1 //===- llvm/unittest/DebugInfo/DWARFDebugInfoTest.cpp ---------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 
9 #include "DwarfGenerator.h"
10 #include "DwarfUtils.h"
11 #include "llvm/ADT/ArrayRef.h"
12 #include "llvm/ADT/Optional.h"
13 #include "llvm/ADT/SmallString.h"
14 #include "llvm/ADT/StringRef.h"
15 #include "llvm/ADT/Triple.h"
16 #include "llvm/BinaryFormat/Dwarf.h"
17 #include "llvm/CodeGen/AsmPrinter.h"
18 #include "llvm/DebugInfo/DWARF/DWARFCompileUnit.h"
19 #include "llvm/DebugInfo/DWARF/DWARFContext.h"
20 #include "llvm/DebugInfo/DWARF/DWARFDie.h"
21 #include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
22 #include "llvm/DebugInfo/DWARF/DWARFVerifier.h"
23 #include "llvm/MC/MCContext.h"
24 #include "llvm/MC/MCSectionELF.h"
25 #include "llvm/MC/MCStreamer.h"
26 #include "llvm/Object/ObjectFile.h"
27 #include "llvm/ObjectYAML/DWARFEmitter.h"
28 #include "llvm/Support/Error.h"
29 #include "llvm/Support/MemoryBuffer.h"
30 #include "llvm/Support/TargetRegistry.h"
31 #include "llvm/Support/TargetSelect.h"
32 #include "llvm/Testing/Support/Error.h"
33 #include "gtest/gtest.h"
34 #include <string>
35 
36 using namespace llvm;
37 using namespace dwarf;
38 using namespace utils;
39 
40 namespace {
41 
42 template <uint16_t Version, class AddrType, class RefAddrType>
43 void TestAllForms() {
44   Triple Triple = getDefaultTargetTripleForAddrSize(sizeof(AddrType));
45   if (!isConfigurationSupported(Triple))
46     return;
47 
48   // Test that we can decode all DW_FORM values correctly.
49   const AddrType AddrValue = (AddrType)0x0123456789abcdefULL;
50   const uint8_t BlockData[] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 0};
51   const uint32_t BlockSize = sizeof(BlockData);
52   const RefAddrType RefAddr = 0x12345678;
53   const uint8_t Data1 = 0x01U;
54   const uint16_t Data2 = 0x2345U;
55   const uint32_t Data4 = 0x6789abcdU;
56   const uint64_t Data8 = 0x0011223344556677ULL;
57   const uint64_t Data8_2 = 0xAABBCCDDEEFF0011ULL;
58   const uint8_t Data16[16] = {1, 2,  3,  4,  5,  6,  7,  8,
59                               9, 10, 11, 12, 13, 14, 15, 16};
60   const int64_t SData = INT64_MIN;
61   const int64_t ICSData = INT64_MAX; // DW_FORM_implicit_const SData
62   const uint64_t UData[] = {UINT64_MAX - 1, UINT64_MAX - 2, UINT64_MAX - 3,
63                             UINT64_MAX - 4, UINT64_MAX - 5, UINT64_MAX - 6,
64                             UINT64_MAX - 7, UINT64_MAX - 8, UINT64_MAX - 9};
65 #define UDATA_1 18446744073709551614ULL
66   const uint32_t Dwarf32Values[] = {1, 2, 3, 4, 5, 6, 7, 8};
67   const char *StringValue = "Hello";
68   const char *StrpValue = "World";
69   const char *StrxValue = "Indexed";
70   const char *Strx1Value = "Indexed1";
71   const char *Strx2Value = "Indexed2";
72   const char *Strx3Value = "Indexed3";
73   const char *Strx4Value = "Indexed4";
74 
75   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
76   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
77   dwarfgen::Generator *DG = ExpectedDG.get().get();
78   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
79   dwarfgen::DIE CUDie = CU.getUnitDIE();
80 
81   if (Version >= 5)
82     CUDie.addStrOffsetsBaseAttribute();
83 
84   uint16_t Attr = DW_AT_lo_user;
85 
86   //----------------------------------------------------------------------
87   // Test address forms
88   //----------------------------------------------------------------------
89   const auto Attr_DW_FORM_addr = static_cast<dwarf::Attribute>(Attr++);
90   CUDie.addAttribute(Attr_DW_FORM_addr, DW_FORM_addr, AddrValue);
91 
92   //----------------------------------------------------------------------
93   // Test block forms
94   //----------------------------------------------------------------------
95   const auto Attr_DW_FORM_block = static_cast<dwarf::Attribute>(Attr++);
96   CUDie.addAttribute(Attr_DW_FORM_block, DW_FORM_block, BlockData, BlockSize);
97 
98   const auto Attr_DW_FORM_block1 = static_cast<dwarf::Attribute>(Attr++);
99   CUDie.addAttribute(Attr_DW_FORM_block1, DW_FORM_block1, BlockData, BlockSize);
100 
101   const auto Attr_DW_FORM_block2 = static_cast<dwarf::Attribute>(Attr++);
102   CUDie.addAttribute(Attr_DW_FORM_block2, DW_FORM_block2, BlockData, BlockSize);
103 
104   const auto Attr_DW_FORM_block4 = static_cast<dwarf::Attribute>(Attr++);
105   CUDie.addAttribute(Attr_DW_FORM_block4, DW_FORM_block4, BlockData, BlockSize);
106 
107   // We handle data16 as a block form.
108   const auto Attr_DW_FORM_data16 = static_cast<dwarf::Attribute>(Attr++);
109   if (Version >= 5)
110     CUDie.addAttribute(Attr_DW_FORM_data16, DW_FORM_data16, Data16, 16);
111 
112   //----------------------------------------------------------------------
113   // Test data forms
114   //----------------------------------------------------------------------
115   const auto Attr_DW_FORM_data1 = static_cast<dwarf::Attribute>(Attr++);
116   CUDie.addAttribute(Attr_DW_FORM_data1, DW_FORM_data1, Data1);
117 
118   const auto Attr_DW_FORM_data2 = static_cast<dwarf::Attribute>(Attr++);
119   CUDie.addAttribute(Attr_DW_FORM_data2, DW_FORM_data2, Data2);
120 
121   const auto Attr_DW_FORM_data4 = static_cast<dwarf::Attribute>(Attr++);
122   CUDie.addAttribute(Attr_DW_FORM_data4, DW_FORM_data4, Data4);
123 
124   const auto Attr_DW_FORM_data8 = static_cast<dwarf::Attribute>(Attr++);
125   CUDie.addAttribute(Attr_DW_FORM_data8, DW_FORM_data8, Data8);
126 
127   //----------------------------------------------------------------------
128   // Test string forms
129   //----------------------------------------------------------------------
130   const auto Attr_DW_FORM_string = static_cast<dwarf::Attribute>(Attr++);
131   CUDie.addAttribute(Attr_DW_FORM_string, DW_FORM_string, StringValue);
132 
133   const auto Attr_DW_FORM_strx = static_cast<dwarf::Attribute>(Attr++);
134   const auto Attr_DW_FORM_strx1 = static_cast<dwarf::Attribute>(Attr++);
135   const auto Attr_DW_FORM_strx2 = static_cast<dwarf::Attribute>(Attr++);
136   const auto Attr_DW_FORM_strx3 = static_cast<dwarf::Attribute>(Attr++);
137   const auto Attr_DW_FORM_strx4 = static_cast<dwarf::Attribute>(Attr++);
138   if (Version >= 5) {
139     CUDie.addAttribute(Attr_DW_FORM_strx, DW_FORM_strx, StrxValue);
140     CUDie.addAttribute(Attr_DW_FORM_strx1, DW_FORM_strx1, Strx1Value);
141     CUDie.addAttribute(Attr_DW_FORM_strx2, DW_FORM_strx2, Strx2Value);
142     CUDie.addAttribute(Attr_DW_FORM_strx3, DW_FORM_strx3, Strx3Value);
143     CUDie.addAttribute(Attr_DW_FORM_strx4, DW_FORM_strx4, Strx4Value);
144   }
145 
146   const auto Attr_DW_FORM_strp = static_cast<dwarf::Attribute>(Attr++);
147   CUDie.addAttribute(Attr_DW_FORM_strp, DW_FORM_strp, StrpValue);
148 
149   //----------------------------------------------------------------------
150   // Test reference forms
151   //----------------------------------------------------------------------
152   const auto Attr_DW_FORM_ref_addr = static_cast<dwarf::Attribute>(Attr++);
153   CUDie.addAttribute(Attr_DW_FORM_ref_addr, DW_FORM_ref_addr, RefAddr);
154 
155   const auto Attr_DW_FORM_ref1 = static_cast<dwarf::Attribute>(Attr++);
156   CUDie.addAttribute(Attr_DW_FORM_ref1, DW_FORM_ref1, Data1);
157 
158   const auto Attr_DW_FORM_ref2 = static_cast<dwarf::Attribute>(Attr++);
159   CUDie.addAttribute(Attr_DW_FORM_ref2, DW_FORM_ref2, Data2);
160 
161   const auto Attr_DW_FORM_ref4 = static_cast<dwarf::Attribute>(Attr++);
162   CUDie.addAttribute(Attr_DW_FORM_ref4, DW_FORM_ref4, Data4);
163 
164   const auto Attr_DW_FORM_ref8 = static_cast<dwarf::Attribute>(Attr++);
165   CUDie.addAttribute(Attr_DW_FORM_ref8, DW_FORM_ref8, Data8);
166 
167   const auto Attr_DW_FORM_ref_sig8 = static_cast<dwarf::Attribute>(Attr++);
168   if (Version >= 4)
169     CUDie.addAttribute(Attr_DW_FORM_ref_sig8, DW_FORM_ref_sig8, Data8_2);
170 
171   const auto Attr_DW_FORM_ref_udata = static_cast<dwarf::Attribute>(Attr++);
172   CUDie.addAttribute(Attr_DW_FORM_ref_udata, DW_FORM_ref_udata, UData[0]);
173 
174   //----------------------------------------------------------------------
175   // Test flag forms
176   //----------------------------------------------------------------------
177   const auto Attr_DW_FORM_flag_true = static_cast<dwarf::Attribute>(Attr++);
178   CUDie.addAttribute(Attr_DW_FORM_flag_true, DW_FORM_flag, true);
179 
180   const auto Attr_DW_FORM_flag_false = static_cast<dwarf::Attribute>(Attr++);
181   CUDie.addAttribute(Attr_DW_FORM_flag_false, DW_FORM_flag, false);
182 
183   const auto Attr_DW_FORM_flag_present = static_cast<dwarf::Attribute>(Attr++);
184   if (Version >= 4)
185     CUDie.addAttribute(Attr_DW_FORM_flag_present, DW_FORM_flag_present);
186 
187   //----------------------------------------------------------------------
188   // Test SLEB128 based forms
189   //----------------------------------------------------------------------
190   const auto Attr_DW_FORM_sdata = static_cast<dwarf::Attribute>(Attr++);
191   CUDie.addAttribute(Attr_DW_FORM_sdata, DW_FORM_sdata, SData);
192 
193   const auto Attr_DW_FORM_implicit_const =
194     static_cast<dwarf::Attribute>(Attr++);
195   if (Version >= 5)
196     CUDie.addAttribute(Attr_DW_FORM_implicit_const, DW_FORM_implicit_const,
197                        ICSData);
198 
199   //----------------------------------------------------------------------
200   // Test ULEB128 based forms
201   //----------------------------------------------------------------------
202   const auto Attr_DW_FORM_udata = static_cast<dwarf::Attribute>(Attr++);
203   CUDie.addAttribute(Attr_DW_FORM_udata, DW_FORM_udata, UData[0]);
204 
205   //----------------------------------------------------------------------
206   // Test DWARF32/DWARF64 forms
207   //----------------------------------------------------------------------
208   const auto Attr_DW_FORM_GNU_ref_alt = static_cast<dwarf::Attribute>(Attr++);
209   CUDie.addAttribute(Attr_DW_FORM_GNU_ref_alt, DW_FORM_GNU_ref_alt,
210                      Dwarf32Values[0]);
211 
212   const auto Attr_DW_FORM_sec_offset = static_cast<dwarf::Attribute>(Attr++);
213   if (Version >= 4)
214     CUDie.addAttribute(Attr_DW_FORM_sec_offset, DW_FORM_sec_offset,
215                        Dwarf32Values[1]);
216 
217   //----------------------------------------------------------------------
218   // Add an address at the end to make sure we can decode this value
219   //----------------------------------------------------------------------
220   const auto Attr_Last = static_cast<dwarf::Attribute>(Attr++);
221   CUDie.addAttribute(Attr_Last, DW_FORM_addr, AddrValue);
222 
223   //----------------------------------------------------------------------
224   // Generate the DWARF
225   //----------------------------------------------------------------------
226   StringRef FileBytes = DG->generate();
227   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
228   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
229   EXPECT_TRUE((bool)Obj);
230   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
231   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
232   EXPECT_EQ(NumCUs, 1u);
233   DWARFCompileUnit *U =
234       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
235   auto DieDG = U->getUnitDIE(false);
236   EXPECT_TRUE(DieDG.isValid());
237 
238   //----------------------------------------------------------------------
239   // Test address forms
240   //----------------------------------------------------------------------
241   EXPECT_EQ(AddrValue, toAddress(DieDG.find(Attr_DW_FORM_addr), 0));
242 
243   //----------------------------------------------------------------------
244   // Test block forms
245   //----------------------------------------------------------------------
246   Optional<DWARFFormValue> FormValue;
247   ArrayRef<uint8_t> ExtractedBlockData;
248   Optional<ArrayRef<uint8_t>> BlockDataOpt;
249 
250   FormValue = DieDG.find(Attr_DW_FORM_block);
251   EXPECT_TRUE((bool)FormValue);
252   BlockDataOpt = FormValue->getAsBlock();
253   EXPECT_TRUE(BlockDataOpt.hasValue());
254   ExtractedBlockData = BlockDataOpt.getValue();
255   EXPECT_EQ(ExtractedBlockData.size(), BlockSize);
256   EXPECT_TRUE(memcmp(ExtractedBlockData.data(), BlockData, BlockSize) == 0);
257 
258   FormValue = DieDG.find(Attr_DW_FORM_block1);
259   EXPECT_TRUE((bool)FormValue);
260   BlockDataOpt = FormValue->getAsBlock();
261   EXPECT_TRUE(BlockDataOpt.hasValue());
262   ExtractedBlockData = BlockDataOpt.getValue();
263   EXPECT_EQ(ExtractedBlockData.size(), BlockSize);
264   EXPECT_TRUE(memcmp(ExtractedBlockData.data(), BlockData, BlockSize) == 0);
265 
266   FormValue = DieDG.find(Attr_DW_FORM_block2);
267   EXPECT_TRUE((bool)FormValue);
268   BlockDataOpt = FormValue->getAsBlock();
269   EXPECT_TRUE(BlockDataOpt.hasValue());
270   ExtractedBlockData = BlockDataOpt.getValue();
271   EXPECT_EQ(ExtractedBlockData.size(), BlockSize);
272   EXPECT_TRUE(memcmp(ExtractedBlockData.data(), BlockData, BlockSize) == 0);
273 
274   FormValue = DieDG.find(Attr_DW_FORM_block4);
275   EXPECT_TRUE((bool)FormValue);
276   BlockDataOpt = FormValue->getAsBlock();
277   EXPECT_TRUE(BlockDataOpt.hasValue());
278   ExtractedBlockData = BlockDataOpt.getValue();
279   EXPECT_EQ(ExtractedBlockData.size(), BlockSize);
280   EXPECT_TRUE(memcmp(ExtractedBlockData.data(), BlockData, BlockSize) == 0);
281 
282   // Data16 is handled like a block.
283   if (Version >= 5) {
284     FormValue = DieDG.find(Attr_DW_FORM_data16);
285     EXPECT_TRUE((bool)FormValue);
286     BlockDataOpt = FormValue->getAsBlock();
287     EXPECT_TRUE(BlockDataOpt.hasValue());
288     ExtractedBlockData = BlockDataOpt.getValue();
289     EXPECT_EQ(ExtractedBlockData.size(), 16u);
290     EXPECT_TRUE(memcmp(ExtractedBlockData.data(), Data16, 16) == 0);
291   }
292 
293   //----------------------------------------------------------------------
294   // Test data forms
295   //----------------------------------------------------------------------
296   EXPECT_EQ(Data1, toUnsigned(DieDG.find(Attr_DW_FORM_data1), 0));
297   EXPECT_EQ(Data2, toUnsigned(DieDG.find(Attr_DW_FORM_data2), 0));
298   EXPECT_EQ(Data4, toUnsigned(DieDG.find(Attr_DW_FORM_data4), 0));
299   EXPECT_EQ(Data8, toUnsigned(DieDG.find(Attr_DW_FORM_data8), 0));
300 
301   //----------------------------------------------------------------------
302   // Test string forms
303   //----------------------------------------------------------------------
304   auto ExtractedStringValue = toString(DieDG.find(Attr_DW_FORM_string));
305   EXPECT_TRUE((bool)ExtractedStringValue);
306   EXPECT_STREQ(StringValue, *ExtractedStringValue);
307 
308   if (Version >= 5) {
309     auto ExtractedStrxValue = toString(DieDG.find(Attr_DW_FORM_strx));
310     EXPECT_TRUE((bool)ExtractedStrxValue);
311     EXPECT_STREQ(StrxValue, *ExtractedStrxValue);
312 
313     auto ExtractedStrx1Value = toString(DieDG.find(Attr_DW_FORM_strx1));
314     EXPECT_TRUE((bool)ExtractedStrx1Value);
315     EXPECT_STREQ(Strx1Value, *ExtractedStrx1Value);
316 
317     auto ExtractedStrx2Value = toString(DieDG.find(Attr_DW_FORM_strx2));
318     EXPECT_TRUE((bool)ExtractedStrx2Value);
319     EXPECT_STREQ(Strx2Value, *ExtractedStrx2Value);
320 
321     auto ExtractedStrx3Value = toString(DieDG.find(Attr_DW_FORM_strx3));
322     EXPECT_TRUE((bool)ExtractedStrx3Value);
323     EXPECT_STREQ(Strx3Value, *ExtractedStrx3Value);
324 
325     auto ExtractedStrx4Value = toString(DieDG.find(Attr_DW_FORM_strx4));
326     EXPECT_TRUE((bool)ExtractedStrx4Value);
327     EXPECT_STREQ(Strx4Value, *ExtractedStrx4Value);
328   }
329 
330   auto ExtractedStrpValue = toString(DieDG.find(Attr_DW_FORM_strp));
331   EXPECT_TRUE((bool)ExtractedStrpValue);
332   EXPECT_STREQ(StrpValue, *ExtractedStrpValue);
333 
334   //----------------------------------------------------------------------
335   // Test reference forms
336   //----------------------------------------------------------------------
337   EXPECT_EQ(RefAddr, toReference(DieDG.find(Attr_DW_FORM_ref_addr), 0));
338   EXPECT_EQ(Data1, toReference(DieDG.find(Attr_DW_FORM_ref1), 0));
339   EXPECT_EQ(Data2, toReference(DieDG.find(Attr_DW_FORM_ref2), 0));
340   EXPECT_EQ(Data4, toReference(DieDG.find(Attr_DW_FORM_ref4), 0));
341   EXPECT_EQ(Data8, toReference(DieDG.find(Attr_DW_FORM_ref8), 0));
342   if (Version >= 4) {
343     EXPECT_EQ(Data8_2, toReference(DieDG.find(Attr_DW_FORM_ref_sig8), 0));
344   }
345   EXPECT_EQ(UData[0], toReference(DieDG.find(Attr_DW_FORM_ref_udata), 0));
346 
347   //----------------------------------------------------------------------
348   // Test flag forms
349   //----------------------------------------------------------------------
350   EXPECT_EQ(1ULL, toUnsigned(DieDG.find(Attr_DW_FORM_flag_true), 0));
351   EXPECT_EQ(0ULL, toUnsigned(DieDG.find(Attr_DW_FORM_flag_false), 1));
352   if (Version >= 4) {
353     EXPECT_EQ(1ULL, toUnsigned(DieDG.find(Attr_DW_FORM_flag_present), 0));
354   }
355 
356   //----------------------------------------------------------------------
357   // Test SLEB128 based forms
358   //----------------------------------------------------------------------
359   EXPECT_EQ(SData, toSigned(DieDG.find(Attr_DW_FORM_sdata), 0));
360   if (Version >= 5) {
361     EXPECT_EQ(ICSData, toSigned(DieDG.find(Attr_DW_FORM_implicit_const), 0));
362   }
363 
364   //----------------------------------------------------------------------
365   // Test ULEB128 based forms
366   //----------------------------------------------------------------------
367   EXPECT_EQ(UData[0], toUnsigned(DieDG.find(Attr_DW_FORM_udata), 0));
368 
369   //----------------------------------------------------------------------
370   // Test DWARF32/DWARF64 forms
371   //----------------------------------------------------------------------
372   EXPECT_EQ(Dwarf32Values[0],
373             toReference(DieDG.find(Attr_DW_FORM_GNU_ref_alt), 0));
374   if (Version >= 4) {
375     EXPECT_EQ(Dwarf32Values[1],
376               toSectionOffset(DieDG.find(Attr_DW_FORM_sec_offset), 0));
377   }
378 
379   //----------------------------------------------------------------------
380   // Add an address at the end to make sure we can decode this value
381   //----------------------------------------------------------------------
382   EXPECT_EQ(AddrValue, toAddress(DieDG.find(Attr_Last), 0));
383 }
384 
385 TEST(DWARFDebugInfo, TestDWARF32Version2Addr4AllForms) {
386   // Test that we can decode all forms for DWARF32, version 2, with 4 byte
387   // addresses.
388   typedef uint32_t AddrType;
389   // DW_FORM_ref_addr are the same as the address type in DWARF32 version 2.
390   typedef AddrType RefAddrType;
391   TestAllForms<2, AddrType, RefAddrType>();
392 }
393 
394 TEST(DWARFDebugInfo, TestDWARF32Version2Addr8AllForms) {
395   // Test that we can decode all forms for DWARF32, version 2, with 4 byte
396   // addresses.
397   typedef uint64_t AddrType;
398   // DW_FORM_ref_addr are the same as the address type in DWARF32 version 2.
399   typedef AddrType RefAddrType;
400   TestAllForms<2, AddrType, RefAddrType>();
401 }
402 
403 TEST(DWARFDebugInfo, TestDWARF32Version3Addr4AllForms) {
404   // Test that we can decode all forms for DWARF32, version 3, with 4 byte
405   // addresses.
406   typedef uint32_t AddrType;
407   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later.
408   typedef uint32_t RefAddrType;
409   TestAllForms<3, AddrType, RefAddrType>();
410 }
411 
412 TEST(DWARFDebugInfo, TestDWARF32Version3Addr8AllForms) {
413   // Test that we can decode all forms for DWARF32, version 3, with 8 byte
414   // addresses.
415   typedef uint64_t AddrType;
416   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later
417   typedef uint32_t RefAddrType;
418   TestAllForms<3, AddrType, RefAddrType>();
419 }
420 
421 TEST(DWARFDebugInfo, TestDWARF32Version4Addr4AllForms) {
422   // Test that we can decode all forms for DWARF32, version 4, with 4 byte
423   // addresses.
424   typedef uint32_t AddrType;
425   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later
426   typedef uint32_t RefAddrType;
427   TestAllForms<4, AddrType, RefAddrType>();
428 }
429 
430 TEST(DWARFDebugInfo, TestDWARF32Version4Addr8AllForms) {
431   // Test that we can decode all forms for DWARF32, version 4, with 8 byte
432   // addresses.
433   typedef uint64_t AddrType;
434   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later
435   typedef uint32_t RefAddrType;
436   TestAllForms<4, AddrType, RefAddrType>();
437 }
438 
439 TEST(DWARFDebugInfo, TestDWARF32Version5Addr4AllForms) {
440   // Test that we can decode all forms for DWARF32, version 5, with 4 byte
441   // addresses.
442   typedef uint32_t AddrType;
443   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later
444   typedef uint32_t RefAddrType;
445   TestAllForms<5, AddrType, RefAddrType>();
446 }
447 
448 TEST(DWARFDebugInfo, TestDWARF32Version5Addr8AllForms) {
449   // Test that we can decode all forms for DWARF32, version 5, with 8 byte
450   // addresses.
451   typedef uint64_t AddrType;
452   // DW_FORM_ref_addr are 4 bytes in DWARF32 for version 3 and later
453   typedef uint32_t RefAddrType;
454   TestAllForms<5, AddrType, RefAddrType>();
455 }
456 
457 template <uint16_t Version, class AddrType> void TestChildren() {
458   Triple Triple = getDefaultTargetTripleForAddrSize(sizeof(AddrType));
459   if (!isConfigurationSupported(Triple))
460     return;
461 
462   // Test that we can decode DW_FORM_ref_addr values correctly in DWARF 2 with
463   // 4 byte addresses. DW_FORM_ref_addr values should be 4 bytes when using
464   // 8 byte addresses.
465 
466   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
467   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
468   dwarfgen::Generator *DG = ExpectedDG.get().get();
469   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
470   dwarfgen::DIE CUDie = CU.getUnitDIE();
471 
472   CUDie.addAttribute(DW_AT_name, DW_FORM_strp, "/tmp/main.c");
473   CUDie.addAttribute(DW_AT_language, DW_FORM_data2, DW_LANG_C);
474 
475   dwarfgen::DIE SubprogramDie = CUDie.addChild(DW_TAG_subprogram);
476   SubprogramDie.addAttribute(DW_AT_name, DW_FORM_strp, "main");
477   SubprogramDie.addAttribute(DW_AT_low_pc, DW_FORM_addr, 0x1000U);
478   SubprogramDie.addAttribute(DW_AT_high_pc, DW_FORM_addr, 0x2000U);
479 
480   dwarfgen::DIE IntDie = CUDie.addChild(DW_TAG_base_type);
481   IntDie.addAttribute(DW_AT_name, DW_FORM_strp, "int");
482   IntDie.addAttribute(DW_AT_encoding, DW_FORM_data1, DW_ATE_signed);
483   IntDie.addAttribute(DW_AT_byte_size, DW_FORM_data1, 4);
484 
485   dwarfgen::DIE ArgcDie = SubprogramDie.addChild(DW_TAG_formal_parameter);
486   ArgcDie.addAttribute(DW_AT_name, DW_FORM_strp, "argc");
487   // ArgcDie.addAttribute(DW_AT_type, DW_FORM_ref4, IntDie);
488   ArgcDie.addAttribute(DW_AT_type, DW_FORM_ref_addr, IntDie);
489 
490   StringRef FileBytes = DG->generate();
491   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
492   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
493   EXPECT_TRUE((bool)Obj);
494   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
495 
496   // Verify the number of compile units is correct.
497   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
498   EXPECT_EQ(NumCUs, 1u);
499   DWARFCompileUnit *U =
500       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
501 
502   // Get the compile unit DIE is valid.
503   auto DieDG = U->getUnitDIE(false);
504   EXPECT_TRUE(DieDG.isValid());
505 
506   // Verify the first child of the compile unit DIE is our subprogram.
507   auto SubprogramDieDG = DieDG.getFirstChild();
508   EXPECT_TRUE(SubprogramDieDG.isValid());
509   EXPECT_EQ(SubprogramDieDG.getTag(), DW_TAG_subprogram);
510 
511   // Verify the first child of the subprogram is our formal parameter.
512   auto ArgcDieDG = SubprogramDieDG.getFirstChild();
513   EXPECT_TRUE(ArgcDieDG.isValid());
514   EXPECT_EQ(ArgcDieDG.getTag(), DW_TAG_formal_parameter);
515 
516   // Verify our formal parameter has a NULL tag sibling.
517   auto NullDieDG = ArgcDieDG.getSibling();
518   EXPECT_TRUE(NullDieDG.isValid());
519   if (NullDieDG) {
520     EXPECT_EQ(NullDieDG.getTag(), DW_TAG_null);
521     EXPECT_TRUE(!NullDieDG.getSibling().isValid());
522     EXPECT_TRUE(!NullDieDG.getFirstChild().isValid());
523   }
524 
525   // Verify the sibling of our subprogram is our integer base type.
526   auto IntDieDG = SubprogramDieDG.getSibling();
527   EXPECT_TRUE(IntDieDG.isValid());
528   EXPECT_EQ(IntDieDG.getTag(), DW_TAG_base_type);
529 
530   // Verify the sibling of our subprogram is our integer base is a NULL tag.
531   NullDieDG = IntDieDG.getSibling();
532   EXPECT_TRUE(NullDieDG.isValid());
533   if (NullDieDG) {
534     EXPECT_EQ(NullDieDG.getTag(), DW_TAG_null);
535     EXPECT_TRUE(!NullDieDG.getSibling().isValid());
536     EXPECT_TRUE(!NullDieDG.getFirstChild().isValid());
537   }
538 
539   // Verify the previous sibling of our subprogram is our integer base type.
540   IntDieDG = NullDieDG.getPreviousSibling();
541   EXPECT_TRUE(IntDieDG.isValid());
542   EXPECT_EQ(IntDieDG.getTag(), DW_TAG_base_type);
543 }
544 
545 TEST(DWARFDebugInfo, TestDWARF32Version2Addr4Children) {
546   // Test that we can decode all forms for DWARF32, version 2, with 4 byte
547   // addresses.
548   typedef uint32_t AddrType;
549   TestChildren<2, AddrType>();
550 }
551 
552 TEST(DWARFDebugInfo, TestDWARF32Version2Addr8Children) {
553   // Test that we can decode all forms for DWARF32, version 2, with 8 byte
554   // addresses.
555   typedef uint64_t AddrType;
556   TestChildren<2, AddrType>();
557 }
558 
559 TEST(DWARFDebugInfo, TestDWARF32Version3Addr4Children) {
560   // Test that we can decode all forms for DWARF32, version 3, with 4 byte
561   // addresses.
562   typedef uint32_t AddrType;
563   TestChildren<3, AddrType>();
564 }
565 
566 TEST(DWARFDebugInfo, TestDWARF32Version3Addr8Children) {
567   // Test that we can decode all forms for DWARF32, version 3, with 8 byte
568   // addresses.
569   typedef uint64_t AddrType;
570   TestChildren<3, AddrType>();
571 }
572 
573 TEST(DWARFDebugInfo, TestDWARF32Version4Addr4Children) {
574   // Test that we can decode all forms for DWARF32, version 4, with 4 byte
575   // addresses.
576   typedef uint32_t AddrType;
577   TestChildren<4, AddrType>();
578 }
579 
580 TEST(DWARFDebugInfo, TestDWARF32Version4Addr8Children) {
581   // Test that we can decode all forms for DWARF32, version 4, with 8 byte
582   // addresses.
583   typedef uint64_t AddrType;
584   TestChildren<4, AddrType>();
585 }
586 
587 template <uint16_t Version, class AddrType> void TestReferences() {
588   Triple Triple = getDefaultTargetTripleForAddrSize(sizeof(AddrType));
589   if (!isConfigurationSupported(Triple))
590     return;
591 
592   // Test that we can decode DW_FORM_refXXX values correctly in DWARF.
593   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
594   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
595   dwarfgen::Generator *DG = ExpectedDG.get().get();
596   dwarfgen::CompileUnit &CU1 = DG->addCompileUnit();
597   dwarfgen::CompileUnit &CU2 = DG->addCompileUnit();
598 
599   dwarfgen::DIE CU1Die = CU1.getUnitDIE();
600   CU1Die.addAttribute(DW_AT_name, DW_FORM_strp, "/tmp/main.c");
601   CU1Die.addAttribute(DW_AT_language, DW_FORM_data2, DW_LANG_C);
602 
603   dwarfgen::DIE CU1TypeDie = CU1Die.addChild(DW_TAG_base_type);
604   CU1TypeDie.addAttribute(DW_AT_name, DW_FORM_strp, "int");
605   CU1TypeDie.addAttribute(DW_AT_encoding, DW_FORM_data1, DW_ATE_signed);
606   CU1TypeDie.addAttribute(DW_AT_byte_size, DW_FORM_data1, 4);
607 
608   dwarfgen::DIE CU1Ref1Die = CU1Die.addChild(DW_TAG_variable);
609   CU1Ref1Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU1Ref1");
610   CU1Ref1Die.addAttribute(DW_AT_type, DW_FORM_ref1, CU1TypeDie);
611 
612   dwarfgen::DIE CU1Ref2Die = CU1Die.addChild(DW_TAG_variable);
613   CU1Ref2Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU1Ref2");
614   CU1Ref2Die.addAttribute(DW_AT_type, DW_FORM_ref2, CU1TypeDie);
615 
616   dwarfgen::DIE CU1Ref4Die = CU1Die.addChild(DW_TAG_variable);
617   CU1Ref4Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU1Ref4");
618   CU1Ref4Die.addAttribute(DW_AT_type, DW_FORM_ref4, CU1TypeDie);
619 
620   dwarfgen::DIE CU1Ref8Die = CU1Die.addChild(DW_TAG_variable);
621   CU1Ref8Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU1Ref8");
622   CU1Ref8Die.addAttribute(DW_AT_type, DW_FORM_ref8, CU1TypeDie);
623 
624   dwarfgen::DIE CU1RefAddrDie = CU1Die.addChild(DW_TAG_variable);
625   CU1RefAddrDie.addAttribute(DW_AT_name, DW_FORM_strp, "CU1RefAddr");
626   CU1RefAddrDie.addAttribute(DW_AT_type, DW_FORM_ref_addr, CU1TypeDie);
627 
628   dwarfgen::DIE CU2Die = CU2.getUnitDIE();
629   CU2Die.addAttribute(DW_AT_name, DW_FORM_strp, "/tmp/foo.c");
630   CU2Die.addAttribute(DW_AT_language, DW_FORM_data2, DW_LANG_C);
631 
632   dwarfgen::DIE CU2TypeDie = CU2Die.addChild(DW_TAG_base_type);
633   CU2TypeDie.addAttribute(DW_AT_name, DW_FORM_strp, "float");
634   CU2TypeDie.addAttribute(DW_AT_encoding, DW_FORM_data1, DW_ATE_float);
635   CU2TypeDie.addAttribute(DW_AT_byte_size, DW_FORM_data1, 4);
636 
637   dwarfgen::DIE CU2Ref1Die = CU2Die.addChild(DW_TAG_variable);
638   CU2Ref1Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU2Ref1");
639   CU2Ref1Die.addAttribute(DW_AT_type, DW_FORM_ref1, CU2TypeDie);
640 
641   dwarfgen::DIE CU2Ref2Die = CU2Die.addChild(DW_TAG_variable);
642   CU2Ref2Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU2Ref2");
643   CU2Ref2Die.addAttribute(DW_AT_type, DW_FORM_ref2, CU2TypeDie);
644 
645   dwarfgen::DIE CU2Ref4Die = CU2Die.addChild(DW_TAG_variable);
646   CU2Ref4Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU2Ref4");
647   CU2Ref4Die.addAttribute(DW_AT_type, DW_FORM_ref4, CU2TypeDie);
648 
649   dwarfgen::DIE CU2Ref8Die = CU2Die.addChild(DW_TAG_variable);
650   CU2Ref8Die.addAttribute(DW_AT_name, DW_FORM_strp, "CU2Ref8");
651   CU2Ref8Die.addAttribute(DW_AT_type, DW_FORM_ref8, CU2TypeDie);
652 
653   dwarfgen::DIE CU2RefAddrDie = CU2Die.addChild(DW_TAG_variable);
654   CU2RefAddrDie.addAttribute(DW_AT_name, DW_FORM_strp, "CU2RefAddr");
655   CU2RefAddrDie.addAttribute(DW_AT_type, DW_FORM_ref_addr, CU2TypeDie);
656 
657   // Refer to a type in CU1 from CU2
658   dwarfgen::DIE CU2ToCU1RefAddrDie = CU2Die.addChild(DW_TAG_variable);
659   CU2ToCU1RefAddrDie.addAttribute(DW_AT_name, DW_FORM_strp, "CU2ToCU1RefAddr");
660   CU2ToCU1RefAddrDie.addAttribute(DW_AT_type, DW_FORM_ref_addr, CU1TypeDie);
661 
662   // Refer to a type in CU2 from CU1
663   dwarfgen::DIE CU1ToCU2RefAddrDie = CU1Die.addChild(DW_TAG_variable);
664   CU1ToCU2RefAddrDie.addAttribute(DW_AT_name, DW_FORM_strp, "CU1ToCU2RefAddr");
665   CU1ToCU2RefAddrDie.addAttribute(DW_AT_type, DW_FORM_ref_addr, CU2TypeDie);
666 
667   StringRef FileBytes = DG->generate();
668   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
669   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
670   EXPECT_TRUE((bool)Obj);
671   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
672 
673   // Verify the number of compile units is correct.
674   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
675   EXPECT_EQ(NumCUs, 2u);
676   DWARFCompileUnit *U1 =
677       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
678   DWARFCompileUnit *U2 =
679       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(1));
680 
681   // Get the compile unit DIE is valid.
682   auto Unit1DieDG = U1->getUnitDIE(false);
683   EXPECT_TRUE(Unit1DieDG.isValid());
684 
685   auto Unit2DieDG = U2->getUnitDIE(false);
686   EXPECT_TRUE(Unit2DieDG.isValid());
687 
688   // Verify the first child of the compile unit 1 DIE is our int base type.
689   auto CU1TypeDieDG = Unit1DieDG.getFirstChild();
690   EXPECT_TRUE(CU1TypeDieDG.isValid());
691   EXPECT_EQ(CU1TypeDieDG.getTag(), DW_TAG_base_type);
692   EXPECT_EQ(DW_ATE_signed, toUnsigned(CU1TypeDieDG.find(DW_AT_encoding), 0));
693 
694   // Verify the first child of the compile unit 2 DIE is our float base type.
695   auto CU2TypeDieDG = Unit2DieDG.getFirstChild();
696   EXPECT_TRUE(CU2TypeDieDG.isValid());
697   EXPECT_EQ(CU2TypeDieDG.getTag(), DW_TAG_base_type);
698   EXPECT_EQ(DW_ATE_float, toUnsigned(CU2TypeDieDG.find(DW_AT_encoding), 0));
699 
700   // Verify the sibling of the base type DIE is our Ref1 DIE and that its
701   // DW_AT_type points to our base type DIE.
702   auto CU1Ref1DieDG = CU1TypeDieDG.getSibling();
703   EXPECT_TRUE(CU1Ref1DieDG.isValid());
704   EXPECT_EQ(CU1Ref1DieDG.getTag(), DW_TAG_variable);
705   EXPECT_EQ(CU1TypeDieDG.getOffset(),
706             toReference(CU1Ref1DieDG.find(DW_AT_type), -1ULL));
707   // Verify the sibling is our Ref2 DIE and that its DW_AT_type points to our
708   // base type DIE in CU1.
709   auto CU1Ref2DieDG = CU1Ref1DieDG.getSibling();
710   EXPECT_TRUE(CU1Ref2DieDG.isValid());
711   EXPECT_EQ(CU1Ref2DieDG.getTag(), DW_TAG_variable);
712   EXPECT_EQ(CU1TypeDieDG.getOffset(),
713             toReference(CU1Ref2DieDG.find(DW_AT_type), -1ULL));
714 
715   // Verify the sibling is our Ref4 DIE and that its DW_AT_type points to our
716   // base type DIE in CU1.
717   auto CU1Ref4DieDG = CU1Ref2DieDG.getSibling();
718   EXPECT_TRUE(CU1Ref4DieDG.isValid());
719   EXPECT_EQ(CU1Ref4DieDG.getTag(), DW_TAG_variable);
720   EXPECT_EQ(CU1TypeDieDG.getOffset(),
721             toReference(CU1Ref4DieDG.find(DW_AT_type), -1ULL));
722 
723   // Verify the sibling is our Ref8 DIE and that its DW_AT_type points to our
724   // base type DIE in CU1.
725   auto CU1Ref8DieDG = CU1Ref4DieDG.getSibling();
726   EXPECT_TRUE(CU1Ref8DieDG.isValid());
727   EXPECT_EQ(CU1Ref8DieDG.getTag(), DW_TAG_variable);
728   EXPECT_EQ(CU1TypeDieDG.getOffset(),
729             toReference(CU1Ref8DieDG.find(DW_AT_type), -1ULL));
730 
731   // Verify the sibling is our RefAddr DIE and that its DW_AT_type points to our
732   // base type DIE in CU1.
733   auto CU1RefAddrDieDG = CU1Ref8DieDG.getSibling();
734   EXPECT_TRUE(CU1RefAddrDieDG.isValid());
735   EXPECT_EQ(CU1RefAddrDieDG.getTag(), DW_TAG_variable);
736   EXPECT_EQ(CU1TypeDieDG.getOffset(),
737             toReference(CU1RefAddrDieDG.find(DW_AT_type), -1ULL));
738 
739   // Verify the sibling of the Ref4 DIE is our RefAddr DIE and that its
740   // DW_AT_type points to our base type DIE.
741   auto CU1ToCU2RefAddrDieDG = CU1RefAddrDieDG.getSibling();
742   EXPECT_TRUE(CU1ToCU2RefAddrDieDG.isValid());
743   EXPECT_EQ(CU1ToCU2RefAddrDieDG.getTag(), DW_TAG_variable);
744   EXPECT_EQ(CU2TypeDieDG.getOffset(),
745             toReference(CU1ToCU2RefAddrDieDG.find(DW_AT_type), -1ULL));
746 
747   // Verify the sibling of the base type DIE is our Ref1 DIE and that its
748   // DW_AT_type points to our base type DIE.
749   auto CU2Ref1DieDG = CU2TypeDieDG.getSibling();
750   EXPECT_TRUE(CU2Ref1DieDG.isValid());
751   EXPECT_EQ(CU2Ref1DieDG.getTag(), DW_TAG_variable);
752   EXPECT_EQ(CU2TypeDieDG.getOffset(),
753             toReference(CU2Ref1DieDG.find(DW_AT_type), -1ULL));
754   // Verify the sibling is our Ref2 DIE and that its DW_AT_type points to our
755   // base type DIE in CU2.
756   auto CU2Ref2DieDG = CU2Ref1DieDG.getSibling();
757   EXPECT_TRUE(CU2Ref2DieDG.isValid());
758   EXPECT_EQ(CU2Ref2DieDG.getTag(), DW_TAG_variable);
759   EXPECT_EQ(CU2TypeDieDG.getOffset(),
760             toReference(CU2Ref2DieDG.find(DW_AT_type), -1ULL));
761 
762   // Verify the sibling is our Ref4 DIE and that its DW_AT_type points to our
763   // base type DIE in CU2.
764   auto CU2Ref4DieDG = CU2Ref2DieDG.getSibling();
765   EXPECT_TRUE(CU2Ref4DieDG.isValid());
766   EXPECT_EQ(CU2Ref4DieDG.getTag(), DW_TAG_variable);
767   EXPECT_EQ(CU2TypeDieDG.getOffset(),
768             toReference(CU2Ref4DieDG.find(DW_AT_type), -1ULL));
769 
770   // Verify the sibling is our Ref8 DIE and that its DW_AT_type points to our
771   // base type DIE in CU2.
772   auto CU2Ref8DieDG = CU2Ref4DieDG.getSibling();
773   EXPECT_TRUE(CU2Ref8DieDG.isValid());
774   EXPECT_EQ(CU2Ref8DieDG.getTag(), DW_TAG_variable);
775   EXPECT_EQ(CU2TypeDieDG.getOffset(),
776             toReference(CU2Ref8DieDG.find(DW_AT_type), -1ULL));
777 
778   // Verify the sibling is our RefAddr DIE and that its DW_AT_type points to our
779   // base type DIE in CU2.
780   auto CU2RefAddrDieDG = CU2Ref8DieDG.getSibling();
781   EXPECT_TRUE(CU2RefAddrDieDG.isValid());
782   EXPECT_EQ(CU2RefAddrDieDG.getTag(), DW_TAG_variable);
783   EXPECT_EQ(CU2TypeDieDG.getOffset(),
784             toReference(CU2RefAddrDieDG.find(DW_AT_type), -1ULL));
785 
786   // Verify the sibling of the Ref4 DIE is our RefAddr DIE and that its
787   // DW_AT_type points to our base type DIE.
788   auto CU2ToCU1RefAddrDieDG = CU2RefAddrDieDG.getSibling();
789   EXPECT_TRUE(CU2ToCU1RefAddrDieDG.isValid());
790   EXPECT_EQ(CU2ToCU1RefAddrDieDG.getTag(), DW_TAG_variable);
791   EXPECT_EQ(CU1TypeDieDG.getOffset(),
792             toReference(CU2ToCU1RefAddrDieDG.find(DW_AT_type), -1ULL));
793 }
794 
795 TEST(DWARFDebugInfo, TestDWARF32Version2Addr4References) {
796   // Test that we can decode all forms for DWARF32, version 2, with 4 byte
797   // addresses.
798   typedef uint32_t AddrType;
799   TestReferences<2, AddrType>();
800 }
801 
802 TEST(DWARFDebugInfo, TestDWARF32Version2Addr8References) {
803   // Test that we can decode all forms for DWARF32, version 2, with 8 byte
804   // addresses.
805   typedef uint64_t AddrType;
806   TestReferences<2, AddrType>();
807 }
808 
809 TEST(DWARFDebugInfo, TestDWARF32Version3Addr4References) {
810   // Test that we can decode all forms for DWARF32, version 3, with 4 byte
811   // addresses.
812   typedef uint32_t AddrType;
813   TestReferences<3, AddrType>();
814 }
815 
816 TEST(DWARFDebugInfo, TestDWARF32Version3Addr8References) {
817   // Test that we can decode all forms for DWARF32, version 3, with 8 byte
818   // addresses.
819   typedef uint64_t AddrType;
820   TestReferences<3, AddrType>();
821 }
822 
823 TEST(DWARFDebugInfo, TestDWARF32Version4Addr4References) {
824   // Test that we can decode all forms for DWARF32, version 4, with 4 byte
825   // addresses.
826   typedef uint32_t AddrType;
827   TestReferences<4, AddrType>();
828 }
829 
830 TEST(DWARFDebugInfo, TestDWARF32Version4Addr8References) {
831   // Test that we can decode all forms for DWARF32, version 4, with 8 byte
832   // addresses.
833   typedef uint64_t AddrType;
834   TestReferences<4, AddrType>();
835 }
836 
837 template <uint16_t Version, class AddrType> void TestAddresses() {
838   Triple Triple = getDefaultTargetTripleForAddrSize(sizeof(AddrType));
839   if (!isConfigurationSupported(Triple))
840     return;
841 
842   // Test the DWARF APIs related to accessing the DW_AT_low_pc and
843   // DW_AT_high_pc.
844   const bool SupportsHighPCAsOffset = Version >= 4;
845   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
846   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
847   dwarfgen::Generator *DG = ExpectedDG.get().get();
848   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
849   dwarfgen::DIE CUDie = CU.getUnitDIE();
850 
851   CUDie.addAttribute(DW_AT_name, DW_FORM_strp, "/tmp/main.c");
852   CUDie.addAttribute(DW_AT_language, DW_FORM_data2, DW_LANG_C);
853 
854   // Create a subprogram DIE with no low or high PC.
855   dwarfgen::DIE SubprogramNoPC = CUDie.addChild(DW_TAG_subprogram);
856   SubprogramNoPC.addAttribute(DW_AT_name, DW_FORM_strp, "no_pc");
857 
858   // Create a subprogram DIE with a low PC only.
859   dwarfgen::DIE SubprogramLowPC = CUDie.addChild(DW_TAG_subprogram);
860   SubprogramLowPC.addAttribute(DW_AT_name, DW_FORM_strp, "low_pc");
861   const uint64_t ActualLowPC = 0x1000;
862   const uint64_t ActualHighPC = 0x2000;
863   const uint64_t ActualHighPCOffset = ActualHighPC - ActualLowPC;
864   SubprogramLowPC.addAttribute(DW_AT_low_pc, DW_FORM_addr, ActualLowPC);
865 
866   // Create a subprogram DIE with a low and high PC.
867   dwarfgen::DIE SubprogramLowHighPC = CUDie.addChild(DW_TAG_subprogram);
868   SubprogramLowHighPC.addAttribute(DW_AT_name, DW_FORM_strp, "low_high_pc");
869   SubprogramLowHighPC.addAttribute(DW_AT_low_pc, DW_FORM_addr, ActualLowPC);
870   // Encode the high PC as an offset from the low PC if supported.
871   if (SupportsHighPCAsOffset)
872     SubprogramLowHighPC.addAttribute(DW_AT_high_pc, DW_FORM_data4,
873                                      ActualHighPCOffset);
874   else
875     SubprogramLowHighPC.addAttribute(DW_AT_high_pc, DW_FORM_addr, ActualHighPC);
876 
877   StringRef FileBytes = DG->generate();
878   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
879   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
880   EXPECT_TRUE((bool)Obj);
881   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
882 
883   // Verify the number of compile units is correct.
884   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
885   EXPECT_EQ(NumCUs, 1u);
886   DWARFCompileUnit *U =
887       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
888 
889   // Get the compile unit DIE is valid.
890   auto DieDG = U->getUnitDIE(false);
891   EXPECT_TRUE(DieDG.isValid());
892 
893   uint64_t LowPC, HighPC, SectionIndex;
894   Optional<uint64_t> OptU64;
895   // Verify the that our subprogram with no PC value fails appropriately when
896   // asked for any PC values.
897   auto SubprogramDieNoPC = DieDG.getFirstChild();
898   EXPECT_TRUE(SubprogramDieNoPC.isValid());
899   EXPECT_EQ(SubprogramDieNoPC.getTag(), DW_TAG_subprogram);
900   OptU64 = toAddress(SubprogramDieNoPC.find(DW_AT_low_pc));
901   EXPECT_FALSE((bool)OptU64);
902   OptU64 = toAddress(SubprogramDieNoPC.find(DW_AT_high_pc));
903   EXPECT_FALSE((bool)OptU64);
904   EXPECT_FALSE(SubprogramDieNoPC.getLowAndHighPC(LowPC, HighPC, SectionIndex));
905   OptU64 = toAddress(SubprogramDieNoPC.find(DW_AT_high_pc));
906   EXPECT_FALSE((bool)OptU64);
907   OptU64 = toUnsigned(SubprogramDieNoPC.find(DW_AT_high_pc));
908   EXPECT_FALSE((bool)OptU64);
909   OptU64 = SubprogramDieNoPC.getHighPC(ActualLowPC);
910   EXPECT_FALSE((bool)OptU64);
911   EXPECT_FALSE(SubprogramDieNoPC.getLowAndHighPC(LowPC, HighPC, SectionIndex));
912 
913   // Verify the that our subprogram with only a low PC value succeeds when
914   // we ask for the Low PC, but fails appropriately when asked for the high PC
915   // or both low and high PC values.
916   auto SubprogramDieLowPC = SubprogramDieNoPC.getSibling();
917   EXPECT_TRUE(SubprogramDieLowPC.isValid());
918   EXPECT_EQ(SubprogramDieLowPC.getTag(), DW_TAG_subprogram);
919   OptU64 = toAddress(SubprogramDieLowPC.find(DW_AT_low_pc));
920   EXPECT_TRUE((bool)OptU64);
921   EXPECT_EQ(OptU64.getValue(), ActualLowPC);
922   OptU64 = toAddress(SubprogramDieLowPC.find(DW_AT_high_pc));
923   EXPECT_FALSE((bool)OptU64);
924   OptU64 = toUnsigned(SubprogramDieLowPC.find(DW_AT_high_pc));
925   EXPECT_FALSE((bool)OptU64);
926   OptU64 = SubprogramDieLowPC.getHighPC(ActualLowPC);
927   EXPECT_FALSE((bool)OptU64);
928   EXPECT_FALSE(SubprogramDieLowPC.getLowAndHighPC(LowPC, HighPC, SectionIndex));
929 
930   // Verify the that our subprogram with only a low PC value succeeds when
931   // we ask for the Low PC, but fails appropriately when asked for the high PC
932   // or both low and high PC values.
933   auto SubprogramDieLowHighPC = SubprogramDieLowPC.getSibling();
934   EXPECT_TRUE(SubprogramDieLowHighPC.isValid());
935   EXPECT_EQ(SubprogramDieLowHighPC.getTag(), DW_TAG_subprogram);
936   OptU64 = toAddress(SubprogramDieLowHighPC.find(DW_AT_low_pc));
937   EXPECT_TRUE((bool)OptU64);
938   EXPECT_EQ(OptU64.getValue(), ActualLowPC);
939   // Get the high PC as an address. This should succeed if the high PC was
940   // encoded as an address and fail if the high PC was encoded as an offset.
941   OptU64 = toAddress(SubprogramDieLowHighPC.find(DW_AT_high_pc));
942   if (SupportsHighPCAsOffset) {
943     EXPECT_FALSE((bool)OptU64);
944   } else {
945     EXPECT_TRUE((bool)OptU64);
946     EXPECT_EQ(OptU64.getValue(), ActualHighPC);
947   }
948   // Get the high PC as an unsigned constant. This should succeed if the high PC
949   // was encoded as an offset and fail if the high PC was encoded as an address.
950   OptU64 = toUnsigned(SubprogramDieLowHighPC.find(DW_AT_high_pc));
951   if (SupportsHighPCAsOffset) {
952     EXPECT_TRUE((bool)OptU64);
953     EXPECT_EQ(OptU64.getValue(), ActualHighPCOffset);
954   } else {
955     EXPECT_FALSE((bool)OptU64);
956   }
957 
958   OptU64 = SubprogramDieLowHighPC.getHighPC(ActualLowPC);
959   EXPECT_TRUE((bool)OptU64);
960   EXPECT_EQ(OptU64.getValue(), ActualHighPC);
961 
962   EXPECT_TRUE(SubprogramDieLowHighPC.getLowAndHighPC(LowPC, HighPC, SectionIndex));
963   EXPECT_EQ(LowPC, ActualLowPC);
964   EXPECT_EQ(HighPC, ActualHighPC);
965 }
966 
967 TEST(DWARFDebugInfo, TestDWARF32Version2Addr4Addresses) {
968   // Test that we can decode address values in DWARF32, version 2, with 4 byte
969   // addresses.
970   typedef uint32_t AddrType;
971   TestAddresses<2, AddrType>();
972 }
973 
974 TEST(DWARFDebugInfo, TestDWARF32Version2Addr8Addresses) {
975   // Test that we can decode address values in DWARF32, version 2, with 8 byte
976   // addresses.
977   typedef uint64_t AddrType;
978   TestAddresses<2, AddrType>();
979 }
980 
981 TEST(DWARFDebugInfo, TestDWARF32Version3Addr4Addresses) {
982   // Test that we can decode address values in DWARF32, version 3, with 4 byte
983   // addresses.
984   typedef uint32_t AddrType;
985   TestAddresses<3, AddrType>();
986 }
987 
988 TEST(DWARFDebugInfo, TestDWARF32Version3Addr8Addresses) {
989   // Test that we can decode address values in DWARF32, version 3, with 8 byte
990   // addresses.
991   typedef uint64_t AddrType;
992   TestAddresses<3, AddrType>();
993 }
994 
995 TEST(DWARFDebugInfo, TestDWARF32Version4Addr4Addresses) {
996   // Test that we can decode address values in DWARF32, version 4, with 4 byte
997   // addresses.
998   typedef uint32_t AddrType;
999   TestAddresses<4, AddrType>();
1000 }
1001 
1002 TEST(DWARFDebugInfo, TestDWARF32Version4Addr8Addresses) {
1003   // Test that we can decode address values in DWARF32, version 4, with 8 byte
1004   // addresses.
1005   typedef uint64_t AddrType;
1006   TestAddresses<4, AddrType>();
1007 }
1008 
1009 TEST(DWARFDebugInfo, TestStringOffsets) {
1010   Triple Triple = getNormalizedDefaultTargetTriple();
1011   if (!isConfigurationSupported(Triple))
1012     return;
1013 
1014   const char *String1 = "Hello";
1015   const char *String2 = "World";
1016 
1017   auto ExpectedDG = dwarfgen::Generator::create(Triple, 5);
1018   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1019   dwarfgen::Generator *DG = ExpectedDG.get().get();
1020   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1021   dwarfgen::DIE CUDie = CU.getUnitDIE();
1022 
1023   CUDie.addStrOffsetsBaseAttribute();
1024 
1025   uint16_t Attr = DW_AT_lo_user;
1026 
1027   // Create our strings. First we create a non-indexed reference to String1,
1028   // followed by an indexed String2. Finally, we add an indexed reference to
1029   // String1.
1030   const auto Attr1 = static_cast<dwarf::Attribute>(Attr++);
1031   CUDie.addAttribute(Attr1, DW_FORM_strp, String1);
1032 
1033   const auto Attr2 = static_cast<dwarf::Attribute>(Attr++);
1034   CUDie.addAttribute(Attr2, DW_FORM_strx, String2);
1035 
1036   const auto Attr3 = static_cast<dwarf::Attribute>(Attr++);
1037   CUDie.addAttribute(Attr3, DW_FORM_strx, String1);
1038 
1039   // Generate the DWARF
1040   StringRef FileBytes = DG->generate();
1041   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
1042   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1043   ASSERT_TRUE((bool)Obj);
1044   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1045   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1046   ASSERT_EQ(NumCUs, 1u);
1047   DWARFUnit *U = DwarfContext->getUnitAtIndex(0);
1048   auto DieDG = U->getUnitDIE(false);
1049   ASSERT_TRUE(DieDG.isValid());
1050 
1051   // Now make sure the string offsets came out properly. Attr2 should have index
1052   // 0 (because it was the first indexed string) even though the string itself
1053   // was added eariler.
1054   auto Extracted1 = toString(DieDG.find(Attr1));
1055   ASSERT_TRUE((bool)Extracted1);
1056   EXPECT_STREQ(String1, *Extracted1);
1057 
1058   Optional<DWARFFormValue> Form2 = DieDG.find(Attr2);
1059   ASSERT_TRUE((bool)Form2);
1060   EXPECT_EQ(0u, Form2->getRawUValue());
1061   auto Extracted2 = toString(Form2);
1062   ASSERT_TRUE((bool)Extracted2);
1063   EXPECT_STREQ(String2, *Extracted2);
1064 
1065   Optional<DWARFFormValue> Form3 = DieDG.find(Attr3);
1066   ASSERT_TRUE((bool)Form3);
1067   EXPECT_EQ(1u, Form3->getRawUValue());
1068   auto Extracted3 = toString(Form3);
1069   ASSERT_TRUE((bool)Extracted3);
1070   EXPECT_STREQ(String1, *Extracted3);
1071 }
1072 
1073 TEST(DWARFDebugInfo, TestEmptyStringOffsets) {
1074   Triple Triple = getNormalizedDefaultTargetTriple();
1075   if (!isConfigurationSupported(Triple))
1076     return;
1077 
1078   const char *String1 = "Hello";
1079 
1080   auto ExpectedDG = dwarfgen::Generator::create(Triple, 5);
1081   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1082   dwarfgen::Generator *DG = ExpectedDG.get().get();
1083   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1084   dwarfgen::DIE CUDie = CU.getUnitDIE();
1085 
1086   uint16_t Attr = DW_AT_lo_user;
1087 
1088   // We shall insert only one string. It will be referenced directly.
1089   const auto Attr1 = static_cast<dwarf::Attribute>(Attr++);
1090   CUDie.addAttribute(Attr1, DW_FORM_strp, String1);
1091 
1092   // Generate the DWARF
1093   StringRef FileBytes = DG->generate();
1094   MemoryBufferRef FileBuffer(FileBytes, "dwarf");
1095   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1096   ASSERT_TRUE((bool)Obj);
1097   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1098   EXPECT_TRUE(
1099       DwarfContext->getDWARFObj().getStrOffsetsSection().Data.empty());
1100 }
1101 
1102 TEST(DWARFDebugInfo, TestRelations) {
1103   Triple Triple = getNormalizedDefaultTargetTriple();
1104   if (!isConfigurationSupported(Triple))
1105     return;
1106 
1107   // Test the DWARF APIs related to accessing the DW_AT_low_pc and
1108   // DW_AT_high_pc.
1109   uint16_t Version = 4;
1110   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1111   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1112   dwarfgen::Generator *DG = ExpectedDG.get().get();
1113   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1114 
1115   enum class Tag: uint16_t  {
1116     A = dwarf::DW_TAG_lo_user,
1117     B,
1118     C,
1119     C1,
1120     C2,
1121     D,
1122     D1
1123   };
1124 
1125   // Scope to allow us to re-use the same DIE names
1126   {
1127     // Create DWARF tree that looks like:
1128     //
1129     // CU
1130     //   A
1131     //     B
1132     //     C
1133     //       C1
1134     //       C2
1135     //     D
1136     //       D1
1137     dwarfgen::DIE CUDie = CU.getUnitDIE();
1138     dwarfgen::DIE A = CUDie.addChild((dwarf::Tag)Tag::A);
1139     A.addChild((dwarf::Tag)Tag::B);
1140     dwarfgen::DIE C = A.addChild((dwarf::Tag)Tag::C);
1141     dwarfgen::DIE D = A.addChild((dwarf::Tag)Tag::D);
1142     C.addChild((dwarf::Tag)Tag::C1);
1143     C.addChild((dwarf::Tag)Tag::C2);
1144     D.addChild((dwarf::Tag)Tag::D1);
1145   }
1146 
1147   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1148   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1149   EXPECT_TRUE((bool)Obj);
1150   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1151 
1152   // Verify the number of compile units is correct.
1153   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1154   EXPECT_EQ(NumCUs, 1u);
1155   DWARFCompileUnit *U =
1156       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1157 
1158   // Get the compile unit DIE is valid.
1159   auto CUDie = U->getUnitDIE(false);
1160   EXPECT_TRUE(CUDie.isValid());
1161 
1162   // The compile unit doesn't have a parent or a sibling.
1163   auto ParentDie = CUDie.getParent();
1164   EXPECT_FALSE(ParentDie.isValid());
1165   auto SiblingDie = CUDie.getSibling();
1166   EXPECT_FALSE(SiblingDie.isValid());
1167 
1168   // Get the children of the compile unit
1169   auto A = CUDie.getFirstChild();
1170   auto B = A.getFirstChild();
1171   auto C = B.getSibling();
1172   auto D = C.getSibling();
1173   auto Null = D.getSibling();
1174 
1175   // Verify NULL Die is NULL and has no children or siblings
1176   EXPECT_TRUE(Null.isNULL());
1177   EXPECT_FALSE(Null.getSibling().isValid());
1178   EXPECT_FALSE(Null.getFirstChild().isValid());
1179 
1180   // Verify all children of the compile unit DIE are correct.
1181   EXPECT_EQ(A.getTag(), (dwarf::Tag)Tag::A);
1182   EXPECT_EQ(B.getTag(), (dwarf::Tag)Tag::B);
1183   EXPECT_EQ(C.getTag(), (dwarf::Tag)Tag::C);
1184   EXPECT_EQ(D.getTag(), (dwarf::Tag)Tag::D);
1185 
1186   // Verify who has children
1187   EXPECT_TRUE(A.hasChildren());
1188   EXPECT_FALSE(B.hasChildren());
1189   EXPECT_TRUE(C.hasChildren());
1190   EXPECT_TRUE(D.hasChildren());
1191 
1192   // Make sure the parent of all the children of the compile unit are the
1193   // compile unit.
1194   EXPECT_EQ(A.getParent(), CUDie);
1195 
1196   // Make sure the parent of all the children of A are the A.
1197   // B is the first child in A, so we need to verify we can get the previous
1198   // DIE as the parent.
1199   EXPECT_EQ(B.getParent(), A);
1200   // C is the second child in A, so we need to make sure we can backup across
1201   // other DIE (B) at the same level to get the correct parent.
1202   EXPECT_EQ(C.getParent(), A);
1203   // D is the third child of A. We need to verify we can backup across other DIE
1204   // (B and C) including DIE that have children (D) to get the correct parent.
1205   EXPECT_EQ(D.getParent(), A);
1206 
1207   // Verify that a DIE with no children returns an invalid DWARFDie.
1208   EXPECT_FALSE(B.getFirstChild().isValid());
1209 
1210   // Verify the children of the B DIE
1211   auto C1 = C.getFirstChild();
1212   auto C2 = C1.getSibling();
1213   EXPECT_TRUE(C2.getSibling().isNULL());
1214 
1215   // Verify all children of the B DIE correctly valid or invalid.
1216   EXPECT_EQ(C1.getTag(), (dwarf::Tag)Tag::C1);
1217   EXPECT_EQ(C2.getTag(), (dwarf::Tag)Tag::C2);
1218 
1219   // Make sure the parent of all the children of the B are the B.
1220   EXPECT_EQ(C1.getParent(), C);
1221   EXPECT_EQ(C2.getParent(), C);
1222 
1223   // Make sure iterators work as expected.
1224   EXPECT_THAT(std::vector<DWARFDie>(A.begin(), A.end()),
1225               testing::ElementsAre(B, C, D));
1226   EXPECT_THAT(std::vector<DWARFDie>(A.rbegin(), A.rend()),
1227               testing::ElementsAre(D, C, B));
1228 
1229   // Make sure conversion from reverse iterator works as expected.
1230   EXPECT_EQ(A.rbegin().base(), A.end());
1231   EXPECT_EQ(A.rend().base(), A.begin());
1232 
1233   // Make sure iterator is bidirectional.
1234   {
1235     auto Begin = A.begin();
1236     auto End = A.end();
1237     auto It = A.begin();
1238 
1239     EXPECT_EQ(It, Begin);
1240     EXPECT_EQ(*It, B);
1241     ++It;
1242     EXPECT_EQ(*It, C);
1243     ++It;
1244     EXPECT_EQ(*It, D);
1245     ++It;
1246     EXPECT_EQ(It, End);
1247     --It;
1248     EXPECT_EQ(*It, D);
1249     --It;
1250     EXPECT_EQ(*It, C);
1251     --It;
1252     EXPECT_EQ(*It, B);
1253     EXPECT_EQ(It, Begin);
1254   }
1255 
1256   // Make sure reverse iterator is bidirectional.
1257   {
1258     auto Begin = A.rbegin();
1259     auto End = A.rend();
1260     auto It = A.rbegin();
1261 
1262     EXPECT_EQ(It, Begin);
1263     EXPECT_EQ(*It, D);
1264     ++It;
1265     EXPECT_EQ(*It, C);
1266     ++It;
1267     EXPECT_EQ(*It, B);
1268     ++It;
1269     EXPECT_EQ(It, End);
1270     --It;
1271     EXPECT_EQ(*It, B);
1272     --It;
1273     EXPECT_EQ(*It, C);
1274     --It;
1275     EXPECT_EQ(*It, D);
1276     EXPECT_EQ(It, Begin);
1277   }
1278 }
1279 
1280 TEST(DWARFDebugInfo, TestDWARFDie) {
1281   // Make sure a default constructed DWARFDie doesn't have any parent, sibling
1282   // or child;
1283   DWARFDie DefaultDie;
1284   EXPECT_FALSE(DefaultDie.getParent().isValid());
1285   EXPECT_FALSE(DefaultDie.getFirstChild().isValid());
1286   EXPECT_FALSE(DefaultDie.getSibling().isValid());
1287 }
1288 
1289 TEST(DWARFDebugInfo, TestChildIterators) {
1290   Triple Triple = getNormalizedDefaultTargetTriple();
1291   if (!isConfigurationSupported(Triple))
1292     return;
1293 
1294   // Test the DWARF APIs related to iterating across the children of a DIE using
1295   // the DWARFDie::iterator class.
1296   uint16_t Version = 4;
1297   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1298   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1299   dwarfgen::Generator *DG = ExpectedDG.get().get();
1300   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1301 
1302   enum class Tag: uint16_t  {
1303     A = dwarf::DW_TAG_lo_user,
1304     B,
1305   };
1306 
1307   // Scope to allow us to re-use the same DIE names
1308   {
1309     // Create DWARF tree that looks like:
1310     //
1311     // CU
1312     //   A
1313     //   B
1314     auto CUDie = CU.getUnitDIE();
1315     CUDie.addChild((dwarf::Tag)Tag::A);
1316     CUDie.addChild((dwarf::Tag)Tag::B);
1317   }
1318 
1319   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1320   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1321   EXPECT_TRUE((bool)Obj);
1322   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1323 
1324   // Verify the number of compile units is correct.
1325   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1326   EXPECT_EQ(NumCUs, 1u);
1327   DWARFCompileUnit *U =
1328       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1329 
1330   // Get the compile unit DIE is valid.
1331   auto CUDie = U->getUnitDIE(false);
1332   EXPECT_TRUE(CUDie.isValid());
1333   uint32_t Index;
1334   DWARFDie A;
1335   DWARFDie B;
1336 
1337   // Verify the compile unit DIE's children.
1338   Index = 0;
1339   for (auto Die : CUDie.children()) {
1340     switch (Index++) {
1341       case 0: A = Die; break;
1342       case 1: B = Die; break;
1343     }
1344   }
1345 
1346   EXPECT_EQ(A.getTag(), (dwarf::Tag)Tag::A);
1347   EXPECT_EQ(B.getTag(), (dwarf::Tag)Tag::B);
1348 
1349   // Verify that A has no children by verifying that the begin and end contain
1350   // invalid DIEs and also that the iterators are equal.
1351   EXPECT_EQ(A.begin(), A.end());
1352 }
1353 
1354 TEST(DWARFDebugInfo, TestChildIteratorsOnInvalidDie) {
1355   // Verify that an invalid DIE has no children.
1356   DWARFDie Invalid;
1357   auto begin = Invalid.begin();
1358   auto end = Invalid.end();
1359   EXPECT_FALSE(begin->isValid());
1360   EXPECT_FALSE(end->isValid());
1361   EXPECT_EQ(begin, end);
1362 }
1363 
1364 TEST(DWARFDebugInfo, TestEmptyChildren) {
1365   const char *yamldata = "debug_abbrev:\n"
1366                          "  - Code:            0x00000001\n"
1367                          "    Tag:             DW_TAG_compile_unit\n"
1368                          "    Children:        DW_CHILDREN_yes\n"
1369                          "    Attributes:\n"
1370                          "debug_info:\n"
1371                          "  - Version:         4\n"
1372                          "    AbbrOffset:      0\n"
1373                          "    AddrSize:        8\n"
1374                          "    Entries:\n"
1375                          "      - AbbrCode:        0x00000001\n"
1376                          "        Values:\n"
1377                          "      - AbbrCode:        0x00000000\n"
1378                          "        Values:\n";
1379 
1380   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
1381   ASSERT_TRUE((bool)ErrOrSections);
1382   std::unique_ptr<DWARFContext> DwarfContext =
1383       DWARFContext::create(*ErrOrSections, 8);
1384 
1385   // Verify the number of compile units is correct.
1386   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1387   EXPECT_EQ(NumCUs, 1u);
1388   DWARFCompileUnit *U =
1389       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1390 
1391   // Get the compile unit DIE is valid.
1392   auto CUDie = U->getUnitDIE(false);
1393   EXPECT_TRUE(CUDie.isValid());
1394 
1395   // Verify that the CU Die that says it has children, but doesn't, actually
1396   // has begin and end iterators that are equal. We want to make sure we don't
1397   // see the Null DIEs during iteration.
1398   EXPECT_EQ(CUDie.begin(), CUDie.end());
1399 }
1400 
1401 TEST(DWARFDebugInfo, TestAttributeIterators) {
1402   Triple Triple = getNormalizedDefaultTargetTriple();
1403   if (!isConfigurationSupported(Triple))
1404     return;
1405 
1406   // Test the DWARF APIs related to iterating across all attribute values in a
1407   // a DWARFDie.
1408   uint16_t Version = 4;
1409   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1410   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1411   dwarfgen::Generator *DG = ExpectedDG.get().get();
1412   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1413   const uint64_t CULowPC = 0x1000;
1414   StringRef CUPath("/tmp/main.c");
1415 
1416   // Scope to allow us to re-use the same DIE names
1417   {
1418     auto CUDie = CU.getUnitDIE();
1419     // Encode an attribute value before an attribute with no data.
1420     CUDie.addAttribute(DW_AT_name, DW_FORM_strp, CUPath.data());
1421     // Encode an attribute value with no data in .debug_info/types to ensure
1422     // the iteration works correctly.
1423     CUDie.addAttribute(DW_AT_declaration, DW_FORM_flag_present);
1424     // Encode an attribute value after an attribute with no data.
1425     CUDie.addAttribute(DW_AT_low_pc, DW_FORM_addr, CULowPC);
1426   }
1427 
1428   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1429   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1430   EXPECT_TRUE((bool)Obj);
1431   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1432 
1433   // Verify the number of compile units is correct.
1434   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1435   EXPECT_EQ(NumCUs, 1u);
1436   DWARFCompileUnit *U =
1437       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1438 
1439   // Get the compile unit DIE is valid.
1440   auto CUDie = U->getUnitDIE(false);
1441   EXPECT_TRUE(CUDie.isValid());
1442 
1443   auto R = CUDie.attributes();
1444   auto I = R.begin();
1445   auto E = R.end();
1446 
1447   ASSERT_NE(E, I);
1448   EXPECT_EQ(I->Attr, DW_AT_name);
1449   auto ActualCUPath = I->Value.getAsCString();
1450   EXPECT_EQ(CUPath, *ActualCUPath);
1451 
1452   ASSERT_NE(E, ++I);
1453   EXPECT_EQ(I->Attr, DW_AT_declaration);
1454   EXPECT_EQ(1ull, *I->Value.getAsUnsignedConstant());
1455 
1456   ASSERT_NE(E, ++I);
1457   EXPECT_EQ(I->Attr, DW_AT_low_pc);
1458   EXPECT_EQ(CULowPC, *I->Value.getAsAddress());
1459 
1460   EXPECT_EQ(E, ++I);
1461 }
1462 
1463 TEST(DWARFDebugInfo, TestFindRecurse) {
1464   Triple Triple = getNormalizedDefaultTargetTriple();
1465   if (!isConfigurationSupported(Triple))
1466     return;
1467 
1468   uint16_t Version = 4;
1469   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1470   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1471   dwarfgen::Generator *DG = ExpectedDG.get().get();
1472   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1473 
1474   StringRef SpecDieName = "spec";
1475   StringRef SpecLinkageName = "spec_linkage";
1476   StringRef AbsDieName = "abs";
1477   // Scope to allow us to re-use the same DIE names
1478   {
1479     auto CUDie = CU.getUnitDIE();
1480     auto FuncSpecDie = CUDie.addChild(DW_TAG_subprogram);
1481     auto FuncAbsDie = CUDie.addChild(DW_TAG_subprogram);
1482     // Put the linkage name in a second abstract origin DIE to ensure we
1483     // recurse through more than just one DIE when looking for attributes.
1484     auto FuncAbsDie2 = CUDie.addChild(DW_TAG_subprogram);
1485     auto FuncDie = CUDie.addChild(DW_TAG_subprogram);
1486     auto VarAbsDie = CUDie.addChild(DW_TAG_variable);
1487     auto VarDie = CUDie.addChild(DW_TAG_variable);
1488     FuncSpecDie.addAttribute(DW_AT_name, DW_FORM_strp, SpecDieName);
1489     FuncAbsDie2.addAttribute(DW_AT_linkage_name, DW_FORM_strp, SpecLinkageName);
1490     FuncAbsDie.addAttribute(DW_AT_specification, DW_FORM_ref4, FuncSpecDie);
1491     FuncAbsDie.addAttribute(DW_AT_abstract_origin, DW_FORM_ref4, FuncAbsDie2);
1492     FuncDie.addAttribute(DW_AT_abstract_origin, DW_FORM_ref4, FuncAbsDie);
1493     VarAbsDie.addAttribute(DW_AT_name, DW_FORM_strp, AbsDieName);
1494     VarDie.addAttribute(DW_AT_abstract_origin, DW_FORM_ref4, VarAbsDie);
1495   }
1496 
1497   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1498   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1499   EXPECT_TRUE((bool)Obj);
1500   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1501 
1502   // Verify the number of compile units is correct.
1503   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1504   EXPECT_EQ(NumCUs, 1u);
1505   DWARFCompileUnit *U =
1506       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1507 
1508   // Get the compile unit DIE is valid.
1509   auto CUDie = U->getUnitDIE(false);
1510   EXPECT_TRUE(CUDie.isValid());
1511 
1512   auto FuncSpecDie = CUDie.getFirstChild();
1513   auto FuncAbsDie = FuncSpecDie.getSibling();
1514   auto FuncAbsDie2 = FuncAbsDie.getSibling();
1515   auto FuncDie = FuncAbsDie2.getSibling();
1516   auto VarAbsDie = FuncDie.getSibling();
1517   auto VarDie = VarAbsDie.getSibling();
1518 
1519   // Make sure we can't extract the name from the specification die when using
1520   // DWARFDie::find() since it won't check the DW_AT_specification DIE.
1521   EXPECT_FALSE(FuncDie.find(DW_AT_name));
1522 
1523   // Make sure we can extract the name from the specification die when using
1524   // DWARFDie::findRecursively() since it should recurse through the
1525   // DW_AT_specification DIE.
1526   auto NameOpt = FuncDie.findRecursively(DW_AT_name);
1527   EXPECT_TRUE(NameOpt);
1528   // Test the dwarf::toString() helper function.
1529   auto StringOpt = toString(NameOpt);
1530   EXPECT_TRUE(StringOpt);
1531   EXPECT_EQ(SpecDieName, StringOpt.getValueOr(nullptr));
1532   // Test the dwarf::toString() helper function with a default value specified.
1533   EXPECT_EQ(SpecDieName, toString(NameOpt, nullptr));
1534 
1535   auto LinkageNameOpt = FuncDie.findRecursively(DW_AT_linkage_name);
1536   EXPECT_EQ(SpecLinkageName, toString(LinkageNameOpt).getValueOr(nullptr));
1537 
1538   // Make sure we can't extract the name from the abstract origin die when using
1539   // DWARFDie::find() since it won't check the DW_AT_abstract_origin DIE.
1540   EXPECT_FALSE(VarDie.find(DW_AT_name));
1541 
1542   // Make sure we can extract the name from the abstract origin die when using
1543   // DWARFDie::findRecursively() since it should recurse through the
1544   // DW_AT_abstract_origin DIE.
1545   NameOpt = VarDie.findRecursively(DW_AT_name);
1546   EXPECT_TRUE(NameOpt);
1547   // Test the dwarf::toString() helper function.
1548   StringOpt = toString(NameOpt);
1549   EXPECT_TRUE(StringOpt);
1550   EXPECT_EQ(AbsDieName, StringOpt.getValueOr(nullptr));
1551 }
1552 
1553 TEST(DWARFDebugInfo, TestDwarfToFunctions) {
1554   // Test all of the dwarf::toXXX functions that take a
1555   // Optional<DWARFFormValue> and extract the values from it.
1556   uint64_t InvalidU64 = 0xBADBADBADBADBADB;
1557   int64_t InvalidS64 = 0xBADBADBADBADBADB;
1558 
1559   // First test that we don't get valid values back when using an optional with
1560   // no value.
1561   Optional<DWARFFormValue> FormValOpt1 = DWARFFormValue();
1562   EXPECT_FALSE(toString(FormValOpt1).hasValue());
1563   EXPECT_FALSE(toUnsigned(FormValOpt1).hasValue());
1564   EXPECT_FALSE(toReference(FormValOpt1).hasValue());
1565   EXPECT_FALSE(toSigned(FormValOpt1).hasValue());
1566   EXPECT_FALSE(toAddress(FormValOpt1).hasValue());
1567   EXPECT_FALSE(toSectionOffset(FormValOpt1).hasValue());
1568   EXPECT_FALSE(toBlock(FormValOpt1).hasValue());
1569   EXPECT_EQ(nullptr, toString(FormValOpt1, nullptr));
1570   EXPECT_EQ(InvalidU64, toUnsigned(FormValOpt1, InvalidU64));
1571   EXPECT_EQ(InvalidU64, toReference(FormValOpt1, InvalidU64));
1572   EXPECT_EQ(InvalidU64, toAddress(FormValOpt1, InvalidU64));
1573   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt1, InvalidU64));
1574   EXPECT_EQ(InvalidS64, toSigned(FormValOpt1, InvalidS64));
1575 
1576   // Test successful and unsuccessful address decoding.
1577   uint64_t Address = 0x100000000ULL;
1578   Optional<DWARFFormValue> FormValOpt2 =
1579       DWARFFormValue::createFromUValue(DW_FORM_addr, Address);
1580 
1581   EXPECT_FALSE(toString(FormValOpt2).hasValue());
1582   EXPECT_FALSE(toUnsigned(FormValOpt2).hasValue());
1583   EXPECT_FALSE(toReference(FormValOpt2).hasValue());
1584   EXPECT_FALSE(toSigned(FormValOpt2).hasValue());
1585   EXPECT_TRUE(toAddress(FormValOpt2).hasValue());
1586   EXPECT_FALSE(toSectionOffset(FormValOpt2).hasValue());
1587   EXPECT_FALSE(toBlock(FormValOpt2).hasValue());
1588   EXPECT_EQ(nullptr, toString(FormValOpt2, nullptr));
1589   EXPECT_EQ(InvalidU64, toUnsigned(FormValOpt2, InvalidU64));
1590   EXPECT_EQ(InvalidU64, toReference(FormValOpt2, InvalidU64));
1591   EXPECT_EQ(Address, toAddress(FormValOpt2, InvalidU64));
1592   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt2, InvalidU64));
1593   EXPECT_EQ(InvalidS64, toSigned(FormValOpt2, InvalidU64));
1594 
1595   // Test successful and unsuccessful unsigned constant decoding.
1596   uint64_t UData8 = 0x1020304050607080ULL;
1597   Optional<DWARFFormValue> FormValOpt3 =
1598       DWARFFormValue::createFromUValue(DW_FORM_udata, UData8);
1599 
1600   EXPECT_FALSE(toString(FormValOpt3).hasValue());
1601   EXPECT_TRUE(toUnsigned(FormValOpt3).hasValue());
1602   EXPECT_FALSE(toReference(FormValOpt3).hasValue());
1603   EXPECT_TRUE(toSigned(FormValOpt3).hasValue());
1604   EXPECT_FALSE(toAddress(FormValOpt3).hasValue());
1605   EXPECT_FALSE(toSectionOffset(FormValOpt3).hasValue());
1606   EXPECT_FALSE(toBlock(FormValOpt3).hasValue());
1607   EXPECT_EQ(nullptr, toString(FormValOpt3, nullptr));
1608   EXPECT_EQ(UData8, toUnsigned(FormValOpt3, InvalidU64));
1609   EXPECT_EQ(InvalidU64, toReference(FormValOpt3, InvalidU64));
1610   EXPECT_EQ(InvalidU64, toAddress(FormValOpt3, InvalidU64));
1611   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt3, InvalidU64));
1612   EXPECT_EQ((int64_t)UData8, toSigned(FormValOpt3, InvalidU64));
1613 
1614   // Test successful and unsuccessful reference decoding.
1615   uint32_t RefData = 0x11223344U;
1616   Optional<DWARFFormValue> FormValOpt4 =
1617       DWARFFormValue::createFromUValue(DW_FORM_ref_addr, RefData);
1618 
1619   EXPECT_FALSE(toString(FormValOpt4).hasValue());
1620   EXPECT_FALSE(toUnsigned(FormValOpt4).hasValue());
1621   EXPECT_TRUE(toReference(FormValOpt4).hasValue());
1622   EXPECT_FALSE(toSigned(FormValOpt4).hasValue());
1623   EXPECT_FALSE(toAddress(FormValOpt4).hasValue());
1624   EXPECT_FALSE(toSectionOffset(FormValOpt4).hasValue());
1625   EXPECT_FALSE(toBlock(FormValOpt4).hasValue());
1626   EXPECT_EQ(nullptr, toString(FormValOpt4, nullptr));
1627   EXPECT_EQ(InvalidU64, toUnsigned(FormValOpt4, InvalidU64));
1628   EXPECT_EQ(RefData, toReference(FormValOpt4, InvalidU64));
1629   EXPECT_EQ(InvalidU64, toAddress(FormValOpt4, InvalidU64));
1630   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt4, InvalidU64));
1631   EXPECT_EQ(InvalidS64, toSigned(FormValOpt4, InvalidU64));
1632 
1633   // Test successful and unsuccessful signed constant decoding.
1634   int64_t SData8 = 0x1020304050607080ULL;
1635   Optional<DWARFFormValue> FormValOpt5 =
1636       DWARFFormValue::createFromSValue(DW_FORM_udata, SData8);
1637 
1638   EXPECT_FALSE(toString(FormValOpt5).hasValue());
1639   EXPECT_TRUE(toUnsigned(FormValOpt5).hasValue());
1640   EXPECT_FALSE(toReference(FormValOpt5).hasValue());
1641   EXPECT_TRUE(toSigned(FormValOpt5).hasValue());
1642   EXPECT_FALSE(toAddress(FormValOpt5).hasValue());
1643   EXPECT_FALSE(toSectionOffset(FormValOpt5).hasValue());
1644   EXPECT_FALSE(toBlock(FormValOpt5).hasValue());
1645   EXPECT_EQ(nullptr, toString(FormValOpt5, nullptr));
1646   EXPECT_EQ((uint64_t)SData8, toUnsigned(FormValOpt5, InvalidU64));
1647   EXPECT_EQ(InvalidU64, toReference(FormValOpt5, InvalidU64));
1648   EXPECT_EQ(InvalidU64, toAddress(FormValOpt5, InvalidU64));
1649   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt5, InvalidU64));
1650   EXPECT_EQ(SData8, toSigned(FormValOpt5, InvalidU64));
1651 
1652   // Test successful and unsuccessful block decoding.
1653   uint8_t Data[] = { 2, 3, 4 };
1654   ArrayRef<uint8_t> Array(Data);
1655   Optional<DWARFFormValue> FormValOpt6 =
1656       DWARFFormValue::createFromBlockValue(DW_FORM_block1, Array);
1657 
1658   EXPECT_FALSE(toString(FormValOpt6).hasValue());
1659   EXPECT_FALSE(toUnsigned(FormValOpt6).hasValue());
1660   EXPECT_FALSE(toReference(FormValOpt6).hasValue());
1661   EXPECT_FALSE(toSigned(FormValOpt6).hasValue());
1662   EXPECT_FALSE(toAddress(FormValOpt6).hasValue());
1663   EXPECT_FALSE(toSectionOffset(FormValOpt6).hasValue());
1664   auto BlockOpt = toBlock(FormValOpt6);
1665   EXPECT_TRUE(BlockOpt.hasValue());
1666   EXPECT_EQ(*BlockOpt, Array);
1667   EXPECT_EQ(nullptr, toString(FormValOpt6, nullptr));
1668   EXPECT_EQ(InvalidU64, toUnsigned(FormValOpt6, InvalidU64));
1669   EXPECT_EQ(InvalidU64, toReference(FormValOpt6, InvalidU64));
1670   EXPECT_EQ(InvalidU64, toAddress(FormValOpt6, InvalidU64));
1671   EXPECT_EQ(InvalidU64, toSectionOffset(FormValOpt6, InvalidU64));
1672   EXPECT_EQ(InvalidS64, toSigned(FormValOpt6, InvalidU64));
1673 
1674   // Test
1675 }
1676 
1677 TEST(DWARFDebugInfo, TestFindAttrs) {
1678   Triple Triple = getNormalizedDefaultTargetTriple();
1679   if (!isConfigurationSupported(Triple))
1680     return;
1681 
1682   // Test the DWARFDie::find() and DWARFDie::findRecursively() that take an
1683   // ArrayRef<dwarf::Attribute> value to make sure they work correctly.
1684   uint16_t Version = 4;
1685   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1686   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1687   dwarfgen::Generator *DG = ExpectedDG.get().get();
1688   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1689 
1690   StringRef DieMangled("_Z3fooi");
1691   // Scope to allow us to re-use the same DIE names
1692   {
1693     auto CUDie = CU.getUnitDIE();
1694     auto FuncSpecDie = CUDie.addChild(DW_TAG_subprogram);
1695     auto FuncDie = CUDie.addChild(DW_TAG_subprogram);
1696     FuncSpecDie.addAttribute(DW_AT_MIPS_linkage_name, DW_FORM_strp, DieMangled);
1697     FuncDie.addAttribute(DW_AT_specification, DW_FORM_ref4, FuncSpecDie);
1698   }
1699 
1700   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1701   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1702   EXPECT_TRUE((bool)Obj);
1703   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1704 
1705   // Verify the number of compile units is correct.
1706   uint32_t NumCUs = DwarfContext->getNumCompileUnits();
1707   EXPECT_EQ(NumCUs, 1u);
1708   DWARFCompileUnit *U =
1709       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1710 
1711   // Get the compile unit DIE is valid.
1712   auto CUDie = U->getUnitDIE(false);
1713   EXPECT_TRUE(CUDie.isValid());
1714 
1715   auto FuncSpecDie = CUDie.getFirstChild();
1716   auto FuncDie = FuncSpecDie.getSibling();
1717 
1718   // Make sure that passing in an empty attribute list behave correctly.
1719   EXPECT_FALSE(FuncDie.find(ArrayRef<dwarf::Attribute>()).hasValue());
1720 
1721   // Make sure that passing in a list of attribute that are not contained
1722   // in the DIE returns nothing.
1723   EXPECT_FALSE(FuncDie.find({DW_AT_low_pc, DW_AT_entry_pc}).hasValue());
1724 
1725   const dwarf::Attribute Attrs[] = {DW_AT_linkage_name,
1726                                     DW_AT_MIPS_linkage_name};
1727 
1728   // Make sure we can't extract the linkage name attributes when using
1729   // DWARFDie::find() since it won't check the DW_AT_specification DIE.
1730   EXPECT_FALSE(FuncDie.find(Attrs).hasValue());
1731 
1732   // Make sure we can extract the name from the specification die when using
1733   // DWARFDie::findRecursively() since it should recurse through the
1734   // DW_AT_specification DIE.
1735   auto NameOpt = FuncDie.findRecursively(Attrs);
1736   EXPECT_TRUE(NameOpt.hasValue());
1737   EXPECT_EQ(DieMangled, toString(NameOpt, ""));
1738 }
1739 
1740 TEST(DWARFDebugInfo, TestImplicitConstAbbrevs) {
1741   Triple Triple = getNormalizedDefaultTargetTriple();
1742   if (!isConfigurationSupported(Triple))
1743     return;
1744 
1745   uint16_t Version = 5;
1746   auto ExpectedDG = dwarfgen::Generator::create(Triple, Version);
1747   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
1748   dwarfgen::Generator *DG = ExpectedDG.get().get();
1749   dwarfgen::CompileUnit &CU = DG->addCompileUnit();
1750   dwarfgen::DIE CUDie = CU.getUnitDIE();
1751   const dwarf::Attribute Attr = DW_AT_lo_user;
1752   const int64_t Val1 = 42;
1753   const int64_t Val2 = 43;
1754 
1755   auto FirstVal1DIE = CUDie.addChild(DW_TAG_class_type);
1756   FirstVal1DIE.addAttribute(Attr, DW_FORM_implicit_const, Val1);
1757 
1758   auto SecondVal1DIE = CUDie.addChild(DW_TAG_class_type);
1759   SecondVal1DIE.addAttribute(Attr, DW_FORM_implicit_const, Val1);
1760 
1761   auto Val2DIE = CUDie.addChild(DW_TAG_class_type);
1762   Val2DIE.addAttribute(Attr, DW_FORM_implicit_const, Val2);
1763 
1764   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
1765   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
1766   EXPECT_TRUE((bool)Obj);
1767   std::unique_ptr<DWARFContext> DwarfContext = DWARFContext::create(**Obj);
1768   DWARFCompileUnit *U =
1769       cast<DWARFCompileUnit>(DwarfContext->getUnitAtIndex(0));
1770   EXPECT_TRUE((bool)U);
1771 
1772   const auto *Abbrevs = U->getAbbreviations();
1773   EXPECT_TRUE((bool)Abbrevs);
1774 
1775   // Let's find implicit_const abbrevs and verify,
1776   // that there are exactly two of them and both of them
1777   // can be dumped correctly.
1778   typedef decltype(Abbrevs->begin()) AbbrevIt;
1779   AbbrevIt Val1Abbrev = Abbrevs->end();
1780   AbbrevIt Val2Abbrev = Abbrevs->end();
1781   for(auto it = Abbrevs->begin(); it != Abbrevs->end(); ++it) {
1782     if (it->getNumAttributes() == 0)
1783       continue; // root abbrev for DW_TAG_compile_unit
1784 
1785     auto A = it->getAttrByIndex(0);
1786     EXPECT_EQ(A, Attr);
1787 
1788     auto FormValue = it->getAttributeValue(/* offset */ 0, A, *U);
1789     EXPECT_TRUE((bool)FormValue);
1790     EXPECT_EQ(FormValue->getForm(), dwarf::DW_FORM_implicit_const);
1791 
1792     const auto V = FormValue->getAsSignedConstant();
1793     EXPECT_TRUE((bool)V);
1794 
1795     auto VerifyAbbrevDump = [&V](AbbrevIt it) {
1796       std::string S;
1797       llvm::raw_string_ostream OS(S);
1798       it->dump(OS);
1799       auto FormPos = OS.str().find("DW_FORM_implicit_const");
1800       EXPECT_NE(FormPos, std::string::npos);
1801       auto ValPos = S.find_first_of("-0123456789", FormPos);
1802       EXPECT_NE(ValPos, std::string::npos);
1803       int64_t Val = std::atoll(S.substr(ValPos).c_str());
1804       EXPECT_EQ(Val, *V);
1805     };
1806 
1807     switch(*V) {
1808     case Val1:
1809       EXPECT_EQ(Val1Abbrev, Abbrevs->end());
1810       Val1Abbrev = it;
1811       VerifyAbbrevDump(it);
1812       break;
1813     case Val2:
1814       EXPECT_EQ(Val2Abbrev, Abbrevs->end());
1815       Val2Abbrev = it;
1816       VerifyAbbrevDump(it);
1817       break;
1818     default:
1819       FAIL() << "Unexpected attribute value: " << *V;
1820     }
1821   }
1822 
1823   // Now let's make sure that two Val1-DIEs refer to the same abbrev,
1824   // and Val2-DIE refers to another one.
1825   auto DieDG = U->getUnitDIE(false);
1826   auto it = DieDG.begin();
1827   std::multimap<int64_t, decltype(it->getAbbreviationDeclarationPtr())> DIEs;
1828   const DWARFAbbreviationDeclaration *AbbrevPtrVal1 = nullptr;
1829   const DWARFAbbreviationDeclaration *AbbrevPtrVal2 = nullptr;
1830   for (; it != DieDG.end(); ++it) {
1831     const auto *AbbrevPtr = it->getAbbreviationDeclarationPtr();
1832     EXPECT_TRUE((bool)AbbrevPtr);
1833     auto FormValue = it->find(Attr);
1834     EXPECT_TRUE((bool)FormValue);
1835     const auto V = FormValue->getAsSignedConstant();
1836     EXPECT_TRUE((bool)V);
1837     switch(*V) {
1838     case Val1:
1839       AbbrevPtrVal1 = AbbrevPtr;
1840       break;
1841     case Val2:
1842       AbbrevPtrVal2 = AbbrevPtr;
1843       break;
1844     default:
1845       FAIL() << "Unexpected attribute value: " << *V;
1846     }
1847     DIEs.insert(std::make_pair(*V, AbbrevPtr));
1848   }
1849   EXPECT_EQ(DIEs.count(Val1), 2u);
1850   EXPECT_EQ(DIEs.count(Val2), 1u);
1851   auto Val1Range = DIEs.equal_range(Val1);
1852   for (auto it = Val1Range.first; it != Val1Range.second; ++it)
1853     EXPECT_EQ(it->second, AbbrevPtrVal1);
1854   EXPECT_EQ(DIEs.find(Val2)->second, AbbrevPtrVal2);
1855 }
1856 
1857 void VerifyWarning(DWARFContext &DwarfContext, StringRef Error) {
1858   SmallString<1024> Str;
1859   raw_svector_ostream Strm(Str);
1860   EXPECT_TRUE(DwarfContext.verify(Strm));
1861   EXPECT_TRUE(Str.str().contains(Error));
1862 }
1863 
1864 void VerifyError(DWARFContext &DwarfContext, StringRef Error) {
1865   SmallString<1024> Str;
1866   raw_svector_ostream Strm(Str);
1867   EXPECT_FALSE(DwarfContext.verify(Strm));
1868   EXPECT_TRUE(Str.str().contains(Error));
1869 }
1870 
1871 void VerifySuccess(DWARFContext &DwarfContext) {
1872   SmallString<1024> Str;
1873   raw_svector_ostream Strm(Str);
1874   EXPECT_TRUE(DwarfContext.verify(Strm));
1875 }
1876 
1877 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidCURef) {
1878   // Create a single compile unit with a single function that has a DW_AT_type
1879   // that is CU relative. The CU offset is not valid because it is larger than
1880   // the compile unit itself.
1881 
1882   const char *yamldata = R"(
1883     debug_str:
1884       - ''
1885       - /tmp/main.c
1886       - main
1887     debug_abbrev:
1888       - Code:            0x00000001
1889         Tag:             DW_TAG_compile_unit
1890         Children:        DW_CHILDREN_yes
1891         Attributes:
1892           - Attribute:       DW_AT_name
1893             Form:            DW_FORM_strp
1894       - Code:            0x00000002
1895         Tag:             DW_TAG_subprogram
1896         Children:        DW_CHILDREN_no
1897         Attributes:
1898           - Attribute:       DW_AT_name
1899             Form:            DW_FORM_strp
1900           - Attribute:       DW_AT_type
1901             Form:            DW_FORM_ref4
1902     debug_info:
1903       - Length:          22
1904         Version:         4
1905         AbbrOffset:      0
1906         AddrSize:        8
1907         Entries:
1908           - AbbrCode:        0x00000001
1909             Values:
1910               - Value:           0x0000000000000001
1911           - AbbrCode:        0x00000002
1912             Values:
1913               - Value:           0x000000000000000D
1914               - Value:           0x0000000000001234
1915           - AbbrCode:        0x00000000
1916             Values:
1917   )";
1918   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
1919   ASSERT_TRUE((bool)ErrOrSections);
1920   std::unique_ptr<DWARFContext> DwarfContext =
1921       DWARFContext::create(*ErrOrSections, 8);
1922   VerifyError(*DwarfContext, "error: DW_FORM_ref4 CU offset 0x00001234 is "
1923                              "invalid (must be less than CU size of "
1924                              "0x0000001a):");
1925 }
1926 
1927 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidRefAddr) {
1928   // Create a single compile unit with a single function that has an invalid
1929   // DW_AT_type with an invalid .debug_info offset in its DW_FORM_ref_addr.
1930   const char *yamldata = R"(
1931     debug_str:
1932       - ''
1933       - /tmp/main.c
1934       - main
1935     debug_abbrev:
1936       - Code:            0x00000001
1937         Tag:             DW_TAG_compile_unit
1938         Children:        DW_CHILDREN_yes
1939         Attributes:
1940           - Attribute:       DW_AT_name
1941             Form:            DW_FORM_strp
1942       - Code:            0x00000002
1943         Tag:             DW_TAG_subprogram
1944         Children:        DW_CHILDREN_no
1945         Attributes:
1946           - Attribute:       DW_AT_name
1947             Form:            DW_FORM_strp
1948           - Attribute:       DW_AT_type
1949             Form:            DW_FORM_ref_addr
1950     debug_info:
1951       - Length:          22
1952         Version:         4
1953         AbbrOffset:      0
1954         AddrSize:        8
1955         Entries:
1956           - AbbrCode:        0x00000001
1957             Values:
1958               - Value:           0x0000000000000001
1959           - AbbrCode:        0x00000002
1960             Values:
1961               - Value:           0x000000000000000D
1962               - Value:           0x0000000000001234
1963           - AbbrCode:        0x00000000
1964             Values:
1965   )";
1966   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
1967   ASSERT_TRUE((bool)ErrOrSections);
1968   std::unique_ptr<DWARFContext> DwarfContext =
1969       DWARFContext::create(*ErrOrSections, 8);
1970   VerifyError(*DwarfContext,
1971               "error: DW_FORM_ref_addr offset beyond .debug_info bounds:");
1972 }
1973 
1974 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidRanges) {
1975   // Create a single compile unit with a DW_AT_ranges whose section offset
1976   // isn't valid.
1977   const char *yamldata = R"(
1978     debug_str:
1979       - ''
1980       - /tmp/main.c
1981     debug_abbrev:
1982       - Code:            0x00000001
1983         Tag:             DW_TAG_compile_unit
1984         Children:        DW_CHILDREN_no
1985         Attributes:
1986           - Attribute:       DW_AT_name
1987             Form:            DW_FORM_strp
1988           - Attribute:       DW_AT_ranges
1989             Form:            DW_FORM_sec_offset
1990     debug_info:
1991       - Length:          16
1992         Version:         4
1993         AbbrOffset:      0
1994         AddrSize:        8
1995         Entries:
1996           - AbbrCode:        0x00000001
1997             Values:
1998               - Value:           0x0000000000000001
1999               - Value:           0x0000000000001000
2000 
2001   )";
2002   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
2003   ASSERT_TRUE((bool)ErrOrSections);
2004   std::unique_ptr<DWARFContext> DwarfContext =
2005       DWARFContext::create(*ErrOrSections, 8);
2006   VerifyError(
2007       *DwarfContext,
2008       "error: DW_AT_ranges offset is beyond .debug_ranges bounds: 0x00001000");
2009 }
2010 
2011 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidRnglists) {
2012   // Create a single compile unit with a DW_AT_ranges whose section offset
2013   // isn't valid.
2014   const char *yamldata = R"(
2015     debug_str:
2016       - ''
2017       - /tmp/main.c
2018     debug_abbrev:
2019       - Code:            0x00000001
2020         Tag:             DW_TAG_compile_unit
2021         Children:        DW_CHILDREN_no
2022         Attributes:
2023           - Attribute:       DW_AT_name
2024             Form:            DW_FORM_strp
2025           - Attribute:       DW_AT_ranges
2026             Form:            DW_FORM_sec_offset
2027     debug_info:
2028       - Length:          17
2029         Version:         5
2030         UnitType:        DW_UT_compile
2031         AbbrOffset:      0
2032         AddrSize:        8
2033         Entries:
2034           - AbbrCode:        0x00000001
2035             Values:
2036               - Value:           0x0000000000000001
2037               - Value:           0x0000000000001000
2038 
2039   )";
2040   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
2041   ASSERT_TRUE((bool)ErrOrSections);
2042   std::unique_ptr<DWARFContext> DwarfContext =
2043       DWARFContext::create(*ErrOrSections, 8);
2044   VerifyError(*DwarfContext, "error: DW_AT_ranges offset is beyond "
2045                              ".debug_rnglists bounds: 0x00001000");
2046 }
2047 
2048 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidStmtList) {
2049   // Create a single compile unit with a DW_AT_stmt_list whose section offset
2050   // isn't valid.
2051   const char *yamldata = R"(
2052     debug_str:
2053       - ''
2054       - /tmp/main.c
2055     debug_abbrev:
2056       - Code:            0x00000001
2057         Tag:             DW_TAG_compile_unit
2058         Children:        DW_CHILDREN_no
2059         Attributes:
2060           - Attribute:       DW_AT_name
2061             Form:            DW_FORM_strp
2062           - Attribute:       DW_AT_stmt_list
2063             Form:            DW_FORM_sec_offset
2064     debug_info:
2065       - Length:          16
2066         Version:         4
2067         AbbrOffset:      0
2068         AddrSize:        8
2069         Entries:
2070           - AbbrCode:        0x00000001
2071             Values:
2072               - Value:           0x0000000000000001
2073               - Value:           0x0000000000001000
2074 
2075   )";
2076   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
2077   ASSERT_TRUE((bool)ErrOrSections);
2078   std::unique_ptr<DWARFContext> DwarfContext =
2079       DWARFContext::create(*ErrOrSections, 8);
2080   VerifyError(
2081       *DwarfContext,
2082       "error: DW_AT_stmt_list offset is beyond .debug_line bounds: 0x00001000");
2083 }
2084 
2085 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidStrp) {
2086   // Create a single compile unit with a single function that has an invalid
2087   // DW_FORM_strp for the DW_AT_name.
2088   const char *yamldata = R"(
2089     debug_str:
2090       - ''
2091     debug_abbrev:
2092       - Code:            0x00000001
2093         Tag:             DW_TAG_compile_unit
2094         Children:        DW_CHILDREN_no
2095         Attributes:
2096           - Attribute:       DW_AT_name
2097             Form:            DW_FORM_strp
2098     debug_info:
2099       - Length:          12
2100         Version:         4
2101         AbbrOffset:      0
2102         AddrSize:        8
2103         Entries:
2104           - AbbrCode:        0x00000001
2105             Values:
2106               - Value:           0x0000000000001234
2107   )";
2108   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
2109   ASSERT_TRUE((bool)ErrOrSections);
2110   std::unique_ptr<DWARFContext> DwarfContext =
2111       DWARFContext::create(*ErrOrSections, 8);
2112   VerifyError(*DwarfContext,
2113               "error: DW_FORM_strp offset beyond .debug_str bounds:");
2114 }
2115 
2116 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidRefAddrBetween) {
2117   // Create a single compile unit with a single function that has a DW_AT_type
2118   // with a valid .debug_info offset, but the offset is between two DIEs.
2119   const char *yamldata = R"(
2120     debug_str:
2121       - ''
2122       - /tmp/main.c
2123       - main
2124     debug_abbrev:
2125       - Code:            0x00000001
2126         Tag:             DW_TAG_compile_unit
2127         Children:        DW_CHILDREN_yes
2128         Attributes:
2129           - Attribute:       DW_AT_name
2130             Form:            DW_FORM_strp
2131       - Code:            0x00000002
2132         Tag:             DW_TAG_subprogram
2133         Children:        DW_CHILDREN_no
2134         Attributes:
2135           - Attribute:       DW_AT_name
2136             Form:            DW_FORM_strp
2137           - Attribute:       DW_AT_type
2138             Form:            DW_FORM_ref_addr
2139     debug_info:
2140       - Length:          22
2141         Version:         4
2142         AbbrOffset:      0
2143         AddrSize:        8
2144         Entries:
2145           - AbbrCode:        0x00000001
2146             Values:
2147               - Value:           0x0000000000000001
2148           - AbbrCode:        0x00000002
2149             Values:
2150               - Value:           0x000000000000000D
2151               - Value:           0x0000000000000011
2152           - AbbrCode:        0x00000000
2153             Values:
2154   )";
2155   auto ErrOrSections = DWARFYAML::emitDebugSections(StringRef(yamldata));
2156   ASSERT_TRUE((bool)ErrOrSections);
2157   std::unique_ptr<DWARFContext> DwarfContext =
2158       DWARFContext::create(*ErrOrSections, 8);
2159   VerifyError(
2160       *DwarfContext,
2161       "error: invalid DIE reference 0x00000011. Offset is in between DIEs:");
2162 }
2163 
2164 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidLineSequence) {
2165   // Create a single compile unit whose line table has a sequence in it where
2166   // the address decreases.
2167   StringRef yamldata = R"(
2168     debug_str:
2169       - ''
2170       - /tmp/main.c
2171     debug_abbrev:
2172       - Code:            0x00000001
2173         Tag:             DW_TAG_compile_unit
2174         Children:        DW_CHILDREN_no
2175         Attributes:
2176           - Attribute:       DW_AT_name
2177             Form:            DW_FORM_strp
2178           - Attribute:       DW_AT_stmt_list
2179             Form:            DW_FORM_sec_offset
2180     debug_info:
2181       - Length:          16
2182         Version:         4
2183         AbbrOffset:      0
2184         AddrSize:        8
2185         Entries:
2186           - AbbrCode:        0x00000001
2187             Values:
2188               - Value:           0x0000000000000001
2189               - Value:           0x0000000000000000
2190     debug_line:
2191       - Length:          68
2192         Version:         2
2193         PrologueLength:  34
2194         MinInstLength:   1
2195         DefaultIsStmt:   1
2196         LineBase:        251
2197         LineRange:       14
2198         OpcodeBase:      13
2199         StandardOpcodeLengths: [ 0, 1, 1, 1, 1, 0, 0, 0, 1, 0, 0, 1 ]
2200         IncludeDirs:
2201           - /tmp
2202         Files:
2203           - Name:            main.c
2204             DirIdx:          1
2205             ModTime:         0
2206             Length:          0
2207         Opcodes:
2208           - Opcode:          DW_LNS_extended_op
2209             ExtLen:          9
2210             SubOpcode:       DW_LNE_set_address
2211             Data:            4112
2212           - Opcode:          DW_LNS_advance_line
2213             SData:           9
2214             Data:            4112
2215           - Opcode:          DW_LNS_copy
2216             Data:            4112
2217           - Opcode:          DW_LNS_advance_pc
2218             Data:            18446744073709551600
2219           - Opcode:          DW_LNS_extended_op
2220             ExtLen:          1
2221             SubOpcode:       DW_LNE_end_sequence
2222             Data:            18446744073709551600
2223   )";
2224   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2225   ASSERT_TRUE((bool)ErrOrSections);
2226   std::unique_ptr<DWARFContext> DwarfContext =
2227       DWARFContext::create(*ErrOrSections, 8);
2228   VerifyError(*DwarfContext, "error: .debug_line[0x00000000] row[1] decreases "
2229                              "in address from previous row:");
2230 }
2231 
2232 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidLineFileIndex) {
2233   // Create a single compile unit whose line table has a line table row with
2234   // an invalid file index.
2235   StringRef yamldata = R"(
2236     debug_str:
2237       - ''
2238       - /tmp/main.c
2239     debug_abbrev:
2240       - Code:            0x00000001
2241         Tag:             DW_TAG_compile_unit
2242         Children:        DW_CHILDREN_no
2243         Attributes:
2244           - Attribute:       DW_AT_name
2245             Form:            DW_FORM_strp
2246           - Attribute:       DW_AT_stmt_list
2247             Form:            DW_FORM_sec_offset
2248     debug_info:
2249       - Length:          16
2250         Version:         4
2251         AbbrOffset:      0
2252         AddrSize:        8
2253         Entries:
2254           - AbbrCode:        0x00000001
2255             Values:
2256               - Value:           0x0000000000000001
2257               - Value:           0x0000000000000000
2258     debug_line:
2259       - Length:          61
2260         Version:         2
2261         PrologueLength:  34
2262         MinInstLength:   1
2263         DefaultIsStmt:   1
2264         LineBase:        251
2265         LineRange:       14
2266         OpcodeBase:      13
2267         StandardOpcodeLengths: [ 0, 1, 1, 1, 1, 0, 0, 0, 1, 0, 0, 1 ]
2268         IncludeDirs:
2269           - /tmp
2270         Files:
2271           - Name:            main.c
2272             DirIdx:          1
2273             ModTime:         0
2274             Length:          0
2275         Opcodes:
2276           - Opcode:          DW_LNS_extended_op
2277             ExtLen:          9
2278             SubOpcode:       DW_LNE_set_address
2279             Data:            4096
2280           - Opcode:          DW_LNS_advance_line
2281             SData:           9
2282             Data:            4096
2283           - Opcode:          DW_LNS_copy
2284             Data:            4096
2285           - Opcode:          DW_LNS_advance_pc
2286             Data:            16
2287           - Opcode:          DW_LNS_set_file
2288             Data:            5
2289           - Opcode:          DW_LNS_extended_op
2290             ExtLen:          1
2291             SubOpcode:       DW_LNE_end_sequence
2292             Data:            5
2293   )";
2294   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2295   ASSERT_TRUE((bool)ErrOrSections);
2296   std::unique_ptr<DWARFContext> DwarfContext =
2297       DWARFContext::create(*ErrOrSections, 8);
2298   VerifyError(*DwarfContext, "error: .debug_line[0x00000000][1] has invalid "
2299                              "file index 5 (valid values are [1,1]):");
2300 }
2301 
2302 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidLineTablePorlogueDirIndex) {
2303   // Create a single compile unit whose line table has a prologue with an
2304   // invalid dir index.
2305   StringRef yamldata = R"(
2306     debug_str:
2307       - ''
2308       - /tmp/main.c
2309     debug_abbrev:
2310       - Code:            0x00000001
2311         Tag:             DW_TAG_compile_unit
2312         Children:        DW_CHILDREN_no
2313         Attributes:
2314           - Attribute:       DW_AT_name
2315             Form:            DW_FORM_strp
2316           - Attribute:       DW_AT_stmt_list
2317             Form:            DW_FORM_sec_offset
2318     debug_info:
2319       - Length:          16
2320         Version:         4
2321         AbbrOffset:      0
2322         AddrSize:        8
2323         Entries:
2324           - AbbrCode:        0x00000001
2325             Values:
2326               - Value:           0x0000000000000001
2327               - Value:           0x0000000000000000
2328     debug_line:
2329       - Length:          61
2330         Version:         2
2331         PrologueLength:  34
2332         MinInstLength:   1
2333         DefaultIsStmt:   1
2334         LineBase:        251
2335         LineRange:       14
2336         OpcodeBase:      13
2337         StandardOpcodeLengths: [ 0, 1, 1, 1, 1, 0, 0, 0, 1, 0, 0, 1 ]
2338         IncludeDirs:
2339           - /tmp
2340         Files:
2341           - Name:            main.c
2342             DirIdx:          2
2343             ModTime:         0
2344             Length:          0
2345         Opcodes:
2346           - Opcode:          DW_LNS_extended_op
2347             ExtLen:          9
2348             SubOpcode:       DW_LNE_set_address
2349             Data:            4096
2350           - Opcode:          DW_LNS_advance_line
2351             SData:           9
2352             Data:            4096
2353           - Opcode:          DW_LNS_copy
2354             Data:            4096
2355           - Opcode:          DW_LNS_advance_pc
2356             Data:            16
2357           - Opcode:          DW_LNS_set_file
2358             Data:            1
2359           - Opcode:          DW_LNS_extended_op
2360             ExtLen:          1
2361             SubOpcode:       DW_LNE_end_sequence
2362             Data:            1
2363   )";
2364   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2365   ASSERT_TRUE((bool)ErrOrSections);
2366   std::unique_ptr<DWARFContext> DwarfContext =
2367       DWARFContext::create(*ErrOrSections, 8);
2368   VerifyError(*DwarfContext,
2369               "error: .debug_line[0x00000000].prologue."
2370               "file_names[1].dir_idx contains an invalid index: 2");
2371 }
2372 
2373 TEST(DWARFDebugInfo, TestDwarfVerifyDuplicateFileWarning) {
2374   // Create a single compile unit whose line table has a prologue with an
2375   // invalid dir index.
2376   StringRef yamldata = R"(
2377     debug_str:
2378       - ''
2379       - /tmp/main.c
2380     debug_abbrev:
2381       - Code:            0x00000001
2382         Tag:             DW_TAG_compile_unit
2383         Children:        DW_CHILDREN_no
2384         Attributes:
2385           - Attribute:       DW_AT_name
2386             Form:            DW_FORM_strp
2387           - Attribute:       DW_AT_stmt_list
2388             Form:            DW_FORM_sec_offset
2389     debug_info:
2390       - Length:          16
2391         Version:         4
2392         AbbrOffset:      0
2393         AddrSize:        8
2394         Entries:
2395           - AbbrCode:        0x00000001
2396             Values:
2397               - Value:           0x0000000000000001
2398               - Value:           0x0000000000000000
2399     debug_line:
2400       - Length:          71
2401         Version:         2
2402         PrologueLength:  44
2403         MinInstLength:   1
2404         DefaultIsStmt:   1
2405         LineBase:        251
2406         LineRange:       14
2407         OpcodeBase:      13
2408         StandardOpcodeLengths: [ 0, 1, 1, 1, 1, 0, 0, 0, 1, 0, 0, 1 ]
2409         IncludeDirs:
2410           - /tmp
2411         Files:
2412           - Name:            main.c
2413             DirIdx:          1
2414             ModTime:         0
2415             Length:          0
2416           - Name:            main.c
2417             DirIdx:          1
2418             ModTime:         0
2419             Length:          0
2420         Opcodes:
2421           - Opcode:          DW_LNS_extended_op
2422             ExtLen:          9
2423             SubOpcode:       DW_LNE_set_address
2424             Data:            4096
2425           - Opcode:          DW_LNS_advance_line
2426             SData:           9
2427             Data:            4096
2428           - Opcode:          DW_LNS_copy
2429             Data:            4096
2430           - Opcode:          DW_LNS_advance_pc
2431             Data:            16
2432           - Opcode:          DW_LNS_set_file
2433             Data:            1
2434           - Opcode:          DW_LNS_extended_op
2435             ExtLen:          1
2436             SubOpcode:       DW_LNE_end_sequence
2437             Data:            2
2438   )";
2439   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2440   ASSERT_TRUE((bool)ErrOrSections);
2441   std::unique_ptr<DWARFContext> DwarfContext =
2442       DWARFContext::create(*ErrOrSections, 8);
2443   VerifyWarning(*DwarfContext,
2444                 "warning: .debug_line[0x00000000].prologue.file_names[2] is "
2445                 "a duplicate of file_names[1]");
2446 }
2447 
2448 TEST(DWARFDebugInfo, TestDwarfVerifyCUDontShareLineTable) {
2449   // Create a two compile units where both compile units share the same
2450   // DW_AT_stmt_list value and verify we report the error correctly.
2451   StringRef yamldata = R"(
2452     debug_str:
2453       - ''
2454       - /tmp/main.c
2455       - /tmp/foo.c
2456     debug_abbrev:
2457       - Code:            0x00000001
2458         Tag:             DW_TAG_compile_unit
2459         Children:        DW_CHILDREN_no
2460         Attributes:
2461           - Attribute:       DW_AT_name
2462             Form:            DW_FORM_strp
2463           - Attribute:       DW_AT_stmt_list
2464             Form:            DW_FORM_sec_offset
2465     debug_info:
2466       - Length:          16
2467         Version:         4
2468         AbbrOffset:      0
2469         AddrSize:        8
2470         Entries:
2471           - AbbrCode:        0x00000001
2472             Values:
2473               - Value:           0x0000000000000001
2474               - Value:           0x0000000000000000
2475       - Length:          16
2476         Version:         4
2477         AbbrOffset:      0
2478         AddrSize:        8
2479         Entries:
2480           - AbbrCode:        0x00000001
2481             Values:
2482               - Value:           0x000000000000000D
2483               - Value:           0x0000000000000000
2484     debug_line:
2485       - Length:          60
2486         Version:         2
2487         PrologueLength:  34
2488         MinInstLength:   1
2489         DefaultIsStmt:   1
2490         LineBase:        251
2491         LineRange:       14
2492         OpcodeBase:      13
2493         StandardOpcodeLengths: [ 0, 1, 1, 1, 1, 0, 0, 0, 1, 0, 0, 1 ]
2494         IncludeDirs:
2495           - /tmp
2496         Files:
2497           - Name:            main.c
2498             DirIdx:          1
2499             ModTime:         0
2500             Length:          0
2501         Opcodes:
2502           - Opcode:          DW_LNS_extended_op
2503             ExtLen:          9
2504             SubOpcode:       DW_LNE_set_address
2505             Data:            4096
2506           - Opcode:          DW_LNS_advance_line
2507             SData:           9
2508             Data:            4096
2509           - Opcode:          DW_LNS_copy
2510             Data:            4096
2511           - Opcode:          DW_LNS_advance_pc
2512             Data:            256
2513           - Opcode:          DW_LNS_extended_op
2514             ExtLen:          1
2515             SubOpcode:       DW_LNE_end_sequence
2516             Data:            256
2517   )";
2518   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2519   ASSERT_TRUE((bool)ErrOrSections);
2520   std::unique_ptr<DWARFContext> DwarfContext =
2521       DWARFContext::create(*ErrOrSections, 8);
2522   VerifyError(*DwarfContext,
2523               "error: two compile unit DIEs, 0x0000000b and "
2524               "0x0000001f, have the same DW_AT_stmt_list section "
2525               "offset:");
2526 }
2527 
2528 TEST(DWARFDebugInfo, TestErrorReporting) {
2529   Triple Triple("x86_64-pc-linux");
2530   if (!isConfigurationSupported(Triple))
2531       return;
2532 
2533   auto ExpectedDG = dwarfgen::Generator::create(Triple, 4 /*DwarfVersion*/);
2534   ASSERT_THAT_EXPECTED(ExpectedDG, Succeeded());
2535   dwarfgen::Generator *DG = ExpectedDG.get().get();
2536   AsmPrinter *AP = DG->getAsmPrinter();
2537   MCContext *MC = DG->getMCContext();
2538 
2539   // Emit two compressed sections with broken headers.
2540   AP->OutStreamer->SwitchSection(
2541       MC->getELFSection(".zdebug_foo", 0 /*Type*/, 0 /*Flags*/));
2542   AP->OutStreamer->emitBytes("0");
2543   AP->OutStreamer->SwitchSection(
2544       MC->getELFSection(".zdebug_bar", 0 /*Type*/, 0 /*Flags*/));
2545   AP->OutStreamer->emitBytes("0");
2546 
2547   MemoryBufferRef FileBuffer(DG->generate(), "dwarf");
2548   auto Obj = object::ObjectFile::createObjectFile(FileBuffer);
2549   EXPECT_TRUE((bool)Obj);
2550 
2551   // DWARFContext parses whole file and finds the two errors we expect.
2552   int Errors = 0;
2553   std::unique_ptr<DWARFContext> Ctx1 =
2554       DWARFContext::create(**Obj, nullptr, "", [&](Error E) {
2555         ++Errors;
2556         consumeError(std::move(E));
2557       });
2558   EXPECT_TRUE(Errors == 2);
2559 }
2560 
2561 TEST(DWARFDebugInfo, TestDwarfVerifyCURangesIncomplete) {
2562   // Create a single compile unit with a single function. The compile
2563   // unit has a DW_AT_ranges attribute that doesn't fully contain the
2564   // address range of the function. The verification should fail due to
2565   // the CU ranges not containing all of the address ranges of all of the
2566   // functions.
2567   StringRef yamldata = R"(
2568     debug_str:
2569       - ''
2570       - /tmp/main.c
2571     debug_abbrev:
2572       - Code:            0x00000001
2573         Tag:             DW_TAG_compile_unit
2574         Children:        DW_CHILDREN_yes
2575         Attributes:
2576           - Attribute:       DW_AT_low_pc
2577             Form:            DW_FORM_addr
2578           - Attribute:       DW_AT_high_pc
2579             Form:            DW_FORM_addr
2580           - Attribute:       DW_AT_name
2581             Form:            DW_FORM_strp
2582       - Code:            0x00000002
2583         Tag:             DW_TAG_subprogram
2584         Children:        DW_CHILDREN_no
2585         Attributes:
2586           - Attribute:       DW_AT_low_pc
2587             Form:            DW_FORM_addr
2588           - Attribute:       DW_AT_high_pc
2589             Form:            DW_FORM_addr
2590     debug_info:
2591       - Length:          46
2592         Version:         4
2593         AbbrOffset:      0
2594         AddrSize:        8
2595         Entries:
2596           - AbbrCode:        0x00000001
2597             Values:
2598               - Value:           0x0000000000001000
2599               - Value:           0x0000000000001500
2600               - Value:           0x0000000000000001
2601           - AbbrCode:        0x00000002
2602             Values:
2603               - Value:           0x0000000000001000
2604               - Value:           0x0000000000002000
2605           - AbbrCode:        0x00000000
2606             Values:
2607   )";
2608   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2609   ASSERT_TRUE((bool)ErrOrSections);
2610   std::unique_ptr<DWARFContext> DwarfContext =
2611       DWARFContext::create(*ErrOrSections, 8);
2612   VerifyError(*DwarfContext, "error: DIE address ranges are not "
2613                              "contained in its parent's ranges:");
2614 }
2615 
2616 TEST(DWARFDebugInfo, TestDwarfVerifyLexicalBlockRanges) {
2617   // Create a single compile unit with a single function that has a lexical
2618   // block whose address range is not contained in the function address range.
2619   StringRef yamldata = R"(
2620     debug_str:
2621       - ''
2622       - /tmp/main.c
2623       - main
2624     debug_abbrev:
2625       - Code:            0x00000001
2626         Tag:             DW_TAG_compile_unit
2627         Children:        DW_CHILDREN_yes
2628         Attributes:
2629           - Attribute:       DW_AT_name
2630             Form:            DW_FORM_strp
2631       - Code:            0x00000002
2632         Tag:             DW_TAG_subprogram
2633         Children:        DW_CHILDREN_yes
2634         Attributes:
2635           - Attribute:       DW_AT_name
2636             Form:            DW_FORM_strp
2637           - Attribute:       DW_AT_low_pc
2638             Form:            DW_FORM_addr
2639           - Attribute:       DW_AT_high_pc
2640             Form:            DW_FORM_addr
2641       - Code:            0x00000003
2642         Tag:             DW_TAG_lexical_block
2643         Children:        DW_CHILDREN_no
2644         Attributes:
2645           - Attribute:       DW_AT_low_pc
2646             Form:            DW_FORM_addr
2647           - Attribute:       DW_AT_high_pc
2648             Form:            DW_FORM_addr
2649     debug_info:
2650       - Length:          52
2651         Version:         4
2652         AbbrOffset:      0
2653         AddrSize:        8
2654         Entries:
2655           - AbbrCode:        0x00000001
2656             Values:
2657               - Value:           0x0000000000000001
2658           - AbbrCode:        0x00000002
2659             Values:
2660               - Value:           0x000000000000000D
2661               - Value:           0x0000000000001000
2662               - Value:           0x0000000000002000
2663           - AbbrCode:        0x00000003
2664             Values:
2665               - Value:           0x0000000000001000
2666               - Value:           0x0000000000002001
2667           - AbbrCode:        0x00000000
2668             Values:
2669           - AbbrCode:        0x00000000
2670             Values:
2671   )";
2672   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2673   ASSERT_TRUE((bool)ErrOrSections);
2674   std::unique_ptr<DWARFContext> DwarfContext =
2675       DWARFContext::create(*ErrOrSections, 8);
2676   VerifyError(*DwarfContext, "error: DIE address ranges are not "
2677                              "contained in its parent's ranges:");
2678 }
2679 
2680 TEST(DWARFDebugInfo, TestDwarfVerifyOverlappingFunctionRanges) {
2681   // Create a single compile unit with a two functions that have overlapping
2682   // address ranges.
2683   StringRef yamldata = R"(
2684     debug_str:
2685       - ''
2686       - /tmp/main.c
2687       - main
2688       - foo
2689     debug_abbrev:
2690       - Code:            0x00000001
2691         Tag:             DW_TAG_compile_unit
2692         Children:        DW_CHILDREN_yes
2693         Attributes:
2694           - Attribute:       DW_AT_name
2695             Form:            DW_FORM_strp
2696       - Code:            0x00000002
2697         Tag:             DW_TAG_subprogram
2698         Children:        DW_CHILDREN_no
2699         Attributes:
2700           - Attribute:       DW_AT_name
2701             Form:            DW_FORM_strp
2702           - Attribute:       DW_AT_low_pc
2703             Form:            DW_FORM_addr
2704           - Attribute:       DW_AT_high_pc
2705             Form:            DW_FORM_addr
2706     debug_info:
2707       - Length:          55
2708         Version:         4
2709         AbbrOffset:      0
2710         AddrSize:        8
2711         Entries:
2712           - AbbrCode:        0x00000001
2713             Values:
2714               - Value:           0x0000000000000001
2715           - AbbrCode:        0x00000002
2716             Values:
2717               - Value:           0x000000000000000D
2718               - Value:           0x0000000000001000
2719               - Value:           0x0000000000002000
2720           - AbbrCode:        0x00000002
2721             Values:
2722               - Value:           0x0000000000000012
2723               - Value:           0x0000000000001FFF
2724               - Value:           0x0000000000002000
2725           - AbbrCode:        0x00000000
2726             Values:
2727   )";
2728   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2729   ASSERT_TRUE((bool)ErrOrSections);
2730   std::unique_ptr<DWARFContext> DwarfContext =
2731       DWARFContext::create(*ErrOrSections, 8);
2732   VerifyError(*DwarfContext, "error: DIEs have overlapping address ranges:");
2733 }
2734 
2735 TEST(DWARFDebugInfo, TestDwarfVerifyOverlappingLexicalBlockRanges) {
2736   // Create a single compile unit with a one function that has two lexical
2737   // blocks with overlapping address ranges.
2738   StringRef yamldata = R"(
2739     debug_str:
2740       - ''
2741       - /tmp/main.c
2742       - main
2743     debug_abbrev:
2744       - Code:            0x00000001
2745         Tag:             DW_TAG_compile_unit
2746         Children:        DW_CHILDREN_yes
2747         Attributes:
2748           - Attribute:       DW_AT_low_pc
2749             Form:            DW_FORM_addr
2750           - Attribute:       DW_AT_high_pc
2751             Form:            DW_FORM_addr
2752           - Attribute:       DW_AT_name
2753             Form:            DW_FORM_strp
2754       - Code:            0x00000002
2755         Tag:             DW_TAG_subprogram
2756         Children:        DW_CHILDREN_yes
2757         Attributes:
2758           - Attribute:       DW_AT_name
2759             Form:            DW_FORM_strp
2760           - Attribute:       DW_AT_low_pc
2761             Form:            DW_FORM_addr
2762           - Attribute:       DW_AT_high_pc
2763             Form:            DW_FORM_addr
2764       - Code:            0x00000003
2765         Tag:             DW_TAG_lexical_block
2766         Children:        DW_CHILDREN_no
2767         Attributes:
2768           - Attribute:       DW_AT_low_pc
2769             Form:            DW_FORM_addr
2770           - Attribute:       DW_AT_high_pc
2771             Form:            DW_FORM_addr
2772     debug_info:
2773       - Length:          85
2774         Version:         4
2775         AbbrOffset:      0
2776         AddrSize:        8
2777         Entries:
2778           - AbbrCode:        0x00000001
2779             Values:
2780               - Value:           0x0000000000001000
2781               - Value:           0x0000000000002000
2782               - Value:           0x0000000000000001
2783           - AbbrCode:        0x00000002
2784             Values:
2785               - Value:           0x000000000000000D
2786               - Value:           0x0000000000001000
2787               - Value:           0x0000000000002000
2788           - AbbrCode:        0x00000003
2789             Values:
2790               - Value:           0x0000000000001100
2791               - Value:           0x0000000000001300
2792           - AbbrCode:        0x00000003
2793             Values:
2794               - Value:           0x00000000000012FF
2795               - Value:           0x0000000000001300
2796           - AbbrCode:        0x00000000
2797             Values:
2798           - AbbrCode:        0x00000000
2799             Values:
2800   )";
2801   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2802   ASSERT_TRUE((bool)ErrOrSections);
2803   std::unique_ptr<DWARFContext> DwarfContext =
2804       DWARFContext::create(*ErrOrSections, 8);
2805   VerifyError(*DwarfContext, "error: DIEs have overlapping address ranges:");
2806 }
2807 
2808 TEST(DWARFDebugInfo, TestDwarfVerifyInvalidDIERange) {
2809   // Create a single compile unit with a single function that has an invalid
2810   // address range where the high PC is smaller than the low PC.
2811   StringRef yamldata = R"(
2812     debug_str:
2813       - ''
2814       - /tmp/main.c
2815       - main
2816     debug_abbrev:
2817       - Code:            0x00000001
2818         Tag:             DW_TAG_compile_unit
2819         Children:        DW_CHILDREN_yes
2820         Attributes:
2821           - Attribute:       DW_AT_name
2822             Form:            DW_FORM_strp
2823       - Code:            0x00000002
2824         Tag:             DW_TAG_subprogram
2825         Children:        DW_CHILDREN_no
2826         Attributes:
2827           - Attribute:       DW_AT_name
2828             Form:            DW_FORM_strp
2829           - Attribute:       DW_AT_low_pc
2830             Form:            DW_FORM_addr
2831           - Attribute:       DW_AT_high_pc
2832             Form:            DW_FORM_addr
2833     debug_info:
2834       - Length:          34
2835         Version:         4
2836         AbbrOffset:      0
2837         AddrSize:        8
2838         Entries:
2839           - AbbrCode:        0x00000001
2840             Values:
2841               - Value:           0x0000000000000001
2842           - AbbrCode:        0x00000002
2843             Values:
2844               - Value:           0x000000000000000D
2845               - Value:           0x0000000000001000
2846               - Value:           0x0000000000000900
2847           - AbbrCode:        0x00000000
2848             Values:
2849   )";
2850   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2851   ASSERT_TRUE((bool)ErrOrSections);
2852   std::unique_ptr<DWARFContext> DwarfContext =
2853       DWARFContext::create(*ErrOrSections, 8);
2854   VerifyError(*DwarfContext, "error: Invalid address range");
2855 }
2856 
2857 TEST(DWARFDebugInfo, TestDwarfVerifyElidedDoesntFail) {
2858   // Create a single compile unit with two functions: one that has a valid range
2859   // and one whose low and high PC are the same. When the low and high PC are
2860   // the same, this indicates the function was dead code stripped. We want to
2861   // ensure that verification succeeds.
2862   StringRef yamldata = R"(
2863     debug_str:
2864       - ''
2865       - /tmp/main.c
2866       - main
2867       - elided
2868     debug_abbrev:
2869       - Code:            0x00000001
2870         Tag:             DW_TAG_compile_unit
2871         Children:        DW_CHILDREN_yes
2872         Attributes:
2873           - Attribute:       DW_AT_low_pc
2874             Form:            DW_FORM_addr
2875           - Attribute:       DW_AT_high_pc
2876             Form:            DW_FORM_addr
2877           - Attribute:       DW_AT_name
2878             Form:            DW_FORM_strp
2879       - Code:            0x00000002
2880         Tag:             DW_TAG_subprogram
2881         Children:        DW_CHILDREN_no
2882         Attributes:
2883           - Attribute:       DW_AT_name
2884             Form:            DW_FORM_strp
2885           - Attribute:       DW_AT_low_pc
2886             Form:            DW_FORM_addr
2887           - Attribute:       DW_AT_high_pc
2888             Form:            DW_FORM_addr
2889     debug_info:
2890       - Length:          71
2891         Version:         4
2892         AbbrOffset:      0
2893         AddrSize:        8
2894         Entries:
2895           - AbbrCode:        0x00000001
2896             Values:
2897               - Value:           0x0000000000001000
2898               - Value:           0x0000000000002000
2899               - Value:           0x0000000000000001
2900           - AbbrCode:        0x00000002
2901             Values:
2902               - Value:           0x000000000000000D
2903               - Value:           0x0000000000001000
2904               - Value:           0x0000000000002000
2905           - AbbrCode:        0x00000002
2906             Values:
2907               - Value:           0x0000000000000012
2908               - Value:           0x0000000000002000
2909               - Value:           0x0000000000002000
2910           - AbbrCode:        0x00000000
2911             Values:
2912   )";
2913   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2914   ASSERT_TRUE((bool)ErrOrSections);
2915   std::unique_ptr<DWARFContext> DwarfContext =
2916       DWARFContext::create(*ErrOrSections, 8);
2917   VerifySuccess(*DwarfContext);
2918 }
2919 
2920 TEST(DWARFDebugInfo, TestDwarfVerifyNestedFunctions) {
2921   // Create a single compile unit with a nested function which is not contained
2922   // in its parent. Although LLVM doesn't generate this, it is valid accoridng
2923   // to the DWARF standard.
2924   StringRef yamldata = R"(
2925     debug_str:
2926       - ''
2927       - /tmp/main.c
2928       - main
2929       - nested
2930     debug_abbrev:
2931       - Code:            0x00000001
2932         Tag:             DW_TAG_compile_unit
2933         Children:        DW_CHILDREN_yes
2934         Attributes:
2935           - Attribute:       DW_AT_low_pc
2936             Form:            DW_FORM_addr
2937           - Attribute:       DW_AT_high_pc
2938             Form:            DW_FORM_addr
2939           - Attribute:       DW_AT_name
2940             Form:            DW_FORM_strp
2941       - Code:            0x00000002
2942         Tag:             DW_TAG_subprogram
2943         Children:        DW_CHILDREN_yes
2944         Attributes:
2945           - Attribute:       DW_AT_name
2946             Form:            DW_FORM_strp
2947           - Attribute:       DW_AT_low_pc
2948             Form:            DW_FORM_addr
2949           - Attribute:       DW_AT_high_pc
2950             Form:            DW_FORM_addr
2951     debug_info:
2952       - Length:          73
2953         Version:         4
2954         AbbrOffset:      0
2955         AddrSize:        8
2956         Entries:
2957           - AbbrCode:        0x00000001
2958             Values:
2959               - Value:           0x0000000000001000
2960               - Value:           0x0000000000002000
2961               - Value:           0x0000000000000001
2962           - AbbrCode:        0x00000002
2963             Values:
2964               - Value:           0x000000000000000D
2965               - Value:           0x0000000000001000
2966               - Value:           0x0000000000001500
2967           - AbbrCode:        0x00000002
2968             Values:
2969               - Value:           0x0000000000000012
2970               - Value:           0x0000000000001500
2971               - Value:           0x0000000000002000
2972           - AbbrCode:        0x00000000
2973             Values:
2974           - AbbrCode:        0x00000000
2975             Values:
2976           - AbbrCode:        0x00000000
2977             Values:
2978   )";
2979   auto ErrOrSections = DWARFYAML::emitDebugSections(yamldata);
2980   ASSERT_TRUE((bool)ErrOrSections);
2981   std::unique_ptr<DWARFContext> DwarfContext =
2982       DWARFContext::create(*ErrOrSections, 8);
2983   VerifySuccess(*DwarfContext);
2984 }
2985 
2986 TEST(DWARFDebugInfo, TestDWARFDieRangeInfoContains) {
2987   DWARFVerifier::DieRangeInfo Empty;
2988   ASSERT_TRUE(Empty.contains(Empty));
2989 
2990   DWARFVerifier::DieRangeInfo Ranges(
2991       {{0x10, 0x20}, {0x30, 0x40}, {0x40, 0x50}});
2992 
2993   ASSERT_TRUE(Ranges.contains(Empty));
2994   ASSERT_FALSE(Ranges.contains({{{0x0f, 0x10}}}));
2995   ASSERT_FALSE(Ranges.contains({{{0x0f, 0x20}}}));
2996   ASSERT_FALSE(Ranges.contains({{{0x0f, 0x21}}}));
2997 
2998   // Test ranges that start at R's start address
2999   ASSERT_TRUE(Ranges.contains({{{0x10, 0x10}}}));
3000   ASSERT_TRUE(Ranges.contains({{{0x10, 0x11}}}));
3001   ASSERT_TRUE(Ranges.contains({{{0x10, 0x20}}}));
3002   ASSERT_FALSE(Ranges.contains({{{0x10, 0x21}}}));
3003 
3004   ASSERT_TRUE(Ranges.contains({{{0x11, 0x12}}}));
3005 
3006   // Test ranges that start at last bytes of Range
3007   ASSERT_TRUE(Ranges.contains({{{0x1f, 0x20}}}));
3008   ASSERT_FALSE(Ranges.contains({{{0x1f, 0x21}}}));
3009 
3010   // Test ranges that start after Range
3011   ASSERT_TRUE(Ranges.contains({{{0x20, 0x20}}}));
3012   ASSERT_FALSE(Ranges.contains({{{0x20, 0x21}}}));
3013 
3014   ASSERT_TRUE(Ranges.contains({{{0x31, 0x32}}}));
3015   ASSERT_TRUE(Ranges.contains({{{0x3f, 0x40}}}));
3016   ASSERT_TRUE(Ranges.contains({{{0x10, 0x20}, {0x30, 0x40}}}));
3017   ASSERT_TRUE(Ranges.contains({{{0x11, 0x12}, {0x31, 0x32}}}));
3018   ASSERT_TRUE(Ranges.contains(
3019       {{{0x11, 0x12}, {0x12, 0x13}, {0x31, 0x32}, {0x32, 0x33}}}));
3020   ASSERT_FALSE(Ranges.contains({{{0x11, 0x12},
3021                                  {0x12, 0x13},
3022                                  {0x20, 0x21},
3023                                  {0x31, 0x32},
3024                                  {0x32, 0x33}}}));
3025   ASSERT_FALSE(Ranges.contains(
3026       {{{0x11, 0x12}, {0x12, 0x13}, {0x31, 0x32}, {0x32, 0x51}}}));
3027   ASSERT_TRUE(Ranges.contains({{{0x11, 0x12}, {0x30, 0x50}}}));
3028   ASSERT_FALSE(Ranges.contains({{{0x30, 0x51}}}));
3029   ASSERT_FALSE(Ranges.contains({{{0x50, 0x51}}}));
3030 }
3031 
3032 namespace {
3033 
3034 void AssertRangesIntersect(const DWARFAddressRange &LHS,
3035                            const DWARFAddressRange &RHS) {
3036   ASSERT_TRUE(LHS.intersects(RHS));
3037   ASSERT_TRUE(RHS.intersects(LHS));
3038 }
3039 void AssertRangesDontIntersect(const DWARFAddressRange &LHS,
3040                                const DWARFAddressRange &RHS) {
3041   ASSERT_FALSE(LHS.intersects(RHS));
3042   ASSERT_FALSE(RHS.intersects(LHS));
3043 }
3044 
3045 void AssertRangesIntersect(const DWARFVerifier::DieRangeInfo &LHS,
3046                            const DWARFAddressRangesVector &Ranges) {
3047   DWARFVerifier::DieRangeInfo RHS(Ranges);
3048   ASSERT_TRUE(LHS.intersects(RHS));
3049   ASSERT_TRUE(RHS.intersects(LHS));
3050 }
3051 
3052 void AssertRangesDontIntersect(const DWARFVerifier::DieRangeInfo &LHS,
3053                                const DWARFAddressRangesVector &Ranges) {
3054   DWARFVerifier::DieRangeInfo RHS(Ranges);
3055   ASSERT_FALSE(LHS.intersects(RHS));
3056   ASSERT_FALSE(RHS.intersects(LHS));
3057 }
3058 
3059 } // namespace
3060 TEST(DWARFDebugInfo, TestDwarfRangesIntersect) {
3061   DWARFAddressRange R(0x10, 0x20);
3062 
3063   //----------------------------------------------------------------------
3064   // Test ranges that start before R...
3065   //----------------------------------------------------------------------
3066   // Other range ends before start of R
3067   AssertRangesDontIntersect(R, {0x00, 0x10});
3068   // Other range end address is start of a R
3069   AssertRangesIntersect(R, {0x00, 0x11});
3070   // Other range end address is in R
3071   AssertRangesIntersect(R, {0x00, 0x15});
3072   // Other range end address is at and of R
3073   AssertRangesIntersect(R, {0x00, 0x20});
3074   // Other range end address is past end of R
3075   AssertRangesIntersect(R, {0x00, 0x40});
3076 
3077   //----------------------------------------------------------------------
3078   // Test ranges that start at R's start address
3079   //----------------------------------------------------------------------
3080   // Ensure empty ranges doesn't match
3081   AssertRangesDontIntersect(R, {0x10, 0x10});
3082   // 1 byte of Range
3083   AssertRangesIntersect(R, {0x10, 0x11});
3084   // same as Range
3085   AssertRangesIntersect(R, {0x10, 0x20});
3086   // 1 byte past Range
3087   AssertRangesIntersect(R, {0x10, 0x21});
3088 
3089   //----------------------------------------------------------------------
3090   // Test ranges that start inside Range
3091   //----------------------------------------------------------------------
3092   // empty in range
3093   AssertRangesDontIntersect(R, {0x11, 0x11});
3094   // all in Range
3095   AssertRangesIntersect(R, {0x11, 0x1f});
3096   // ends at end of Range
3097   AssertRangesIntersect(R, {0x11, 0x20});
3098   // ends past Range
3099   AssertRangesIntersect(R, {0x11, 0x21});
3100 
3101   //----------------------------------------------------------------------
3102   // Test ranges that start at last bytes of Range
3103   //----------------------------------------------------------------------
3104   // ends at end of Range
3105   AssertRangesIntersect(R, {0x1f, 0x20});
3106   // ends past Range
3107   AssertRangesIntersect(R, {0x1f, 0x21});
3108 
3109   //----------------------------------------------------------------------
3110   // Test ranges that start after Range
3111   //----------------------------------------------------------------------
3112   // empty just past in Range
3113   AssertRangesDontIntersect(R, {0x20, 0x20});
3114   // valid past Range
3115   AssertRangesDontIntersect(R, {0x20, 0x21});
3116 }
3117 
3118 TEST(DWARFDebugInfo, TestDWARFDieRangeInfoIntersects) {
3119 
3120   DWARFVerifier::DieRangeInfo Ranges({{0x10, 0x20}, {0x30, 0x40}});
3121 
3122   // Test empty range
3123   AssertRangesDontIntersect(Ranges, {});
3124   // Test range that appears before all ranges in Ranges
3125   AssertRangesDontIntersect(Ranges, {{0x00, 0x10}});
3126   // Test range that appears between ranges in Ranges
3127   AssertRangesDontIntersect(Ranges, {{0x20, 0x30}});
3128   // Test range that appears after ranges in Ranges
3129   AssertRangesDontIntersect(Ranges, {{0x40, 0x50}});
3130 
3131   // Test range that start before first range
3132   AssertRangesIntersect(Ranges, {{0x00, 0x11}});
3133   // Test range that start at first range
3134   AssertRangesIntersect(Ranges, {{0x10, 0x11}});
3135   // Test range that start in first range
3136   AssertRangesIntersect(Ranges, {{0x11, 0x12}});
3137   // Test range that start at end of first range
3138   AssertRangesIntersect(Ranges, {{0x1f, 0x20}});
3139   // Test range that starts at end of first range
3140   AssertRangesDontIntersect(Ranges, {{0x20, 0x21}});
3141   // Test range that starts at end of first range
3142   AssertRangesIntersect(Ranges, {{0x20, 0x31}});
3143 
3144   // Test range that start before second range and ends before second
3145   AssertRangesDontIntersect(Ranges, {{0x2f, 0x30}});
3146   // Test range that start before second range and ends in second
3147   AssertRangesIntersect(Ranges, {{0x2f, 0x31}});
3148   // Test range that start at second range
3149   AssertRangesIntersect(Ranges, {{0x30, 0x31}});
3150   // Test range that start in second range
3151   AssertRangesIntersect(Ranges, {{0x31, 0x32}});
3152   // Test range that start at end of second range
3153   AssertRangesIntersect(Ranges, {{0x3f, 0x40}});
3154   // Test range that starts at end of second range
3155   AssertRangesDontIntersect(Ranges, {{0x40, 0x41}});
3156 
3157   AssertRangesDontIntersect(Ranges, {{0x20, 0x21}, {0x2f, 0x30}});
3158   AssertRangesIntersect(Ranges, {{0x20, 0x21}, {0x2f, 0x31}});
3159 }
3160 
3161 TEST(DWARFDebugInfo, TestDWARF64UnitLength) {
3162   static const char DebugInfoSecRaw[] =
3163       "\xff\xff\xff\xff"                 // DWARF64 mark
3164       "\x88\x77\x66\x55\x44\x33\x22\x11" // Length
3165       "\x05\x00"                         // Version
3166       "\x01"                             // DW_UT_compile
3167       "\x04"                             // Address size
3168       "\0\0\0\0\0\0\0\0";                // Offset Into Abbrev. Sec.
3169   StringMap<std::unique_ptr<MemoryBuffer>> Sections;
3170   Sections.insert(std::make_pair(
3171       "debug_info", MemoryBuffer::getMemBuffer(StringRef(
3172                         DebugInfoSecRaw, sizeof(DebugInfoSecRaw) - 1))));
3173   auto Context = DWARFContext::create(Sections, /* AddrSize = */ 4,
3174                                       /* isLittleEndian = */ true);
3175   const auto &Obj = Context->getDWARFObj();
3176   Obj.forEachInfoSections([&](const DWARFSection &Sec) {
3177     DWARFUnitHeader Header;
3178     DWARFDataExtractor Data(Obj, Sec, /* IsLittleEndian = */ true,
3179                             /* AddressSize = */ 4);
3180     uint64_t Offset = 0;
3181     EXPECT_FALSE(Header.extract(*Context, Data, &Offset, DW_SECT_INFO));
3182     // Header.extract() returns false because there is not enough space
3183     // in the section for the declared length. Anyway, we can check that
3184     // the properties are read correctly.
3185     ASSERT_EQ(DwarfFormat::DWARF64, Header.getFormat());
3186     ASSERT_EQ(0x1122334455667788ULL, Header.getLength());
3187     ASSERT_EQ(5, Header.getVersion());
3188     ASSERT_EQ(DW_UT_compile, Header.getUnitType());
3189     ASSERT_EQ(4, Header.getAddressByteSize());
3190 
3191     // Check that the length can be correctly read in the unit class.
3192     DWARFUnitVector DummyUnitVector;
3193     DWARFSection DummySec;
3194     DWARFCompileUnit CU(*Context, Sec, Header, /* DA = */ 0, /* RS = */ 0,
3195                         /* LocSection = */ 0, /* SS = */ StringRef(),
3196                         /* SOS = */ DummySec, /* AOS = */ 0,
3197                         /* LS = */ DummySec, /* LE = */ true,
3198                         /* isDWO= */ false, DummyUnitVector);
3199     ASSERT_EQ(0x1122334455667788ULL, CU.getLength());
3200   });
3201 }
3202 
3203 } // end anonymous namespace
3204