9164: internal: Reduce the number of direct fields in `CompletionContext` some more r=Veykril a=Veykril

Doesn't make the code much simpler yet.
bors r+

Co-authored-by: Lukas Wirth <lukastw97@gmail.com>
This commit is contained in:
bors[bot] 2021-06-07 12:17:28 +00:00 committed by GitHub
commit 8b6c3eaaeb
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12 changed files with 108 additions and 75 deletions

View file

@ -4,7 +4,7 @@ use either::Either;
use hir::{HasVisibility, ScopeDef};
use rustc_hash::FxHashSet;
use crate::{context::CompletionContext, Completions};
use crate::{context::CompletionContext, patterns::ImmediateLocation, Completions};
/// Complete dot accesses, i.e. fields or methods.
pub(crate) fn complete_dot(acc: &mut Completions, ctx: &CompletionContext) {
@ -18,7 +18,7 @@ pub(crate) fn complete_dot(acc: &mut Completions, ctx: &CompletionContext) {
_ => return,
};
if ctx.is_call {
if matches!(ctx.completion_location, Some(ImmediateLocation::MethodCall { .. })) {
cov_mark::hit!(test_no_struct_field_completion_for_method_call);
} else {
complete_fields(ctx, &receiver_ty, |field, ty| match field {
@ -33,7 +33,7 @@ fn complete_undotted_self(acc: &mut Completions, ctx: &CompletionContext) {
if !ctx.config.enable_self_on_the_fly {
return;
}
if !ctx.is_trivial_path || ctx.is_path_disallowed() {
if !ctx.is_trivial_path() || ctx.is_path_disallowed() {
return;
}
ctx.scope.process_all_names(&mut |name, def| {

View file

@ -161,13 +161,13 @@ pub(crate) fn position_for_import<'a>(
) -> Option<&'a SyntaxNode> {
Some(match import_candidate {
Some(ImportCandidate::Path(_)) => ctx.name_ref_syntax.as_ref()?.syntax(),
Some(ImportCandidate::TraitAssocItem(_)) => ctx.path_qual.as_ref()?.syntax(),
Some(ImportCandidate::TraitAssocItem(_)) => ctx.path_qual()?.syntax(),
Some(ImportCandidate::TraitMethod(_)) => ctx.dot_receiver()?.syntax(),
None => ctx
.name_ref_syntax
.as_ref()
.map(|name_ref| name_ref.syntax())
.or_else(|| ctx.path_qual.as_ref().map(|path| path.syntax()))
.or_else(|| ctx.path_qual().map(|path| path.syntax()))
.or_else(|| ctx.dot_receiver().map(|expr| expr.syntax()))?,
})
}
@ -190,7 +190,7 @@ fn import_assets(ctx: &CompletionContext, fuzzy_name: String) -> Option<ImportAs
};
let assets_for_path = ImportAssets::for_fuzzy_path(
current_module,
ctx.path_qual.clone(),
ctx.path_qual().cloned(),
fuzzy_name,
&ctx.sema,
approximate_node,

View file

@ -19,11 +19,12 @@ pub(crate) fn complete_use_tree_keyword(acc: &mut Completions, ctx: &CompletionC
};
if ctx.use_item_syntax.is_some() {
if ctx.path_qual.is_none() {
let qual = ctx.path_qual();
if qual.is_none() {
kw_completion("crate::").add_to(acc);
}
kw_completion("self").add_to(acc);
if iter::successors(ctx.path_qual.clone(), |p| p.qualifier())
if iter::successors(qual.cloned(), |p| p.qualifier())
.all(|p| p.segment().and_then(|s| s.super_token()).is_some())
{
kw_completion("super::").add_to(acc);
@ -128,7 +129,7 @@ pub(crate) fn complete_expr_keyword(acc: &mut Completions, ctx: &CompletionConte
}
if ctx.in_loop_body {
if ctx.can_be_stmt {
if ctx.can_be_stmt() {
add_keyword("continue", "continue;");
add_keyword("break", "break;");
} else {
@ -137,7 +138,7 @@ pub(crate) fn complete_expr_keyword(acc: &mut Completions, ctx: &CompletionConte
}
}
if !ctx.is_trivial_path {
if !ctx.is_trivial_path() {
return;
}
let fn_def = match &ctx.function_def {
@ -147,7 +148,7 @@ pub(crate) fn complete_expr_keyword(acc: &mut Completions, ctx: &CompletionConte
add_keyword(
"return",
match (ctx.can_be_stmt, fn_def.ret_type().is_some()) {
match (ctx.can_be_stmt(), fn_def.ret_type().is_some()) {
(true, true) => "return $0;",
(true, false) => "return;",
(false, true) => "return $0",

View file

@ -24,7 +24,7 @@ pub(crate) fn complete_postfix(acc: &mut Completions, ctx: &CompletionContext) {
}
let (dot_receiver, receiver_is_ambiguous_float_literal) = match &ctx.completion_location {
Some(ImmediateLocation::MethodCall { receiver: Some(it) }) => (it, false),
Some(ImmediateLocation::MethodCall { receiver: Some(it), .. }) => (it, false),
Some(ImmediateLocation::FieldAccess {
receiver: Some(it),
receiver_is_ambiguous_float_literal,

View file

@ -10,8 +10,8 @@ pub(crate) fn complete_qualified_path(acc: &mut Completions, ctx: &CompletionCon
if ctx.is_path_disallowed() || ctx.expects_item() {
return;
}
let path = match &ctx.path_qual {
Some(path) => path.clone(),
let path = match ctx.path_qual() {
Some(path) => path,
None => return,
};

View file

@ -14,7 +14,7 @@ fn snippet(ctx: &CompletionContext, cap: SnippetCap, label: &str, snippet: &str)
}
pub(crate) fn complete_expr_snippet(acc: &mut Completions, ctx: &CompletionContext) {
if !(ctx.is_trivial_path && ctx.function_def.is_some()) {
if !(ctx.is_trivial_path() && ctx.function_def.is_some()) {
return;
}
let cap = match ctx.config.snippet_cap {
@ -22,7 +22,7 @@ pub(crate) fn complete_expr_snippet(acc: &mut Completions, ctx: &CompletionConte
None => return,
};
if ctx.can_be_stmt {
if ctx.can_be_stmt() {
snippet(ctx, cap, "pd", "eprintln!(\"$0 = {:?}\", $0);").add_to(acc);
snippet(ctx, cap, "ppd", "eprintln!(\"$0 = {:#?}\", $0);").add_to(acc);
}

View file

@ -5,7 +5,7 @@ use hir::ScopeDef;
use crate::{CompletionContext, Completions};
pub(crate) fn complete_unqualified_path(acc: &mut Completions, ctx: &CompletionContext) {
if !ctx.is_trivial_path {
if !ctx.is_trivial_path() {
return;
}
if ctx.is_path_disallowed() || ctx.expects_item() {

View file

@ -29,6 +29,28 @@ pub(crate) enum PatternRefutability {
Irrefutable,
}
#[derive(Debug)]
pub(crate) struct PathCompletionContext {
/// If this is a call with () already there
call_kind: Option<CallKind>,
/// A single-indent path, like `foo`. `::foo` should not be considered a trivial path.
pub(super) is_trivial_path: bool,
/// If not a trivial path, the prefix (qualifier).
pub(super) path_qual: Option<ast::Path>,
pub(super) is_path_type: bool,
pub(super) has_type_args: bool,
/// `true` if we are a statement or a last expr in the block.
pub(super) can_be_stmt: bool,
/// `true` if we expect an expression at the cursor position.
pub(super) is_expr: bool,
}
#[derive(Copy, Clone, Debug, PartialEq, Eq)]
pub(crate) enum CallKind {
Pat,
Mac,
Expr,
}
/// `CompletionContext` is created early during completion to figure out, where
/// exactly is the cursor, syntax-wise.
#[derive(Debug)]
@ -68,24 +90,9 @@ pub(crate) struct CompletionContext<'a> {
pub(super) prev_sibling: Option<ImmediatePrevSibling>,
pub(super) attribute_under_caret: Option<ast::Attr>,
pub(super) path_context: Option<PathCompletionContext>,
/// FIXME: `ActiveParameter` is string-based, which is very very wrong
pub(super) active_parameter: Option<ActiveParameter>,
/// A single-indent path, like `foo`. `::foo` should not be considered a trivial path.
pub(super) is_trivial_path: bool,
/// If not a trivial path, the prefix (qualifier).
pub(super) path_qual: Option<ast::Path>,
/// `true` if we are a statement or a last expr in the block.
pub(super) can_be_stmt: bool,
/// `true` if we expect an expression at the cursor position.
pub(super) is_expr: bool,
/// If this is a call (method or function) in particular, i.e. the () are already there.
pub(super) is_call: bool,
/// Like `is_call`, but for tuple patterns.
pub(super) is_pattern_call: bool,
/// If this is a macro call, i.e. the () are already there.
pub(super) is_macro_call: bool,
pub(super) is_path_type: bool,
pub(super) has_type_args: bool,
pub(super) locals: Vec<(String, Local)>,
pub(super) previous_token: Option<SyntaxToken>,
@ -149,15 +156,7 @@ impl<'a> CompletionContext<'a> {
is_label_ref: false,
is_param: false,
is_pat_or_const: None,
is_trivial_path: false,
path_qual: None,
can_be_stmt: false,
is_expr: false,
is_call: false,
is_pattern_call: false,
is_macro_call: false,
is_path_type: false,
has_type_args: false,
path_context: None,
previous_token: None,
in_loop_body: false,
completion_location: None,
@ -250,14 +249,14 @@ impl<'a> CompletionContext<'a> {
pub(crate) fn has_dot_receiver(&self) -> bool {
matches!(
&self.completion_location,
Some(ImmediateLocation::FieldAccess { receiver, .. }) | Some(ImmediateLocation::MethodCall { receiver })
Some(ImmediateLocation::FieldAccess { receiver, .. }) | Some(ImmediateLocation::MethodCall { receiver,.. })
if receiver.is_some()
)
}
pub(crate) fn dot_receiver(&self) -> Option<&ast::Expr> {
match &self.completion_location {
Some(ImmediateLocation::MethodCall { receiver })
Some(ImmediateLocation::MethodCall { receiver, .. })
| Some(ImmediateLocation::FieldAccess { receiver, .. }) => receiver.as_ref(),
_ => None,
}
@ -275,11 +274,6 @@ impl<'a> CompletionContext<'a> {
matches!(self.completion_location, Some(ImmediateLocation::ItemList))
}
// fn expects_value(&self) -> bool {
pub(crate) fn expects_expression(&self) -> bool {
self.is_expr
}
pub(crate) fn has_block_expr_parent(&self) -> bool {
matches!(self.completion_location, Some(ImmediateLocation::BlockExpr))
}
@ -316,6 +310,26 @@ impl<'a> CompletionContext<'a> {
) || self.attribute_under_caret.is_some()
}
pub(crate) fn expects_expression(&self) -> bool {
self.path_context.as_ref().map_or(false, |it| it.is_expr)
}
pub(crate) fn path_call_kind(&self) -> Option<CallKind> {
self.path_context.as_ref().and_then(|it| it.call_kind)
}
pub(crate) fn is_trivial_path(&self) -> bool {
self.path_context.as_ref().map_or(false, |it| it.is_trivial_path)
}
pub(crate) fn path_qual(&self) -> Option<&ast::Path> {
self.path_context.as_ref().and_then(|it| it.path_qual.as_ref())
}
pub(crate) fn can_be_stmt(&self) -> bool {
self.path_context.as_ref().map_or(false, |it| it.can_be_stmt)
}
fn fill_impl_def(&mut self) {
self.impl_def = self
.sema
@ -568,22 +582,32 @@ impl<'a> CompletionContext<'a> {
};
if let Some(segment) = ast::PathSegment::cast(parent) {
let path_ctx = self.path_context.get_or_insert(PathCompletionContext {
call_kind: None,
is_trivial_path: false,
path_qual: None,
has_type_args: false,
is_path_type: false,
can_be_stmt: false,
is_expr: false,
});
let path = segment.parent_path();
self.is_call = path
.syntax()
.parent()
.and_then(ast::PathExpr::cast)
.and_then(|it| it.syntax().parent().and_then(ast::CallExpr::cast))
.is_some();
self.is_macro_call = path.syntax().parent().and_then(ast::MacroCall::cast).is_some();
self.is_pattern_call =
path.syntax().parent().and_then(ast::TupleStructPat::cast).is_some();
self.is_path_type = path.syntax().parent().and_then(ast::PathType::cast).is_some();
self.has_type_args = segment.generic_arg_list().is_some();
if let Some(p) = path.syntax().parent() {
path_ctx.call_kind = match_ast! {
match p {
ast::PathExpr(it) => it.syntax().parent().and_then(ast::CallExpr::cast).map(|_| CallKind::Expr),
ast::MacroCall(_it) => Some(CallKind::Mac),
ast::TupleStructPat(_it) => Some(CallKind::Pat),
_ => None
}
};
}
path_ctx.is_path_type = path.syntax().parent().and_then(ast::PathType::cast).is_some();
path_ctx.has_type_args = segment.generic_arg_list().is_some();
if let Some(path) = path_or_use_tree_qualifier(&path) {
self.path_qual = path
path_ctx.path_qual = path
.segment()
.and_then(|it| {
find_node_with_range::<ast::PathSegment>(
@ -601,11 +625,11 @@ impl<'a> CompletionContext<'a> {
}
}
self.is_trivial_path = true;
path_ctx.is_trivial_path = true;
// Find either enclosing expr statement (thing with `;`) or a
// block. If block, check that we are the last expr.
self.can_be_stmt = name_ref
path_ctx.can_be_stmt = name_ref
.syntax()
.ancestors()
.find_map(|node| {
@ -621,10 +645,8 @@ impl<'a> CompletionContext<'a> {
None
})
.unwrap_or(false);
self.is_expr = path.syntax().parent().and_then(ast::PathExpr::cast).is_some();
path_ctx.is_expr = path.syntax().parent().and_then(ast::PathExpr::cast).is_some();
}
self.is_call |=
matches!(self.completion_location, Some(ImmediateLocation::MethodCall { .. }));
}
}

View file

@ -4,7 +4,7 @@ use hir::Semantics;
use ide_db::RootDatabase;
use syntax::{
algo::non_trivia_sibling,
ast::{self, LoopBodyOwner},
ast::{self, ArgListOwner, LoopBodyOwner},
match_ast, AstNode, Direction, SyntaxElement,
SyntaxKind::*,
SyntaxNode, SyntaxToken, TextRange, TextSize, T,
@ -39,6 +39,7 @@ pub(crate) enum ImmediateLocation {
// Original file ast node
MethodCall {
receiver: Option<ast::Expr>,
has_parens: bool,
},
// Original file ast node
FieldAccess {
@ -204,6 +205,7 @@ pub(crate) fn determine_location(
.receiver()
.map(|e| e.syntax().text_range())
.and_then(|r| find_node_with_range(original_file, r)),
has_parens: it.arg_list().map_or(false, |it| it.l_paren_token().is_some())
},
_ => return None,
}

View file

@ -275,8 +275,12 @@ impl<'a> Render<'a> {
};
// Add `<>` for generic types
if self.ctx.completion.is_path_type
&& !self.ctx.completion.has_type_args
if self
.ctx
.completion
.path_context
.as_ref()
.map_or(false, |it| it.is_path_type && !it.has_type_args)
&& self.ctx.completion.config.add_call_parenthesis
{
if let Some(cap) = self.ctx.snippet_cap() {

View file

@ -2,7 +2,7 @@
use itertools::Itertools;
use crate::{item::Builder, CompletionContext};
use crate::{context::CallKind, item::Builder, patterns::ImmediateLocation, CompletionContext};
#[derive(Debug)]
pub(super) enum Params {
@ -32,10 +32,12 @@ impl Builder {
cov_mark::hit!(no_parens_in_use_item);
return false;
}
if ctx.is_pattern_call {
return false;
}
if ctx.is_call {
if matches!(ctx.path_call_kind(), Some(CallKind::Expr) | Some(CallKind::Pat))
| matches!(
ctx.completion_location,
Some(ImmediateLocation::MethodCall { has_parens: true, .. })
)
{
return false;
}

View file

@ -5,6 +5,7 @@ use ide_db::SymbolKind;
use syntax::display::macro_label;
use crate::{
context::CallKind,
item::{CompletionItem, CompletionKind, ImportEdit},
render::RenderContext,
};
@ -68,7 +69,8 @@ impl<'a> MacroRender<'a> {
}
fn needs_bang(&self) -> bool {
self.ctx.completion.use_item_syntax.is_none() && !self.ctx.completion.is_macro_call
self.ctx.completion.use_item_syntax.is_none()
&& !matches!(self.ctx.completion.path_call_kind(), Some(CallKind::Mac))
}
fn label(&self) -> String {