mirror of
https://github.com/denoland/deno.git
synced 2024-12-27 01:29:14 -05:00
502 lines
15 KiB
Rust
502 lines
15 KiB
Rust
// Copyright 2018-2022 the Deno authors. All rights reserved. MIT license.
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use crate::colors;
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use deno_ast::swc::parser::error::SyntaxError;
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use deno_ast::swc::parser::token::Token;
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use deno_ast::swc::parser::token::Word;
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use deno_core::anyhow::Context as _;
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use deno_core::error::AnyError;
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use deno_core::parking_lot::Mutex;
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use deno_core::serde_json;
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use rustyline::completion::Completer;
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use rustyline::error::ReadlineError;
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use rustyline::highlight::Highlighter;
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use rustyline::validate::ValidationContext;
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use rustyline::validate::ValidationResult;
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use rustyline::validate::Validator;
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use rustyline::Cmd;
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use rustyline::CompletionType;
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use rustyline::Config;
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use rustyline::Context;
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use rustyline::Editor;
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use rustyline::EventHandler;
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use rustyline::KeyCode;
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use rustyline::KeyEvent;
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use rustyline::Modifiers;
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use rustyline::{ConditionalEventHandler, Event, EventContext, RepeatCount};
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use rustyline_derive::{Helper, Hinter};
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use std::borrow::Cow;
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use std::path::PathBuf;
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use std::sync::atomic::AtomicBool;
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use std::sync::atomic::Ordering::Relaxed;
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use std::sync::Arc;
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use super::cdp;
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use super::channel::RustylineSyncMessageSender;
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// Provides helpers to the editor like validation for multi-line edits, completion candidates for
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// tab completion.
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#[derive(Helper, Hinter)]
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pub struct EditorHelper {
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pub context_id: u64,
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pub sync_sender: RustylineSyncMessageSender,
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}
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impl EditorHelper {
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pub fn get_global_lexical_scope_names(&self) -> Vec<String> {
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let evaluate_response = self
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.sync_sender
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.post_message(
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"Runtime.globalLexicalScopeNames",
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Some(cdp::GlobalLexicalScopeNamesArgs {
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execution_context_id: Some(self.context_id),
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}),
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)
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.unwrap();
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let evaluate_response: cdp::GlobalLexicalScopeNamesResponse =
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serde_json::from_value(evaluate_response).unwrap();
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evaluate_response.names
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}
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pub fn get_expression_property_names(&self, expr: &str) -> Vec<String> {
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// try to get the properties from the expression
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if let Some(properties) = self.get_object_expr_properties(expr) {
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return properties;
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}
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// otherwise fall back to the prototype
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let expr_type = self.get_expression_type(expr);
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let object_expr = match expr_type.as_deref() {
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// possibilities: https://chromedevtools.github.io/devtools-protocol/v8/Runtime/#type-RemoteObject
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Some("object") => "Object.prototype",
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Some("function") => "Function.prototype",
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Some("string") => "String.prototype",
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Some("boolean") => "Boolean.prototype",
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Some("bigint") => "BigInt.prototype",
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Some("number") => "Number.prototype",
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_ => return Vec::new(), // undefined, symbol, and unhandled
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};
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self
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.get_object_expr_properties(object_expr)
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.unwrap_or_default()
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}
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fn get_expression_type(&self, expr: &str) -> Option<String> {
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self.evaluate_expression(expr).map(|res| res.result.kind)
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}
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fn get_object_expr_properties(
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&self,
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object_expr: &str,
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) -> Option<Vec<String>> {
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let evaluate_result = self.evaluate_expression(object_expr)?;
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let object_id = evaluate_result.result.object_id?;
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let get_properties_response = self
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.sync_sender
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.post_message(
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"Runtime.getProperties",
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Some(cdp::GetPropertiesArgs {
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object_id,
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own_properties: None,
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accessor_properties_only: None,
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generate_preview: None,
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non_indexed_properties_only: None,
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}),
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)
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.ok()?;
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let get_properties_response: cdp::GetPropertiesResponse =
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serde_json::from_value(get_properties_response).ok()?;
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Some(
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get_properties_response
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.result
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.into_iter()
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.map(|prop| prop.name)
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.collect(),
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)
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}
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fn evaluate_expression(&self, expr: &str) -> Option<cdp::EvaluateResponse> {
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let evaluate_response = self
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.sync_sender
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.post_message(
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"Runtime.evaluate",
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Some(cdp::EvaluateArgs {
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expression: expr.to_string(),
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object_group: None,
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include_command_line_api: None,
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silent: None,
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context_id: Some(self.context_id),
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return_by_value: None,
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generate_preview: None,
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user_gesture: None,
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await_promise: None,
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throw_on_side_effect: Some(true),
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timeout: Some(200),
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disable_breaks: None,
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repl_mode: None,
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allow_unsafe_eval_blocked_by_csp: None,
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unique_context_id: None,
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}),
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)
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.ok()?;
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let evaluate_response: cdp::EvaluateResponse =
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serde_json::from_value(evaluate_response).ok()?;
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if evaluate_response.exception_details.is_some() {
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None
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} else {
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Some(evaluate_response)
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}
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}
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}
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fn is_word_boundary(c: char) -> bool {
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if c == '.' {
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false
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} else {
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char::is_ascii_whitespace(&c) || char::is_ascii_punctuation(&c)
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}
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}
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fn get_expr_from_line_at_pos(line: &str, cursor_pos: usize) -> &str {
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let start = line[..cursor_pos]
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.rfind(is_word_boundary)
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.map_or_else(|| 0, |i| i);
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let end = line[cursor_pos..]
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.rfind(is_word_boundary)
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.map_or_else(|| cursor_pos, |i| cursor_pos + i);
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let word = &line[start..end];
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let word = word.strip_prefix(is_word_boundary).unwrap_or(word);
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let word = word.strip_suffix(is_word_boundary).unwrap_or(word);
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word
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}
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impl Completer for EditorHelper {
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type Candidate = String;
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fn complete(
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&self,
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line: &str,
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pos: usize,
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_ctx: &Context<'_>,
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) -> Result<(usize, Vec<String>), ReadlineError> {
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let lsp_completions = self.sync_sender.lsp_completions(line, pos);
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if !lsp_completions.is_empty() {
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// assumes all lsp completions have the same start position
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return Ok((
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lsp_completions[0].range.start,
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lsp_completions.into_iter().map(|c| c.new_text).collect(),
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));
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}
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let expr = get_expr_from_line_at_pos(line, pos);
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// check if the expression is in the form `obj.prop`
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if let Some(index) = expr.rfind('.') {
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let sub_expr = &expr[..index];
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let prop_name = &expr[index + 1..];
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let candidates = self
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.get_expression_property_names(sub_expr)
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.into_iter()
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.filter(|n| !n.starts_with("Symbol(") && n.starts_with(prop_name))
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.collect();
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Ok((pos - prop_name.len(), candidates))
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} else {
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// combine results of declarations and globalThis properties
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let mut candidates = self
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.get_expression_property_names("globalThis")
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.into_iter()
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.chain(self.get_global_lexical_scope_names())
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.filter(|n| n.starts_with(expr))
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.collect::<Vec<_>>();
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// sort and remove duplicates
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candidates.sort();
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candidates.dedup(); // make sure to sort first
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Ok((pos - expr.len(), candidates))
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}
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}
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}
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impl Validator for EditorHelper {
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fn validate(
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&self,
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ctx: &mut ValidationContext,
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) -> Result<ValidationResult, ReadlineError> {
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let mut stack: Vec<Token> = Vec::new();
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let mut in_template = false;
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for item in deno_ast::lex(ctx.input(), deno_ast::MediaType::TypeScript) {
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if let deno_ast::TokenOrComment::Token(token) = item.inner {
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match token {
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Token::BackQuote => in_template = !in_template,
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Token::LParen
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| Token::LBracket
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| Token::LBrace
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| Token::DollarLBrace => stack.push(token),
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Token::RParen | Token::RBracket | Token::RBrace => {
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match (stack.pop(), token) {
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(Some(Token::LParen), Token::RParen)
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| (Some(Token::LBracket), Token::RBracket)
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| (Some(Token::LBrace), Token::RBrace)
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| (Some(Token::DollarLBrace), Token::RBrace) => {}
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(Some(left), _) => {
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return Ok(ValidationResult::Invalid(Some(format!(
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"Mismatched pairs: {:?} is not properly closed",
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left
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))))
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}
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(None, _) => {
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// While technically invalid when unpaired, it should be V8's task to output error instead.
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// Thus marked as valid with no info.
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return Ok(ValidationResult::Valid(None));
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}
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}
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}
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Token::Error(error) => {
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match error.kind() {
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// If there is unterminated template, it continues to read input.
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SyntaxError::UnterminatedTpl => {}
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_ => {
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// If it failed parsing, it should be V8's task to output error instead.
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// Thus marked as valid with no info.
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return Ok(ValidationResult::Valid(None));
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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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}
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if !stack.is_empty() || in_template {
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return Ok(ValidationResult::Incomplete);
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}
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Ok(ValidationResult::Valid(None))
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}
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}
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impl Highlighter for EditorHelper {
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fn highlight_hint<'h>(&self, hint: &'h str) -> Cow<'h, str> {
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hint.into()
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}
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fn highlight_candidate<'c>(
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&self,
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candidate: &'c str,
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completion: rustyline::CompletionType,
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) -> Cow<'c, str> {
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if completion == CompletionType::List {
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candidate.into()
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} else {
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self.highlight(candidate, 0)
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}
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}
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fn highlight_char(&self, line: &str, _: usize) -> bool {
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!line.is_empty()
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}
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fn highlight<'l>(&self, line: &'l str, _: usize) -> Cow<'l, str> {
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let mut out_line = String::from(line);
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let mut lexed_items = deno_ast::lex(line, deno_ast::MediaType::TypeScript)
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.into_iter()
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.peekable();
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while let Some(item) = lexed_items.next() {
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// Adding color adds more bytes to the string,
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// so an offset is needed to stop spans falling out of sync.
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let offset = out_line.len() - line.len();
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let range = item.range;
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out_line.replace_range(
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range.start + offset..range.end + offset,
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&match item.inner {
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deno_ast::TokenOrComment::Token(token) => match token {
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Token::Str { .. } | Token::Template { .. } | Token::BackQuote => {
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colors::green(&line[range]).to_string()
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}
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Token::Regex(_, _) => colors::red(&line[range]).to_string(),
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Token::Num { .. } | Token::BigInt { .. } => {
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colors::yellow(&line[range]).to_string()
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}
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Token::Word(word) => match word {
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Word::True | Word::False | Word::Null => {
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colors::yellow(&line[range]).to_string()
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}
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Word::Keyword(_) => colors::cyan(&line[range]).to_string(),
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Word::Ident(ident) => {
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if ident == *"undefined" {
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colors::gray(&line[range]).to_string()
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} else if ident == *"Infinity" || ident == *"NaN" {
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colors::yellow(&line[range]).to_string()
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} else if ident == *"async" || ident == *"of" {
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colors::cyan(&line[range]).to_string()
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} else {
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let next = lexed_items.peek().map(|item| &item.inner);
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if matches!(
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next,
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Some(deno_ast::TokenOrComment::Token(Token::LParen))
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) {
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// We're looking for something that looks like a function
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// We use a simple heuristic: 'ident' followed by 'LParen'
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colors::intense_blue(&line[range]).to_string()
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} else {
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line[range].to_string()
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}
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}
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}
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},
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_ => line[range].to_string(),
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},
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deno_ast::TokenOrComment::Comment { .. } => {
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colors::gray(&line[range]).to_string()
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}
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},
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);
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}
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out_line.into()
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}
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}
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#[derive(Clone)]
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pub struct ReplEditor {
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inner: Arc<Mutex<Editor<EditorHelper>>>,
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history_file_path: PathBuf,
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errored_on_history_save: Arc<AtomicBool>,
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should_exit_on_interrupt: Arc<AtomicBool>,
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}
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impl ReplEditor {
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pub fn new(
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helper: EditorHelper,
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history_file_path: PathBuf,
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) -> Result<Self, AnyError> {
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let editor_config = Config::builder()
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.completion_type(CompletionType::List)
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.build();
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let mut editor =
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Editor::with_config(editor_config).expect("Failed to create editor.");
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editor.set_helper(Some(helper));
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editor.load_history(&history_file_path).unwrap_or(());
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editor.bind_sequence(
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KeyEvent(KeyCode::Char('s'), Modifiers::CTRL),
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EventHandler::Simple(Cmd::Newline),
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);
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editor.bind_sequence(
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KeyEvent(KeyCode::Tab, Modifiers::NONE),
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EventHandler::Conditional(Box::new(TabEventHandler)),
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);
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let should_exit_on_interrupt = Arc::new(AtomicBool::new(false));
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editor.bind_sequence(
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KeyEvent(KeyCode::Char('r'), Modifiers::CTRL),
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EventHandler::Conditional(Box::new(ReverseSearchHistoryEventHandler {
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should_exit_on_interrupt: should_exit_on_interrupt.clone(),
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})),
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);
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let history_file_dir = history_file_path.parent().unwrap();
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std::fs::create_dir_all(history_file_dir).with_context(|| {
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format!(
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"Unable to create directory for the history file: {}",
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history_file_dir.display()
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)
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})?;
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Ok(ReplEditor {
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inner: Arc::new(Mutex::new(editor)),
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history_file_path,
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errored_on_history_save: Arc::new(AtomicBool::new(false)),
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should_exit_on_interrupt,
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})
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}
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pub fn readline(&self) -> Result<String, ReadlineError> {
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self.inner.lock().readline("> ")
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}
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pub fn update_history(&self, entry: String) {
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self.inner.lock().add_history_entry(entry);
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if let Err(e) = self.inner.lock().append_history(&self.history_file_path) {
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if self.errored_on_history_save.load(Relaxed) {
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return;
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}
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self.errored_on_history_save.store(true, Relaxed);
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eprintln!("Unable to save history file: {}", e);
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}
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}
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pub fn should_exit_on_interrupt(&self) -> bool {
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self.should_exit_on_interrupt.load(Relaxed)
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}
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pub fn set_should_exit_on_interrupt(&self, yes: bool) {
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self.should_exit_on_interrupt.store(yes, Relaxed);
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}
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}
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/// Command to reverse search history , same as rustyline default C-R but that resets repl should_exit flag to false
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struct ReverseSearchHistoryEventHandler {
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should_exit_on_interrupt: Arc<AtomicBool>,
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}
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impl ConditionalEventHandler for ReverseSearchHistoryEventHandler {
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fn handle(
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&self,
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_: &Event,
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_: RepeatCount,
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_: bool,
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_: &EventContext,
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) -> Option<Cmd> {
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self.should_exit_on_interrupt.store(false, Relaxed);
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Some(Cmd::ReverseSearchHistory)
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}
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}
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/// A custom tab key event handler
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/// It uses a heuristic to determine if the user is requesting completion or if they want to insert an actual tab
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/// The heuristic goes like this:
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/// - If the last character before the cursor is whitespace, the the user wants to insert a tab
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/// - Else the user is requesting completion
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struct TabEventHandler;
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impl ConditionalEventHandler for TabEventHandler {
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fn handle(
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&self,
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evt: &Event,
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n: RepeatCount,
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_: bool,
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ctx: &EventContext,
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) -> Option<Cmd> {
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debug_assert_eq!(
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*evt,
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Event::from(KeyEvent(KeyCode::Tab, Modifiers::NONE))
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);
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if ctx.line().is_empty()
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|| ctx.line()[..ctx.pos()]
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.chars()
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.rev()
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.next()
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.filter(|c| c.is_whitespace())
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.is_some()
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{
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if cfg!(target_os = "windows") {
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// Inserting a tab is broken in windows with rustyline
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// use 4 spaces as a workaround for now
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Some(Cmd::Insert(n, " ".into()))
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} else {
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Some(Cmd::Insert(n, "\t".into()))
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}
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} else {
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None // default complete
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}
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}
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}
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