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Michael J. Spencer0c6ec482012-12-05 20:12:35 +00001//===-- COFFDump.cpp - COFF-specific dumper ---------------------*- 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/// \file
11/// \brief This file implements the COFF-specific dumper for llvm-objdump.
12/// It outputs the Win64 EH data structures as plain text.
13/// The encoding of the unwind codes is decribed in MSDN:
14/// http://msdn.microsoft.com/en-us/library/ck9asaa9.aspx
15///
16//===----------------------------------------------------------------------===//
17
18#include "llvm-objdump.h"
19#include "llvm/Object/COFF.h"
20#include "llvm/Object/ObjectFile.h"
21#include "llvm/Support/Format.h"
22#include "llvm/Support/SourceMgr.h"
Chandler Carruthb034cb72013-01-02 10:26:28 +000023#include "llvm/Support/Win64EH.h"
Michael J. Spencer0c6ec482012-12-05 20:12:35 +000024#include "llvm/Support/raw_ostream.h"
25#include "llvm/Support/system_error.h"
Michael J. Spencer0c6ec482012-12-05 20:12:35 +000026#include <algorithm>
27#include <cstring>
28
29using namespace llvm;
30using namespace object;
31using namespace llvm::Win64EH;
32
33// Returns the name of the unwind code.
34static StringRef getUnwindCodeTypeName(uint8_t Code) {
35 switch(Code) {
36 default: llvm_unreachable("Invalid unwind code");
37 case UOP_PushNonVol: return "UOP_PushNonVol";
38 case UOP_AllocLarge: return "UOP_AllocLarge";
39 case UOP_AllocSmall: return "UOP_AllocSmall";
40 case UOP_SetFPReg: return "UOP_SetFPReg";
41 case UOP_SaveNonVol: return "UOP_SaveNonVol";
42 case UOP_SaveNonVolBig: return "UOP_SaveNonVolBig";
43 case UOP_SaveXMM128: return "UOP_SaveXMM128";
44 case UOP_SaveXMM128Big: return "UOP_SaveXMM128Big";
45 case UOP_PushMachFrame: return "UOP_PushMachFrame";
46 }
47}
48
49// Returns the name of a referenced register.
50static StringRef getUnwindRegisterName(uint8_t Reg) {
51 switch(Reg) {
52 default: llvm_unreachable("Invalid register");
53 case 0: return "RAX";
54 case 1: return "RCX";
55 case 2: return "RDX";
56 case 3: return "RBX";
57 case 4: return "RSP";
58 case 5: return "RBP";
59 case 6: return "RSI";
60 case 7: return "RDI";
61 case 8: return "R8";
62 case 9: return "R9";
63 case 10: return "R10";
64 case 11: return "R11";
65 case 12: return "R12";
66 case 13: return "R13";
67 case 14: return "R14";
68 case 15: return "R15";
69 }
70}
71
72// Calculates the number of array slots required for the unwind code.
73static unsigned getNumUsedSlots(const UnwindCode &UnwindCode) {
74 switch (UnwindCode.getUnwindOp()) {
75 default: llvm_unreachable("Invalid unwind code");
76 case UOP_PushNonVol:
77 case UOP_AllocSmall:
78 case UOP_SetFPReg:
79 case UOP_PushMachFrame:
80 return 1;
81 case UOP_SaveNonVol:
82 case UOP_SaveXMM128:
83 return 2;
84 case UOP_SaveNonVolBig:
85 case UOP_SaveXMM128Big:
86 return 3;
87 case UOP_AllocLarge:
88 return (UnwindCode.getOpInfo() == 0) ? 2 : 3;
89 }
90}
91
92// Prints one unwind code. Because an unwind code can occupy up to 3 slots in
93// the unwind codes array, this function requires that the correct number of
94// slots is provided.
95static void printUnwindCode(ArrayRef<UnwindCode> UCs) {
96 assert(UCs.size() >= getNumUsedSlots(UCs[0]));
97 outs() << format(" 0x%02x: ", unsigned(UCs[0].u.CodeOffset))
98 << getUnwindCodeTypeName(UCs[0].getUnwindOp());
99 switch (UCs[0].getUnwindOp()) {
100 case UOP_PushNonVol:
101 outs() << " " << getUnwindRegisterName(UCs[0].getOpInfo());
102 break;
103 case UOP_AllocLarge:
104 if (UCs[0].getOpInfo() == 0) {
105 outs() << " " << UCs[1].FrameOffset;
106 } else {
107 outs() << " " << UCs[1].FrameOffset
108 + (static_cast<uint32_t>(UCs[2].FrameOffset) << 16);
109 }
110 break;
111 case UOP_AllocSmall:
112 outs() << " " << ((UCs[0].getOpInfo() + 1) * 8);
113 break;
114 case UOP_SetFPReg:
115 outs() << " ";
116 break;
117 case UOP_SaveNonVol:
118 outs() << " " << getUnwindRegisterName(UCs[0].getOpInfo())
119 << format(" [0x%04x]", 8 * UCs[1].FrameOffset);
120 break;
121 case UOP_SaveNonVolBig:
122 outs() << " " << getUnwindRegisterName(UCs[0].getOpInfo())
123 << format(" [0x%08x]", UCs[1].FrameOffset
124 + (static_cast<uint32_t>(UCs[2].FrameOffset) << 16));
125 break;
126 case UOP_SaveXMM128:
127 outs() << " XMM" << static_cast<uint32_t>(UCs[0].getOpInfo())
128 << format(" [0x%04x]", 16 * UCs[1].FrameOffset);
129 break;
130 case UOP_SaveXMM128Big:
131 outs() << " XMM" << UCs[0].getOpInfo()
132 << format(" [0x%08x]", UCs[1].FrameOffset
133 + (static_cast<uint32_t>(UCs[2].FrameOffset) << 16));
134 break;
135 case UOP_PushMachFrame:
136 outs() << " " << (UCs[0].getOpInfo() ? "w/o" : "w")
137 << " error code";
138 break;
139 }
140 outs() << "\n";
141}
142
143static void printAllUnwindCodes(ArrayRef<UnwindCode> UCs) {
144 for (const UnwindCode *I = UCs.begin(), *E = UCs.end(); I < E; ) {
145 unsigned UsedSlots = getNumUsedSlots(*I);
146 if (UsedSlots > UCs.size()) {
147 outs() << "Unwind data corrupted: Encountered unwind op "
148 << getUnwindCodeTypeName((*I).getUnwindOp())
149 << " which requires " << UsedSlots
150 << " slots, but only " << UCs.size()
151 << " remaining in buffer";
152 return ;
153 }
154 printUnwindCode(ArrayRef<UnwindCode>(I, E));
155 I += UsedSlots;
156 }
157}
158
159// Given a symbol sym this functions returns the address and section of it.
160static error_code resolveSectionAndAddress(const COFFObjectFile *Obj,
161 const SymbolRef &Sym,
162 const coff_section *&ResolvedSection,
163 uint64_t &ResolvedAddr) {
164 if (error_code ec = Sym.getAddress(ResolvedAddr)) return ec;
165 section_iterator iter(Obj->begin_sections());
166 if (error_code ec = Sym.getSection(iter)) return ec;
167 ResolvedSection = Obj->getCOFFSection(iter);
168 return object_error::success;
169}
170
171// Given a vector of relocations for a section and an offset into this section
172// the function returns the symbol used for the relocation at the offset.
173static error_code resolveSymbol(const std::vector<RelocationRef> &Rels,
174 uint64_t Offset, SymbolRef &Sym) {
175 for (std::vector<RelocationRef>::const_iterator I = Rels.begin(),
176 E = Rels.end();
177 I != E; ++I) {
178 uint64_t Ofs;
179 if (error_code ec = I->getOffset(Ofs)) return ec;
180 if (Ofs == Offset) {
Rafael Espindola806f0062013-06-05 01:33:53 +0000181 Sym = *I->getSymbol();
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000182 break;
183 }
184 }
185 return object_error::success;
186}
187
188// Given a vector of relocations for a section and an offset into this section
189// the function resolves the symbol used for the relocation at the offset and
190// returns the section content and the address inside the content pointed to
191// by the symbol.
192static error_code getSectionContents(const COFFObjectFile *Obj,
193 const std::vector<RelocationRef> &Rels,
194 uint64_t Offset,
195 ArrayRef<uint8_t> &Contents,
196 uint64_t &Addr) {
197 SymbolRef Sym;
198 if (error_code ec = resolveSymbol(Rels, Offset, Sym)) return ec;
199 const coff_section *Section;
200 if (error_code ec = resolveSectionAndAddress(Obj, Sym, Section, Addr))
201 return ec;
202 if (error_code ec = Obj->getSectionContents(Section, Contents)) return ec;
203 return object_error::success;
204}
205
206// Given a vector of relocations for a section and an offset into this section
207// the function returns the name of the symbol used for the relocation at the
208// offset.
209static error_code resolveSymbolName(const std::vector<RelocationRef> &Rels,
210 uint64_t Offset, StringRef &Name) {
211 SymbolRef Sym;
212 if (error_code ec = resolveSymbol(Rels, Offset, Sym)) return ec;
213 if (error_code ec = Sym.getName(Name)) return ec;
214 return object_error::success;
215}
216
217static void printCOFFSymbolAddress(llvm::raw_ostream &Out,
218 const std::vector<RelocationRef> &Rels,
219 uint64_t Offset, uint32_t Disp) {
220 StringRef Sym;
221 if (error_code ec = resolveSymbolName(Rels, Offset, Sym)) {
222 error(ec);
223 return ;
224 }
225 Out << Sym;
226 if (Disp > 0)
227 Out << format(" + 0x%04x", Disp);
228}
229
Rui Ueyamac2bed422013-09-27 21:04:00 +0000230// Prints import tables. The import table is a table containing the list of
231// DLL name and symbol names which will be linked by the loader.
232static void printImportTables(const COFFObjectFile *Obj) {
Rui Ueyama908dfcd2014-01-15 23:46:18 +0000233 import_directory_iterator i = Obj->import_directory_begin();
234 import_directory_iterator e = Obj->import_directory_end();
235 if (i == e)
236 return;
Rui Ueyamac2bed422013-09-27 21:04:00 +0000237 outs() << "The Import Tables:\n";
238 error_code ec;
Rui Ueyama908dfcd2014-01-15 23:46:18 +0000239 for (; i != e; i = i.increment(ec)) {
Rui Ueyamac2bed422013-09-27 21:04:00 +0000240 if (ec)
241 return;
242
243 const import_directory_table_entry *Dir;
244 StringRef Name;
245 if (i->getImportTableEntry(Dir)) return;
246 if (i->getName(Name)) return;
247
248 outs() << format(" lookup %08x time %08x fwd %08x name %08x addr %08x\n\n",
249 static_cast<uint32_t>(Dir->ImportLookupTableRVA),
250 static_cast<uint32_t>(Dir->TimeDateStamp),
251 static_cast<uint32_t>(Dir->ForwarderChain),
252 static_cast<uint32_t>(Dir->NameRVA),
253 static_cast<uint32_t>(Dir->ImportAddressTableRVA));
254 outs() << " DLL Name: " << Name << "\n";
255 outs() << " Hint/Ord Name\n";
256 const import_lookup_table_entry32 *entry;
257 if (i->getImportLookupEntry(entry))
258 return;
259 for (; entry->data; ++entry) {
260 if (entry->isOrdinal()) {
261 outs() << format(" % 6d\n", entry->getOrdinal());
262 continue;
263 }
264 uint16_t Hint;
265 StringRef Name;
266 if (Obj->getHintName(entry->getHintNameRVA(), Hint, Name))
267 return;
268 outs() << format(" % 6d ", Hint) << Name << "\n";
269 }
270 outs() << "\n";
271 }
272}
273
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000274void llvm::printCOFFUnwindInfo(const COFFObjectFile *Obj) {
275 const coff_file_header *Header;
Rui Ueyama82ebd8e2013-06-12 19:10:33 +0000276 if (error(Obj->getCOFFHeader(Header))) return;
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000277
278 if (Header->Machine != COFF::IMAGE_FILE_MACHINE_AMD64) {
279 errs() << "Unsupported image machine type "
280 "(currently only AMD64 is supported).\n";
281 return;
282 }
283
284 const coff_section *Pdata = 0;
285
286 error_code ec;
287 for (section_iterator SI = Obj->begin_sections(),
288 SE = Obj->end_sections();
289 SI != SE; SI.increment(ec)) {
290 if (error(ec)) return;
291
292 StringRef Name;
293 if (error(SI->getName(Name))) continue;
294
295 if (Name != ".pdata") continue;
296
297 Pdata = Obj->getCOFFSection(SI);
298 std::vector<RelocationRef> Rels;
299 for (relocation_iterator RI = SI->begin_relocations(),
300 RE = SI->end_relocations();
301 RI != RE; RI.increment(ec)) {
302 if (error(ec)) break;
303 Rels.push_back(*RI);
304 }
305
306 // Sort relocations by address.
307 std::sort(Rels.begin(), Rels.end(), RelocAddressLess);
308
309 ArrayRef<uint8_t> Contents;
310 if (error(Obj->getSectionContents(Pdata, Contents))) continue;
311 if (Contents.empty()) continue;
312
313 ArrayRef<RuntimeFunction> RFs(
314 reinterpret_cast<const RuntimeFunction *>(Contents.data()),
315 Contents.size() / sizeof(RuntimeFunction));
316 for (const RuntimeFunction *I = RFs.begin(), *E = RFs.end(); I < E; ++I) {
317 const uint64_t SectionOffset = std::distance(RFs.begin(), I)
318 * sizeof(RuntimeFunction);
319
320 outs() << "Function Table:\n";
321
322 outs() << " Start Address: ";
323 printCOFFSymbolAddress(outs(), Rels, SectionOffset +
Michael J. Spencer6fa518c2012-12-05 22:38:01 +0000324 /*offsetof(RuntimeFunction, StartAddress)*/ 0,
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000325 I->StartAddress);
326 outs() << "\n";
327
328 outs() << " End Address: ";
329 printCOFFSymbolAddress(outs(), Rels, SectionOffset +
Michael J. Spencer6fa518c2012-12-05 22:38:01 +0000330 /*offsetof(RuntimeFunction, EndAddress)*/ 4,
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000331 I->EndAddress);
332 outs() << "\n";
333
334 outs() << " Unwind Info Address: ";
335 printCOFFSymbolAddress(outs(), Rels, SectionOffset +
Michael J. Spencer6fa518c2012-12-05 22:38:01 +0000336 /*offsetof(RuntimeFunction, UnwindInfoOffset)*/ 8,
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000337 I->UnwindInfoOffset);
338 outs() << "\n";
339
340 ArrayRef<uint8_t> XContents;
341 uint64_t UnwindInfoOffset = 0;
342 if (error(getSectionContents(Obj, Rels, SectionOffset +
Michael J. Spencer6fa518c2012-12-05 22:38:01 +0000343 /*offsetof(RuntimeFunction, UnwindInfoOffset)*/ 8,
Michael J. Spencer0c6ec482012-12-05 20:12:35 +0000344 XContents, UnwindInfoOffset))) continue;
345 if (XContents.empty()) continue;
346
347 UnwindInfoOffset += I->UnwindInfoOffset;
348 if (UnwindInfoOffset > XContents.size()) continue;
349
350 const Win64EH::UnwindInfo *UI =
351 reinterpret_cast<const Win64EH::UnwindInfo *>
352 (XContents.data() + UnwindInfoOffset);
353
354 // The casts to int are required in order to output the value as number.
355 // Without the casts the value would be interpreted as char data (which
356 // results in garbage output).
357 outs() << " Version: " << static_cast<int>(UI->getVersion()) << "\n";
358 outs() << " Flags: " << static_cast<int>(UI->getFlags());
359 if (UI->getFlags()) {
360 if (UI->getFlags() & UNW_ExceptionHandler)
361 outs() << " UNW_ExceptionHandler";
362 if (UI->getFlags() & UNW_TerminateHandler)
363 outs() << " UNW_TerminateHandler";
364 if (UI->getFlags() & UNW_ChainInfo)
365 outs() << " UNW_ChainInfo";
366 }
367 outs() << "\n";
368 outs() << " Size of prolog: "
369 << static_cast<int>(UI->PrologSize) << "\n";
370 outs() << " Number of Codes: "
371 << static_cast<int>(UI->NumCodes) << "\n";
372 // Maybe this should move to output of UOP_SetFPReg?
373 if (UI->getFrameRegister()) {
374 outs() << " Frame register: "
375 << getUnwindRegisterName(UI->getFrameRegister())
376 << "\n";
377 outs() << " Frame offset: "
378 << 16 * UI->getFrameOffset()
379 << "\n";
380 } else {
381 outs() << " No frame pointer used\n";
382 }
383 if (UI->getFlags() & (UNW_ExceptionHandler | UNW_TerminateHandler)) {
384 // FIXME: Output exception handler data
385 } else if (UI->getFlags() & UNW_ChainInfo) {
386 // FIXME: Output chained unwind info
387 }
388
389 if (UI->NumCodes)
390 outs() << " Unwind Codes:\n";
391
392 printAllUnwindCodes(ArrayRef<UnwindCode>(&UI->UnwindCodes[0],
393 UI->NumCodes));
394
395 outs() << "\n\n";
396 outs().flush();
397 }
398 }
399}
Rui Ueyamac2bed422013-09-27 21:04:00 +0000400
401void llvm::printCOFFFileHeader(const object::ObjectFile *Obj) {
402 printImportTables(dyn_cast<const COFFObjectFile>(Obj));
403}