nushell/crates/nu-cli/src/syntax_highlight.rs

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Rust
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use log::trace;
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use nu_ansi_term::Style;
use nu_color_config::{get_matching_brackets_style, get_shape_color};
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use nu_parser::{flatten_block, parse, FlatShape};
use nu_protocol::ast::{Argument, Block, Expr, Expression, PipelineElement};
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use nu_protocol::engine::{EngineState, StateWorkingSet};
use nu_protocol::{Config, Span};
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use reedline::{Highlighter, StyledText};
use std::sync::Arc;
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pub struct NuHighlighter {
pub engine_state: Arc<EngineState>,
pub config: Config,
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}
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impl Highlighter for NuHighlighter {
fn highlight(&self, line: &str, _cursor: usize) -> StyledText {
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trace!("highlighting: {}", line);
let mut working_set = StateWorkingSet::new(&self.engine_state);
let block = {
let (block, _) = parse(&mut working_set, None, line.as_bytes(), false, &[]);
block
};
let (shapes, global_span_offset) = {
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let shapes = flatten_block(&working_set, &block);
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(shapes, self.engine_state.next_span_start())
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};
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let mut output = StyledText::default();
let mut last_seen_span = global_span_offset;
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let global_cursor_offset = _cursor + global_span_offset;
let matching_brackets_pos = find_matching_brackets(
line,
&working_set,
&block,
global_span_offset,
global_cursor_offset,
);
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for shape in &shapes {
if shape.0.end <= last_seen_span
|| last_seen_span < global_span_offset
|| shape.0.start < global_span_offset
{
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// We've already output something for this span
// so just skip this one
continue;
}
if shape.0.start > last_seen_span {
let gap = line
[(last_seen_span - global_span_offset)..(shape.0.start - global_span_offset)]
.to_string();
output.push((Style::new(), gap));
}
let next_token = line
[(shape.0.start - global_span_offset)..(shape.0.end - global_span_offset)]
.to_string();
macro_rules! add_colored_token_with_bracket_highlight {
($shape:expr, $span:expr, $text:expr) => {{
let spans = split_span_by_highlight_positions(
line,
&$span,
&matching_brackets_pos,
global_span_offset,
);
spans.iter().for_each(|(part, highlight)| {
let start = part.start - $span.start;
let end = part.end - $span.start;
let text = (&next_token[start..end]).to_string();
let mut style = get_shape_color($shape.to_string(), &self.config);
if *highlight {
style = get_matching_brackets_style(style, &self.config);
}
output.push((style, text));
});
}};
}
macro_rules! add_colored_token {
($shape:expr, $text:expr) => {
output.push((get_shape_color($shape.to_string(), &self.config), $text))
};
}
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match shape.1 {
FlatShape::Garbage => add_colored_token!(shape.1, next_token),
FlatShape::Nothing => add_colored_token!(shape.1, next_token),
FlatShape::Binary => add_colored_token!(shape.1, next_token),
FlatShape::Bool => add_colored_token!(shape.1, next_token),
FlatShape::Int => add_colored_token!(shape.1, next_token),
FlatShape::Float => add_colored_token!(shape.1, next_token),
FlatShape::Range => add_colored_token!(shape.1, next_token),
FlatShape::InternalCall => add_colored_token!(shape.1, next_token),
FlatShape::External => add_colored_token!(shape.1, next_token),
FlatShape::ExternalArg => add_colored_token!(shape.1, next_token),
FlatShape::Literal => add_colored_token!(shape.1, next_token),
FlatShape::Operator => add_colored_token!(shape.1, next_token),
FlatShape::Signature => add_colored_token!(shape.1, next_token),
FlatShape::String => add_colored_token!(shape.1, next_token),
FlatShape::StringInterpolation => add_colored_token!(shape.1, next_token),
FlatShape::DateTime => add_colored_token!(shape.1, next_token),
FlatShape::List => {
add_colored_token_with_bracket_highlight!(shape.1, shape.0, next_token)
}
FlatShape::Table => {
add_colored_token_with_bracket_highlight!(shape.1, shape.0, next_token)
}
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FlatShape::Record => {
add_colored_token_with_bracket_highlight!(shape.1, shape.0, next_token)
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}
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FlatShape::Block => {
add_colored_token_with_bracket_highlight!(shape.1, shape.0, next_token)
}
FlatShape::Filepath => add_colored_token!(shape.1, next_token),
FlatShape::Directory => add_colored_token!(shape.1, next_token),
FlatShape::GlobPattern => add_colored_token!(shape.1, next_token),
FlatShape::Variable => add_colored_token!(shape.1, next_token),
FlatShape::Flag => add_colored_token!(shape.1, next_token),
FlatShape::Pipe => add_colored_token!(shape.1, next_token),
FlatShape::And => add_colored_token!(shape.1, next_token),
FlatShape::Or => add_colored_token!(shape.1, next_token),
FlatShape::Redirection => add_colored_token!(shape.1, next_token),
FlatShape::Custom(..) => add_colored_token!(shape.1, next_token),
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}
last_seen_span = shape.0.end;
}
let remainder = line[(last_seen_span - global_span_offset)..].to_string();
if !remainder.is_empty() {
output.push((Style::new(), remainder));
}
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output
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}
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}
fn split_span_by_highlight_positions(
line: &str,
span: &Span,
highlight_positions: &Vec<usize>,
global_span_offset: usize,
) -> Vec<(Span, bool)> {
let mut start = span.start;
let mut result: Vec<(Span, bool)> = Vec::new();
for pos in highlight_positions {
if start <= *pos && pos < &span.end {
if start < *pos {
Protocol: debug_assert!() Span to reflect a valid slice (#6806) Also enforce this by #[non_exhaustive] span such that going forward we cannot, in debug builds (1), construct invalid spans. The motivation for this stems from #6431 where I've seen crashes due to invalid slice indexing. My hope is this will mitigate such senarios 1. https://github.com/nushell/nushell/pull/6431#issuecomment-1278147241 # Description (description of your pull request here) # Tests Make sure you've done the following: - [ ] Add tests that cover your changes, either in the command examples, the crate/tests folder, or in the /tests folder. - [ ] Try to think about corner cases and various ways how your changes could break. Cover them with tests. - [ ] If adding tests is not possible, please document in the PR body a minimal example with steps on how to reproduce so one can verify your change works. Make sure you've run and fixed any issues with these commands: - [x] `cargo fmt --all -- --check` to check standard code formatting (`cargo fmt --all` applies these changes) - [ ] `cargo clippy --workspace --features=extra -- -D warnings -D clippy::unwrap_used -A clippy::needless_collect` to check that you're using the standard code style - [ ] `cargo test --workspace --features=extra` to check that all the tests pass # Documentation - [ ] If your PR touches a user-facing nushell feature then make sure that there is an entry in the documentation (https://github.com/nushell/nushell.github.io) for the feature, and update it if necessary.
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result.push((Span::new(start, *pos), false));
}
let span_str = &line[pos - global_span_offset..span.end - global_span_offset];
let end = span_str
.chars()
.next()
.map(|c| pos + get_char_length(c))
.unwrap_or(pos + 1);
Protocol: debug_assert!() Span to reflect a valid slice (#6806) Also enforce this by #[non_exhaustive] span such that going forward we cannot, in debug builds (1), construct invalid spans. The motivation for this stems from #6431 where I've seen crashes due to invalid slice indexing. My hope is this will mitigate such senarios 1. https://github.com/nushell/nushell/pull/6431#issuecomment-1278147241 # Description (description of your pull request here) # Tests Make sure you've done the following: - [ ] Add tests that cover your changes, either in the command examples, the crate/tests folder, or in the /tests folder. - [ ] Try to think about corner cases and various ways how your changes could break. Cover them with tests. - [ ] If adding tests is not possible, please document in the PR body a minimal example with steps on how to reproduce so one can verify your change works. Make sure you've run and fixed any issues with these commands: - [x] `cargo fmt --all -- --check` to check standard code formatting (`cargo fmt --all` applies these changes) - [ ] `cargo clippy --workspace --features=extra -- -D warnings -D clippy::unwrap_used -A clippy::needless_collect` to check that you're using the standard code style - [ ] `cargo test --workspace --features=extra` to check that all the tests pass # Documentation - [ ] If your PR touches a user-facing nushell feature then make sure that there is an entry in the documentation (https://github.com/nushell/nushell.github.io) for the feature, and update it if necessary.
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result.push((Span::new(*pos, end), true));
start = end;
}
}
if start < span.end {
Protocol: debug_assert!() Span to reflect a valid slice (#6806) Also enforce this by #[non_exhaustive] span such that going forward we cannot, in debug builds (1), construct invalid spans. The motivation for this stems from #6431 where I've seen crashes due to invalid slice indexing. My hope is this will mitigate such senarios 1. https://github.com/nushell/nushell/pull/6431#issuecomment-1278147241 # Description (description of your pull request here) # Tests Make sure you've done the following: - [ ] Add tests that cover your changes, either in the command examples, the crate/tests folder, or in the /tests folder. - [ ] Try to think about corner cases and various ways how your changes could break. Cover them with tests. - [ ] If adding tests is not possible, please document in the PR body a minimal example with steps on how to reproduce so one can verify your change works. Make sure you've run and fixed any issues with these commands: - [x] `cargo fmt --all -- --check` to check standard code formatting (`cargo fmt --all` applies these changes) - [ ] `cargo clippy --workspace --features=extra -- -D warnings -D clippy::unwrap_used -A clippy::needless_collect` to check that you're using the standard code style - [ ] `cargo test --workspace --features=extra` to check that all the tests pass # Documentation - [ ] If your PR touches a user-facing nushell feature then make sure that there is an entry in the documentation (https://github.com/nushell/nushell.github.io) for the feature, and update it if necessary.
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result.push((Span::new(start, span.end), false));
}
result
}
fn find_matching_brackets(
line: &str,
working_set: &StateWorkingSet,
block: &Block,
global_span_offset: usize,
global_cursor_offset: usize,
) -> Vec<usize> {
const BRACKETS: &str = "{}[]()";
// calculate first bracket position
let global_end_offset = line.len() + global_span_offset;
let global_bracket_pos =
if global_cursor_offset == global_end_offset && global_end_offset > global_span_offset {
// cursor is at the end of a non-empty string -- find block end at the previous position
if let Some(last_char) = line.chars().last() {
global_cursor_offset - get_char_length(last_char)
} else {
global_cursor_offset
}
} else {
// cursor is in the middle of a string -- find block end at the current position
global_cursor_offset
};
// check that position contains bracket
let match_idx = global_bracket_pos - global_span_offset;
if match_idx >= line.len()
|| !BRACKETS.contains(get_char_at_index(line, match_idx).unwrap_or_default())
{
return Vec::new();
}
// find matching bracket by finding matching block end
let matching_block_end = find_matching_block_end_in_block(
line,
working_set,
block,
global_span_offset,
global_bracket_pos,
);
if let Some(pos) = matching_block_end {
let matching_idx = pos - global_span_offset;
if BRACKETS.contains(get_char_at_index(line, matching_idx).unwrap_or_default()) {
return if global_bracket_pos < pos {
vec![global_bracket_pos, pos]
} else {
vec![pos, global_bracket_pos]
};
}
}
Vec::new()
}
fn find_matching_block_end_in_block(
line: &str,
working_set: &StateWorkingSet,
block: &Block,
global_span_offset: usize,
global_cursor_offset: usize,
) -> Option<usize> {
for p in &block.pipelines {
for e in &p.elements {
match e {
PipelineElement::Expression(_, e)
| PipelineElement::Redirection(_, _, e)
| PipelineElement::And(_, e)
| PipelineElement::Or(_, e) => {
if e.span.contains(global_cursor_offset) {
if let Some(pos) = find_matching_block_end_in_expr(
line,
working_set,
e,
global_span_offset,
global_cursor_offset,
) {
return Some(pos);
}
}
}
}
}
}
None
}
fn find_matching_block_end_in_expr(
line: &str,
working_set: &StateWorkingSet,
expression: &Expression,
global_span_offset: usize,
global_cursor_offset: usize,
) -> Option<usize> {
macro_rules! find_in_expr_or_continue {
($inner_expr:ident) => {
if let Some(pos) = find_matching_block_end_in_expr(
line,
working_set,
$inner_expr,
global_span_offset,
global_cursor_offset,
) {
return Some(pos);
}
};
}
if expression.span.contains(global_cursor_offset) && expression.span.start >= global_span_offset
{
let expr_first = expression.span.start;
let span_str = &line
[expression.span.start - global_span_offset..expression.span.end - global_span_offset];
let expr_last = span_str
.chars()
.last()
.map(|c| expression.span.end - get_char_length(c))
.unwrap_or(expression.span.start);
return match &expression.expr {
Expr::Bool(_) => None,
Expr::Int(_) => None,
Expr::Float(_) => None,
Expr::Binary(_) => None,
Expr::Range(..) => None,
Expr::Var(_) => None,
Expr::VarDecl(_) => None,
Expr::ExternalCall(..) => None,
Expr::Operator(_) => None,
Expr::UnaryNot(_) => None,
Expr::Keyword(..) => None,
Expr::ValueWithUnit(..) => None,
Expr::DateTime(_) => None,
Expr::Filepath(_) => None,
Expr::Directory(_) => None,
Expr::GlobPattern(_) => None,
Expr::String(_) => None,
Expr::CellPath(_) => None,
Expr::ImportPattern(_) => None,
Expr::Overlay(_) => None,
Expr::Signature(_) => None,
Expr::Nothing => None,
Expr::Garbage => None,
Expr::Table(hdr, rows) => {
if expr_last == global_cursor_offset {
// cursor is at table end
Some(expr_first)
} else if expr_first == global_cursor_offset {
// cursor is at table start
Some(expr_last)
} else {
// cursor is inside table
for inner_expr in hdr {
find_in_expr_or_continue!(inner_expr);
}
for row in rows {
for inner_expr in row {
find_in_expr_or_continue!(inner_expr);
}
}
None
}
}
Expr::Record(exprs) => {
if expr_last == global_cursor_offset {
// cursor is at record end
Some(expr_first)
} else if expr_first == global_cursor_offset {
// cursor is at record start
Some(expr_last)
} else {
// cursor is inside record
for (k, v) in exprs {
find_in_expr_or_continue!(k);
find_in_expr_or_continue!(v);
}
None
}
}
Expr::Call(call) => {
for arg in &call.arguments {
let opt_expr = match arg {
Argument::Named((_, _, opt_expr)) => opt_expr.as_ref(),
Argument::Positional(inner_expr) => Some(inner_expr),
Argument::Unknown(inner_expr) => Some(inner_expr),
};
if let Some(inner_expr) = opt_expr {
find_in_expr_or_continue!(inner_expr);
}
}
None
}
Expr::FullCellPath(b) => find_matching_block_end_in_expr(
line,
working_set,
&b.head,
global_span_offset,
global_cursor_offset,
),
Expr::BinaryOp(lhs, op, rhs) => {
find_in_expr_or_continue!(lhs);
find_in_expr_or_continue!(op);
find_in_expr_or_continue!(rhs);
None
}
Expr::Block(block_id)
| Expr::Closure(block_id)
| Expr::RowCondition(block_id)
| Expr::Subexpression(block_id) => {
if expr_last == global_cursor_offset {
// cursor is at block end
Some(expr_first)
} else if expr_first == global_cursor_offset {
// cursor is at block start
Some(expr_last)
} else {
// cursor is inside block
let nested_block = working_set.get_block(*block_id);
find_matching_block_end_in_block(
line,
working_set,
nested_block,
global_span_offset,
global_cursor_offset,
)
}
}
Expr::StringInterpolation(inner_expr) => {
for inner_expr in inner_expr {
find_in_expr_or_continue!(inner_expr);
}
None
}
Expr::List(inner_expr) => {
if expr_last == global_cursor_offset {
// cursor is at list end
Some(expr_first)
} else if expr_first == global_cursor_offset {
// cursor is at list start
Some(expr_last)
} else {
// cursor is inside list
for inner_expr in inner_expr {
find_in_expr_or_continue!(inner_expr);
}
None
}
}
};
}
None
}
fn get_char_at_index(s: &str, index: usize) -> Option<char> {
s[index..].chars().next()
}
fn get_char_length(c: char) -> usize {
c.to_string().len()
}