1 //===- unittest/ProfileData/SampleProfTest.cpp ------------------*- C++ -*-===//
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/SampleProf.h"
11 #include "llvm/ADT/StringMap.h"
12 #include "llvm/ADT/StringRef.h"
13 #include "llvm/IR/LLVMContext.h"
14 #include "llvm/IR/Metadata.h"
15 #include "llvm/IR/Module.h"
16 #include "llvm/ProfileData/SampleProfReader.h"
17 #include "llvm/ProfileData/SampleProfWriter.h"
18 #include "llvm/Support/Casting.h"
19 #include "llvm/Support/ErrorOr.h"
20 #include "llvm/Support/MemoryBuffer.h"
21 #include "llvm/Support/raw_ostream.h"
22 #include "gtest/gtest.h"
23 #include <string>
24 #include <vector>
25 
26 using namespace llvm;
27 using namespace sampleprof;
28 
29 static ::testing::AssertionResult NoError(std::error_code EC) {
30   if (!EC)
31     return ::testing::AssertionSuccess();
32   return ::testing::AssertionFailure() << "error " << EC.value() << ": "
33                                        << EC.message();
34 }
35 
36 namespace {
37 
38 struct SampleProfTest : ::testing::Test {
39   LLVMContext Context;
40   std::unique_ptr<SampleProfileWriter> Writer;
41   std::unique_ptr<SampleProfileReader> Reader;
42 
43   SampleProfTest() : Writer(), Reader() {}
44 
45   void createWriter(SampleProfileFormat Format, StringRef Profile) {
46     std::error_code EC;
47     std::unique_ptr<raw_ostream> OS(
48         new raw_fd_ostream(Profile, EC, sys::fs::F_None));
49     auto WriterOrErr = SampleProfileWriter::create(OS, Format);
50     ASSERT_TRUE(NoError(WriterOrErr.getError()));
51     Writer = std::move(WriterOrErr.get());
52   }
53 
54   void readProfile(const Module &M, StringRef Profile) {
55     auto ReaderOrErr = SampleProfileReader::create(Profile, Context);
56     ASSERT_TRUE(NoError(ReaderOrErr.getError()));
57     Reader = std::move(ReaderOrErr.get());
58     Reader->collectFuncsToUse(M);
59   }
60 
61   void testRoundTrip(SampleProfileFormat Format, bool Remap) {
62     SmallVector<char, 128> ProfilePath;
63     ASSERT_TRUE(NoError(llvm::sys::fs::createTemporaryFile("profile", "", ProfilePath)));
64     StringRef Profile(ProfilePath.data(), ProfilePath.size());
65     createWriter(Format, Profile);
66 
67     StringRef FooName("_Z3fooi");
68     FunctionSamples FooSamples;
69     FooSamples.setName(FooName);
70     FooSamples.addTotalSamples(7711);
71     FooSamples.addHeadSamples(610);
72     FooSamples.addBodySamples(1, 0, 610);
73     FooSamples.addBodySamples(2, 0, 600);
74     FooSamples.addBodySamples(4, 0, 60000);
75     FooSamples.addBodySamples(8, 0, 60351);
76     FooSamples.addBodySamples(10, 0, 605);
77 
78     StringRef BarName("_Z3bari");
79     FunctionSamples BarSamples;
80     BarSamples.setName(BarName);
81     BarSamples.addTotalSamples(20301);
82     BarSamples.addHeadSamples(1437);
83     BarSamples.addBodySamples(1, 0, 1437);
84     // Test how reader/writer handles unmangled names.
85     StringRef MconstructName("_M_construct<char *>");
86     StringRef StringviewName("string_view<std::allocator<char> >");
87     BarSamples.addCalledTargetSamples(1, 0, MconstructName, 1000);
88     BarSamples.addCalledTargetSamples(1, 0, StringviewName, 437);
89 
90     Module M("my_module", Context);
91     FunctionType *fn_type =
92         FunctionType::get(Type::getVoidTy(Context), {}, false);
93     M.getOrInsertFunction(FooName, fn_type);
94     M.getOrInsertFunction(BarName, fn_type);
95 
96     StringMap<FunctionSamples> Profiles;
97     Profiles[FooName] = std::move(FooSamples);
98     Profiles[BarName] = std::move(BarSamples);
99 
100     std::error_code EC;
101     EC = Writer->write(Profiles);
102     ASSERT_TRUE(NoError(EC));
103 
104     Writer->getOutputStream().flush();
105 
106     readProfile(M, Profile);
107 
108     EC = Reader->read();
109     ASSERT_TRUE(NoError(EC));
110 
111     if (Remap) {
112       auto MemBuffer = llvm::MemoryBuffer::getMemBuffer(R"(
113         # Types 'int' and 'long' are equivalent
114         type i l
115         # Function names 'foo' and 'faux' are equivalent
116         name 3foo 4faux
117       )");
118       Reader.reset(new SampleProfileReaderItaniumRemapper(
119           std::move(MemBuffer), Context, std::move(Reader)));
120       FooName = "_Z4fauxi";
121       BarName = "_Z3barl";
122 
123       EC = Reader->read();
124       ASSERT_TRUE(NoError(EC));
125     }
126 
127     ASSERT_EQ(2u, Reader->getProfiles().size());
128 
129     FunctionSamples *ReadFooSamples = Reader->getSamplesFor(FooName);
130     ASSERT_TRUE(ReadFooSamples != nullptr);
131     ASSERT_EQ(7711u, ReadFooSamples->getTotalSamples());
132     ASSERT_EQ(610u, ReadFooSamples->getHeadSamples());
133 
134     FunctionSamples *ReadBarSamples = Reader->getSamplesFor(BarName);
135     ASSERT_TRUE(ReadBarSamples != nullptr);
136     ASSERT_EQ(20301u, ReadBarSamples->getTotalSamples());
137     ASSERT_EQ(1437u, ReadBarSamples->getHeadSamples());
138     ErrorOr<SampleRecord::CallTargetMap> CTMap =
139         ReadBarSamples->findCallTargetMapAt(1, 0);
140     ASSERT_FALSE(CTMap.getError());
141 
142     std::string MconstructGUID;
143     StringRef MconstructRep =
144         getRepInFormat(MconstructName, Format, MconstructGUID);
145     std::string StringviewGUID;
146     StringRef StringviewRep =
147         getRepInFormat(StringviewName, Format, StringviewGUID);
148     ASSERT_EQ(1000u, CTMap.get()[MconstructRep]);
149     ASSERT_EQ(437u, CTMap.get()[StringviewRep]);
150 
151     auto VerifySummary = [](ProfileSummary &Summary) mutable {
152       ASSERT_EQ(ProfileSummary::PSK_Sample, Summary.getKind());
153       ASSERT_EQ(123603u, Summary.getTotalCount());
154       ASSERT_EQ(6u, Summary.getNumCounts());
155       ASSERT_EQ(2u, Summary.getNumFunctions());
156       ASSERT_EQ(1437u, Summary.getMaxFunctionCount());
157       ASSERT_EQ(60351u, Summary.getMaxCount());
158 
159       uint32_t Cutoff = 800000;
160       auto Predicate = [&Cutoff](const ProfileSummaryEntry &PE) {
161         return PE.Cutoff == Cutoff;
162       };
163       std::vector<ProfileSummaryEntry> &Details = Summary.getDetailedSummary();
164       auto EightyPerc = find_if(Details, Predicate);
165       Cutoff = 900000;
166       auto NinetyPerc = find_if(Details, Predicate);
167       Cutoff = 950000;
168       auto NinetyFivePerc = find_if(Details, Predicate);
169       Cutoff = 990000;
170       auto NinetyNinePerc = find_if(Details, Predicate);
171       ASSERT_EQ(60000u, EightyPerc->MinCount);
172       ASSERT_EQ(60000u, NinetyPerc->MinCount);
173       ASSERT_EQ(60000u, NinetyFivePerc->MinCount);
174       ASSERT_EQ(610u, NinetyNinePerc->MinCount);
175     };
176 
177     ProfileSummary &Summary = Reader->getSummary();
178     VerifySummary(Summary);
179 
180     // Test that conversion of summary to and from Metadata works.
181     Metadata *MD = Summary.getMD(Context);
182     ASSERT_TRUE(MD);
183     ProfileSummary *PS = ProfileSummary::getFromMD(MD);
184     ASSERT_TRUE(PS);
185     VerifySummary(*PS);
186     delete PS;
187 
188     // Test that summary can be attached to and read back from module.
189     M.setProfileSummary(MD);
190     MD = M.getProfileSummary();
191     ASSERT_TRUE(MD);
192     PS = ProfileSummary::getFromMD(MD);
193     ASSERT_TRUE(PS);
194     VerifySummary(*PS);
195     delete PS;
196   }
197 };
198 
199 TEST_F(SampleProfTest, roundtrip_text_profile) {
200   testRoundTrip(SampleProfileFormat::SPF_Text, false);
201 }
202 
203 TEST_F(SampleProfTest, roundtrip_raw_binary_profile) {
204   testRoundTrip(SampleProfileFormat::SPF_Binary, false);
205 }
206 
207 TEST_F(SampleProfTest, roundtrip_compact_binary_profile) {
208   testRoundTrip(SampleProfileFormat::SPF_Compact_Binary, false);
209 }
210 
211 TEST_F(SampleProfTest, remap_text_profile) {
212   testRoundTrip(SampleProfileFormat::SPF_Text, true);
213 }
214 
215 TEST_F(SampleProfTest, remap_raw_binary_profile) {
216   testRoundTrip(SampleProfileFormat::SPF_Binary, true);
217 }
218 
219 TEST_F(SampleProfTest, sample_overflow_saturation) {
220   const uint64_t Max = std::numeric_limits<uint64_t>::max();
221   sampleprof_error Result;
222 
223   StringRef FooName("_Z3fooi");
224   FunctionSamples FooSamples;
225   Result = FooSamples.addTotalSamples(1);
226   ASSERT_EQ(Result, sampleprof_error::success);
227 
228   Result = FooSamples.addHeadSamples(1);
229   ASSERT_EQ(Result, sampleprof_error::success);
230 
231   Result = FooSamples.addBodySamples(10, 0, 1);
232   ASSERT_EQ(Result, sampleprof_error::success);
233 
234   Result = FooSamples.addTotalSamples(Max);
235   ASSERT_EQ(Result, sampleprof_error::counter_overflow);
236   ASSERT_EQ(FooSamples.getTotalSamples(), Max);
237 
238   Result = FooSamples.addHeadSamples(Max);
239   ASSERT_EQ(Result, sampleprof_error::counter_overflow);
240   ASSERT_EQ(FooSamples.getHeadSamples(), Max);
241 
242   Result = FooSamples.addBodySamples(10, 0, Max);
243   ASSERT_EQ(Result, sampleprof_error::counter_overflow);
244   ErrorOr<uint64_t> BodySamples = FooSamples.findSamplesAt(10, 0);
245   ASSERT_FALSE(BodySamples.getError());
246   ASSERT_EQ(BodySamples.get(), Max);
247 }
248 
249 } // end anonymous namespace
250