mirror of
https://forge.katzen.cafe/katzen-cafe/iowo.git
synced 2024-11-24 22:38:45 +01:00
rewrite error system and add evaluator architecture
the evaluator architecture is also only a temporary solution and very flawed but i have no other ideas
This commit is contained in:
parent
0ce869e859
commit
17878b3e87
89
src/error/mod.rs
Normal file
89
src/error/mod.rs
Normal file
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@ -0,0 +1,89 @@
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use std::cell::RefCell;
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use codespan_reporting::{
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diagnostic::{Diagnostic, Label},
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files::SimpleFiles,
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};
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use crate::Span;
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pub struct Errors {
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pub kind: ErrorKind,
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pub locs: Vec<Span>,
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}
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pub enum ErrorKind {
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InvalidToken,
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SyntaxError(SyntaxErrorKind),
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CommandNotFound,
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}
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pub enum SyntaxErrorKind {
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/// `MissingStreamer` means, that the pipeline starts with a Pipe (`|`), so it has no streamer as input in front of it.
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MissingStreamer,
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/// `MissingSink` means, that the pipeline ends with a Pipe (`|`), meaning that the output can't go anywhere
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MissingSink,
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/// This indicates a missing filter somewhere in the pipeline, meaning that there's 2 pipes after one another
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MissingFilter,
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/// A literal cannot be a sink
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LiteralAsSink,
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/// A literal can't be a filter either
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LiteralAsFilter,
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/// A literal acting as streamer cannot take arguments
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LiteralWithArgs,
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}
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impl Errors {
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pub fn new(kind: ErrorKind, locs: Vec<Span>) -> Self {
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Self { kind, locs }
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}
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pub fn new_single(kind: ErrorKind, loc: Span) -> Self {
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Self {
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kind,
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locs: vec![loc],
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}
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}
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pub fn into_diag(
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&self,
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file_id: usize,
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file_db: &SimpleFiles<&str, String>,
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) -> Diagnostic<usize> {
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let Errors { kind, locs } = self;
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match kind {
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ErrorKind::InvalidToken => simple_diag(locs.to_vec(), file_id, "invalid tokens"),
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ErrorKind::SyntaxError(syntax_error) => match syntax_error {
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SyntaxErrorKind::MissingStreamer => simple_diag(
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locs.to_vec(),
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file_id,
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"pipeline is missing an input provider",
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),
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SyntaxErrorKind::MissingSink => {
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simple_diag(locs.to_vec(), file_id, "pipeline is missing a sink")
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}
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SyntaxErrorKind::MissingFilter => {
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simple_diag(locs.to_vec(), file_id, "missing filters in pipeline")
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}
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SyntaxErrorKind::LiteralAsSink => {
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simple_diag(locs.to_vec(), file_id, "pipelines can't end in a literal")
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}
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SyntaxErrorKind::LiteralAsFilter => {
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simple_diag(locs.to_vec(), file_id, "literals can't filter data")
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}
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SyntaxErrorKind::LiteralWithArgs => {
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simple_diag(locs.to_vec(), file_id, "literals can't take arguments")
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}
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},
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ErrorKind::CommandNotFound => simple_diag(locs.to_vec(), file_id, "command not found"),
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}
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}
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}
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fn simple_diag(spans: Vec<Span>, file_id: usize, msg: &str) -> Diagnostic<usize> {
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Diagnostic::error().with_message(msg).with_labels(
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spans
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.into_iter()
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.map(|span| Label::primary(file_id, span))
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.collect(),
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)
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}
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117
src/evaluator.rs
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117
src/evaluator.rs
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@ -0,0 +1,117 @@
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use std::{collections::HashMap, process::exit};
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use clap::error::Result;
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use codespan_reporting::{
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files::SimpleFiles,
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term::{
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self,
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termcolor::{ColorChoice, StandardStream},
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},
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};
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use crate::{
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builtins::initialise_globals,
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error::{ErrorKind, Errors},
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syntax::{
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check::{self, check},
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parse_syntax, PipelineElement,
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},
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typed::into_typed_repr,
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};
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// this is also bad
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// need a better architecture for this
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pub struct Evaluator<'a> {
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curr_phase: EvalPhase,
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files: SimpleFiles<&'a str, String>,
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errors: HashMap<usize, Vec<Errors>>,
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}
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impl<'a> Evaluator<'a> {
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pub fn init() -> Self {
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Self {
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curr_phase: EvalPhase::Lex,
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files: SimpleFiles::new(),
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errors: HashMap::new(),
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}
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}
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pub fn run(&mut self, input: String, name: Option<&'a str>) {
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let fid = self.files.add(name.unwrap_or("input"), input.clone());
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let syntax = parse_syntax(&input);
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match syntax {
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Ok(syntax) => self.curr_phase = EvalPhase::Check(fid, syntax),
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Err(errs) => {
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self.errors.insert(
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fid,
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vec![Errors {
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kind: ErrorKind::InvalidToken,
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locs: errs,
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}],
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);
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self.curr_phase = EvalPhase::Failed
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}
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};
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}
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pub fn next(mut self) {
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match self.curr_phase {
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EvalPhase::Lex => {
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todo!()
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}
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EvalPhase::Check(file_id, syntax) => {
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let r = check(&syntax);
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if let Err(errs) = r {
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self.errors.insert(file_id, errs);
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self.curr_phase = EvalPhase::Failed;
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} else {
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self.curr_phase = EvalPhase::BareTyped(file_id, syntax.clone())
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}
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}
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EvalPhase::BareTyped(file_id, syntax) => {
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let ns = initialise_globals();
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let r = into_typed_repr(&ns, syntax);
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if let Err(errs) = r {
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self.errors.insert(file_id, vec![errs]);
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self.curr_phase = EvalPhase::Failed;
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} else {
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todo!()
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}
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}
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EvalPhase::Failed => self.error_out().unwrap(),
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}
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self.next()
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}
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pub fn error_out(self) -> Result<!, codespan_reporting::files::Error> {
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let Evaluator {
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curr_phase,
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files,
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errors,
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} = self;
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let writer = StandardStream::stderr(ColorChoice::Always);
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let config = term::Config::default();
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for (file_id, errors) in errors.iter() {
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let writer = &mut writer.lock();
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for error in errors {
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term::emit(writer, &config, &files, &error.into_diag(*file_id, &files))?;
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}
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}
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exit(1)
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}
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}
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enum EvalPhase {
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Lex,
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Check(usize, Vec<PipelineElement>),
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BareTyped(usize, Vec<PipelineElement>),
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Failed,
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}
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62
src/main.rs
62
src/main.rs
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#![feature(never_type)]
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use std::ops::Range;
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use args::Args;
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use clap::Parser;
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use codespan_reporting::{
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files::SimpleFiles,
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term::{
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self,
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termcolor::{ColorChoice, StandardStream},
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},
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};
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use syntax::{check::check, error::SyntaxError, parse_syntax};
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use crate::{builtins::initialise_globals, typed::into_typed_repr};
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use evaluator::Evaluator;
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mod args;
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mod builtins;
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mod error;
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mod evaluator;
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mod lexer;
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mod namespace;
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mod syntax;
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mod typed;
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// basically logos::Span but in this repo
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type Span = Range<usize>;
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fn main() {
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let args = Args::parse();
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let syntax = parse_syntax(&args.text);
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let mut evaluator = Evaluator::init();
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if args.debug_tokens {
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println!("Tokens: {syntax:#?}");
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}
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let mut files = SimpleFiles::new();
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let input_id = files.add("input", args.text);
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let writer = StandardStream::stderr(ColorChoice::Always);
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let config = term::Config::default();
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if let Err(errs) = syntax {
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let writer = &mut writer.lock();
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term::emit(
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writer,
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&config,
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&files,
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&SyntaxError::InvalidToken(errs).to_diagnostic(input_id),
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)
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.unwrap();
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} else {
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let check_res = check(&syntax.clone().unwrap());
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if let Err(errs) = check_res {
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let writer = &mut writer.lock();
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let diags = errs.into_iter().map(|err| err.to_diagnostic(input_id));
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for diag in diags {
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term::emit(writer, &config, &files, &diag).unwrap();
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}
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} else {
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let ns = initialise_globals();
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println!("typed: {:#?}", into_typed_repr(&ns, syntax.unwrap()));
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}
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}
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evaluator.run(args.text, None);
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evaluator.next();
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}
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#[cfg(test)]
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mod test;
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use crate::syntax::CommandPart;
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use crate::{
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error::{ErrorKind, Errors, SyntaxErrorKind},
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syntax::CommandPart,
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};
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use super::{error::SyntaxError, CommandPartKind, PipelineElement, PipelineElementKind};
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use super::{CommandPartKind, PipelineElement, PipelineElementKind};
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pub fn check(syntax: &[PipelineElement]) -> Result<(), Vec<SyntaxError>> {
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pub fn check(syntax: &[PipelineElement]) -> Result<(), Vec<Errors>> {
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let mut errs = Vec::new();
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if let Err(e_span) = check_missing_streamer(syntax) {
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errs.push(SyntaxError::MissingStreamer(vec![e_span]));
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errs.push(Errors::new_single(
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ErrorKind::SyntaxError(SyntaxErrorKind::MissingStreamer),
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e_span,
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));
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}
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if let Err(err_locs) = check_missing_filters(syntax) {
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errs.push(SyntaxError::MissingFilter(err_locs));
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errs.push(Errors::new(
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ErrorKind::SyntaxError(SyntaxErrorKind::MissingFilter),
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err_locs,
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));
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}
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if let Err(e_span) = check_missing_sink(syntax) {
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errs.push(SyntaxError::MissingSink(vec![e_span]));
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errs.push(Errors::new_single(
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ErrorKind::SyntaxError(SyntaxErrorKind::MissingSink),
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e_span,
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));
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}
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if let Err(e_span) = check_literal_as_sink(syntax) {
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errs.push(SyntaxError::LiteralAsSink(vec![e_span]));
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errs.push(Errors::new_single(
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ErrorKind::SyntaxError(SyntaxErrorKind::LiteralAsSink),
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e_span,
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));
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}
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if let Err(err_locs) = check_literal_as_filter(syntax) {
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errs.push(SyntaxError::LiteralAsFilter(err_locs));
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errs.push(Errors::new(
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ErrorKind::SyntaxError(SyntaxErrorKind::LiteralAsFilter),
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err_locs,
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));
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}
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if let Err(e_span) = check_literal_with_args(syntax) {
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errs.push(SyntaxError::LiteralWithArgs(vec![e_span]));
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errs.push(Errors::new_single(
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ErrorKind::SyntaxError(SyntaxErrorKind::LiteralWithArgs),
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e_span,
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));
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}
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if errs.is_empty() {
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@ -127,6 +148,8 @@ fn check_literal_as_sink(syntax: &[PipelineElement]) -> Result<(), logos::Span>
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fn check_literal_as_filter(syntax: &[PipelineElement]) -> Result<(), Vec<logos::Span>> {
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let errs = syntax
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.iter()
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.take(syntax.len() - 1)
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.skip(1)
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.filter(|element| {
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!matches!(
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element,
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@ -155,8 +178,6 @@ fn check_literal_as_filter(syntax: &[PipelineElement]) -> Result<(), Vec<logos::
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None
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}
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})
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.skip(1)
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.take(syntax.len() - 1)
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.filter_map(|err| err.map(Clone::clone))
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.collect::<Vec<logos::Span>>();
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|
|
|
@ -1,79 +0,0 @@
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use codespan_reporting::diagnostic::{Diagnostic, Label};
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/// The enum representing a syntax error, used for error reporting
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#[derive(Debug, Clone)]
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pub enum SyntaxError {
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/// This variant indicates a token that the Lexer didn't recognize
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InvalidToken(Vec<logos::Span>),
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/// `MissingStreamer` means, that the pipeline starts with a Pipe (`|`), so it has no streamer as input in front of it.
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MissingStreamer(Vec<logos::Span>),
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/// `MissingSink` means, that the pipeline ends with a Pipe (`|`), meaning that the output can't go anywhere
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MissingSink(Vec<logos::Span>),
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/// This indicates a missing filter somewhere in the pipeline, meaning that there's 2 pipes after one another
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MissingFilter(Vec<logos::Span>),
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/// A literal cannot be a sink, TODO
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LiteralAsSink(Vec<logos::Span>),
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/// A literal can't be a filter either, TODO
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LiteralAsFilter(Vec<logos::Span>),
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/// A literal acting as streamer cannot take arguments, TODO
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LiteralWithArgs(Vec<logos::Span>),
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}
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// TODO: much better and more complex errors, with suggestions for fixes
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impl SyntaxError {
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pub fn to_diagnostic(&self, file_id: usize) -> Diagnostic<usize> {
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match self {
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Self::InvalidToken(errs) => Diagnostic::error()
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.with_message("failed to parse invalid tokens")
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.with_labels(
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errs.iter()
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.map(|span| {
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Label::primary(file_id, span.clone()).with_message("invalid token")
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})
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.collect(),
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),
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Self::MissingStreamer(locs) => Diagnostic::error()
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.with_message("pipelines must always start with a provider")
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.with_labels(
|
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locs.iter()
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.map(|span| Label::primary(file_id, span.clone()))
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.collect(),
|
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),
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Self::MissingFilter(locs) => Diagnostic::error()
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.with_message("missing filters in pipeline")
|
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.with_labels(
|
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locs.iter()
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.map(|span| Label::primary(file_id, span.clone()))
|
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.collect(),
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),
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Self::MissingSink(locs) => Diagnostic::error()
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.with_message("pipelines need to end in a sink")
|
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.with_labels(
|
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locs.iter()
|
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.map(|span| Label::primary(file_id, span.clone()))
|
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.collect(),
|
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),
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Self::LiteralAsSink(locs) => Diagnostic::error()
|
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.with_message("literals cannot be sinks")
|
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.with_labels(
|
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locs.iter()
|
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.map(|span| Label::primary(file_id, span.clone()))
|
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.collect(),
|
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),
|
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Self::LiteralAsFilter(locs) => Diagnostic::error()
|
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.with_message("literals cannot be filters")
|
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.with_labels(
|
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locs.iter()
|
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.map(|span| Label::primary(file_id, span.clone()))
|
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.collect(),
|
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),
|
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Self::LiteralWithArgs(locs) => Diagnostic::error()
|
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.with_message("literals cannot take arguments")
|
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.with_labels(
|
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locs.iter()
|
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.map(|span| Label::primary(file_id, span.clone()))
|
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.collect(),
|
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),
|
||||
}
|
||||
}
|
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}
|
|
@ -6,7 +6,6 @@ use logos::Span;
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use crate::lexer::Token;
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|
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pub mod check;
|
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pub mod error;
|
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|
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#[derive(Debug, Clone, PartialEq)]
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pub struct PipelineElement {
|
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|
|
32
src/typed.rs
32
src/typed.rs
|
@ -2,14 +2,16 @@ use core::panic;
|
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|
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use crate::{
|
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builtins::{TYPE_FLOAT, TYPE_INTEGER, TYPE_STRING},
|
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error::Errors,
|
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namespace::{command::Command, r#type::Type, GlobalNamespace},
|
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syntax::{CommandPart, CommandPartKind, PipelineElement, PipelineElementKind},
|
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Span,
|
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};
|
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|
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#[derive(Debug)]
|
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pub struct Expr<'a> {
|
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kind: ExprKind<'a>,
|
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span: logos::Span,
|
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span: Span,
|
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}
|
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|
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#[derive(Debug)]
|
||||
|
@ -38,8 +40,12 @@ impl LiteralKind {
|
|||
}
|
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}
|
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|
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pub fn into_typed_repr(ns: &GlobalNamespace, syntax: Vec<PipelineElement>) -> Vec<Expr> {
|
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pub fn into_typed_repr(
|
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ns: &GlobalNamespace,
|
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syntax: Vec<PipelineElement>,
|
||||
) -> Result<Vec<Expr>, Errors> {
|
||||
let mut res = Vec::new();
|
||||
let mut errs = Vec::new();
|
||||
|
||||
for item in syntax {
|
||||
let PipelineElement { kind, span } = item;
|
||||
|
@ -51,7 +57,13 @@ pub fn into_typed_repr(ns: &GlobalNamespace, syntax: Vec<PipelineElement>) -> Ve
|
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res.push(Expr {
|
||||
kind: match kind {
|
||||
CommandPartKind::Word(val) => ExprKind::Command {
|
||||
command: ns.get_command_by_name(val).unwrap(),
|
||||
command: {
|
||||
let Some(c) = ns.get_command_by_name(val) else {
|
||||
errs.push(span);
|
||||
continue;
|
||||
};
|
||||
c
|
||||
},
|
||||
args: Vec::new(),
|
||||
},
|
||||
CommandPartKind::Integer(val) => {
|
||||
|
@ -77,7 +89,13 @@ pub fn into_typed_repr(ns: &GlobalNamespace, syntax: Vec<PipelineElement>) -> Ve
|
|||
|
||||
res.push(Expr {
|
||||
kind: ExprKind::Command {
|
||||
command: ns.get_command_by_name(name).unwrap(),
|
||||
command: {
|
||||
let Some(c) = ns.get_command_by_name(name) else {
|
||||
errs.push(span.clone());
|
||||
continue;
|
||||
};
|
||||
c
|
||||
},
|
||||
args: c
|
||||
.iter()
|
||||
.skip(1)
|
||||
|
@ -104,5 +122,9 @@ pub fn into_typed_repr(ns: &GlobalNamespace, syntax: Vec<PipelineElement>) -> Ve
|
|||
}
|
||||
}
|
||||
|
||||
res
|
||||
if errs.is_empty() {
|
||||
Ok(res)
|
||||
} else {
|
||||
Err(Errors::new(crate::error::ErrorKind::CommandNotFound, errs))
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in a new issue