pub typ: Token,
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}
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/// Encodes a list expression in the UCG AST.
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#[derive(Debug, PartialEq, Clone)]
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pub struct ListDef {
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pub elems: Vec<Expression>,
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pub pos: Position,
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}
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#[derive(Debug, PartialEq, Clone)]
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pub enum FuncOpDef {
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Reduce(ReduceOpDef),
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Map(MapFilterOpDef),
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Filter(MapFilterOpDef),
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}
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#[derive(Debug, PartialEq, Clone)]
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pub struct ReduceOpDef {
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pub func: Box<Expression>,
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pub acc: Box<Expression>,
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pub target: Box<Expression>,
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pub pos: Position,
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}
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/// MapFilterOpDef implements the list operations in the UCG AST.
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#[derive(Debug, PartialEq, Clone)]
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pub struct MapFilterOpDef {
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pub func: Box<Expression>,
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pub target: Box<Expression>,
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pub pos: Position,
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}
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impl FuncOpDef {
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pub fn pos(&self) -> &Position {
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match self {
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FuncOpDef::Map(def) => &def.pos,
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FuncOpDef::Filter(def) => &def.pos,
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FuncOpDef::Reduce(def) => &def.pos,
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}
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}
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}
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// TODO(jwall): this should probably be moved to a Val::Module IR type.
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#[derive(Debug, PartialEq, Clone)]
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pub struct ModuleDef {
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pub scope: Option<Scope>,
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pub pos: Position,
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pub arg_set: FieldList,
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pub arg_tuple: Option<Rc<Val>>,
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pub statements: Vec<Statement>,
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}
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impl ModuleDef {
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pub fn new<P: Into<Position>>(arg_set: FieldList, stmts: Vec<Statement>, pos: P) -> Self {
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ModuleDef {
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scope: None,
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pos: pos.into(),
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arg_set: arg_set,
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arg_tuple: None,
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statements: stmts,
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}
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}
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pub fn imports_to_absolute(&mut self, base: PathBuf) {
|
|
let rewrite_import = |e: &mut Expression| {
|
|
if let Expression::Include(ref mut def) = e {
|
|
let path = PathBuf::from(&def.path.fragment);
|
|
if path.is_relative() {
|
|
def.path.fragment = base
|
|
.join(path)
|
|
.canonicalize()
|
|
.unwrap()
|
|
.to_string_lossy()
|
|
.to_string();
|
|
}
|
|
}
|
|
if let Expression::Import(ref mut def) = e {
|
|
let path = PathBuf::from(&def.path.fragment);
|
|
// std/ paths are special and do not get made into absolute paths.
|
|
if path.starts_with("std/") {
|
|
return;
|
|
}
|
|
if path.is_relative() {
|
|
def.path.fragment = base
|
|
.join(path)
|
|
.canonicalize()
|
|
.unwrap()
|
|
.to_string_lossy()
|
|
.to_string();
|
|
}
|
|
}
|
|
};
|
|
let walker = walk::AstWalker::new().with_expr_handler(&rewrite_import);
|
|
for stmt in self.statements.iter_mut() {
|
|
walker.walk_statement(stmt);
|
|
}
|
|
}
|
|
}
|
|
|
|
/// RangeDef defines a range with optional step.
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct RangeDef {
|
|
pub pos: Position,
|
|
pub start: Box<Expression>,
|
|
pub step: Option<Box<Expression>>,
|
|
pub end: Box<Expression>,
|
|
}
|
|
|
|
/// Encodes an import expression in the UCG AST.
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct ImportDef {
|
|
pub pos: Position,
|
|
pub path: Token,
|
|
}
|
|
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct IsDef {
|
|
pub pos: Position,
|
|
pub target: Box<Expression>,
|
|
pub typ: Token,
|
|
}
|
|
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct FailDef {
|
|
pub pos: Position,
|
|
pub message: Box<Expression>,
|
|
}
|
|
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct NotDef {
|
|
pub pos: Position,
|
|
pub expr: Box<Expression>,
|
|
}
|
|
|
|
/// Encodes a ucg expression. Expressions compute a value from.
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub enum Expression {
|
|
// Base Expression
|
|
Simple(Value),
|
|
Not(NotDef),
|
|
|
|
// Binary expressions
|
|
Binary(BinaryOpDef),
|
|
|
|
// Complex Expressions
|
|
Copy(CopyDef),
|
|
Range(RangeDef),
|
|
// TODO(jwall): This should really store it's position :-(
|
|
Grouped(Box<Expression>),
|
|
Format(FormatDef),
|
|
Include(IncludeDef),
|
|
Import(ImportDef),
|
|
Call(CallDef),
|
|
Func(FuncDef),
|
|
Select(SelectDef),
|
|
FuncOp(FuncOpDef),
|
|
Module(ModuleDef),
|
|
|
|
// Declarative failure expressions
|
|
Fail(FailDef),
|
|
}
|
|
|
|
impl Expression {
|
|
/// Returns the position of the Expression.
|
|
pub fn pos(&self) -> &Position {
|
|
match self {
|
|
&Expression::Simple(ref v) => v.pos(),
|
|
&Expression::Binary(ref def) => &def.pos,
|
|
&Expression::Copy(ref def) => &def.pos,
|
|
&Expression::Range(ref def) => &def.pos,
|
|
&Expression::Grouped(ref expr) => expr.pos(),
|
|
&Expression::Format(ref def) => &def.pos,
|
|
&Expression::Call(ref def) => &def.pos,
|
|
&Expression::Func(ref def) => &def.pos,
|
|
&Expression::Module(ref def) => &def.pos,
|
|
&Expression::Select(ref def) => &def.pos,
|
|
&Expression::FuncOp(ref def) => def.pos(),
|
|
&Expression::Include(ref def) => &def.pos,
|
|
&Expression::Import(ref def) => &def.pos,
|
|
&Expression::Fail(ref def) => &def.pos,
|
|
&Expression::Not(ref def) => &def.pos,
|
|
}
|
|
}
|
|
}
|
|
|
|
impl fmt::Display for Expression {
|
|
fn fmt(&self, w: &mut fmt::Formatter) -> fmt::Result {
|
|
match self {
|
|
&Expression::Simple(ref v) => {
|
|
write!(w, "{}", v.to_string())?;
|
|
}
|
|
&Expression::Binary(_) => {
|
|
write!(w, "<Expr>")?;
|
|
}
|
|
&Expression::FuncOp(_) => {
|
|
write!(w, "<Expr>")?;
|
|
}
|
|
&Expression::Copy(_) => {
|
|
write!(w, "<Copy>")?;
|
|
}
|
|
&Expression::Range(_) => {
|
|
write!(w, "<Range>")?;
|
|
}
|
|
&Expression::Grouped(_) => {
|
|
write!(w, "(<Expr>)")?;
|
|
}
|
|
&Expression::Format(_) => {
|
|
write!(w, "<Format Expr>")?;
|
|
}
|
|
&Expression::Call(_) => {
|
|
write!(w, "<MacroCall>")?;
|
|
}
|
|
&Expression::Func(_) => {
|
|
write!(w, "<Func>")?;
|
|
}
|
|
&Expression::Module(_) => {
|
|
write!(w, "<Module>")?;
|
|
}
|
|
&Expression::Select(_) => {
|
|
write!(w, "<Select>")?;
|
|
}
|
|
&Expression::Include(_) => {
|
|
write!(w, "<Include>")?;
|
|
}
|
|
&Expression::Import(_) => {
|
|
write!(w, "<Include>")?;
|
|
}
|
|
&Expression::Fail(_) => {
|
|
write!(w, "<Fail>")?;
|
|
}
|
|
&Expression::Not(ref def) => {
|
|
write!(w, "!{}", def.expr)?;
|
|
}
|
|
}
|
|
Ok(())
|
|
}
|
|
}
|
|
|
|
/// Encodes a let statement in the UCG AST.
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub struct LetDef {
|
|
pub name: Token,
|
|
pub value: Expression,
|
|
}
|
|
|
|
/// Encodes a parsed statement in the UCG AST.
|
|
#[derive(Debug, PartialEq, Clone)]
|
|
pub enum Statement {
|
|
// simple expression
|
|
Expression(Expression),
|
|
|
|
// Named bindings
|
|
Let(LetDef),
|
|
|
|
// Assert statement
|
|
Assert(Expression),
|
|
|
|
// Identify an Expression for output.
|
|
Output(Position, Token, Expression),
|
|
}
|