1use std::path::Path;
14
15use rucc_base::Interner;
16use rucc_codegen::coverage::Fired;
17use rucc_codegen::pipeline::{self, Machine};
18use rucc_diag::{Diagnostic, Severity, Span};
19use rucc_lex::{Convert, Keywords, PpToken, convert};
20use rucc_sema::{Checker, Context as CheckContext};
21use rucc_session::{EmitKind, FileSystem, Options, Session};
22use rucc_target::TargetInfo;
23
24use crate::preprocess::render;
25
26#[derive(Debug, Clone, PartialEq, Eq, Default)]
33pub enum Artifact {
34 #[default]
37 Nothing,
38 Text(String),
40 Object(Vec<u8>),
42}
43
44impl Artifact {
45 #[must_use]
47 pub fn bytes(&self) -> &[u8] {
48 match self {
49 Artifact::Nothing => &[],
50 Artifact::Text(text) => text.as_bytes(),
51 Artifact::Object(bytes) => bytes,
52 }
53 }
54}
55
56#[derive(Debug, Clone, PartialEq, Eq)]
58pub struct Compiled {
59 pub artifact: Artifact,
61 pub messages: Vec<String>,
63 pub errors: u32,
65 pub fired: Fired,
71 pub dumps: Vec<rucc_opt::Dump>,
77 pub remarks: String,
83}
84
85impl Compiled {
86 #[must_use]
88 pub fn failed(&self) -> bool {
89 self.errors > 0
90 }
91
92 #[must_use]
97 pub fn text(&self) -> &str {
98 match &self.artifact {
99 Artifact::Text(text) => text,
100 _ => "",
101 }
102 }
103}
104
105#[must_use]
118pub fn compile(opts: &Options, name: &str, fs: &dyn FileSystem) -> Compiled {
119 let mut sess = Session::new(opts.clone());
120 let keywords = Keywords::new(&mut sess.interner, opts.std, opts.gnu_extensions);
124 let mut diagnostics: Vec<Diagnostic> = Vec::new();
125 let mut fired = Fired::new();
127 let mut dumps = Vec::new();
129 let mut remarks = String::new();
130
131 let bytes = match fs.read(Path::new(name)) {
132 Ok(bytes) => bytes,
133 Err(e) => return failure(format!("{name}: {e}")),
134 };
135 let Ok(file) = sess.sources.add_shared(name, bytes, None) else {
136 return failure(format!("{name}: the source map has no room left for this file"));
137 };
138
139 let mut pp = rucc_pp::Preprocessor::new();
143 let predef = rucc_pp::Predef::for_options(opts);
144 let expanded: Vec<PpToken> = {
145 let mut cx = rucc_pp::Context::new(&mut sess.interner, &mut sess.sources, fs, &opts.search);
146 cx.lex = rucc_lex::Options::for_dialect(opts.std, opts.gnu_extensions);
147 if pp.predefine(&sess.target, &predef, &mut cx).is_err() {
148 return failure(format!("{name}: the source map has no room for the built in macros"));
149 }
150 pp.run(file, &mut cx).iter().map(|token| token.to_pp()).collect()
151 };
152 diagnostics.extend(pp.take_diagnostics());
153
154 let cx = Convert {
157 keywords: &keywords,
158 interner: &sess.interner,
159 target: &sess.target,
160 std: opts.std,
161 gnu: opts.gnu_extensions,
162 pedantic: opts.pedantic,
163 };
164 let (tokens, complaints) = convert(&expanded, &cx);
165 diagnostics.extend(complaints);
166
167 let parsed = rucc_parse::parse(
168 &tokens,
169 rucc_parse::Context {
170 interner: &sess.interner,
171 std: opts.std,
172 gnu: opts.gnu_extensions,
173 pedantic: opts.pedantic,
174 error_limit: opts.error_limit as usize,
175 },
176 );
177 let parse_failed = parsed.diagnostics.iter().any(|d| d.severity.is_fatal());
178 diagnostics.extend(parsed.diagnostics);
179
180 let mut artifact = Artifact::Nothing;
181 let mut instrumented = Instrumented::default();
184 if !parse_failed {
185 let mut checker = Checker::new(
186 &parsed.ast,
187 CheckContext {
188 names: &sess.interner,
189 target: &sess.target,
190 std: opts.std,
191 gnu: opts.gnu_extensions,
192 pedantic: opts.pedantic,
193 error_limit: opts.error_limit as usize,
194 builtins: opts.builtins && opts.hosted,
197 no_builtin: &opts.no_builtin,
198 },
199 );
200 checker.check_unit();
201 let checked = checker.finish();
202 if !checked.failed() {
203 match opts.emit {
204 EmitKind::Tast => {
205 artifact = Artifact::Text(rucc_sema::print(
206 &checked.tast,
207 &checked.types,
208 &sess.interner,
209 ));
210 }
211 EmitKind::TypeGranules => {
215 artifact = Artifact::Text(rucc_types::granule_report(
216 &checked.types,
217 &sess.interner,
218 &sess.target,
219 ));
220 }
221 EmitKind::Ir
222 | EmitKind::MirFinal
223 | EmitKind::Asm
224 | EmitKind::Object
225 | EmitKind::Executable
226 | EmitKind::SafetySummary => {
227 let mut lowered = rucc_lower::lower(
228 name,
229 rucc_lower::Context {
230 tast: &checked.tast,
231 types: &checked.types,
232 target: &sess.target,
233 names: &mut sess.interner,
234 },
235 );
236 let failed = lowered.diagnostics.iter().any(|d| d.severity.is_fatal());
240 if !failed {
241 if let Err(errors) = rucc_ir::verify(&lowered.module, &sess.interner) {
246 for error in errors {
247 diagnostics.push(internal(&format!("invalid IR, {error}")));
248 }
249 } else if let Err(complaints) =
250 instrument(&mut lowered.module, &mut sess.interner, opts)
251 .map(|done| instrumented = done)
252 {
253 diagnostics.extend(complaints);
254 } else if let Err(complaints) = optimize(
255 &mut lowered.module,
256 &sess.interner,
257 opts,
258 name,
259 &mut dumps,
260 &mut remarks,
261 ) {
262 diagnostics.extend(complaints);
263 } else if opts.emit == EmitKind::SafetySummary {
264 artifact = Artifact::Text(
269 rucc_safety::summarize(
270 &lowered.module,
271 &sess.interner,
272 name,
273 opts.safety.as_str(),
274 instrumented.checks,
275 instrumented.interposed,
276 instrumented.crossings,
277 )
278 .render(),
279 );
280 } else if opts.emit == EmitKind::Ir {
281 artifact =
286 Artifact::Text(rucc_ir::print(&lowered.module, &sess.interner));
287 } else {
288 match generate(
291 &mut lowered.module,
292 &mut sess.interner,
293 &sess.target,
294 opts,
295 &mut fired,
296 ) {
297 Ok(made) => artifact = made,
298 Err(complaints) => diagnostics.extend(complaints),
299 }
300 }
301 }
302 diagnostics.extend(lowered.diagnostics);
303 }
304 _ => {}
305 }
306 }
307 diagnostics.extend(checked.diagnostics);
308 }
309
310 let mut messages = Vec::with_capacity(diagnostics.len());
311 let mut errors = 0;
312 for diag in &diagnostics {
313 if !opts.warnings && diag.severity == Severity::Warning {
317 continue;
318 }
319 if diag.severity.is_fatal()
320 || (diag.severity == Severity::Warning && opts.warnings_are_errors)
321 {
322 errors += 1;
323 }
324 messages.push(render(diag, &sess.sources, opts.warnings_are_errors));
325 }
326 if errors > 0 {
327 artifact = Artifact::Nothing;
329 }
330 Compiled { artifact, messages, errors, fired, dumps, remarks }
333}
334
335#[must_use]
345pub fn compile_ir(opts: &Options, name: &str, fs: &dyn FileSystem) -> Compiled {
346 let mut sess = Session::new(opts.clone());
347 if opts.emit != EmitKind::Ir {
348 return failure(format!(
349 "{name}: an input of IR can only be emitted as IR, and `--emit={}` asks for what \
350 the C in front of it became",
351 opts.emit.as_str()
352 ));
353 }
354 let bytes = match fs.read(Path::new(name)) {
355 Ok(bytes) => bytes,
356 Err(e) => return failure(format!("{name}: {e}")),
357 };
358 let Ok(text) = std::str::from_utf8(bytes.as_slice()) else {
359 return failure(format!("{name}: this is not text, so it is not IR"));
360 };
361
362 let module = match rucc_ir::parse(text, &mut sess.interner) {
363 Ok(module) => module,
364 Err(error) => {
365 return failure(format!("{name}:{}: {}", error.line, error.message));
366 }
367 };
368 let mut diagnostics: Vec<Diagnostic> = Vec::new();
369 if let Err(errors) = rucc_ir::verify(&module, &sess.interner) {
370 for error in errors {
371 diagnostics.push(invalid(&format!("invalid IR, {error}")));
372 }
373 }
374 let mut messages = Vec::with_capacity(diagnostics.len());
375 for diag in &diagnostics {
376 messages.push(render(diag, &sess.sources, opts.warnings_are_errors));
377 }
378 let errors = u32::try_from(messages.len()).unwrap_or(u32::MAX);
379 let artifact = if errors > 0 {
380 Artifact::Nothing
381 } else {
382 Artifact::Text(rucc_ir::print(&module, &sess.interner))
383 };
384 Compiled {
386 artifact,
387 messages,
388 errors,
389 fired: Fired::new(),
390 dumps: Vec::new(),
391 remarks: String::new(),
392 }
393}
394
395fn instrument(
418 module: &mut rucc_ir::Module,
419 names: &mut Interner,
420 opts: &Options,
421) -> Result<Instrumented, Vec<Diagnostic>> {
422 if !opts.safety.instruments() {
423 return Ok(Instrumented::default());
424 }
425 let checks = rucc_safety::run(module);
426 let interposed = rucc_safety::redirect(module, names);
431 let crossings = rucc_safety::witness(module, names);
434 match rucc_ir::verify(module, names) {
435 Ok(()) => Ok(Instrumented { checks, interposed, crossings }),
436 Err(errors) => Err(errors
437 .iter()
438 .map(|e| internal(&format!("invalid IR after check insertion, {e}")))
439 .collect()),
440 }
441}
442
443#[derive(Clone, Copy, Debug, Default)]
449struct Instrumented {
450 checks: rucc_safety::Counts,
452 interposed: usize,
454 crossings: rucc_safety::Sites,
456}
457
458fn optimize(
470 module: &mut rucc_ir::Module,
471 names: &Interner,
472 opts: &Options,
473 file: &str,
474 dumps: &mut Vec<rucc_opt::Dump>,
475 remarks: &mut String,
476) -> Result<(), Vec<Diagnostic>> {
477 let mut settings = rucc_opt::Options::for_level(opts.opt_level);
478 settings.toggles.clone_from(&opts.passes);
479 settings.fuel = opts.pass_fuel.iter().cloned().collect();
480 settings.global_fuel = opts.pass_fuel_global;
481 settings.verify |= opts.verify_each;
482 for (on, spec) in &opts.pass_gates {
483 if let Err(why) = settings.gates.add(*on, spec) {
486 return Err(vec![internal(&why)]);
487 }
488 }
489 for spec in &opts.dump_ir {
490 if let Err(why) = settings.dumps.add(spec) {
493 return Err(vec![internal(&why)]);
494 }
495 }
496 let mut wants = rucc_opt::Wants::none();
497 for spec in &opts.opt_info {
498 if let Err(why) = wants.add(spec) {
501 return Err(vec![internal(&why)]);
502 }
503 }
504 let report = rucc_opt::run(module, names, &settings);
505 remarks.push_str(&rucc_opt::optinfo::render(file, &report, names, wants));
506 dumps.extend(report.dumps);
507 match report.broke.is_empty() {
508 true => Ok(()),
509 false => Err(report.broke.iter().map(|why| internal(why)).collect()),
510 }
511}
512
513fn generate(
532 module: &mut rucc_ir::Module,
533 names: &mut Interner,
534 target: &TargetInfo,
535 opts: &Options,
536 fired: &mut Fired,
537) -> Result<Artifact, Vec<Diagnostic>> {
538 let Some(machine) = Machine::for_target(target) else {
539 return Err(vec![unsupported(&format!(
540 "there is no back end for {} in this compiler yet, so there is nothing to generate",
541 target.triple
542 ))]);
543 };
544 let flags = pipeline::Flags { frame_pointer: opts.frame_pointer, red_zone: opts.red_zone };
545
546 if opts.safety.instruments() {
555 rucc_safety::lower(module, names);
556 if let Err(errors) = rucc_ir::verify(module, names) {
557 return Err(errors
558 .iter()
559 .map(|e| internal(&format!("invalid IR after check lowering, {e}")))
560 .collect());
561 }
562 }
563
564 let mut funcs = Vec::new();
565 let mut complaints = Vec::new();
566 for id in module.funcs() {
567 if module[id].is_declaration() {
568 continue;
569 }
570 match pipeline::compile_recording(&mut module[id], names, &machine, flags, fired) {
571 Ok(func) => funcs.push(func),
572 Err(why) => {
573 let name = names.resolve(module[id].name).to_owned();
574 let span = why.inst().map_or(Span::DUMMY, |inst| module[id].span(inst));
577 let said = format!("cannot generate code for '{name}': {why}");
578 complaints.push(unsupported_at(&said, span));
579 }
580 }
581 }
582 if !complaints.is_empty() {
583 return Err(complaints);
584 }
585 let globals = match opts.emit {
589 EmitKind::Asm | EmitKind::Object | EmitKind::Executable => {
590 rucc_asm::globals(module, names).map_err(refused)?
591 }
592 _ => rucc_asm::Globals::default(),
593 };
594 match opts.emit {
598 EmitKind::Asm => {
599 rucc_asm::print(&funcs, &globals, names, target).map(Artifact::Text).map_err(refused)
600 }
601 EmitKind::Object | EmitKind::Executable => {
604 let text = rucc_asm::assemble(&funcs, names, target).map_err(refused)?;
605 let data = globals.image();
606 rucc_object::write(&text, &data, target).map(Artifact::Object).map_err(
609 |why| match why {
610 rucc_object::Error::Format { .. } => vec![unsupported(&why.to_string())],
611 rucc_object::Error::Refused { .. } => vec![internal(&why.to_string())],
612 },
613 )
614 }
615 _ => Ok(Artifact::Text(rucc_mir::print(&funcs, names, target.regs))),
616 }
617}
618
619fn refused(why: rucc_asm::Error) -> Vec<Diagnostic> {
625 match why {
626 rucc_asm::Error::Thread { .. } => vec![unsupported(&why.to_string())],
627 _ => vec![internal(&why.to_string())],
628 }
629}
630
631fn unsupported(message: &str) -> Diagnostic {
637 unsupported_at(message, Span::DUMMY)
638}
639
640fn unsupported_at(message: &str, span: Span) -> Diagnostic {
646 Diagnostic::error(message.to_owned(), span)
647 .with_code("E0653")
648 .note("this construct is not lowered yet, see https://github.com/tamnd/rucc/issues", span)
649}
650
651fn invalid(message: &str) -> Diagnostic {
653 Diagnostic::error(message.to_owned(), Span::DUMMY).with_code("E0661")
654}
655
656fn internal(message: &str) -> Diagnostic {
658 Diagnostic::error(format!("internal error: {message}"), Span::DUMMY)
659 .with_code("E0652")
660 .note("this is a bug in rucc rather than in the program, please report it", Span::DUMMY)
661}
662
663fn failure(message: String) -> Compiled {
666 Compiled {
667 artifact: Artifact::Nothing,
668 messages: vec![format!("rucc: error: {message}")],
669 errors: 1,
670 fired: Fired::new(),
671 dumps: Vec::new(),
672 remarks: String::new(),
673 }
674}
675
676#[cfg(test)]
677mod tests {
678 use rucc_session::{MemoryFileSystem, Std};
679 use rucc_target::Triple;
680
681 use super::*;
682
683 fn options() -> Options {
684 let mut opts = Options::new("x86_64-unknown-linux-gnu".parse::<Triple>().unwrap());
685 opts.emit = EmitKind::Tast;
686 opts
687 }
688
689 fn run(opts: &Options, source: &str) -> Compiled {
690 let mut fs = MemoryFileSystem::new();
691 fs.insert("/main.c", source.to_owned().into_bytes());
692 compile(opts, "/main.c", &fs)
693 }
694
695 fn freestanding() -> Options {
699 let mut opts = options();
700 opts.hosted = false;
701 opts.search.push_system(rucc_session::runtime::DIR);
702 opts
703 }
704
705 fn shipped(source: &str) -> String {
707 let result = run(&freestanding(), source);
708 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
709 result.text().to_owned()
710 }
711
712 fn tast(source: &str) -> String {
714 let result = run(&options(), source);
715 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
716 result.text().to_owned()
717 }
718
719 #[test]
720 fn the_shipped_stdarg_declares_a_list_and_the_four_operators() {
721 let text = shipped(concat!(
722 "#include <stdarg.h>\n",
723 "int sum(int n, ...) {\n",
724 " va_list ap, copy;\n",
725 " va_start(ap, n);\n",
726 " va_copy(copy, ap);\n",
727 " int total = va_arg(ap, int) + va_arg(copy, int);\n",
728 " va_end(ap);\n",
729 " va_end(copy);\n",
730 " return total;\n",
731 "}\n",
732 ));
733 assert!(text.contains("va-start"), "{text}");
734 assert!(text.contains("va-copy"), "{text}");
735 assert!(text.contains("va-arg"), "{text}");
736 assert!(text.contains("va-end"), "{text}");
737 }
738
739 #[test]
743 fn stdarg_hands_out_the_type_alone_when_that_is_all_that_was_asked_for() {
744 let text = shipped(concat!(
745 "#define __need___va_list\n",
746 "#include <stdarg.h>\n",
747 "int vprint(const char *f, __gnuc_va_list ap);\n",
748 "#ifdef va_start\n",
749 "#error va_start should not be defined\n",
750 "#endif\n",
751 "#ifdef _VA_LIST_DEFINED\n",
752 "#error va_list should not have been made\n",
753 "#endif\n",
754 ));
755 assert!(text.contains("vprint"), "{text}");
756 }
757
758 #[test]
761 fn stddef_answers_one_piece_at_a_time_and_the_next_request_still_gets_through() {
762 let text = shipped(concat!(
763 "#define __need_size_t\n",
764 "#include <stddef.h>\n",
765 "#ifdef offsetof\n",
766 "#error offsetof should not be defined yet\n",
767 "#endif\n",
768 "#define __need_ptrdiff_t\n",
769 "#include <stddef.h>\n",
770 "#include <stddef.h>\n",
771 "size_t a;\n",
772 "ptrdiff_t b;\n",
773 "wchar_t c;\n",
774 "max_align_t d;\n",
775 "void *e = NULL;\n",
776 "struct P { int x; long y; };\n",
777 "size_t f = offsetof(struct P, y);\n",
778 ));
779 assert!(text.contains("decl #0 a : unsigned long"), "{text}");
780 assert!(text.contains("decl #1 b : long"), "{text}");
781 }
782
783 #[test]
784 fn the_shipped_limits_and_float_are_the_targets_own_answers() {
785 let text = shipped(concat!(
786 "#include <limits.h>\n",
787 "#include <float.h>\n",
788 "int bits = CHAR_BIT;\n",
789 "long big = LONG_MAX;\n",
790 "int low = INT_MIN;\n",
791 "int radix = FLT_RADIX;\n",
792 "int digits = DBL_MANT_DIG;\n",
793 ));
794 assert!(text.contains("const 8 : int"), "{text}");
795 assert!(text.contains("const 9223372036854775807 : long"), "{text}");
796 assert!(text.contains("const 2 : int"), "{text}");
797 assert!(text.contains("const 53 : int"), "{text}");
798 }
799
800 #[test]
804 fn the_shipped_stdint_writes_the_whole_set_when_there_is_no_library_to_defer_to() {
805 let text = shipped(concat!(
806 "#include <stdint.h>\n",
807 "int64_t a = INT64_C(1);\n",
808 "uint_least16_t b;\n",
809 "intptr_t c;\n",
810 "uintmax_t d = UINTMAX_MAX;\n",
811 "int wide = sizeof(int_fast64_t);\n",
812 ));
813 assert!(text.contains("decl #0 a : long"), "{text}");
814 assert!(text.contains("decl #1 b : unsigned short"), "{text}");
815 assert!(text.contains("decl #2 c : long"), "{text}");
816 }
817
818 #[test]
819 fn the_three_formality_headers_still_have_to_work() {
820 let text = shipped(concat!(
821 "#include <stdbool.h>\n",
822 "#include <stdalign.h>\n",
823 "#include <iso646.h>\n",
824 "#include <stdnoreturn.h>\n",
825 "int t = true and not false;\n",
826 "_Alignas(16) char buf[16];\n",
827 "int a = alignof(long);\n",
828 ));
829 assert!(text.contains("decl #0 t : int"), "{text}");
830 assert!(text.contains("const 8 : unsigned long"), "{text}");
831 }
832
833 #[test]
836 fn every_shipped_header_can_be_included_twice() {
837 let mut source = String::new();
838 for _ in 0..2 {
839 for name in rucc_session::runtime::names() {
840 source.push_str(&format!("#include <{name}>\n"));
841 }
842 }
843 source.push_str("int x;\n");
844 let text = shipped(&source);
845 assert!(text.starts_with("decl #0 x : int"), "{text}");
846 }
847
848 #[test]
849 fn a_file_that_is_not_there_says_so_and_produces_nothing() {
850 let fs = MemoryFileSystem::new();
851 let result = compile(&options(), "/nope.c", &fs);
852 assert!(result.failed());
853 assert!(result.messages[0].contains("/nope.c"), "{:?}", result.messages);
854 assert!(result.text().is_empty());
855 }
856
857 #[test]
858 fn an_object_comes_out_with_its_type_its_linkage_and_how_much_of_a_definition_it_is() {
859 let text = tast("int x = 1;\n");
860 let expected = "\
861decl #0 x : int object external static defined
862 init
863 +0
864 const 1 : int
865";
866 assert_eq!(text, expected);
867 }
868
869 #[test]
870 fn the_macros_are_expanded_before_anything_is_parsed() {
871 let text = tast("#define N 2\nint a[N];\n");
875 assert!(text.starts_with("decl #0 a : int[2] object external static tentative"), "{text}");
876 }
877
878 #[test]
884 fn a_pragma_is_not_a_declaration_and_the_parse_walks_past_the_ones_it_does_not_read() {
885 let text = tast(concat!(
886 "#pragma pack(4)\n",
887 "struct s { int a; };\n",
888 "#pragma pack()\n",
889 "int b;\n",
890 "_Pragma(\"GCC visibility push(default)\") int c;\n",
891 ));
892 assert!(text.contains("decl #0 b : int"), "{text}");
893 assert!(text.contains("decl #1 c : int"), "{text}");
894 }
895
896 #[test]
904 fn the_layout_attributes_move_the_members_and_the_record_the_way_gcc_lays_them_out() {
905 tast(concat!(
906 "struct A { char c; int i; } __attribute__((packed));\n",
907 "_Static_assert(sizeof(struct A) == 5 && _Alignof(struct A) == 1, \"A\");\n",
908 "_Static_assert(__builtin_offsetof(struct A, i) == 1, \"A.i\");\n",
909 "struct B { char c; int i; } __attribute__((aligned));\n",
912 "_Static_assert(sizeof(struct B) == 16 && _Alignof(struct B) == 16, \"B\");\n",
913 "struct C { char c; int i __attribute__((packed)); };\n",
914 "_Static_assert(sizeof(struct C) == 5 && _Alignof(struct C) == 1, \"C\");\n",
915 "_Static_assert(__builtin_offsetof(struct C, i) == 1, \"C.i\");\n",
916 "struct D { char c; int i; } __attribute__((packed, aligned(4)));\n",
917 "_Static_assert(sizeof(struct D) == 8 && _Alignof(struct D) == 4, \"D\");\n",
918 "_Static_assert(__builtin_offsetof(struct D, i) == 1, \"D.i\");\n",
919 "struct E { char c; _Alignas(8) int i; };\n",
920 "_Static_assert(sizeof(struct E) == 16 && _Alignof(struct E) == 8, \"E\");\n",
921 "_Static_assert(__builtin_offsetof(struct E, i) == 8, \"E.i\");\n",
922 "struct F { char c; int i __attribute__((aligned(8))); };\n",
923 "_Static_assert(sizeof(struct F) == 16 && _Alignof(struct F) == 8, \"F\");\n",
924 "struct G { char c; short s; } __attribute__((aligned(2)));\n",
927 "_Static_assert(sizeof(struct G) == 4 && _Alignof(struct G) == 2, \"G\");\n",
928 "struct H { char c; int i; } __attribute__((aligned(2)));\n",
929 "_Static_assert(sizeof(struct H) == 8 && _Alignof(struct H) == 4, \"H\");\n",
930 "struct I { [[gnu::packed]] char c; int i; };\n",
933 "_Static_assert(sizeof(struct I) == 8 && _Alignof(struct I) == 4, \"I\");\n",
934 "struct J { char c; [[gnu::packed]] int i; };\n",
935 "_Static_assert(sizeof(struct J) == 5 && _Alignof(struct J) == 1, \"J\");\n",
936 "struct M { char c; int i : 5; int j : 20; } __attribute__((packed));\n",
937 "_Static_assert(sizeof(struct M) == 5 && _Alignof(struct M) == 1, \"M\");\n",
938 "struct N { char c; long long l; } __attribute__((aligned(32)));\n",
939 "_Static_assert(sizeof(struct N) == 32 && _Alignof(struct N) == 32, \"N\");\n",
940 "union L { char c; int i; } __attribute__((packed));\n",
941 "_Static_assert(sizeof(union L) == 4 && _Alignof(union L) == 1, \"L\");\n",
942 "struct O { char c; int i; } __attribute__((__packed__));\n",
946 "_Static_assert(sizeof(struct O) == 5 && _Alignof(struct O) == 1, \"O\");\n",
947 "struct P { char c; int i; } __attribute__((__aligned__(8)));\n",
948 "_Static_assert(sizeof(struct P) == 8 && _Alignof(struct P) == 8, \"P\");\n",
949 ));
950 }
951
952 #[test]
961 fn the_aligned_attribute_on_a_declaration_raises_what_that_one_object_is_aligned_to() {
962 tast(concat!(
963 "int v __attribute__((aligned(64)));\n",
964 "_Static_assert(__alignof__(v) == 64, \"v\");\n",
965 "__attribute__((aligned(32))) int w;\n",
968 "_Static_assert(__alignof__(w) == 32, \"w\");\n",
969 "[[gnu::aligned(16)]] int x;\n",
970 "_Static_assert(__alignof__(x) == 16, \"x\");\n",
971 "int y __attribute__((aligned(2)));\n",
974 "_Static_assert(__alignof__(y) == 4, \"y\");\n",
975 "void f(void) { int a __attribute__((aligned(128)));\n",
977 "_Static_assert(__alignof__(a) == 128, \"a\"); (void)a; }\n",
978 "_Static_assert(__alignof__(int) == 4, \"int\");\n",
981 "void g(void) __attribute__((aligned(256)));\n",
984 "void g(void) {}\n",
985 "_Static_assert(__alignof__(g) == 256, \"g\");\n",
986 ));
987 }
988
989 #[test]
993 fn what_a_declaration_asked_to_be_aligned_to_is_what_the_assembler_is_told() {
994 let text = asm(concat!(
995 "int v __attribute__((aligned(64)));\n",
996 "void g(void) __attribute__((aligned(256)));\n",
997 "void g(void) {}\n",
998 "void plain(void) {}\n",
999 ));
1000 assert!(text.contains("\t.p2align\t6\n\t.type\tv, @object\n"), "{text}");
1001 assert!(text.contains("\t.p2align\t8, 0x90\n\t.globl\tg\n"), "{text}");
1002 assert!(text.contains("\t.p2align\t4, 0x90\n\t.globl\tplain\n"), "{text}");
1003 }
1004
1005 #[test]
1014 fn an_aligned_typedef_says_what_an_object_of_it_is_aligned_to_and_may_lower_it() {
1015 tast(concat!(
1016 "typedef int L __attribute__((aligned(2)));\n",
1017 "_Static_assert(__alignof__(L) == 2, \"L\");\n",
1018 "_Static_assert(_Alignof(L) == 2, \"L alignof\");\n",
1019 "_Static_assert(sizeof(L) == 4, \"L size\");\n",
1021 "struct T { char c; L x; };\n",
1022 "_Static_assert(sizeof(struct T) == 6, \"T\");\n",
1023 "_Static_assert(__builtin_offsetof(struct T, x) == 2, \"T.x\");\n",
1024 "typedef int H __attribute__((aligned(16)));\n",
1026 "_Static_assert(__alignof__(H) == 16, \"H\");\n",
1027 "_Static_assert(sizeof(H) == 4, \"H size\");\n",
1028 "struct U { char c; H x; };\n",
1029 "_Static_assert(sizeof(struct U) == 32, \"U\");\n",
1030 "_Static_assert(__builtin_offsetof(struct U, x) == 16, \"U.x\");\n",
1031 "typedef L M __attribute__((aligned(8)));\n",
1034 "_Static_assert(__alignof__(M) == 8, \"M\");\n",
1035 "typedef L N;\n",
1038 "_Static_assert(__alignof__(N) == 2, \"N\");\n",
1039 "_Static_assert(__alignof__(int) == 4, \"int\");\n",
1041 ));
1042 let text = asm(concat!(
1043 "typedef int L __attribute__((aligned(2)));\n",
1044 "typedef int H __attribute__((aligned(16)));\n",
1045 "L low;\n",
1046 "H high;\n",
1047 ));
1048 assert!(text.contains("\t.p2align\t1\n\t.type\tlow, @object\n"), "{text}");
1049 assert!(text.contains("\t.p2align\t4\n\t.type\thigh, @object\n"), "{text}");
1050 }
1051
1052 #[test]
1060 fn the_vector_size_attribute_builds_a_type_of_lanes_and_measures_it_in_bytes() {
1061 tast(concat!(
1062 "typedef int __attribute__((vector_size(16))) v4si;\n",
1063 "_Static_assert(sizeof(v4si) == 16 && _Alignof(v4si) == 16, \"v4si\");\n",
1064 "typedef char __attribute__((vector_size(16))) v16qi;\n",
1065 "_Static_assert(sizeof(v16qi) == 16, \"v16qi\");\n",
1066 "typedef int __attribute__((vector_size(4))) v1si;\n",
1069 "_Static_assert(sizeof(v1si) == 4, \"v1si\");\n",
1070 "typedef float __attribute__((__vector_size__(8))) v2sf;\n",
1072 "_Static_assert(sizeof(v2sf) == 8, \"v2sf\");\n",
1073 "typedef short [[gnu::vector_size(8)]] v4hi;\n",
1074 "_Static_assert(sizeof(v4hi) == 8, \"v4hi\");\n",
1075 "v4si g;\n",
1078 "_Static_assert(sizeof(g[0]) == 4, \"lane\");\n",
1079 "_Static_assert(sizeof(g + g) == 16, \"whole\");\n",
1080 "_Static_assert(sizeof(g + 1) == 16, \"broadcast\");\n",
1083 "_Static_assert(sizeof(v4si[3]) == 48, \"array\");\n",
1085 ));
1086 }
1087
1088 #[test]
1098 fn a_vector_is_written_whole_into_an_array_of_them_and_named_by_a_type_name() {
1099 tast(concat!(
1100 "typedef int __attribute__((vector_size(8))) v2si;\n",
1101 "v2si table[] = { (v2si){ 1, 2 }, (v2si){ 3, 4 } };\n",
1102 "_Static_assert(sizeof(table) == 16, \"two of them and not eight lanes\");\n",
1103 "v2si written = (int __attribute__((vector_size(8)))){ 5, 6 };\n",
1105 "_Static_assert(sizeof((int __attribute__((vector_size(16)))){ 0 }) == 16, \"named\");\n",
1106 "v2si lanes[2] = { 1, 2, 3, 4 };\n",
1109 "_Static_assert(sizeof(lanes) == 16, \"still elided\");\n",
1110 ));
1111 }
1112
1113 #[test]
1121 fn a_lane_is_assignable_and_a_shift_takes_a_count_of_its_own_lane() {
1122 let result = run(
1123 &options(),
1124 concat!(
1125 "typedef int __attribute__((vector_size(16))) v4si;\n",
1126 "typedef unsigned __attribute__((vector_size(16))) v4ui;\n",
1127 "void write(v4si *out, v4ui a, v4si b, int n) {\n",
1128 " v4si v = { 1, 2, 3, 4 };\n",
1129 " v[0] = n;\n",
1130 " v[1] += n;\n",
1131 " v[2]++;\n",
1132 " *&v[3] = n;\n",
1133 " v4ui shifted = a >> b;\n",
1135 " shifted <<= b;\n",
1136 " *out = v + (v4si)shifted + (1 << b);\n",
1139 "}\n",
1140 "void refused(const v4si c) {\n",
1143 " c[0] = 1;\n",
1144 "}\n",
1145 ),
1146 );
1147 assert_eq!(result.messages.len(), 1, "{:?}", result.messages);
1148 assert!(result.messages[0].contains("assignment of read-only"), "{:?}", result.messages);
1149 }
1150
1151 #[test]
1158 fn a_record_that_asks_for_the_other_byte_order_is_refused_rather_than_laid_out_in_this_one() {
1159 let opts = options();
1160 let big = "struct s { int i; } __attribute__((scalar_storage_order(\"big-endian\")));\n";
1161 assert_eq!(
1162 run(&opts, big).messages,
1163 ["/main.c:1:36: error: 'scalar_storage_order' is not implemented yet [E0688]\n\
1164 /main.c:1:36: note: every scalar in this record would be read in the wrong byte \
1165 order"]
1166 );
1167
1168 let armoured =
1169 "struct s { int i; } __attribute__((__scalar_storage_order__(\"little-endian\")));\n";
1170 let messages = run(&opts, armoured).messages;
1171 assert!(messages[0].contains("[E0688]"), "{messages:?}");
1172
1173 let front = "struct __attribute__((scalar_storage_order(\"big-endian\"))) s { int i; };\n";
1176 assert!(run(&opts, front).messages[0].contains("[E0688]"), "{front}");
1177 let standard = "struct s { int i; } [[gnu::scalar_storage_order(\"big-endian\")]];\n";
1178 assert!(run(&opts, standard).messages[0].contains("[E0688]"), "{standard}");
1179 }
1180
1181 #[test]
1191 fn packing_is_what_decides_whether_a_bit_field_may_straddle_its_own_storage() {
1192 assert_eq!(bit_field_byte("struct s { int x : 12; char y : 6; };"), 2);
1194 assert_eq!(
1195 bit_field_byte("struct s { int x : 12; char y : 6; } __attribute__((packed));"),
1196 1
1197 );
1198 assert_eq!(
1199 bit_field_byte("struct s { int x : 12; __attribute__((packed)) char y : 6; };"),
1200 1
1201 );
1202 assert_eq!(bit_field_byte("#pragma pack(4)\nstruct s { int x : 12; char y : 6; };"), 1);
1203 assert_eq!(bit_field_byte("struct s { char x; int y : 30; };"), 4);
1205 assert_eq!(bit_field_byte("struct s { char x; int y : 30; } __attribute__((packed));"), 1);
1206 assert_eq!(bit_field_byte("#pragma pack(4)\nstruct s { char x; int y : 30; };"), 1);
1208 assert_eq!(bit_field_byte("#pragma pack(2)\nstruct s { char x; int y : 30; };"), 1);
1209 }
1210
1211 fn bit_field_byte(record: &str) -> u64 {
1213 let source = format!("{record}\nint f(struct s *p) {{ return p->y; }}\n");
1214 let body = body(&source);
1215 let Some((before, _)) = body.split_once("ptr_add") else { return 0 };
1216 let (_, constant) = before.rsplit_once("iconst.i64 ").expect("an offset constant");
1217 constant.lines().next().expect("a line").trim().parse().expect("a byte offset")
1218 }
1219
1220 #[test]
1226 fn an_attribute_among_the_specifiers_is_kept_beside_the_ones_written_in_front() {
1227 tast(concat!(
1228 "struct a { char c; __attribute__((aligned(8))) int i; };\n",
1229 "_Static_assert(sizeof(struct a) == 16 && _Alignof(struct a) == 8, \"a\");\n",
1230 "_Static_assert(__builtin_offsetof(struct a, i) == 8, \"a.i\");\n",
1231 "struct b { char c; __attribute__((packed)) int i; };\n",
1232 "_Static_assert(sizeof(struct b) == 5 && _Alignof(struct b) == 1, \"b\");\n",
1233 "_Static_assert(__builtin_offsetof(struct b, i) == 1, \"b.i\");\n",
1234 "typedef struct { char c; int i; } __attribute__((packed)) c;\n",
1235 "_Static_assert(sizeof(c) == 5 && _Alignof(c) == 1, \"c\");\n",
1236 ));
1237 }
1238
1239 #[test]
1245 fn pragma_pack_caps_every_member_and_is_read_where_the_body_closes() {
1246 tast(concat!(
1247 "#pragma pack(1)\n",
1248 "struct A { char c; int i; };\n",
1249 "_Static_assert(sizeof(struct A) == 5 && _Alignof(struct A) == 1, \"A\");\n",
1250 "_Static_assert(__builtin_offsetof(struct A, i) == 1, \"A.i\");\n",
1251 "#pragma pack()\n",
1252 "struct B { char c; int i; };\n",
1253 "_Static_assert(sizeof(struct B) == 8 && _Alignof(struct B) == 4, \"B\");\n",
1254 "#pragma pack(2)\n",
1255 "struct C { char c; int i; double d; };\n",
1256 "_Static_assert(sizeof(struct C) == 14 && _Alignof(struct C) == 2, \"C\");\n",
1257 "_Static_assert(__builtin_offsetof(struct C, d) == 6, \"C.d\");\n",
1258 "struct K { char c; int i __attribute__((aligned(8))); };\n",
1260 "_Static_assert(sizeof(struct K) == 6 && _Alignof(struct K) == 2, \"K\");\n",
1261 "_Static_assert(__builtin_offsetof(struct K, i) == 2, \"K.i\");\n",
1262 "struct J { char c; int i; } __attribute__((aligned(8)));\n",
1264 "_Static_assert(sizeof(struct J) == 8 && _Alignof(struct J) == 8, \"J\");\n",
1265 "#pragma pack()\n",
1266 "#pragma pack(push, 1)\n",
1267 "struct D { char c; short s; };\n",
1268 "_Static_assert(sizeof(struct D) == 3 && _Alignof(struct D) == 1, \"D\");\n",
1269 "#pragma pack(pop)\n",
1270 "struct E { char c; short s; };\n",
1271 "_Static_assert(sizeof(struct E) == 4 && _Alignof(struct E) == 2, \"E\");\n",
1272 "struct H { char c;\n",
1274 "#pragma pack(1)\n",
1275 " int i; };\n",
1276 "_Static_assert(sizeof(struct H) == 5 && _Alignof(struct H) == 1, \"H\");\n",
1277 "#pragma pack(1)\n",
1278 "struct I { char c;\n",
1279 "#pragma pack()\n",
1280 " int i; };\n",
1281 "_Static_assert(sizeof(struct I) == 8 && _Alignof(struct I) == 4, \"I\");\n",
1282 "#pragma pack()\n",
1283 "#pragma pack(push, 8)\n",
1285 "#pragma pack(push, 1)\n",
1286 "struct P { char c; int i; };\n",
1287 "_Static_assert(sizeof(struct P) == 5 && _Alignof(struct P) == 1, \"P\");\n",
1288 "#pragma pack(pop)\n",
1289 "struct Q { char c; int i; };\n",
1290 "_Static_assert(sizeof(struct Q) == 8 && _Alignof(struct Q) == 4, \"Q\");\n",
1291 "#pragma pack(pop)\n",
1292 "#pragma pack(16)\n",
1294 "struct R { char c; int i; };\n",
1295 "_Static_assert(sizeof(struct R) == 8 && _Alignof(struct R) == 4, \"R\");\n",
1296 "#pragma pack()\n",
1297 "#pragma pack(1)\n",
1298 "struct S { char c; int i : 5; int j : 20; };\n",
1299 "_Static_assert(sizeof(struct S) == 5 && _Alignof(struct S) == 1, \"S\");\n",
1300 "union T { char c; int i; };\n",
1301 "_Static_assert(sizeof(union T) == 4 && _Alignof(union T) == 1, \"T\");\n",
1302 "#pragma pack()\n",
1303 ));
1304 }
1305
1306 #[test]
1310 fn a_pack_line_that_is_not_one_is_reported_in_the_words_gcc_uses() {
1311 let result = run(
1312 &options(),
1313 concat!(
1314 "#pragma pack 4\n",
1315 "#pragma pack(pop)\n",
1316 "#pragma pack(3)\n",
1317 "#pragma pack(1) junk\n",
1318 "#pragma pack(push, 1\n",
1319 "#pragma pack(x)\n",
1320 "#pragma pack(0)\n",
1323 "#pragma pack(push)\n",
1324 "struct s { char c; int i; };\n",
1325 "#pragma pack(pop)\n",
1326 "#pragma pack(pop, foo)\n",
1327 ),
1328 );
1329 let expected = [
1330 "missing `(` after `#pragma pack` - ignored",
1331 "`#pragma pack (pop)` encountered without matching `#pragma pack (push)`",
1332 "alignment must be a small power of two, not 3",
1333 "junk at end of `#pragma pack`",
1334 "malformed `#pragma pack(push[, id][, <n>])` - ignored",
1335 "unknown action `x` for `#pragma pack` - ignored",
1336 "`#pragma pack(pop, foo)` encountered without matching `#pragma pack(push, foo)`",
1337 ];
1338 assert_eq!(result.messages.len(), expected.len(), "{:?}", result.messages);
1339 for (message, want) in result.messages.iter().zip(expected) {
1340 assert!(message.contains(want), "expected {want:?} in {message:?}");
1341 }
1342 }
1343
1344 #[test]
1348 fn the_wide_integer_answers_to_all_three_of_its_names() {
1349 let text = tast("__uint128_t a; __int128_t b; unsigned __int128 c;\n");
1350 assert!(text.contains("decl #0 a : unsigned __int128"), "{text}");
1351 assert!(text.contains("decl #1 b : __int128"), "{text}");
1352 assert!(text.contains("decl #2 c : unsigned __int128"), "{text}");
1353 }
1354
1355 #[test]
1356 fn every_conversion_the_language_performs_is_a_node_in_the_output() {
1357 let text = tast("long f(int a, long b) { return a + b; }\n");
1361 assert!(text.contains("convert arithmetic"), "{text}");
1362 }
1363
1364 #[test]
1365 fn a_mistake_in_each_phase_reaches_the_caller_and_writes_no_tree() {
1366 for source in [
1367 "#error stop\n",
1368 "int f(void) { return 1 + ; }\n",
1369 "int f(void) { return undeclared; }\n",
1370 ] {
1371 let result = run(&options(), source);
1372 assert!(result.failed(), "expected this to fail:\n{source}");
1373 assert!(
1374 result.text().is_empty(),
1375 "a file that did not compile wrote a tree:\n{source}"
1376 );
1377 }
1378 }
1379
1380 #[test]
1381 fn one_undeclared_name_is_one_message_and_not_one_per_use() {
1382 let result = run(&options(), "int f(void) { return nope + nope * nope; }\n");
1386 assert_eq!(result.errors, 1, "{:?}", result.messages);
1387 }
1388
1389 #[test]
1390 fn a_declaration_the_parser_skipped_does_not_become_an_undeclared_name_as_well() {
1391 let result = run(&options(), "int x = ;\nint f(void) { return x; }\n");
1395 assert_eq!(result.errors, 1, "{:?}", result.messages);
1396 }
1397
1398 #[test]
1399 fn werror_turns_a_warning_into_an_error_in_the_count_and_in_the_word() {
1400 let source = "int f(void) { char c = 300; return c; }\n";
1401 let plain = run(&options(), source);
1402 assert_eq!(plain.errors, 0, "{:?}", plain.messages);
1403 assert_eq!(plain.messages.len(), 1, "expected a warning about the narrowed constant");
1404 assert!(!plain.text().is_empty(), "a warning is not a reason to write nothing");
1405
1406 let mut opts = options();
1407 opts.warnings_are_errors = true;
1408 let strict = run(&opts, source);
1409 assert!(strict.failed());
1410 assert!(strict.text().is_empty(), "and under -Werror it is a reason to write nothing");
1411 for message in &strict.messages {
1412 assert!(!message.contains("warning:"), "{message}");
1413 }
1414 }
1415
1416 #[test]
1417 fn w_drops_the_warning_before_werror_can_promote_it() {
1418 let source = "int f(void) { char c = 300; return c; }\n";
1419 let mut opts = options();
1420 opts.warnings = false;
1421 let quiet = run(&opts, source);
1422 assert_eq!(quiet.messages, Vec::<String>::new());
1423 assert_eq!(quiet.errors, 0);
1424 assert!(!quiet.text().is_empty(), "and the file still compiles");
1425
1426 opts.warnings_are_errors = true;
1429 let both = run(&opts, source);
1430 assert_eq!(both.messages, Vec::<String>::new());
1431 assert!(!both.failed(), "-w -Werror is not an error about a warning nobody saw");
1432 }
1433
1434 #[test]
1435 fn the_dialect_reaches_the_keywords_and_the_checking() {
1436 let source = "typeof(1) x;\n";
1439 let mut opts = options();
1440 opts.std = Std::C23;
1441 opts.gnu_extensions = false;
1442 assert!(!run(&opts, source).failed(), "{:?}", run(&opts, source).messages);
1443
1444 opts.std = Std::C17;
1445 assert!(run(&opts, source).failed());
1446 }
1447
1448 #[test]
1449 fn asking_for_a_kind_that_is_not_written_yet_runs_the_front_end_and_writes_nothing() {
1450 let mut opts = options();
1451 opts.emit = EmitKind::Object;
1452 let result = run(&opts, "int x = 1;\n");
1453 assert!(!result.failed(), "{:?}", result.messages);
1454 assert!(result.text().is_empty());
1455 assert!(run(&opts, "int f(void) { return undeclared; }\n").failed());
1458 }
1459
1460 fn mir(source: &str) -> String {
1462 let mut opts = options();
1463 opts.emit = EmitKind::MirFinal;
1464 let result = run(&opts, source);
1465 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
1466 result.text().to_owned()
1467 }
1468
1469 #[test]
1475 fn a_function_goes_from_c_to_instructions_with_real_registers_in_them() {
1476 let text = mir("int add(int a, int b) { return a + b; }\n");
1477 assert!(text.starts_with("mfunc @add {"), "{text}");
1478 assert!(text.contains("x64.add_rr_32"), "{text}");
1479 assert!(text.contains("x64.ret"), "{text}");
1480 assert!(!text.contains('%'), "{text}");
1483 }
1484
1485 #[test]
1487 fn a_function_with_no_body_produces_no_machine_function() {
1488 let text = mir("int g(int);\nint f(int a) { return g(a); }\n");
1489 assert_eq!(text.matches("mfunc @").count(), 1, "{text}");
1490 assert!(text.contains("mfunc @f {"), "{text}");
1491 assert!(text.contains("x64.call"), "{text}");
1492 }
1493
1494 #[test]
1496 fn every_definition_in_the_file_is_generated_and_they_keep_their_order() {
1497 let text = mir("int a(int x) { return x; }\nint b(int x) { return x; }\n");
1498 let first = text.find("mfunc @a").expect("the first function");
1499 let second = text.find("mfunc @b").expect("the second function");
1500 assert!(first < second, "{text}");
1501 }
1502
1503 #[test]
1505 fn the_target_decides_which_convention_the_generated_code_follows() {
1506 let mut opts = options();
1507 opts.emit = EmitKind::MirFinal;
1508 let linux = run(&opts, "int f(int a) { return a; }\n").text().to_owned();
1509 assert!(linux.contains("$rdi"), "{linux}");
1510
1511 opts.target = "x86_64-pc-windows-msvc".parse::<Triple>().unwrap();
1512 let windows = run(&opts, "int f(int a) { return a; }\n").text().to_owned();
1513 assert!(windows.contains("$rcx"), "{windows}");
1514 assert!(!windows.contains("$rdi"), "{windows}");
1515 }
1516
1517 #[test]
1519 fn a_target_this_has_no_back_end_for_is_reported_rather_than_generated() {
1520 let mut opts = options();
1521 opts.emit = EmitKind::MirFinal;
1522 opts.target = "aarch64-unknown-linux-gnu".parse::<Triple>().unwrap();
1523 let result = run(&opts, "int f(int a) { return a; }\n");
1524 assert!(result.failed());
1525 assert!(result.messages[0].contains("no back end for aarch64"), "{:?}", result.messages);
1526 assert!(result.text().is_empty());
1527 }
1528
1529 #[test]
1536 fn a_construct_the_back_end_cannot_reach_yet_is_reported_against_its_function() {
1537 let mut opts = options();
1538 opts.emit = EmitKind::MirFinal;
1539 let source = "long double a(long double x) { return x; }\n\
1540 long double b(long double x) { return x; }\n";
1541 let result = run(&opts, source);
1542 assert!(result.failed());
1543 assert_eq!(result.messages.len(), 2, "{:?}", result.messages);
1544 assert!(result.messages[0].contains("cannot generate code for 'a'"), "{:?}", result);
1545 assert!(result.messages[0].contains("x87 stack"), "{:?}", result);
1546 assert!(result.messages[1].contains("cannot generate code for 'b'"), "{:?}", result);
1547 assert!(result.text().is_empty());
1548 }
1549
1550 #[test]
1557 fn an_opcode_with_no_name_in_the_rule_language_is_named_by_its_own_spelling() {
1558 let mut opts = options();
1559 opts.emit = EmitKind::MirFinal;
1560 let result = run(&opts, "int f(int a) {\n __int128 wide = a;\n return (int) wide;\n}\n");
1561 assert!(result.failed());
1562 assert!(
1563 result.messages[0].contains("no rule lowers a `sext` producing a `i128`"),
1564 "{result:?}"
1565 );
1566 assert!(result.messages[0].contains(":2:"), "the line the widening is on: {result:?}");
1567 assert!(!result.messages[0].contains("this instruction"), "{result:?}");
1568 }
1569
1570 #[test]
1572 fn the_note_on_unfinished_work_points_at_the_issues_rather_than_at_the_plan() {
1573 let mut opts = options();
1574 opts.emit = EmitKind::MirFinal;
1575 let result = run(&opts, "int f(int a) { __int128 wide = a; return (int) wide; }\n");
1576 assert!(result.failed());
1577 let note = result.messages.iter().find(|line| line.contains("note:")).expect("a note");
1578 assert!(note.contains("https://github.com/tamnd/rucc/issues"), "{note}");
1579 assert!(!note.contains("spec/17-milestones.md"), "{note}");
1580 }
1581
1582 #[test]
1584 fn the_frame_flags_on_the_command_line_reach_the_generated_frame() {
1585 let source = "int f(int a) { return a; }\n";
1586 assert!(!mir(source).contains("$rbp"), "a leaf needs no frame pointer by default");
1587
1588 let mut opts = options();
1589 opts.emit = EmitKind::MirFinal;
1590 opts.frame_pointer = true;
1591 let kept = run(&opts, source).text().to_owned();
1592 assert!(kept.contains("x64.push_64 $rbp"), "{kept}");
1593 }
1594
1595 fn asm(source: &str) -> String {
1597 let mut opts = options();
1598 opts.emit = EmitKind::Asm;
1599 let result = run(&opts, source);
1600 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
1601 result.text().to_owned()
1602 }
1603
1604 #[test]
1611 fn a_function_goes_from_c_to_assembly_an_assembler_would_take() {
1612 let text = asm("int add(int a, int b) { return a + b; }\n");
1613 assert!(text.contains("\t.globl\tadd\n"), "{text}");
1614 assert!(text.contains("\t.type\tadd, @function\n"), "{text}");
1615 assert!(text.contains("\nadd:\n"), "{text}");
1616 assert!(text.contains("\taddl\t"), "{text}");
1617 assert!(text.contains("\tret\n"), "{text}");
1618 assert!(text.contains("\t.size\tadd, .-add\n"), "{text}");
1619 assert!(text.contains(".note.GNU-stack"), "{text}");
1622 }
1623
1624 #[test]
1630 fn a_call_through_a_function_pointer_goes_through_the_register_it_is_in() {
1631 let text = asm("int g(int);\nint f(int (*p)(int), int a) { return p(a) + g(a); }\n");
1632 assert!(text.contains("\tcall\t*%"), "{text}");
1633 assert!(text.contains("\tcall\tg\n"), "{text}");
1634 assert!(text.contains("%rdi"), "{text}");
1638 }
1639
1640 #[test]
1642 fn the_address_of_a_global_is_read_from_the_instruction_pointer() {
1643 let text = asm("extern int counter;\nint f(void) { return counter; }\n");
1644 assert!(text.contains("\tleaq\tcounter(%rip), "), "{text}");
1645 }
1646
1647 #[test]
1649 fn a_cast_between_a_pointer_and_an_integer_leaves_the_value_where_it_is() {
1650 let text = asm("long f(void *p) { return (long)p; }\n");
1651 for line in text.lines().filter(|line| line.starts_with('\t') && !line.contains('.')) {
1656 let mnemonic = line.split_whitespace().next().unwrap_or("");
1657 assert!(matches!(mnemonic, "movq" | "ret"), "{line} in\n{text}");
1658 }
1659 }
1660
1661 #[test]
1665 fn an_argument_past_the_last_register_is_read_out_of_the_caller_s_stack() {
1666 let six = "long a, long b, long c, long d, long e, long f";
1667 let text = asm(&format!("long f({six}, long g, long h) {{ return g + h; }}\n"));
1668
1669 assert!(text.contains("\tmovq\t8(%rsp), "), "{text}");
1673 assert!(text.contains("\tmovq\t16(%rsp), "), "{text}");
1674
1675 let narrow = asm(&format!("int f({six}, int g) {{ return g; }}\n"));
1679 assert!(narrow.contains("\tmovl\t8(%rsp), "), "{narrow}");
1680 let eight =
1681 "double a, double b, double c, double d, double e, double f, double g, double h";
1682 let float = asm(&format!("double f({eight}, double i) {{ return i; }}\n"));
1683 assert!(float.contains("\tmovsd\t8(%rsp), "), "{float}");
1684 }
1685
1686 #[test]
1689 fn a_call_writes_the_arguments_with_no_register_left_at_the_stack_pointer() {
1690 let six = "1, 2, 3, 4, 5, 6";
1691 let decl = "long g(long, long, long, long, long, long, long, long);\n";
1692 let text = asm(&format!("{decl}long f(void) {{ return g({six}, 7, 8); }}\n"));
1693
1694 assert!(text.contains("\tmovq\t%"), "{text}");
1695 assert!(text.contains(", (%rsp)\n"), "{text}");
1696 assert!(text.contains(", 8(%rsp)\n"), "{text}");
1697 assert!(text.contains("\tsubq\t$"), "{text}");
1699
1700 let narrow = "int g(int, int, int, int, int, int, int);\n";
1702 let text = asm(&format!("{narrow}int f(void) {{ return g({six}, 7); }}\n"));
1703 assert!(text.contains("\tmovl\t%"), "{text}");
1704 assert!(text.contains(", (%rsp)\n"), "{text}");
1705 }
1706
1707 #[test]
1710 fn a_variadic_call_counts_registers_and_not_arguments() {
1711 let nine = "1., 2., 3., 4., 5., 6., 7., 8., 9.";
1712 let decl = "int g(int, ...);\n";
1713 let text = asm(&format!("{decl}int f(void) {{ return g(0, {nine}); }}\n"));
1714
1715 assert!(text.contains("\tmovl\t$8, "), "eight registers, not nine: {text}");
1716 assert!(text.contains("\tmovsd\t%"), "{text}");
1717 assert!(text.contains(", (%rsp)\n"), "{text}");
1718 }
1719
1720 #[test]
1725 fn a_variadic_function_writes_the_argument_registers_it_was_handed_into_its_frame() {
1726 let body =
1727 "__builtin_va_list ap; __builtin_va_start(ap, n); __builtin_va_end(ap); return n;";
1728 let text = asm(&format!("int f(int n, ...) {{ {body} }}\n"));
1729
1730 let stores = |mnemonic: &str| text.matches(&format!("\t{mnemonic}\t%")).count();
1733 assert!(text.contains(", 8(%r"), "the second slot, not the first: {text}");
1734 assert!(!text.contains(", 0(%r"), "{text}");
1735 assert_eq!(stores("movsd"), 8, "every vector register: {text}");
1736
1737 assert!(text.contains("\tsubq\t$"), "{text}");
1739 }
1740
1741 #[test]
1744 fn va_start_writes_the_four_fields_the_psabi_describes() {
1745 let start = "__builtin_va_list ap; __builtin_va_start(ap, d);";
1746 let params = "int a, int b, int c, double d";
1747 let text = asm(&format!("int f({params}, ...) {{ {start} return a; }}\n"));
1748
1749 assert!(text.contains(" movl $24, "), "{text}");
1753 assert!(text.contains(" movl $64, "), "{text}");
1754 assert!(text.contains(", 8(%r"), "{text}");
1758 assert!(text.contains(", 16(%r"), "{text}");
1759 let frame: u32 = text
1760 .lines()
1761 .find_map(|line| line.trim().strip_prefix("subq $")?.split(',').next()?.parse().ok())
1762 .expect("a variadic function takes a frame for the save area");
1763 let above = |line: &str| {
1764 let at: u32 = line.trim().strip_prefix("leaq ")?.split('(').next()?.parse().ok()?;
1765 Some(at > frame)
1766 };
1767 assert!(text.lines().filter_map(above).any(|it| it), "{frame}: {text}");
1768 }
1769
1770 #[test]
1773 fn va_arg_branches_on_whether_the_argument_is_still_in_the_save_area() {
1774 let read = "__builtin_va_list ap; __builtin_va_start(ap, n);";
1775 let ints = format!("int f(int n, ...) {{ {read} return __builtin_va_arg(ap, int); }}\n");
1776 let text = asm(&ints);
1777
1778 assert!(text.contains("$40, "), "{text}");
1781 assert!(text.contains(" cmpl "), "{text}");
1782 assert!(text.contains(" setbe "), "unsigned, since an offset is a count of bytes: {text}");
1783
1784 let arg = "__builtin_va_arg(ap, double)";
1785 let text = asm(&format!("double f(int n, ...) {{ {read} return {arg}; }}\n"));
1786 assert!(text.contains("$160, "), "the last vector slot: {text}");
1787 }
1788
1789 #[test]
1792 fn a_structure_assignment_is_a_move_for_each_word_of_it() {
1793 let decl = "struct pair { long a, b; };\n";
1794 let body = "struct pair p = *q; return p.a + p.b;";
1795 let text = asm(&format!("{decl}long f(struct pair *q) {{ {body} }}\n"));
1796
1797 assert!(!text.contains("memcpy"), "nothing calls the library: {text}");
1798 assert!(!text.contains("\tcall"), "{text}");
1799 assert!(text.matches("\tmovq\t").count() >= 4, "two words each way: {text}");
1801 }
1802
1803 #[test]
1806 fn how_wide_a_word_of_a_copy_is_follows_the_alignment() {
1807 let decl = "struct bytes { char a[8]; };\n";
1808 let body = "struct bytes p = *q; return p.a[0];";
1809 let text = asm(&format!("{decl}int f(struct bytes *q) {{ {body} }}\n"));
1810
1811 assert!(text.matches("\tmovb\t").count() >= 16, "a byte at a time: {text}");
1813 }
1814
1815 #[test]
1818 fn the_part_of_an_initialiser_that_names_nothing_is_stored_as_zero() {
1819 let decl = "struct wide { long a, b, c; };\n";
1820 let text = asm(&format!("{decl}long f(void) {{ struct wide w = {{ 7 }}; return w.c; }}\n"));
1821
1822 assert!(!text.contains("memset"), "nothing calls the library: {text}");
1823 assert!(text.contains("\tmovq\t$0, ") || text.contains("$0, %"), "the zero: {text}");
1824 }
1825
1826 #[test]
1829 fn a_copy_too_large_to_unroll_calls_the_runtime() {
1830 let decl = "struct huge { char a[4096]; };\n";
1831 let mut opts = options();
1832 opts.emit = EmitKind::Asm;
1833 let source = format!("{decl}void f(struct huge *p, struct huge *q) {{ *p = *q; }}\n");
1834 let result = run(&opts, &source);
1835 assert!(!result.failed(), "{:?}", result.messages);
1836 let text = result.text();
1837 assert!(text.contains("call") && text.contains("memcpy"), "{text}");
1838 assert!(text.contains("4096"), "the size travels: {text}");
1841 }
1842
1843 #[test]
1846 fn a_realigned_frame_reads_them_through_the_frame_pointer() {
1847 let six = "long a, long b, long c, long d, long e, long f";
1848 let body = "_Alignas(32) long wide[4]; wide[0] = g; return wide[0];";
1849 let text = asm(&format!("long f({six}, long g) {{ {body} }}\n"));
1850
1851 assert!(text.contains("\tandq\t$-32, %rsp"), "{text}");
1855 assert!(text.contains("\tmovq\t16(%rbp), "), "{text}");
1856 assert!(!text.contains("\tmovq\t16(%rsp), "), "{text}");
1857 }
1858
1859 #[test]
1861 fn the_target_decides_how_the_assembly_is_spelled() {
1862 let mut opts = options();
1863 opts.emit = EmitKind::Asm;
1864 opts.target = "x86_64-apple-darwin".parse::<Triple>().unwrap();
1865 let text = run(&opts, "int f(void) { return 0; }\n").text().to_owned();
1866 assert!(text.contains("__TEXT,__text"), "{text}");
1867 assert!(text.contains("\n_f:\n"), "{text}");
1868 assert!(!text.contains(".note.GNU-stack"), "{text}");
1869 }
1870
1871 fn obj(source: &str) -> Vec<u8> {
1873 let mut opts = options();
1874 opts.emit = EmitKind::Object;
1875 let result = run(&opts, source);
1876 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
1877 match result.artifact {
1878 Artifact::Object(bytes) => bytes,
1879 other => panic!("expected an object, got {other:?}"),
1880 }
1881 }
1882
1883 #[test]
1889 fn a_function_goes_from_c_to_an_object_a_linker_would_take() {
1890 let bytes = obj("int add(int a, int b) { return a + b; }\n");
1891 assert_eq!(&bytes[..4], b"\x7fELF", "an object file starts by saying it is one");
1892 let text = asm("int add(int a, int b) { return a + b; }\n");
1893 assert!(
1894 text.contains("\taddl\t"),
1895 "and the listing of it is the same instructions:\n{text}"
1896 );
1897 }
1898
1899 #[test]
1901 fn a_variable_goes_from_c_to_the_section_it_belongs_in() {
1902 let text = asm("int counter = 42;\nstatic int hidden;\nconst int fixed = 7;\n");
1903 assert!(text.contains("\t.data\n\t.globl\tcounter\n"), "{text}");
1904 assert!(text.contains("\ncounter:\n\t.long\t42\n"), "{text}");
1905 assert!(text.contains("\t.size\tcounter, .-counter\n"), "{text}");
1906 assert!(text.contains("\t.bss\n\t.p2align\t2\n"), "{text}");
1909 assert!(text.contains("\nhidden:\n\t.space\t4\n"), "{text}");
1910 assert!(!text.contains(".globl\thidden"), "{text}");
1911 assert!(text.contains("\t.section\t.rodata\n"), "{text}");
1914 }
1915
1916 #[test]
1923 fn a_bit_field_initializer_writes_every_byte_of_the_value_and_not_only_the_ones_that_are_set() {
1924 let text = asm("struct s { unsigned f : 20; } x = { 0x12300 };\n");
1925 assert!(text.contains("\t.data\n"), "there is something to write: {text}");
1926 assert!(text.contains("\nx:\n\t.ascii\t\"\\000#\\001\"\n"), "and it is the value: {text}");
1927
1928 let text = asm("struct s { unsigned a : 8; unsigned b : 8; } x = { 0, 3 };\n");
1931 assert!(text.contains("\nx:\n\t.ascii\t\"\\000\\003\"\n"), "{text}");
1932
1933 let text = asm("struct s { unsigned long long f : 40; } x = { 0x100000 };\n");
1936 assert!(text.contains("\nx:\n\t.ascii\t\"\\000\\000\\020\"\n\t.space\t5\n"), "{text}");
1937
1938 let text = asm("struct s { unsigned f : 20; } x = { 0 };\n");
1940 assert!(text.contains("\t.bss\n"), "an object of zeroes is zeroes: {text}");
1941 assert!(text.contains("\nx:\n\t.space\t4\n"), "{text}");
1942 }
1943
1944 #[test]
1946 fn a_string_literal_is_a_variable_with_a_name_no_program_could_write() {
1947 let text = asm("const char *f(void) { return \"hi\"; }\n");
1948 assert!(text.contains("\t.ascii\t\"hi\\000\"\n"), "{text}");
1949 assert!(text.contains("\t.section\t.rodata\n"), "{text}");
1950 let label = text
1951 .lines()
1952 .find(|line| line.starts_with(".Lstr"))
1953 .unwrap_or_else(|| panic!("a label for the literal in\n{text}"));
1954 assert!(!text.contains(&format!(".globl\t{}", label.trim_end_matches(':'))), "{text}");
1955 }
1956
1957 #[test]
1959 fn an_address_in_an_initializer_is_left_to_the_linker() {
1960 let source = "int counter;\nint *p = &counter;\n";
1961 let text = asm(source);
1962 assert!(text.contains("\np:\n\t.quad\tcounter\n"), "{text}");
1963 let bytes = obj(source);
1966 assert!(bytes.windows(8).any(|w| w == b"counter\0"), "the object has to name it");
1967 }
1968
1969 #[test]
1971 fn a_thread_local_variable_is_reported_as_work_that_is_not_done() {
1972 let mut opts = options();
1973 opts.emit = EmitKind::Asm;
1974 let result = run(&opts, "_Thread_local int x = 1;\n");
1975 assert!(result.failed(), "every thread sharing one variable is worse than a message");
1976 assert!(result.messages.iter().any(|m| m.contains("thread-local")), "{:?}", result);
1977 assert!(!result.messages.iter().any(|m| m.contains("internal")), "{:?}", result);
1979 }
1980
1981 #[test]
1983 fn the_object_and_the_listing_are_two_spellings_of_one_compilation() {
1984 let source = "int callee(void); int g(void) { return callee(); }\n";
1988 let bytes = obj(source);
1989 assert!(
1990 bytes.windows(7).any(|w| w == b"callee\0"),
1991 "the object has to name the callee for the linker to find it"
1992 );
1993 let text = asm(source);
1994 assert!(text.contains("\tcall\tcallee\n"), "{text}");
1995 }
1996
1997 #[test]
2003 fn compiling_for_an_executable_produces_an_object_and_not_a_dump() {
2004 let mut opts = options();
2005 opts.emit = EmitKind::Executable;
2007 let result = run(&opts, "int main(void) { return 0; }\n");
2008 assert_eq!(result.messages, Vec::<String>::new());
2009 match result.artifact {
2010 Artifact::Object(bytes) => assert_eq!(&bytes[..4], b"\x7fELF"),
2011 other => panic!("expected an object, got {other:?}"),
2012 }
2013 }
2014
2015 #[test]
2017 fn a_platform_with_no_object_writer_is_said_so_rather_than_written_as_elf() {
2018 let mut opts = options();
2019 opts.emit = EmitKind::Object;
2020 opts.target = "x86_64-apple-darwin".parse::<Triple>().unwrap();
2021 let result = run(&opts, "int f(void) { return 0; }\n");
2022 assert!(result.failed(), "an object nobody can read is worse than a message");
2023 assert!(
2024 result.messages.iter().any(|m| m.contains("no object writer")),
2025 "{:?}",
2026 result.messages
2027 );
2028 }
2029
2030 fn ir(source: &str) -> String {
2032 let mut opts = options();
2033 opts.emit = EmitKind::Ir;
2034 let result = run(&opts, source);
2035 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
2036 result.text().to_owned()
2037 }
2038
2039 fn errors(source: &str) -> Vec<String> {
2041 let mut opts = options();
2042 opts.emit = EmitKind::Ir;
2043 let result = run(&opts, source);
2044 assert!(result.failed(), "expected this to be refused:\n{source}");
2045 result.messages
2046 }
2047
2048 fn body(source: &str) -> String {
2050 let text = ir(source);
2051 let (_, rest) = text.split_once("{\n").expect("a function definition");
2052 let (body, _) = rest.rsplit_once("}\n").expect("a function definition");
2053 body.to_owned()
2054 }
2055
2056 fn safe_ir(tier: rucc_session::Safety, source: &str) -> String {
2058 let mut opts = options();
2059 opts.emit = EmitKind::Ir;
2060 opts.safety = tier;
2061 let result = run(&opts, source);
2062 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
2063 result.text().to_owned()
2064 }
2065
2066 const READS_THROUGH_A_POINTER: &str = "int read(int *p) { return p[1]; }\n";
2067
2068 #[test]
2069 fn a_build_that_did_not_ask_for_the_monitor_is_compiled_the_way_it_always_was() {
2070 let text = ir(READS_THROUGH_A_POINTER);
2074 assert!(!text.contains("check_"), "{text}");
2075 assert!(!text.contains("cap_of"), "{text}");
2076 }
2077
2078 #[test]
2079 fn asking_for_a_tier_puts_the_checks_in_before_the_optimizer_sees_them() {
2080 let text = safe_ir(rucc_session::Safety::Detect, READS_THROUGH_A_POINTER);
2081 assert!(text.contains("cap_of"), "{text}");
2082 assert!(text.contains("check_bounds"), "{text}");
2083 assert!(text.contains("check_live"), "{text}");
2084 assert!(text.contains("check_deriv"), "{text}");
2086 }
2087
2088 #[test]
2089 fn the_three_tiers_that_are_not_off_all_check_the_same_accesses_so_far() {
2090 let detect = safe_ir(rucc_session::Safety::Detect, READS_THROUGH_A_POINTER);
2094 for tier in [rucc_session::Safety::Enforce, rucc_session::Safety::Kernel] {
2095 assert_eq!(safe_ir(tier, READS_THROUGH_A_POINTER), detect, "{tier}");
2096 }
2097 }
2098
2099 fn summary(tier: rucc_session::Safety, source: &str) -> String {
2101 let mut opts = options();
2102 opts.emit = EmitKind::SafetySummary;
2103 opts.safety = tier;
2104 let result = run(&opts, source);
2105 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
2106 result.text().to_owned()
2107 }
2108
2109 #[test]
2110 fn the_summary_counts_the_checks_that_went_in_and_the_ones_still_standing() {
2111 let text = summary(rucc_session::Safety::Detect, READS_THROUGH_A_POINTER);
2112 assert!(text.contains("\"tier\": \"detect\""), "{text}");
2113 assert!(
2115 text.contains("\"bounds\": { \"emitted\": 1, \"remaining\": 1, \"discharged\": 0 }"),
2116 "{text}"
2117 );
2118 assert!(
2119 text.contains(
2120 "\"derivation\": { \"emitted\": 1, \"remaining\": 1, \"discharged\": 0 }"
2121 ),
2122 "{text}"
2123 );
2124 }
2125
2126 #[test]
2127 fn a_build_without_the_monitor_summarises_as_a_build_with_no_checks_in_it() {
2128 let text = summary(rucc_session::Safety::Off, READS_THROUGH_A_POINTER);
2132 assert!(text.contains("\"tier\": \"off\""), "{text}");
2133 assert!(
2134 text.contains("\"bounds\": { \"emitted\": 0, \"remaining\": 0, \"discharged\": 0 }"),
2135 "{text}"
2136 );
2137 }
2138
2139 #[test]
2140 fn a_call_the_boundary_models_is_counted_apart_from_one_it_does_not() {
2141 let text = summary(
2142 rucc_session::Safety::Detect,
2143 "void *memcpy(void *, const void *, unsigned long);\n\
2144 int puts(const char *);\n\
2145 void f(char *d, char *s) { memcpy(d, s, 4); puts(d); }\n",
2146 );
2147 assert!(text.contains("\"interposed\": 1"), "{text}");
2148 assert!(text.contains("\"puts\""), "{text}");
2149 assert!(!text.contains("__rucc_wrap_memcpy\""), "{text}");
2153 }
2154
2155 #[test]
2156 fn the_two_directions_a_pointer_crosses_the_boundary_are_counted_apart() {
2157 let text = summary(
2161 rucc_session::Safety::Detect,
2162 "void *notes_open(void);\n\
2163 char *f(char *p) { char *q = notes_open(); return q ? q : p; }\n",
2164 );
2165 assert!(text.contains("\"crossings\": { \"entered\": 1, \"returned\": 1 }"), "{text}");
2166 assert!(text.contains("\"notes_open\""), "{text}");
2167 }
2168
2169 #[test]
2170 fn a_static_function_nobody_takes_the_address_of_is_not_a_crossing() {
2171 let text = summary(
2174 rucc_session::Safety::Detect,
2175 "static int len(const char *p) { return p ? 1 : 0; }\n\
2176 int f(void) { return len(\"x\"); }\n",
2177 );
2178 assert!(text.contains("\"crossings\": { \"entered\": 0, \"returned\": 0 }"), "{text}");
2179 }
2180
2181 fn granules(source: &str) -> String {
2183 let mut opts = options();
2184 opts.emit = EmitKind::TypeGranules;
2185 let result = run(&opts, source);
2186 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
2187 result.text().to_owned()
2188 }
2189
2190 #[test]
2191 fn the_granule_report_names_every_record_and_both_keyings() {
2192 let text = granules(
2193 "struct hot { char *p; int a; int b; };\n\
2194 int f(struct hot *h) { return h->a; }\n",
2195 );
2196 assert!(text.contains("struct hot"), "{text}");
2197 assert!(text.contains("every type distinct"), "{text}");
2200 assert!(text.contains("every pointer one type"), "{text}");
2201 assert!(text.contains("budget"), "{text}");
2202 }
2203
2204 #[test]
2205 fn a_record_nothing_uses_is_still_measured() {
2206 let text = granules("struct unused { long a; double b; };\nint f(void) { return 0; }\n");
2209 assert!(text.contains("struct unused"), "{text}");
2210 }
2211
2212 #[test]
2213 fn the_granule_report_stops_before_anything_is_lowered() {
2214 let text = granules(
2218 "struct wide { long double d; };\n\
2219 long double f(long double x) { return x * x; }\n",
2220 );
2221 assert!(text.contains("struct wide"), "{text}");
2222 }
2223
2224 #[test]
2225 fn a_witness_reaches_the_assembler_as_a_call_to_the_runtime() {
2226 let text = safe_asm(rucc_session::Safety::Detect, "char *f(char *p) { return p; }\n");
2229 assert!(text.contains("\tcall\t__rucc_cap_witness\n"), "{text}");
2230 }
2231
2232 #[test]
2233 fn a_pointer_turned_into_an_integer_is_on_the_trust_set() {
2234 let text = summary(
2235 rucc_session::Safety::Detect,
2236 "unsigned long f(int *p) { return (unsigned long) p; }\n",
2237 );
2238 assert!(text.contains("\"exposed\": 1"), "{text}");
2239 }
2240
2241 fn safe_asm(tier: rucc_session::Safety, source: &str) -> String {
2243 let mut opts = options();
2244 opts.emit = EmitKind::Asm;
2245 opts.safety = tier;
2246 let result = run(&opts, source);
2247 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
2248 result.text().to_owned()
2249 }
2250
2251 #[test]
2252 fn a_check_reaches_the_assembler_as_a_call_to_the_runtime() {
2253 let text = safe_asm(rucc_session::Safety::Detect, READS_THROUGH_A_POINTER);
2254 assert!(text.contains("\tcall\t__rucc_check_bounds\n"), "{text}");
2255 assert!(text.contains("\tcall\t__rucc_check_live\n"), "{text}");
2256 assert!(text.contains("\tcall\t__rucc_check_deriv\n"), "{text}");
2257 }
2258
2259 #[test]
2260 fn every_check_that_reached_the_assembler_has_a_row_describing_it() {
2261 let text = safe_asm(rucc_session::Safety::Detect, READS_THROUGH_A_POINTER);
2265 let section = format!("\t.section\t{},", rucc_safety::SECTION);
2266 assert_eq!(text.matches(§ion).count(), 3, "{text}");
2267 for index in 0..3 {
2268 let name = format!("__rucc_safety_desc_{index}");
2269 assert!(text.contains(&format!("{name}:\n")), "{text}");
2272 assert!(text.contains(&format!("{name}(%rip)")), "{text}");
2273 }
2274 assert!(!text.contains("__rucc_safety_desc_3"), "{text}");
2275 }
2276
2277 #[test]
2285 fn builtin_constant_p_is_folded_where_it_is_written_rather_than_called() {
2286 let text = ir(concat!(
2287 "int g;\n",
2288 "int a = __builtin_constant_p(1);\n",
2289 "int b = __builtin_constant_p(g);\n",
2290 "int c = __builtin_constant_p(\"abc\");\n",
2291 "int d = __builtin_constant_p(&g);\n",
2292 "int e = __builtin_constant_p(1.5);\n",
2293 "int h = __builtin_choose_expr(__builtin_constant_p(3), 11, 22);\n",
2294 ));
2295 assert!(text.contains("global @a : i32 = 1,"), "{text}");
2296 assert!(text.contains("global @b : i32 = 0,"), "{text}");
2297 assert!(text.contains("global @c : i32 = 1,"), "{text}");
2298 assert!(text.contains("global @d : i32 = 0,"), "{text}");
2299 assert!(text.contains("global @e : i32 = 1,"), "{text}");
2300 assert!(text.contains("global @h : i32 = 11,"), "{text}");
2301 assert!(!text.contains("__builtin_constant_p"), "it is not a call to anything:\n{text}");
2302
2303 let text = body("int f(void) { int i = 0; __builtin_constant_p(i++); return i; }\n");
2307 assert_eq!(text, "block0:\n %0 = iconst.i32 0\n %1 = iconst.i32 0\n return %0\n");
2308 }
2309
2310 #[test]
2319 fn a_call_to_a_library_builtin_reaches_the_library_function() {
2320 let text = body("void f(void) { __builtin_abort(); }\n");
2321 assert_eq!(text, "block0:\n call @abort() : ()\n return\n");
2322
2323 let text = ir("int f(const char *s) { return __builtin_puts(s) + __builtin_strlen(s); }\n");
2326 assert!(text.contains("call @puts(%0) : (ptr) -> i32"), "{text}");
2327 assert!(text.contains("call @strlen(%0) : (ptr) -> i64"), "{text}");
2328 assert!(!text.contains("__builtin_"), "the prefix is not part of any name here:\n{text}");
2329 }
2330
2331 #[test]
2342 fn the_absolute_value_family_is_the_magnitude_and_not_a_call() {
2343 let text = body(concat!(
2344 "long long llabs(long long);\n",
2345 "long long f(long long x) { return llabs(x); }\n",
2346 ));
2347 assert!(text.contains("%1 = iconst.i64 63"), "{text}");
2348 assert!(text.contains("%2 = ashr %0, %1"), "{text}");
2349 assert!(text.contains("%3 = xor %0, %2"), "{text}");
2350 assert!(text.contains("%4 = sub %3, %2"), "{text}");
2351 assert!(!text.contains("call"), "the call does not happen:\n{text}");
2352
2353 let text = body("int abs(int);\nint f(int x) { return abs(x); }\n");
2356 assert!(text.contains("iconst.i32 31"), "{text}");
2357 let text = body("long labs(long);\nlong f(long x) { return labs(x); }\n");
2358 assert!(text.contains("iconst.i64 63"), "{text}");
2359
2360 let text = body("long long f(long long x) { return __builtin_llabs(x); }\n");
2363 assert!(!text.contains("call"), "{text}");
2364
2365 let text = ir(concat!(
2367 "long long llabs(long long b);\n",
2368 "long long g(long long x) { return llabs(x); }\n",
2369 "long long llabs(long long b) { return 7; }\n",
2370 ));
2371 assert!(!text.contains("call @llabs"), "{text}");
2372 }
2373
2374 #[test]
2381 fn a_byte_swap_is_arithmetic_and_not_a_call() {
2382 let text = body("unsigned f(unsigned x) { return __builtin_bswap32(x); }\n");
2383 assert_eq!(text, "block0(%0: i32):\n %1 = bswap %0\n return %1\n");
2384
2385 let text = body("unsigned f(unsigned char c) { return __builtin_bswap32(c); }\n");
2388 assert!(text.contains("zext.i32 %0"), "widened first: {text}");
2389 assert!(text.contains("bswap %1"), "and swapped at four bytes: {text}");
2390 }
2391
2392 #[test]
2398 fn the_byte_swaps_reverse_at_the_width_their_name_says() {
2399 for (name, ty, width) in [
2400 ("__builtin_bswap16", "unsigned short", "i16"),
2401 ("__builtin_bswap32", "unsigned", "i32"),
2402 ("__builtin_bswap64", "unsigned long long", "i64"),
2403 ] {
2404 let source = format!("{ty} f({ty} x) {{ return {name}(x); }}\n");
2405 let text = body(&source);
2406 assert_eq!(
2407 text,
2408 format!("block0(%0: {width}):\n %1 = bswap %0\n return %1\n"),
2409 "{name}"
2410 );
2411 }
2412 }
2413
2414 #[test]
2421 fn the_bit_counts_are_instructions_and_not_calls() {
2422 let text = body("int f(unsigned x) { return __builtin_clz(x); }\n");
2423 assert_eq!(text, "block0(%0: i32):\n %1 = ctlz %0\n return %1\n");
2424
2425 let text = body("int f(unsigned x) { return __builtin_ctz(x); }\n");
2426 assert_eq!(text, "block0(%0: i32):\n %1 = cttz %0\n return %1\n");
2427
2428 let text = body("int f(unsigned x) { return __builtin_popcount(x); }\n");
2429 assert_eq!(text, "block0(%0: i32):\n %1 = ctpop %0\n return %1\n");
2430 }
2431
2432 #[test]
2441 fn the_bit_counts_ask_about_the_width_their_name_says() {
2442 let text = body("int f(unsigned long long x) { return __builtin_clzll(x); }\n");
2443 assert!(text.starts_with("block0(%0: i64):"), "counted at eight bytes: {text}");
2444 assert!(text.contains("%1 = ctlz %0"), "{text}");
2445 assert!(text.contains("trunc.i32 %1"), "and answered in an int: {text}");
2446
2447 let text = body("int f(unsigned long long x) { return __builtin_clz(x); }\n");
2450 assert!(text.contains("trunc.i32 %0"), "narrowed to what was asked about: {text}");
2451 assert!(text.contains("ctlz %1"), "and counted there: {text}");
2452
2453 let text = body("int f(unsigned long x) { return __builtin_popcountl(x); }\n");
2454 assert!(text.contains("%1 = ctpop %0"), "{text}");
2455 assert!(!text.contains("call"), "{text}");
2456 }
2457
2458 #[test]
2463 fn a_parity_is_the_low_bit_of_the_set_bit_count() {
2464 let text = body("int f(unsigned x) { return __builtin_parity(x); }\n");
2465 assert!(text.contains("%1 = ctpop %0"), "{text}");
2466 assert!(text.contains("iconst.i32 1"), "{text}");
2467 assert!(text.contains("and %1, %2"), "the low bit of it: {text}");
2468 }
2469
2470 #[test]
2476 fn the_first_set_bit_is_one_based_and_zero_for_a_zero() {
2477 let text = body("int f(int x) { return __builtin_ffs(x); }\n");
2478 assert!(text.contains("%1 = cttz %0"), "{text}");
2479 assert!(text.contains("%4 = add %1, %2"), "one more than the count: {text}");
2480 assert!(text.contains("%5 = icmp ne %0, %3"), "whether there was a bit at all: {text}");
2481 assert!(text.contains("%7 = sub %3, %6"), "spread to a mask: {text}");
2482 assert!(text.contains("%8 = and %4, %7"), "and kept only then: {text}");
2483 assert!(!text.contains("br_if"), "no branch: {text}");
2484 }
2485
2486 #[test]
2496 fn an_overflow_check_is_arithmetic_and_not_a_call() {
2497 let text =
2498 body("int f(int a, int b, int *r) { return __builtin_add_overflow(a, b, r); }\n");
2499 assert!(text.contains("%3, %4 = sadd_overflow.(i32, i1) %0, %1"), "{text}");
2500 assert!(text.contains("store %3 -> %2"), "{text}");
2501 assert!(!text.contains("call"), "{text}");
2502
2503 let text =
2504 body("int f(int a, int b, int *r) { return __builtin_sub_overflow(a, b, r); }\n");
2505 assert!(text.contains("ssub_overflow.(i32, i1) %0, %1"), "{text}");
2506
2507 let text =
2508 body("int f(int a, int b, int *r) { return __builtin_mul_overflow(a, b, r); }\n");
2509 assert!(text.contains("smul_overflow.(i32, i1) %0, %1"), "{text}");
2510
2511 let text = body(
2514 "int f(unsigned a, unsigned b, unsigned *r) { return __builtin_add_overflow(a, b, r); }\n",
2515 );
2516 assert!(text.contains("uadd_overflow.(i32, i1) %0, %1"), "{text}");
2517 }
2518
2519 #[test]
2527 fn an_overflow_check_is_done_at_a_type_that_holds_every_operand() {
2528 let text = body(
2529 "int f(unsigned a, int b, long long *r) { return __builtin_add_overflow(a, b, r); }\n",
2530 );
2531 assert!(text.contains("%3 = zext.i64 %0"), "the unsigned operand keeps its value: {text}");
2532 assert!(text.contains("%4 = sext.i64 %1"), "and so does the signed one: {text}");
2533 assert!(text.contains("sadd_overflow.(i64, i1) %3, %4"), "{text}");
2534
2535 let text = body(
2538 "int f(long long a, long long b, long long *r) { return __builtin_mul_overflow(a, b, r); }\n",
2539 );
2540 assert!(text.contains("smul_overflow.(i64, i1) %0, %1"), "{text}");
2541 assert!(!text.contains("sext."), "{text}");
2542 assert!(!text.contains("zext.i64"), "{text}");
2544 }
2545
2546 #[test]
2554 fn an_overflow_check_writes_the_wrapped_answer_whether_or_not_it_fit() {
2555 let text =
2556 body("int f(int a, int b, char *r) { return __builtin_sub_overflow(a, b, r); }\n");
2557 assert!(text.contains("%3, %4 = ssub_overflow.(i32, i1) %0, %1"), "{text}");
2558 assert!(text.contains("%5 = trunc.i8 %3"), "narrowed to where it goes: {text}");
2559 assert!(text.contains("%6 = sext.i32 %5"), "and back: {text}");
2560 assert!(text.contains("%7 = icmp ne %6, %3"), "which is whether it fit: {text}");
2561 assert!(text.contains("store %5 -> %2"), "the narrowed value is stored either way: {text}");
2562 assert!(text.contains("%8 = or %4, %7"), "and either bit is an overflow: {text}");
2563 }
2564
2565 #[test]
2572 fn a_call_needing_more_than_sixty_four_bits_says_so() {
2573 let refused = concat!(
2574 "int f(unsigned long long a, long long b, long long *r) {\n",
2575 " return __builtin_add_overflow(a, b, r);\n",
2576 "}\n",
2577 );
2578 let messages = errors(refused);
2579 assert_eq!(messages.len(), 1, "{messages:?}");
2580 assert!(messages[0].contains("E0694"), "{messages:?}");
2581 assert!(messages[0].contains("wider than 64 bits"), "{messages:?}");
2582 }
2583
2584 #[test]
2587 fn an_overflow_check_over_something_that_is_not_an_integer_says_so() {
2588 let messages =
2589 errors("int f(double a, int b, int *r) { return __builtin_add_overflow(a, b, r); }\n");
2590 assert!(messages.iter().any(|line| line.contains("E0671")), "{messages:?}");
2591
2592 let messages =
2593 errors("int f(int a, int b, double *r) { return __builtin_add_overflow(a, b, r); }\n");
2594 assert!(messages.iter().any(|line| line.contains("E0671")), "{messages:?}");
2595 }
2596
2597 #[test]
2608 fn an_ordered_access_is_ordered_in_the_ir() {
2609 let text = body("int f(int *p) { return __atomic_load_n(p, 0); }\n");
2610 assert!(text.contains("atomic_load.i32 %0, align 4, relaxed"), "{text}");
2611
2612 let text = body("long f(long *p) { return __atomic_load_n(p, 2); }\n");
2613 assert!(text.contains("atomic_load.i64 %0, align 8, acquire"), "{text}");
2614
2615 let text = body("void f(int *p, int v) { __atomic_store_n(p, v, 3); }\n");
2616 assert!(text.contains("atomic_store %1 -> %0, align 4, release"), "{text}");
2617
2618 let text = body("void f(int *p, int v) { __atomic_store_n(p, v, 5); }\n");
2619 assert!(text.contains("atomic_store %1 -> %0, align 4, seq_cst"), "{text}");
2620
2621 let text = body("void f(char *p, int v) { __atomic_store_n(p, v, 0); }\n");
2624 assert!(text.contains("trunc.i8 %1"), "{text}");
2625 assert!(text.contains("atomic_store %2 -> %0, align 1, relaxed"), "{text}");
2626 }
2627
2628 #[test]
2637 fn an_ordered_access_is_the_plain_instruction_on_this_machine() {
2638 let text = asm("int f(int *p) { return __atomic_load_n(p, 5); }\n");
2639 assert!(text.contains("movl\t(%rdi), %eax"), "{text}");
2640 assert!(!text.contains("mfence"), "a load needs no barrier here: {text}");
2641
2642 let text = asm("void f(int *p, int v) { __atomic_store_n(p, v, 3); }\n");
2643 assert!(text.contains("movl\t%esi, (%rdi)"), "{text}");
2644 assert!(!text.contains("mfence"), "a release store needs no barrier here: {text}");
2645
2646 let text = asm("void f(int *p, int v) { __atomic_store_n(p, v, 5); }\n");
2647 let (before, after) = text.split_once("mfence").expect("a barrier: {text}");
2648 assert!(before.contains("movl\t%esi, (%rdi)"), "the store comes first: {text}");
2649 assert!(!after.contains("movl"), "and nothing else is between them: {text}");
2650 }
2651
2652 #[test]
2662 fn a_barrier_is_one_instruction_at_the_strongest_ordering_and_none_below_it() {
2663 assert!(asm("void f(void) { __atomic_thread_fence(5); }\n").contains("mfence"));
2664 assert!(asm("void f(void) { __sync_synchronize(); }\n").contains("mfence"));
2665
2666 for weaker in ["1", "2", "3", "4"] {
2667 let source = format!("void f(void) {{ __atomic_thread_fence({weaker}); }}\n");
2668 assert!(!asm(&source).contains("mfence"), "{weaker} costs nothing here");
2669 }
2670 }
2671
2672 #[test]
2684 fn a_memory_order_an_operation_cannot_carry_is_read_as_the_strongest() {
2685 let mut opts = options();
2686 opts.emit = EmitKind::Ir;
2687
2688 let acquire_store = run(&opts, "void f(int *p, int v) { __atomic_store_n(p, v, 2); }\n");
2689 assert!(acquire_store.text().contains("seq_cst"), "{:?}", acquire_store.text());
2690 assert!(acquire_store.messages[0].contains("[W0333]"), "{:?}", acquire_store.messages);
2691
2692 let nonsense = run(&opts, "int f(int *p) { return __atomic_load_n(p, 99); }\n");
2693 assert!(nonsense.text().contains("seq_cst"), "{:?}", nonsense.text());
2694 assert!(nonsense.messages[0].contains("[W0333]"), "{:?}", nonsense.messages);
2695
2696 let computed = run(&opts, "int f(int *p, int n) { return __atomic_load_n(p, n); }\n");
2697 assert!(computed.text().contains("seq_cst"), "{:?}", computed.text());
2698 assert_eq!(computed.messages, Vec::<String>::new(), "a computed order is not a mistake");
2699 }
2700
2701 #[test]
2713 fn a_conversion_between_a_float_and_the_widest_unsigned_integer_is_written_without_a_branch() {
2714 let text = asm("double f(unsigned long long x) { return (double)x; }\n");
2715 assert!(text.contains("cvtsi2sdq"), "the signed conversion is what runs: {text}");
2716 assert!(text.contains("shrq"), "with the value halved first: {text}");
2717 assert!(text.contains("addsd"), "and doubled after: {text}");
2718 assert!(!text.contains("\tj"), "and no branch anywhere: {text}");
2719
2720 let text = asm("unsigned long long f(double d) { return (unsigned long long)d; }\n");
2721 assert!(text.contains("cvttsd2siq"), "the signed conversion is what runs: {text}");
2722 assert!(text.contains("subsd"), "with half the range taken off first: {text}");
2723 assert!(text.contains("shlq\t$63"), "and the top bit put back: {text}");
2724 assert!(!text.contains("\tj"), "and no branch anywhere: {text}");
2725 }
2726
2727 #[test]
2738 fn a_plain_name_the_program_took_is_the_programs_own_function() {
2739 let taken = concat!(
2740 "static long long llabs(long long b) { return 7; }\n",
2741 "long long f(long long x) { return llabs(x); }\n",
2742 );
2743 assert!(ir(taken).contains("call @llabs"), "a static definition is the program's own");
2744
2745 let retyped = concat!("int llabs(int b);\n", "int f(int x) { return llabs(x); }\n",);
2746 assert!(ir(retyped).contains("call @llabs"), "another type is another function");
2747
2748 let plain = concat!(
2749 "long long llabs(long long b);\n",
2750 "long long f(long long x) { return llabs(x); }\n",
2751 );
2752 let mut opts = options();
2753 opts.emit = EmitKind::Ir;
2754 assert!(!run(&opts, plain).text().contains("call @llabs"), "the library's by default");
2755
2756 opts.builtins = false;
2757 assert!(run(&opts, plain).text().contains("call @llabs"), "-fno-builtin");
2758
2759 opts.builtins = true;
2760 opts.no_builtin = vec!["llabs".to_owned()];
2761 assert!(run(&opts, plain).text().contains("call @llabs"), "-fno-builtin-llabs");
2762 let one = "long labs(long b);\nlong f(long x) { return labs(x); }\n";
2763 assert!(!run(&opts, one).text().contains("call @labs"), "one name and not the family");
2764
2765 opts.no_builtin = Vec::new();
2768 opts.builtins = false;
2769 let prefixed = "long long f(long long x) { return __builtin_llabs(x); }\n";
2770 assert!(!run(&opts, prefixed).text().contains("call @llabs"), "the prefix is a promise");
2771 }
2772
2773 #[test]
2785 fn the_hint_builtins_are_their_first_argument_and_the_hint_leaves_no_trace() {
2786 let text = ir(concat!(
2787 "long a = __builtin_expect(7, 1);\n",
2788 "long b = __builtin_expect_with_probability(9, 1, 0.9);\n",
2789 "unsigned long c = sizeof(__builtin_expect((char)1, 1));\n",
2790 ));
2791 assert!(text.contains("global @a : i64 = 7,"), "{text}");
2792 assert!(text.contains("global @b : i64 = 9,"), "{text}");
2793 assert!(text.contains("global @c : i64 = 8,"), "{text}");
2794 assert!(!text.contains("__builtin_expect"), "it is not a call to anything:\n{text}");
2795
2796 let text = body("long f(char c) { return __builtin_expect(c, 1); }\n");
2799 assert!(text.contains("sext"), "{text}");
2800
2801 let one = "block0:\n %0 = iconst.i32 0\n %1 = iconst.i32 1\n %2 = sext.i64 %1\n return %0\n";
2805 assert_eq!(body("int f(void) { int i = 0; __builtin_expect(1, i++); return i; }\n"), one);
2806 let source = "int g(void) { int i = 0; __builtin_expect_with_probability(1, i++, 0.5); return i; }\n";
2807 assert_eq!(body(source), one);
2808 }
2809
2810 #[test]
2822 fn a_promise_that_control_does_not_arrive_writes_no_instruction() {
2823 let promised = "int f(int x) { if (x) return 1; __builtin_unreachable(); }\n";
2824 let text = ir(promised);
2825 assert!(text.contains(" unreachable_hint\n"), "{text}");
2826 assert!(!text.contains("call"), "it is not a call to anything:\n{text}");
2827
2828 let after = body("int g(int x) { __builtin_unreachable(); return x; }\n");
2832 assert!(after.contains("return"), "{after}");
2833
2834 let text = asm(promised);
2837 let mine = text.split_once("\nf:\n").expect("a definition").1;
2838 let mine = mine.split_once("\t.size").expect("a definition").0;
2839 let plain = asm("int f(int x) { if (x) return 1; }\n");
2840 let plain = plain.split_once("\nf:\n").expect("a definition").1;
2841 let plain = plain.split_once("\t.size").expect("a definition").0;
2842 assert_eq!(mine, plain);
2843 assert!(mine.trim_end().ends_with("ret"), "{mine}");
2844 assert!(!mine.contains("ud2"), "{mine}");
2845 }
2846
2847 #[test]
2854 fn a_library_builtin_is_diagnosed_under_the_name_the_program_wrote() {
2855 let mut opts = options();
2856 opts.emit = EmitKind::Ir;
2857 let messages = run(&opts, "void f(void) { __builtin_abort(1); }\n").messages;
2858 assert!(
2859 messages.iter().any(|m| m.contains("__builtin_abort")),
2860 "expected the written name in {messages:?}"
2861 );
2862 }
2863
2864 #[test]
2872 fn a_builtin_nothing_lowers_is_refused_by_name() {
2873 let mut opts = options();
2874 opts.emit = EmitKind::Ir;
2875 for (builtin, call) in [
2876 ("__builtin_return_address", "(int)(long)__builtin_return_address(0)"),
2877 ("__builtin_alloca", "(int)(long)__builtin_alloca(8)"),
2878 ("__atomic_exchange_n", "__atomic_exchange_n(&counter, 1, 0)"),
2879 ("__sync_fetch_and_add", "(int)__sync_fetch_and_add(&counter, 1)"),
2880 ] {
2881 let source = format!("int counter;\nint f(void) {{ return {call}; }}\n");
2882 let messages = run(&opts, &source).messages;
2883 let named = messages.iter().any(|m| m.contains(builtin) && m.contains("E0686"));
2884 assert!(named, "expected {builtin} to be refused by name in {messages:?}");
2885 }
2886 }
2887
2888 #[test]
2896 fn what_is_refused_is_the_call_and_not_the_name() {
2897 let text = ir("unsigned long n = sizeof(__builtin_return_address(0));\n");
2898 assert!(text.contains("global @n : i64 = 8,"), "{text}");
2899
2900 let text = ir(concat!(
2901 "void *__builtin_return_address(unsigned x) { return 0; }\n",
2902 "void *f(void) { return __builtin_return_address(0); }\n",
2903 ));
2904 assert!(text.contains("call @__builtin_return_address"), "{text}");
2905 }
2906
2907 #[test]
2912 fn a_static_function_nothing_refers_to_is_not_emitted() {
2913 let text = ir("static int dropped(void) { return 1; }\n\
2914 static int kept(void) { return 2; }\n\
2915 int main(void) { return kept(); }\n");
2916 assert!(text.contains("func @kept"), "{text}");
2917 assert!(!text.contains("dropped"), "{text}");
2918 }
2919
2920 #[test]
2926 fn two_static_functions_that_only_call_each_other_are_both_dropped() {
2927 let text = ir("static int ping(void);\n\
2928 static int pong(void) { return ping(); }\n\
2929 static int ping(void) { return pong(); }\n\
2930 int main(void) { return 0; }\n");
2931 assert!(!text.contains("ping"), "{text}");
2932 assert!(!text.contains("pong"), "{text}");
2933 }
2934
2935 #[test]
2941 fn naming_a_static_function_anywhere_keeps_it() {
2942 let text = ir("static int by_address(void) { return 1; }\n\
2943 static int in_an_image(void) { return 2; }\n\
2944 static int deeper(void) { return 3; }\n\
2945 static int reaches_deeper(void) { return deeper(); }\n\
2946 static int (*table[1])(void) = {in_an_image};\n\
2947 int main(void) {\n\
2948 int (*p)(void) = by_address;\n\
2949 return p() + table[0]() + reaches_deeper();\n\
2950 }\n");
2951 for kept in ["by_address", "in_an_image", "deeper", "reaches_deeper"] {
2952 assert!(text.contains(&format!("func @{kept}")), "expected {kept} in:\n{text}");
2953 }
2954 }
2955
2956 #[test]
2962 fn an_attribute_keeps_a_static_function_nothing_refers_to() {
2963 for attribute in ["used", "retain", "constructor", "destructor", "__used__"] {
2964 let source = format!(
2965 "__attribute__(({attribute})) static int kept(void) {{ return 1; }}\n\
2966 int main(void) {{ return 0; }}\n"
2967 );
2968 let text = ir(&source);
2969 assert!(text.contains("func @kept"), "for {attribute}:\n{text}");
2970 }
2971 }
2972
2973 #[test]
2976 fn a_function_anything_could_call_is_emitted_without_being_called() {
2977 let text =
2978 ir("int nobody_here_calls_it(void) { return 1; }\nint main(void) { return 0; }\n");
2979 assert!(text.contains("func @nobody_here_calls_it"), "{text}");
2980 }
2981
2982 #[test]
2989 fn a_classification_c_has_an_operator_for_is_that_operator() {
2990 for (builtin, operator) in [
2991 ("__builtin_isgreater", "binary >"),
2992 ("__builtin_isgreaterequal", "binary >="),
2993 ("__builtin_isless", "binary <"),
2994 ("__builtin_islessequal", "binary <="),
2995 ] {
2996 let source = format!("int f(double x, double y) {{ return {builtin}(x, y); }}\n");
2997 let text = tast(&source);
2998 assert!(text.contains(&format!("{operator} : int")), "for {builtin}:\n{text}");
2999 }
3000 }
3001
3002 #[test]
3011 fn the_classification_builtins_are_comparisons_and_not_calls() {
3012 let text = body("int f(double x, double y) { return __builtin_isunordered(x, y); }\n");
3013 assert_eq!(
3014 text,
3015 "block0(%0: f64, %1: f64):\n %2 = fcmp uno %0, %1\n %3 = zext.i32 \
3016 %2\n return %3\n"
3017 );
3018
3019 let text = body("int f(double x, double y) { return __builtin_islessgreater(x, y); }\n");
3021 assert!(text.contains("fcmp one %0, %1"), "{text}");
3022
3023 let text = body("int f(double x) { return __builtin_isnan(x); }\n");
3024 assert!(text.contains("fcmp uno %0, %0"), "{text}");
3025
3026 let text = body("int f(double x) { return __builtin_isinf(x); }\n");
3027 assert!(text.contains("fconst.f64 0x7ff0000000000000"), "{text}");
3028 assert!(text.contains("fconst.f64 0xfff0000000000000"), "{text}");
3029 assert!(text.contains("%3 = fcmp oeq %0, %1"), "{text}");
3030 assert!(text.contains("%4 = fcmp oeq %0, %2"), "{text}");
3031 assert!(text.contains("%5 = or %3, %4"), "{text}");
3032
3033 let text = body("int f(double x) { return __builtin_isfinite(x); }\n");
3036 assert!(text.contains("%3 = fcmp olt %2, %0"), "{text}");
3037 assert!(text.contains("%4 = fcmp olt %0, %1"), "{text}");
3038 assert!(text.contains("%5 = and %3, %4"), "{text}");
3039
3040 let text = body("int f(double x) { return __builtin_signbit(x); }\n");
3041 assert!(text.contains("%1 = bitcast.i64 %0"), "{text}");
3042 assert!(text.contains("icmp slt %1, %2"), "{text}");
3043
3044 let text = body("int f(long double x) { return __builtin_signbitl(x); }\n");
3047 assert!(text.contains("%1 = bitcast.i80 %0"), "{text}");
3048
3049 let text = body("double g(void);\nint f(void) { return __builtin_isnan(g()); }\n");
3052 assert_eq!(text.matches("call @g()").count(), 1, "{text}");
3053 }
3054
3055 #[test]
3062 fn a_classification_spelling_that_names_a_width_converts_before_it_asks() {
3063 let text = ir(concat!(
3064 "int a = __builtin_isinff(1e300);\n",
3065 "int b = __builtin_isinf(1e300);\n",
3066 "int c = __builtin_isnan(0.0);\n",
3070 "int d = __builtin_signbit(-0.0);\n",
3071 "int e = __builtin_islessgreater(1.0, 2.0);\n",
3072 ));
3073 assert!(text.contains("global @a : i32 = 1,"), "{text}");
3074 assert!(text.contains("global @b : i32 = 0,"), "{text}");
3075 assert!(text.contains("global @c : i32 = 0,"), "{text}");
3076 assert!(text.contains("global @d : i32 = 1,"), "{text}");
3077 assert!(text.contains("global @e : i32 = 1,"), "{text}");
3078 }
3079
3080 #[test]
3082 fn a_classification_builtin_refuses_an_argument_that_is_not_floating_point() {
3083 let mut opts = options();
3084 opts.emit = EmitKind::Ir;
3085 let source = concat!(
3086 "int a(int x) { return __builtin_isnan(x); }\n",
3087 "int b(int x, int y) { return __builtin_isunordered(x, y); }\n",
3088 "int c(double x) { return __builtin_isnan(x, x); }\n",
3089 );
3090 let messages = run(&opts, source).messages;
3091 assert_eq!(
3092 messages,
3093 [
3094 "/main.c:1:23: error: non-floating-point argument in call to function \
3095 '__builtin_isnan' [E0685]",
3096 "/main.c:2:30: error: non-floating-point arguments in call to function \
3097 '__builtin_isunordered' [E0685]",
3098 "/main.c:3:26: error: too many arguments to function '__builtin_isnan' [E0511]",
3099 ]
3100 );
3101 }
3102
3103 #[test]
3112 fn the_last_three_classification_builtins_are_comparisons_and_not_calls() {
3113 let text = body("int f(double x) { return __builtin_isnormal(x); }\n");
3114 assert!(text.contains("%1 = bitcast.i64 %0"), "{text}");
3118 assert!(text.contains("%2 = iconst.i64 9223372036854775807"), "{text}");
3119 assert!(text.contains("%3 = and %1, %2"), "{text}");
3120 assert!(text.contains("%4 = iconst.i64 4503599627370496"), "{text}");
3121 assert!(text.contains("%5 = iconst.i64 9218868437227405312"), "{text}");
3122 assert!(text.contains("%6 = icmp uge %3, %4"), "{text}");
3123 assert!(text.contains("%7 = icmp ult %3, %5"), "{text}");
3124 assert!(text.contains("%8 = and %6, %7"), "{text}");
3125
3126 let text = body("int f(long double x) { return __builtin_isnormal(x); }\n");
3130 assert!(text.contains("%4 = iconst.i80 27670116110564327424"), "{text}");
3131 assert!(text.contains("%5 = iconst.i80 604453686435277732577280"), "{text}");
3132
3133 let text = body("int f(double x) { return __builtin_isinf_sign(x); }\n");
3134 assert!(text.contains("%3 = fcmp oeq %0, %1"), "{text}");
3135 assert!(text.contains("%4 = fcmp oeq %0, %2"), "{text}");
3136 assert!(text.contains("%7 = sub %5, %6"), "{text}");
3137
3138 let text = body("int f(double x) { return __builtin_fpclassify(0, 1, 2, 3, 4, x); }\n");
3139 assert!(text.contains("fcmp uno %0, %0"), "{text}");
3140 assert!(text.contains("fcmp oeq %0, %6"), "{text}");
3141 assert_eq!(text.matches(" = zext.i32 ").count(), 4, "{text}");
3145 assert_eq!(text.matches(" = xor ").count(), 4, "{text}");
3146 assert!(!text.contains("call"), "{text}");
3147
3148 let text = body(concat!(
3151 "double g(void);\n",
3152 "int f(void) { return __builtin_fpclassify(0, 1, 2, 3, 4, g()); }\n",
3153 ));
3154 assert_eq!(text.matches("call @g()").count(), 1, "{text}");
3155 }
3156
3157 #[test]
3164 fn the_last_three_classification_builtins_fold_where_their_operand_is_a_constant() {
3165 let text = ir(concat!(
3166 "int a = __builtin_isnormal(1.0);\n",
3167 "int b = __builtin_isnormal(0.0);\n",
3168 "int c = __builtin_isnormal(1.0 / 0.0);\n",
3169 "int d = __builtin_isinf_sign(-1.0 / 0.0);\n",
3170 "int e = __builtin_isinf_sign(1.0);\n",
3171 "int g = __builtin_fpclassify(0, 1, 2, 3, 4, 0.0);\n",
3172 "int h = __builtin_fpclassify(0, 1, 2, 3, 4, 1.0);\n",
3173 "int i = __builtin_fpclassify(0, 1, 2, 3, 4, 1.0 / 0.0);\n",
3174 ));
3175 assert!(text.contains("global @a : i32 = 1,"), "{text}");
3176 assert!(text.contains("global @b : i32 = 0,"), "{text}");
3177 assert!(text.contains("global @c : i32 = 0,"), "{text}");
3178 assert!(text.contains("global @d : i32 = -1,"), "{text}");
3179 assert!(text.contains("global @e : i32 = 0,"), "{text}");
3180 assert!(text.contains("global @g : i32 = 4,"), "{text}");
3181 assert!(text.contains("global @h : i32 = 2,"), "{text}");
3182 assert!(text.contains("global @i : i32 = 1,"), "{text}");
3183 }
3184
3185 #[test]
3191 fn fpclassify_refuses_an_answer_that_is_not_an_integer_constant() {
3192 let mut opts = options();
3193 opts.emit = EmitKind::Ir;
3194 let source = concat!(
3195 "int a(double x, int n) { return __builtin_fpclassify(0, 1, n, 3, 4, x); }\n",
3196 "int b(double x) { return __builtin_fpclassify(0, 1, 2, 3, x); }\n",
3197 "int c(int x) { return __builtin_fpclassify(0, 1, 2, 3, 4, x); }\n",
3198 );
3199 let messages = run(&opts, source).messages;
3200 assert_eq!(
3201 messages,
3202 [
3203 "/main.c:1:60: error: non-const integer argument 3 in call to function \
3204 '__builtin_fpclassify' [E0687]",
3205 "/main.c:2:26: error: too few arguments to function '__builtin_fpclassify' \
3206 [E0511]",
3207 "/main.c:3:23: error: non-floating-point argument in call to function \
3208 '__builtin_fpclassify' [E0685]",
3209 ]
3210 );
3211 }
3212
3213 #[test]
3221 fn a_builtin_whose_answer_is_a_constant_is_one_and_not_a_call() {
3222 let text = ir(concat!(
3223 "double a = __builtin_inf();\n",
3224 "float b = __builtin_huge_valf();\n",
3225 "long double c = __builtin_infl();\n",
3226 "double d = __builtin_huge_val();\n",
3227 ));
3228 assert!(text.contains("global @a : f64 = 0x7ff0000000000000,"), "{text}");
3229 assert!(text.contains("global @b : f32 = 0x7f800000,"), "{text}");
3230 assert!(text.contains("f80 0x7fff8000000000000000"), "{text}");
3231 assert!(text.contains("global @d : f64 = 0x7ff0000000000000,"), "{text}");
3232 assert!(!text.contains("call"), "{text}");
3233 }
3234
3235 #[test]
3244 fn a_nan_is_written_with_the_payload_the_program_asked_for() {
3245 let text = ir(concat!(
3246 "double a = __builtin_nan(\"\");\n",
3247 "double b = __builtin_nan(\"0x1\");\n",
3248 "double c = __builtin_nan(\"010\");\n",
3250 "double d = __builtin_nans(\"\");\n",
3251 "double e = __builtin_nans(\"0x1\");\n",
3252 "float f = __builtin_nanf(\"0x1\");\n",
3253 "float g = __builtin_nansf(\"\");\n",
3254 "long double h = __builtin_nansl(\"\");\n",
3255 ));
3256 assert!(text.contains("global @a : f64 = 0x7ff8000000000000,"), "{text}");
3257 assert!(text.contains("global @b : f64 = 0x7ff8000000000001,"), "{text}");
3258 assert!(text.contains("global @c : f64 = 0x7ff8000000000008,"), "{text}");
3259 assert!(text.contains("global @d : f64 = 0x7ff4000000000000,"), "{text}");
3260 assert!(text.contains("global @e : f64 = 0x7ff0000000000001,"), "{text}");
3261 assert!(text.contains("global @f : f32 = 0x7fc00001,"), "{text}");
3262 assert!(text.contains("global @g : f32 = 0x7fa00000,"), "{text}");
3263 assert!(text.contains("f80 0x7fffa000000000000000"), "{text}");
3264
3265 let text = ir(concat!(
3268 "double f(const char *p) { return __builtin_nan(p); }\n",
3269 "double g(void) { return __builtin_nans(\"1x\"); }\n",
3270 ));
3271 assert_eq!(text.matches("call @nan(").count(), 1, "{text}");
3272 assert_eq!(text.matches("call @nans(").count(), 1, "{text}");
3273 }
3274
3275 #[test]
3283 fn the_length_and_the_order_of_a_string_literal_are_known_here() {
3284 let text = ir(concat!(
3285 "unsigned long a = __builtin_strlen(\"hello\");\n",
3286 "unsigned long b = __builtin_strlen(\"a\\0bc\");\n",
3287 "int c = __builtin_strcmp(\"X\", \"X\\376\") < 0;\n",
3288 "int d = __builtin_strcmp(\"abc\", \"abc\");\n",
3289 "int e = __builtin_strcmp(\"abc\", \"ab\") > 0;\n",
3290 ));
3291 assert!(text.contains("global @a : i64 = 5,"), "{text}");
3292 assert!(text.contains("global @b : i64 = 1,"), "{text}");
3293 assert!(text.contains("global @c : i32 = 1,"), "{text}");
3294 assert!(text.contains("global @d : i32 = 0,"), "{text}");
3295 assert!(text.contains("global @e : i32 = 1,"), "{text}");
3296 assert!(!text.contains("call"), "{text}");
3297
3298 let text = ir("unsigned long f(const char *p) { return __builtin_strlen(p); }\n");
3300 assert!(text.contains("call @strlen("), "{text}");
3301 }
3302
3303 #[test]
3310 fn a_sign_builtin_is_a_mask_over_the_bits_and_not_a_call() {
3311 let text = body("double f(double x) { return __builtin_fabs(x); }\n");
3312 assert!(text.contains("bitcast.i64 %0"), "{text}");
3313 assert!(text.contains("iconst.i64 9223372036854775807"), "{text}");
3314 assert!(text.contains("and %1, %2"), "{text}");
3315 assert!(text.contains("bitcast.f64 %3"), "{text}");
3316 assert!(!text.contains("call"), "{text}");
3317
3318 let text = body("double f(double x, double y) { return __builtin_copysign(x, y); }\n");
3319 assert!(text.contains("iconst.i64 -9223372036854775808"), "{text}");
3320 assert!(text.contains("%8 = or %4, %7"), "{text}");
3321 assert!(!text.contains("call"), "{text}");
3322
3323 let text = body("long double f(long double x) { return __builtin_fabsl(x); }\n");
3326 assert!(text.contains("bitcast.i80 %0"), "{text}");
3327 assert!(text.contains("bitcast.f80"), "{text}");
3328
3329 let text = body("double f(float x) { return __builtin_fabs(x); }\n");
3332 assert!(text.contains("fpext.f64 %0"), "{text}");
3333 assert!(text.contains("bitcast.i64 %1"), "{text}");
3334 }
3335
3336 #[test]
3345 fn the_sign_builtins_answer_a_zero_and_a_nan_the_way_the_bits_say() {
3346 let text = ir(concat!(
3347 "double a = __builtin_fabs(-3.5);\n",
3348 "double b = __builtin_copysign(1.0, -0.0);\n",
3349 "double c = __builtin_copysign(0.0, -2.0);\n",
3350 "double d = __builtin_copysign(-__builtin_nan(\"\"), 1.0);\n",
3352 "double e = __builtin_fabs(-__builtin_nan(\"0x1\"));\n",
3353 "float g = __builtin_copysignf(-0.0f, 2.0f);\n",
3354 "long double h = __builtin_copysignl(1.0L, -1.0L);\n",
3355 "long double i = __builtin_fabsl(-__builtin_infl());\n",
3356 ));
3357 assert!(text.contains("global @a : f64 = 0x400c000000000000,"), "{text}");
3358 assert!(text.contains("global @b : f64 = 0xbff0000000000000,"), "{text}");
3359 assert!(text.contains("global @c : f64 = 0x8000000000000000,"), "{text}");
3360 assert!(text.contains("global @d : f64 = 0x7ff8000000000000,"), "{text}");
3361 assert!(text.contains("global @e : f64 = 0x7ff8000000000001,"), "{text}");
3362 assert!(text.contains("global @g : f32 = 0x0,"), "{text}");
3363 assert!(text.contains("f80 0xbfff8000000000000000"), "{text}");
3364 assert!(text.contains("f80 0x7fff8000000000000000"), "{text}");
3365 }
3366
3367 #[test]
3374 fn a_constexpr_object_is_a_constant_wherever_one_is_required() {
3375 let text = ir(concat!(
3376 "constexpr int side = 4;\n",
3377 "constexpr int wider = side + 1;\n",
3378 "constexpr double half = 1.5;\n",
3379 "struct point { int x; int y; };\n",
3380 "constexpr struct point origin = { 5, 6 };\n",
3381 "int square[side * side];\n",
3382 "int rectangle[wider];\n",
3383 "int rounded[(int)half * 2];\n",
3384 "int across[origin.y];\n",
3385 "enum named { four = side };\n",
3386 "int e = four;\n",
3387 ));
3388 assert!(text.contains("global @square : bytes 64 ="), "{text}");
3389 assert!(text.contains("global @rectangle : bytes 20 ="), "{text}");
3390 assert!(text.contains("global @rounded : bytes 8 ="), "{text}");
3391 assert!(text.contains("global @across : bytes 24 ="), "{text}");
3392 assert!(text.contains("global @e : i32 = 4,"), "{text}");
3393
3394 let mut opts = options();
3397 opts.emit = EmitKind::Ir;
3398 let konst = "const int n = 1;\nint a[n];\n";
3399 let message = "/main.c:2:5: error: variably modified 'a' at file scope [E0538]";
3400 assert_eq!(run(&opts, konst).messages, [message]);
3401
3402 let subscript = "constexpr int t[3] = { 1, 2, 3 };\nint a[t[1]];\n";
3404 assert_eq!(run(&opts, subscript).messages, [message]);
3405
3406 let address = "constexpr int c = 3;\nint *p = &c;\n";
3408 let warning = "/main.c:2:6: warning: initialization discards 'const' qualifier from \
3409 pointer target type [E0514]";
3410 assert_eq!(run(&opts, address).messages, [warning]);
3411 }
3412
3413 #[test]
3422 fn an_old_style_definition_takes_its_types_from_the_declarations_under_its_list() {
3423 let mut opts = options();
3426 opts.std = Std::C17;
3427 let source = concat!(
3428 "int add(a, b)\n",
3429 "int a;\n",
3430 "int b;\n",
3431 "{ return a + b; }\n",
3432 "int promoted(c)\n",
3433 "char c;\n",
3434 "{ return c; }\n",
3435 "int narrow(char);\n",
3436 "int narrow(c)\n",
3437 "char c;\n",
3438 "{ return c; }\n",
3439 "int first(a)\n",
3440 "int a[4];\n",
3441 "{ return a[0]; }\n",
3442 );
3443 let result = run(&opts, source);
3444 assert_eq!(result.messages, Vec::<String>::new(), "expected this to compile:\n{source}");
3445 let text = result.text();
3446 assert!(text.contains("add : int(int, int) function external defined"), "{text}");
3447 assert!(text.contains("promoted : int(int) function external defined"), "{text}");
3448 assert!(text.contains("c : char object automatic defined"), "{text}");
3450 assert!(text.contains("narrow : int(char) function external defined"), "{text}");
3451 assert!(text.contains("first : int(int *) function external defined"), "{text}");
3453 }
3454
3455 #[test]
3462 fn the_two_halves_of_an_old_style_parameter_list_have_to_agree() {
3463 let mut opts = options();
3464 opts.std = Std::C17;
3465 for (source, message) in [
3466 ("int f(a, a)\nint a;\n{ return a; }\n", "1:10: error: multiple parameters named 'a'"),
3467 (
3468 "int f(a)\nint a;\nint b;\n{ return a; }\n",
3469 "3:5: error: declaration for parameter 'b' but no such parameter",
3470 ),
3471 ("int f(a)\nint a;\nint a;\n{ return a; }\n", "3:5: error: redefinition of parameter"),
3472 ("int f(a)\nint a = 1;\n{ return a; }\n", "2:5: error: parameter 'a' is initialized"),
3473 (
3474 "int f(a)\nstatic int a;\n{ return a; }\n",
3475 "2:12: error: storage class specified for parameter 'a'",
3476 ),
3477 (
3478 "int f(char);\nint f(a)\nshort a;\n{ return a; }\n",
3479 "2:7: error: argument 'a' doesn't match prototype",
3480 ),
3481 ] {
3482 let result = run(&opts, source);
3483 assert!(result.failed(), "expected this to fail:\n{source}");
3484 assert!(result.messages[0].contains(message), "{:?}", result.messages);
3485 }
3486
3487 let implicit = "int f(a, b)\nint a;\n{ return a + b; }\n";
3490 let mut older = options();
3491 older.std = Std::C89;
3492 assert!(!run(&older, implicit).failed(), "{:?}", run(&older, implicit).messages);
3493 let result = run(&opts, implicit);
3494 assert!(
3495 result.messages[0].contains("1:10: error: type of 'b' defaults to 'int'"),
3496 "{:?}",
3497 result.messages
3498 );
3499
3500 let mut newer = options();
3504 newer.std = Std::C23;
3505 let plain = "int f(a)\nint a;\n{ return a; }\n";
3506 let result = run(&newer, plain);
3507 assert!(!result.failed(), "{:?}", result.messages);
3508 assert_eq!(
3509 result.messages,
3510 ["/main.c:1:5: warning: old-style function definition [E0412]"]
3511 );
3512 assert!(run(&opts, plain).messages.is_empty(), "and nothing to say in the dialects before");
3513 }
3514
3515 #[test]
3522 fn a_type_is_refused_when_it_passes_the_largest_object_and_not_before() {
3523 let text = ir(concat!(
3524 "struct huge_struct { short buf[(1L << 62) - 256]; int a, b, c, d; };\n",
3525 "struct brim { char buf[9223372036854775807L]; };\n",
3526 "struct bitty { char buf[9223372036854775800L]; int x : 1; };\n",
3527 "unsigned long h = sizeof(struct huge_struct);\n",
3528 "unsigned long b = sizeof(struct brim);\n",
3529 "unsigned long y = sizeof(struct bitty);\n",
3530 ));
3531 assert!(text.contains("global @h : i64 = 9223372036854775312,"), "{text}");
3532 assert!(text.contains("global @b : i64 = 9223372036854775807,"), "{text}");
3533 assert!(text.contains("global @y : i64 = 9223372036854775804,"), "{text}");
3534
3535 let mut opts = options();
3536 opts.emit = EmitKind::Ir;
3537 let over = "struct over { char buf[9223372036854775800L]; char x[8]; };\n";
3538 let message = "/main.c:1:1: error: type 'struct over' is too large [E0560]";
3539 assert_eq!(run(&opts, over).messages, [message]);
3540 let array = "struct wide { short buf[1L << 62]; };\n";
3541 let message = "/main.c:1:25: error: size of array 'buf' exceeds \
3542 maximum object size '9223372036854775807' [E0537]";
3543 assert_eq!(run(&opts, array).messages[0], message);
3544 }
3545
3546 fn compile_bytes(source: &[u8]) -> Compiled {
3551 let mut opts = options();
3552 opts.emit = EmitKind::Ir;
3553 let mut fs = MemoryFileSystem::new();
3554 fs.insert("/main.c", source.to_vec());
3555 compile(&opts, "/main.c", &fs)
3556 }
3557
3558 #[test]
3565 fn a_byte_that_is_not_a_character_is_kept_in_a_literal_and_refused_outside_one() {
3566 let mut source = b"char s[] = \"a".to_vec();
3567 source.push(0xff);
3568 source.extend_from_slice(b"b\";\nchar c = '");
3569 source.push(0xff);
3570 source.extend_from_slice(b"';\n");
3571 let result = compile_bytes(&source);
3572 assert_eq!(result.messages, Vec::<String>::new(), "a raw byte in a literal is that byte");
3573 assert!(result.text().contains(r#"bytes "a\ffb\00""#), "{}", result.text());
3574 assert!(result.text().contains("global @c : i8 = -1,"), "{}", result.text());
3576
3577 let mut stray = b"int a".to_vec();
3578 stray.push(0xff);
3579 stray.extend_from_slice(b" = 1;\n");
3580 let result = compile_bytes(&stray);
3581 assert!(
3582 result.messages.iter().any(|m| m.contains("source is not valid UTF-8 here")),
3583 "{:?}",
3584 result.messages
3585 );
3586 }
3587
3588 #[test]
3589 fn an_object_becomes_a_global_with_an_image_and_a_function_becomes_a_func() {
3590 let text = ir("int x = 7;\nint add(int a, int b) { return a + b; }\n");
3591 assert!(text.contains("global @x : i32 = 7, align 4, linkage(external)\n"), "{text}");
3592 let expected = "\
3593func @add(i32, i32) -> i32, linkage(external) {
3594block0(%0: i32, %1: i32):
3595 %2 = add.nsw %0, %1
3596 return %2
3597}
3598";
3599 assert!(text.contains(expected), "{text}");
3600 }
3601
3602 #[test]
3603 fn a_local_nothing_takes_the_address_of_is_a_value_and_never_a_stack_slot() {
3604 let text = body("int f(int n) { int a = n + 1; int b = a * 2; return a + b; }\n");
3605 assert!(!text.contains("alloca"), "{text}");
3606 assert!(!text.contains("load"), "{text}");
3607 assert!(!text.contains("store"), "{text}");
3608 }
3609
3610 #[test]
3611 fn a_local_whose_address_is_taken_gets_a_slot_in_the_entry_block() {
3612 let text = body("int g(int *);\nint f(void) { int a = 1; return g(&a); }\n");
3613 let expected = "\
3614block0:
3615 %0 = alloca, size 4, align 4
3616 %1 = iconst.i32 1
3617 store %1 -> %0, align 4
3618 %2 = call @g(%0) : (ptr) -> i32
3619 return %2
3620";
3621 assert_eq!(text, expected);
3622 }
3623
3624 #[test]
3625 fn a_loop_carries_what_it_changes_as_block_parameters() {
3626 let text = body(
3629 "int f(int n) {\n int total = 0;\n for (int i = 0; i < n; i++) total += i;\n \
3630 return total;\n}\n",
3631 );
3632 assert!(!text.contains("alloca"), "{text}");
3633 assert!(text.contains("block1(%3: i32, %4: i32):"), "{text}");
3634 assert!(text.contains("jump block1("), "{text}");
3635 }
3636
3637 #[test]
3638 fn a_comparison_used_as_a_condition_is_not_widened_and_narrowed_again() {
3639 let text = body("int f(int a, int b) { if (a < b) return 1; return 0; }\n");
3640 assert!(text.contains("icmp slt %0, %1"), "{text}");
3641 assert!(!text.contains("zext"), "{text}");
3642 }
3643
3644 #[test]
3645 fn the_right_side_of_a_short_circuit_is_in_a_block_of_its_own() {
3646 let text = body("int f(int a, int b) { return a && b; }\n");
3647 let expected = "\
3648block0(%0: i32, %1: i32):
3649 %2 = iconst.i32 0
3650 %3 = icmp ne %0, %2
3651 %4 = iconst.i1 0
3652 br_if %3, block1, block2(%4)
3653
3654block1:
3655 %5 = iconst.i32 0
3656 %6 = icmp ne %1, %5
3657 jump block2(%6)
3658
3659block2(%7: i1):
3660 %8 = zext.i32 %7
3661 return %8
3662";
3663 assert_eq!(text, expected);
3664 }
3665
3666 #[test]
3667 fn code_after_a_return_is_not_built_and_does_not_leave_an_empty_block_behind() {
3668 let text = body("int f(int a) { if (a) return 1; else return 2; return 3; }\n");
3669 assert!(!text.contains("block3"), "{text}");
3672 assert!(!text.contains("iconst.i32 3"), "{text}");
3673 }
3674
3675 #[test]
3676 fn falling_off_the_end_returns_zero_from_main_and_nothing_from_a_void_function() {
3677 assert!(body("int main(void) { }\n").contains("iconst.i32 0\n return"));
3678 assert_eq!(body("void f(void) { }\n"), "block0:\n return\n");
3679 assert!(body("int f(void) { }\n").contains("unreachable"));
3680 }
3681
3682 #[test]
3683 fn a_structure_is_copied_rather_than_held_in_a_value() {
3684 let text = body(
3685 "struct point { int x, y; };\n\
3686 int f(void) { struct point p = { 1, 2 }; struct point q = p; return q.x; }\n",
3687 );
3688 assert!(text.contains("memcpy"), "{text}");
3689 }
3690
3691 #[test]
3692 fn an_initializer_that_leaves_part_of_an_object_unwritten_zeroes_it_first() {
3693 let text = body("int f(void) { int a[4] = { 1 }; return a[3]; }\n");
3694 assert!(text.contains("memset"), "{text}");
3695 }
3696
3697 #[test]
3698 fn a_switch_is_one_branch_and_a_case_that_falls_through_carries_what_it_wrote() {
3699 let text = body(
3700 "int f(int x) { int r = 0; switch (x) { case 1: r = 1; case 2: r += 2; break; \
3701 default: r = 4; } return r; }\n",
3702 );
3703 let expected = "\
3704block0(%0: i32):
3705 %1 = iconst.i32 0
3706 switch %0, block1, [1 => block2, 2 => block3(%1)]
3707
3708block1:
3709 %2 = iconst.i32 4
3710 jump block4(%2)
3711
3712block2:
3713 %3 = iconst.i32 1
3714 jump block3(%3)
3715
3716block3(%4: i32):
3717 %5 = iconst.i32 2
3718 %6 = add.nsw %4, %5
3719 jump block4(%6)
3720
3721block4(%7: i32):
3722 return %7
3723";
3724 assert_eq!(text, expected);
3725 }
3726
3727 #[test]
3728 fn a_case_range_is_tested_for_rather_than_put_in_the_table() {
3729 let text = body("int f(int x) { switch (x) { case 1 ... 9: return 1; } return 0; }\n");
3732 assert!(text.contains("%2 = sub %0, %1"), "{text}");
3733 assert!(text.contains("icmp ule"), "{text}");
3734 assert!(!text.contains("switch"), "{text}");
3735 }
3736
3737 #[test]
3738 fn break_leaves_the_switch_and_continue_leaves_the_loop_around_it() {
3739 let text = body(
3740 "int f(int n) { int t = 0; for (int i = 0; i < n; i++) { switch (i) { \
3741 case 0: continue; case 1: break; default: t += i; } t++; } return t; }\n",
3742 );
3743 assert!(text.contains("switch %3, block4, [0 => block5, 1 => block6]"), "{text}");
3746 assert!(text.contains("block5:\n jump block7("), "{text}");
3747 assert!(text.contains("block6:\n jump block8("), "{text}");
3748 }
3749
3750 #[test]
3751 fn a_switch_with_nothing_to_branch_on_still_runs_what_comes_after_it() {
3752 assert_eq!(body("void f(int x) { switch (x) { } }\n"), "block0(%0: i32):\n return\n");
3753 }
3754
3755 #[test]
3756 fn a_label_a_loop_is_only_entered_through_builds_the_loop_around_it() {
3757 let text = body(
3762 "int f(int x, int n) { switch (x) { case 1: break; while (n) { case 2: n--; } } \
3763 return n; }\n",
3764 );
3765 assert!(text.contains("switch %0, block1(%1), [1 => block2, 2 => block3(%1)]"), "{text}");
3768 assert!(text.contains("block3(%3: i32):\n %4 = iconst.i32 1"), "{text}");
3769 assert!(text.contains("block5:\n jump block3("), "{text}");
3770 }
3771
3772 #[test]
3773 fn a_goto_into_a_loop_body_enters_it_without_the_test() {
3774 let text = body("int f(int x, int n) { goto in; while (n) { in: n--; } return n; }\n");
3777 assert!(text.starts_with("block0(%0: i32, %1: i32):\n jump block1(%1)"), "{text}");
3778 assert!(text.contains("block1(%2: i32):\n %3 = iconst.i32 1"), "{text}");
3779 assert!(text.contains("br_if %7, block3, block4"), "{text}");
3780 }
3781
3782 #[test]
3783 fn a_goto_is_a_jump_to_the_block_the_label_starts() {
3784 let text = body("int f(int x) { int r = 0; if (x) goto out; r = 1; out: return r; }\n");
3785 assert!(!text.contains("alloca"), "{text}");
3787 assert!(text.contains("block3(%4: i32):\n return %4"), "{text}");
3788 assert_eq!(text.matches("jump block3(").count(), 2, "{text}");
3789 }
3790
3791 #[test]
3792 fn a_backward_goto_is_a_loop_and_carries_what_it_changes() {
3793 let text =
3794 body("int f(int n) { int i = 0; again: if (i < n) { i++; goto again; } return i; }\n");
3795 assert!(!text.contains("alloca"), "{text}");
3796 assert!(text.contains("block1(%2: i32):"), "{text}");
3797 assert!(text.contains("jump block1(%5)"), "{text}");
3798 }
3799
3800 #[test]
3801 fn a_label_nothing_reaches_is_taken_out_rather_than_left_for_the_verifier() {
3802 assert_eq!(
3805 body("int f(int x) { return x; spare: return 0; }\n"),
3806 "block0(%0: i32):\n return %0\n"
3807 );
3808 }
3809
3810 #[test]
3811 fn a_bit_field_is_read_by_loading_the_bytes_it_lies_in_and_shifting() {
3812 let text = body(
3813 "struct s { unsigned a : 3; signed b : 5; };\nint f(struct s *p) { return p->b; }\n",
3814 );
3815 assert_eq!(
3818 text,
3819 "\
3820block0(%0: ptr):
3821 %1 = load.i8 %0, align 1
3822 %2 = iconst.i8 3
3823 %3 = ashr %1, %2
3824 %4 = sext.i32 %3
3825 return %4
3826"
3827 );
3828 }
3829
3830 #[test]
3831 fn a_store_to_a_bit_field_does_not_write_a_byte_it_has_no_bit_in() {
3832 let text =
3836 body("struct s { int a : 24; char c; };\nvoid f(struct s *p, int v) { p->a = v; }\n");
3837 assert_eq!(
3838 text,
3839 "\
3840block0(%0: ptr, %1: i32):
3841 %2 = iconst.i32 16777215
3842 %3 = and %1, %2
3843 %4 = trunc.i16 %3
3844 store %4 -> %0, align 2
3845 %5 = iconst.i32 16
3846 %6 = lshr %3, %5
3847 %7 = trunc.i8 %6
3848 %8 = iconst.i64 2
3849 %9 = ptr_add %0, %8
3850 store %7 -> %9, align 1
3851 return
3852"
3853 );
3854 }
3855
3856 #[test]
3857 fn what_an_assignment_to_a_bit_field_is_worth_is_what_fits_in_it() {
3858 let text =
3859 body("struct s { unsigned b : 5; };\nunsigned f(struct s *p) { return p->b = 33; }\n");
3860 assert!(text.contains("%3 = iconst.i8 31\n %4 = and %2, %3"), "{text}");
3863 assert!(text.ends_with("%9 = zext.i32 %4\n return %9\n"), "{text}");
3864 }
3865
3866 #[test]
3867 fn an_assignment_a_statement_throws_away_builds_none_of_what_it_is_worth() {
3868 let text = body("struct s { signed b : 5; };\nvoid f(struct s *p) { p->b = 3; }\n");
3871 assert_eq!(text.matches("ashr").count(), 0, "{text}");
3872 assert!(text.ends_with("store %8 -> %0, align 1\n return\n"), "{text}");
3873 }
3874
3875 #[test]
3876 fn a_bit_field_in_an_initializer_goes_in_over_bytes_that_were_zeroed_first() {
3877 let text = body(
3881 "struct s { int a : 3; int b; };\nint f(void) { struct s v = { 1 }; return v.b; }\n",
3882 );
3883 assert!(text.contains("memset %0, %1, size 8, align 4"), "{text}");
3884 }
3885
3886 #[test]
3887 fn the_image_of_a_static_bit_field_is_the_bytes_the_fields_share() {
3888 let text = ir("struct s { unsigned a : 3; unsigned b : 5; } g = { 1, 2 };\n");
3891 assert!(
3892 text.contains("global @g : bytes 4 = { bytes \"\\11\", zero 3 }, align 4"),
3893 "{text}"
3894 );
3895 }
3896
3897 #[test]
3898 fn an_initialized_flexible_array_member_makes_the_object_larger_than_its_type() {
3899 let text = ir(concat!(
3904 "struct a { int i; int j[]; } x = { 1, { 2, 0, 2, 3 } };\n",
3905 "struct b { char c; char p[]; } y = { 'o', \"wx\" };\n",
3906 "struct c { char c; char p[]; } z = { '9', { 'e', 'b' } };\n",
3907 "char s[2] = \"hi\";\n",
3908 ));
3909 assert!(
3910 text.contains("global @x : bytes 20 = { i32 1, i32 2, i32 0, i32 2, i32 3 }"),
3911 "{text}"
3912 );
3913 assert!(text.contains("global @y : bytes 4 = { i8 111, bytes \"wx\\00\" }"), "{text}");
3914 assert!(text.contains("global @z : bytes 3 = { i8 57, i8 101, i8 98 }"), "{text}");
3915 assert!(text.contains("global @s : bytes 2 = { bytes \"hi\" }"), "{text}");
3918 }
3919
3920 #[test]
3921 fn a_definition_takes_a_parameter_it_left_unnamed() {
3922 let text = ir("int f(int a, int) { return a; }\n");
3926 assert!(text.contains("func @f(i32, i32) -> i32"), "{text}");
3927 assert!(text.contains("block0(%0: i32, %1: i32):"), "{text}");
3928
3929 let text = ir("int g(int, int n) { return n; }\n");
3932 assert!(text.contains("block0(%0: i32, %1: i32):\n return %1\n"), "{text}");
3933 }
3934
3935 #[test]
3936 fn an_assignment_of_a_structure_is_the_object_it_wrote() {
3937 let text = body(concat!(
3942 "struct s { int f; int g; };\n",
3943 "void h(struct s *a, struct s *c, struct s *d, struct s *e)\n",
3944 "{ *d = *e = a[0] = *c; }\n",
3945 ));
3946 assert_eq!(text.matches("memcpy").count(), 3, "{text}");
3947 assert!(text.contains("memcpy %8, %1, size 8, align 4\n"), "{text}");
3948 assert!(text.contains("memcpy %3, %8, size 8, align 4\n"), "{text}");
3949 assert!(text.contains("memcpy %2, %3, size 8, align 4\n"), "{text}");
3950 }
3951
3952 #[test]
3953 fn a_string_literal_stops_at_the_end_of_the_array_it_is_filling() {
3954 let mut opts = options();
3959 opts.emit = EmitKind::Ir;
3960 let result = run(
3961 &opts,
3962 concat!(
3963 "const char a[2][3] = { \"1234\", \"xyz\" };\n",
3964 "static const char b[3][5] = { \"12345\", \"678\", \"9\" };\n",
3965 "union u { struct { char x[4]; char y[4]; }; struct { char z[8]; }; };\n",
3966 "const union u c = { { \"1234\", \"567\" } };\n",
3967 ),
3968 );
3969 let text = result.text();
3970 assert_eq!(
3971 result.messages,
3972 ["/main.c:1:24: warning: initializer-string for array of 'const char' is too long \
3973 (5 chars into 3 available) [E0637]"]
3974 );
3975 assert!(text.contains("global @a : bytes 6 = { bytes \"123\", bytes \"xyz\" }"), "{text}");
3976 assert!(
3977 text.contains(
3978 "global @b : bytes 15 = { bytes \"12345\", bytes \"678\\00\", zero 1, \
3979 bytes \"9\\00\", zero 3 }"
3980 ),
3981 "{text}"
3982 );
3983 assert!(
3986 text.contains("global @c : bytes 8 = { bytes \"1234\", bytes \"567\\00\" }"),
3987 "{text}"
3988 );
3989 }
3990
3991 #[test]
3992 fn a_cast_of_a_record_to_its_own_type_is_the_object_that_was_cast() {
3993 let text = body(concat!(
3997 "struct s { int a, b; };\nstruct v { struct s s; int t; };\n",
3998 "void g(struct v *);\n",
3999 "void f(struct s *p) { struct v w = { (struct s)*p, 5 }; g(&w); }\n",
4000 ));
4001 assert_eq!(text.matches("memcpy").count(), 1, "{text}");
4002 }
4003
4004 #[test]
4005 fn a_compound_literal_read_in_a_static_initializer_lays_its_bytes_into_the_image() {
4006 let text = ir(concat!(
4011 "struct s { int x; };\n",
4012 "struct t { struct s s; int o; } a = { (struct s){ 2 }, 3 };\n",
4013 "int n = (int){ 7 };\n",
4014 "struct u { struct s p; struct s q; } b = { (struct s){ 1 }, (struct s){ } };\n",
4015 ));
4016 assert!(text.contains("global @a : bytes 8 = { i32 2, i32 3 }"), "{text}");
4017 assert!(text.contains("global @n : i32 = 7,"), "{text}");
4018 assert!(text.contains("global @b : bytes 8 = { i32 1, zero 4 }"), "{text}");
4021 }
4022
4023 #[test]
4024 fn the_address_of_a_compound_literal_asks_for_the_object_it_points_at() {
4025 let text = ir("struct s { int x; };\nstruct s *q = &(struct s){ 9 };\n");
4029 assert!(text.contains("global @.Lanon.0 : i32 = 9, align 4, linkage(internal)"), "{text}");
4030 assert!(text.contains("global @q : bytes 8 = { addr.8 @.Lanon.0 }"), "{text}");
4031 }
4032
4033 #[test]
4034 fn an_object_of_no_size_at_all_has_an_image_with_nothing_in_it() {
4035 let text = ir("unsigned char foo[1][0];\n");
4039 assert!(text.contains("global @foo : bytes 0 = {}, align 1"), "{text}");
4040 }
4041
4042 #[test]
4043 fn a_null_pointer_in_an_image_is_the_bits_an_address_has_room_for() {
4044 let text = ir("void *p = 0;\nchar *q = (char *) 4096;\n");
4047 assert!(text.contains("global @p : i64 = 0, align 8"), "{text}");
4048 assert!(text.contains("global @q : i64 = 4096, align 8"), "{text}");
4049 }
4050
4051 #[test]
4052 fn an_object_another_module_defines_may_be_one_that_cannot_be_written_through() {
4053 let text = ir("extern const int limit;\nint f(void) { return limit; }\n");
4057 assert!(
4058 text.contains("global @limit : bytes 4, align 4, linkage(external), constant"),
4059 "{text}"
4060 );
4061 }
4062
4063 #[test]
4064 fn a_conditional_whose_value_is_an_object_answers_where_the_object_is() {
4065 let text = body(
4070 "\
4071struct s { int a, b; };
4072struct s pick(int c, struct s x, struct s y) { return c ? x : y; }
4073",
4074 );
4075 assert!(text.contains("block3(%7: ptr)"), "{text}");
4077 assert!(text.contains("jump block3(%3)") && text.contains("jump block3(%4)"), "{text}");
4078 assert!(!text.contains("memcpy"), "the arms are joined rather than copied: {text}");
4079 }
4080
4081 #[test]
4082 fn a_structure_that_fits_in_registers_travels_as_the_registers_it_fits_in() {
4083 let text = ir("\
4087struct pair { int a, b; };
4088struct pair make(int a, int b);
4089struct pair twice(struct pair p) { return make(p.a, p.b); }
4090");
4091 assert!(text.contains("func @make(i32, i32) -> i64"), "{text}");
4092 assert!(text.contains("func @twice(i64) -> i64"), "{text}");
4093 }
4094
4095 #[test]
4096 fn a_structure_too_large_for_the_registers_travels_as_where_its_bytes_are() {
4097 let text = ir("\
4101struct big { double v[8]; };
4102struct big grow(struct big b);
4103struct big twice(struct big b) { return grow(grow(b)); }
4104");
4105 assert!(
4106 text.contains("func @grow(ptr sret(64, align 8), ptr byval(64, align 8))"),
4107 "{text}"
4108 );
4109 assert!(text.contains("block0(%0: ptr, %1: ptr):"), "{text}");
4110 assert_eq!(text.matches("call @grow").count(), 2, "{text}");
4113 }
4114
4115 #[test]
4116 fn a_structure_passed_to_a_variadic_function_says_so_at_the_call() {
4117 let text = ir("\
4122struct big { double v[8]; };
4123struct pair { int a, b; };
4124int p(const char *, ...);
4125int f(struct big b, struct pair q) { return p(\"\", 1, b, q); }
4126");
4127 assert!(
4128 text.contains("call @p(%4, %5, %2 byval(64, align 8), %6) : (ptr, ...) -> i32"),
4129 "{text}"
4130 );
4131 }
4132
4133 #[test]
4134 fn what_a_call_produced_is_somewhere_before_anything_is_read_out_of_it() {
4135 let body = body(
4138 "\
4139struct pair { int a, b; };
4140struct pair make(int a, int b);
4141int second(void) { return make(1, 2).b; }
4142",
4143 );
4144 assert!(body.starts_with("block0:\n %0 = alloca, size 8, align 4\n"), "{body}");
4145 assert!(body.contains("store %3 -> %0, align 4\n"), "{body}");
4146 }
4147
4148 #[test]
4149 fn a_structure_of_floats_travels_in_floating_point_registers_on_aarch64() {
4150 let source = "\
4154struct hfa { float x, y, z; };
4155int take(struct hfa h);
4156int give(struct hfa h) { return take(h); }
4157";
4158 assert!(ir(source).contains("func @take(f64, f32) -> i32"), "{}", ir(source));
4159 let mut opts = options();
4160 opts.emit = EmitKind::Ir;
4161 opts.target = "aarch64-unknown-linux-gnu".parse::<Triple>().unwrap();
4162 let result = run(&opts, source);
4163 assert_eq!(result.messages, Vec::<String>::new());
4164 assert!(result.text().contains("func @take(f32, f32, f32) -> i32"), "{}", result.text());
4165 }
4166
4167 #[test]
4168 fn an_array_whose_length_is_not_a_constant_is_a_slot_made_where_its_declaration_is() {
4169 let source = "\
4172int use(int *);
4173void f(int n) {
4174 {
4175 int a[n];
4176 use(a);
4177 }
4178 use(0);
4179}
4180";
4181 let body = body(source);
4182 assert!(body.contains("mul.nsw"), "{body}");
4183 assert!(body.contains("stacksave"), "{body}");
4184 assert!(body.contains("alloca %"), "{body}");
4185 assert!(body.contains("stackrestore"), "{body}");
4186 }
4187
4188 #[test]
4189 fn a_goto_out_of_the_scope_of_one_gives_its_stack_back_on_the_way() {
4190 let source = "\
4195int use(int *);
4196int f(int n) {
4197 {
4198 int a[n];
4199 if (use(a)) goto out;
4200 use(0);
4201 }
4202out:
4203 return 0;
4204}
4205";
4206 let body = body(source);
4207 assert_eq!(body.matches("stackrestore").count(), 2, "{body}");
4209 let (_, after) = body.split_once("stackrestore").expect("the stack is given back");
4210 assert!(after.starts_with(" %4\n jump block"), "{body}");
4211 }
4212
4213 #[test]
4214 fn a_goto_to_a_label_the_array_is_still_alive_at_leaves_the_stack_alone() {
4215 let source = "\
4219int use(int *);
4220int f(int n) {
4221 int a[n];
4222again:
4223 if (use(a)) goto again;
4224 return 0;
4225}
4226";
4227 let body = body(source);
4228 assert!(body.contains("stacksave"), "{body}");
4229 assert!(!body.contains("stackrestore"), "{body}");
4230 }
4231
4232 #[test]
4233 fn a_goto_back_to_a_label_in_front_of_one_gives_it_back_every_time_round() {
4234 let source = "\
4239int use(int *);
4240int f(int n) {
4241again:
4242 {
4243 int a[n];
4244 if (use(a)) goto again;
4245 }
4246 return 0;
4247}
4248";
4249 let body = body(source);
4250 assert_eq!(body.matches("stacksave").count(), 1, "{body}");
4251 let (_, after) = body.split_once("stackrestore").expect("the stack is given back");
4252 assert!(after.starts_with(" %4\n jump block1\n"), "{body}");
4253 }
4254
4255 #[test]
4256 fn the_head_of_a_for_loop_is_a_scope_that_closes_where_the_loop_is_left() {
4257 let source = "\
4263int f(void);
4264void t(void) {
4265 int count = 10;
4266 for (; count--;) {
4267 int b[f()];
4268 int i;
4269 for (i = 0; i < f(); i++) {
4270 b[i] = count;
4271 }
4272 }
4273}
4274";
4275 let body = body(source);
4276 assert_eq!(body.matches("stacksave").count(), 1, "{body}");
4280 let (_, after) = body.split_once("stackrestore").expect("the stack is given back");
4281 let (next, _) = after.split_once("\n\n").expect("a block after the restore");
4282 assert!(next.contains("jump block1("), "{body}");
4283 }
4284
4285 #[test]
4286 fn how_long_one_of_those_is_was_decided_where_it_was_declared_and_not_where_it_is_asked() {
4287 let source = "\
4290unsigned long f(int n) {
4291 int a[n];
4292 n = 0;
4293 return sizeof a;
4294}
4295";
4296 let body = body(source);
4297 assert_eq!(body.matches("sext.i64 %0").count(), 2, "{body}");
4299 }
4300
4301 #[test]
4302 fn a_block_in_the_middle_of_an_expression_is_walked_where_the_expression_is() {
4303 let source = "\
4306int use(int);
4307int f(int x) {
4308 return ({
4309 int t = use(x);
4310 t * t;
4311 });
4312}
4313";
4314 let expected = "\
4315block0(%0: i32):
4316 %1 = call @use(%0) : (i32) -> i32
4317 %2 = mul.nsw %1, %1
4318 return %2
4319";
4320 assert_eq!(body(source), expected);
4321 }
4322
4323 #[test]
4324 fn one_of_those_that_control_never_leaves_is_lowered_and_what_follows_it_is_dropped() {
4325 let source = "int f(int x) { return ({ return x; 0; }); }\n";
4329 assert_eq!(body(source), "block0(%0: i32):\n return %0\n");
4330 }
4331
4332 #[test]
4333 fn one_argument_off_a_variable_argument_list_stays_an_intrinsic() {
4334 let source = "double f(__builtin_va_list ap) { return __builtin_va_arg(ap, double) + __builtin_va_arg(ap, double); }\n";
4338 let expected = "\
4339block0(%0: ptr):
4340 %1 = va_arg.f64 %0
4341 %2 = va_arg.f64 %0
4342 %3 = fadd %1, %2
4343 return %3
4344";
4345 assert_eq!(body(source), expected);
4346 }
4347
4348 #[test]
4349 fn one_that_reads_a_structure_answers_where_the_object_is() {
4350 let source = "\
4364struct s { int a; long b; };
4365long f(__builtin_va_list ap) { struct s v = __builtin_va_arg(ap, struct s); return v.b; }
4366";
4367 let expected = "\
4368block0(%0: ptr):
4369 %1 = alloca, size 16, align 16
4370 %2 = va_object %0, size 16, align 8, in(int 8 at 0, int 8 at 8)
4371 memcpy %1, %2, size 16, align 8
4372 %3 = iconst.i64 8
4373 %4 = ptr_add %1, %3
4374 %5 = load.i64 %4, align 8
4375 return %5
4376";
4377 assert_eq!(body(source), expected);
4378 }
4379
4380 #[test]
4384 fn the_classification_says_which_registers_the_object_arrived_in() {
4385 let source = "\
4386struct s { double a; double b; };
4387double f(__builtin_va_list ap) { struct s v = __builtin_va_arg(ap, struct s); return v.a; }
4388";
4389 assert!(
4390 body(source)
4391 .contains("va_object %0, size 16, align 8, in(float f64 at 0, float f64 at 8)"),
4392 "{}",
4393 body(source)
4394 );
4395
4396 let big = "\
4397struct s { long a[4]; };
4398long f(__builtin_va_list ap) { struct s v = __builtin_va_arg(ap, struct s); return v.a[0]; }
4399";
4400 assert!(body(big).contains("va_object %0, size 32, align 8\n"), "{}", body(big));
4401 }
4402
4403 #[test]
4404 fn a_jump_to_an_address_branches_to_every_label_the_function_takes_the_address_of() {
4405 let source = "\
4409int f(int c) {
4410 void *p = c ? &&one : &&two;
4411 goto *p;
4412one:
4413 return 1;
4414two:
4415 return 2;
4416}
4417";
4418 let expected = "\
4419block0(%0: i32):
4420 %1 = iconst.i32 0
4421 %2 = icmp ne %0, %1
4422 br_if %2, block1, block2
4423
4424block1:
4425 %3 = block_addr block3
4426 jump block4(%3)
4427
4428block2:
4429 %4 = block_addr block5
4430 jump block4(%4)
4431
4432block3:
4433 %5 = iconst.i32 1
4434 return %5
4435
4436block4(%6: ptr):
4437 indirect_br %6, block3, block5
4438
4439block5:
4440 %7 = iconst.i32 2
4441 return %7
4442";
4443 assert_eq!(body(source), expected);
4444 }
4445
4446 #[test]
4447 fn a_jump_to_an_address_no_label_in_the_function_has_arrives_nowhere() {
4448 let source = "void **next(void);
4451void f(void) { goto *next(); }
4452";
4453 let expected = "\
4454block0:
4455 %0 = call @next() : () -> ptr
4456 unreachable
4457";
4458 assert_eq!(body(source), expected);
4459 }
4460
4461 #[test]
4462 fn an_asm_with_no_operands_is_volatile_and_the_clobbers_are_the_whole_of_what_it_says() {
4463 let source = "void f(void) { __asm__(\"mfence\" ::: \"memory\"); }\n";
4466 let expected = "\
4467block0:
4468 inline_asm.volatile \"mfence\", \"\", \"memory\"()
4469 return
4470";
4471 assert_eq!(body(source), expected);
4472 }
4473
4474 #[test]
4475 fn the_constraints_are_one_list_in_the_order_the_template_counts_the_operands() {
4476 let source = "\
4479int f(int x, int y) {
4480 int r;
4481 __asm__(\"addl %2, %0\" : \"=r\"(r), \"+r\"(y) : \"r\"(x));
4482 return r + y;
4483}
4484";
4485 let expected = "\
4486block0(%0: i32, %1: i32):
4487 %2, %3 = inline_asm.(i32, i32) \"addl %2, %0\", \"=r,+r,r\", \"\"(%1, %0)
4488 %4 = add.nsw %2, %3
4489 return %4
4490";
4491 assert_eq!(body(source), expected);
4492 }
4493
4494 #[test]
4495 fn a_memory_operand_travels_as_the_address_of_an_object_that_is_given_a_slot() {
4496 let source = "\
4501struct pair { int a, b; };
4502int f(int x) {
4503 int slot = x;
4504 struct pair p = { x, x };
4505 __asm__(\"incl %0\" : \"+m\"(slot), \"=m\"(p));
4506 return slot + p.a;
4507}
4508";
4509 let text = body(source);
4510 assert!(text.contains("inline_asm \"incl %0\", \"+m,=m\", \"\"(%1, %2)\n"), "{text}");
4511 assert!(text.contains("%1 = alloca, size 4, align 4\n"), "{text}");
4512 assert!(text.contains("%2 = alloca, size 8, align 4\n"), "{text}");
4513 }
4514
4515 #[test]
4516 fn an_asm_goto_falls_through_to_its_first_target_and_writes_its_outputs_there() {
4517 let source = "\
4522int f(int x) {
4523 int r = 7;
4524 __asm__ goto(\"cbnz %0, %l1\" : \"=r\"(r) : \"r\"(x) :: away);
4525 return r;
4526away:
4527 return r;
4528}
4529";
4530 let expected = "\
4531block0(%0: i32):
4532 %1 = iconst.i32 7
4533 %2 = inline_asm.volatile \"cbnz %0, %l1\", \"=r,r\", \"\"(%0), labels [block1, block2]
4534
4535block1:
4536 return %2
4537
4538block2:
4539 return %1
4540";
4541 assert_eq!(body(source), expected);
4542 }
4543
4544 #[test]
4545 fn an_asm_statement_that_is_not_well_formed_is_reported_in_the_words_gcc_uses() {
4546 let mut opts = options();
4550 opts.emit = EmitKind::Ir;
4551 for (source, expected) in [
4552 (
4553 "void f(int x) { __asm__(\"\" : \"r\"(x)); }\n",
4554 "output operand constraint lacks '='",
4555 ),
4556 (
4557 "void f(int x) { __asm__(\"\" : \"=r\"(x + 1)); }\n",
4558 "lvalue required in 'asm' statement",
4559 ),
4560 (
4561 "const int g = 1;\nvoid f(void) { __asm__(\"\" : \"=r\"(g)); }\n",
4562 "read-only variable 'g' used as 'asm' output",
4563 ),
4564 (
4565 "void f(int x) { __asm__(\"\" : : \"=r\"(x)); }\n",
4566 "input operand constraint contains '='",
4567 ),
4568 (
4569 "void f(void) { __asm__(\"\" : : \"m\"(1)); }\n",
4570 "memory input 0 is not directly addressable",
4571 ),
4572 ("void f(void) { __asm__(L\"\"); }\n", "wide string literal in 'asm'"),
4573 (
4574 "void f(int x, int y) { __asm__(\"\" : [a] \"=r\"(x) : [a] \"r\"(y)); }\n",
4575 "duplicate asm operand name 'a'",
4576 ),
4577 ("void f(int x) { __asm__(\"%[in]\" : \"=r\"(x)); }\n", "undefined named operand 'in'"),
4578 ] {
4579 let result = run(&opts, source);
4580 assert!(result.failed(), "expected this to be reported:\n{source}");
4581 assert!(
4582 result.messages.iter().any(|m| m.contains(expected)),
4583 "{expected}\n{:?}",
4584 result.messages
4585 );
4586 }
4587 }
4588
4589 #[test]
4590 fn what_the_walk_cannot_build_yet_is_reported_rather_than_mislowered() {
4591 let mut opts = options();
4592 opts.emit = EmitKind::Ir;
4593 for source in [
4594 "int f(int n) { void *p = &&out; if (n) goto *p; { int a[n]; out: return 1; } }\n",
4595 "int f(int n) { int a[n]; __asm__ goto(\"\" ::::out); out: return a[0]; }\n",
4596 ] {
4597 let result = run(&opts, source);
4598 assert!(result.failed(), "expected this to be reported:\n{source}");
4599 assert!(
4600 result.messages.iter().any(|m| m.contains("not supported yet")),
4601 "{:?}",
4602 result.messages
4603 );
4604 }
4605 }
4606
4607 fn round_trip(source: &str) -> (String, String) {
4609 let printed = ir(source);
4610 let mut opts = options();
4611 opts.emit = EmitKind::Ir;
4612 let mut fs = MemoryFileSystem::new();
4613 fs.insert("/main.ir", printed.clone().into_bytes());
4614 let result = compile_ir(&opts, "/main.ir", &fs);
4615 assert_eq!(result.messages, Vec::<String>::new(), "expected this to read back:\n{printed}");
4616 (printed, result.text().to_owned())
4617 }
4618
4619 #[test]
4620 fn ir_that_arrives_as_an_input_is_read_back_and_written_out_the_same() {
4621 let (printed, again) = round_trip(
4625 "struct point { int x, y; };\n static const char greeting[] = \"hi\";\n int puts(const char *);\n int f(int n) { struct point p = { n, 1 }; puts(greeting); return p.x; }\n",
4626 );
4627 assert_eq!(printed, again);
4628 }
4629
4630 #[test]
4631 fn ir_that_is_not_ir_says_which_line_stopped_it() {
4632 let mut opts = options();
4633 opts.emit = EmitKind::Ir;
4634 let mut fs = MemoryFileSystem::new();
4635 let text = "\
4636; ModuleID = 'a.c'
4637; format 0
4638target triple = \"x86_64-unknown-linux-gnu\"
4639target datalayout = \"e-p:64:64-i64:64-S128\"
4640
4641func @f(), linkage(external) {
4642block0:
4643 frobnicate
4644}
4645";
4646 fs.insert("/main.ir", text.as_bytes().to_vec());
4647 let result = compile_ir(&opts, "/main.ir", &fs);
4648 assert!(result.failed());
4649 assert!(result.messages[0].contains("/main.ir:8"), "{:?}", result.messages);
4650 }
4651
4652 #[test]
4653 fn ir_that_reads_but_does_not_hold_together_is_reported_by_the_verifier() {
4654 let mut opts = options();
4657 opts.emit = EmitKind::Ir;
4658 let mut fs = MemoryFileSystem::new();
4659 let text = "\
4660; ModuleID = 'a.c'
4661; format 0
4662target triple = \"x86_64-unknown-linux-gnu\"
4663target datalayout = \"e-p:64:64-i64:64-S128\"
4664
4665func @f(), linkage(external) {
4666block0:
4667 %0 = iconst.i32 1
4668 return %0
4669}
4670";
4671 fs.insert("/main.ir", text.as_bytes().to_vec());
4672 let result = compile_ir(&opts, "/main.ir", &fs);
4673 assert!(result.failed());
4674 assert!(result.messages[0].contains("invalid IR"), "{:?}", result.messages);
4675 }
4676
4677 #[test]
4678 fn a_typed_tree_is_not_something_an_input_of_ir_can_produce() {
4679 let mut fs = MemoryFileSystem::new();
4681 fs.insert("/main.ir", Vec::new());
4682 let result = compile_ir(&options(), "/main.ir", &fs);
4683 assert!(result.failed());
4684 assert!(result.messages[0].contains("can only be emitted as IR"), "{:?}", result.messages);
4685 }
4686
4687 #[test]
4688 fn the_printed_ir_reads_back_as_the_same_module() {
4689 let text = ir("\
4692struct point { int x, y; };
4693static const char greeting[] = \"hi\";
4694int table[4] = { 1, 2, 3 };
4695int puts(const char *);
4696double half(double x) { return x / 2.0; }
4697int f(int n) {
4698 int total = 0;
4699 for (int i = 0; i < n; i++) {
4700 if (i == 3) continue;
4701 total += table[i];
4702 }
4703 switch (n) {
4704 case 0: total = 1;
4705 case 1: total++; break;
4706 default: total = -total;
4707 }
4708 struct point p = { total, 1 };
4709 int *q = &p.y;
4710 puts(greeting);
4711 return p.x + *q;
4712}
4713int dispatch(int c) {
4714 void *p = c ? &&one : &&two;
4715 goto *p;
4716one:
4717 return 1;
4718two:
4719 return 2;
4720}
4721int assembly(int x, int *p) {
4722 int r;
4723 __asm__ volatile(\"xadd %0, %2\" : \"=r\"(r), \"+m\"(*p) : \"0\"(x) : \"cc\");
4724 __asm__ goto(\"cbnz %0, %l1\" : : \"r\"(r) : : away);
4725 return r;
4726away:
4727 return 0;
4728}
4729");
4730 let mut names = Interner::new();
4731 let module = rucc_ir::parse(&text, &mut names).expect("the printer writes what it reads");
4732 assert_eq!(rucc_ir::print(&module, &names), text);
4733 }
4734}