1 //! Contains `ParseSess` which holds state living beyond what one `Parser` might.
2 //! It also serves as an input to the parser itself.
3
4 use crate::config::CheckCfg;
5 use crate::errors::{FeatureDiagnosticForIssue, FeatureDiagnosticHelp, FeatureGateError};
6 use crate::lint::{
7 builtin::UNSTABLE_SYNTAX_PRE_EXPANSION, BufferedEarlyLint, BuiltinLintDiagnostics, Lint, LintId,
8 };
9 use rustc_ast::node_id::NodeId;
10 use rustc_data_structures::fx::{FxHashMap, FxHashSet, FxIndexSet};
11 use rustc_data_structures::sync::{AppendOnlyVec, AtomicBool, Lock, Lrc};
12 use rustc_errors::{emitter::SilentEmitter, ColorConfig, Handler};
13 use rustc_errors::{
14 fallback_fluent_bundle, Diagnostic, DiagnosticBuilder, DiagnosticId, DiagnosticMessage,
15 EmissionGuarantee, ErrorGuaranteed, IntoDiagnostic, MultiSpan, Noted, StashKey,
16 };
17 use rustc_feature::{find_feature_issue, GateIssue, UnstableFeatures};
18 use rustc_span::edition::Edition;
19 use rustc_span::hygiene::ExpnId;
20 use rustc_span::source_map::{FilePathMapping, SourceMap};
21 use rustc_span::{Span, Symbol};
22
23 use rustc_ast::attr::AttrIdGenerator;
24 use std::str;
25
26 /// The set of keys (and, optionally, values) that define the compilation
27 /// environment of the crate, used to drive conditional compilation.
28 pub type CrateConfig = FxIndexSet<(Symbol, Option<Symbol>)>;
29 pub type CrateCheckConfig = CheckCfg<Symbol>;
30
31 /// Collected spans during parsing for places where a certain feature was
32 /// used and should be feature gated accordingly in `check_crate`.
33 #[derive(Default)]
34 pub struct GatedSpans {
35 pub spans: Lock<FxHashMap<Symbol, Vec<Span>>>,
36 }
37
38 impl GatedSpans {
39 /// Feature gate the given `span` under the given `feature`
40 /// which is same `Symbol` used in `active.rs`.
gate(&self, feature: Symbol, span: Span)41 pub fn gate(&self, feature: Symbol, span: Span) {
42 self.spans.borrow_mut().entry(feature).or_default().push(span);
43 }
44
45 /// Ungate the last span under the given `feature`.
46 /// Panics if the given `span` wasn't the last one.
47 ///
48 /// Using this is discouraged unless you have a really good reason to.
ungate_last(&self, feature: Symbol, span: Span)49 pub fn ungate_last(&self, feature: Symbol, span: Span) {
50 let removed_span = self.spans.borrow_mut().entry(feature).or_default().pop().unwrap();
51 debug_assert_eq!(span, removed_span);
52 }
53
54 /// Prepend the given set of `spans` onto the set in `self`.
merge(&self, mut spans: FxHashMap<Symbol, Vec<Span>>)55 pub fn merge(&self, mut spans: FxHashMap<Symbol, Vec<Span>>) {
56 let mut inner = self.spans.borrow_mut();
57 for (gate, mut gate_spans) in inner.drain() {
58 spans.entry(gate).or_default().append(&mut gate_spans);
59 }
60 *inner = spans;
61 }
62 }
63
64 #[derive(Default)]
65 pub struct SymbolGallery {
66 /// All symbols occurred and their first occurrence span.
67 pub symbols: Lock<FxHashMap<Symbol, Span>>,
68 }
69
70 impl SymbolGallery {
71 /// Insert a symbol and its span into symbol gallery.
72 /// If the symbol has occurred before, ignore the new occurrence.
insert(&self, symbol: Symbol, span: Span)73 pub fn insert(&self, symbol: Symbol, span: Span) {
74 self.symbols.lock().entry(symbol).or_insert(span);
75 }
76 }
77
78 /// Construct a diagnostic for a language feature error due to the given `span`.
79 /// The `feature`'s `Symbol` is the one you used in `active.rs` and `rustc_span::symbols`.
80 #[track_caller]
feature_err( sess: &ParseSess, feature: Symbol, span: impl Into<MultiSpan>, explain: impl Into<DiagnosticMessage>, ) -> DiagnosticBuilder<'_, ErrorGuaranteed>81 pub fn feature_err(
82 sess: &ParseSess,
83 feature: Symbol,
84 span: impl Into<MultiSpan>,
85 explain: impl Into<DiagnosticMessage>,
86 ) -> DiagnosticBuilder<'_, ErrorGuaranteed> {
87 feature_err_issue(sess, feature, span, GateIssue::Language, explain)
88 }
89
90 /// Construct a diagnostic for a feature gate error.
91 ///
92 /// This variant allows you to control whether it is a library or language feature.
93 /// Almost always, you want to use this for a language feature. If so, prefer `feature_err`.
94 #[track_caller]
feature_err_issue( sess: &ParseSess, feature: Symbol, span: impl Into<MultiSpan>, issue: GateIssue, explain: impl Into<DiagnosticMessage>, ) -> DiagnosticBuilder<'_, ErrorGuaranteed>95 pub fn feature_err_issue(
96 sess: &ParseSess,
97 feature: Symbol,
98 span: impl Into<MultiSpan>,
99 issue: GateIssue,
100 explain: impl Into<DiagnosticMessage>,
101 ) -> DiagnosticBuilder<'_, ErrorGuaranteed> {
102 let span = span.into();
103
104 // Cancel an earlier warning for this same error, if it exists.
105 if let Some(span) = span.primary_span() {
106 if let Some(err) = sess.span_diagnostic.steal_diagnostic(span, StashKey::EarlySyntaxWarning)
107 {
108 err.cancel()
109 }
110 }
111
112 let mut err = sess.create_err(FeatureGateError { span, explain: explain.into() });
113 add_feature_diagnostics_for_issue(&mut err, sess, feature, issue);
114 err
115 }
116
117 /// Construct a future incompatibility diagnostic for a feature gate.
118 ///
119 /// This diagnostic is only a warning and *does not cause compilation to fail*.
feature_warn(sess: &ParseSess, feature: Symbol, span: Span, explain: &'static str)120 pub fn feature_warn(sess: &ParseSess, feature: Symbol, span: Span, explain: &'static str) {
121 feature_warn_issue(sess, feature, span, GateIssue::Language, explain);
122 }
123
124 /// Construct a future incompatibility diagnostic for a feature gate.
125 ///
126 /// This diagnostic is only a warning and *does not cause compilation to fail*.
127 ///
128 /// This variant allows you to control whether it is a library or language feature.
129 /// Almost always, you want to use this for a language feature. If so, prefer `feature_warn`.
130 #[allow(rustc::diagnostic_outside_of_impl)]
131 #[allow(rustc::untranslatable_diagnostic)]
feature_warn_issue( sess: &ParseSess, feature: Symbol, span: Span, issue: GateIssue, explain: &'static str, )132 pub fn feature_warn_issue(
133 sess: &ParseSess,
134 feature: Symbol,
135 span: Span,
136 issue: GateIssue,
137 explain: &'static str,
138 ) {
139 let mut err = sess.span_diagnostic.struct_span_warn(span, explain);
140 add_feature_diagnostics_for_issue(&mut err, sess, feature, issue);
141
142 // Decorate this as a future-incompatibility lint as in rustc_middle::lint::struct_lint_level
143 let lint = UNSTABLE_SYNTAX_PRE_EXPANSION;
144 let future_incompatible = lint.future_incompatible.as_ref().unwrap();
145 err.code(DiagnosticId::Lint {
146 name: lint.name_lower(),
147 has_future_breakage: false,
148 is_force_warn: false,
149 });
150 err.warn(lint.desc);
151 err.note(format!("for more information, see {}", future_incompatible.reference));
152
153 // A later feature_err call can steal and cancel this warning.
154 err.stash(span, StashKey::EarlySyntaxWarning);
155 }
156
157 /// Adds the diagnostics for a feature to an existing error.
add_feature_diagnostics(err: &mut Diagnostic, sess: &ParseSess, feature: Symbol)158 pub fn add_feature_diagnostics(err: &mut Diagnostic, sess: &ParseSess, feature: Symbol) {
159 add_feature_diagnostics_for_issue(err, sess, feature, GateIssue::Language);
160 }
161
162 /// Adds the diagnostics for a feature to an existing error.
163 ///
164 /// This variant allows you to control whether it is a library or language feature.
165 /// Almost always, you want to use this for a language feature. If so, prefer
166 /// `add_feature_diagnostics`.
add_feature_diagnostics_for_issue( err: &mut Diagnostic, sess: &ParseSess, feature: Symbol, issue: GateIssue, )167 pub fn add_feature_diagnostics_for_issue(
168 err: &mut Diagnostic,
169 sess: &ParseSess,
170 feature: Symbol,
171 issue: GateIssue,
172 ) {
173 if let Some(n) = find_feature_issue(feature, issue) {
174 err.subdiagnostic(FeatureDiagnosticForIssue { n });
175 }
176
177 // #23973: do not suggest `#![feature(...)]` if we are in beta/stable
178 if sess.unstable_features.is_nightly_build() {
179 err.subdiagnostic(FeatureDiagnosticHelp { feature });
180 }
181 }
182
183 /// Info about a parsing session.
184 pub struct ParseSess {
185 pub span_diagnostic: Handler,
186 pub unstable_features: UnstableFeatures,
187 pub config: CrateConfig,
188 pub check_config: CrateCheckConfig,
189 pub edition: Edition,
190 /// Places where raw identifiers were used. This is used to avoid complaining about idents
191 /// clashing with keywords in new editions.
192 pub raw_identifier_spans: AppendOnlyVec<Span>,
193 /// Places where identifiers that contain invalid Unicode codepoints but that look like they
194 /// should be. Useful to avoid bad tokenization when encountering emoji. We group them to
195 /// provide a single error per unique incorrect identifier.
196 pub bad_unicode_identifiers: Lock<FxHashMap<Symbol, Vec<Span>>>,
197 source_map: Lrc<SourceMap>,
198 pub buffered_lints: Lock<Vec<BufferedEarlyLint>>,
199 /// Contains the spans of block expressions that could have been incomplete based on the
200 /// operation token that followed it, but that the parser cannot identify without further
201 /// analysis.
202 pub ambiguous_block_expr_parse: Lock<FxHashMap<Span, Span>>,
203 pub gated_spans: GatedSpans,
204 pub symbol_gallery: SymbolGallery,
205 /// The parser has reached `Eof` due to an unclosed brace. Used to silence unnecessary errors.
206 pub reached_eof: AtomicBool,
207 /// Environment variables accessed during the build and their values when they exist.
208 pub env_depinfo: Lock<FxHashSet<(Symbol, Option<Symbol>)>>,
209 /// File paths accessed during the build.
210 pub file_depinfo: Lock<FxHashSet<Symbol>>,
211 /// Whether cfg(version) should treat the current release as incomplete
212 pub assume_incomplete_release: bool,
213 /// Spans passed to `proc_macro::quote_span`. Each span has a numerical
214 /// identifier represented by its position in the vector.
215 pub proc_macro_quoted_spans: AppendOnlyVec<Span>,
216 /// Used to generate new `AttrId`s. Every `AttrId` is unique.
217 pub attr_id_generator: AttrIdGenerator,
218 }
219
220 impl ParseSess {
221 /// Used for testing.
new(locale_resources: Vec<&'static str>, file_path_mapping: FilePathMapping) -> Self222 pub fn new(locale_resources: Vec<&'static str>, file_path_mapping: FilePathMapping) -> Self {
223 let fallback_bundle = fallback_fluent_bundle(locale_resources, false);
224 let sm = Lrc::new(SourceMap::new(file_path_mapping));
225 let handler = Handler::with_tty_emitter(
226 ColorConfig::Auto,
227 true,
228 None,
229 Some(sm.clone()),
230 None,
231 fallback_bundle,
232 );
233 ParseSess::with_span_handler(handler, sm)
234 }
235
with_span_handler(handler: Handler, source_map: Lrc<SourceMap>) -> Self236 pub fn with_span_handler(handler: Handler, source_map: Lrc<SourceMap>) -> Self {
237 Self {
238 span_diagnostic: handler,
239 unstable_features: UnstableFeatures::from_environment(None),
240 config: FxIndexSet::default(),
241 check_config: CrateCheckConfig::default(),
242 edition: ExpnId::root().expn_data().edition,
243 raw_identifier_spans: Default::default(),
244 bad_unicode_identifiers: Lock::new(Default::default()),
245 source_map,
246 buffered_lints: Lock::new(vec![]),
247 ambiguous_block_expr_parse: Lock::new(FxHashMap::default()),
248 gated_spans: GatedSpans::default(),
249 symbol_gallery: SymbolGallery::default(),
250 reached_eof: AtomicBool::new(false),
251 env_depinfo: Default::default(),
252 file_depinfo: Default::default(),
253 assume_incomplete_release: false,
254 proc_macro_quoted_spans: Default::default(),
255 attr_id_generator: AttrIdGenerator::new(),
256 }
257 }
258
with_silent_emitter(fatal_note: Option<String>) -> Self259 pub fn with_silent_emitter(fatal_note: Option<String>) -> Self {
260 let fallback_bundle = fallback_fluent_bundle(Vec::new(), false);
261 let sm = Lrc::new(SourceMap::new(FilePathMapping::empty()));
262 let fatal_handler =
263 Handler::with_tty_emitter(ColorConfig::Auto, false, None, None, None, fallback_bundle);
264 let handler = Handler::with_emitter(
265 false,
266 None,
267 Box::new(SilentEmitter { fatal_handler, fatal_note }),
268 );
269 ParseSess::with_span_handler(handler, sm)
270 }
271
272 #[inline]
source_map(&self) -> &SourceMap273 pub fn source_map(&self) -> &SourceMap {
274 &self.source_map
275 }
276
clone_source_map(&self) -> Lrc<SourceMap>277 pub fn clone_source_map(&self) -> Lrc<SourceMap> {
278 self.source_map.clone()
279 }
280
buffer_lint( &self, lint: &'static Lint, span: impl Into<MultiSpan>, node_id: NodeId, msg: impl Into<DiagnosticMessage>, )281 pub fn buffer_lint(
282 &self,
283 lint: &'static Lint,
284 span: impl Into<MultiSpan>,
285 node_id: NodeId,
286 msg: impl Into<DiagnosticMessage>,
287 ) {
288 self.buffered_lints.with_lock(|buffered_lints| {
289 buffered_lints.push(BufferedEarlyLint {
290 span: span.into(),
291 node_id,
292 msg: msg.into(),
293 lint_id: LintId::of(lint),
294 diagnostic: BuiltinLintDiagnostics::Normal,
295 });
296 });
297 }
298
buffer_lint_with_diagnostic( &self, lint: &'static Lint, span: impl Into<MultiSpan>, node_id: NodeId, msg: impl Into<DiagnosticMessage>, diagnostic: BuiltinLintDiagnostics, )299 pub fn buffer_lint_with_diagnostic(
300 &self,
301 lint: &'static Lint,
302 span: impl Into<MultiSpan>,
303 node_id: NodeId,
304 msg: impl Into<DiagnosticMessage>,
305 diagnostic: BuiltinLintDiagnostics,
306 ) {
307 self.buffered_lints.with_lock(|buffered_lints| {
308 buffered_lints.push(BufferedEarlyLint {
309 span: span.into(),
310 node_id,
311 msg: msg.into(),
312 lint_id: LintId::of(lint),
313 diagnostic,
314 });
315 });
316 }
317
save_proc_macro_span(&self, span: Span) -> usize318 pub fn save_proc_macro_span(&self, span: Span) -> usize {
319 self.proc_macro_quoted_spans.push(span)
320 }
321
proc_macro_quoted_spans(&self) -> impl Iterator<Item = (usize, Span)> + '_322 pub fn proc_macro_quoted_spans(&self) -> impl Iterator<Item = (usize, Span)> + '_ {
323 // This is equivalent to `.iter().copied().enumerate()`, but that isn't possible for
324 // AppendOnlyVec, so we resort to this scheme.
325 self.proc_macro_quoted_spans.iter_enumerated()
326 }
327
328 #[track_caller]
create_err<'a>( &'a self, err: impl IntoDiagnostic<'a>, ) -> DiagnosticBuilder<'a, ErrorGuaranteed>329 pub fn create_err<'a>(
330 &'a self,
331 err: impl IntoDiagnostic<'a>,
332 ) -> DiagnosticBuilder<'a, ErrorGuaranteed> {
333 err.into_diagnostic(&self.span_diagnostic)
334 }
335
336 #[track_caller]
emit_err<'a>(&'a self, err: impl IntoDiagnostic<'a>) -> ErrorGuaranteed337 pub fn emit_err<'a>(&'a self, err: impl IntoDiagnostic<'a>) -> ErrorGuaranteed {
338 self.create_err(err).emit()
339 }
340
341 #[track_caller]
create_warning<'a>( &'a self, warning: impl IntoDiagnostic<'a, ()>, ) -> DiagnosticBuilder<'a, ()>342 pub fn create_warning<'a>(
343 &'a self,
344 warning: impl IntoDiagnostic<'a, ()>,
345 ) -> DiagnosticBuilder<'a, ()> {
346 warning.into_diagnostic(&self.span_diagnostic)
347 }
348
349 #[track_caller]
emit_warning<'a>(&'a self, warning: impl IntoDiagnostic<'a, ()>)350 pub fn emit_warning<'a>(&'a self, warning: impl IntoDiagnostic<'a, ()>) {
351 self.create_warning(warning).emit()
352 }
353
create_note<'a>( &'a self, note: impl IntoDiagnostic<'a, Noted>, ) -> DiagnosticBuilder<'a, Noted>354 pub fn create_note<'a>(
355 &'a self,
356 note: impl IntoDiagnostic<'a, Noted>,
357 ) -> DiagnosticBuilder<'a, Noted> {
358 note.into_diagnostic(&self.span_diagnostic)
359 }
360
emit_note<'a>(&'a self, note: impl IntoDiagnostic<'a, Noted>) -> Noted361 pub fn emit_note<'a>(&'a self, note: impl IntoDiagnostic<'a, Noted>) -> Noted {
362 self.create_note(note).emit()
363 }
364
create_fatal<'a>( &'a self, fatal: impl IntoDiagnostic<'a, !>, ) -> DiagnosticBuilder<'a, !>365 pub fn create_fatal<'a>(
366 &'a self,
367 fatal: impl IntoDiagnostic<'a, !>,
368 ) -> DiagnosticBuilder<'a, !> {
369 fatal.into_diagnostic(&self.span_diagnostic)
370 }
371
emit_fatal<'a>(&'a self, fatal: impl IntoDiagnostic<'a, !>) -> !372 pub fn emit_fatal<'a>(&'a self, fatal: impl IntoDiagnostic<'a, !>) -> ! {
373 self.create_fatal(fatal).emit()
374 }
375
376 #[rustc_lint_diagnostics]
377 #[track_caller]
struct_err( &self, msg: impl Into<DiagnosticMessage>, ) -> DiagnosticBuilder<'_, ErrorGuaranteed>378 pub fn struct_err(
379 &self,
380 msg: impl Into<DiagnosticMessage>,
381 ) -> DiagnosticBuilder<'_, ErrorGuaranteed> {
382 self.span_diagnostic.struct_err(msg)
383 }
384
385 #[rustc_lint_diagnostics]
struct_warn(&self, msg: impl Into<DiagnosticMessage>) -> DiagnosticBuilder<'_, ()>386 pub fn struct_warn(&self, msg: impl Into<DiagnosticMessage>) -> DiagnosticBuilder<'_, ()> {
387 self.span_diagnostic.struct_warn(msg)
388 }
389
390 #[rustc_lint_diagnostics]
struct_fatal(&self, msg: impl Into<DiagnosticMessage>) -> DiagnosticBuilder<'_, !>391 pub fn struct_fatal(&self, msg: impl Into<DiagnosticMessage>) -> DiagnosticBuilder<'_, !> {
392 self.span_diagnostic.struct_fatal(msg)
393 }
394
395 #[rustc_lint_diagnostics]
struct_diagnostic<G: EmissionGuarantee>( &self, msg: impl Into<DiagnosticMessage>, ) -> DiagnosticBuilder<'_, G>396 pub fn struct_diagnostic<G: EmissionGuarantee>(
397 &self,
398 msg: impl Into<DiagnosticMessage>,
399 ) -> DiagnosticBuilder<'_, G> {
400 self.span_diagnostic.struct_diagnostic(msg)
401 }
402 }
403