1 //===----- unittests/ErrorTest.cpp - Error.h tests ------------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 
10 #include "llvm/Support/Error.h"
11 #include "llvm-c/Error.h"
12 
13 #include "llvm/ADT/Twine.h"
14 #include "llvm/Support/Errc.h"
15 #include "llvm/Support/ErrorHandling.h"
16 #include "llvm/Testing/Support/Error.h"
17 #include "gtest/gtest-spi.h"
18 #include "gtest/gtest.h"
19 #include <memory>
20 
21 using namespace llvm;
22 
23 namespace {
24 
25 // Custom error class with a default base class and some random 'info' attached.
26 class CustomError : public ErrorInfo<CustomError> {
27 public:
28   // Create an error with some info attached.
29   CustomError(int Info) : Info(Info) {}
30 
31   // Get the info attached to this error.
32   int getInfo() const { return Info; }
33 
34   // Log this error to a stream.
35   void log(raw_ostream &OS) const override {
36     OS << "CustomError {" << getInfo() << "}";
37   }
38 
39   std::error_code convertToErrorCode() const override {
40     llvm_unreachable("CustomError doesn't support ECError conversion");
41   }
42 
43   // Used by ErrorInfo::classID.
44   static char ID;
45 
46 protected:
47   // This error is subclassed below, but we can't use inheriting constructors
48   // yet, so we can't propagate the constructors through ErrorInfo. Instead
49   // we have to have a default constructor and have the subclass initialize all
50   // fields.
51   CustomError() : Info(0) {}
52 
53   int Info;
54 };
55 
56 char CustomError::ID = 0;
57 
58 // Custom error class with a custom base class and some additional random
59 // 'info'.
60 class CustomSubError : public ErrorInfo<CustomSubError, CustomError> {
61 public:
62   // Create a sub-error with some info attached.
63   CustomSubError(int Info, int ExtraInfo) : ExtraInfo(ExtraInfo) {
64     this->Info = Info;
65   }
66 
67   // Get the extra info attached to this error.
68   int getExtraInfo() const { return ExtraInfo; }
69 
70   // Log this error to a stream.
71   void log(raw_ostream &OS) const override {
72     OS << "CustomSubError { " << getInfo() << ", " << getExtraInfo() << "}";
73   }
74 
75   std::error_code convertToErrorCode() const override {
76     llvm_unreachable("CustomSubError doesn't support ECError conversion");
77   }
78 
79   // Used by ErrorInfo::classID.
80   static char ID;
81 
82 protected:
83   int ExtraInfo;
84 };
85 
86 char CustomSubError::ID = 0;
87 
88 static Error handleCustomError(const CustomError &CE) {
89   return Error::success();
90 }
91 
92 static void handleCustomErrorVoid(const CustomError &CE) {}
93 
94 static Error handleCustomErrorUP(std::unique_ptr<CustomError> CE) {
95   return Error::success();
96 }
97 
98 static void handleCustomErrorUPVoid(std::unique_ptr<CustomError> CE) {}
99 
100 // Test that success values implicitly convert to false, and don't cause crashes
101 // once they've been implicitly converted.
102 TEST(Error, CheckedSuccess) {
103   Error E = Error::success();
104   EXPECT_FALSE(E) << "Unexpected error while testing Error 'Success'";
105 }
106 
107 // Test that unchecked succes values cause an abort.
108 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
109 TEST(Error, UncheckedSuccess) {
110   EXPECT_DEATH({ Error E = Error::success(); },
111                "Program aborted due to an unhandled Error:")
112       << "Unchecked Error Succes value did not cause abort()";
113 }
114 #endif
115 
116 // ErrorAsOutParameter tester.
117 void errAsOutParamHelper(Error &Err) {
118   ErrorAsOutParameter ErrAsOutParam(&Err);
119   // Verify that checked flag is raised - assignment should not crash.
120   Err = Error::success();
121   // Raise the checked bit manually - caller should still have to test the
122   // error.
123   (void)!!Err;
124 }
125 
126 // Test that ErrorAsOutParameter sets the checked flag on construction.
127 TEST(Error, ErrorAsOutParameterChecked) {
128   Error E = Error::success();
129   errAsOutParamHelper(E);
130   (void)!!E;
131 }
132 
133 // Test that ErrorAsOutParameter clears the checked flag on destruction.
134 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
135 TEST(Error, ErrorAsOutParameterUnchecked) {
136   EXPECT_DEATH({ Error E = Error::success(); errAsOutParamHelper(E); },
137                "Program aborted due to an unhandled Error:")
138       << "ErrorAsOutParameter did not clear the checked flag on destruction.";
139 }
140 #endif
141 
142 // Check that we abort on unhandled failure cases. (Force conversion to bool
143 // to make sure that we don't accidentally treat checked errors as handled).
144 // Test runs in debug mode only.
145 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
146 TEST(Error, UncheckedError) {
147   auto DropUnhandledError = []() {
148     Error E = make_error<CustomError>(42);
149     (void)!E;
150   };
151   EXPECT_DEATH(DropUnhandledError(),
152                "Program aborted due to an unhandled Error:")
153       << "Unhandled Error failure value did not cause abort()";
154 }
155 #endif
156 
157 // Check 'Error::isA<T>' method handling.
158 TEST(Error, IsAHandling) {
159   // Check 'isA' handling.
160   Error E = make_error<CustomError>(1);
161   Error F = make_error<CustomSubError>(1, 2);
162   Error G = Error::success();
163 
164   EXPECT_TRUE(E.isA<CustomError>());
165   EXPECT_FALSE(E.isA<CustomSubError>());
166   EXPECT_TRUE(F.isA<CustomError>());
167   EXPECT_TRUE(F.isA<CustomSubError>());
168   EXPECT_FALSE(G.isA<CustomError>());
169 
170   consumeError(std::move(E));
171   consumeError(std::move(F));
172   consumeError(std::move(G));
173 }
174 
175 // Check that we can handle a custom error.
176 TEST(Error, HandleCustomError) {
177   int CaughtErrorInfo = 0;
178   handleAllErrors(make_error<CustomError>(42), [&](const CustomError &CE) {
179     CaughtErrorInfo = CE.getInfo();
180   });
181 
182   EXPECT_TRUE(CaughtErrorInfo == 42) << "Wrong result from CustomError handler";
183 }
184 
185 // Check that handler type deduction also works for handlers
186 // of the following types:
187 // void (const Err&)
188 // Error (const Err&) mutable
189 // void (const Err&) mutable
190 // Error (Err&)
191 // void (Err&)
192 // Error (Err&) mutable
193 // void (Err&) mutable
194 // Error (unique_ptr<Err>)
195 // void (unique_ptr<Err>)
196 // Error (unique_ptr<Err>) mutable
197 // void (unique_ptr<Err>) mutable
198 TEST(Error, HandlerTypeDeduction) {
199 
200   handleAllErrors(make_error<CustomError>(42), [](const CustomError &CE) {});
201 
202   handleAllErrors(
203       make_error<CustomError>(42),
204       [](const CustomError &CE) mutable  -> Error { return Error::success(); });
205 
206   handleAllErrors(make_error<CustomError>(42),
207                   [](const CustomError &CE) mutable {});
208 
209   handleAllErrors(make_error<CustomError>(42),
210                   [](CustomError &CE) -> Error { return Error::success(); });
211 
212   handleAllErrors(make_error<CustomError>(42), [](CustomError &CE) {});
213 
214   handleAllErrors(make_error<CustomError>(42),
215                   [](CustomError &CE) mutable -> Error { return Error::success(); });
216 
217   handleAllErrors(make_error<CustomError>(42), [](CustomError &CE) mutable {});
218 
219   handleAllErrors(
220       make_error<CustomError>(42),
221       [](std::unique_ptr<CustomError> CE) -> Error { return Error::success(); });
222 
223   handleAllErrors(make_error<CustomError>(42),
224                   [](std::unique_ptr<CustomError> CE) {});
225 
226   handleAllErrors(
227       make_error<CustomError>(42),
228       [](std::unique_ptr<CustomError> CE) mutable -> Error { return Error::success(); });
229 
230   handleAllErrors(make_error<CustomError>(42),
231                   [](std::unique_ptr<CustomError> CE) mutable {});
232 
233   // Check that named handlers of type 'Error (const Err&)' work.
234   handleAllErrors(make_error<CustomError>(42), handleCustomError);
235 
236   // Check that named handlers of type 'void (const Err&)' work.
237   handleAllErrors(make_error<CustomError>(42), handleCustomErrorVoid);
238 
239   // Check that named handlers of type 'Error (std::unique_ptr<Err>)' work.
240   handleAllErrors(make_error<CustomError>(42), handleCustomErrorUP);
241 
242   // Check that named handlers of type 'Error (std::unique_ptr<Err>)' work.
243   handleAllErrors(make_error<CustomError>(42), handleCustomErrorUPVoid);
244 }
245 
246 // Test that we can handle errors with custom base classes.
247 TEST(Error, HandleCustomErrorWithCustomBaseClass) {
248   int CaughtErrorInfo = 0;
249   int CaughtErrorExtraInfo = 0;
250   handleAllErrors(make_error<CustomSubError>(42, 7),
251                   [&](const CustomSubError &SE) {
252                     CaughtErrorInfo = SE.getInfo();
253                     CaughtErrorExtraInfo = SE.getExtraInfo();
254                   });
255 
256   EXPECT_TRUE(CaughtErrorInfo == 42 && CaughtErrorExtraInfo == 7)
257       << "Wrong result from CustomSubError handler";
258 }
259 
260 // Check that we trigger only the first handler that applies.
261 TEST(Error, FirstHandlerOnly) {
262   int DummyInfo = 0;
263   int CaughtErrorInfo = 0;
264   int CaughtErrorExtraInfo = 0;
265 
266   handleAllErrors(make_error<CustomSubError>(42, 7),
267                   [&](const CustomSubError &SE) {
268                     CaughtErrorInfo = SE.getInfo();
269                     CaughtErrorExtraInfo = SE.getExtraInfo();
270                   },
271                   [&](const CustomError &CE) { DummyInfo = CE.getInfo(); });
272 
273   EXPECT_TRUE(CaughtErrorInfo == 42 && CaughtErrorExtraInfo == 7 &&
274               DummyInfo == 0)
275       << "Activated the wrong Error handler(s)";
276 }
277 
278 // Check that general handlers shadow specific ones.
279 TEST(Error, HandlerShadowing) {
280   int CaughtErrorInfo = 0;
281   int DummyInfo = 0;
282   int DummyExtraInfo = 0;
283 
284   handleAllErrors(
285       make_error<CustomSubError>(42, 7),
286       [&](const CustomError &CE) { CaughtErrorInfo = CE.getInfo(); },
287       [&](const CustomSubError &SE) {
288         DummyInfo = SE.getInfo();
289         DummyExtraInfo = SE.getExtraInfo();
290       });
291 
292   EXPECT_TRUE(CaughtErrorInfo == 42 && DummyInfo == 0 && DummyExtraInfo == 0)
293       << "General Error handler did not shadow specific handler";
294 }
295 
296 // Test joinErrors.
297 TEST(Error, CheckJoinErrors) {
298   int CustomErrorInfo1 = 0;
299   int CustomErrorInfo2 = 0;
300   int CustomErrorExtraInfo = 0;
301   Error E =
302       joinErrors(make_error<CustomError>(7), make_error<CustomSubError>(42, 7));
303 
304   handleAllErrors(std::move(E),
305                   [&](const CustomSubError &SE) {
306                     CustomErrorInfo2 = SE.getInfo();
307                     CustomErrorExtraInfo = SE.getExtraInfo();
308                   },
309                   [&](const CustomError &CE) {
310                     // Assert that the CustomError instance above is handled
311                     // before the
312                     // CustomSubError - joinErrors should preserve error
313                     // ordering.
314                     EXPECT_EQ(CustomErrorInfo2, 0)
315                         << "CustomErrorInfo2 should be 0 here. "
316                            "joinErrors failed to preserve ordering.\n";
317                     CustomErrorInfo1 = CE.getInfo();
318                   });
319 
320   EXPECT_TRUE(CustomErrorInfo1 == 7 && CustomErrorInfo2 == 42 &&
321               CustomErrorExtraInfo == 7)
322       << "Failed handling compound Error.";
323 
324   // Test appending a single item to a list.
325   {
326     int Sum = 0;
327     handleAllErrors(
328         joinErrors(
329             joinErrors(make_error<CustomError>(7),
330                        make_error<CustomError>(7)),
331             make_error<CustomError>(7)),
332         [&](const CustomError &CE) {
333           Sum += CE.getInfo();
334         });
335     EXPECT_EQ(Sum, 21) << "Failed to correctly append error to error list.";
336   }
337 
338   // Test prepending a single item to a list.
339   {
340     int Sum = 0;
341     handleAllErrors(
342         joinErrors(
343             make_error<CustomError>(7),
344             joinErrors(make_error<CustomError>(7),
345                        make_error<CustomError>(7))),
346         [&](const CustomError &CE) {
347           Sum += CE.getInfo();
348         });
349     EXPECT_EQ(Sum, 21) << "Failed to correctly prepend error to error list.";
350   }
351 
352   // Test concatenating two error lists.
353   {
354     int Sum = 0;
355     handleAllErrors(
356         joinErrors(
357             joinErrors(
358                 make_error<CustomError>(7),
359                 make_error<CustomError>(7)),
360             joinErrors(
361                 make_error<CustomError>(7),
362                 make_error<CustomError>(7))),
363         [&](const CustomError &CE) {
364           Sum += CE.getInfo();
365         });
366     EXPECT_EQ(Sum, 28) << "Failed to correctly concatenate error lists.";
367   }
368 }
369 
370 // Test that we can consume success values.
371 TEST(Error, ConsumeSuccess) {
372   Error E = Error::success();
373   consumeError(std::move(E));
374 }
375 
376 TEST(Error, ConsumeError) {
377   Error E = make_error<CustomError>(7);
378   consumeError(std::move(E));
379 }
380 
381 // Test that handleAllUnhandledErrors crashes if an error is not caught.
382 // Test runs in debug mode only.
383 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
384 TEST(Error, FailureToHandle) {
385   auto FailToHandle = []() {
386     handleAllErrors(make_error<CustomError>(7), [&](const CustomSubError &SE) {
387       errs() << "This should never be called";
388       exit(1);
389     });
390   };
391 
392   EXPECT_DEATH(FailToHandle(),
393                "Failure value returned from cantFail wrapped call")
394       << "Unhandled Error in handleAllErrors call did not cause an "
395          "abort()";
396 }
397 #endif
398 
399 // Test that handleAllUnhandledErrors crashes if an error is returned from a
400 // handler.
401 // Test runs in debug mode only.
402 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
403 TEST(Error, FailureFromHandler) {
404   auto ReturnErrorFromHandler = []() {
405     handleAllErrors(make_error<CustomError>(7),
406                     [&](std::unique_ptr<CustomSubError> SE) {
407                       return Error(std::move(SE));
408                     });
409   };
410 
411   EXPECT_DEATH(ReturnErrorFromHandler(),
412                "Failure value returned from cantFail wrapped call")
413       << " Error returned from handler in handleAllErrors call did not "
414          "cause abort()";
415 }
416 #endif
417 
418 // Test that we can return values from handleErrors.
419 TEST(Error, CatchErrorFromHandler) {
420   int ErrorInfo = 0;
421 
422   Error E = handleErrors(
423       make_error<CustomError>(7),
424       [&](std::unique_ptr<CustomError> CE) { return Error(std::move(CE)); });
425 
426   handleAllErrors(std::move(E),
427                   [&](const CustomError &CE) { ErrorInfo = CE.getInfo(); });
428 
429   EXPECT_EQ(ErrorInfo, 7)
430       << "Failed to handle Error returned from handleErrors.";
431 }
432 
433 TEST(Error, StringError) {
434   std::string Msg;
435   raw_string_ostream S(Msg);
436   logAllUnhandledErrors(make_error<StringError>("foo" + Twine(42),
437                                                 inconvertibleErrorCode()),
438                         S, "");
439   EXPECT_EQ(S.str(), "foo42\n") << "Unexpected StringError log result";
440 
441   auto EC =
442     errorToErrorCode(make_error<StringError>("", errc::invalid_argument));
443   EXPECT_EQ(EC, errc::invalid_argument)
444     << "Failed to convert StringError to error_code.";
445 }
446 
447 TEST(Error, createStringError) {
448   static const char *Bar = "bar";
449   static const std::error_code EC = errc::invalid_argument;
450   std::string Msg;
451   raw_string_ostream S(Msg);
452   logAllUnhandledErrors(createStringError(EC, "foo%s%d0x%" PRIx8, Bar, 1, 0xff),
453                         S, "");
454   EXPECT_EQ(S.str(), "foobar10xff\n")
455     << "Unexpected createStringError() log result";
456 
457   S.flush();
458   Msg.clear();
459   logAllUnhandledErrors(createStringError(EC, Bar), S, "");
460   EXPECT_EQ(S.str(), "bar\n")
461     << "Unexpected createStringError() (overloaded) log result";
462 
463   S.flush();
464   Msg.clear();
465   auto Res = errorToErrorCode(createStringError(EC, "foo%s", Bar));
466   EXPECT_EQ(Res, EC)
467     << "Failed to convert createStringError() result to error_code.";
468 }
469 
470 // Test that the ExitOnError utility works as expected.
471 TEST(Error, ExitOnError) {
472   ExitOnError ExitOnErr;
473   ExitOnErr.setBanner("Error in tool:");
474   ExitOnErr.setExitCodeMapper([](const Error &E) {
475     if (E.isA<CustomSubError>())
476       return 2;
477     return 1;
478   });
479 
480   // Make sure we don't bail on success.
481   ExitOnErr(Error::success());
482   EXPECT_EQ(ExitOnErr(Expected<int>(7)), 7)
483       << "exitOnError returned an invalid value for Expected";
484 
485   int A = 7;
486   int &B = ExitOnErr(Expected<int&>(A));
487   EXPECT_EQ(&A, &B) << "ExitOnError failed to propagate reference";
488 
489   // Exit tests.
490   EXPECT_EXIT(ExitOnErr(make_error<CustomError>(7)),
491               ::testing::ExitedWithCode(1), "Error in tool:")
492       << "exitOnError returned an unexpected error result";
493 
494   EXPECT_EXIT(ExitOnErr(Expected<int>(make_error<CustomSubError>(0, 0))),
495               ::testing::ExitedWithCode(2), "Error in tool:")
496       << "exitOnError returned an unexpected error result";
497 }
498 
499 // Test that the ExitOnError utility works as expected.
500 TEST(Error, CantFailSuccess) {
501   cantFail(Error::success());
502 
503   int X = cantFail(Expected<int>(42));
504   EXPECT_EQ(X, 42) << "Expected value modified by cantFail";
505 
506   int Dummy = 42;
507   int &Y = cantFail(Expected<int&>(Dummy));
508   EXPECT_EQ(&Dummy, &Y) << "Reference mangled by cantFail";
509 }
510 
511 // Test that cantFail results in a crash if you pass it a failure value.
512 #if LLVM_ENABLE_ABI_BREAKING_CHECKS && !defined(NDEBUG)
513 TEST(Error, CantFailDeath) {
514   EXPECT_DEATH(
515       cantFail(make_error<StringError>("foo", inconvertibleErrorCode()),
516                "Cantfail call failed"),
517       "Cantfail call failed")
518     << "cantFail(Error) did not cause an abort for failure value";
519 
520   EXPECT_DEATH(
521       {
522         auto IEC = inconvertibleErrorCode();
523         int X = cantFail(Expected<int>(make_error<StringError>("foo", IEC)));
524         (void)X;
525       },
526       "Failure value returned from cantFail wrapped call")
527     << "cantFail(Expected<int>) did not cause an abort for failure value";
528 }
529 #endif
530 
531 
532 // Test Checked Expected<T> in success mode.
533 TEST(Error, CheckedExpectedInSuccessMode) {
534   Expected<int> A = 7;
535   EXPECT_TRUE(!!A) << "Expected with non-error value doesn't convert to 'true'";
536   // Access is safe in second test, since we checked the error in the first.
537   EXPECT_EQ(*A, 7) << "Incorrect Expected non-error value";
538 }
539 
540 // Test Expected with reference type.
541 TEST(Error, ExpectedWithReferenceType) {
542   int A = 7;
543   Expected<int&> B = A;
544   // 'Check' B.
545   (void)!!B;
546   int &C = *B;
547   EXPECT_EQ(&A, &C) << "Expected failed to propagate reference";
548 }
549 
550 // Test Unchecked Expected<T> in success mode.
551 // We expect this to blow up the same way Error would.
552 // Test runs in debug mode only.
553 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
554 TEST(Error, UncheckedExpectedInSuccessModeDestruction) {
555   EXPECT_DEATH({ Expected<int> A = 7; },
556                "Expected<T> must be checked before access or destruction.")
557     << "Unchecekd Expected<T> success value did not cause an abort().";
558 }
559 #endif
560 
561 // Test Unchecked Expected<T> in success mode.
562 // We expect this to blow up the same way Error would.
563 // Test runs in debug mode only.
564 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
565 TEST(Error, UncheckedExpectedInSuccessModeAccess) {
566   EXPECT_DEATH({ Expected<int> A = 7; *A; },
567                "Expected<T> must be checked before access or destruction.")
568     << "Unchecekd Expected<T> success value did not cause an abort().";
569 }
570 #endif
571 
572 // Test Unchecked Expected<T> in success mode.
573 // We expect this to blow up the same way Error would.
574 // Test runs in debug mode only.
575 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
576 TEST(Error, UncheckedExpectedInSuccessModeAssignment) {
577   EXPECT_DEATH({ Expected<int> A = 7; A = 7; },
578                "Expected<T> must be checked before access or destruction.")
579     << "Unchecekd Expected<T> success value did not cause an abort().";
580 }
581 #endif
582 
583 // Test Expected<T> in failure mode.
584 TEST(Error, ExpectedInFailureMode) {
585   Expected<int> A = make_error<CustomError>(42);
586   EXPECT_FALSE(!!A) << "Expected with error value doesn't convert to 'false'";
587   Error E = A.takeError();
588   EXPECT_TRUE(E.isA<CustomError>()) << "Incorrect Expected error value";
589   consumeError(std::move(E));
590 }
591 
592 // Check that an Expected instance with an error value doesn't allow access to
593 // operator*.
594 // Test runs in debug mode only.
595 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
596 TEST(Error, AccessExpectedInFailureMode) {
597   Expected<int> A = make_error<CustomError>(42);
598   EXPECT_DEATH(*A, "Expected<T> must be checked before access or destruction.")
599       << "Incorrect Expected error value";
600   consumeError(A.takeError());
601 }
602 #endif
603 
604 // Check that an Expected instance with an error triggers an abort if
605 // unhandled.
606 // Test runs in debug mode only.
607 #if LLVM_ENABLE_ABI_BREAKING_CHECKS
608 TEST(Error, UnhandledExpectedInFailureMode) {
609   EXPECT_DEATH({ Expected<int> A = make_error<CustomError>(42); },
610                "Expected<T> must be checked before access or destruction.")
611       << "Unchecked Expected<T> failure value did not cause an abort()";
612 }
613 #endif
614 
615 // Test covariance of Expected.
616 TEST(Error, ExpectedCovariance) {
617   class B {};
618   class D : public B {};
619 
620   Expected<B *> A1(Expected<D *>(nullptr));
621   // Check A1 by converting to bool before assigning to it.
622   (void)!!A1;
623   A1 = Expected<D *>(nullptr);
624   // Check A1 again before destruction.
625   (void)!!A1;
626 
627   Expected<std::unique_ptr<B>> A2(Expected<std::unique_ptr<D>>(nullptr));
628   // Check A2 by converting to bool before assigning to it.
629   (void)!!A2;
630   A2 = Expected<std::unique_ptr<D>>(nullptr);
631   // Check A2 again before destruction.
632   (void)!!A2;
633 }
634 
635 // Test that handleExpected just returns success values.
636 TEST(Error, HandleExpectedSuccess) {
637   auto ValOrErr =
638     handleExpected(Expected<int>(42),
639                    []() { return Expected<int>(43); });
640   EXPECT_TRUE(!!ValOrErr)
641     << "handleExpected should have returned a success value here";
642   EXPECT_EQ(*ValOrErr, 42)
643     << "handleExpected should have returned the original success value here";
644 }
645 
646 enum FooStrategy { Aggressive, Conservative };
647 
648 static Expected<int> foo(FooStrategy S) {
649   if (S == Aggressive)
650     return make_error<CustomError>(7);
651   return 42;
652 }
653 
654 // Test that handleExpected invokes the error path if errors are not handled.
655 TEST(Error, HandleExpectedUnhandledError) {
656   // foo(Aggressive) should return a CustomError which should pass through as
657   // there is no handler for CustomError.
658   auto ValOrErr =
659     handleExpected(
660       foo(Aggressive),
661       []() { return foo(Conservative); });
662 
663   EXPECT_FALSE(!!ValOrErr)
664     << "handleExpected should have returned an error here";
665   auto Err = ValOrErr.takeError();
666   EXPECT_TRUE(Err.isA<CustomError>())
667     << "handleExpected should have returned the CustomError generated by "
668     "foo(Aggressive) here";
669   consumeError(std::move(Err));
670 }
671 
672 // Test that handleExpected invokes the fallback path if errors are handled.
673 TEST(Error, HandleExpectedHandledError) {
674   // foo(Aggressive) should return a CustomError which should handle triggering
675   // the fallback path.
676   auto ValOrErr =
677     handleExpected(
678       foo(Aggressive),
679       []() { return foo(Conservative); },
680       [](const CustomError&) { /* do nothing */ });
681 
682   EXPECT_TRUE(!!ValOrErr)
683     << "handleExpected should have returned a success value here";
684   EXPECT_EQ(*ValOrErr, 42)
685     << "handleExpected returned the wrong success value";
686 }
687 
688 TEST(Error, ErrorCodeConversions) {
689   // Round-trip a success value to check that it converts correctly.
690   EXPECT_EQ(errorToErrorCode(errorCodeToError(std::error_code())),
691             std::error_code())
692       << "std::error_code() should round-trip via Error conversions";
693 
694   // Round-trip an error value to check that it converts correctly.
695   EXPECT_EQ(errorToErrorCode(errorCodeToError(errc::invalid_argument)),
696             errc::invalid_argument)
697       << "std::error_code error value should round-trip via Error "
698          "conversions";
699 
700   // Round-trip a success value through ErrorOr/Expected to check that it
701   // converts correctly.
702   {
703     auto Orig = ErrorOr<int>(42);
704     auto RoundTripped =
705       expectedToErrorOr(errorOrToExpected(ErrorOr<int>(42)));
706     EXPECT_EQ(*Orig, *RoundTripped)
707       << "ErrorOr<T> success value should round-trip via Expected<T> "
708          "conversions.";
709   }
710 
711   // Round-trip a failure value through ErrorOr/Expected to check that it
712   // converts correctly.
713   {
714     auto Orig = ErrorOr<int>(errc::invalid_argument);
715     auto RoundTripped =
716       expectedToErrorOr(
717           errorOrToExpected(ErrorOr<int>(errc::invalid_argument)));
718     EXPECT_EQ(Orig.getError(), RoundTripped.getError())
719       << "ErrorOr<T> failure value should round-trip via Expected<T> "
720          "conversions.";
721   }
722 }
723 
724 // Test that error messages work.
725 TEST(Error, ErrorMessage) {
726   EXPECT_EQ(toString(Error::success()).compare(""), 0);
727 
728   Error E1 = make_error<CustomError>(0);
729   EXPECT_EQ(toString(std::move(E1)).compare("CustomError {0}"), 0);
730 
731   Error E2 = make_error<CustomError>(0);
732   handleAllErrors(std::move(E2), [](const CustomError &CE) {
733     EXPECT_EQ(CE.message().compare("CustomError {0}"), 0);
734   });
735 
736   Error E3 = joinErrors(make_error<CustomError>(0), make_error<CustomError>(1));
737   EXPECT_EQ(toString(std::move(E3))
738                 .compare("CustomError {0}\n"
739                          "CustomError {1}"),
740             0);
741 }
742 
743 TEST(Error, Stream) {
744   {
745     Error OK = Error::success();
746     std::string Buf;
747     llvm::raw_string_ostream S(Buf);
748     S << OK;
749     EXPECT_EQ("success", S.str());
750     consumeError(std::move(OK));
751   }
752   {
753     Error E1 = make_error<CustomError>(0);
754     std::string Buf;
755     llvm::raw_string_ostream S(Buf);
756     S << E1;
757     EXPECT_EQ("CustomError {0}", S.str());
758     consumeError(std::move(E1));
759   }
760 }
761 
762 TEST(Error, ErrorMatchers) {
763   EXPECT_THAT_ERROR(Error::success(), Succeeded());
764   EXPECT_NONFATAL_FAILURE(
765       EXPECT_THAT_ERROR(make_error<CustomError>(0), Succeeded()),
766       "Expected: succeeded\n  Actual: failed  (CustomError {0})");
767 
768   EXPECT_THAT_ERROR(make_error<CustomError>(0), Failed());
769   EXPECT_NONFATAL_FAILURE(EXPECT_THAT_ERROR(Error::success(), Failed()),
770                           "Expected: failed\n  Actual: succeeded");
771 
772   EXPECT_THAT_ERROR(make_error<CustomError>(0), Failed<CustomError>());
773   EXPECT_NONFATAL_FAILURE(
774       EXPECT_THAT_ERROR(Error::success(), Failed<CustomError>()),
775       "Expected: failed with Error of given type\n  Actual: succeeded");
776   EXPECT_NONFATAL_FAILURE(
777       EXPECT_THAT_ERROR(make_error<CustomError>(0), Failed<CustomSubError>()),
778       "Error was not of given type");
779   EXPECT_NONFATAL_FAILURE(
780       EXPECT_THAT_ERROR(
781           joinErrors(make_error<CustomError>(0), make_error<CustomError>(1)),
782           Failed<CustomError>()),
783       "multiple errors");
784 
785   EXPECT_THAT_ERROR(
786       make_error<CustomError>(0),
787       Failed<CustomError>(testing::Property(&CustomError::getInfo, 0)));
788   EXPECT_NONFATAL_FAILURE(
789       EXPECT_THAT_ERROR(
790           make_error<CustomError>(0),
791           Failed<CustomError>(testing::Property(&CustomError::getInfo, 1))),
792       "Expected: failed with Error of given type and the error is an object "
793       "whose given property is equal to 1\n"
794       "  Actual: failed  (CustomError {0})");
795   EXPECT_THAT_ERROR(make_error<CustomError>(0), Failed<ErrorInfoBase>());
796 
797   EXPECT_THAT_EXPECTED(Expected<int>(0), Succeeded());
798   EXPECT_NONFATAL_FAILURE(
799       EXPECT_THAT_EXPECTED(Expected<int>(make_error<CustomError>(0)),
800                            Succeeded()),
801       "Expected: succeeded\n  Actual: failed  (CustomError {0})");
802 
803   EXPECT_THAT_EXPECTED(Expected<int>(make_error<CustomError>(0)), Failed());
804   EXPECT_NONFATAL_FAILURE(
805       EXPECT_THAT_EXPECTED(Expected<int>(0), Failed()),
806       "Expected: failed\n  Actual: succeeded with value 0");
807 
808   EXPECT_THAT_EXPECTED(Expected<int>(0), HasValue(0));
809   EXPECT_NONFATAL_FAILURE(
810       EXPECT_THAT_EXPECTED(Expected<int>(make_error<CustomError>(0)),
811                            HasValue(0)),
812       "Expected: succeeded with value (is equal to 0)\n"
813       "  Actual: failed  (CustomError {0})");
814   EXPECT_NONFATAL_FAILURE(
815       EXPECT_THAT_EXPECTED(Expected<int>(1), HasValue(0)),
816       "Expected: succeeded with value (is equal to 0)\n"
817       "  Actual: succeeded with value 1, (isn't equal to 0)");
818 
819   EXPECT_THAT_EXPECTED(Expected<int &>(make_error<CustomError>(0)), Failed());
820   int a = 1;
821   EXPECT_THAT_EXPECTED(Expected<int &>(a), Succeeded());
822   EXPECT_THAT_EXPECTED(Expected<int &>(a), HasValue(testing::Eq(1)));
823 
824   EXPECT_THAT_EXPECTED(Expected<int>(1), HasValue(testing::Gt(0)));
825   EXPECT_NONFATAL_FAILURE(
826       EXPECT_THAT_EXPECTED(Expected<int>(0), HasValue(testing::Gt(1))),
827       "Expected: succeeded with value (is > 1)\n"
828       "  Actual: succeeded with value 0, (isn't > 1)");
829   EXPECT_NONFATAL_FAILURE(
830       EXPECT_THAT_EXPECTED(Expected<int>(make_error<CustomError>(0)),
831                            HasValue(testing::Gt(1))),
832       "Expected: succeeded with value (is > 1)\n"
833       "  Actual: failed  (CustomError {0})");
834 }
835 
836 TEST(Error, C_API) {
837   EXPECT_THAT_ERROR(unwrap(wrap(Error::success())), Succeeded())
838       << "Failed to round-trip Error success value via C API";
839   EXPECT_THAT_ERROR(unwrap(wrap(make_error<CustomError>(0))),
840                     Failed<CustomError>())
841       << "Failed to round-trip Error failure value via C API";
842 
843   auto Err =
844       wrap(make_error<StringError>("test message", inconvertibleErrorCode()));
845   EXPECT_EQ(LLVMGetErrorTypeId(Err), LLVMGetStringErrorTypeId())
846       << "Failed to match error type ids via C API";
847   char *ErrMsg = LLVMGetErrorMessage(Err);
848   EXPECT_STREQ(ErrMsg, "test message")
849       << "Failed to roundtrip StringError error message via C API";
850   LLVMDisposeErrorMessage(ErrMsg);
851 
852   bool GotCSE = false;
853   bool GotCE = false;
854   handleAllErrors(
855     unwrap(wrap(joinErrors(make_error<CustomSubError>(42, 7),
856                            make_error<CustomError>(42)))),
857     [&](CustomSubError &CSE) {
858       GotCSE = true;
859     },
860     [&](CustomError &CE) {
861       GotCE = true;
862     });
863   EXPECT_TRUE(GotCSE) << "Failed to round-trip ErrorList via C API";
864   EXPECT_TRUE(GotCE) << "Failed to round-trip ErrorList via C API";
865 }
866 
867 } // end anon namespace
868