1use std::{assert_matches, iter};
5
6use rustc_ast::{self as ast, GenericParamKind, attr, join_path_idents};
7use rustc_ast_pretty::pprust;
8use rustc_attr_parsing::AttributeParser;
9use rustc_errors::{Applicability, Diag, Level};
10use rustc_expand::base::*;
11use rustc_hir::Attribute;
12use rustc_hir::attrs::AttributeKind;
13use rustc_span::{ErrorGuaranteed, Ident, RemapPathScopeComponents, Span, Symbol, sym};
14use thin_vec::{ThinVec, thin_vec};
15use tracing::debug;
16
17use crate::diagnostics;
18use crate::util::{check_builtin_macro_attribute, warn_on_duplicate_attribute};
19
20pub(crate) fn expand_test_case(
28 ecx: &mut ExtCtxt<'_>,
29 attr_sp: Span,
30 meta_item: &ast::MetaItem,
31 anno_item: Annotatable,
32) -> Vec<Annotatable> {
33 check_builtin_macro_attribute(ecx, meta_item, sym::test_case);
34 warn_on_duplicate_attribute(ecx, &anno_item, sym::test_case);
35
36 let sp = ecx.with_def_site_ctxt(attr_sp);
37 let (mut item, is_stmt) = match anno_item {
38 Annotatable::Item(item) => (item, false),
39 Annotatable::Stmt(stmt) if let ast::StmtKind::Item(_) = stmt.kind => {
40 if let ast::StmtKind::Item(i) = stmt.kind {
41 (i, true)
42 } else {
43 ::core::panicking::panic("internal error: entered unreachable code")unreachable!()
44 }
45 }
46 _ => {
47 ecx.dcx().emit_err(diagnostics::TestCaseNonItem { span: anno_item.span() });
48 return ::alloc::vec::Vec::new()vec![];
49 }
50 };
51
52 if !ecx.ecfg.should_test {
53 return ::alloc::vec::Vec::new()vec![];
54 }
55
56 match &mut item.kind {
59 ast::ItemKind::Fn(ast::Fn { ident, .. })
60 | ast::ItemKind::Const(ast::ConstItem { ident, .. })
61 | ast::ItemKind::Static(ast::StaticItem { ident, .. }) => {
62 ident.span = ident.span.with_ctxt(sp.ctxt());
63 let test_path_symbol = Symbol::intern(&item_path(
64 &ecx.current_expansion.module.mod_path[1..],
66 ident,
67 ));
68 item.vis = ast::Visibility { span: item.vis.span, kind: ast::VisibilityKind::Public };
69 item.attrs.push(ecx.attr_name_value_str(sym::rustc_test_marker, test_path_symbol, sp));
70 }
71 _ => {}
72 }
73
74 let ret = if is_stmt {
75 Annotatable::Stmt(Box::new(ecx.stmt_item(item.span, item)))
76 } else {
77 Annotatable::Item(item)
78 };
79
80 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[ret]))vec![ret]
81}
82
83pub(crate) fn expand_test(
84 cx: &mut ExtCtxt<'_>,
85 attr_sp: Span,
86 meta_item: &ast::MetaItem,
87 item: Annotatable,
88) -> Vec<Annotatable> {
89 check_builtin_macro_attribute(cx, meta_item, sym::test);
90 warn_on_duplicate_attribute(cx, &item, sym::test);
91 expand_test_or_bench(cx, attr_sp, item, false)
92}
93
94pub(crate) fn expand_bench(
95 cx: &mut ExtCtxt<'_>,
96 attr_sp: Span,
97 meta_item: &ast::MetaItem,
98 item: Annotatable,
99) -> Vec<Annotatable> {
100 check_builtin_macro_attribute(cx, meta_item, sym::bench);
101 warn_on_duplicate_attribute(cx, &item, sym::bench);
102 expand_test_or_bench(cx, attr_sp, item, true)
103}
104
105pub(crate) fn expand_test_or_bench(
106 cx: &ExtCtxt<'_>,
107 attr_sp: Span,
108 item: Annotatable,
109 is_bench: bool,
110) -> Vec<Annotatable> {
111 let (item, is_stmt) = match item {
112 Annotatable::Item(i) => (i, false),
113 Annotatable::Stmt(ast::Stmt { kind: ast::StmtKind::Item(i), .. }) => (i, true),
114 other => {
115 not_testable_error(cx, is_bench, attr_sp, None);
116 return ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[other]))vec![other];
117 }
118 };
119
120 let ast::ItemKind::Fn(fn_) = &item.kind else {
121 not_testable_error(cx, is_bench, attr_sp, Some(&item));
122 return if is_stmt {
123 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Stmt(Box::new(cx.stmt_item(item.span, item)))]))vec![Annotatable::Stmt(Box::new(cx.stmt_item(item.span, item)))]
124 } else {
125 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Item(item)]))vec![Annotatable::Item(item)]
126 };
127 };
128
129 if !cx.ecfg.should_test {
131 return ::alloc::vec::Vec::new()vec![];
132 }
133
134 if let Some(attr) = attr::find_by_name(&item.attrs, sym::naked) {
135 cx.dcx().emit_err(diagnostics::NakedFunctionTestingAttribute {
136 testing_span: attr_sp,
137 naked_span: attr.span,
138 });
139 return ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Item(item)]))vec![Annotatable::Item(item)];
140 }
141
142 let check_result = if is_bench {
146 check_bench_signature(cx, &item, fn_)
147 } else {
148 check_test_signature(cx, &item, fn_)
149 };
150 if check_result.is_err() {
151 return if is_stmt {
152 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Stmt(Box::new(cx.stmt_item(item.span, item)))]))vec![Annotatable::Stmt(Box::new(cx.stmt_item(item.span, item)))]
153 } else {
154 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Item(item)]))vec![Annotatable::Item(item)]
155 };
156 }
157
158 let sp = cx.with_def_site_ctxt(item.span);
159 let ret_ty_sp = cx.with_def_site_ctxt(fn_.sig.decl.output.span());
160 let attr_sp = cx.with_def_site_ctxt(attr_sp);
161
162 let test_ident = Ident::new(sym::test, attr_sp);
163
164 let test_path = |name| cx.path(ret_ty_sp, ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[test_ident, Ident::from_str_and_span(name, sp)]))vec![test_ident, Ident::from_str_and_span(name, sp)]);
166
167 let should_panic_path = |name| {
169 cx.path(
170 sp,
171 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[test_ident, Ident::from_str_and_span("ShouldPanic", sp),
Ident::from_str_and_span(name, sp)]))vec![
172 test_ident,
173 Ident::from_str_and_span("ShouldPanic", sp),
174 Ident::from_str_and_span(name, sp),
175 ],
176 )
177 };
178
179 let test_type_path = |name| {
181 cx.path(
182 sp,
183 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[test_ident, Ident::from_str_and_span("TestType", sp),
Ident::from_str_and_span(name, sp)]))vec![
184 test_ident,
185 Ident::from_str_and_span("TestType", sp),
186 Ident::from_str_and_span(name, sp),
187 ],
188 )
189 };
190
191 let field = |name, expr| cx.field_imm(sp, Ident::from_str_and_span(name, sp), expr);
193
194 let coverage_off = |mut expr: Box<ast::Expr>| {
199 {
match expr.kind {
ast::ExprKind::Closure(_) => {}
ref left_val => {
::core::panicking::assert_matches_failed(left_val,
"ast::ExprKind::Closure(_)", ::core::option::Option::None);
}
}
};assert_matches!(expr.kind, ast::ExprKind::Closure(_));
200 expr.attrs.push(cx.attr_nested_word(sym::coverage, sym::off, sp));
201 expr
202 };
203
204 let test_fn = if is_bench {
205 let bencher_param =
207 Ident::from_str_and_span(&::alloc::__export::must_use({
::alloc::fmt::format(format_args!("__bench_{0}", fn_.ident.name))
})format!("__bench_{}", fn_.ident.name), attr_sp);
208 cx.expr_call(
209 sp,
210 cx.expr_path(test_path("StaticBenchFn")),
211 {
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(coverage_off(cx.lambda1(sp,
cx.expr_call(sp,
cx.expr_path(test_path("assert_test_result")),
{
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.expr_call(ret_ty_sp,
cx.expr_path(cx.path(sp,
::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[fn_.ident])))),
{
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.expr_ident(sp, bencher_param));
vec
}));
vec
}), bencher_param)));
vec
}thin_vec![
212 coverage_off(cx.lambda1(
215 sp,
216 cx.expr_call(
217 sp,
218 cx.expr_path(test_path("assert_test_result")),
219 thin_vec![
220 cx.expr_call(
222 ret_ty_sp,
223 cx.expr_path(cx.path(sp, vec![fn_.ident])),
224 thin_vec![cx.expr_ident(sp, bencher_param)],
225 ),
226 ],
227 ),
228 bencher_param,
229 )), ],
231 )
232 } else {
233 cx.expr_call(
234 sp,
235 cx.expr_path(test_path("StaticTestFn")),
236 {
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(coverage_off(cx.lambda0(sp,
cx.expr_call(sp,
cx.expr_path(test_path("assert_test_result")),
{
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.expr_call(ret_ty_sp,
cx.expr_path(cx.path(sp,
::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[fn_.ident])))), ThinVec::new()));
vec
}))));
vec
}thin_vec![
237 coverage_off(cx.lambda0(
240 sp,
241 cx.expr_call(
243 sp,
244 cx.expr_path(test_path("assert_test_result")),
245 thin_vec![
246 cx.expr_call(
248 ret_ty_sp,
249 cx.expr_path(cx.path(sp, vec![fn_.ident])),
250 ThinVec::new(),
251 ), ],
253 ), )), ],
256 )
257 };
258
259 let test_path_symbol = Symbol::intern(&item_path(
260 &cx.current_expansion.module.mod_path[1..],
262 &fn_.ident,
263 ));
264
265 let location_info = get_location_info(cx, &fn_);
266
267 let mut test_const =
268 cx.item(
269 sp,
270 {
let len = [(), (), ()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.attr_nested_word(sym::cfg, sym::test, attr_sp));
vec.push(cx.attr_name_value_str(sym::rustc_test_marker, test_path_symbol,
attr_sp));
vec.push(cx.attr_nested_word(sym::doc, sym::hidden, attr_sp));
vec
}thin_vec![
271 cx.attr_nested_word(sym::cfg, sym::test, attr_sp),
273 cx.attr_name_value_str(sym::rustc_test_marker, test_path_symbol, attr_sp),
275 cx.attr_nested_word(sym::doc, sym::hidden, attr_sp),
277 ],
278 ast::ItemKind::Const(
280 ast::ConstItem {
281 defaultness: ast::Defaultness::Implicit,
282 ident: Ident::new(fn_.ident.name, sp),
283 generics: ast::Generics::default(),
284 ty: cx.ty(sp, ast::TyKind::Path(None, test_path("TestDescAndFn"))),
285 define_opaque: None,
286 rhs_kind: ast::ConstItemRhsKind::new_body(
288 cx.expr_struct(
289 sp,
290 test_path("TestDescAndFn"),
291 {
let len = [(), ()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(field("desc",
cx.expr_struct(sp, test_path("TestDesc"),
{
let len =
[(), (), (), (), (), (), (), (), (), (), (), ()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(field("name",
cx.expr_call(sp, cx.expr_path(test_path("StaticTestName")),
{
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.expr_str(sp, test_path_symbol));
vec
})));
vec.push(field("ignore",
cx.expr_bool(sp, should_ignore(&item))));
vec.push(field("ignore_message",
if let Some(msg) = should_ignore_message(&item) {
cx.expr_some(sp, cx.expr_str(sp, msg))
} else { cx.expr_none(sp) }));
vec.push(field("source_file",
cx.expr_str(sp, location_info.0)));
vec.push(field("start_line",
cx.expr_usize(sp, location_info.1)));
vec.push(field("start_col",
cx.expr_usize(sp, location_info.2)));
vec.push(field("end_line",
cx.expr_usize(sp, location_info.3)));
vec.push(field("end_col",
cx.expr_usize(sp, location_info.4)));
vec.push(field("compile_fail", cx.expr_bool(sp, false)));
vec.push(field("no_run", cx.expr_bool(sp, false)));
vec.push(field("should_panic",
match should_panic(cx, &item) {
ShouldPanic::No => { cx.expr_path(should_panic_path("No")) }
ShouldPanic::Yes(None) => {
cx.expr_path(should_panic_path("Yes"))
}
ShouldPanic::Yes(Some(sym)) =>
cx.expr_call(sp,
cx.expr_path(should_panic_path("YesWithMessage")),
{
let len = [()].len();
let mut vec = ::thin_vec::ThinVec::with_capacity(len);
vec.push(cx.expr_str(sp, sym));
vec
}),
}));
vec.push(field("test_type",
match test_type(cx) {
TestType::UnitTest => {
cx.expr_path(test_type_path("UnitTest"))
}
TestType::IntegrationTest => {
cx.expr_path(test_type_path("IntegrationTest"))
}
TestType::Unknown => {
cx.expr_path(test_type_path("Unknown"))
}
}));
vec
})));
vec.push(field("testfn", test_fn));
vec
}thin_vec![
292 field(
294 "desc",
295 cx.expr_struct(sp, test_path("TestDesc"), thin_vec![
296 field(
298 "name",
299 cx.expr_call(
300 sp,
301 cx.expr_path(test_path("StaticTestName")),
302 thin_vec![cx.expr_str(sp, test_path_symbol)],
303 ),
304 ),
305 field("ignore", cx.expr_bool(sp, should_ignore(&item)),),
307 field(
309 "ignore_message",
310 if let Some(msg) = should_ignore_message(&item) {
311 cx.expr_some(sp, cx.expr_str(sp, msg))
312 } else {
313 cx.expr_none(sp)
314 },
315 ),
316 field("source_file", cx.expr_str(sp, location_info.0)),
318 field("start_line", cx.expr_usize(sp, location_info.1)),
320 field("start_col", cx.expr_usize(sp, location_info.2)),
322 field("end_line", cx.expr_usize(sp, location_info.3)),
324 field("end_col", cx.expr_usize(sp, location_info.4)),
326 field("compile_fail", cx.expr_bool(sp, false)),
328 field("no_run", cx.expr_bool(sp, false)),
330 field("should_panic", match should_panic(cx, &item) {
332 ShouldPanic::No => {
334 cx.expr_path(should_panic_path("No"))
335 }
336 ShouldPanic::Yes(None) => {
338 cx.expr_path(should_panic_path("Yes"))
339 }
340 ShouldPanic::Yes(Some(sym)) => cx.expr_call(
342 sp,
343 cx.expr_path(should_panic_path("YesWithMessage")),
344 thin_vec![cx.expr_str(sp, sym)],
345 ),
346 },),
347 field("test_type", match test_type(cx) {
349 TestType::UnitTest => {
351 cx.expr_path(test_type_path("UnitTest"))
352 }
353 TestType::IntegrationTest => {
355 cx.expr_path(test_type_path("IntegrationTest"))
356 }
357 TestType::Unknown => {
359 cx.expr_path(test_type_path("Unknown"))
360 }
361 },),
362 ],),
364 ),
365 field("testfn", test_fn), ],
368 ), ),
370 }
371 .into(),
372 ),
373 );
374 test_const.vis.kind = ast::VisibilityKind::Public;
375
376 let test_extern =
378 cx.item(sp, ast::AttrVec::new(), ast::ItemKind::ExternCrate(None, test_ident));
379
380 {
use ::tracing::__macro_support::Callsite as _;
static __CALLSITE: ::tracing::callsite::DefaultCallsite =
{
static META: ::tracing::Metadata<'static> =
{
::tracing_core::metadata::Metadata::new("event compiler/rustc_builtin_macros/src/test.rs:380",
"rustc_builtin_macros::test", ::tracing::Level::DEBUG,
::tracing_core::__macro_support::Option::Some("compiler/rustc_builtin_macros/src/test.rs"),
::tracing_core::__macro_support::Option::Some(380u32),
::tracing_core::__macro_support::Option::Some("rustc_builtin_macros::test"),
::tracing_core::field::FieldSet::new(&["message"],
::tracing_core::callsite::Identifier(&__CALLSITE)),
::tracing::metadata::Kind::EVENT)
};
::tracing::callsite::DefaultCallsite::new(&META)
};
let enabled =
::tracing::Level::DEBUG <= ::tracing::level_filters::STATIC_MAX_LEVEL
&&
::tracing::Level::DEBUG <=
::tracing::level_filters::LevelFilter::current() &&
{
let interest = __CALLSITE.interest();
!interest.is_never() &&
::tracing::__macro_support::__is_enabled(__CALLSITE.metadata(),
interest)
};
if enabled {
(|value_set: ::tracing::field::ValueSet|
{
let meta = __CALLSITE.metadata();
::tracing::Event::dispatch(meta, &value_set);
;
})({
#[allow(unused_imports)]
use ::tracing::field::{debug, display, Value};
let mut iter = __CALLSITE.metadata().fields().iter();
__CALLSITE.metadata().fields().value_set(&[(&::tracing::__macro_support::Iterator::next(&mut iter).expect("FieldSet corrupted (this is a bug)"),
::tracing::__macro_support::Option::Some(&format_args!("synthetic test item:\n{0}\n",
pprust::item_to_string(&test_const)) as &dyn Value))])
});
} else { ; }
};debug!("synthetic test item:\n{}\n", pprust::item_to_string(&test_const));
381
382 if is_stmt {
383 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Stmt(Box::new(cx.stmt_item(sp, test_extern))),
Annotatable::Stmt(Box::new(cx.stmt_item(sp, test_const))),
Annotatable::Stmt(Box::new(cx.stmt_item(sp, item)))]))vec![
384 Annotatable::Stmt(Box::new(cx.stmt_item(sp, test_extern))),
386 Annotatable::Stmt(Box::new(cx.stmt_item(sp, test_const))),
388 Annotatable::Stmt(Box::new(cx.stmt_item(sp, item))),
390 ]
391 } else {
392 ::alloc::boxed::box_assume_init_into_vec_unsafe(::alloc::intrinsics::write_box_via_move(::alloc::boxed::Box::new_uninit(),
[Annotatable::Item(test_extern), Annotatable::Item(test_const),
Annotatable::Item(item)]))vec![
393 Annotatable::Item(test_extern),
395 Annotatable::Item(test_const),
397 Annotatable::Item(item),
399 ]
400 }
401}
402
403fn not_testable_error(cx: &ExtCtxt<'_>, is_bench: bool, attr_sp: Span, item: Option<&ast::Item>) {
404 let dcx = cx.dcx();
405 let name = if is_bench { "bench" } else { "test" };
406 let msg = ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("the `#[{0}]` attribute may only be used on a free function",
name))
})format!("the `#[{name}]` attribute may only be used on a free function");
407 let level = match item.map(|i| &i.kind) {
408 Some(ast::ItemKind::MacCall(_)) => Level::Warning,
411 _ => Level::Error,
412 };
413 let mut err = Diag::<()>::new(dcx, level, msg);
414 err.span(attr_sp);
415 if let Some(item) = item {
416 err.span_label(
417 item.span,
418 ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("expected a non-associated function, found {0} {1}",
item.kind.article(), item.kind.descr()))
})format!(
419 "expected a non-associated function, found {} {}",
420 item.kind.article(),
421 item.kind.descr()
422 ),
423 );
424 }
425 err.span_label(attr_sp, ::alloc::__export::must_use({
::alloc::fmt::format(format_args!("the `#[{0}]` macro causes a function to be run as a test and has no effect on non-functions",
name))
})format!("the `#[{name}]` macro causes a function to be run as a test and has no effect on non-functions"));
426
427 if !is_bench {
428 err.with_span_suggestion(attr_sp,
429 "replace with conditional compilation to make the item only exist when tests are being run",
430 "#[cfg(test)]",
431 Applicability::MaybeIncorrect).emit();
432 } else {
433 err.emit();
434 }
435}
436
437fn get_location_info(cx: &ExtCtxt<'_>, fn_: &ast::Fn) -> (Symbol, usize, usize, usize, usize) {
438 let span = fn_.ident.span;
439 let (source_file, lo_line, lo_col, hi_line, hi_col) =
440 cx.sess.source_map().span_to_location_info(span);
441
442 let file_name = match source_file {
443 Some(sf) => sf.name.display(RemapPathScopeComponents::MACRO).to_string(),
444 None => "no-location".to_string(),
445 };
446
447 (Symbol::intern(&file_name), lo_line, lo_col, hi_line, hi_col)
448}
449
450fn item_path(mod_path: &[Ident], item_ident: &Ident) -> String {
451 join_path_idents(mod_path.iter().chain(iter::once(item_ident)))
452}
453
454enum ShouldPanic {
455 No,
456 Yes(Option<Symbol>),
457}
458
459fn should_ignore(i: &ast::Item) -> bool {
460 attr::contains_name(&i.attrs, sym::ignore)
461}
462
463fn should_ignore_message(i: &ast::Item) -> Option<Symbol> {
464 match attr::find_by_name(&i.attrs, sym::ignore) {
465 Some(attr) => {
466 match attr.meta_item_list() {
467 Some(_) => None,
469 None => attr.value_str(),
471 }
472 }
473 None => None,
474 }
475}
476
477fn should_panic(cx: &ExtCtxt<'_>, i: &ast::Item) -> ShouldPanic {
478 if let Some(Attribute::Parsed(AttributeKind::ShouldPanic { reason, .. })) =
479 AttributeParser::parse_limited(cx.sess, &i.attrs, &[sym::should_panic])
480 {
481 ShouldPanic::Yes(reason)
482 } else {
483 ShouldPanic::No
484 }
485}
486
487enum TestType {
488 UnitTest,
489 IntegrationTest,
490 Unknown,
491}
492
493fn test_type(cx: &ExtCtxt<'_>) -> TestType {
497 let crate_path = cx.root_path.as_path();
502
503 if crate_path.ends_with("src") {
504 TestType::UnitTest
506 } else if crate_path.ends_with("tests") {
507 TestType::IntegrationTest
509 } else {
510 TestType::Unknown
512 }
513}
514
515fn check_test_signature(
516 cx: &ExtCtxt<'_>,
517 i: &ast::Item,
518 f: &ast::Fn,
519) -> Result<(), ErrorGuaranteed> {
520 let has_should_panic_attr = attr::contains_name(&i.attrs, sym::should_panic);
521 let dcx = cx.dcx();
522
523 if let ast::Safety::Unsafe(span) = f.sig.header.safety {
524 return Err(dcx.emit_err(diagnostics::TestBadFn {
525 span: i.span,
526 cause: span,
527 kind: "unsafe",
528 }));
529 }
530
531 if let Some(coroutine_kind) = f.sig.header.coroutine_kind {
532 match coroutine_kind {
533 ast::CoroutineKind::Async { span, .. } => {
534 return Err(dcx.emit_err(diagnostics::TestBadFn {
535 span: i.span,
536 cause: span,
537 kind: "async",
538 }));
539 }
540 ast::CoroutineKind::Gen { span, .. } => {
541 return Err(dcx.emit_err(diagnostics::TestBadFn {
542 span: i.span,
543 cause: span,
544 kind: "gen",
545 }));
546 }
547 ast::CoroutineKind::AsyncGen { span, .. } => {
548 return Err(dcx.emit_err(diagnostics::TestBadFn {
549 span: i.span,
550 cause: span,
551 kind: "async gen",
552 }));
553 }
554 }
555 }
556
557 let has_output = match &f.sig.decl.output {
560 ast::FnRetTy::Default(..) => false,
561 ast::FnRetTy::Ty(t) if t.kind.is_unit() => false,
562 _ => true,
563 };
564
565 if !f.sig.decl.inputs.is_empty() {
566 return Err(dcx.span_err(i.span, "functions used as tests can not have any arguments"));
567 }
568
569 if has_should_panic_attr && has_output {
570 return Err(dcx.span_err(i.span, "functions using `#[should_panic]` must return `()`"));
571 }
572
573 if f.generics.params.iter().any(|param| !#[allow(non_exhaustive_omitted_patterns)] match param.kind {
GenericParamKind::Lifetime => true,
_ => false,
}matches!(param.kind, GenericParamKind::Lifetime)) {
574 return Err(dcx.span_err(
575 i.span,
576 "functions used as tests can not have any non-lifetime generic parameters",
577 ));
578 }
579
580 Ok(())
581}
582
583fn check_bench_signature(
584 cx: &ExtCtxt<'_>,
585 i: &ast::Item,
586 f: &ast::Fn,
587) -> Result<(), ErrorGuaranteed> {
588 if f.sig.decl.inputs.len() != 1 {
591 return Err(cx.dcx().emit_err(diagnostics::BenchSig { span: i.span }));
592 }
593 Ok(())
594}