1use std::collections::{HashMap, HashSet};
18use std::path::{Path, PathBuf};
19
20use rucc_base::{Interner, Symbol};
21use rucc_diag::{Diagnostic, FileId, SourceMapFull, Span};
22use rucc_gnu::Kind;
23use rucc_lex::{Options, PpToken, PpTokenKind, Punct, TokenFlags, tokenize};
24use rucc_session::{Found, IncludeForm, PrefixMap, Preinclude};
25use rucc_target::TargetInfo;
26
27use crate::cond;
28use crate::embed;
29use crate::expand::Expander;
30use crate::include::{
31 Context, Dependency, Frame, Header, Reader, directory_of, header_from_token,
32 header_from_tokens, spelling,
33};
34use crate::macros::{Builtin, MacroTable, parse_define};
35use crate::predef::{BUILT_IN, COMMAND_LINE, Predef, built_in, command_line};
36use crate::token::Tok;
37
38#[derive(Debug, Clone, Copy, PartialEq, Eq)]
40enum Guard {
41 Once,
43 Macro(Symbol),
48}
49
50#[derive(Debug, Clone, Copy, PartialEq, Eq)]
52enum Scan {
53 Start,
55 Inside(Symbol),
57 Closed(Symbol),
59 No,
61}
62
63#[derive(Debug)]
65struct Cond {
66 span: Span,
68 live: bool,
71 taken: bool,
74 enclosing_live: bool,
76 seen_else: bool,
78}
79
80#[derive(Debug, Clone, PartialEq, Eq)]
82pub struct LineDirective {
83 pub span: Span,
85 pub line: u32,
87 pub file: Option<Symbol>,
89 pub at: usize,
98}
99
100#[derive(Debug, Default)]
105pub struct Preprocessor {
106 macros: MacroTable,
107 expander: Expander,
108 diagnostics: Vec<Diagnostic>,
109 conds: Vec<Cond>,
110 lines: Vec<LineDirective>,
111 stack: Vec<Frame>,
113 markers: Vec<String>,
117 seen: HashMap<PathBuf, Guard>,
121 deps: Vec<Dependency>,
128 dep_ids: HashSet<PathBuf>,
140}
141
142impl Preprocessor {
143 pub fn new() -> Preprocessor {
145 Preprocessor::default()
146 }
147
148 pub fn with_prefix_map(map: PrefixMap) -> Preprocessor {
155 Preprocessor { expander: Expander::with_prefix_map(map), ..Preprocessor::default() }
156 }
157
158 pub fn macros(&self) -> &MacroTable {
160 &self.macros
161 }
162
163 pub fn macros_mut(&mut self) -> &mut MacroTable {
165 &mut self.macros
166 }
167
168 pub fn diagnostics(&self) -> &[Diagnostic] {
170 &self.diagnostics
171 }
172
173 pub fn take_diagnostics(&mut self) -> Vec<Diagnostic> {
175 std::mem::take(&mut self.diagnostics)
176 }
177
178 pub fn dependencies(&self) -> &[Dependency] {
183 &self.deps
184 }
185
186 pub fn line_directives(&self) -> &[LineDirective] {
192 &self.lines
193 }
194
195 pub fn predefine(
207 &mut self,
208 target: &TargetInfo,
209 opts: &Predef,
210 cx: &mut Context<'_>,
211 ) -> Result<(), SourceMapFull> {
212 let names = Names::new(cx.interner);
213 let file = self.synthetic(BUILT_IN, built_in(target, opts), cx, &names)?;
214 let start = cx.sources.file(file).start;
220 for (spelling, builtin) in Builtin::ALL {
221 let name = cx.interner.intern(spelling);
222 self.macros.define_builtin(name, builtin, Span::new(start, start));
223 }
224 let text = command_line(opts);
225 if !text.is_empty() {
226 self.synthetic(COMMAND_LINE, text, cx, &names)?;
227 }
228 Ok(())
229 }
230
231 fn synthetic(
233 &mut self,
234 name: &str,
235 text: String,
236 cx: &mut Context<'_>,
237 names: &Names,
238 ) -> Result<FileId, SourceMapFull> {
239 let file = cx.sources.add(name, text.into_bytes())?;
240 let mut out = Vec::new();
241 let path = PathBuf::from(name);
245 let id = cx.fs.identity(&path);
246 self.stack.push(Frame { at: Span::DUMMY, path, id, dir: None, next: 0 });
247 self.process(file, &mut out, cx, names);
248 self.stack.clear();
249 debug_assert!(out.is_empty(), "{name} is directives only and produces no tokens");
250 Ok(file)
251 }
252
253 pub fn preinclude(
275 &mut self,
276 files: &[Preinclude],
277 out: &mut Vec<Tok>,
278 cx: &mut Context<'_>,
279 ) -> Result<(), SourceMapFull> {
280 if files.is_empty() {
281 return Ok(());
282 }
283 let names = Names::new(cx.interner);
284 let mut text = String::new();
288 let mut order: Vec<(usize, &Preinclude)> = Vec::new();
289 for macros_only in [true, false] {
290 for file in files.iter().filter(|f| f.macros_only == macros_only) {
291 text.push_str(if macros_only { "-imacros " } else { "-include " });
292 order.push((text.len(), file));
293 text.push_str(&file.name);
294 text.push('\n');
295 }
296 }
297 let record = cx.sources.add(COMMAND_LINE, text.into_bytes())?;
298 let start = cx.sources.file(record).start;
299 let path = PathBuf::from(COMMAND_LINE);
303 let id = cx.fs.identity(&path);
304 self.stack.push(Frame { at: Span::DUMMY, path, id, dir: None, next: 0 });
305 let here = Path::new(".");
306 for (offset, file) in order {
307 let at = Span::new(start + offset as u32, start + (offset + file.name.len()) as u32);
308 let form = IncludeForm::Quoted;
309 let found = cx.search.resolve(cx.fs, &file.name, form, Some(here), 0);
310 let Some(found) = found else {
311 let tried = cx.search.tried(&file.name, form, Some(here), 0);
312 self.not_found(&file.name, at, &tried, cx.search.missing_system());
313 continue;
314 };
315 let mut discarded = Vec::new();
316 let sink = if file.macros_only { &mut discarded } else { &mut *out };
317 self.read(found, at, sink, cx, &names);
318 }
319 self.stack.clear();
320 Ok(())
321 }
322
323 pub fn run(&mut self, file: FileId, cx: &mut Context<'_>) -> Vec<Tok> {
328 let names = Names::new(cx.interner);
329 let mut out = Vec::new();
330 let name = cx.sources.file(file).name.clone();
331 let dir = directory_of(&name);
332 let path = PathBuf::from(name);
335 let id = cx.fs.identity(&path);
336 self.stack.push(Frame { at: Span::DUMMY, path, id, dir, next: 0 });
337 self.process(file, &mut out, cx, &names);
338 self.stack.clear();
339 out
340 }
341
342 fn process(&mut self, file: FileId, out: &mut Vec<Tok>, cx: &mut Context<'_>, names: &Names) {
344 let bytes = cx.sources.file(file).shared_bytes();
347 let start = cx.sources.file(file).start;
348 let mut reader = Reader::new(bytes.as_slice(), start, cx.lex);
349 let depth_on_entry = self.conds.len();
350 let mut text: Vec<Tok> = Vec::new();
354 let mut body: Vec<PpToken> = Vec::new();
355 let mut scan = Scan::Start;
356
357 loop {
358 let was_live = self.live();
359 let first = reader.next(cx.interner);
360 if first.is_eof() {
361 break;
362 }
363 if is_directive(first) {
364 self.flush(&mut text, out, cx, names);
365 body.clear();
366 let name_tok = reader.next(cx.interner);
367 if name_tok.is_eof() || name_tok.flags.has(TokenFlags::START_OF_LINE) {
370 reader.put_back(name_tok);
371 continue;
372 }
373 body.push(name_tok);
374 if was_live && is_include(ident_of(&name_tok), names) {
379 if let Some(header) = reader.header_name(cx.interner) {
380 body.push(header);
381 }
382 }
383 reader.line(cx.interner, &mut body);
384 let opens =
385 matches!(scan, Scan::Start).then(|| guard_opener(&body, names)).flatten();
386 self.directive(&body, first.span, out, cx, names);
387 scan = match scan {
388 Scan::Start => match opens {
392 Some(name) if self.conds.len() == depth_on_entry + 1 => Scan::Inside(name),
393 _ => Scan::No,
394 },
395 Scan::Inside(name) if self.conds.len() == depth_on_entry => Scan::Closed(name),
396 Scan::Inside(name) => Scan::Inside(name),
397 Scan::Closed(_) | Scan::No => Scan::No,
398 };
399 } else {
400 body.clear();
401 reader.line(cx.interner, &mut body);
402 if self.live() {
403 let operator = ident_of(&first) == Some(names.pragma_op)
409 || body.iter().any(|t| ident_of(t) == Some(names.pragma_op));
410 if operator {
411 self.flush(&mut text, out, cx, names);
412 }
413 text.push(Tok::new(first));
414 text.extend(body.iter().copied().map(Tok::new));
415 if operator {
416 self.flush(&mut text, out, cx, names);
417 }
418 }
419 if !matches!(scan, Scan::Inside(_)) {
421 scan = Scan::No;
422 }
423 }
424 let complaints = reader.take_diagnostics();
427 if was_live || self.live() {
428 self.diagnostics.extend(complaints);
429 }
430 }
431 self.flush(&mut text, out, cx, names);
432 self.diagnostics.extend(reader.take_diagnostics());
433
434 if let Scan::Closed(name) = scan {
437 if self.macros.is_defined(name) {
438 if let Some(frame) = self.stack.last() {
439 self.seen.entry(frame.id.clone()).or_insert(Guard::Macro(name));
440 }
441 }
442 }
443
444 for cond in self.conds.drain(depth_on_entry..) {
447 self.diagnostics
448 .push(Diagnostic::error("unterminated `#if`", cond.span).with_code("E0330"));
449 }
450 }
451
452 fn live(&self) -> bool {
454 self.conds.last().is_none_or(|c| c.live)
455 }
456
457 fn flush(
459 &mut self,
460 text: &mut Vec<Tok>,
461 out: &mut Vec<Tok>,
462 cx: &mut Context<'_>,
463 names: &Names,
464 ) {
465 if text.is_empty() {
466 return;
467 }
468 let taken = std::mem::take(text);
469 let expanded = self.expander.expand_toks(taken, &self.macros, cx.interner, cx.sources);
470 self.diagnostics.append(&mut self.expander.take_diagnostics());
471 let expanded = self.resolve_has(expanded, cx, names, Pass::Text);
476 self.pragma_operator(expanded, out, cx.interner, names);
477 }
478
479 fn directive(
481 &mut self,
482 body: &[PpToken],
483 hash: Span,
484 out: &mut Vec<Tok>,
485 cx: &mut Context<'_>,
486 names: &Names,
487 ) {
488 let Some(first) = body.first().copied() else {
489 return;
490 };
491 let name = ident_of(&first);
492 let rest = &body[1..];
493
494 if name == Some(names.r#if) {
497 let value = self.live() && self.eval(rest, hash, cx, names);
498 self.open(hash, value);
499 return;
500 }
501 if name == Some(names.ifdef) || name == Some(names.ifndef) {
502 let want = name == Some(names.ifdef);
503 let value = self.live() && self.defined_check(rest, hash, want, names);
504 self.open(hash, value);
505 return;
506 }
507 if name == Some(names.elif) || name == Some(names.elifdef) || name == Some(names.elifndef) {
508 self.elif(name, rest, hash, cx, names);
509 return;
510 }
511 if name == Some(names.r#else) {
512 self.branch_else(rest, hash);
513 return;
514 }
515 if name == Some(names.endif) {
516 self.endif(rest, hash);
517 return;
518 }
519 if !self.live() {
520 return;
524 }
525
526 if name.is_none() && decimal(&first, cx.interner).is_some() {
530 self.line_marker(body, hash, out.len(), cx);
531 return;
532 }
533
534 let interner = &mut *cx.interner;
535 if name == Some(names.define) {
536 let (def, diagnostics) = parse_define(rest, interner);
537 self.diagnostics.extend(diagnostics);
538 if let Some(def) = def {
539 if let Some(problem) = self.macros.define(def, interner) {
540 self.diagnostics.push(problem);
541 }
542 }
543 } else if name == Some(names.undef) {
544 self.undef(rest, hash, interner);
545 } else if name == Some(names.error) || name == Some(names.warning) {
546 self.message(rest, hash, name == Some(names.error), interner);
547 } else if name == Some(names.line) {
548 self.line(rest, hash, out.len(), cx);
549 } else if name == Some(names.pragma) {
550 if rest.len() == 1 && ident_of(&rest[0]) == Some(names.once) {
557 self.pragma_once(rest[0].span);
558 } else if !self.macro_stack_pragma(rest, hash, interner, names) {
559 self.pass_through(body, hash, out);
560 }
561 } else if name == Some(names.include) || name == Some(names.include_next) {
562 self.include(rest, hash, name == Some(names.include_next), out, cx, names);
563 } else if name == Some(names.embed) {
564 self.embed(rest, hash, out, cx);
565 } else {
566 self.diagnostics.push(
567 Diagnostic::error("invalid preprocessing directive", first.span).with_code("E0332"),
568 );
569 }
570 }
571
572 fn macro_stack_pragma(
584 &mut self,
585 rest: &[PpToken],
586 at: Span,
587 interner: &mut Interner,
588 names: &Names,
589 ) -> bool {
590 let which = match rest.first().and_then(ident_of) {
591 Some(name) if name == names.push_macro => names.push_macro,
592 Some(name) if name == names.pop_macro => names.pop_macro,
593 _ => return false,
594 };
595 let word = if which == names.push_macro { "push_macro" } else { "pop_macro" };
596 let [_, open, text, close, extra @ ..] = rest else {
601 self.invalid_pragma(word, at);
602 return true;
603 };
604 if open.punct() != Some(Punct::LParen)
605 || text.kind != PpTokenKind::StringLit
606 || close.punct() != Some(Punct::RParen)
607 {
608 self.invalid_pragma(word, at);
609 return true;
610 }
611 self.extra_tokens(extra, "#pragma");
612 let Some(name) = identifier_in(*text, interner) else {
617 return true;
618 };
619 if which == names.push_macro {
620 self.macros.push_macro(name);
621 } else {
622 self.macros.pop_macro(name);
623 }
624 true
625 }
626
627 fn invalid_pragma(&mut self, word: &str, at: Span) {
628 self.diagnostics.push(
629 Diagnostic::error(format!("invalid `#pragma {word}` directive"), at).with_code("E0672"),
630 );
631 }
632
633 fn pragma_once(&mut self, at: Span) {
635 if self.stack.len() <= 1 {
640 self.diagnostics.push(
641 Diagnostic::warning("`#pragma once` in the main file", at).with_code("W0332"),
642 );
643 }
644 if let Some(frame) = self.stack.last() {
645 self.seen.insert(frame.id.clone(), Guard::Once);
646 }
647 }
648
649 fn skip(&self, id: &Path) -> bool {
651 match self.seen.get(id) {
652 Some(Guard::Once) => true,
653 Some(Guard::Macro(name)) => self.macros.is_defined(*name),
654 None => false,
655 }
656 }
657
658 fn pass_through(&mut self, body: &[PpToken], hash: Span, out: &mut Vec<Tok>) {
660 let _ = self;
661 out.push(Tok::synthetic(
662 PpTokenKind::Punct(Punct::Hash),
663 None,
664 TokenFlags::START_OF_LINE,
665 hash,
666 ));
667 for (at, token) in body.iter().copied().enumerate() {
672 let mut token = Tok::new(token);
673 if at == 0 {
674 token.flags = token.flags.without(TokenFlags::LEADING_SPACE);
675 }
676 out.push(token);
677 }
678 }
679
680 fn include(
682 &mut self,
683 rest: &[PpToken],
684 hash: Span,
685 is_next: bool,
686 out: &mut Vec<Tok>,
687 cx: &mut Context<'_>,
688 names: &Names,
689 ) {
690 let Some(header) = self.header_of(rest, hash, cx) else {
691 return;
692 };
693 let (form, relative_to, from) = self.where_to_look(&header, is_next, cx);
694 let found = cx.search.resolve(cx.fs, &header.name, form, relative_to.as_deref(), from);
695 let Some(found) = found else {
696 let tried = cx.search.tried(&header.name, form, relative_to.as_deref(), from);
697 self.not_found(&header.name, hash, &tried, cx.search.missing_system());
698 return;
699 };
700 self.read(found, hash, out, cx, names);
701 }
702
703 fn not_found(&mut self, name: &str, at: Span, tried: &[PathBuf], why: Option<&str>) {
710 let where_looked = if tried.is_empty() && Path::new(name).is_absolute() {
714 "the name is an absolute path, so the search path was not used".to_owned()
715 } else if tried.is_empty() {
716 "the include search path is empty".to_owned()
717 } else {
718 let list: Vec<String> =
719 tried.iter().map(|d| d.to_string_lossy().into_owned()).collect();
720 format!("searched: {}", list.join(", "))
721 };
722 let mut said = Diagnostic::error(format!("`{name}` file not found"), at)
723 .with_code("E0341")
724 .note(where_looked, at);
725 if let Some(why) = why {
726 said = said.note(why, at);
727 }
728 self.diagnostics.push(said);
729 }
730
731 fn read(
738 &mut self,
739 found: Found,
740 at: Span,
741 out: &mut Vec<Tok>,
742 cx: &mut Context<'_>,
743 names: &Names,
744 ) {
745 let id = cx.fs.identity(&found.path);
746 if self.dep_ids.insert(id.clone()) {
751 let path = rucc_session::path_key(&found.path);
758 self.deps.push(Dependency { path, is_system: found.is_system });
759 }
760 if self.skip(&id) {
765 return;
766 }
767 if self.stack.len() >= cx.max_include_depth as usize {
768 let mut diagnostic = Diagnostic::error("`#include` nested too deeply", at)
769 .with_code("E0342")
770 .note("a header that includes itself with no include guard is the usual cause", at);
771 if let Some(outer) = self.stack.first().filter(|f| !f.at.is_dummy()) {
772 diagnostic = diagnostic.note("the outermost include is here", outer.at);
773 }
774 self.diagnostics.push(diagnostic);
775 return;
776 }
777 let added = cx.sources.add_shared(found.name.clone(), found.bytes.clone(), Some(at));
778 let file = match added {
779 Ok(file) => file,
780 Err(full) => {
781 self.diagnostics.push(Diagnostic::error(full.to_string(), at).with_code("E0344"));
782 return;
783 }
784 };
785 self.stack.push(Frame {
786 at,
787 dir: found.path.parent().map(Path::to_path_buf),
788 id,
789 path: found.path,
790 next: found.next,
791 });
792 self.process(file, out, cx, names);
793 self.stack.pop();
794 }
795
796 fn embed(&mut self, rest: &[PpToken], hash: Span, out: &mut Vec<Tok>, cx: &mut Context<'_>) {
798 let Some((header, params)) = self.embed_line(rest, hash, cx) else {
799 return;
800 };
801 let Some(found) = self.find(&header, false, cx) else {
802 self.diagnostics.push(
803 Diagnostic::error(format!("`{}` resource not found", header.name), hash)
804 .with_code("E0341")
805 .note("an `#embed` resource is looked for on the include path", hash),
806 );
807 return;
808 };
809 embed::tokens(found.bytes.as_slice(), ¶ms, hash, cx.interner, out);
814 }
815
816 fn embed_line(
818 &mut self,
819 rest: &[PpToken],
820 hash: Span,
821 cx: &mut Context<'_>,
822 ) -> Option<(Header, embed::Params)> {
823 if rest.is_empty() {
824 self.bad_header(hash);
825 return None;
826 }
827 let line: Vec<Tok> = rest.iter().copied().map(Tok::new).collect();
828 let line = if line[0].kind == PpTokenKind::HeaderName {
834 line
835 } else {
836 let expanded = self.expander.expand_toks(line, &self.macros, cx.interner, cx.sources);
837 self.diagnostics.append(&mut self.expander.take_diagnostics());
838 expanded
839 };
840 let Some(used) = embed::header_length(&line) else {
841 self.bad_header(line.first().map_or(hash, |t| t.report_span()));
842 return None;
843 };
844 let header = if line[0].kind == PpTokenKind::HeaderName {
845 header_from_token(spelling(line[0], cx.interner))
846 } else {
847 let spellings: Vec<&str> =
848 line[..used].iter().map(|t| spelling(*t, cx.interner)).collect();
849 header_from_tokens(&spellings)
850 };
851 let Some(header) = header else {
852 self.bad_header(line[0].report_span());
853 return None;
854 };
855 let params = self.embed_params(&line[used..], hash, cx)?;
856 Some((header, params))
857 }
858
859 fn embed_params(
861 &mut self,
862 line: &[Tok],
863 at: Span,
864 cx: &mut Context<'_>,
865 ) -> Option<embed::Params> {
866 let Preprocessor { expander, macros, diagnostics, .. } = self;
867 let sources = &mut *cx.sources;
868 let mut expand = |toks: Vec<Tok>, interner: &mut Interner| {
869 expander.expand_toks(toks, macros, interner, sources)
870 };
871 let params = embed::parse(line, at, cx.interner, diagnostics, &mut expand);
872 self.diagnostics.append(&mut self.expander.take_diagnostics());
873 params
874 }
875
876 fn where_to_look(
887 &self,
888 header: &Header,
889 is_next: bool,
890 cx: &Context<'_>,
891 ) -> (IncludeForm, Option<PathBuf>, usize) {
892 let form = if header.angled { IncludeForm::Angled } else { IncludeForm::Quoted };
893 let frame = self.stack.last();
894 let from = if is_next {
895 frame.map_or(0, |f| f.next).max(cx.search.start(form))
896 } else {
897 cx.search.start(form)
898 };
899 let relative_to = if is_next { None } else { frame.and_then(|f| f.dir.clone()) };
900 (form, relative_to, from)
901 }
902
903 fn find(&self, header: &Header, is_next: bool, cx: &Context<'_>) -> Option<Found> {
905 let (form, relative_to, from) = self.where_to_look(header, is_next, cx);
906 cx.search.resolve(cx.fs, &header.name, form, relative_to.as_deref(), from)
907 }
908
909 fn header_of(&mut self, rest: &[PpToken], hash: Span, cx: &mut Context<'_>) -> Option<Header> {
911 if let Some(first) = rest.first().copied() {
912 if first.kind == PpTokenKind::HeaderName {
913 let text = first.value.map_or("", |v| cx.interner.resolve(v));
914 let header = header_from_token(text);
915 if header.is_none() {
916 self.bad_header(first.span);
917 }
918 self.extra_tokens(&rest[1..], "#include");
919 return header;
920 }
921 }
922 if rest.is_empty() {
926 self.bad_header(hash);
927 return None;
928 }
929 let line: Vec<Tok> = rest.iter().copied().map(Tok::new).collect();
930 let expanded = self.expander.expand_toks(line, &self.macros, cx.interner, cx.sources);
931 self.diagnostics.append(&mut self.expander.take_diagnostics());
932 let spellings: Vec<&str> = expanded.iter().map(|t| spelling(*t, cx.interner)).collect();
933 let header = header_from_tokens(&spellings);
934 if header.is_none() {
935 let at = expanded.first().map_or(hash, |t| t.report_span());
936 self.bad_header(at);
937 }
938 header
939 }
940
941 fn bad_operand(&mut self, tok: Tok, at: Span, interner: &Interner) {
943 self.diagnostics.push(
944 Diagnostic::error(
945 format!("expected an identifier as the operand of `{}`", spelling(tok, interner)),
946 at,
947 )
948 .with_code("E0345"),
949 );
950 }
951
952 fn bad_header(&mut self, at: Span) {
953 self.diagnostics.push(
954 Diagnostic::error("expected a file name in `<>` or `\"\"`", at).with_code("E0343"),
955 );
956 }
957
958 fn open(&mut self, span: Span, value: bool) {
960 let enclosing_live = self.live();
961 self.conds.push(Cond {
962 span,
963 live: enclosing_live && value,
964 taken: value,
965 enclosing_live,
966 seen_else: false,
967 });
968 }
969
970 fn elif(
971 &mut self,
972 name: Option<Symbol>,
973 rest: &[PpToken],
974 hash: Span,
975 cx: &mut Context<'_>,
976 names: &Names,
977 ) {
978 let Some(top) = self.conds.last() else {
979 self.stray("elif", hash);
980 return;
981 };
982 if top.seen_else {
983 self.diagnostics
984 .push(Diagnostic::error("`#elif` after `#else`", hash).with_code("E0333"));
985 return;
986 }
987 let (enclosing_live, already_taken) = (top.enclosing_live, top.taken);
990 let consider = enclosing_live && !already_taken;
991 let value = if !consider {
992 false
993 } else if name == Some(names.elif) {
994 self.eval(rest, hash, cx, names)
995 } else {
996 self.defined_check(rest, hash, name == Some(names.elifdef), names)
997 };
998 let top = self.conds.last_mut().expect("checked above and nothing popped");
999 top.live = consider && value;
1000 top.taken = already_taken || value;
1001 }
1002
1003 fn branch_else(&mut self, rest: &[PpToken], hash: Span) {
1004 let Some(top) = self.conds.last_mut() else {
1005 self.stray("else", hash);
1006 return;
1007 };
1008 if top.seen_else {
1009 self.diagnostics.push(Diagnostic::error("a second `#else`", hash).with_code("E0333"));
1010 return;
1011 }
1012 top.live = top.enclosing_live && !top.taken;
1013 top.taken = true;
1014 top.seen_else = true;
1015 let enclosing_live = top.enclosing_live;
1016 if enclosing_live {
1017 self.extra_tokens(rest, "#else");
1018 }
1019 }
1020
1021 fn endif(&mut self, rest: &[PpToken], hash: Span) {
1022 if self.conds.pop().is_none() {
1023 self.stray("endif", hash);
1024 return;
1025 }
1026 if self.live() {
1027 self.extra_tokens(rest, "#endif");
1028 }
1029 }
1030
1031 fn stray(&mut self, what: &str, hash: Span) {
1032 self.diagnostics
1033 .push(Diagnostic::error(format!("`#{what}` without `#if`"), hash).with_code("E0334"));
1034 }
1035
1036 fn extra_tokens(&mut self, rest: &[PpToken], what: &str) {
1041 if let Some(first) = rest.first() {
1042 self.diagnostics.push(
1043 Diagnostic::warning(format!("extra tokens after `{what}`"), first.span)
1044 .with_code("W0330"),
1045 );
1046 }
1047 }
1048
1049 fn eval(&mut self, rest: &[PpToken], hash: Span, cx: &mut Context<'_>, names: &Names) -> bool {
1051 let line: Vec<Tok> = rest.iter().copied().map(Tok::new).collect();
1052 let line = self.resolve_defined(line, cx.interner, names);
1058 let line = self.resolve_has(line, cx, names, Pass::Headers);
1063 let line = self.expander.expand_toks(line, &self.macros, cx.interner, cx.sources);
1064 self.diagnostics.append(&mut self.expander.take_diagnostics());
1065 let line = self.resolve_defined(line, cx.interner, names);
1066 let line = self.resolve_has(line, cx, names, Pass::Rest);
1067 cond::evaluate(&line, cx.interner, &mut self.diagnostics, hash)
1068 }
1069
1070 fn resolve_has(
1075 &mut self,
1076 line: Vec<Tok>,
1077 cx: &mut Context<'_>,
1078 names: &Names,
1079 pass: Pass,
1080 ) -> Vec<Tok> {
1081 if !line.iter().any(|t| t.ident().is_some_and(|n| names.has.op(n).is_some())) {
1082 return line;
1083 }
1084 let mut out = Vec::with_capacity(line.len());
1085 let mut at = 0;
1086 while at < line.len() {
1087 let tok = line[at];
1088 let op = tok.ident().and_then(|n| names.has.op(n));
1089 let Some(op) = op.filter(|op| pass.answers(*op)) else {
1090 if pass == Pass::Text && op.is_some_and(Op::is_header) {
1091 self.outside_a_directive(tok, cx);
1092 }
1093 out.push(tok);
1094 at += 1;
1095 continue;
1096 };
1097 let Some((operand, after)) = arguments(&line, at + 1) else {
1098 if pass != Pass::Headers {
1102 self.diagnostics.push(
1103 Diagnostic::error(
1104 format!("expected `(` after `{}`", spelling(tok, cx.interner)),
1105 tok.report_span(),
1106 )
1107 .with_code("E0345"),
1108 );
1109 }
1110 out.push(tok);
1111 at += 1;
1112 continue;
1113 };
1114 at = after;
1115 let value = self.ask(op, operand, tok, cx);
1118 let sym = cx.interner.intern(&value.to_string());
1119 out.push(Tok::synthetic(PpTokenKind::Number, Some(sym), tok.flags, tok.report_span()));
1120 }
1121 out
1122 }
1123
1124 fn outside_a_directive(&mut self, tok: Tok, cx: &Context<'_>) {
1132 self.diagnostics.push(
1133 Diagnostic::error(
1134 format!(
1135 "`{}` used outside of a preprocessing directive",
1136 spelling(tok, cx.interner)
1137 ),
1138 tok.report_span(),
1139 )
1140 .with_code("E0350"),
1141 );
1142 }
1143
1144 fn ask(&mut self, op: Op, operand: &[Tok], tok: Tok, cx: &mut Context<'_>) -> u32 {
1146 let at = operand.first().map_or(tok.report_span(), |t| t.report_span());
1147 match op {
1148 Op::Include | Op::IncludeNext => {
1149 let spellings: Vec<&str> =
1150 operand.iter().map(|t| spelling(*t, cx.interner)).collect();
1151 let Some(header) = header_from_tokens(&spellings) else {
1152 self.bad_header(at);
1153 return 0;
1154 };
1155 u32::from(self.find(&header, op == Op::IncludeNext, cx).is_some())
1156 }
1157 Op::Embed => {
1158 let Some(used) = embed::header_length(operand) else {
1163 self.bad_header(at);
1164 return 0;
1165 };
1166 let header = if operand[0].kind == PpTokenKind::HeaderName {
1167 header_from_token(spelling(operand[0], cx.interner))
1168 } else {
1169 let spellings: Vec<&str> =
1170 operand[..used].iter().map(|t| spelling(*t, cx.interner)).collect();
1171 header_from_tokens(&spellings)
1172 };
1173 let Some(header) = header else {
1174 self.bad_header(at);
1175 return 0;
1176 };
1177 let Some(params) = self.embed_params(&operand[used..], at, cx) else {
1182 return 0;
1183 };
1184 match self.find(&header, false, cx) {
1185 None => 0,
1186 Some(found) => {
1187 let taken = params.taken(found.bytes.as_slice().len() as u64);
1188 if taken == 0 { 2 } else { 1 }
1189 }
1190 }
1191 }
1192 Op::BuildingModule => {
1193 if attribute_name(operand, cx.interner).is_none() {
1194 self.bad_operand(tok, at, cx.interner);
1195 }
1196 0
1203 }
1204 Op::Table(kind) => {
1205 let Some(name) = attribute_name(operand, cx.interner) else {
1206 self.bad_operand(tok, at, cx.interner);
1207 return 0;
1208 };
1209 match kind {
1210 Kind::Attribute => rucc_gnu::has_attribute(name),
1211 Kind::CAttribute => rucc_gnu::has_c_attribute(name),
1212 Kind::Builtin => rucc_gnu::has_builtin(name),
1213 Kind::Feature => rucc_gnu::has_feature(name),
1214 Kind::Extension => rucc_gnu::has_extension(name),
1215 }
1216 }
1217 }
1218 }
1219
1220 fn resolve_defined(
1222 &mut self,
1223 line: Vec<Tok>,
1224 interner: &mut Interner,
1225 names: &Names,
1226 ) -> Vec<Tok> {
1227 if !line.iter().any(|t| t.ident() == Some(names.defined)) {
1228 return line;
1229 }
1230 let mut out = Vec::with_capacity(line.len());
1231 let mut at = 0;
1232 while at < line.len() {
1233 let tok = line[at];
1234 if tok.ident() != Some(names.defined) {
1235 out.push(tok);
1236 at += 1;
1237 continue;
1238 }
1239 let parenthesised = line.get(at + 1).is_some_and(|t| t.is(Punct::LParen));
1240 let name_at = if parenthesised { at + 2 } else { at + 1 };
1241 let name = line.get(name_at).and_then(|t| t.ident());
1242 let Some(name) = name else {
1243 self.diagnostics.push(
1244 Diagnostic::error("`defined` without a macro name", tok.report_span())
1245 .with_code("E0335"),
1246 );
1247 out.push(tok);
1248 at += 1;
1249 continue;
1250 };
1251 at = name_at + 1;
1252 if parenthesised {
1253 if line.get(at).is_some_and(|t| t.is(Punct::RParen)) {
1254 at += 1;
1255 } else {
1256 self.diagnostics.push(
1257 Diagnostic::error("expected `)` after `defined`", tok.report_span())
1258 .with_code("E0335"),
1259 );
1260 }
1261 }
1262 let value = self.macros.is_defined(name) || names.has.op(name).is_some();
1266 out.push(number(value, tok.flags, tok.report_span(), interner));
1267 }
1268 out
1269 }
1270
1271 fn defined_check(
1273 &mut self,
1274 rest: &[PpToken],
1275 hash: Span,
1276 want_defined: bool,
1277 names: &Names,
1278 ) -> bool {
1279 let Some(name) = rest.first().and_then(ident_of) else {
1280 self.diagnostics.push(
1281 Diagnostic::error("expected a macro name", rest.first().map_or(hash, |t| t.span))
1282 .with_code("E0336"),
1283 );
1284 return false;
1285 };
1286 self.extra_tokens(&rest[1..], if want_defined { "#ifdef" } else { "#ifndef" });
1287 let defined = self.macros.is_defined(name) || names.has.op(name).is_some();
1288 defined == want_defined
1289 }
1290
1291 fn undef(&mut self, rest: &[PpToken], hash: Span, interner: &Interner) {
1292 let Some(name) = rest.first().and_then(ident_of) else {
1293 self.diagnostics.push(
1294 Diagnostic::error("expected a macro name", rest.first().map_or(hash, |t| t.span))
1295 .with_code("E0336"),
1296 );
1297 return;
1298 };
1299 let text = interner.resolve(name);
1302 if text == "defined" || text.starts_with("__STDC_") {
1303 self.diagnostics.push(
1304 Diagnostic::error(format!("`{text}` cannot be undefined"), rest[0].span)
1305 .with_code("E0337"),
1306 );
1307 return;
1308 }
1309 self.macros.undef(name);
1310 self.extra_tokens(&rest[1..], "#undef");
1311 }
1312
1313 fn message(&mut self, rest: &[PpToken], hash: Span, fatal: bool, interner: &Interner) {
1315 let text = spell_line(rest, interner);
1316 let span = rest.first().map_or(hash, |t| t.span.to(last_span(rest)));
1317 let diag = if fatal {
1318 Diagnostic::error(text, span).with_code("E0338")
1319 } else {
1320 Diagnostic::warning(text, span).with_code("W0331")
1321 };
1322 self.diagnostics.push(diag);
1323 }
1324
1325 fn line(&mut self, rest: &[PpToken], hash: Span, at: usize, cx: &mut Context<'_>) {
1330 let line: Vec<Tok> = rest.iter().copied().map(Tok::new).collect();
1331 let line = self.expander.expand_toks(line, &self.macros, cx.interner, cx.sources);
1332 self.diagnostics.append(&mut self.expander.take_diagnostics());
1333 let interner = &mut *cx.interner;
1334
1335 let number_text = line
1336 .first()
1337 .filter(|t| t.kind == PpTokenKind::Number)
1338 .and_then(|t| t.value)
1339 .map(|v| interner.resolve(v));
1340 let Some(parsed) = number_text.and_then(|t| t.parse::<u64>().ok()) else {
1341 self.diagnostics.push(
1342 Diagnostic::error(
1343 "`#line` needs a decimal line number",
1344 line.first().map_or(hash, |t| t.report_span()),
1345 )
1346 .with_code("E0339"),
1347 );
1348 return;
1349 };
1350 if parsed == 0 || parsed > 2_147_483_647 {
1353 self.diagnostics.push(
1354 Diagnostic::error("`#line` number is out of range", line[0].report_span())
1355 .with_code("E0339"),
1356 );
1357 return;
1358 }
1359
1360 let mut file = None;
1361 if let Some(second) = line.get(1) {
1362 if second.kind == PpTokenKind::StringLit {
1363 file = second.value;
1364 } else {
1365 self.diagnostics.push(
1366 Diagnostic::error(
1367 "`#line` file name must be a string literal",
1368 second.report_span(),
1369 )
1370 .with_code("E0339"),
1371 );
1372 return;
1373 }
1374 }
1375 if let Some(extra) = line.get(2) {
1376 self.diagnostics.push(
1377 Diagnostic::warning("extra tokens after `#line`", extra.report_span())
1378 .with_code("W0330"),
1379 );
1380 }
1381 #[expect(
1382 clippy::cast_possible_truncation,
1383 reason = "the range check above keeps this inside i32, let alone u32"
1384 )]
1385 let number = parsed as u32;
1386 self.lines.push(LineDirective { span: hash, line: number, file, at });
1387 let name = file.map(|v| destringize(cx.interner.resolve(v)));
1388 cx.sources.set_presumed(hash.lo, number, name);
1389 }
1390
1391 fn line_marker(&mut self, body: &[PpToken], hash: Span, at: usize, cx: &mut Context<'_>) {
1408 let Some(number) = decimal(&body[0], cx.interner) else { return };
1409 let mut rest = &body[1..];
1410 let mut file = None;
1411 if let Some(first) = rest.first().filter(|t| t.kind == PpTokenKind::StringLit) {
1412 file = first.value;
1413 rest = &rest[1..];
1414 }
1415
1416 let (mut entering, mut leaving) = (false, false);
1417 for flag in rest {
1418 match decimal(flag, cx.interner) {
1419 Some(1) => entering = true,
1420 Some(2) => leaving = true,
1421 Some(3 | 4) => {}
1422 _ => {
1423 let text = spell_line(std::slice::from_ref(flag), cx.interner);
1424 self.diagnostics.push(
1425 Diagnostic::error(
1426 format!("invalid flag `{text}` in line directive"),
1427 flag.span,
1428 )
1429 .with_code("E0339"),
1430 );
1431 return;
1432 }
1433 }
1434 }
1435
1436 let name = file.map(|v| destringize(cx.interner.resolve(v)));
1437 if leaving {
1438 if let Some(name) = &name {
1439 if !self.leave_marker(name) {
1440 self.diagnostics.push(
1441 Diagnostic::warning(
1442 format!("file `{name}` linemarker ignored due to incorrect nesting"),
1443 last_span(body),
1444 )
1445 .with_code("W0330"),
1446 );
1447 return;
1448 }
1449 } else {
1450 self.markers.pop();
1451 }
1452 }
1453 if entering {
1454 let here = cx.sources.presumed(hash.lo).map(|loc| loc.name.to_owned());
1455 self.markers.push(here.unwrap_or_default());
1456 }
1457
1458 self.lines.push(LineDirective { span: hash, line: number, file, at });
1459 cx.sources.set_presumed(hash.lo, number, name);
1460 }
1461
1462 fn leave_marker(&mut self, name: &str) -> bool {
1476 if let Some(at) = self.markers.iter().rposition(|outer| outer == name) {
1477 self.markers.truncate(at);
1478 return true;
1479 }
1480 let found = self.stack.iter().rev().skip(1).any(|f| f.path.as_os_str() == name);
1483 if found {
1484 self.markers.clear();
1485 }
1486 found
1487 }
1488
1489 fn pragma_operator(
1495 &mut self,
1496 expanded: Vec<Tok>,
1497 out: &mut Vec<Tok>,
1498 interner: &mut Interner,
1499 names: &Names,
1500 ) {
1501 if !expanded.iter().any(|t| t.ident() == Some(names.pragma_op)) {
1502 out.extend(expanded);
1503 return;
1504 }
1505 let mut at = 0;
1506 let mut ends_a_line = false;
1511 while at < expanded.len() {
1512 let mut tok = expanded[at];
1513 if tok.ident() != Some(names.pragma_op) {
1514 if ends_a_line {
1515 tok.flags = tok.flags.with(TokenFlags::START_OF_LINE);
1516 ends_a_line = false;
1517 }
1518 out.push(tok);
1519 at += 1;
1520 continue;
1521 }
1522 let open = expanded.get(at + 1).is_some_and(|t| t.is(Punct::LParen));
1523 let text = expanded.get(at + 2).filter(|t| t.kind == PpTokenKind::StringLit);
1524 let close = expanded.get(at + 3).is_some_and(|t| t.is(Punct::RParen));
1525 let (Some(text), true, true) = (text, open, close) else {
1526 self.diagnostics.push(
1527 Diagnostic::error("`_Pragma` takes a single string literal", tok.report_span())
1528 .with_code("E0340"),
1529 );
1530 out.push(tok);
1531 at += 1;
1532 continue;
1533 };
1534 let literal = text.value.map(|v| interner.resolve(v)).unwrap_or_default();
1535 let body = destringize(literal);
1536 self.emit_pragma(&body, tok, out, interner, names);
1537 ends_a_line = true;
1538 at += 4;
1539 }
1540 }
1541
1542 fn emit_pragma(
1544 &mut self,
1545 body: &str,
1546 at: Tok,
1547 out: &mut Vec<Tok>,
1548 interner: &mut Interner,
1549 names: &Names,
1550 ) {
1551 let span = at.report_span();
1552 let (tokens, diagnostics) = tokenize(body.as_bytes(), 0, Options::new(), interner);
1553 self.diagnostics.extend(
1556 diagnostics
1557 .into_iter()
1558 .map(|d| Diagnostic::new(d.severity, d.message, span).with_code("E0340")),
1559 );
1560 let tokens: Vec<PpToken> = tokens.into_iter().filter(|t| !t.is_eof()).collect();
1561 if self.macro_stack_pragma(&tokens, span, interner, names) {
1565 return;
1566 }
1567 out.push(Tok::synthetic(
1568 PpTokenKind::Punct(Punct::Hash),
1569 None,
1570 TokenFlags::START_OF_LINE,
1571 span,
1572 ));
1573 out.push(Tok::synthetic(PpTokenKind::Ident, Some(names.pragma), TokenFlags::EMPTY, span));
1574 for (at, t) in tokens.into_iter().enumerate() {
1578 let spaced = at == 0 || t.flags.has(TokenFlags::LEADING_SPACE);
1581 let flags = if spaced {
1582 TokenFlags::EMPTY.with(TokenFlags::LEADING_SPACE)
1583 } else {
1584 TokenFlags::EMPTY
1585 };
1586 out.push(Tok::synthetic(t.kind, t.value, flags, span));
1587 }
1588 }
1589}
1590
1591fn guard_opener(body: &[PpToken], names: &Names) -> Option<Symbol> {
1596 let name = ident_of(body.first()?)?;
1597 let rest = &body[1..];
1598 if name == names.ifndef {
1599 let [only] = rest else {
1600 return None;
1601 };
1602 return ident_of(only);
1603 }
1604 if name != names.r#if {
1605 return None;
1606 }
1607 let [bang, defined, tail @ ..] = rest else {
1608 return None;
1609 };
1610 if bang.punct() != Some(Punct::Bang) || ident_of(defined) != Some(names.defined) {
1611 return None;
1612 }
1613 match tail {
1614 [only] => ident_of(only),
1615 [open, only, close]
1616 if open.punct() == Some(Punct::LParen) && close.punct() == Some(Punct::RParen) =>
1617 {
1618 ident_of(only)
1619 }
1620 _ => None,
1621 }
1622}
1623
1624fn is_include(name: Option<Symbol>, names: &Names) -> bool {
1626 name == Some(names.include) || name == Some(names.include_next) || name == Some(names.embed)
1627}
1628
1629fn is_directive(tok: PpToken) -> bool {
1631 tok.flags.has(TokenFlags::START_OF_LINE) && tok.punct() == Some(Punct::Hash)
1632}
1633
1634fn ident_of(tok: &PpToken) -> Option<Symbol> {
1635 match tok.kind {
1636 PpTokenKind::Ident => tok.value,
1637 _ => None,
1638 }
1639}
1640
1641fn last_span(tokens: &[PpToken]) -> Span {
1642 tokens.last().map_or(Span::DUMMY, |t| t.span)
1643}
1644
1645fn decimal(tok: &PpToken, interner: &Interner) -> Option<u32> {
1651 if tok.kind != PpTokenKind::Number {
1652 return None;
1653 }
1654 let text = interner.resolve(tok.value?);
1655 if text.is_empty() || !text.bytes().all(|b| b.is_ascii_digit()) {
1656 return None;
1657 }
1658 text.parse::<u32>().ok().filter(|n| *n <= 2_147_483_647)
1661}
1662
1663fn number(value: bool, flags: TokenFlags, span: Span, interner: &mut Interner) -> Tok {
1665 let sym = interner.intern(if value { "1" } else { "0" });
1666 Tok::synthetic(PpTokenKind::Number, Some(sym), flags, span)
1667}
1668
1669fn spell_line(tokens: &[PpToken], interner: &Interner) -> String {
1671 let mut out = String::new();
1672 for (index, tok) in tokens.iter().enumerate() {
1673 if index > 0 && tok.flags.has(TokenFlags::LEADING_SPACE) {
1674 out.push(' ');
1675 }
1676 match tok.value {
1677 Some(sym) => out.push_str(interner.resolve(sym)),
1678 None => {
1679 if let Some(p) = tok.punct() {
1680 out.push_str(p.as_str());
1681 }
1682 }
1683 }
1684 }
1685 out
1686}
1687
1688fn identifier_in(text: PpToken, interner: &mut Interner) -> Option<Symbol> {
1693 let literal = interner.resolve(text.value?).to_string();
1694 let (tokens, _) = tokenize(destringize(&literal).as_bytes(), 0, Options::new(), interner);
1695 let mut real = tokens.into_iter().filter(|t| !t.is_eof());
1696 let first = real.next()?;
1697 if first.kind != PpTokenKind::Ident || real.next().is_some() {
1698 return None;
1699 }
1700 first.value
1701}
1702
1703fn destringize(literal: &str) -> String {
1708 let body = literal
1709 .trim_start_matches(['L', 'u', 'U', '8'])
1710 .strip_prefix('"')
1711 .and_then(|s| s.strip_suffix('"'))
1712 .unwrap_or(literal);
1713 let mut out = String::with_capacity(body.len());
1714 let mut chars = body.chars();
1715 while let Some(c) = chars.next() {
1716 if c != '\\' {
1717 out.push(c);
1718 continue;
1719 }
1720 match chars.next() {
1721 Some('"') => out.push('"'),
1722 Some('\\') => out.push('\\'),
1723 Some(other) => {
1724 out.push('\\');
1725 out.push(other);
1726 }
1727 None => out.push('\\'),
1728 }
1729 }
1730 out
1731}
1732
1733fn arguments(line: &[Tok], at: usize) -> Option<(&[Tok], usize)> {
1739 if !line.get(at)?.is(Punct::LParen) {
1740 return None;
1741 }
1742 let mut depth = 1u32;
1743 let mut end = at + 1;
1744 while end < line.len() {
1745 if line[end].is(Punct::LParen) {
1746 depth += 1;
1747 } else if line[end].is(Punct::RParen) {
1748 depth -= 1;
1749 if depth == 0 {
1750 return Some((&line[at + 1..end], end + 1));
1751 }
1752 }
1753 end += 1;
1754 }
1755 None
1756}
1757
1758fn attribute_name<'i>(operand: &[Tok], interner: &'i Interner) -> Option<&'i str> {
1764 let name = match operand {
1765 [one] => one,
1766 [_, scope, name] if scope.is(Punct::ColonColon) => name,
1767 _ => return None,
1768 };
1769 name.ident().map(|sym| interner.resolve(sym))
1770}
1771
1772#[derive(Debug, Clone, Copy, PartialEq, Eq)]
1779enum Pass {
1780 Headers,
1782 Rest,
1785 Text,
1787}
1788
1789impl Pass {
1790 fn answers(self, op: Op) -> bool {
1792 match self {
1793 Pass::Headers => op.is_header(),
1794 Pass::Rest => true,
1795 Pass::Text => !op.is_header(),
1796 }
1797 }
1798}
1799
1800#[derive(Debug, Clone, Copy, PartialEq, Eq)]
1802enum Op {
1803 Include,
1805 IncludeNext,
1807 Embed,
1810 BuildingModule,
1812 Table(Kind),
1814}
1815
1816impl Op {
1817 fn is_header(self) -> bool {
1819 matches!(self, Op::Include | Op::IncludeNext | Op::Embed)
1820 }
1821}
1822
1823struct HasOps {
1828 ops: [(Symbol, Op); 9],
1829 range: (Symbol, Symbol),
1836}
1837
1838impl HasOps {
1839 fn new(interner: &mut Interner) -> HasOps {
1840 let ops = [
1841 (interner.intern("__has_include"), Op::Include),
1842 (interner.intern("__has_include_next"), Op::IncludeNext),
1843 (interner.intern("__has_embed"), Op::Embed),
1844 (interner.intern("__has_attribute"), Op::Table(Kind::Attribute)),
1845 (interner.intern("__has_c_attribute"), Op::Table(Kind::CAttribute)),
1846 (interner.intern("__has_builtin"), Op::Table(Kind::Builtin)),
1847 (interner.intern("__has_feature"), Op::Table(Kind::Feature)),
1848 (interner.intern("__has_extension"), Op::Table(Kind::Extension)),
1849 (interner.intern("__building_module"), Op::BuildingModule),
1850 ];
1851 let mut range = (ops[0].0, ops[0].0);
1852 for &(sym, _) in &ops {
1853 range = (range.0.min(sym), range.1.max(sym));
1854 }
1855 HasOps { ops, range }
1856 }
1857
1858 #[inline]
1860 fn op(&self, name: Symbol) -> Option<Op> {
1861 if name < self.range.0 || name > self.range.1 {
1862 return None;
1863 }
1864 self.ops.iter().find(|(sym, _)| *sym == name).map(|(_, op)| *op)
1865 }
1866}
1867
1868struct Names {
1874 define: Symbol,
1875 undef: Symbol,
1876 r#if: Symbol,
1877 ifdef: Symbol,
1878 ifndef: Symbol,
1879 elif: Symbol,
1880 elifdef: Symbol,
1881 elifndef: Symbol,
1882 r#else: Symbol,
1883 endif: Symbol,
1884 line: Symbol,
1885 error: Symbol,
1886 warning: Symbol,
1887 pragma: Symbol,
1888 include: Symbol,
1889 include_next: Symbol,
1890 embed: Symbol,
1891 defined: Symbol,
1892 once: Symbol,
1893 push_macro: Symbol,
1894 pop_macro: Symbol,
1895 pragma_op: Symbol,
1896 has: HasOps,
1897}
1898
1899impl Names {
1900 fn new(interner: &mut Interner) -> Names {
1901 Names {
1902 define: interner.intern("define"),
1903 undef: interner.intern("undef"),
1904 r#if: interner.intern("if"),
1905 ifdef: interner.intern("ifdef"),
1906 ifndef: interner.intern("ifndef"),
1907 elif: interner.intern("elif"),
1908 elifdef: interner.intern("elifdef"),
1909 elifndef: interner.intern("elifndef"),
1910 r#else: interner.intern("else"),
1911 endif: interner.intern("endif"),
1912 line: interner.intern("line"),
1913 error: interner.intern("error"),
1914 warning: interner.intern("warning"),
1915 pragma: interner.intern("pragma"),
1916 include: interner.intern("include"),
1917 include_next: interner.intern("include_next"),
1918 embed: interner.intern("embed"),
1919 defined: interner.intern("defined"),
1920 once: interner.intern("once"),
1921 push_macro: interner.intern("push_macro"),
1922 pop_macro: interner.intern("pop_macro"),
1923 pragma_op: interner.intern("_Pragma"),
1924 has: HasOps::new(interner),
1925 }
1926 }
1927}
1928
1929#[cfg(test)]
1930mod tests {
1931 use rucc_diag::{Severity, SourceMap};
1932 use rucc_session::{MemoryFileSystem, SearchPath};
1933
1934 use super::*;
1935 use rucc_session::Std;
1936
1937 use crate::predef::Timestamp;
1938
1939 fn slashes(text: &str) -> String {
1947 text.replace("\\\\", "/").replace('\\', "/")
1948 }
1949
1950 struct Run {
1951 interner: Interner,
1952 sources: SourceMap,
1953 fs: MemoryFileSystem,
1954 search: SearchPath,
1955 pp: Preprocessor,
1956 }
1957
1958 impl Run {
1959 fn new() -> Run {
1960 Run {
1961 interner: Interner::new(),
1962 sources: SourceMap::new(),
1963 fs: MemoryFileSystem::new(),
1964 search: SearchPath::new(),
1965 pp: Preprocessor::new(),
1966 }
1967 }
1968
1969 fn mapping(map: &[(&str, &str)]) -> Run {
1971 let mut list = PrefixMap::new();
1972 for (old, new) in map {
1973 list.push(*old, *new);
1974 }
1975 Run { pp: Preprocessor::with_prefix_map(list), ..Run::new() }
1976 }
1977
1978 fn file(&mut self, path: &str, contents: &str) {
1980 self.fs.insert(path, contents.as_bytes().to_vec());
1981 }
1982
1983 fn bytes(&mut self, path: &str, contents: &[u8]) {
1986 self.fs.insert(path, contents.to_vec());
1987 }
1988
1989 fn dir(&mut self, path: &str) {
1991 self.search.push_bracket(path);
1992 }
1993
1994 fn predefine(&mut self, triple: &str, opts: &Predef) {
1996 let target = TargetInfo::new(triple.parse().expect("a supported triple"));
1997 let mut cx =
1998 Context::new(&mut self.interner, &mut self.sources, &self.fs, &self.search);
1999 self.pp.predefine(&target, opts, &mut cx).expect("the map has room");
2000 }
2001
2002 fn go(&mut self, src: &str) -> String {
2004 self.go_named("/main.c", src)
2005 }
2006
2007 fn raw(&mut self, src: &str) -> Vec<Tok> {
2009 let file = self.sources.add("/main.c", src.as_bytes().to_vec()).expect("room");
2010 let mut cx =
2011 Context::new(&mut self.interner, &mut self.sources, &self.fs, &self.search);
2012 self.pp.run(file, &mut cx)
2013 }
2014
2015 fn preinclude(&mut self, files: &[Preinclude]) -> String {
2017 let mut out = Vec::new();
2018 {
2019 let mut cx =
2020 Context::new(&mut self.interner, &mut self.sources, &self.fs, &self.search);
2021 self.pp.preinclude(files, &mut out, &mut cx).expect("the map has room");
2022 }
2023 self.spell(&out)
2024 }
2025
2026 fn go_named(&mut self, path: &str, src: &str) -> String {
2028 let file = self.sources.add(path, src.as_bytes().to_vec()).expect("the map has room");
2029 let out = {
2030 let mut cx =
2031 Context::new(&mut self.interner, &mut self.sources, &self.fs, &self.search);
2032 self.pp.run(file, &mut cx)
2033 };
2034 self.spell(&out)
2035 }
2036
2037 fn spell(&self, out: &[Tok]) -> String {
2039 let mut text = String::new();
2040 for (at, tok) in out.iter().enumerate() {
2041 let spaced = tok.flags.has(TokenFlags::LEADING_SPACE)
2042 || tok.flags.has(TokenFlags::START_OF_LINE);
2043 if at > 0 && spaced {
2044 text.push(' ');
2045 }
2046 match tok.kind {
2047 PpTokenKind::Punct(p) => text.push_str(p.as_str()),
2048 _ => text.push_str(
2049 self.interner.resolve(tok.value.expect("every non-punctuator interns")),
2050 ),
2051 }
2052 }
2053 text
2054 }
2055
2056 fn files(&self) -> usize {
2060 self.sources.files().len()
2061 }
2062
2063 fn messages(&mut self) -> Vec<String> {
2064 self.pp.take_diagnostics().into_iter().map(|d| d.message).collect()
2065 }
2066
2067 fn severities(&mut self) -> Vec<Severity> {
2068 self.pp.diagnostics().iter().map(|d| d.severity).collect()
2069 }
2070 }
2071
2072 fn clean(src: &str) -> String {
2073 let mut run = Run::new();
2074 let text = run.go(src);
2075 assert!(run.messages().is_empty(), "expected no diagnostics from {src:?}");
2076 text
2077 }
2078
2079 #[test]
2080 fn a_taken_branch_is_kept_and_the_other_is_not() {
2081 assert_eq!(clean("#if 1\nyes\n#else\nno\n#endif\n"), "yes");
2082 assert_eq!(clean("#if 0\nyes\n#else\nno\n#endif\n"), "no");
2083 }
2084
2085 #[test]
2086 fn ifdef_and_ifndef_ask_the_macro_table() {
2087 assert_eq!(clean("#define F 1\n#ifdef F\nyes\n#endif\n"), "yes");
2088 assert_eq!(clean("#ifdef F\nyes\n#endif\n"), "");
2089 assert_eq!(clean("#ifndef F\nyes\n#endif\n"), "yes");
2090 assert_eq!(clean("#define F 1\n#if 0\na\n#elifdef F\nb\n#endif\n"), "b");
2092 assert_eq!(clean("#if 0\na\n#elifndef F\nb\n#endif\n"), "b");
2093 }
2094
2095 #[test]
2096 fn only_the_first_true_branch_of_a_chain_is_taken() {
2097 assert_eq!(clean("#if 0\na\n#elif 1\nb\n#elif 1\nc\n#else\nd\n#endif\n"), "b");
2098 assert_eq!(clean("#if 0\na\n#elif 0\nb\n#else\nc\n#endif\n"), "c");
2099 }
2100
2101 #[test]
2102 fn a_branch_after_one_that_was_taken_is_not_evaluated() {
2103 assert_eq!(clean("#if 1\na\n#elif 1/0\nb\n#endif\n"), "a");
2106 }
2107
2108 #[test]
2109 fn a_skipped_region_is_not_read_for_anything_but_nesting() {
2110 let src = "#if 0\nthis is not C at all\n#frobnicate\n#define\n#if 1\ninner\n#endif\n#endif\nafter\n";
2112 assert_eq!(clean(src), "after");
2113 }
2114
2115 #[test]
2116 fn nesting_inside_a_dead_branch_stays_balanced() {
2117 let src = "#if 0\n#ifdef X\na\n#else\nb\n#endif\n#else\nc\n#endif\n";
2118 assert_eq!(clean(src), "c");
2119 }
2120
2121 #[test]
2122 fn defined_works_in_both_spellings_and_before_expansion() {
2123 assert_eq!(clean("#define F 0\n#if defined F\nyes\n#endif\n"), "yes");
2124 assert_eq!(clean("#define F 0\n#if defined(F)\nyes\n#endif\n"), "yes");
2125 assert_eq!(clean("#if defined(F)\nyes\n#endif\n"), "");
2126 assert_eq!(clean("#define F 0\n#if defined F && !F\nyes\n#endif\n"), "yes");
2129 }
2130
2131 #[test]
2132 fn an_identifier_that_survived_expansion_is_zero() {
2133 assert_eq!(clean("#if NOT_DEFINED_ANYWHERE\nyes\n#else\nno\n#endif\n"), "no");
2134 assert_eq!(clean("#if !NOT_DEFINED_ANYWHERE\nyes\n#endif\n"), "yes");
2135 }
2136
2137 #[test]
2138 fn short_circuiting_keeps_a_guarded_expression_safe() {
2139 assert_eq!(clean("#if defined(F) && 1/F\nyes\n#else\nno\n#endif\n"), "no");
2142 assert_eq!(clean("#if 1 ? 2 : 1/0\nyes\n#endif\n"), "yes");
2143 }
2144
2145 #[test]
2146 fn the_operators_have_the_precedence_they_do_in_c() {
2147 assert_eq!(clean("#if 1 + 2 * 3 == 7\nyes\n#endif\n"), "yes");
2148 assert_eq!(clean("#if (1 + 2) * 3 == 9\nyes\n#endif\n"), "yes");
2149 assert_eq!(clean("#if 1 << 4 == 16\nyes\n#endif\n"), "yes");
2150 assert_eq!(clean("#if -8 / 3 == -2\nyes\n#endif\n"), "yes");
2151 assert_eq!(clean("#if (0xff & 0x0f) == 15\nyes\n#endif\n"), "yes");
2152 }
2153
2154 #[test]
2155 fn an_unsigned_operand_makes_the_whole_comparison_unsigned() {
2156 assert_eq!(clean("#if -1 < 0u\nyes\n#else\nno\n#endif\n"), "no");
2160 assert_eq!(clean("#if -1 < 0\nyes\n#else\nno\n#endif\n"), "yes");
2161 }
2162
2163 #[test]
2164 fn character_constants_evaluate() {
2165 assert_eq!(clean("#if 'A' == 65\nyes\n#endif\n"), "yes");
2166 assert_eq!(clean("#if '\\n' == 10\nyes\n#endif\n"), "yes");
2167 }
2168
2169 #[test]
2170 fn a_macro_is_expanded_before_the_expression_is_evaluated() {
2171 assert_eq!(clean("#define V 3\n#if V > 2\nyes\n#endif\n"), "yes");
2172 assert_eq!(clean("#define M(a) ((a) * 2)\n#if M(3) == 6\nyes\n#endif\n"), "yes");
2173 }
2174
2175 #[test]
2176 fn an_invocation_may_span_lines_within_a_run_of_text() {
2177 assert_eq!(clean("#define M(a, b) a + b\nM(1,\n2)\n"), "1 + 2");
2178 }
2179
2180 #[test]
2181 fn undef_removes_a_definition() {
2182 assert_eq!(clean("#define F 1\n#undef F\n#ifdef F\nyes\n#else\nno\n#endif\n"), "no");
2183 assert_eq!(clean("#undef NEVER_DEFINED\nok\n"), "ok");
2186 }
2187
2188 #[test]
2189 fn some_names_cannot_be_undefined() {
2190 let mut run = Run::new();
2191 run.go("#undef defined\n");
2192 assert_eq!(run.messages(), vec!["`defined` cannot be undefined".to_owned()]);
2193 }
2194
2195 #[test]
2196 fn error_reports_the_rest_of_the_line() {
2197 let mut run = Run::new();
2198 run.go("#if 0\n#error not this one\n#else\n#error unsupported target\n#endif\n");
2199 assert_eq!(run.messages(), vec!["unsupported target".to_owned()]);
2200 }
2201
2202 #[test]
2203 fn warning_is_a_warning() {
2204 let mut run = Run::new();
2205 run.go("#warning this is fine\n");
2206 assert_eq!(run.severities(), vec![Severity::Warning]);
2207 assert_eq!(run.messages(), vec!["this is fine".to_owned()]);
2208 }
2209
2210 #[test]
2211 fn an_unterminated_conditional_is_reported() {
2212 let mut run = Run::new();
2213 assert_eq!(run.go("#if 1\nyes\n"), "yes");
2214 assert_eq!(run.messages(), vec!["unterminated `#if`".to_owned()]);
2215 }
2216
2217 #[test]
2218 fn a_conditional_without_an_if_is_reported() {
2219 let mut run = Run::new();
2220 run.go("#endif\n");
2221 assert_eq!(run.messages(), vec!["`#endif` without `#if`".to_owned()]);
2222
2223 let mut run = Run::new();
2224 run.go("#if 1\n#else\n#else\n#endif\n");
2225 assert_eq!(run.messages(), vec!["a second `#else`".to_owned()]);
2226
2227 let mut run = Run::new();
2228 run.go("#if 1\n#else\n#elif 1\n#endif\n");
2229 assert_eq!(run.messages(), vec!["`#elif` after `#else`".to_owned()]);
2230 }
2231
2232 #[test]
2233 fn tokens_after_endif_are_a_warning_rather_than_an_error() {
2234 let mut run = Run::new();
2237 assert_eq!(run.go("#if 1\nyes\n#endif FOO\n"), "yes");
2238 assert_eq!(run.severities(), vec![Severity::Warning]);
2239 assert_eq!(run.messages(), vec!["extra tokens after `#endif`".to_owned()]);
2240 }
2241
2242 #[test]
2243 fn the_null_directive_does_nothing() {
2244 assert_eq!(clean("#\na\n#\nb\n"), "a b");
2245 }
2246
2247 #[test]
2248 fn an_unknown_directive_is_an_error_when_the_region_is_live() {
2249 let mut run = Run::new();
2250 run.go("#frobnicate\n");
2251 assert_eq!(run.messages(), vec!["invalid preprocessing directive".to_owned()]);
2252 }
2253
2254 #[test]
2255 fn line_is_recorded_for_the_source_map() {
2256 let mut run = Run::new();
2257 run.go("#line 42 \"other.c\"\n");
2258 assert!(run.messages().is_empty());
2259 let recorded = run.pp.line_directives();
2260 assert_eq!(recorded.len(), 1);
2261 assert_eq!(recorded[0].line, 42);
2262 let file = recorded[0].file.expect("a file name was given");
2263 assert_eq!(run.interner.resolve(file), "\"other.c\"");
2264 }
2265
2266 #[test]
2267 fn line_moves_what_line_and_file_the_lines_after_it_are_on() {
2268 let mut run = Run::new();
2269 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2270 assert_eq!(run.go("#line 1000\n__LINE__ __FILE__\n__LINE__\n"), "1000 \"/main.c\" 1001");
2271 }
2272
2273 #[test]
2274 fn a_line_marker_moves_the_lines_after_it_the_way_line_does() {
2275 let mut run = Run::new();
2276 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2277 assert_eq!(run.go("# 200 \"xyz\"\n__FILE__ __LINE__\n"), "\"xyz\" 200");
2278 }
2279
2280 #[test]
2281 fn a_line_marker_with_no_name_leaves_the_name_alone() {
2282 let mut run = Run::new();
2283 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2284 assert_eq!(run.go("# 20\n__FILE__ __LINE__\n"), "\"/main.c\" 20");
2285 }
2286
2287 #[test]
2288 fn a_line_marker_may_say_line_zero() {
2289 let mut run = Run::new();
2292 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2293 assert_eq!(run.go("# 0 \"xyz\"\n__LINE__\n"), "0");
2294 }
2295
2296 #[test]
2297 fn entering_and_returning_are_a_nesting_the_marker_flags_keep() {
2298 let mut run = Run::new();
2299 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2300 let text =
2301 run.go("# 200 \"xyz\" 1\n__FILE__\n# 5 \"/main.c\" 2\n__FILE__ __LINE__\n# 9 3 4\n");
2302 assert_eq!(text, "\"xyz\" \"/main.c\" 5");
2303 assert!(run.messages().is_empty());
2304 }
2305
2306 #[test]
2307 fn returning_to_a_file_nothing_was_ever_in_is_ignored() {
2308 let mut run = Run::new();
2309 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2310 assert_eq!(run.go("# 200 \"xyz\" 2 3\n__FILE__ __LINE__\n"), "\"/main.c\" 2");
2311 assert_eq!(
2312 run.messages(),
2313 vec!["file `xyz` linemarker ignored due to incorrect nesting".to_owned()]
2314 );
2315 }
2316
2317 #[test]
2318 fn a_flag_that_is_not_one_of_the_four_is_an_error() {
2319 let mut run = Run::new();
2320 run.go("# 20 \"a\" 7\n");
2321 assert_eq!(run.messages(), vec!["invalid flag `7` in line directive".to_owned()]);
2322 }
2323
2324 #[test]
2325 fn a_hash_and_something_that_is_not_a_line_number_is_still_an_unknown_directive() {
2326 let mut run = Run::new();
2328 run.go("# 1.5 \"a\"\n");
2329 assert_eq!(run.messages(), vec!["invalid preprocessing directive".to_owned()]);
2330 }
2331
2332 #[test]
2333 fn a_name_on_the_directive_is_the_name_from_there_on() {
2334 let mut run = Run::new();
2335 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2336 assert_eq!(run.go("#line 7 \"gen.y\"\n__FILE__ __LINE__\n"), "\"gen.y\" 7");
2337 }
2338
2339 #[test]
2340 fn a_directive_with_no_name_keeps_the_one_already_in_force() {
2341 let mut run = Run::new();
2342 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2343 assert_eq!(run.go("#line 7 \"gen.y\"\n#line 20\n__FILE__ __LINE__\n"), "\"gen.y\" 20");
2344 }
2345
2346 #[test]
2347 fn the_number_is_expanded_first_because_line_plus_one_is_real_code() {
2348 let mut run = Run::new();
2349 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2350 assert_eq!(run.go("#define WHERE 300\n#line WHERE\n__LINE__\n"), "300");
2351 }
2352
2353 #[test]
2354 fn a_directive_in_a_header_does_not_move_the_file_that_included_it() {
2355 let mut run = Run::new();
2356 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2357 run.file("/h.h", "#line 500\n__LINE__\n");
2358 run.dir("/");
2359 assert_eq!(run.go("#include <h.h>\n__LINE__\n"), "500 2");
2360 }
2361
2362 #[test]
2363 fn extra_tokens_after_the_file_name_are_a_warning_and_not_an_error() {
2364 let mut run = Run::new();
2365 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2366 assert_eq!(run.go("#line 7 \"gen.y\" and more\n__LINE__\n"), "7");
2367 assert_eq!(run.messages(), vec!["extra tokens after `#line`".to_owned()]);
2368 }
2369
2370 #[test]
2371 fn a_line_number_out_of_range_is_refused() {
2372 let mut run = Run::new();
2373 run.go("#line 0\n");
2374 assert_eq!(run.messages(), vec!["`#line` number is out of range".to_owned()]);
2375
2376 let mut run = Run::new();
2377 run.go("#line notanumber\n");
2378 assert_eq!(run.messages(), vec!["`#line` needs a decimal line number".to_owned()]);
2379 }
2380
2381 #[test]
2382 fn a_pragma_passes_through_unchanged() {
2383 assert_eq!(clean("#pragma pack(1)\nint x;\n"), "#pragma pack(1) int x;");
2384 }
2385
2386 #[test]
2391 fn the_space_between_the_hash_and_the_word_comes_off_a_pragma_that_is_indented() {
2392 assert_eq!(clean("#if 1\n# pragma pack(1)\n#endif\n"), "#pragma pack(1)");
2393 assert_eq!(clean("# pragma pack( 1 )\n"), "#pragma pack( 1 )", "the rest is kept");
2394 }
2395
2396 #[test]
2397 fn the_pragma_operator_becomes_a_pragma() {
2398 assert_eq!(
2399 clean("_Pragma(\"GCC visibility push(default)\")\nint x;\n"),
2400 "#pragma GCC visibility push(default) int x;"
2401 );
2402 }
2403
2404 #[test]
2405 fn the_pragma_operator_works_from_inside_a_macro() {
2406 let src = "#define PUSH _Pragma(\"pack(push)\")\nPUSH\nint x;\n";
2409 assert_eq!(clean(src), "#pragma pack(push) int x;");
2410 }
2411
2412 #[test]
2416 fn what_follows_a_pragma_operator_starts_a_line() {
2417 let mut run = Run::new();
2418 let out = run.raw("int x; _Pragma(\"pack(1)\") int y;\n");
2419 let starts: Vec<_> =
2420 out.iter().map(|tok| tok.flags.has(TokenFlags::START_OF_LINE)).collect();
2421 assert_eq!(
2424 starts,
2425 vec![true, false, false, true, false, false, false, false, false, true, false, false]
2426 );
2427 }
2428
2429 #[test]
2430 fn a_pragma_operator_that_is_not_given_a_string_is_reported() {
2431 let mut run = Run::new();
2432 run.go("_Pragma(x)\n");
2433 assert_eq!(run.messages(), vec!["`_Pragma` takes a single string literal".to_owned()]);
2434 }
2435
2436 #[test]
2437 fn an_include_reads_the_file_it_names() {
2438 let mut run = Run::new();
2439 run.file("/dir/one.h", "int from_the_header;\n");
2440 run.dir("/dir");
2441 assert_eq!(run.go("#include <one.h>\nint after;\n"), "int from_the_header; int after;");
2442 assert!(run.messages().is_empty());
2443 }
2444
2445 #[test]
2446 fn a_quoted_include_looks_next_to_the_including_file_first() {
2447 let mut run = Run::new();
2448 run.file("/local.h", "beside\n");
2449 run.file("/dir/local.h", "on the path\n");
2450 run.dir("/dir");
2451 assert_eq!(run.go("#include \"local.h\"\n"), "beside");
2452 assert!(run.messages().is_empty());
2453 }
2454
2455 #[test]
2456 fn an_angled_include_does_not_look_next_to_the_including_file() {
2457 let mut run = Run::new();
2458 run.file("/local.h", "beside\n");
2459 run.file("/dir/local.h", "on the path\n");
2460 run.dir("/dir");
2461 assert_eq!(run.go("#include <local.h>\n"), "on the path");
2462 }
2463
2464 #[test]
2465 fn a_macro_defined_in_a_header_is_visible_after_the_include() {
2466 let mut run = Run::new();
2467 run.file("/dir/defs.h", "#define N 42\n");
2468 run.dir("/dir");
2469 assert_eq!(run.go("#include <defs.h>\nint a = N;\n"), "int a = 42;");
2470 assert!(run.messages().is_empty());
2471 }
2472
2473 #[test]
2474 fn an_include_guard_keeps_the_second_read_empty() {
2475 let mut run = Run::new();
2476 run.file("/dir/g.h", "#ifndef G\n#define G\nonce\n#endif\n");
2477 run.dir("/dir");
2478 assert_eq!(run.go("#include <g.h>\n#include <g.h>\n"), "once");
2479 assert!(run.messages().is_empty());
2480 assert_eq!(run.files(), 2, "the second include is not opened at all");
2481 }
2482
2483 fn named(name: &str, macros_only: bool) -> Preinclude {
2484 Preinclude { name: name.to_owned(), macros_only }
2485 }
2486
2487 #[test]
2488 fn a_command_line_include_contributes_its_text_and_an_imacros_contributes_none() {
2489 let mut run = Run::new();
2490 run.file("i.h", "from_include\n#define I 1\n");
2491 run.file("m.h", "from_macros\n#define M 1\n");
2492 assert_eq!(run.preinclude(&[named("i.h", false), named("m.h", true)]), "from_include");
2493 assert_eq!(run.go("I M\n"), "1 1");
2495 }
2496
2497 #[test]
2498 fn every_imacros_runs_before_every_include_whatever_order_the_command_line_was_in() {
2499 for files in
2502 [[named("i.h", false), named("m.h", true)], [named("m.h", true), named("i.h", false)]]
2503 {
2504 let mut run = Run::new();
2505 run.file("i.h", "#ifdef M\nsaw_it\n#else\nmissed_it\n#endif\n");
2506 run.file("m.h", "#define M 1\n");
2507 assert_eq!(run.preinclude(&files), "saw_it");
2508 }
2509 }
2510
2511 #[test]
2512 fn a_header_read_for_its_macros_is_not_read_again_by_an_include_that_its_guard_covers() {
2513 let mut run = Run::new();
2516 run.file("/dir/g.h", "#ifndef G\n#define G\ndeclarations\n#endif\n");
2517 run.dir("/dir");
2518 assert_eq!(run.preinclude(&[named("/dir/g.h", true)]), "");
2519 assert_eq!(run.go("#include <g.h>\n"), "");
2520 assert!(run.messages().is_empty());
2521 }
2522
2523 #[test]
2524 fn a_command_line_include_is_a_dependency_and_is_named_before_the_headers_it_reads() {
2525 let mut run = Run::new();
2526 run.file("i.h", "#include \"deep.h\"\n");
2527 run.file("deep.h", "\n");
2528 run.file("m.h", "\n");
2529 run.preinclude(&[named("i.h", false), named("m.h", true)]);
2530 let names: Vec<String> =
2531 run.pp.dependencies().iter().map(|d| d.path.to_string_lossy().into_owned()).collect();
2532 let names: Vec<String> = names.iter().map(|n| n.replace('\\', "/")).collect();
2533 assert_eq!(names, ["m.h", "i.h", "deep.h"]);
2534 }
2535
2536 #[test]
2537 fn a_prerequisite_is_spelled_without_the_dot_the_search_path_was_written_with() {
2538 let mut run = Run::new();
2542 run.file("d/f.h", "\n");
2543 run.dir("./d");
2544 run.go("#include <f.h>\n");
2545 let names: Vec<String> =
2546 run.pp.dependencies().iter().map(|d| d.path.to_string_lossy().into_owned()).collect();
2547 assert_eq!(names.iter().map(|n| n.replace('\\', "/")).collect::<Vec<_>>(), ["d/f.h"]);
2548 }
2549
2550 #[test]
2551 fn a_command_line_include_that_is_nowhere_is_reported_against_the_flag_that_named_it() {
2552 let mut run = Run::new();
2553 assert_eq!(run.preinclude(&[named("nope.h", false)]), "");
2554 assert_eq!(run.messages(), ["`nope.h` file not found"]);
2555 }
2556
2557 #[test]
2558 fn the_other_spelling_of_a_guard_is_recognised_too() {
2559 for guard in ["#if !defined(G)", "#if !defined G"] {
2560 let mut run = Run::new();
2561 run.file("/dir/g.h", &format!("{guard}\n#define G\nonce\n#endif\n"));
2562 run.dir("/dir");
2563 assert_eq!(run.go("#include <g.h>\n#include <g.h>\n"), "once");
2564 assert_eq!(run.files(), 2, "{guard} should be a guard");
2565 }
2566 }
2567
2568 #[test]
2569 fn a_conditional_that_is_not_a_guard_does_not_skip_anything() {
2570 let mut run = Run::new();
2573 run.file("/dir/g.h", "#ifndef G\ntwice\n#endif\n");
2574 run.dir("/dir");
2575 assert_eq!(run.go("#include <g.h>\n#include <g.h>\n"), "twice twice");
2576 assert_eq!(run.files(), 3);
2577 }
2578
2579 #[test]
2580 fn a_token_outside_the_guard_stops_it_being_a_guard() {
2581 let mut run = Run::new();
2582 run.file("/dir/g.h", "#ifndef G\n#define G\n#endif\nalways\n");
2583 run.dir("/dir");
2584 assert_eq!(run.go("#include <g.h>\n#include <g.h>\n"), "always always");
2585 assert_eq!(run.files(), 3);
2586 }
2587
2588 #[test]
2589 fn pragma_once_skips_the_second_read_and_does_not_reach_the_output() {
2590 let mut run = Run::new();
2591 run.file("/dir/o.h", "#pragma once\nonce\n");
2592 run.dir("/dir");
2593 assert_eq!(run.go("#include <o.h>\n#include <o.h>\n"), "once");
2594 assert!(run.messages().is_empty());
2595 assert_eq!(run.files(), 2);
2596 }
2597
2598 #[test]
2599 fn pragma_once_in_the_main_file_is_a_warning_and_is_still_applied() {
2600 let mut run = Run::new();
2604 let src = "#pragma once\n#include <s.c>\nbody\n";
2605 run.file("/dir/s.c", src);
2606 run.dir("/dir");
2607 assert_eq!(run.go_named("/dir/s.c", src), "body");
2608 assert_eq!(run.severities(), vec![Severity::Warning]);
2609 assert_eq!(run.messages(), vec!["`#pragma once` in the main file".to_owned()]);
2610 assert_eq!(run.files(), 1);
2611 }
2612
2613 #[test]
2614 fn pragma_once_holds_across_two_spellings_of_the_one_path() {
2615 let mut run = Run::new();
2618 run.file("dir/s.c", "#pragma once\nbody\n");
2619 run.dir(".");
2620 assert_eq!(run.go("#include <dir/s.c>\n#include <dir/s.c>\n"), "body");
2621 assert!(run.messages().is_empty());
2622 assert_eq!(run.files(), 2);
2623 }
2624
2625 #[test]
2626 fn any_other_pragma_still_passes_through() {
2627 assert_eq!(clean("#pragma once_upon_a_time\n"), "#pragma once_upon_a_time");
2628 }
2629
2630 #[test]
2633 fn push_macro_and_pop_macro_put_a_definition_aside_and_bring_it_back() {
2634 let src = "#define X 1\n#pragma push_macro(\"X\")\n#undef X\n#define X 2\n a X\n#pragma pop_macro(\"X\")\nb X\n";
2635 assert_eq!(clean(src), "a 2 b 1");
2636 }
2637
2638 #[test]
2639 fn a_name_with_no_definition_pushes_and_pops_the_absence() {
2640 let src = "#pragma push_macro(\"X\")\n#define X 1\na X\n#pragma pop_macro(\"X\")\nb X\n";
2643 assert_eq!(clean(src), "a 1 b X");
2644 }
2645
2646 #[test]
2647 fn the_pushes_nest() {
2648 let src = "#define X 1\n#pragma push_macro(\"X\")\n#undef X\n#define X 2\n #pragma push_macro(\"X\")\n#undef X\n#define X 3\n a X\n#pragma pop_macro(\"X\")\nb X\n#pragma pop_macro(\"X\")\nc X\n";
2649 assert_eq!(clean(src), "a 3 b 2 c 1");
2650 }
2651
2652 #[test]
2653 fn a_pop_with_nothing_pushed_says_nothing() {
2654 assert_eq!(clean("#define X 1\n#pragma pop_macro(\"X\")\nX\n"), "1");
2657 assert_eq!(clean("#pragma pop_macro(\"Never\")\nx\n"), "x");
2658 }
2659
2660 #[test]
2661 fn the_pragma_operator_spelling_works_and_takes_effect_where_it_is_written() {
2662 let src = "#define X 1\n_Pragma(\"push_macro(\\\"X\\\")\")\n#undef X\n#define X 2\n a X\n_Pragma(\"pop_macro(\\\"X\\\")\")\nb X\n";
2667 assert_eq!(clean(src), "a 2 b 1");
2668 }
2669
2670 #[test]
2671 fn the_gcc_spelling_is_not_one_of_these_and_passes_through() {
2672 let src = "#define X 1\n#pragma GCC push_macro(\"X\")\n#undef X\n#define X 2\nX\n";
2676 assert_eq!(clean(src), "#pragma GCC push_macro(\"X\") 2");
2677 }
2678
2679 #[test]
2680 fn a_push_macro_that_is_not_the_shape_is_an_error() {
2681 for src in ["#pragma push_macro\n", "#pragma push_macro(X)\n", "#pragma pop_macro()\n"] {
2682 let mut run = Run::new();
2683 run.go(src);
2684 let word = if src.contains("push") { "push" } else { "pop" };
2685 assert_eq!(
2686 run.messages(),
2687 vec![format!("invalid `#pragma {word}_macro` directive")],
2688 "from {src:?}"
2689 );
2690 }
2691 }
2692
2693 #[test]
2694 fn a_string_that_does_not_spell_one_identifier_names_no_macro() {
2695 assert_eq!(clean("#pragma push_macro(\"a b\")\nx\n"), "x");
2698 assert_eq!(clean("#pragma push_macro(\"2\")\nx\n"), "x");
2699 }
2700
2701 #[test]
2702 fn what_follows_the_closing_parenthesis_is_the_usual_warning() {
2703 let mut run = Run::new();
2704 assert_eq!(run.go("#define X 1\n#pragma push_macro(\"X\") junk\nX\n"), "1");
2705 assert_eq!(run.severities(), vec![Severity::Warning]);
2706 assert_eq!(run.messages(), vec!["extra tokens after `#pragma`".to_owned()]);
2707 }
2708
2709 #[test]
2710 fn has_include_answers_from_the_search_path() {
2711 let mut run = Run::new();
2712 run.file("/dir/there.h", "");
2713 run.dir("/dir");
2714 let src = "#if __has_include(<there.h>)\nyes\n#endif\n\
2715 #if __has_include(<gone.h>)\nno\n#endif\n";
2716 assert_eq!(run.go(src), "yes");
2717 assert!(run.messages().is_empty(), "a header that is not there is an answer, not an error");
2718 }
2719
2720 #[test]
2721 fn has_include_asks_the_question_the_include_on_the_same_line_would() {
2722 let mut run = Run::new();
2726 run.file("/beside.h", "");
2727 let src = "#if __has_include(\"beside.h\")\nquoted\n#endif\n\
2728 #if __has_include(<beside.h>)\nangled\n#endif\n";
2729 assert_eq!(run.go(src), "quoted");
2730 }
2731
2732 #[test]
2733 fn has_include_next_starts_where_include_next_would() {
2734 let mut run = Run::new();
2735 run.file("/a/both.h", "#if __has_include_next(<both.h>)\nmore\n#endif\n");
2736 run.file("/b/both.h", "last\n");
2737 run.file("/a/only.h", "#if __has_include_next(<only.h>)\nmore\n#endif\n");
2738 run.dir("/a");
2739 run.dir("/b");
2740 assert_eq!(run.go("#include <both.h>\n"), "more");
2741 assert_eq!(run.go("#include <only.h>\n"), "", "there is nothing after /a to find it in");
2742 }
2743
2744 #[test]
2745 fn the_operand_of_has_include_is_not_macro_expanded() {
2746 let mut run = Run::new();
2749 run.file("/dir/linux/version.h", "");
2750 run.dir("/dir");
2751 let src = "#define linux 1\n#if __has_include(<linux/version.h>)\nyes\n#endif\n";
2752 assert_eq!(run.go(src), "yes");
2753 }
2754
2755 #[test]
2756 fn a_macro_may_expand_to_a_has_include() {
2757 let mut run = Run::new();
2759 run.file("/dir/there.h", "");
2760 run.dir("/dir");
2761 let src = "#define HAVE __has_include(<there.h>)\n#if HAVE\nyes\n#endif\n";
2762 assert_eq!(run.go(src), "yes");
2763 }
2764
2765 #[test]
2766 fn defined_says_the_has_operators_are_there() {
2767 let src = "#if defined(__has_include) && defined __has_builtin\nyes\n#endif\n";
2770 assert_eq!(clean(src), "yes");
2771 assert_eq!(clean("#ifdef __has_attribute\nyes\n#endif\n"), "yes");
2772 }
2773
2774 #[test]
2775 fn has_attribute_answers_out_of_the_matrix() {
2776 assert_eq!(clean("#if __has_attribute(packed)\nyes\n#endif\n"), "yes");
2780 assert_eq!(clean("#if __has_attribute(cold)\nyes\n#endif\n"), "");
2781 assert_eq!(clean("#if __has_attribute(no_such_attribute)\nyes\n#endif\n"), "");
2782 assert_eq!(clean("#if !__has_attribute(cold)\nno\n#endif\n"), "no");
2783 }
2784
2785 #[test]
2786 fn the_scoped_spelling_of_an_attribute_is_the_same_question() {
2787 assert_eq!(clean("#if __has_c_attribute(gnu::packed)\nyes\n#endif\n"), "");
2793 assert_eq!(clean("#if __has_c_attribute(deprecated)\nyes\n#endif\n"), "");
2794 }
2795
2796 #[test]
2797 fn has_builtin_answers_no_until_the_builtin_is_real() {
2798 assert_eq!(clean("#if __has_builtin(__builtin_expect)\nyes\n#endif\n"), "yes");
2799 assert_eq!(clean("#if __has_builtin(__builtin_clz)\nyes\n#endif\n"), "yes");
2800 assert_eq!(clean("#if __has_builtin(__builtin_alloca)\nyes\n#endif\n"), "yes");
2801 assert_eq!(clean("#if __has_builtin(__builtin_object_size)\nyes\n#endif\n"), "");
2802 assert_eq!(clean("#if __has_builtin(__builtin_nonesuch)\nyes\n#endif\n"), "");
2803 }
2804
2805 #[test]
2806 fn has_feature_and_has_extension_read_the_same_table() {
2807 assert_eq!(clean("#if __has_feature(pragma_once)\nyes\n#endif\n"), "yes");
2810 assert_eq!(clean("#if __has_extension(pragma_once)\nyes\n#endif\n"), "yes");
2811 assert_eq!(clean("#if __has_extension(include_next)\nyes\n#endif\n"), "yes");
2812 assert_eq!(clean("#if __has_feature(include_next)\nyes\n#endif\n"), "");
2813 assert_eq!(clean("#if __has_feature(statement_expressions)\nyes\n#endif\n"), "");
2814 }
2815
2816 #[test]
2817 fn building_module_is_always_no_and_is_recognised_so_that_the_line_parses() {
2818 assert_eq!(clean("#if __building_module(m)\nyes\n#endif\n"), "");
2822 assert_eq!(clean("#if !__building_module(m)\nyes\n#endif\n"), "yes");
2823 assert_eq!(
2824 clean(
2825 "#if !defined(offsetof) || (__has_feature(modules) && !__building_module(x))\nyes\n#endif\n"
2826 ),
2827 "yes"
2828 );
2829 assert_eq!(clean("#ifdef __building_module\nyes\n#endif\n"), "yes");
2831 assert_eq!(clean("#if defined(__building_module)\nyes\n#endif\n"), "yes");
2832 }
2833
2834 #[test]
2835 fn a_has_operator_without_an_operand_is_reported() {
2836 let mut run = Run::new();
2837 run.go("#if __has_include\nyes\n#endif\n");
2838 assert_eq!(run.messages(), ["expected `(` after `__has_include`"]);
2839 let mut run = Run::new();
2840 run.go("#if __has_include(1)\nyes\n#endif\n");
2841 assert_eq!(run.messages(), ["expected a file name in `<>` or `\"\"`"]);
2842 let mut run = Run::new();
2843 run.go("#if __has_attribute(\"packed\")\nyes\n#endif\n");
2844 assert_eq!(run.messages(), ["expected an identifier as the operand of `__has_attribute`"]);
2845 }
2846
2847 #[test]
2848 fn the_has_operators_answer_in_ordinary_text_too() {
2849 assert_eq!(clean("f __has_feature(pragma_once)\n"), "f 1");
2853 assert_eq!(clean("b __has_builtin(__builtin_expect)\n"), "b 1");
2854 assert_eq!(clean("a __has_attribute(packed)\n"), "a 1");
2855 assert_eq!(clean("c __has_c_attribute(deprecated)\n"), "c 0");
2856 assert_eq!(clean("m __building_module(foo)\n"), "m 0");
2857 }
2858
2859 #[test]
2860 fn a_macro_that_expands_to_a_has_operator_is_answered_where_it_is_used() {
2861 assert_eq!(clean("#define HAVE __has_feature(pragma_once)\nx HAVE\n"), "x 1");
2864 assert_eq!(clean("#define HAVE(x) __has_attribute(x)\ny HAVE(packed)\n"), "y 1");
2865 }
2866
2867 #[test]
2868 fn a_has_operator_in_text_still_needs_its_operand() {
2869 let mut run = Run::new();
2870 run.go("tail __has_attribute;\n");
2871 assert_eq!(run.messages(), ["expected `(` after `__has_attribute`"]);
2872 }
2873
2874 #[test]
2875 fn the_header_operators_are_refused_in_ordinary_text() {
2876 let mut run = Run::new();
2879 run.file("/dir/there.h", "");
2880 run.dir("/dir");
2881 run.go("a __has_include(<there.h>)\n");
2882 assert_eq!(run.messages(), ["`__has_include` used outside of a preprocessing directive"]);
2883 let mut run = Run::new();
2884 run.go("b __has_include_next(\"x.h\")\n");
2885 assert_eq!(
2886 run.messages(),
2887 ["`__has_include_next` used outside of a preprocessing directive"]
2888 );
2889 }
2890
2891 #[test]
2892 fn the_predefined_set_is_visible_to_the_source_file() {
2893 let mut run = Run::new();
2894 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2895 let src = "#if defined(__x86_64__) && defined(__linux__) && __SIZEOF_LONG__ == 8\n\
2896 yes\n#endif\n";
2897 assert_eq!(run.go(src), "yes");
2898 assert!(run.messages().is_empty());
2899 }
2900
2901 #[test]
2902 fn the_predefined_set_follows_the_target_and_not_the_host() {
2903 let mut run = Run::new();
2904 run.predefine("aarch64-unknown-linux-gnu", &Predef::new());
2905 assert_eq!(
2906 run.go("#ifdef __x86_64__\nno\n#endif\n#ifdef __aarch64__\nyes\n#endif\n"),
2907 "yes"
2908 );
2909 }
2910
2911 #[test]
2912 fn a_predefined_macro_expands_where_it_is_used() {
2913 let mut run = Run::new();
2914 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2915 assert_eq!(run.go("__SIZE_TYPE__ n;\n"), "long unsigned int n;");
2916 }
2917
2918 #[test]
2919 fn a_command_line_define_is_a_definition_like_any_other() {
2920 let mut opts = Predef::new();
2921 opts.defines = vec!["FOO".to_owned(), "BAR=3".to_owned()];
2922 opts.undefines = vec!["__linux__".to_owned()];
2923 let mut run = Run::new();
2924 run.predefine("x86_64-unknown-linux-gnu", &opts);
2925 let src = "#if FOO && BAR == 3 && !defined(__linux__)\nyes\n#endif\n";
2926 assert_eq!(run.go(src), "yes");
2927 assert!(run.messages().is_empty());
2928 }
2929
2930 #[test]
2931 fn the_predefined_set_produces_no_tokens_of_its_own() {
2932 let mut run = Run::new();
2935 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
2936 assert_eq!(run.go("alone\n"), "alone");
2937 }
2938
2939 #[test]
2940 fn the_predefined_files_are_named_the_way_gcc_names_them() {
2941 let mut run = Run::new();
2942 let mut opts = Predef::new();
2943 opts.defines = vec!["FOO=1".to_owned()];
2944 run.predefine("x86_64-unknown-linux-gnu", &opts);
2945 let names: Vec<&str> = run.sources.files().iter().map(|f| f.name.as_str()).collect();
2946 assert_eq!(names, ["<built-in>", "<command-line>"]);
2947 }
2948
2949 #[test]
2950 fn a_dialect_without_the_gnu_extensions_says_so() {
2951 let mut opts = Predef::new();
2952 opts.gnu_extensions = false;
2953 opts.std = Std::C99;
2954 let mut run = Run::new();
2955 run.predefine("x86_64-unknown-linux-gnu", &opts);
2956 let src = "#if defined(__STRICT_ANSI__) && __STDC_VERSION__ == 199901L && !defined(linux)\n\
2957 yes\n#endif\n";
2958 assert_eq!(run.go(src), "yes");
2959 }
2960
2961 #[test]
2962 fn the_date_and_time_are_the_same_for_the_whole_translation_unit() {
2963 let mut opts = Predef::new();
2964 opts.timestamp = Timestamp::from_unix(0);
2965 let mut run = Run::new();
2966 run.predefine("x86_64-unknown-linux-gnu", &opts);
2967 assert_eq!(run.go("__DATE__ __TIME__\n"), "\"Jan 1 1970\" \"00:00:00\"");
2968 }
2969
2970 #[test]
2971 fn a_has_operator_in_a_dead_branch_is_not_asked_about() {
2972 assert_eq!(clean("#if 0\n#if __has_include\n#endif\n#endif\nafter\n"), "after");
2974 }
2975
2976 #[test]
2977 fn a_conditional_may_not_span_an_include() {
2978 let mut run = Run::new();
2982 run.file("/dir/open.h", "#if 1\n");
2983 run.dir("/dir");
2984 run.go("#include <open.h>\nkept\n#endif\n");
2985 let messages = run.messages();
2986 assert_eq!(messages.len(), 2);
2987 assert!(messages[0].contains("unterminated"));
2988 assert!(messages[1].contains("without"));
2989 }
2990
2991 #[test]
2992 fn include_next_continues_after_the_directory_the_file_came_from() {
2993 let mut run = Run::new();
2996 run.file("/a/limits.h", "wrapper\n#include_next <limits.h>\n");
2997 run.file("/b/limits.h", "real\n");
2998 run.dir("/a");
2999 run.dir("/b");
3000 assert_eq!(run.go("#include <limits.h>\n"), "wrapper real");
3001 assert!(run.messages().is_empty());
3002 }
3003
3004 #[test]
3005 fn a_computed_include_is_expanded_first() {
3006 let mut run = Run::new();
3007 run.file("/dir/sub/thing.h", "computed\n");
3008 run.dir("/dir");
3009 let src = "#define HEADER <sub/thing.h>\n#include HEADER\n";
3010 assert_eq!(run.go(src), "computed");
3011 assert!(run.messages().is_empty());
3012 let mut run = Run::new();
3014 run.file("/dir/sub/thing.h", "computed\n");
3015 run.dir("/dir");
3016 assert_eq!(run.go("#define H \"sub/thing.h\"\n#include H\n"), "computed");
3017 }
3018
3019 #[test]
3020 fn a_header_that_is_not_there_says_where_it_looked() {
3021 let mut run = Run::new();
3022 run.dir("/dir");
3023 run.go("#include <nope.h>\n");
3024 let diagnostics = run.pp.take_diagnostics();
3025 assert_eq!(diagnostics.len(), 1);
3026 assert_eq!(diagnostics[0].code, Some("E0341"));
3027 assert_eq!(diagnostics[0].message, "`nope.h` file not found");
3028 assert!(diagnostics[0].children[0].message.contains("/dir"));
3029 }
3030
3031 #[test]
3038 fn a_header_that_is_not_there_says_why_the_system_directories_are_missing() {
3039 let mut run = Run::new();
3040 run.search.explain_missing_system("aarch64-macos needs a macOS SDK and there is none here");
3041 run.go("#include <stdio.h>\n");
3042 let diagnostics = run.pp.take_diagnostics();
3043 assert_eq!(diagnostics.len(), 1);
3044 assert_eq!(diagnostics[0].message, "`stdio.h` file not found");
3045 assert!(diagnostics[0].children[0].message.contains("search path is empty"));
3046 assert!(diagnostics[0].children[1].message.contains("needs a macOS SDK"));
3047 let mut run = Run::new();
3049 run.dir("/dir");
3050 run.go("#include <nope.h>\n");
3051 assert_eq!(run.pp.take_diagnostics()[0].children.len(), 1);
3052 }
3053
3054 #[test]
3055 fn an_include_that_is_not_a_header_name_is_reported() {
3056 let mut run = Run::new();
3057 run.go("#include 3\n");
3058 let diagnostics = run.pp.take_diagnostics();
3059 assert_eq!(diagnostics[0].code, Some("E0343"));
3060 }
3061
3062 #[test]
3063 fn a_header_that_includes_itself_stops() {
3064 let mut run = Run::new();
3065 run.file("/dir/loop.h", "#include <loop.h>\n");
3066 run.dir("/dir");
3067 run.go("#include <loop.h>\n");
3068 let diagnostics = run.pp.take_diagnostics();
3069 assert_eq!(diagnostics.len(), 1, "one complaint, not one per level");
3070 assert_eq!(diagnostics[0].code, Some("E0342"));
3071 }
3072
3073 #[test]
3074 fn an_include_in_a_dead_branch_is_not_read() {
3075 let mut run = Run::new();
3076 assert_eq!(run.go("#if 0\n#include <nothing.h>\n#endif\nafter\n"), "after");
3077 assert!(run.messages().is_empty(), "a skipped include is not resolved");
3078 }
3079
3080 #[test]
3081 fn embed_writes_the_bytes_of_the_resource() {
3082 let mut run = Run::new();
3083 run.bytes("/logo.bin", &[0, 1, 127, 128, 255]);
3084 assert_eq!(run.go("#embed \"logo.bin\"\n"), "0, 1, 127, 128, 255");
3085 assert!(run.messages().is_empty());
3086 }
3087
3088 #[test]
3089 fn an_embed_is_a_valid_initializer_on_both_sides_of_empty() {
3090 let mut run = Run::new();
3095 run.bytes("/some.bin", &[7, 8]);
3096 run.bytes("/none.bin", &[]);
3097 let line = |name: &str| {
3098 format!("{{\n#embed \"{name}\" prefix(0xEF,) suffix(,0xFE) if_empty(0)\n}}\n")
3099 };
3100 assert_eq!(run.go(&line("some.bin")), "{ 0xEF,7, 8 ,0xFE }");
3101 assert_eq!(run.go_named("/other.c", &line("none.bin")), "{ 0 }");
3102 assert!(run.messages().is_empty());
3103 }
3104
3105 #[test]
3106 fn the_limit_and_the_offset_choose_a_window_of_the_resource() {
3107 let mut run = Run::new();
3108 run.bytes("/eight.bin", &[1, 2, 3, 4, 5, 6, 7, 8]);
3109 assert_eq!(run.go("#embed \"eight.bin\" limit(3)\n"), "1, 2, 3");
3110 assert_eq!(
3111 run.go_named("/b.c", "#embed \"eight.bin\" gnu::offset(4) limit(3)\n"),
3112 "5, 6, 7"
3113 );
3114 assert_eq!(run.go_named("/c.c", "#embed \"eight.bin\" limit(0) if_empty(9)\n"), "9");
3117 assert_eq!(run.go_named("/d.c", "#embed \"eight.bin\" gnu::offset(99)\n"), "");
3118 assert!(run.messages().is_empty());
3119 }
3120
3121 #[test]
3122 fn the_limit_is_a_constant_expression_and_not_just_a_number() {
3123 let mut run = Run::new();
3126 run.bytes("/eight.bin", &[1, 2, 3, 4, 5, 6, 7, 8]);
3127 assert_eq!(
3128 run.go("#define CHUNK 2\n#embed \"eight.bin\" limit(CHUNK * 2)\n"),
3129 "1, 2, 3, 4"
3130 );
3131 assert!(run.messages().is_empty());
3132 }
3133
3134 #[test]
3135 fn a_misspelled_embed_parameter_is_refused_rather_than_ignored() {
3136 let mut run = Run::new();
3139 run.bytes("/eight.bin", &[1, 2]);
3140 assert_eq!(run.go("#embed \"eight.bin\" limits(1)\n"), "");
3141 assert_eq!(run.messages(), vec!["unknown `#embed` parameter `limits`".to_owned()]);
3142 let mut vendor = Run::new();
3143 vendor.bytes("/eight.bin", &[1, 2]);
3144 assert_eq!(vendor.go("#embed \"eight.bin\" clang::offset(1)\n"), "");
3145 assert_eq!(
3146 vendor.messages(),
3147 vec!["unknown `#embed` parameter `clang::offset`".to_owned()]
3148 );
3149 }
3150
3151 #[test]
3152 fn a_missing_embed_resource_is_reported_as_a_resource() {
3153 let mut run = Run::new();
3154 run.go("#embed <nothing.bin>\n");
3155 assert_eq!(run.messages(), vec!["`nothing.bin` resource not found".to_owned()]);
3156 }
3157
3158 #[test]
3159 fn has_embed_tells_missing_from_present_from_empty() {
3160 let mut run = Run::new();
3164 run.bytes("/some.bin", &[1]);
3165 run.bytes("/none.bin", &[]);
3166 let src = "#if __has_embed(\"none.bin\") == __STDC_EMBED_EMPTY__\nempty\n#endif\n\
3167 #if __has_embed(\"some.bin\") == __STDC_EMBED_FOUND__\nfound\n#endif\n\
3168 #if __has_embed(\"gone.bin\") == __STDC_EMBED_NOT_FOUND__\ngone\n#endif\n";
3169 run.predefine("x86_64-unknown-linux-gnu", &Predef::default());
3170 assert_eq!(run.go(src), "empty found gone");
3171 assert!(run.messages().is_empty());
3172 }
3173
3174 #[test]
3175 fn has_embed_takes_the_limit_into_account() {
3176 let mut run = Run::new();
3179 run.bytes("/some.bin", &[1, 2, 3]);
3180 run.predefine("x86_64-unknown-linux-gnu", &Predef::default());
3181 let src = "#if __has_embed(\"some.bin\" limit(0)) == __STDC_EMBED_EMPTY__\nempty\n#endif\n";
3182 assert_eq!(run.go(src), "empty");
3183 assert!(run.messages().is_empty());
3184 }
3185
3186 #[test]
3187 fn a_directive_may_have_space_before_the_hash_and_after_it() {
3188 assert_eq!(clean(" # define F 1\n#ifdef F\nyes\n#endif\n"), "yes");
3189 }
3190
3191 #[test]
3192 fn a_definition_survives_across_a_conditional() {
3193 assert_eq!(clean("#if 1\n#define F 7\n#endif\nF\n"), "7");
3194 }
3195
3196 #[test]
3197 fn an_empty_if_expression_is_reported() {
3198 let mut run = Run::new();
3199 run.go("#if\n#endif\n");
3200 assert_eq!(run.messages(), vec!["`#if` with no expression".to_owned()]);
3201 }
3202
3203 #[test]
3204 fn the_file_and_the_line_say_where_the_use_is() {
3205 let mut run = Run::new();
3206 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3207 assert_eq!(run.go("__FILE__ __LINE__\n__LINE__\n"), "\"/main.c\" 1 2");
3208 assert!(run.messages().is_empty());
3209 }
3210
3211 #[test]
3212 fn a_macro_that_mentions_the_line_answers_with_the_call() {
3213 let mut run = Run::new();
3214 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3215 run.file("/where.h", "#define WHERE __FILE__ __LINE__\n");
3216 assert_eq!(run.go("#include \"where.h\"\n\n\nWHERE\n"), "\"/main.c\" 4");
3220 assert!(run.messages().is_empty());
3221 }
3222
3223 #[test]
3224 fn the_file_name_is_the_file_without_the_directories() {
3225 let mut run = Run::new();
3226 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3227 assert_eq!(run.go_named("/deep/down/main.c", "__FILE_NAME__\n"), "\"main.c\"");
3228 }
3229
3230 #[test]
3231 fn a_backslash_in_the_name_is_escaped() {
3232 let mut run = Run::new();
3233 run.predefine("x86_64-pc-windows-msvc", &Predef::new());
3234 let text = run.go_named("C:\\src\\main.c", "__FILE__ __FILE_NAME__\n");
3237 assert_eq!(text, "\"C:\\\\src\\\\main.c\" \"main.c\"");
3238 }
3239
3240 #[test]
3241 fn the_base_file_is_the_one_named_on_the_command_line() {
3242 let mut run = Run::new();
3243 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3244 run.file("/deep.h", "__FILE__ __BASE_FILE__\n");
3245 assert_eq!(run.go("#include \"deep.h\"\n"), "\"/deep.h\" \"/main.c\"");
3246 assert!(run.messages().is_empty());
3247 }
3248
3249 #[test]
3250 fn a_prefix_map_rewrites_the_file_and_the_base_file_and_not_the_file_name() {
3251 let mut run = Run::mapping(&[("/build", ".")]);
3252 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3253 run.file("/build/deep.h", "__FILE__ __BASE_FILE__ __FILE_NAME__\n");
3254 let text = run.go_named("/build/main.c", "#include \"deep.h\"\n");
3260 assert_eq!(slashes(&text), "\"./deep.h\" \"./main.c\" \"deep.h\"");
3263 assert!(run.messages().is_empty());
3264 }
3265
3266 #[test]
3267 fn the_last_rewrite_that_matches_is_the_one_that_acts() {
3268 let mut run = Run::mapping(&[("/build", "src"), ("/build/gen", "generated")]);
3271 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3272 assert_eq!(run.go_named("/build/gen/made.c", "__FILE__\n"), "\"generated/made.c\"");
3273
3274 let mut run = Run::mapping(&[("/build", "src"), ("/build/gen", "generated")]);
3275 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3276 assert_eq!(run.go_named("/build/hand.c", "__FILE__\n"), "\"src/hand.c\"");
3277
3278 let mut run = Run::mapping(&[("/build", "src")]);
3281 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3282 assert_eq!(run.go_named("/elsewhere/main.c", "__FILE__\n"), "\"/elsewhere/main.c\"");
3283 }
3284
3285 #[test]
3286 fn a_rewrite_matches_the_characters_and_not_the_directories() {
3287 let mut run = Run::mapping(&[("/bui", "X")]);
3293 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3294 assert_eq!(run.go_named("/build/main.c", "__FILE__\n"), "\"Xld/main.c\"");
3295 }
3296
3297 #[test]
3298 fn the_include_level_counts_the_headers_above_it() {
3299 let mut run = Run::new();
3300 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3301 run.file("/one.h", "__INCLUDE_LEVEL__\n#include \"two.h\"\n");
3302 run.file("/two.h", "__INCLUDE_LEVEL__\n");
3303 assert_eq!(run.go("__INCLUDE_LEVEL__\n#include \"one.h\"\n"), "0 1 2");
3304 assert!(run.messages().is_empty());
3305 }
3306
3307 #[test]
3308 fn the_counter_is_a_different_number_every_time() {
3309 let mut run = Run::new();
3310 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3311 assert_eq!(run.go("__COUNTER__ __COUNTER__ __COUNTER__\n"), "0 1 2");
3312 }
3313
3314 #[test]
3315 fn the_counter_advances_once_per_argument_rather_than_once_per_use() {
3316 let mut run = Run::new();
3317 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3318 assert_eq!(run.go("#define TWICE(x) x x\nTWICE(__COUNTER__) __COUNTER__\n"), "0 0 1");
3322 }
3323
3324 #[test]
3325 fn the_line_is_a_number_an_if_can_use() {
3326 let mut run = Run::new();
3327 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3328 assert_eq!(run.go("#if __LINE__ == 1 && __INCLUDE_LEVEL__ == 0\nyes\n#endif\n"), "yes");
3329 assert!(run.messages().is_empty());
3330 }
3331
3332 #[test]
3333 fn the_dynamic_macros_are_defined_like_any_others() {
3334 let mut run = Run::new();
3335 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3336 let src = "#ifdef __FILE__\nyes\n#endif\n#undef __LINE__\n#ifndef __LINE__\ngone\n#endif\n";
3337 assert_eq!(run.go(src), "yes gone");
3338 assert!(run.messages().is_empty(), "`#undef` of a builtin is allowed, as it is in GCC");
3339 }
3340
3341 #[test]
3342 fn redefining_a_dynamic_macro_warns_and_points_at_the_built_in_file() {
3343 let mut run = Run::new();
3344 run.predefine("x86_64-unknown-linux-gnu", &Predef::new());
3345 assert_eq!(run.go("#define __FILE__ \"mine.c\"\n__FILE__\n"), "\"mine.c\"");
3346 let complaints = run.pp.take_diagnostics();
3347 assert_eq!(complaints.len(), 1);
3348 assert_eq!(complaints[0].code, Some("W0301"));
3349 let previous = complaints[0].children.first().expect("a note saying where it was");
3350 assert_eq!(run.sources.lookup(previous.span.lo).map(|loc| loc.file), {
3351 let built_in = run.sources.files().iter().find(|f| f.name == BUILT_IN);
3352 built_in.map(|f| f.id)
3353 });
3354 }
3355
3356 #[test]
3357 fn destringizing_undoes_what_stringizing_did() {
3358 assert_eq!(destringize(r#""a \"b\" c""#), r#"a "b" c"#);
3359 assert_eq!(destringize(r#""a \\ b""#), r"a \ b");
3360 assert_eq!(destringize(r#"L"wide""#), "wide");
3361 }
3362}