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dust/src/main.rs

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5.1 KiB
Rust
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//! Command line interface for the dust programming language.
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use clap::Parser;
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use rustyline::{
completion::FilenameCompleter,
error::ReadlineError,
highlight::Highlighter,
hint::{Hint, Hinter, HistoryHinter},
history::DefaultHistory,
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Completer, Context, Editor, Helper, Validator,
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};
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use tree_sitter::Parser as TSParser;
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use std::{borrow::Cow, fs::read_to_string};
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use dust_lang::{evaluate_with_context, language, Interpreter, Map, Value};
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/// Command-line arguments to be parsed.
#[derive(Parser, Debug)]
#[command(author, version, about, long_about = None)]
struct Args {
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/// Dust source code to evaluate.
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#[arg(short, long)]
command: Option<String>,
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/// Data to assign to the "input" variable.
#[arg(short, long)]
input: Option<String>,
/// A path to file whose contents will be assigned to the "input" variable.
#[arg(short = 'p', long)]
input_path: Option<String>,
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/// Show the syntax tree.
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#[arg(short = 't', long = "tree")]
show_syntax_tree: bool,
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/// Launch in interactive mode.
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#[arg(short = 'n', long)]
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interactive: bool,
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/// Location of the file to run.
path: Option<String>,
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}
fn main() {
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let args = Args::parse();
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if args.path.is_none() && args.command.is_none() {
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return run_cli_shell();
}
let source = if let Some(path) = &args.path {
read_to_string(path).unwrap()
} else if let Some(command) = &args.command {
command.clone()
} else {
"".to_string()
};
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let mut context = Map::new();
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if let Some(input) = args.input {
context
.set("input".to_string(), Value::String(input), None)
.unwrap();
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}
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if let Some(path) = args.input_path {
let file_contents = read_to_string(path).unwrap();
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context
.set("input".to_string(), Value::String(file_contents), None)
.unwrap();
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}
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let mut parser = TSParser::new();
parser.set_language(language()).unwrap();
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let mut interpreter = Interpreter::parse(parser, &mut context, &source).unwrap();
if args.interactive {
loop {
let result = interpreter.run();
println!("{result:?}")
}
}
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if args.show_syntax_tree {
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println!("{}", interpreter.syntax_tree());
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}
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let eval_result = interpreter.run();
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match eval_result {
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Ok(value) => {
if !value.is_empty() {
println!("{value}")
}
}
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Err(error) => eprintln!("{error}"),
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}
}
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#[derive(Helper, Completer, Validator)]
struct DustReadline {
#[rustyline(Completer)]
completer: FilenameCompleter,
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tool_hints: Vec<ToolHint>,
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#[rustyline(Hinter)]
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_hinter: HistoryHinter,
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}
impl DustReadline {
fn new() -> Self {
Self {
completer: FilenameCompleter::new(),
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_hinter: HistoryHinter {},
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tool_hints: Vec::new(),
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}
}
}
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struct ToolHint {
display: String,
complete_to: usize,
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}
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impl Hint for ToolHint {
fn display(&self) -> &str {
&self.display
}
fn completion(&self) -> Option<&str> {
if self.complete_to > 0 {
Some(&self.display[..self.complete_to])
} else {
None
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}
}
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}
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impl ToolHint {
fn suffix(&self, strip_chars: usize) -> ToolHint {
ToolHint {
display: self.display[strip_chars..].to_string(),
complete_to: self.complete_to.saturating_sub(strip_chars),
}
}
}
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impl Hinter for DustReadline {
type Hint = ToolHint;
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fn hint(&self, line: &str, pos: usize, _ctx: &Context<'_>) -> Option<Self::Hint> {
if line.is_empty() || pos < line.len() {
return None;
}
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self.tool_hints.iter().find_map(|tool_hint| {
if tool_hint.display.starts_with(line) {
Some(tool_hint.suffix(pos))
} else {
None
}
})
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}
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}
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impl Highlighter for DustReadline {
fn highlight_hint<'h>(&self, hint: &'h str) -> std::borrow::Cow<'h, str> {
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let highlighted = ansi_term::Colour::Red.paint(hint).to_string();
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Cow::Owned(highlighted)
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}
}
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fn run_cli_shell() {
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let mut context = Map::new();
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let mut rl: Editor<DustReadline, DefaultHistory> = Editor::new().unwrap();
rl.set_helper(Some(DustReadline::new()));
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if rl.load_history("target/history.txt").is_err() {
println!("No previous history.");
}
loop {
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let readline = rl.readline("* ");
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match readline {
Ok(line) => {
let line = line.as_str();
rl.add_history_entry(line).unwrap();
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let eval_result = evaluate_with_context(line, &mut context);
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match eval_result {
Ok(value) => println!("{value}"),
Err(error) => eprintln!("{error}"),
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}
}
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Err(ReadlineError::Interrupted) => break,
Err(ReadlineError::Eof) => break,
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Err(error) => eprintln!("{error}"),
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}
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}
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rl.save_history("target/history.txt").unwrap();
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}