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Eli Bendersky60bdc5b2013-02-05 23:30:58 +00001//===-- DWARFDebugFrame.h - Parsing of .debug_frame -------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "DWARFDebugFrame.h"
11#include "llvm/ADT/SmallString.h"
12#include "llvm/Support/DataTypes.h"
13#include "llvm/Support/Dwarf.h"
14#include "llvm/Support/Format.h"
15
16using namespace llvm;
17using namespace dwarf;
18
19
Eli Bendersky2e402d52013-02-06 16:20:31 +000020/// \brief Abstract frame entry defining the common interface concrete
21/// entries implement.
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000022class llvm::FrameEntry {
23public:
24 enum FrameKind {FK_CIE, FK_FDE};
25 FrameEntry(FrameKind K, DataExtractor D, uint64_t Offset, uint64_t Length)
Eli Benderskyba426252013-02-06 00:20:38 +000026 : Kind(K), Data(D), Offset(Offset), Length(Length) {}
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000027
Eli Bendersky8a0329e2013-02-06 03:08:02 +000028 virtual ~FrameEntry() {
29 }
30
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000031 FrameKind getKind() const { return Kind; }
32
33 virtual void dumpHeader(raw_ostream &OS) const = 0;
Eli Benderskyba426252013-02-06 00:20:38 +000034
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000035protected:
36 const FrameKind Kind;
Eli Benderskyba426252013-02-06 00:20:38 +000037
38 /// \brief The data stream holding the section from which the entry was
39 /// parsed.
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000040 DataExtractor Data;
Eli Benderskyba426252013-02-06 00:20:38 +000041
42 /// \brief Offset of this entry in the section.
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000043 uint64_t Offset;
Eli Benderskyba426252013-02-06 00:20:38 +000044
45 /// \brief Entry length as specified in DWARF.
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000046 uint64_t Length;
47};
48
Benjamin Kramer74b3c8d2013-02-15 12:30:38 +000049namespace {
Eli Bendersky2e402d52013-02-06 16:20:31 +000050/// \brief DWARF Common Information Entry (CIE)
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000051class CIE : public FrameEntry {
52public:
53 // CIEs (and FDEs) are simply container classes, so the only sensible way to
54 // create them is by providing the full parsed contents in the constructor.
55 CIE(DataExtractor D, uint64_t Offset, uint64_t Length, uint8_t Version,
56 SmallString<8> Augmentation, uint64_t CodeAlignmentFactor,
57 int64_t DataAlignmentFactor, uint64_t ReturnAddressRegister)
58 : FrameEntry(FK_CIE, D, Offset, Length), Version(Version),
59 Augmentation(Augmentation), CodeAlignmentFactor(CodeAlignmentFactor),
60 DataAlignmentFactor(DataAlignmentFactor),
Eli Benderskyba426252013-02-06 00:20:38 +000061 ReturnAddressRegister(ReturnAddressRegister) {}
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000062
Eli Bendersky8a0329e2013-02-06 03:08:02 +000063 ~CIE() {
64 }
65
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000066 void dumpHeader(raw_ostream &OS) const {
NAKAMURA Takumi90e01ac2013-02-07 02:02:27 +000067 OS << format("%08x %08x %08x CIE",
68 (uint32_t)Offset, (uint32_t)Length, DW_CIE_ID)
69 << "\n";
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000070 OS << format(" Version: %d\n", Version);
71 OS << " Augmentation: \"" << Augmentation << "\"\n";
David Tweed0b821ef2013-02-08 16:35:10 +000072 OS << format(" Code alignment factor: %u\n", (uint32_t)CodeAlignmentFactor);
73 OS << format(" Data alignment factor: %d\n", (int32_t)DataAlignmentFactor);
74 OS << format(" Return address column: %d\n", (int32_t)ReturnAddressRegister);
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000075 OS << "\n";
76 }
77
78 static bool classof(const FrameEntry *FE) {
79 return FE->getKind() == FK_CIE;
80 }
Eli Benderskyba426252013-02-06 00:20:38 +000081
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000082private:
Eli Benderskyba426252013-02-06 00:20:38 +000083 /// The following fields are defined in section 6.4.1 of the DWARF standard v3
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000084 uint8_t Version;
85 SmallString<8> Augmentation;
86 uint64_t CodeAlignmentFactor;
87 int64_t DataAlignmentFactor;
88 uint64_t ReturnAddressRegister;
89};
90
91
Eli Bendersky2e402d52013-02-06 16:20:31 +000092/// \brief DWARF Frame Description Entry (FDE)
Eli Bendersky60bdc5b2013-02-05 23:30:58 +000093class FDE : public FrameEntry {
94public:
95 // Each FDE has a CIE it's "linked to". Our FDE contains is constructed with
96 // an offset to the CIE (provided by parsing the FDE header). The CIE itself
97 // is obtained lazily once it's actually required.
Eli Benderskyba426252013-02-06 00:20:38 +000098 FDE(DataExtractor D, uint64_t Offset, uint64_t Length,
99 int64_t LinkedCIEOffset, uint64_t InitialLocation, uint64_t AddressRange)
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000100 : FrameEntry(FK_FDE, D, Offset, Length), LinkedCIEOffset(LinkedCIEOffset),
101 InitialLocation(InitialLocation), AddressRange(AddressRange),
Eli Benderskyba426252013-02-06 00:20:38 +0000102 LinkedCIE(NULL) {}
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000103
Eli Bendersky8a0329e2013-02-06 03:08:02 +0000104 ~FDE() {
105 }
106
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000107 void dumpHeader(raw_ostream &OS) const {
NAKAMURA Takumi90e01ac2013-02-07 02:02:27 +0000108 OS << format("%08x %08x %08x FDE ",
NAKAMURA Takumid9a8d432013-02-07 14:54:42 +0000109 (uint32_t)Offset, (uint32_t)Length, (int32_t)LinkedCIEOffset);
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000110 OS << format("cie=%08x pc=%08x...%08x\n",
NAKAMURA Takumid9a8d432013-02-07 14:54:42 +0000111 (int32_t)LinkedCIEOffset,
NAKAMURA Takumi8ff06312013-02-07 10:57:42 +0000112 (uint32_t)InitialLocation,
113 (uint32_t)InitialLocation + (uint32_t)AddressRange);
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000114 OS << "\n";
Eli Benderskyb2ac7c02013-02-06 05:37:46 +0000115 if (LinkedCIE) {
116 OS << format("%p\n", LinkedCIE);
117 }
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000118 }
119
120 static bool classof(const FrameEntry *FE) {
121 return FE->getKind() == FK_FDE;
122 }
123private:
Eli Benderskyba426252013-02-06 00:20:38 +0000124
125 /// The following fields are defined in section 6.4.1 of the DWARF standard v3
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000126 uint64_t LinkedCIEOffset;
127 uint64_t InitialLocation;
128 uint64_t AddressRange;
129 CIE *LinkedCIE;
130};
Benjamin Kramer74b3c8d2013-02-15 12:30:38 +0000131} // end anonymous namespace
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000132
133
Eli Benderskyba426252013-02-06 00:20:38 +0000134DWARFDebugFrame::DWARFDebugFrame() {
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000135}
136
137
Eli Benderskyba426252013-02-06 00:20:38 +0000138DWARFDebugFrame::~DWARFDebugFrame() {
Eli Bendersky60bdc5b2013-02-05 23:30:58 +0000139 for (EntryVector::iterator I = Entries.begin(), E = Entries.end();
140 I != E; ++I) {
141 delete *I;
142 }
143}
144
145
146static void LLVM_ATTRIBUTE_UNUSED dumpDataAux(DataExtractor Data,
147 uint32_t Offset, int Length) {
148 errs() << "DUMP: ";
149 for (int i = 0; i < Length; ++i) {
150 uint8_t c = Data.getU8(&Offset);
151 errs().write_hex(c); errs() << " ";
152 }
153 errs() << "\n";
154}
155
156
157void DWARFDebugFrame::parse(DataExtractor Data) {
158 uint32_t Offset = 0;
159
160 while (Data.isValidOffset(Offset)) {
161 uint32_t StartOffset = Offset;
162
163 bool IsDWARF64 = false;
164 uint64_t Length = Data.getU32(&Offset);
165 uint64_t Id;
166
167 if (Length == UINT32_MAX) {
168 // DWARF-64 is distinguished by the first 32 bits of the initial length
169 // field being 0xffffffff. Then, the next 64 bits are the actual entry
170 // length.
171 IsDWARF64 = true;
172 Length = Data.getU64(&Offset);
173 }
174
175 // At this point, Offset points to the next field after Length.
176 // Length is the structure size excluding itself. Compute an offset one
177 // past the end of the structure (needed to know how many instructions to
178 // read).
179 // TODO: For honest DWARF64 support, DataExtractor will have to treat
180 // offset_ptr as uint64_t*
181 uint32_t EndStructureOffset = Offset + static_cast<uint32_t>(Length);
182
183 // The Id field's size depends on the DWARF format
184 Id = Data.getUnsigned(&Offset, IsDWARF64 ? 8 : 4);
185 bool IsCIE = ((IsDWARF64 && Id == DW64_CIE_ID) || Id == DW_CIE_ID);
186
187 if (IsCIE) {
188 // Note: this is specifically DWARFv3 CIE header structure. It was
189 // changed in DWARFv4.
190 uint8_t Version = Data.getU8(&Offset);
191 const char *Augmentation = Data.getCStr(&Offset);
192 uint64_t CodeAlignmentFactor = Data.getULEB128(&Offset);
193 int64_t DataAlignmentFactor = Data.getSLEB128(&Offset);
194 uint64_t ReturnAddressRegister = Data.getULEB128(&Offset);
195
196 CIE *NewCIE = new CIE(Data, StartOffset, Length, Version,
197 StringRef(Augmentation), CodeAlignmentFactor,
198 DataAlignmentFactor, ReturnAddressRegister);
199 Entries.push_back(NewCIE);
200 } else {
201 // FDE
202 uint64_t CIEPointer = Id;
203 uint64_t InitialLocation = Data.getAddress(&Offset);
204 uint64_t AddressRange = Data.getAddress(&Offset);
205
206 FDE *NewFDE = new FDE(Data, StartOffset, Length, CIEPointer,
207 InitialLocation, AddressRange);
208 Entries.push_back(NewFDE);
209 }
210
211 Offset = EndStructureOffset;
212 }
213}
214
215
216void DWARFDebugFrame::dump(raw_ostream &OS) const {
217 OS << "\n";
218 for (EntryVector::const_iterator I = Entries.begin(), E = Entries.end();
219 I != E; ++I) {
220 (*I)->dumpHeader(OS);
221 }
222}
223