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Saleem Abdulrasoole8839a72014-05-25 20:26:45 +00001//===- Win64EHDumper.cpp - Win64 EH Printer ---------------------*- 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 "Win64EHDumper.h"
11#include "llvm-readobj.h"
12#include "llvm/Object/COFF.h"
13#include "llvm/Support/ErrorHandling.h"
14#include "llvm/Support/Format.h"
15
16using namespace llvm;
17using namespace llvm::object;
18using namespace llvm::Win64EH;
19
20static const EnumEntry<unsigned> UnwindFlags[] = {
21 { "ExceptionHandler", UNW_ExceptionHandler },
22 { "TerminateHandler", UNW_TerminateHandler },
23 { "ChainInfo" , UNW_ChainInfo }
24};
25
26static const EnumEntry<unsigned> UnwindOpInfo[] = {
27 { "RAX", 0 },
28 { "RCX", 1 },
29 { "RDX", 2 },
30 { "RBX", 3 },
31 { "RSP", 4 },
32 { "RBP", 5 },
33 { "RSI", 6 },
34 { "RDI", 7 },
35 { "R8", 8 },
36 { "R9", 9 },
37 { "R10", 10 },
38 { "R11", 11 },
39 { "R12", 12 },
40 { "R13", 13 },
41 { "R14", 14 },
42 { "R15", 15 }
43};
44
45static uint64_t getOffsetOfLSDA(const UnwindInfo& UI) {
46 return static_cast<const char*>(UI.getLanguageSpecificData())
47 - reinterpret_cast<const char*>(&UI);
48}
49
50static uint32_t getLargeSlotValue(ArrayRef<UnwindCode> UC) {
51 if (UC.size() < 3)
52 return 0;
53 return UC[1].FrameOffset + (static_cast<uint32_t>(UC[2].FrameOffset) << 16);
54}
55
56// Returns the name of the unwind code.
57static StringRef getUnwindCodeTypeName(uint8_t Code) {
58 switch (Code) {
59 default: llvm_unreachable("Invalid unwind code");
60 case UOP_PushNonVol: return "PUSH_NONVOL";
61 case UOP_AllocLarge: return "ALLOC_LARGE";
62 case UOP_AllocSmall: return "ALLOC_SMALL";
63 case UOP_SetFPReg: return "SET_FPREG";
64 case UOP_SaveNonVol: return "SAVE_NONVOL";
65 case UOP_SaveNonVolBig: return "SAVE_NONVOL_FAR";
66 case UOP_SaveXMM128: return "SAVE_XMM128";
67 case UOP_SaveXMM128Big: return "SAVE_XMM128_FAR";
68 case UOP_PushMachFrame: return "PUSH_MACHFRAME";
69 }
70}
71
72// Returns the name of a referenced register.
73static StringRef getUnwindRegisterName(uint8_t Reg) {
74 switch (Reg) {
75 default: llvm_unreachable("Invalid register");
76 case 0: return "RAX";
77 case 1: return "RCX";
78 case 2: return "RDX";
79 case 3: return "RBX";
80 case 4: return "RSP";
81 case 5: return "RBP";
82 case 6: return "RSI";
83 case 7: return "RDI";
84 case 8: return "R8";
85 case 9: return "R9";
86 case 10: return "R10";
87 case 11: return "R11";
88 case 12: return "R12";
89 case 13: return "R13";
90 case 14: return "R14";
91 case 15: return "R15";
92 }
93}
94
95// Calculates the number of array slots required for the unwind code.
96static unsigned getNumUsedSlots(const UnwindCode &UnwindCode) {
97 switch (UnwindCode.getUnwindOp()) {
98 default: llvm_unreachable("Invalid unwind code");
99 case UOP_PushNonVol:
100 case UOP_AllocSmall:
101 case UOP_SetFPReg:
102 case UOP_PushMachFrame:
103 return 1;
104 case UOP_SaveNonVol:
105 case UOP_SaveXMM128:
106 return 2;
107 case UOP_SaveNonVolBig:
108 case UOP_SaveXMM128Big:
109 return 3;
110 case UOP_AllocLarge:
111 return (UnwindCode.getOpInfo() == 0) ? 2 : 3;
112 }
113}
114
115static std::string formatSymbol(const Dumper::Context &Ctx,
116 const coff_section *Section, uint64_t Offset,
117 uint32_t Displacement) {
118 std::string Buffer;
119 raw_string_ostream OS(Buffer);
120
121 StringRef Name;
122 SymbolRef Symbol;
123 if (Ctx.ResolveSymbol(Section, Offset, Symbol) || Symbol.getName(Name)) {
124 OS << format(" (0x%" PRIX64 ")", Offset);
125 return OS.str();
126 }
127
128 OS << Name;
129 if (Displacement > 0)
130 OS << format(" +0x%X (0x%" PRIX64 ")", Displacement, Offset);
131 else
132 OS << format(" (0x%" PRIX64 ")", Offset);
133 return OS.str();
134}
135
136static error_code resolveRelocation(const Dumper::Context &Ctx,
137 const coff_section *Section,
138 uint64_t Offset,
139 const coff_section *&ResolvedSection,
140 uint64_t &ResolvedAddress) {
141 SymbolRef Symbol;
142 if (error_code EC = Ctx.ResolveSymbol(Section, Offset, Symbol))
143 return EC;
144
145 if (error_code EC = Symbol.getAddress(ResolvedAddress))
146 return EC;
147
148 section_iterator SI = Ctx.COFF.section_begin();
149 if (error_code EC = Symbol.getSection(SI))
150 return EC;
151
152 ResolvedSection = Ctx.COFF.getCOFFSection(*SI);
153 return object_error::success;
154}
155
156namespace llvm {
157namespace Win64EH {
158void Dumper::printRuntimeFunctionEntry(const Context &Ctx,
159 const coff_section *Section,
160 uint64_t Offset,
161 const RuntimeFunction &RF) {
162 SW.printString("StartAddress",
163 formatSymbol(Ctx, Section, Offset + 0, RF.StartAddress));
164 SW.printString("EndAddress",
165 formatSymbol(Ctx, Section, Offset + 4, RF.EndAddress));
166 SW.printString("UnwindInfoAddress",
167 formatSymbol(Ctx, Section, Offset + 8, RF.UnwindInfoOffset));
168}
169
170// Prints one unwind code. Because an unwind code can occupy up to 3 slots in
171// the unwind codes array, this function requires that the correct number of
172// slots is provided.
173void Dumper::printUnwindCode(const UnwindInfo& UI, ArrayRef<UnwindCode> UC) {
174 assert(UC.size() >= getNumUsedSlots(UC[0]));
175
176 SW.startLine() << format("0x%02X: ", unsigned(UC[0].u.CodeOffset))
177 << getUnwindCodeTypeName(UC[0].getUnwindOp());
178
179 switch (UC[0].getUnwindOp()) {
180 case UOP_PushNonVol:
181 OS << " reg=" << getUnwindRegisterName(UC[0].getOpInfo());
182 break;
183
184 case UOP_AllocLarge:
185 OS << " size="
186 << ((UC[0].getOpInfo() == 0) ? UC[1].FrameOffset * 8
187 : getLargeSlotValue(UC));
188 break;
189
190 case UOP_AllocSmall:
191 OS << " size=" << (UC[0].getOpInfo() + 1) * 8;
192 break;
193
194 case UOP_SetFPReg:
195 if (UI.getFrameRegister() == 0)
196 OS << " reg=<invalid>";
197 else
198 OS << " reg=" << getUnwindRegisterName(UI.getFrameRegister())
199 << format(", offset=0x%X", UI.getFrameOffset() * 16);
200 break;
201
202 case UOP_SaveNonVol:
203 OS << " reg=" << getUnwindRegisterName(UC[0].getOpInfo())
204 << format(", offset=0x%X", UC[1].FrameOffset * 8);
205 break;
206
207 case UOP_SaveNonVolBig:
208 OS << " reg=" << getUnwindRegisterName(UC[0].getOpInfo())
209 << format(", offset=0x%X", getLargeSlotValue(UC));
210 break;
211
212 case UOP_SaveXMM128:
213 OS << " reg=XMM" << static_cast<uint32_t>(UC[0].getOpInfo())
214 << format(", offset=0x%X", UC[1].FrameOffset * 16);
215 break;
216
217 case UOP_SaveXMM128Big:
218 OS << " reg=XMM" << static_cast<uint32_t>(UC[0].getOpInfo())
219 << format(", offset=0x%X", getLargeSlotValue(UC));
220 break;
221
222 case UOP_PushMachFrame:
223 OS << " errcode=" << (UC[0].getOpInfo() == 0 ? "no" : "yes");
224 break;
225 }
226
227 OS << "\n";
228}
229
230void Dumper::printUnwindInfo(const Context &Ctx, const coff_section *Section,
231 off_t Offset, const UnwindInfo &UI) {
232 DictScope UIS(SW, "UnwindInfo");
233 SW.printNumber("Version", UI.getVersion());
234 SW.printFlags("Flags", UI.getFlags(), makeArrayRef(UnwindFlags));
235 SW.printNumber("PrologSize", UI.PrologSize);
236 if (UI.getFrameRegister()) {
237 SW.printEnum("FrameRegister", UI.getFrameRegister(),
238 makeArrayRef(UnwindOpInfo));
239 SW.printHex("FrameOffset", UI.getFrameOffset());
240 } else {
241 SW.printString("FrameRegister", StringRef("-"));
242 SW.printString("FrameOffset", StringRef("-"));
243 }
244
245 SW.printNumber("UnwindCodeCount", UI.NumCodes);
246 {
247 ListScope UCS(SW, "UnwindCodes");
248 ArrayRef<UnwindCode> UC(&UI.UnwindCodes[0], UI.NumCodes);
249 for (const UnwindCode *UCI = UC.begin(), *UCE = UC.end(); UCI < UCE; ++UCI) {
250 unsigned UsedSlots = getNumUsedSlots(*UCI);
251 if (UsedSlots > UC.size()) {
252 errs() << "corrupt unwind data";
253 return;
254 }
255
256 printUnwindCode(UI, ArrayRef<UnwindCode>(UCI, UCE));
257 UCI = UCI + UsedSlots - 1;
258 }
259 }
260
261 uint64_t LSDAOffset = Offset + getOffsetOfLSDA(UI);
262 if (UI.getFlags() & (UNW_ExceptionHandler | UNW_TerminateHandler)) {
263 SW.printString("Handler",
264 formatSymbol(Ctx, Section, LSDAOffset,
265 UI.getLanguageSpecificHandlerOffset()));
266 } else if (UI.getFlags() & UNW_ChainInfo) {
267 if (const RuntimeFunction *Chained = UI.getChainedFunctionEntry()) {
268 DictScope CS(SW, "Chained");
269 printRuntimeFunctionEntry(Ctx, Section, LSDAOffset, *Chained);
270 }
271 }
272}
273
274void Dumper::printRuntimeFunction(const Context &Ctx,
275 const coff_section *Section,
276 uint64_t SectionOffset,
277 const RuntimeFunction &RF) {
278 DictScope RFS(SW, "RuntimeFunction");
279 printRuntimeFunctionEntry(Ctx, Section, SectionOffset, RF);
280
281 const coff_section *XData;
282 uint64_t Offset;
283 if (error(resolveRelocation(Ctx, Section, SectionOffset + 8, XData, Offset)))
284 return;
285
286 ArrayRef<uint8_t> Contents;
287 if (error(Ctx.COFF.getSectionContents(XData, Contents)) || Contents.empty())
288 return;
289
290 Offset = Offset + RF.UnwindInfoOffset;
291 if (Offset > Contents.size())
292 return;
293
294 const auto UI = reinterpret_cast<const UnwindInfo*>(Contents.data() + Offset);
295 printUnwindInfo(Ctx, XData, Offset, *UI);
296}
297
298void Dumper::printData(const Context &Ctx) {
299 for (const auto &Section : Ctx.COFF.sections()) {
300 StringRef Name;
301 if (error(Section.getName(Name)))
302 continue;
303
304 if (Name != ".pdata" && !Name.startswith(".pdata$"))
305 continue;
306
307 const coff_section *PData = Ctx.COFF.getCOFFSection(Section);
308 ArrayRef<uint8_t> Contents;
309 if (error(Ctx.COFF.getSectionContents(PData, Contents)) || Contents.empty())
310 continue;
311
312 const RuntimeFunction *Entries =
313 reinterpret_cast<const RuntimeFunction *>(Contents.data());
314 const size_t Count = Contents.size() / sizeof(RuntimeFunction);
315 ArrayRef<RuntimeFunction> RuntimeFunctions(Entries, Count);
316
317 size_t Index = 0;
318 for (const auto &RF : RuntimeFunctions) {
319 printRuntimeFunction(Ctx, Ctx.COFF.getCOFFSection(Section),
320 Index * sizeof(RuntimeFunction), RF);
321 ++Index;
322 }
323 }
324}
325}
326}
327