1 //===- unittest/ProfileData/CoverageMappingTest.cpp -------------------------=//
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/ProfileData/Coverage/CoverageMapping.h"
11 #include "llvm/ProfileData/Coverage/CoverageMappingReader.h"
12 #include "llvm/ProfileData/Coverage/CoverageMappingWriter.h"
13 #include "llvm/ProfileData/InstrProfReader.h"
14 #include "llvm/ProfileData/InstrProfWriter.h"
15 #include "llvm/Support/raw_ostream.h"
16 #include "llvm/Testing/Support/Error.h"
17 #include "llvm/Testing/Support/SupportHelpers.h"
18 #include "gtest/gtest.h"
19 
20 #include <ostream>
21 #include <utility>
22 
23 using namespace llvm;
24 using namespace coverage;
25 
26 LLVM_NODISCARD static ::testing::AssertionResult
ErrorEquals(coveragemap_error Expected,Error E)27 ErrorEquals(coveragemap_error Expected, Error E) {
28   coveragemap_error Found;
29   std::string FoundMsg;
30   handleAllErrors(std::move(E), [&](const CoverageMapError &CME) {
31     Found = CME.get();
32     FoundMsg = CME.message();
33   });
34   if (Expected == Found)
35     return ::testing::AssertionSuccess();
36   return ::testing::AssertionFailure() << "error: " << FoundMsg << "\n";
37 }
38 
39 namespace llvm {
40 namespace coverage {
PrintTo(const Counter & C,::std::ostream * os)41 void PrintTo(const Counter &C, ::std::ostream *os) {
42   if (C.isZero())
43     *os << "Zero";
44   else if (C.isExpression())
45     *os << "Expression " << C.getExpressionID();
46   else
47     *os << "Counter " << C.getCounterID();
48 }
49 
PrintTo(const CoverageSegment & S,::std::ostream * os)50 void PrintTo(const CoverageSegment &S, ::std::ostream *os) {
51   *os << "CoverageSegment(" << S.Line << ", " << S.Col << ", ";
52   if (S.HasCount)
53     *os << S.Count << ", ";
54   *os << (S.IsRegionEntry ? "true" : "false") << ")";
55 }
56 }
57 }
58 
59 namespace {
60 
61 struct OutputFunctionCoverageData {
62   StringRef Name;
63   uint64_t Hash;
64   std::vector<StringRef> Filenames;
65   std::vector<CounterMappingRegion> Regions;
66 
OutputFunctionCoverageData__anonea70ae220211::OutputFunctionCoverageData67   OutputFunctionCoverageData() : Hash(0) {}
68 
OutputFunctionCoverageData__anonea70ae220211::OutputFunctionCoverageData69   OutputFunctionCoverageData(OutputFunctionCoverageData &&OFCD)
70       : Name(OFCD.Name), Hash(OFCD.Hash), Filenames(std::move(OFCD.Filenames)),
71         Regions(std::move(OFCD.Regions)) {}
72 
73   OutputFunctionCoverageData(const OutputFunctionCoverageData &) = delete;
74   OutputFunctionCoverageData &
75   operator=(const OutputFunctionCoverageData &) = delete;
76   OutputFunctionCoverageData &operator=(OutputFunctionCoverageData &&) = delete;
77 
fillCoverageMappingRecord__anonea70ae220211::OutputFunctionCoverageData78   void fillCoverageMappingRecord(CoverageMappingRecord &Record) const {
79     Record.FunctionName = Name;
80     Record.FunctionHash = Hash;
81     Record.Filenames = Filenames;
82     Record.Expressions = {};
83     Record.MappingRegions = Regions;
84   }
85 };
86 
87 struct CoverageMappingReaderMock : CoverageMappingReader {
88   ArrayRef<OutputFunctionCoverageData> Functions;
89 
CoverageMappingReaderMock__anonea70ae220211::CoverageMappingReaderMock90   CoverageMappingReaderMock(ArrayRef<OutputFunctionCoverageData> Functions)
91       : Functions(Functions) {}
92 
readNextRecord__anonea70ae220211::CoverageMappingReaderMock93   Error readNextRecord(CoverageMappingRecord &Record) override {
94     if (Functions.empty())
95       return make_error<CoverageMapError>(coveragemap_error::eof);
96 
97     Functions.front().fillCoverageMappingRecord(Record);
98     Functions = Functions.slice(1);
99 
100     return Error::success();
101   }
102 };
103 
104 struct InputFunctionCoverageData {
105   // Maps the global file index from CoverageMappingTest.Files
106   // to the index of that file within this function. We can't just use
107   // global file indexes here because local indexes have to be dense.
108   // This map is used during serialization to create the virtual file mapping
109   // (from local fileId to global Index) in the head of the per-function
110   // coverage mapping data.
111   SmallDenseMap<unsigned, unsigned> ReverseVirtualFileMapping;
112   std::string Name;
113   uint64_t Hash;
114   std::vector<CounterMappingRegion> Regions;
115 
InputFunctionCoverageData__anonea70ae220211::InputFunctionCoverageData116   InputFunctionCoverageData(std::string Name, uint64_t Hash)
117       : Name(std::move(Name)), Hash(Hash) {}
118 
InputFunctionCoverageData__anonea70ae220211::InputFunctionCoverageData119   InputFunctionCoverageData(InputFunctionCoverageData &&IFCD)
120       : ReverseVirtualFileMapping(std::move(IFCD.ReverseVirtualFileMapping)),
121         Name(std::move(IFCD.Name)), Hash(IFCD.Hash),
122         Regions(std::move(IFCD.Regions)) {}
123 
124   InputFunctionCoverageData(const InputFunctionCoverageData &) = delete;
125   InputFunctionCoverageData &
126   operator=(const InputFunctionCoverageData &) = delete;
127   InputFunctionCoverageData &operator=(InputFunctionCoverageData &&) = delete;
128 };
129 
130 struct CoverageMappingTest : ::testing::TestWithParam<std::pair<bool, bool>> {
131   bool UseMultipleReaders;
132   StringMap<unsigned> Files;
133   std::vector<InputFunctionCoverageData> InputFunctions;
134   std::vector<OutputFunctionCoverageData> OutputFunctions;
135 
136   InstrProfWriter ProfileWriter;
137   std::unique_ptr<IndexedInstrProfReader> ProfileReader;
138 
139   std::unique_ptr<CoverageMapping> LoadedCoverage;
140 
SetUp__anonea70ae220211::CoverageMappingTest141   void SetUp() override {
142     ProfileWriter.setOutputSparse(GetParam().first);
143     UseMultipleReaders = GetParam().second;
144   }
145 
getGlobalFileIndex__anonea70ae220211::CoverageMappingTest146   unsigned getGlobalFileIndex(StringRef Name) {
147     auto R = Files.find(Name);
148     if (R != Files.end())
149       return R->second;
150     unsigned Index = Files.size();
151     Files.try_emplace(Name, Index);
152     return Index;
153   }
154 
155   // Return the file index of file 'Name' for the current function.
156   // Add the file into the global map if necessary.
157   // See also InputFunctionCoverageData::ReverseVirtualFileMapping
158   // for additional comments.
getFileIndexForFunction__anonea70ae220211::CoverageMappingTest159   unsigned getFileIndexForFunction(StringRef Name) {
160     unsigned GlobalIndex = getGlobalFileIndex(Name);
161     auto &CurrentFunctionFileMapping =
162         InputFunctions.back().ReverseVirtualFileMapping;
163     auto R = CurrentFunctionFileMapping.find(GlobalIndex);
164     if (R != CurrentFunctionFileMapping.end())
165       return R->second;
166     unsigned IndexInFunction = CurrentFunctionFileMapping.size();
167     CurrentFunctionFileMapping.insert(
168         std::make_pair(GlobalIndex, IndexInFunction));
169     return IndexInFunction;
170   }
171 
startFunction__anonea70ae220211::CoverageMappingTest172   void startFunction(StringRef FuncName, uint64_t Hash) {
173     InputFunctions.emplace_back(FuncName.str(), Hash);
174   }
175 
addCMR__anonea70ae220211::CoverageMappingTest176   void addCMR(Counter C, StringRef File, unsigned LS, unsigned CS, unsigned LE,
177               unsigned CE, bool Skipped = false) {
178     auto &Regions = InputFunctions.back().Regions;
179     unsigned FileID = getFileIndexForFunction(File);
180     Regions.push_back(
181         Skipped ? CounterMappingRegion::makeSkipped(FileID, LS, CS, LE, CE)
182                 : CounterMappingRegion::makeRegion(C, FileID, LS, CS, LE, CE));
183   }
184 
addExpansionCMR__anonea70ae220211::CoverageMappingTest185   void addExpansionCMR(StringRef File, StringRef ExpandedFile, unsigned LS,
186                        unsigned CS, unsigned LE, unsigned CE) {
187     InputFunctions.back().Regions.push_back(CounterMappingRegion::makeExpansion(
188         getFileIndexForFunction(File), getFileIndexForFunction(ExpandedFile),
189         LS, CS, LE, CE));
190   }
191 
writeCoverageRegions__anonea70ae220211::CoverageMappingTest192   std::string writeCoverageRegions(InputFunctionCoverageData &Data) {
193     SmallVector<unsigned, 8> FileIDs(Data.ReverseVirtualFileMapping.size());
194     for (const auto &E : Data.ReverseVirtualFileMapping)
195       FileIDs[E.second] = E.first;
196     std::string Coverage;
197     llvm::raw_string_ostream OS(Coverage);
198     CoverageMappingWriter(FileIDs, None, Data.Regions).write(OS);
199     return OS.str();
200   }
201 
readCoverageRegions__anonea70ae220211::CoverageMappingTest202   void readCoverageRegions(const std::string &Coverage,
203                            OutputFunctionCoverageData &Data) {
204     SmallVector<StringRef, 8> Filenames(Files.size());
205     for (const auto &E : Files)
206       Filenames[E.getValue()] = E.getKey();
207     std::vector<CounterExpression> Expressions;
208     RawCoverageMappingReader Reader(Coverage, Filenames, Data.Filenames,
209                                     Expressions, Data.Regions);
210     EXPECT_THAT_ERROR(Reader.read(), Succeeded());
211   }
212 
writeAndReadCoverageRegions__anonea70ae220211::CoverageMappingTest213   void writeAndReadCoverageRegions(bool EmitFilenames = true) {
214     OutputFunctions.resize(InputFunctions.size());
215     for (unsigned I = 0; I < InputFunctions.size(); ++I) {
216       std::string Regions = writeCoverageRegions(InputFunctions[I]);
217       readCoverageRegions(Regions, OutputFunctions[I]);
218       OutputFunctions[I].Name = InputFunctions[I].Name;
219       OutputFunctions[I].Hash = InputFunctions[I].Hash;
220       if (!EmitFilenames)
221         OutputFunctions[I].Filenames.clear();
222     }
223   }
224 
readProfCounts__anonea70ae220211::CoverageMappingTest225   void readProfCounts() {
226     auto Profile = ProfileWriter.writeBuffer();
227     auto ReaderOrErr = IndexedInstrProfReader::create(std::move(Profile));
228     EXPECT_THAT_ERROR(ReaderOrErr.takeError(), Succeeded());
229     ProfileReader = std::move(ReaderOrErr.get());
230   }
231 
readOutputFunctions__anonea70ae220211::CoverageMappingTest232   Expected<std::unique_ptr<CoverageMapping>> readOutputFunctions() {
233     std::vector<std::unique_ptr<CoverageMappingReader>> CoverageReaders;
234     if (UseMultipleReaders) {
235       for (const auto &OF : OutputFunctions) {
236         ArrayRef<OutputFunctionCoverageData> Funcs(OF);
237         CoverageReaders.push_back(
238             make_unique<CoverageMappingReaderMock>(Funcs));
239       }
240     } else {
241       ArrayRef<OutputFunctionCoverageData> Funcs(OutputFunctions);
242       CoverageReaders.push_back(
243           make_unique<CoverageMappingReaderMock>(Funcs));
244     }
245     return CoverageMapping::load(CoverageReaders, *ProfileReader);
246   }
247 
loadCoverageMapping__anonea70ae220211::CoverageMappingTest248   Error loadCoverageMapping(bool EmitFilenames = true) {
249     readProfCounts();
250     writeAndReadCoverageRegions(EmitFilenames);
251     auto CoverageOrErr = readOutputFunctions();
252     if (!CoverageOrErr)
253       return CoverageOrErr.takeError();
254     LoadedCoverage = std::move(CoverageOrErr.get());
255     return Error::success();
256   }
257 };
258 
TEST_P(CoverageMappingTest,basic_write_read)259 TEST_P(CoverageMappingTest, basic_write_read) {
260   startFunction("func", 0x1234);
261   addCMR(Counter::getCounter(0), "foo", 1, 1, 1, 1);
262   addCMR(Counter::getCounter(1), "foo", 2, 1, 2, 2);
263   addCMR(Counter::getZero(),     "foo", 3, 1, 3, 4);
264   addCMR(Counter::getCounter(2), "foo", 4, 1, 4, 8);
265   addCMR(Counter::getCounter(3), "bar", 1, 2, 3, 4);
266 
267   writeAndReadCoverageRegions();
268   ASSERT_EQ(1u, InputFunctions.size());
269   ASSERT_EQ(1u, OutputFunctions.size());
270   InputFunctionCoverageData &Input = InputFunctions.back();
271   OutputFunctionCoverageData &Output = OutputFunctions.back();
272 
273   size_t N = makeArrayRef(Input.Regions).size();
274   ASSERT_EQ(N, Output.Regions.size());
275   for (size_t I = 0; I < N; ++I) {
276     ASSERT_EQ(Input.Regions[I].Count, Output.Regions[I].Count);
277     ASSERT_EQ(Input.Regions[I].FileID, Output.Regions[I].FileID);
278     ASSERT_EQ(Input.Regions[I].startLoc(), Output.Regions[I].startLoc());
279     ASSERT_EQ(Input.Regions[I].endLoc(), Output.Regions[I].endLoc());
280     ASSERT_EQ(Input.Regions[I].Kind, Output.Regions[I].Kind);
281   }
282 }
283 
TEST_P(CoverageMappingTest,correct_deserialize_for_more_than_two_files)284 TEST_P(CoverageMappingTest, correct_deserialize_for_more_than_two_files) {
285   const char *FileNames[] = {"bar", "baz", "foo"};
286   static const unsigned N = array_lengthof(FileNames);
287 
288   startFunction("func", 0x1234);
289   for (unsigned I = 0; I < N; ++I)
290     // Use LineStart to hold the index of the file name
291     // in order to preserve that information during possible sorting of CMRs.
292     addCMR(Counter::getCounter(0), FileNames[I], I, 1, I, 1);
293 
294   writeAndReadCoverageRegions();
295   ASSERT_EQ(1u, OutputFunctions.size());
296   OutputFunctionCoverageData &Output = OutputFunctions.back();
297 
298   ASSERT_EQ(N, Output.Regions.size());
299   ASSERT_EQ(N, Output.Filenames.size());
300 
301   for (unsigned I = 0; I < N; ++I) {
302     ASSERT_GT(N, Output.Regions[I].FileID);
303     ASSERT_GT(N, Output.Regions[I].LineStart);
304     EXPECT_EQ(FileNames[Output.Regions[I].LineStart],
305               Output.Filenames[Output.Regions[I].FileID]);
306   }
307 }
308 
__anonea70ae220302(Error E) 309 static const auto Err = [](Error E) { FAIL(); };
310 
TEST_P(CoverageMappingTest,load_coverage_for_more_than_two_files)311 TEST_P(CoverageMappingTest, load_coverage_for_more_than_two_files) {
312   ProfileWriter.addRecord({"func", 0x1234, {0}}, Err);
313 
314   const char *FileNames[] = {"bar", "baz", "foo"};
315   static const unsigned N = array_lengthof(FileNames);
316 
317   startFunction("func", 0x1234);
318   for (unsigned I = 0; I < N; ++I)
319     // Use LineStart to hold the index of the file name
320     // in order to preserve that information during possible sorting of CMRs.
321     addCMR(Counter::getCounter(0), FileNames[I], I, 1, I, 1);
322 
323   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
324 
325   for (unsigned I = 0; I < N; ++I) {
326     CoverageData Data = LoadedCoverage->getCoverageForFile(FileNames[I]);
327     ASSERT_TRUE(!Data.empty());
328     EXPECT_EQ(I, Data.begin()->Line);
329   }
330 }
331 
TEST_P(CoverageMappingTest,load_coverage_with_bogus_function_name)332 TEST_P(CoverageMappingTest, load_coverage_with_bogus_function_name) {
333   ProfileWriter.addRecord({"", 0x1234, {10}}, Err);
334   startFunction("", 0x1234);
335   addCMR(Counter::getCounter(0), "foo", 1, 1, 5, 5);
336   EXPECT_TRUE(ErrorEquals(coveragemap_error::malformed, loadCoverageMapping()));
337 }
338 
TEST_P(CoverageMappingTest,load_coverage_for_several_functions)339 TEST_P(CoverageMappingTest, load_coverage_for_several_functions) {
340   ProfileWriter.addRecord({"func1", 0x1234, {10}}, Err);
341   ProfileWriter.addRecord({"func2", 0x2345, {20}}, Err);
342 
343   startFunction("func1", 0x1234);
344   addCMR(Counter::getCounter(0), "foo", 1, 1, 5, 5);
345 
346   startFunction("func2", 0x2345);
347   addCMR(Counter::getCounter(0), "bar", 2, 2, 6, 6);
348 
349   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
350 
351   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
352   EXPECT_EQ(2, std::distance(FunctionRecords.begin(), FunctionRecords.end()));
353   for (const auto &FunctionRecord : FunctionRecords) {
354     CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
355     std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
356     ASSERT_EQ(2U, Segments.size());
357     if (FunctionRecord.Name == "func1") {
358       EXPECT_EQ(CoverageSegment(1, 1, 10, true), Segments[0]);
359       EXPECT_EQ(CoverageSegment(5, 5, false), Segments[1]);
360     } else {
361       ASSERT_EQ("func2", FunctionRecord.Name);
362       EXPECT_EQ(CoverageSegment(2, 2, 20, true), Segments[0]);
363       EXPECT_EQ(CoverageSegment(6, 6, false), Segments[1]);
364     }
365   }
366 }
367 
TEST_P(CoverageMappingTest,create_combined_regions)368 TEST_P(CoverageMappingTest, create_combined_regions) {
369   ProfileWriter.addRecord({"func1", 0x1234, {1, 2, 3}}, Err);
370   startFunction("func1", 0x1234);
371 
372   // Given regions which start at the same location, emit a segment for the
373   // last region.
374   addCMR(Counter::getCounter(0), "file1", 1, 1, 2, 2);
375   addCMR(Counter::getCounter(1), "file1", 1, 1, 2, 2);
376   addCMR(Counter::getCounter(2), "file1", 1, 1, 2, 2);
377 
378   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
379   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
380   const auto &FunctionRecord = *FunctionRecords.begin();
381   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
382   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
383 
384   ASSERT_EQ(2U, Segments.size());
385   EXPECT_EQ(CoverageSegment(1, 1, 6, true), Segments[0]);
386   EXPECT_EQ(CoverageSegment(2, 2, false), Segments[1]);
387 }
388 
TEST_P(CoverageMappingTest,skipped_segments_have_no_count)389 TEST_P(CoverageMappingTest, skipped_segments_have_no_count) {
390   ProfileWriter.addRecord({"func1", 0x1234, {1}}, Err);
391   startFunction("func1", 0x1234);
392 
393   addCMR(Counter::getCounter(0), "file1", 1, 1, 5, 5);
394   addCMR(Counter::getCounter(0), "file1", 5, 1, 5, 5, /*Skipped=*/true);
395 
396   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
397   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
398   const auto &FunctionRecord = *FunctionRecords.begin();
399   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
400   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
401 
402   ASSERT_EQ(3U, Segments.size());
403   EXPECT_EQ(CoverageSegment(1, 1, 1, true), Segments[0]);
404   EXPECT_EQ(CoverageSegment(5, 1, true), Segments[1]);
405   EXPECT_EQ(CoverageSegment(5, 5, false), Segments[2]);
406 }
407 
TEST_P(CoverageMappingTest,multiple_regions_end_after_parent_ends)408 TEST_P(CoverageMappingTest, multiple_regions_end_after_parent_ends) {
409   ProfileWriter.addRecord({"func1", 0x1234, {1, 0}}, Err);
410   startFunction("func1", 0x1234);
411 
412   // 1| F{ a{
413   // 2|
414   // 3|    a} b{ c{
415   // 4|
416   // 5|    b}
417   // 6|
418   // 7| c} d{   e{
419   // 8|
420   // 9| d}      e} F}
421   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9); // < F
422   addCMR(Counter::getCounter(0), "file1", 1, 1, 3, 5); // < a
423   addCMR(Counter::getCounter(0), "file1", 3, 5, 5, 4); // < b
424   addCMR(Counter::getCounter(1), "file1", 3, 5, 7, 3); // < c
425   addCMR(Counter::getCounter(1), "file1", 7, 3, 9, 2); // < d
426   addCMR(Counter::getCounter(1), "file1", 7, 7, 9, 7); // < e
427 
428   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
429   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
430   const auto &FunctionRecord = *FunctionRecords.begin();
431   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
432   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
433 
434   // Old output (not sorted or unique):
435   //   Segment at 1:1 with count 1
436   //   Segment at 1:1 with count 1
437   //   Segment at 3:5 with count 1
438   //   Segment at 3:5 with count 0
439   //   Segment at 3:5 with count 1
440   //   Segment at 5:4 with count 0
441   //   Segment at 7:3 with count 1
442   //   Segment at 7:3 with count 0
443   //   Segment at 7:7 with count 0
444   //   Segment at 9:7 with count 0
445   //   Segment at 9:2 with count 1
446   //   Top level segment at 9:9
447 
448   // New output (sorted and unique):
449   //   Segment at 1:1 (count = 1), RegionEntry
450   //   Segment at 3:5 (count = 1), RegionEntry
451   //   Segment at 5:4 (count = 0)
452   //   Segment at 7:3 (count = 0), RegionEntry
453   //   Segment at 7:7 (count = 0), RegionEntry
454   //   Segment at 9:2 (count = 0)
455   //   Segment at 9:7 (count = 1)
456   //   Segment at 9:9 (count = 0), Skipped
457 
458   ASSERT_EQ(8U, Segments.size());
459   EXPECT_EQ(CoverageSegment(1, 1, 1, true), Segments[0]);
460   EXPECT_EQ(CoverageSegment(3, 5, 1, true), Segments[1]);
461   EXPECT_EQ(CoverageSegment(5, 4, 0, false), Segments[2]);
462   EXPECT_EQ(CoverageSegment(7, 3, 0, true), Segments[3]);
463   EXPECT_EQ(CoverageSegment(7, 7, 0, true), Segments[4]);
464   EXPECT_EQ(CoverageSegment(9, 2, 0, false), Segments[5]);
465   EXPECT_EQ(CoverageSegment(9, 7, 1, false), Segments[6]);
466   EXPECT_EQ(CoverageSegment(9, 9, false), Segments[7]);
467 }
468 
TEST_P(CoverageMappingTest,multiple_completed_segments_at_same_loc)469 TEST_P(CoverageMappingTest, multiple_completed_segments_at_same_loc) {
470   ProfileWriter.addRecord({"func1", 0x1234, {0, 1, 2}}, Err);
471   startFunction("func1", 0x1234);
472 
473   // PR35495
474   addCMR(Counter::getCounter(1), "file1", 2, 1, 18, 2);
475   addCMR(Counter::getCounter(0), "file1", 8, 10, 14, 6);
476   addCMR(Counter::getCounter(0), "file1", 8, 12, 14, 6);
477   addCMR(Counter::getCounter(1), "file1", 9, 1, 14, 6);
478   addCMR(Counter::getCounter(2), "file1", 11, 13, 11, 14);
479 
480   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
481   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
482   const auto &FunctionRecord = *FunctionRecords.begin();
483   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
484   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
485 
486   ASSERT_EQ(7U, Segments.size());
487   EXPECT_EQ(CoverageSegment(2, 1, 1, true), Segments[0]);
488   EXPECT_EQ(CoverageSegment(8, 10, 0, true), Segments[1]);
489   EXPECT_EQ(CoverageSegment(8, 12, 0, true), Segments[2]);
490   EXPECT_EQ(CoverageSegment(9, 1, 1, true), Segments[3]);
491   EXPECT_EQ(CoverageSegment(11, 13, 2, true), Segments[4]);
492   // Use count=1 (from 9:1 -> 14:6), not count=0 (from 8:12 -> 14:6).
493   EXPECT_EQ(CoverageSegment(11, 14, 1, false), Segments[5]);
494   EXPECT_EQ(CoverageSegment(18, 2, false), Segments[6]);
495 }
496 
TEST_P(CoverageMappingTest,dont_emit_redundant_segments)497 TEST_P(CoverageMappingTest, dont_emit_redundant_segments) {
498   ProfileWriter.addRecord({"func1", 0x1234, {1, 1}}, Err);
499   startFunction("func1", 0x1234);
500 
501   addCMR(Counter::getCounter(0), "file1", 1, 1, 4, 4);
502   addCMR(Counter::getCounter(1), "file1", 2, 2, 5, 5);
503   addCMR(Counter::getCounter(0), "file1", 3, 3, 6, 6);
504 
505   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
506   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
507   const auto &FunctionRecord = *FunctionRecords.begin();
508   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
509   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
510 
511   ASSERT_EQ(5U, Segments.size());
512   EXPECT_EQ(CoverageSegment(1, 1, 1, true), Segments[0]);
513   EXPECT_EQ(CoverageSegment(2, 2, 1, true), Segments[1]);
514   EXPECT_EQ(CoverageSegment(3, 3, 1, true), Segments[2]);
515   EXPECT_EQ(CoverageSegment(4, 4, 1, false), Segments[3]);
516   // A closing segment starting at 5:5 would be redundant: it would have the
517   // same count as the segment starting at 4:4, and has all the same metadata.
518   EXPECT_EQ(CoverageSegment(6, 6, false), Segments[4]);
519 }
520 
TEST_P(CoverageMappingTest,dont_emit_closing_segment_at_new_region_start)521 TEST_P(CoverageMappingTest, dont_emit_closing_segment_at_new_region_start) {
522   ProfileWriter.addRecord({"func1", 0x1234, {1}}, Err);
523   startFunction("func1", 0x1234);
524 
525   addCMR(Counter::getCounter(0), "file1", 1, 1, 6, 5);
526   addCMR(Counter::getCounter(0), "file1", 2, 2, 6, 5);
527   addCMR(Counter::getCounter(0), "file1", 3, 3, 6, 5);
528   addCMR(Counter::getCounter(0), "file1", 6, 5, 7, 7);
529 
530   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
531   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
532   const auto &FunctionRecord = *FunctionRecords.begin();
533   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
534   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
535 
536   ASSERT_EQ(5U, Segments.size());
537   EXPECT_EQ(CoverageSegment(1, 1, 1, true), Segments[0]);
538   EXPECT_EQ(CoverageSegment(2, 2, 1, true), Segments[1]);
539   EXPECT_EQ(CoverageSegment(3, 3, 1, true), Segments[2]);
540   EXPECT_EQ(CoverageSegment(6, 5, 1, true), Segments[3]);
541   // The old segment builder would get this wrong by emitting multiple segments
542   // which start at 6:5 (a few of which were skipped segments). We should just
543   // get a segment for the region entry.
544   EXPECT_EQ(CoverageSegment(7, 7, false), Segments[4]);
545 }
546 
TEST_P(CoverageMappingTest,handle_consecutive_regions_with_zero_length)547 TEST_P(CoverageMappingTest, handle_consecutive_regions_with_zero_length) {
548   ProfileWriter.addRecord({"func1", 0x1234, {1, 2}}, Err);
549   startFunction("func1", 0x1234);
550 
551   addCMR(Counter::getCounter(0), "file1", 1, 1, 1, 1);
552   addCMR(Counter::getCounter(1), "file1", 1, 1, 1, 1);
553   addCMR(Counter::getCounter(0), "file1", 1, 1, 1, 1);
554   addCMR(Counter::getCounter(1), "file1", 1, 1, 1, 1);
555   addCMR(Counter::getCounter(0), "file1", 1, 1, 1, 1);
556 
557   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
558   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
559   const auto &FunctionRecord = *FunctionRecords.begin();
560   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
561   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
562 
563   ASSERT_EQ(1U, Segments.size());
564   EXPECT_EQ(CoverageSegment(1, 1, true), Segments[0]);
565   // We need to get a skipped segment starting at 1:1. In this case there is
566   // also a region entry at 1:1.
567 }
568 
TEST_P(CoverageMappingTest,handle_sandwiched_zero_length_region)569 TEST_P(CoverageMappingTest, handle_sandwiched_zero_length_region) {
570   ProfileWriter.addRecord({"func1", 0x1234, {2, 1}}, Err);
571   startFunction("func1", 0x1234);
572 
573   addCMR(Counter::getCounter(0), "file1", 1, 5, 4, 4);
574   addCMR(Counter::getCounter(1), "file1", 1, 9, 1, 50);
575   addCMR(Counter::getCounter(1), "file1", 2, 7, 2, 34);
576   addCMR(Counter::getCounter(1), "file1", 3, 5, 3, 21);
577   addCMR(Counter::getCounter(1), "file1", 3, 21, 3, 21);
578   addCMR(Counter::getCounter(1), "file1", 4, 12, 4, 17);
579 
580   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
581   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
582   const auto &FunctionRecord = *FunctionRecords.begin();
583   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
584   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
585 
586   ASSERT_EQ(10U, Segments.size());
587   EXPECT_EQ(CoverageSegment(1, 5, 2, true), Segments[0]);
588   EXPECT_EQ(CoverageSegment(1, 9, 1, true), Segments[1]);
589   EXPECT_EQ(CoverageSegment(1, 50, 2, false), Segments[2]);
590   EXPECT_EQ(CoverageSegment(2, 7, 1, true), Segments[3]);
591   EXPECT_EQ(CoverageSegment(2, 34, 2, false), Segments[4]);
592   EXPECT_EQ(CoverageSegment(3, 5, 1, true), Segments[5]);
593   EXPECT_EQ(CoverageSegment(3, 21, 2, true), Segments[6]);
594   // Handle the zero-length region by creating a segment with its predecessor's
595   // count (i.e the count from 1:5 -> 4:4).
596   EXPECT_EQ(CoverageSegment(4, 4, false), Segments[7]);
597   // The area between 4:4 and 4:12 is skipped.
598   EXPECT_EQ(CoverageSegment(4, 12, 1, true), Segments[8]);
599   EXPECT_EQ(CoverageSegment(4, 17, false), Segments[9]);
600 }
601 
TEST_P(CoverageMappingTest,handle_last_completed_region)602 TEST_P(CoverageMappingTest, handle_last_completed_region) {
603   ProfileWriter.addRecord({"func1", 0x1234, {1, 2, 3, 4}}, Err);
604   startFunction("func1", 0x1234);
605 
606   addCMR(Counter::getCounter(0), "file1", 1, 1, 8, 8);
607   addCMR(Counter::getCounter(1), "file1", 2, 2, 5, 5);
608   addCMR(Counter::getCounter(2), "file1", 3, 3, 4, 4);
609   addCMR(Counter::getCounter(3), "file1", 6, 6, 7, 7);
610 
611   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
612   const auto FunctionRecords = LoadedCoverage->getCoveredFunctions();
613   const auto &FunctionRecord = *FunctionRecords.begin();
614   CoverageData Data = LoadedCoverage->getCoverageForFunction(FunctionRecord);
615   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
616 
617   ASSERT_EQ(8U, Segments.size());
618   EXPECT_EQ(CoverageSegment(1, 1, 1, true), Segments[0]);
619   EXPECT_EQ(CoverageSegment(2, 2, 2, true), Segments[1]);
620   EXPECT_EQ(CoverageSegment(3, 3, 3, true), Segments[2]);
621   EXPECT_EQ(CoverageSegment(4, 4, 2, false), Segments[3]);
622   EXPECT_EQ(CoverageSegment(5, 5, 1, false), Segments[4]);
623   EXPECT_EQ(CoverageSegment(6, 6, 4, true), Segments[5]);
624   EXPECT_EQ(CoverageSegment(7, 7, 1, false), Segments[6]);
625   EXPECT_EQ(CoverageSegment(8, 8, false), Segments[7]);
626 }
627 
TEST_P(CoverageMappingTest,expansion_gets_first_counter)628 TEST_P(CoverageMappingTest, expansion_gets_first_counter) {
629   startFunction("func", 0x1234);
630   addCMR(Counter::getCounter(1), "foo", 10, 1, 10, 2);
631   // This starts earlier in "foo", so the expansion should get its counter.
632   addCMR(Counter::getCounter(2), "foo", 1, 1, 20, 1);
633   addExpansionCMR("bar", "foo", 3, 3, 3, 3);
634 
635   writeAndReadCoverageRegions();
636   ASSERT_EQ(1u, OutputFunctions.size());
637   OutputFunctionCoverageData &Output = OutputFunctions.back();
638 
639   ASSERT_EQ(CounterMappingRegion::ExpansionRegion, Output.Regions[2].Kind);
640   ASSERT_EQ(Counter::getCounter(2), Output.Regions[2].Count);
641   ASSERT_EQ(3U, Output.Regions[2].LineStart);
642 }
643 
TEST_P(CoverageMappingTest,basic_coverage_iteration)644 TEST_P(CoverageMappingTest, basic_coverage_iteration) {
645   ProfileWriter.addRecord({"func", 0x1234, {30, 20, 10, 0}}, Err);
646 
647   startFunction("func", 0x1234);
648   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
649   addCMR(Counter::getCounter(1), "file1", 1, 1, 4, 7);
650   addCMR(Counter::getCounter(2), "file1", 5, 8, 9, 1);
651   addCMR(Counter::getCounter(3), "file1", 10, 10, 11, 11);
652   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
653 
654   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
655   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
656   ASSERT_EQ(7U, Segments.size());
657   ASSERT_EQ(CoverageSegment(1, 1, 20, true),  Segments[0]);
658   ASSERT_EQ(CoverageSegment(4, 7, 30, false), Segments[1]);
659   ASSERT_EQ(CoverageSegment(5, 8, 10, true),  Segments[2]);
660   ASSERT_EQ(CoverageSegment(9, 1, 30, false), Segments[3]);
661   ASSERT_EQ(CoverageSegment(9, 9, false),     Segments[4]);
662   ASSERT_EQ(CoverageSegment(10, 10, 0, true), Segments[5]);
663   ASSERT_EQ(CoverageSegment(11, 11, false),   Segments[6]);
664 }
665 
TEST_P(CoverageMappingTest,test_line_coverage_iterator)666 TEST_P(CoverageMappingTest, test_line_coverage_iterator) {
667   ProfileWriter.addRecord({"func", 0x1234, {30, 20, 10, 0}}, Err);
668 
669   startFunction("func", 0x1234);
670   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
671   addCMR(Counter::getCounter(1), "file1", 1, 1, 4, 7);
672   addCMR(Counter::getCounter(2), "file1", 5, 8, 9, 1);
673   addCMR(Counter::getCounter(3), "file1", 10, 10, 11, 11);
674   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
675 
676   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
677 
678   unsigned Line = 0;
679   unsigned LineCounts[] = {20, 20, 20, 20, 30, 10, 10, 10, 10, 0, 0};
680   for (const auto &LCS : getLineCoverageStats(Data)) {
681     ASSERT_EQ(Line + 1, LCS.getLine());
682     errs() << "Line: " << Line + 1 << ", count = " << LCS.getExecutionCount() << "\n";
683     ASSERT_EQ(LineCounts[Line], LCS.getExecutionCount());
684     ++Line;
685   }
686   ASSERT_EQ(11U, Line);
687 }
688 
TEST_P(CoverageMappingTest,uncovered_function)689 TEST_P(CoverageMappingTest, uncovered_function) {
690   startFunction("func", 0x1234);
691   addCMR(Counter::getZero(), "file1", 1, 2, 3, 4);
692   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
693 
694   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
695   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
696   ASSERT_EQ(2U, Segments.size());
697   ASSERT_EQ(CoverageSegment(1, 2, 0, true), Segments[0]);
698   ASSERT_EQ(CoverageSegment(3, 4, false),   Segments[1]);
699 }
700 
TEST_P(CoverageMappingTest,uncovered_function_with_mapping)701 TEST_P(CoverageMappingTest, uncovered_function_with_mapping) {
702   startFunction("func", 0x1234);
703   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
704   addCMR(Counter::getCounter(1), "file1", 1, 1, 4, 7);
705   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
706 
707   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
708   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
709   ASSERT_EQ(3U, Segments.size());
710   ASSERT_EQ(CoverageSegment(1, 1, 0, true),  Segments[0]);
711   ASSERT_EQ(CoverageSegment(4, 7, 0, false), Segments[1]);
712   ASSERT_EQ(CoverageSegment(9, 9, false),    Segments[2]);
713 }
714 
TEST_P(CoverageMappingTest,combine_regions)715 TEST_P(CoverageMappingTest, combine_regions) {
716   ProfileWriter.addRecord({"func", 0x1234, {10, 20, 30}}, Err);
717 
718   startFunction("func", 0x1234);
719   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
720   addCMR(Counter::getCounter(1), "file1", 3, 3, 4, 4);
721   addCMR(Counter::getCounter(2), "file1", 3, 3, 4, 4);
722   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
723 
724   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
725   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
726   ASSERT_EQ(4U, Segments.size());
727   ASSERT_EQ(CoverageSegment(1, 1, 10, true), Segments[0]);
728   ASSERT_EQ(CoverageSegment(3, 3, 50, true), Segments[1]);
729   ASSERT_EQ(CoverageSegment(4, 4, 10, false), Segments[2]);
730   ASSERT_EQ(CoverageSegment(9, 9, false), Segments[3]);
731 }
732 
TEST_P(CoverageMappingTest,restore_combined_counter_after_nested_region)733 TEST_P(CoverageMappingTest, restore_combined_counter_after_nested_region) {
734   ProfileWriter.addRecord({"func", 0x1234, {10, 20, 40}}, Err);
735 
736   startFunction("func", 0x1234);
737   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
738   addCMR(Counter::getCounter(1), "file1", 1, 1, 9, 9);
739   addCMR(Counter::getCounter(2), "file1", 3, 3, 5, 5);
740   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
741 
742   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
743   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
744   ASSERT_EQ(4U, Segments.size());
745   EXPECT_EQ(CoverageSegment(1, 1, 30, true), Segments[0]);
746   EXPECT_EQ(CoverageSegment(3, 3, 40, true), Segments[1]);
747   EXPECT_EQ(CoverageSegment(5, 5, 30, false), Segments[2]);
748   EXPECT_EQ(CoverageSegment(9, 9, false), Segments[3]);
749 }
750 
751 // If CodeRegions and ExpansionRegions cover the same area,
752 // only counts of CodeRegions should be used.
TEST_P(CoverageMappingTest,dont_combine_expansions)753 TEST_P(CoverageMappingTest, dont_combine_expansions) {
754   ProfileWriter.addRecord({"func", 0x1234, {10, 20}}, Err);
755   ProfileWriter.addRecord({"func", 0x1234, {0, 0}}, Err);
756 
757   startFunction("func", 0x1234);
758   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
759   addCMR(Counter::getCounter(1), "file1", 3, 3, 4, 4);
760   addCMR(Counter::getCounter(1), "include1", 6, 6, 7, 7);
761   addExpansionCMR("file1", "include1", 3, 3, 4, 4);
762   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
763 
764   CoverageData Data = LoadedCoverage->getCoverageForFile("file1");
765   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
766   ASSERT_EQ(4U, Segments.size());
767   ASSERT_EQ(CoverageSegment(1, 1, 10, true), Segments[0]);
768   ASSERT_EQ(CoverageSegment(3, 3, 20, true), Segments[1]);
769   ASSERT_EQ(CoverageSegment(4, 4, 10, false), Segments[2]);
770   ASSERT_EQ(CoverageSegment(9, 9, false), Segments[3]);
771 }
772 
773 // If an area is covered only by ExpansionRegions, they should be combinated.
TEST_P(CoverageMappingTest,combine_expansions)774 TEST_P(CoverageMappingTest, combine_expansions) {
775   ProfileWriter.addRecord({"func", 0x1234, {2, 3, 7}}, Err);
776 
777   startFunction("func", 0x1234);
778   addCMR(Counter::getCounter(1), "include1", 1, 1, 1, 10);
779   addCMR(Counter::getCounter(2), "include2", 1, 1, 1, 10);
780   addCMR(Counter::getCounter(0), "file", 1, 1, 5, 5);
781   addExpansionCMR("file", "include1", 3, 1, 3, 5);
782   addExpansionCMR("file", "include2", 3, 1, 3, 5);
783 
784   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
785 
786   CoverageData Data = LoadedCoverage->getCoverageForFile("file");
787   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
788   ASSERT_EQ(4U, Segments.size());
789   EXPECT_EQ(CoverageSegment(1, 1, 2, true), Segments[0]);
790   EXPECT_EQ(CoverageSegment(3, 1, 10, true), Segments[1]);
791   EXPECT_EQ(CoverageSegment(3, 5, 2, false), Segments[2]);
792   EXPECT_EQ(CoverageSegment(5, 5, false), Segments[3]);
793 }
794 
TEST_P(CoverageMappingTest,strip_filename_prefix)795 TEST_P(CoverageMappingTest, strip_filename_prefix) {
796   ProfileWriter.addRecord({"file1:func", 0x1234, {0}}, Err);
797 
798   startFunction("file1:func", 0x1234);
799   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
800   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
801 
802   std::vector<std::string> Names;
803   for (const auto &Func : LoadedCoverage->getCoveredFunctions())
804     Names.push_back(Func.Name);
805   ASSERT_EQ(1U, Names.size());
806   ASSERT_EQ("func", Names[0]);
807 }
808 
TEST_P(CoverageMappingTest,strip_unknown_filename_prefix)809 TEST_P(CoverageMappingTest, strip_unknown_filename_prefix) {
810   ProfileWriter.addRecord({"<unknown>:func", 0x1234, {0}}, Err);
811 
812   startFunction("<unknown>:func", 0x1234);
813   addCMR(Counter::getCounter(0), "", 1, 1, 9, 9);
814   EXPECT_THAT_ERROR(loadCoverageMapping(/*EmitFilenames=*/false), Succeeded());
815 
816   std::vector<std::string> Names;
817   for (const auto &Func : LoadedCoverage->getCoveredFunctions())
818     Names.push_back(Func.Name);
819   ASSERT_EQ(1U, Names.size());
820   ASSERT_EQ("func", Names[0]);
821 }
822 
TEST_P(CoverageMappingTest,dont_detect_false_instantiations)823 TEST_P(CoverageMappingTest, dont_detect_false_instantiations) {
824   ProfileWriter.addRecord({"foo", 0x1234, {10}}, Err);
825   ProfileWriter.addRecord({"bar", 0x2345, {20}}, Err);
826 
827   startFunction("foo", 0x1234);
828   addCMR(Counter::getCounter(0), "expanded", 1, 1, 1, 10);
829   addExpansionCMR("main", "expanded", 4, 1, 4, 5);
830 
831   startFunction("bar", 0x2345);
832   addCMR(Counter::getCounter(0), "expanded", 1, 1, 1, 10);
833   addExpansionCMR("main", "expanded", 9, 1, 9, 5);
834 
835   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
836 
837   std::vector<InstantiationGroup> InstantiationGroups =
838       LoadedCoverage->getInstantiationGroups("expanded");
839   for (const auto &Group : InstantiationGroups)
840     ASSERT_EQ(Group.size(), 1U);
841 }
842 
TEST_P(CoverageMappingTest,load_coverage_for_expanded_file)843 TEST_P(CoverageMappingTest, load_coverage_for_expanded_file) {
844   ProfileWriter.addRecord({"func", 0x1234, {10}}, Err);
845 
846   startFunction("func", 0x1234);
847   addCMR(Counter::getCounter(0), "expanded", 1, 1, 1, 10);
848   addExpansionCMR("main", "expanded", 4, 1, 4, 5);
849 
850   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
851 
852   CoverageData Data = LoadedCoverage->getCoverageForFile("expanded");
853   std::vector<CoverageSegment> Segments(Data.begin(), Data.end());
854   ASSERT_EQ(2U, Segments.size());
855   EXPECT_EQ(CoverageSegment(1, 1, 10, true), Segments[0]);
856   EXPECT_EQ(CoverageSegment(1, 10, false), Segments[1]);
857 }
858 
TEST_P(CoverageMappingTest,skip_duplicate_function_record)859 TEST_P(CoverageMappingTest, skip_duplicate_function_record) {
860   ProfileWriter.addRecord({"func", 0x1234, {1}}, Err);
861 
862   // This record should be loaded.
863   startFunction("func", 0x1234);
864   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
865 
866   // This record should be loaded.
867   startFunction("func", 0x1234);
868   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
869   addCMR(Counter::getCounter(0), "file2", 1, 1, 9, 9);
870 
871   // This record should be skipped.
872   startFunction("func", 0x1234);
873   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
874 
875   // This record should be loaded.
876   startFunction("func", 0x1234);
877   addCMR(Counter::getCounter(0), "file2", 1, 1, 9, 9);
878   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
879 
880   // This record should be skipped.
881   startFunction("func", 0x1234);
882   addCMR(Counter::getCounter(0), "file1", 1, 1, 9, 9);
883   addCMR(Counter::getCounter(0), "file2", 1, 1, 9, 9);
884 
885   EXPECT_THAT_ERROR(loadCoverageMapping(), Succeeded());
886 
887   auto Funcs = LoadedCoverage->getCoveredFunctions();
888   unsigned NumFuncs = std::distance(Funcs.begin(), Funcs.end());
889   ASSERT_EQ(3U, NumFuncs);
890 }
891 
892 // FIXME: Use ::testing::Combine() when llvm updates its copy of googletest.
893 INSTANTIATE_TEST_CASE_P(ParameterizedCovMapTest, CoverageMappingTest,
894                         ::testing::Values(std::pair<bool, bool>({false, false}),
895                                           std::pair<bool, bool>({false, true}),
896                                           std::pair<bool, bool>({true, false}),
897                                           std::pair<bool, bool>({true, true})),);
898 
899 } // end anonymous namespace
900