rust-analyzer/crates/ra_lsp_server/src/conv.rs

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//! FIXME: write short doc here
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use lsp_types::{
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self, CreateFile, DiagnosticSeverity, DocumentChangeOperation, DocumentChanges, Documentation,
Location, LocationLink, MarkupContent, MarkupKind, Position, Range, RenameFile, ResourceOp,
SymbolKind, TextDocumentEdit, TextDocumentIdentifier, TextDocumentItem,
TextDocumentPositionParams, Url, VersionedTextDocumentIdentifier, WorkspaceEdit,
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};
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use ra_ide_api::{
translate_offset_with_edit, CompletionItem, CompletionItemKind, FileId, FilePosition,
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FileRange, FileSystemEdit, Fold, FoldKind, InsertTextFormat, LineCol, LineIndex,
NavigationTarget, RangeInfo, Severity, SourceChange, SourceFileEdit,
};
use ra_syntax::{SyntaxKind, TextRange, TextUnit};
use ra_text_edit::{AtomTextEdit, TextEdit};
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use ra_vfs::LineEndings;
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use crate::{req, world::WorldSnapshot, Result};
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pub trait Conv {
type Output;
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fn conv(self) -> Self::Output;
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}
pub trait ConvWith<CTX> {
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type Output;
fn conv_with(self, ctx: CTX) -> Self::Output;
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}
pub trait TryConvWith<CTX> {
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type Output;
fn try_conv_with(self, ctx: CTX) -> Result<Self::Output>;
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}
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impl Conv for SyntaxKind {
type Output = SymbolKind;
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fn conv(self) -> <Self as Conv>::Output {
match self {
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SyntaxKind::FN_DEF => SymbolKind::Function,
SyntaxKind::STRUCT_DEF => SymbolKind::Struct,
SyntaxKind::ENUM_DEF => SymbolKind::Enum,
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SyntaxKind::ENUM_VARIANT => SymbolKind::EnumMember,
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SyntaxKind::TRAIT_DEF => SymbolKind::Interface,
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SyntaxKind::MODULE => SymbolKind::Module,
SyntaxKind::TYPE_ALIAS_DEF => SymbolKind::TypeParameter,
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SyntaxKind::RECORD_FIELD_DEF => SymbolKind::Field,
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SyntaxKind::STATIC_DEF => SymbolKind::Constant,
SyntaxKind::CONST_DEF => SymbolKind::Constant,
SyntaxKind::IMPL_BLOCK => SymbolKind::Object,
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_ => SymbolKind::Variable,
}
}
}
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impl Conv for CompletionItemKind {
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type Output = ::lsp_types::CompletionItemKind;
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fn conv(self) -> <Self as Conv>::Output {
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use lsp_types::CompletionItemKind::*;
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match self {
CompletionItemKind::Keyword => Keyword,
CompletionItemKind::Snippet => Snippet,
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CompletionItemKind::Module => Module,
CompletionItemKind::Function => Function,
CompletionItemKind::Struct => Struct,
CompletionItemKind::Enum => Enum,
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CompletionItemKind::EnumVariant => EnumMember,
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CompletionItemKind::BuiltinType => Struct,
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CompletionItemKind::Binding => Variable,
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CompletionItemKind::Field => Field,
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CompletionItemKind::Trait => Interface,
CompletionItemKind::TypeAlias => Struct,
CompletionItemKind::Const => Constant,
CompletionItemKind::Static => Value,
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CompletionItemKind::Method => Method,
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CompletionItemKind::TypeParam => TypeParameter,
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CompletionItemKind::Macro => Method,
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}
}
}
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impl Conv for Severity {
type Output = DiagnosticSeverity;
fn conv(self) -> DiagnosticSeverity {
match self {
Severity::Error => DiagnosticSeverity::Error,
Severity::WeakWarning => DiagnosticSeverity::Hint,
}
}
}
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impl ConvWith<(&LineIndex, LineEndings)> for CompletionItem {
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type Output = ::lsp_types::CompletionItem;
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fn conv_with(self, ctx: (&LineIndex, LineEndings)) -> ::lsp_types::CompletionItem {
let mut additional_text_edits = Vec::new();
let mut text_edit = None;
// LSP does not allow arbitrary edits in completion, so we have to do a
// non-trivial mapping here.
for atom_edit in self.text_edit().as_atoms() {
if self.source_range().is_subrange(&atom_edit.delete) {
text_edit = Some(if atom_edit.delete == self.source_range() {
atom_edit.conv_with(ctx)
} else {
assert!(self.source_range().end() == atom_edit.delete.end());
let range1 =
TextRange::from_to(atom_edit.delete.start(), self.source_range().start());
let range2 = self.source_range();
let edit1 = AtomTextEdit::replace(range1, String::new());
let edit2 = AtomTextEdit::replace(range2, atom_edit.insert.clone());
additional_text_edits.push(edit1.conv_with(ctx));
edit2.conv_with(ctx)
})
} else {
assert!(self.source_range().intersection(&atom_edit.delete).is_none());
additional_text_edits.push(atom_edit.conv_with(ctx));
}
}
let text_edit = text_edit.unwrap();
let mut res = lsp_types::CompletionItem {
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label: self.label().to_string(),
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detail: self.detail().map(|it| it.to_string()),
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filter_text: Some(self.lookup().to_string()),
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kind: self.kind().map(|it| it.conv()),
text_edit: Some(text_edit),
additional_text_edits: Some(additional_text_edits),
documentation: self.documentation().map(|it| it.conv()),
deprecated: Some(self.deprecated()),
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..Default::default()
};
res.insert_text_format = Some(match self.insert_text_format() {
InsertTextFormat::Snippet => lsp_types::InsertTextFormat::Snippet,
InsertTextFormat::PlainText => lsp_types::InsertTextFormat::PlainText,
});
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res
}
}
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impl ConvWith<&LineIndex> for Position {
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type Output = TextUnit;
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fn conv_with(self, line_index: &LineIndex) -> TextUnit {
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let line_col = LineCol { line: self.line as u32, col_utf16: self.character as u32 };
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line_index.offset(line_col)
}
}
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impl ConvWith<&LineIndex> for TextUnit {
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type Output = Position;
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fn conv_with(self, line_index: &LineIndex) -> Position {
let line_col = line_index.line_col(self);
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Position::new(u64::from(line_col.line), u64::from(line_col.col_utf16))
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}
}
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impl ConvWith<&LineIndex> for TextRange {
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type Output = Range;
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fn conv_with(self, line_index: &LineIndex) -> Range {
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Range::new(self.start().conv_with(line_index), self.end().conv_with(line_index))
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}
}
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impl ConvWith<&LineIndex> for Range {
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type Output = TextRange;
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fn conv_with(self, line_index: &LineIndex) -> TextRange {
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TextRange::from_to(self.start.conv_with(line_index), self.end.conv_with(line_index))
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}
}
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impl Conv for ra_ide_api::Documentation {
type Output = lsp_types::Documentation;
fn conv(self) -> Documentation {
Documentation::MarkupContent(MarkupContent {
kind: MarkupKind::Markdown,
value: crate::markdown::format_docs(self.as_str()),
})
}
}
impl Conv for ra_ide_api::FunctionSignature {
type Output = lsp_types::SignatureInformation;
fn conv(self) -> Self::Output {
use lsp_types::{ParameterInformation, ParameterLabel, SignatureInformation};
let label = self.to_string();
let documentation = self.doc.map(|it| it.conv());
let parameters: Vec<ParameterInformation> = self
.parameters
.into_iter()
.map(|param| ParameterInformation {
label: ParameterLabel::Simple(param),
documentation: None,
})
.collect();
SignatureInformation { label, documentation, parameters: Some(parameters) }
}
}
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impl ConvWith<(&LineIndex, LineEndings)> for TextEdit {
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type Output = Vec<lsp_types::TextEdit>;
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fn conv_with(self, ctx: (&LineIndex, LineEndings)) -> Vec<lsp_types::TextEdit> {
self.as_atoms().iter().map_conv_with(ctx).collect()
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}
}
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impl ConvWith<(&LineIndex, LineEndings)> for &AtomTextEdit {
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type Output = lsp_types::TextEdit;
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fn conv_with(
self,
(line_index, line_endings): (&LineIndex, LineEndings),
) -> lsp_types::TextEdit {
let mut new_text = self.insert.clone();
if line_endings == LineEndings::Dos {
new_text = new_text.replace('\n', "\r\n");
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}
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lsp_types::TextEdit { range: self.delete.conv_with(line_index), new_text }
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}
}
pub(crate) struct FoldConvCtx<'a> {
pub(crate) text: &'a str,
pub(crate) line_index: &'a LineIndex,
pub(crate) line_folding_only: bool,
}
impl ConvWith<&FoldConvCtx<'_>> for Fold {
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type Output = lsp_types::FoldingRange;
fn conv_with(self, ctx: &FoldConvCtx) -> lsp_types::FoldingRange {
let kind = match self.kind {
FoldKind::Comment => Some(lsp_types::FoldingRangeKind::Comment),
FoldKind::Imports => Some(lsp_types::FoldingRangeKind::Imports),
FoldKind::Mods => None,
FoldKind::Block => None,
};
let range = self.range.conv_with(&ctx.line_index);
if ctx.line_folding_only {
// Clients with line_folding_only == true (such as VSCode) will fold the whole end line
// even if it contains text not in the folding range. To prevent that we exclude
// range.end.line from the folding region if there is more text after range.end
// on the same line.
let has_more_text_on_end_line = ctx.text
[TextRange::from_to(self.range.end(), TextUnit::of_str(ctx.text))]
.chars()
.take_while(|it| *it != '\n')
.any(|it| !it.is_whitespace());
let end_line = if has_more_text_on_end_line {
range.end.line.saturating_sub(1)
} else {
range.end.line
};
lsp_types::FoldingRange {
start_line: range.start.line,
start_character: None,
end_line,
end_character: None,
kind,
}
} else {
lsp_types::FoldingRange {
start_line: range.start.line,
start_character: Some(range.start.character),
end_line: range.end.line,
end_character: Some(range.end.character),
kind,
}
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}
}
}
impl<T: ConvWith<CTX>, CTX> ConvWith<CTX> for Option<T> {
type Output = Option<T::Output>;
fn conv_with(self, ctx: CTX) -> Self::Output {
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self.map(|x| ConvWith::conv_with(x, ctx))
}
}
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impl TryConvWith<&WorldSnapshot> for &Url {
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type Output = FileId;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FileId> {
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world.uri_to_file_id(self)
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}
}
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impl TryConvWith<&WorldSnapshot> for FileId {
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type Output = Url;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<Url> {
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world.file_id_to_uri(self)
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}
}
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impl TryConvWith<&WorldSnapshot> for &TextDocumentItem {
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type Output = FileId;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FileId> {
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self.uri.try_conv_with(world)
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}
}
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impl TryConvWith<&WorldSnapshot> for &VersionedTextDocumentIdentifier {
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type Output = FileId;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FileId> {
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self.uri.try_conv_with(world)
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}
}
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impl TryConvWith<&WorldSnapshot> for &TextDocumentIdentifier {
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type Output = FileId;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FileId> {
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world.uri_to_file_id(&self.uri)
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}
}
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impl TryConvWith<&WorldSnapshot> for &TextDocumentPositionParams {
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type Output = FilePosition;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FilePosition> {
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let file_id = self.text_document.try_conv_with(world)?;
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let line_index = world.analysis().file_line_index(file_id)?;
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let offset = self.position.conv_with(&line_index);
Ok(FilePosition { file_id, offset })
}
}
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impl TryConvWith<&WorldSnapshot> for (&TextDocumentIdentifier, Range) {
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type Output = FileRange;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<FileRange> {
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let file_id = self.0.try_conv_with(world)?;
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let line_index = world.analysis().file_line_index(file_id)?;
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let range = self.1.conv_with(&line_index);
Ok(FileRange { file_id, range })
}
}
impl<T: TryConvWith<CTX>, CTX: Copy> TryConvWith<CTX> for Vec<T> {
type Output = Vec<<T as TryConvWith<CTX>>::Output>;
fn try_conv_with(self, ctx: CTX) -> Result<Self::Output> {
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let mut res = Vec::with_capacity(self.len());
for item in self {
res.push(item.try_conv_with(ctx)?);
}
Ok(res)
}
}
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impl TryConvWith<&WorldSnapshot> for SourceChange {
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type Output = req::SourceChange;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<req::SourceChange> {
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let cursor_position = match self.cursor_position {
None => None,
Some(pos) => {
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let line_index = world.analysis().file_line_index(pos.file_id)?;
let edit = self
.source_file_edits
.iter()
.find(|it| it.file_id == pos.file_id)
.map(|it| &it.edit);
let line_col = match edit {
Some(edit) => translate_offset_with_edit(&*line_index, pos.offset, edit),
None => line_index.line_col(pos.offset),
};
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let position =
Position::new(u64::from(line_col.line), u64::from(line_col.col_utf16));
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Some(TextDocumentPositionParams {
text_document: TextDocumentIdentifier::new(pos.file_id.try_conv_with(world)?),
position,
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})
}
};
let mut document_changes: Vec<DocumentChangeOperation> = Vec::new();
for resource_op in self.file_system_edits.try_conv_with(world)? {
document_changes.push(DocumentChangeOperation::Op(resource_op));
}
for text_document_edit in self.source_file_edits.try_conv_with(world)? {
document_changes.push(DocumentChangeOperation::Edit(text_document_edit));
}
let workspace_edit = WorkspaceEdit {
changes: None,
document_changes: Some(DocumentChanges::Operations(document_changes)),
};
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Ok(req::SourceChange { label: self.label, workspace_edit, cursor_position })
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}
}
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impl TryConvWith<&WorldSnapshot> for SourceFileEdit {
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type Output = TextDocumentEdit;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<TextDocumentEdit> {
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let text_document = VersionedTextDocumentIdentifier {
uri: self.file_id.try_conv_with(world)?,
version: None,
};
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let line_index = world.analysis().file_line_index(self.file_id)?;
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let line_endings = world.file_line_endings(self.file_id);
let edits =
self.edit.as_atoms().iter().map_conv_with((&line_index, line_endings)).collect();
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Ok(TextDocumentEdit { text_document, edits })
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}
}
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impl TryConvWith<&WorldSnapshot> for FileSystemEdit {
type Output = ResourceOp;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<ResourceOp> {
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let res = match self {
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FileSystemEdit::CreateFile { source_root, path } => {
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let uri = world.path_to_uri(source_root, &path)?;
ResourceOp::Create(CreateFile { uri, options: None })
}
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FileSystemEdit::MoveFile { src, dst_source_root, dst_path } => {
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let old_uri = world.file_id_to_uri(src)?;
let new_uri = world.path_to_uri(dst_source_root, &dst_path)?;
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ResourceOp::Rename(RenameFile { old_uri, new_uri, options: None })
}
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};
Ok(res)
}
}
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impl TryConvWith<&WorldSnapshot> for &NavigationTarget {
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type Output = Location;
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fn try_conv_with(self, world: &WorldSnapshot) -> Result<Location> {
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let line_index = world.analysis().file_line_index(self.file_id())?;
let range = self.range();
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to_location(self.file_id(), range, &world, &line_index)
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}
}
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impl TryConvWith<&WorldSnapshot> for (FileId, RangeInfo<NavigationTarget>) {
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type Output = LocationLink;
fn try_conv_with(self, world: &WorldSnapshot) -> Result<LocationLink> {
let (src_file_id, target) = self;
let target_uri = target.info.file_id().try_conv_with(world)?;
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let src_line_index = world.analysis().file_line_index(src_file_id)?;
let tgt_line_index = world.analysis().file_line_index(target.info.file_id())?;
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let target_range = target.info.full_range().conv_with(&tgt_line_index);
let target_selection_range = target
.info
.focus_range()
.map(|it| it.conv_with(&tgt_line_index))
.unwrap_or(target_range);
let res = LocationLink {
origin_selection_range: Some(target.range.conv_with(&src_line_index)),
target_uri,
target_range,
target_selection_range,
};
Ok(res)
}
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}
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impl TryConvWith<&WorldSnapshot> for (FileId, RangeInfo<Vec<NavigationTarget>>) {
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type Output = req::GotoDefinitionResponse;
fn try_conv_with(self, world: &WorldSnapshot) -> Result<req::GotoTypeDefinitionResponse> {
let (file_id, RangeInfo { range, info: navs }) = self;
let links = navs
.into_iter()
.map(|nav| (file_id, RangeInfo::new(range, nav)))
.try_conv_with_to_vec(world)?;
if world.options.supports_location_link {
Ok(links.into())
} else {
let locations: Vec<Location> = links
.into_iter()
.map(|link| Location { uri: link.target_uri, range: link.target_selection_range })
.collect();
Ok(locations.into())
}
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}
}
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pub fn to_location(
file_id: FileId,
range: TextRange,
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world: &WorldSnapshot,
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line_index: &LineIndex,
) -> Result<Location> {
let url = file_id.try_conv_with(world)?;
let loc = Location::new(url, range.conv_with(line_index));
Ok(loc)
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}
pub trait MapConvWith<CTX>: Sized {
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type Output;
fn map_conv_with(self, ctx: CTX) -> ConvWithIter<Self, CTX> {
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ConvWithIter { iter: self, ctx }
}
}
impl<CTX, I> MapConvWith<CTX> for I
where
I: Iterator,
I::Item: ConvWith<CTX>,
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{
type Output = <I::Item as ConvWith<CTX>>::Output;
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}
pub struct ConvWithIter<I, CTX> {
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iter: I,
ctx: CTX,
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}
impl<I, CTX> Iterator for ConvWithIter<I, CTX>
where
I: Iterator,
I::Item: ConvWith<CTX>,
CTX: Copy,
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{
type Item = <I::Item as ConvWith<CTX>>::Output;
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fn next(&mut self) -> Option<Self::Item> {
self.iter.next().map(|item| item.conv_with(self.ctx))
}
}
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pub trait TryConvWithToVec<CTX>: Sized {
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type Output;
fn try_conv_with_to_vec(self, ctx: CTX) -> Result<Vec<Self::Output>>;
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}
impl<I, CTX> TryConvWithToVec<CTX> for I
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where
I: Iterator,
I::Item: TryConvWith<CTX>,
CTX: Copy,
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{
type Output = <I::Item as TryConvWith<CTX>>::Output;
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fn try_conv_with_to_vec(self, ctx: CTX) -> Result<Vec<Self::Output>> {
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self.map(|it| it.try_conv_with(ctx)).collect()
}
}
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#[cfg(test)]
mod tests {
use super::*;
use test_utils::extract_ranges;
#[test]
fn conv_fold_line_folding_only_fixup() {
let text = r#"<fold>mod a;
mod b;
mod c;</fold>
fn main() <fold>{
if cond <fold>{
a::do_a();
}</fold> else <fold>{
b::do_b();
}</fold>
}</fold>"#;
let (ranges, text) = extract_ranges(text, "fold");
assert_eq!(ranges.len(), 4);
let folds = vec![
Fold { range: ranges[0], kind: FoldKind::Mods },
Fold { range: ranges[1], kind: FoldKind::Block },
Fold { range: ranges[2], kind: FoldKind::Block },
Fold { range: ranges[3], kind: FoldKind::Block },
];
let line_index = LineIndex::new(&text);
let ctx = FoldConvCtx { text: &text, line_index: &line_index, line_folding_only: true };
let converted: Vec<_> = folds.into_iter().map_conv_with(&ctx).collect();
let expected_lines = [(0, 2), (4, 10), (5, 6), (7, 9)];
assert_eq!(converted.len(), expected_lines.len());
for (folding_range, (start_line, end_line)) in converted.iter().zip(expected_lines.iter()) {
assert_eq!(folding_range.start_line, *start_line);
assert_eq!(folding_range.start_character, None);
assert_eq!(folding_range.end_line, *end_line);
assert_eq!(folding_range.end_character, None);
}
}
}