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Saleem Abdulrasool17552662015-04-24 19:39:17 +00001//===------------------------- UnwindCursor.hpp ---------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is dual licensed under the MIT and the University of Illinois Open
6// Source Licenses. See LICENSE.TXT for details.
7//
8//
Ed Maste6f723382016-08-30 13:08:21 +00009// C++ interface to lower levels of libunwind
Saleem Abdulrasool17552662015-04-24 19:39:17 +000010//===----------------------------------------------------------------------===//
11
12#ifndef __UNWINDCURSOR_HPP__
13#define __UNWINDCURSOR_HPP__
14
15#include <algorithm>
16#include <stdint.h>
17#include <stdio.h>
18#include <stdlib.h>
Saleem Abdulrasool17552662015-04-24 19:39:17 +000019#include <unwind.h>
20
Charles Davisfa2e6202018-08-30 21:29:00 +000021#ifdef _WIN32
22 #include <windows.h>
23 #include <ntverp.h>
24#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +000025#ifdef __APPLE__
26 #include <mach-o/dyld.h>
27#endif
28
Charles Davisfa2e6202018-08-30 21:29:00 +000029#if defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
30// Provide a definition for the DISPATCHER_CONTEXT struct for old (Win7 and
31// earlier) SDKs.
32// MinGW-w64 has always provided this struct.
33 #if defined(_WIN32) && defined(_LIBUNWIND_TARGET_X86_64) && \
34 !defined(__MINGW32__) && VER_PRODUCTBUILD < 8000
35struct _DISPATCHER_CONTEXT {
36 ULONG64 ControlPc;
37 ULONG64 ImageBase;
38 PRUNTIME_FUNCTION FunctionEntry;
39 ULONG64 EstablisherFrame;
40 ULONG64 TargetIp;
41 PCONTEXT ContextRecord;
42 PEXCEPTION_ROUTINE LanguageHandler;
43 PVOID HandlerData;
44 PUNWIND_HISTORY_TABLE HistoryTable;
45 ULONG ScopeIndex;
46 ULONG Fill0;
47};
48 #endif
49
50struct UNWIND_INFO {
51 uint8_t Version : 3;
52 uint8_t Flags : 5;
53 uint8_t SizeOfProlog;
54 uint8_t CountOfCodes;
55 uint8_t FrameRegister : 4;
56 uint8_t FrameOffset : 4;
57 uint16_t UnwindCodes[2];
58};
59
60extern "C" _Unwind_Reason_Code __libunwind_seh_personality(
61 int, _Unwind_Action, uint64_t, _Unwind_Exception *,
62 struct _Unwind_Context *);
63
64#endif
65
Saleem Abdulrasool17552662015-04-24 19:39:17 +000066#include "config.h"
67
68#include "AddressSpace.hpp"
69#include "CompactUnwinder.hpp"
70#include "config.h"
71#include "DwarfInstructions.hpp"
72#include "EHHeaderParser.hpp"
73#include "libunwind.h"
74#include "Registers.hpp"
Martin Storsjo590ffef2017-10-23 19:29:36 +000075#include "RWMutex.hpp"
Saleem Abdulrasool17552662015-04-24 19:39:17 +000076#include "Unwind-EHABI.h"
77
78namespace libunwind {
79
Ranjeet Singh421231a2017-03-31 15:28:06 +000080#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +000081/// Cache of recently found FDEs.
82template <typename A>
83class _LIBUNWIND_HIDDEN DwarfFDECache {
84 typedef typename A::pint_t pint_t;
85public:
86 static pint_t findFDE(pint_t mh, pint_t pc);
87 static void add(pint_t mh, pint_t ip_start, pint_t ip_end, pint_t fde);
88 static void removeAllIn(pint_t mh);
89 static void iterateCacheEntries(void (*func)(unw_word_t ip_start,
90 unw_word_t ip_end,
91 unw_word_t fde, unw_word_t mh));
92
93private:
94
95 struct entry {
96 pint_t mh;
97 pint_t ip_start;
98 pint_t ip_end;
99 pint_t fde;
100 };
101
102 // These fields are all static to avoid needing an initializer.
103 // There is only one instance of this class per process.
Martin Storsjo590ffef2017-10-23 19:29:36 +0000104 static RWMutex _lock;
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000105#ifdef __APPLE__
106 static void dyldUnloadHook(const struct mach_header *mh, intptr_t slide);
107 static bool _registeredForDyldUnloads;
108#endif
109 // Can't use std::vector<> here because this code is below libc++.
110 static entry *_buffer;
111 static entry *_bufferUsed;
112 static entry *_bufferEnd;
113 static entry _initialBuffer[64];
114};
115
116template <typename A>
117typename DwarfFDECache<A>::entry *
118DwarfFDECache<A>::_buffer = _initialBuffer;
119
120template <typename A>
121typename DwarfFDECache<A>::entry *
122DwarfFDECache<A>::_bufferUsed = _initialBuffer;
123
124template <typename A>
125typename DwarfFDECache<A>::entry *
126DwarfFDECache<A>::_bufferEnd = &_initialBuffer[64];
127
128template <typename A>
129typename DwarfFDECache<A>::entry DwarfFDECache<A>::_initialBuffer[64];
130
131template <typename A>
Martin Storsjo590ffef2017-10-23 19:29:36 +0000132RWMutex DwarfFDECache<A>::_lock;
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000133
134#ifdef __APPLE__
135template <typename A>
136bool DwarfFDECache<A>::_registeredForDyldUnloads = false;
137#endif
138
139template <typename A>
140typename A::pint_t DwarfFDECache<A>::findFDE(pint_t mh, pint_t pc) {
141 pint_t result = 0;
Martin Storsjo590ffef2017-10-23 19:29:36 +0000142 _LIBUNWIND_LOG_IF_FALSE(_lock.lock_shared());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000143 for (entry *p = _buffer; p < _bufferUsed; ++p) {
144 if ((mh == p->mh) || (mh == 0)) {
145 if ((p->ip_start <= pc) && (pc < p->ip_end)) {
146 result = p->fde;
147 break;
148 }
149 }
150 }
Martin Storsjo590ffef2017-10-23 19:29:36 +0000151 _LIBUNWIND_LOG_IF_FALSE(_lock.unlock_shared());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000152 return result;
153}
154
155template <typename A>
156void DwarfFDECache<A>::add(pint_t mh, pint_t ip_start, pint_t ip_end,
157 pint_t fde) {
Peter Zotov0717a2e2015-11-09 06:57:29 +0000158#if !defined(_LIBUNWIND_NO_HEAP)
Martin Storsjo590ffef2017-10-23 19:29:36 +0000159 _LIBUNWIND_LOG_IF_FALSE(_lock.lock());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000160 if (_bufferUsed >= _bufferEnd) {
161 size_t oldSize = (size_t)(_bufferEnd - _buffer);
162 size_t newSize = oldSize * 4;
163 // Can't use operator new (we are below it).
164 entry *newBuffer = (entry *)malloc(newSize * sizeof(entry));
165 memcpy(newBuffer, _buffer, oldSize * sizeof(entry));
166 if (_buffer != _initialBuffer)
167 free(_buffer);
168 _buffer = newBuffer;
169 _bufferUsed = &newBuffer[oldSize];
170 _bufferEnd = &newBuffer[newSize];
171 }
172 _bufferUsed->mh = mh;
173 _bufferUsed->ip_start = ip_start;
174 _bufferUsed->ip_end = ip_end;
175 _bufferUsed->fde = fde;
176 ++_bufferUsed;
177#ifdef __APPLE__
178 if (!_registeredForDyldUnloads) {
179 _dyld_register_func_for_remove_image(&dyldUnloadHook);
180 _registeredForDyldUnloads = true;
181 }
182#endif
Martin Storsjo590ffef2017-10-23 19:29:36 +0000183 _LIBUNWIND_LOG_IF_FALSE(_lock.unlock());
Peter Zotov0717a2e2015-11-09 06:57:29 +0000184#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000185}
186
187template <typename A>
188void DwarfFDECache<A>::removeAllIn(pint_t mh) {
Martin Storsjo590ffef2017-10-23 19:29:36 +0000189 _LIBUNWIND_LOG_IF_FALSE(_lock.lock());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000190 entry *d = _buffer;
191 for (const entry *s = _buffer; s < _bufferUsed; ++s) {
192 if (s->mh != mh) {
193 if (d != s)
194 *d = *s;
195 ++d;
196 }
197 }
198 _bufferUsed = d;
Martin Storsjo590ffef2017-10-23 19:29:36 +0000199 _LIBUNWIND_LOG_IF_FALSE(_lock.unlock());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000200}
201
202#ifdef __APPLE__
203template <typename A>
204void DwarfFDECache<A>::dyldUnloadHook(const struct mach_header *mh, intptr_t ) {
205 removeAllIn((pint_t) mh);
206}
207#endif
208
209template <typename A>
210void DwarfFDECache<A>::iterateCacheEntries(void (*func)(
211 unw_word_t ip_start, unw_word_t ip_end, unw_word_t fde, unw_word_t mh)) {
Martin Storsjo590ffef2017-10-23 19:29:36 +0000212 _LIBUNWIND_LOG_IF_FALSE(_lock.lock());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000213 for (entry *p = _buffer; p < _bufferUsed; ++p) {
214 (*func)(p->ip_start, p->ip_end, p->fde, p->mh);
215 }
Martin Storsjo590ffef2017-10-23 19:29:36 +0000216 _LIBUNWIND_LOG_IF_FALSE(_lock.unlock());
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000217}
Ranjeet Singh421231a2017-03-31 15:28:06 +0000218#endif // defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000219
220
221#define arrayoffsetof(type, index, field) ((size_t)(&((type *)0)[index].field))
222
Ranjeet Singh421231a2017-03-31 15:28:06 +0000223#if defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000224template <typename A> class UnwindSectionHeader {
225public:
226 UnwindSectionHeader(A &addressSpace, typename A::pint_t addr)
227 : _addressSpace(addressSpace), _addr(addr) {}
228
229 uint32_t version() const {
230 return _addressSpace.get32(_addr +
231 offsetof(unwind_info_section_header, version));
232 }
233 uint32_t commonEncodingsArraySectionOffset() const {
234 return _addressSpace.get32(_addr +
235 offsetof(unwind_info_section_header,
236 commonEncodingsArraySectionOffset));
237 }
238 uint32_t commonEncodingsArrayCount() const {
239 return _addressSpace.get32(_addr + offsetof(unwind_info_section_header,
240 commonEncodingsArrayCount));
241 }
242 uint32_t personalityArraySectionOffset() const {
243 return _addressSpace.get32(_addr + offsetof(unwind_info_section_header,
244 personalityArraySectionOffset));
245 }
246 uint32_t personalityArrayCount() const {
247 return _addressSpace.get32(
248 _addr + offsetof(unwind_info_section_header, personalityArrayCount));
249 }
250 uint32_t indexSectionOffset() const {
251 return _addressSpace.get32(
252 _addr + offsetof(unwind_info_section_header, indexSectionOffset));
253 }
254 uint32_t indexCount() const {
255 return _addressSpace.get32(
256 _addr + offsetof(unwind_info_section_header, indexCount));
257 }
258
259private:
260 A &_addressSpace;
261 typename A::pint_t _addr;
262};
263
264template <typename A> class UnwindSectionIndexArray {
265public:
266 UnwindSectionIndexArray(A &addressSpace, typename A::pint_t addr)
267 : _addressSpace(addressSpace), _addr(addr) {}
268
269 uint32_t functionOffset(uint32_t index) const {
270 return _addressSpace.get32(
271 _addr + arrayoffsetof(unwind_info_section_header_index_entry, index,
272 functionOffset));
273 }
274 uint32_t secondLevelPagesSectionOffset(uint32_t index) const {
275 return _addressSpace.get32(
276 _addr + arrayoffsetof(unwind_info_section_header_index_entry, index,
277 secondLevelPagesSectionOffset));
278 }
279 uint32_t lsdaIndexArraySectionOffset(uint32_t index) const {
280 return _addressSpace.get32(
281 _addr + arrayoffsetof(unwind_info_section_header_index_entry, index,
282 lsdaIndexArraySectionOffset));
283 }
284
285private:
286 A &_addressSpace;
287 typename A::pint_t _addr;
288};
289
290template <typename A> class UnwindSectionRegularPageHeader {
291public:
292 UnwindSectionRegularPageHeader(A &addressSpace, typename A::pint_t addr)
293 : _addressSpace(addressSpace), _addr(addr) {}
294
295 uint32_t kind() const {
296 return _addressSpace.get32(
297 _addr + offsetof(unwind_info_regular_second_level_page_header, kind));
298 }
299 uint16_t entryPageOffset() const {
300 return _addressSpace.get16(
301 _addr + offsetof(unwind_info_regular_second_level_page_header,
302 entryPageOffset));
303 }
304 uint16_t entryCount() const {
305 return _addressSpace.get16(
306 _addr +
307 offsetof(unwind_info_regular_second_level_page_header, entryCount));
308 }
309
310private:
311 A &_addressSpace;
312 typename A::pint_t _addr;
313};
314
315template <typename A> class UnwindSectionRegularArray {
316public:
317 UnwindSectionRegularArray(A &addressSpace, typename A::pint_t addr)
318 : _addressSpace(addressSpace), _addr(addr) {}
319
320 uint32_t functionOffset(uint32_t index) const {
321 return _addressSpace.get32(
322 _addr + arrayoffsetof(unwind_info_regular_second_level_entry, index,
323 functionOffset));
324 }
325 uint32_t encoding(uint32_t index) const {
326 return _addressSpace.get32(
327 _addr +
328 arrayoffsetof(unwind_info_regular_second_level_entry, index, encoding));
329 }
330
331private:
332 A &_addressSpace;
333 typename A::pint_t _addr;
334};
335
336template <typename A> class UnwindSectionCompressedPageHeader {
337public:
338 UnwindSectionCompressedPageHeader(A &addressSpace, typename A::pint_t addr)
339 : _addressSpace(addressSpace), _addr(addr) {}
340
341 uint32_t kind() const {
342 return _addressSpace.get32(
343 _addr +
344 offsetof(unwind_info_compressed_second_level_page_header, kind));
345 }
346 uint16_t entryPageOffset() const {
347 return _addressSpace.get16(
348 _addr + offsetof(unwind_info_compressed_second_level_page_header,
349 entryPageOffset));
350 }
351 uint16_t entryCount() const {
352 return _addressSpace.get16(
353 _addr +
354 offsetof(unwind_info_compressed_second_level_page_header, entryCount));
355 }
356 uint16_t encodingsPageOffset() const {
357 return _addressSpace.get16(
358 _addr + offsetof(unwind_info_compressed_second_level_page_header,
359 encodingsPageOffset));
360 }
361 uint16_t encodingsCount() const {
362 return _addressSpace.get16(
363 _addr + offsetof(unwind_info_compressed_second_level_page_header,
364 encodingsCount));
365 }
366
367private:
368 A &_addressSpace;
369 typename A::pint_t _addr;
370};
371
372template <typename A> class UnwindSectionCompressedArray {
373public:
374 UnwindSectionCompressedArray(A &addressSpace, typename A::pint_t addr)
375 : _addressSpace(addressSpace), _addr(addr) {}
376
377 uint32_t functionOffset(uint32_t index) const {
378 return UNWIND_INFO_COMPRESSED_ENTRY_FUNC_OFFSET(
379 _addressSpace.get32(_addr + index * sizeof(uint32_t)));
380 }
381 uint16_t encodingIndex(uint32_t index) const {
382 return UNWIND_INFO_COMPRESSED_ENTRY_ENCODING_INDEX(
383 _addressSpace.get32(_addr + index * sizeof(uint32_t)));
384 }
385
386private:
387 A &_addressSpace;
388 typename A::pint_t _addr;
389};
390
391template <typename A> class UnwindSectionLsdaArray {
392public:
393 UnwindSectionLsdaArray(A &addressSpace, typename A::pint_t addr)
394 : _addressSpace(addressSpace), _addr(addr) {}
395
396 uint32_t functionOffset(uint32_t index) const {
397 return _addressSpace.get32(
398 _addr + arrayoffsetof(unwind_info_section_header_lsda_index_entry,
399 index, functionOffset));
400 }
401 uint32_t lsdaOffset(uint32_t index) const {
402 return _addressSpace.get32(
403 _addr + arrayoffsetof(unwind_info_section_header_lsda_index_entry,
404 index, lsdaOffset));
405 }
406
407private:
408 A &_addressSpace;
409 typename A::pint_t _addr;
410};
Ranjeet Singh421231a2017-03-31 15:28:06 +0000411#endif // defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000412
413class _LIBUNWIND_HIDDEN AbstractUnwindCursor {
414public:
415 // NOTE: provide a class specific placement deallocation function (S5.3.4 p20)
416 // This avoids an unnecessary dependency to libc++abi.
417 void operator delete(void *, size_t) {}
418
419 virtual ~AbstractUnwindCursor() {}
420 virtual bool validReg(int) { _LIBUNWIND_ABORT("validReg not implemented"); }
421 virtual unw_word_t getReg(int) { _LIBUNWIND_ABORT("getReg not implemented"); }
422 virtual void setReg(int, unw_word_t) {
423 _LIBUNWIND_ABORT("setReg not implemented");
424 }
425 virtual bool validFloatReg(int) {
426 _LIBUNWIND_ABORT("validFloatReg not implemented");
427 }
428 virtual unw_fpreg_t getFloatReg(int) {
429 _LIBUNWIND_ABORT("getFloatReg not implemented");
430 }
431 virtual void setFloatReg(int, unw_fpreg_t) {
432 _LIBUNWIND_ABORT("setFloatReg not implemented");
433 }
434 virtual int step() { _LIBUNWIND_ABORT("step not implemented"); }
435 virtual void getInfo(unw_proc_info_t *) {
436 _LIBUNWIND_ABORT("getInfo not implemented");
437 }
438 virtual void jumpto() { _LIBUNWIND_ABORT("jumpto not implemented"); }
439 virtual bool isSignalFrame() {
440 _LIBUNWIND_ABORT("isSignalFrame not implemented");
441 }
442 virtual bool getFunctionName(char *, size_t, unw_word_t *) {
443 _LIBUNWIND_ABORT("getFunctionName not implemented");
444 }
445 virtual void setInfoBasedOnIPRegister(bool = false) {
446 _LIBUNWIND_ABORT("setInfoBasedOnIPRegister not implemented");
447 }
448 virtual const char *getRegisterName(int) {
449 _LIBUNWIND_ABORT("getRegisterName not implemented");
450 }
451#ifdef __arm__
452 virtual void saveVFPAsX() { _LIBUNWIND_ABORT("saveVFPAsX not implemented"); }
453#endif
454};
455
Charles Davisfa2e6202018-08-30 21:29:00 +0000456#if defined(_LIBUNWIND_SUPPORT_SEH_UNWIND) && defined(_WIN32)
457
458/// \c UnwindCursor contains all state (including all register values) during
459/// an unwind. This is normally stack-allocated inside a unw_cursor_t.
460template <typename A, typename R>
461class UnwindCursor : public AbstractUnwindCursor {
462 typedef typename A::pint_t pint_t;
463public:
464 UnwindCursor(unw_context_t *context, A &as);
465 UnwindCursor(CONTEXT *context, A &as);
466 UnwindCursor(A &as, void *threadArg);
467 virtual ~UnwindCursor() {}
468 virtual bool validReg(int);
469 virtual unw_word_t getReg(int);
470 virtual void setReg(int, unw_word_t);
471 virtual bool validFloatReg(int);
472 virtual unw_fpreg_t getFloatReg(int);
473 virtual void setFloatReg(int, unw_fpreg_t);
474 virtual int step();
475 virtual void getInfo(unw_proc_info_t *);
476 virtual void jumpto();
477 virtual bool isSignalFrame();
478 virtual bool getFunctionName(char *buf, size_t len, unw_word_t *off);
479 virtual void setInfoBasedOnIPRegister(bool isReturnAddress = false);
480 virtual const char *getRegisterName(int num);
481#ifdef __arm__
482 virtual void saveVFPAsX();
483#endif
484
485 DISPATCHER_CONTEXT *getDispatcherContext() { return &_dispContext; }
486 void setDispatcherContext(DISPATCHER_CONTEXT *disp) { _dispContext = *disp; }
487
488private:
489
490 pint_t getLastPC() const { return _dispContext.ControlPc; }
491 void setLastPC(pint_t pc) { _dispContext.ControlPc = pc; }
492 RUNTIME_FUNCTION *lookUpSEHUnwindInfo(pint_t pc, pint_t *base) {
493 _dispContext.FunctionEntry = RtlLookupFunctionEntry(pc,
494 &_dispContext.ImageBase,
495 _dispContext.HistoryTable);
496 *base = _dispContext.ImageBase;
497 return _dispContext.FunctionEntry;
498 }
499 bool getInfoFromSEH(pint_t pc);
500 int stepWithSEHData() {
501 _dispContext.LanguageHandler = RtlVirtualUnwind(UNW_FLAG_UHANDLER,
502 _dispContext.ImageBase,
503 _dispContext.ControlPc,
504 _dispContext.FunctionEntry,
505 _dispContext.ContextRecord,
506 &_dispContext.HandlerData,
507 &_dispContext.EstablisherFrame,
508 NULL);
509 // Update some fields of the unwind info now, since we have them.
510 _info.lsda = reinterpret_cast<unw_word_t>(_dispContext.HandlerData);
511 if (_dispContext.LanguageHandler) {
512 _info.handler = reinterpret_cast<unw_word_t>(__libunwind_seh_personality);
513 } else
514 _info.handler = 0;
515 return UNW_STEP_SUCCESS;
516 }
517
518 A &_addressSpace;
519 unw_proc_info_t _info;
520 DISPATCHER_CONTEXT _dispContext;
521 CONTEXT _msContext;
522 UNWIND_HISTORY_TABLE _histTable;
523 bool _unwindInfoMissing;
524};
525
526
527template <typename A, typename R>
528UnwindCursor<A, R>::UnwindCursor(unw_context_t *context, A &as)
529 : _addressSpace(as), _unwindInfoMissing(false) {
530 static_assert((check_fit<UnwindCursor<A, R>, unw_cursor_t>::does_fit),
531 "UnwindCursor<> does not fit in unw_cursor_t");
532 memset(&_info, 0, sizeof(_info));
533 memset(&_histTable, 0, sizeof(_histTable));
534 _dispContext.ContextRecord = &_msContext;
535 _dispContext.HistoryTable = &_histTable;
536 // Initialize MS context from ours.
537 R r(context);
538 _msContext.ContextFlags = CONTEXT_CONTROL|CONTEXT_INTEGER|CONTEXT_FLOATING_POINT;
539#if defined(_LIBUNWIND_TARGET_X86_64)
540 _msContext.Rax = r.getRegister(UNW_X86_64_RAX);
541 _msContext.Rcx = r.getRegister(UNW_X86_64_RCX);
542 _msContext.Rdx = r.getRegister(UNW_X86_64_RDX);
543 _msContext.Rbx = r.getRegister(UNW_X86_64_RBX);
544 _msContext.Rsp = r.getRegister(UNW_X86_64_RSP);
545 _msContext.Rbp = r.getRegister(UNW_X86_64_RBP);
546 _msContext.Rsi = r.getRegister(UNW_X86_64_RSI);
547 _msContext.Rdi = r.getRegister(UNW_X86_64_RDI);
548 _msContext.R8 = r.getRegister(UNW_X86_64_R8);
549 _msContext.R9 = r.getRegister(UNW_X86_64_R9);
550 _msContext.R10 = r.getRegister(UNW_X86_64_R10);
551 _msContext.R11 = r.getRegister(UNW_X86_64_R11);
552 _msContext.R12 = r.getRegister(UNW_X86_64_R12);
553 _msContext.R13 = r.getRegister(UNW_X86_64_R13);
554 _msContext.R14 = r.getRegister(UNW_X86_64_R14);
555 _msContext.R15 = r.getRegister(UNW_X86_64_R15);
556 _msContext.Rip = r.getRegister(UNW_REG_IP);
557 union {
558 v128 v;
559 M128A m;
560 } t;
561 t.v = r.getVectorRegister(UNW_X86_64_XMM0);
562 _msContext.Xmm0 = t.m;
563 t.v = r.getVectorRegister(UNW_X86_64_XMM1);
564 _msContext.Xmm1 = t.m;
565 t.v = r.getVectorRegister(UNW_X86_64_XMM2);
566 _msContext.Xmm2 = t.m;
567 t.v = r.getVectorRegister(UNW_X86_64_XMM3);
568 _msContext.Xmm3 = t.m;
569 t.v = r.getVectorRegister(UNW_X86_64_XMM4);
570 _msContext.Xmm4 = t.m;
571 t.v = r.getVectorRegister(UNW_X86_64_XMM5);
572 _msContext.Xmm5 = t.m;
573 t.v = r.getVectorRegister(UNW_X86_64_XMM6);
574 _msContext.Xmm6 = t.m;
575 t.v = r.getVectorRegister(UNW_X86_64_XMM7);
576 _msContext.Xmm7 = t.m;
577 t.v = r.getVectorRegister(UNW_X86_64_XMM8);
578 _msContext.Xmm8 = t.m;
579 t.v = r.getVectorRegister(UNW_X86_64_XMM9);
580 _msContext.Xmm9 = t.m;
581 t.v = r.getVectorRegister(UNW_X86_64_XMM10);
582 _msContext.Xmm10 = t.m;
583 t.v = r.getVectorRegister(UNW_X86_64_XMM11);
584 _msContext.Xmm11 = t.m;
585 t.v = r.getVectorRegister(UNW_X86_64_XMM12);
586 _msContext.Xmm12 = t.m;
587 t.v = r.getVectorRegister(UNW_X86_64_XMM13);
588 _msContext.Xmm13 = t.m;
589 t.v = r.getVectorRegister(UNW_X86_64_XMM14);
590 _msContext.Xmm14 = t.m;
591 t.v = r.getVectorRegister(UNW_X86_64_XMM15);
592 _msContext.Xmm15 = t.m;
593#elif defined(_LIBUNWIND_TARGET_ARM)
594 _msContext.R0 = r.getRegister(UNW_ARM_R0);
595 _msContext.R1 = r.getRegister(UNW_ARM_R1);
596 _msContext.R2 = r.getRegister(UNW_ARM_R2);
597 _msContext.R3 = r.getRegister(UNW_ARM_R3);
598 _msContext.R4 = r.getRegister(UNW_ARM_R4);
599 _msContext.R5 = r.getRegister(UNW_ARM_R5);
600 _msContext.R6 = r.getRegister(UNW_ARM_R6);
601 _msContext.R7 = r.getRegister(UNW_ARM_R7);
602 _msContext.R8 = r.getRegister(UNW_ARM_R8);
603 _msContext.R9 = r.getRegister(UNW_ARM_R9);
604 _msContext.R10 = r.getRegister(UNW_ARM_R10);
605 _msContext.R11 = r.getRegister(UNW_ARM_R11);
606 _msContext.R12 = r.getRegister(UNW_ARM_R12);
607 _msContext.Sp = r.getRegister(UNW_ARM_SP);
608 _msContext.Lr = r.getRegister(UNW_ARM_LR);
609 _msContext.Pc = r.getRegister(UNW_ARM_PC);
610 for (int r = UNW_ARM_D0; r <= UNW_ARM_D31; ++r) {
611 union {
612 uint64_t w;
613 double d;
614 } d;
615 d.d = r.getFloatRegister(r);
616 _msContext.D[r - UNW_ARM_D0] = d.w;
617 }
618#endif
619}
620
621template <typename A, typename R>
622UnwindCursor<A, R>::UnwindCursor(CONTEXT *context, A &as)
623 : _addressSpace(as), _unwindInfoMissing(false) {
624 static_assert((check_fit<UnwindCursor<A, R>, unw_cursor_t>::does_fit),
625 "UnwindCursor<> does not fit in unw_cursor_t");
626 memset(&_info, 0, sizeof(_info));
627 memset(&_histTable, 0, sizeof(_histTable));
628 _dispContext.ContextRecord = &_msContext;
629 _dispContext.HistoryTable = &_histTable;
630 _msContext = *context;
631}
632
633
634template <typename A, typename R>
635bool UnwindCursor<A, R>::validReg(int regNum) {
636 if (regNum == UNW_REG_IP || regNum == UNW_REG_SP) return true;
637#if defined(_LIBUNWIND_TARGET_X86_64)
638 if (regNum >= UNW_X86_64_RAX && regNum <= UNW_X86_64_R15) return true;
639#elif defined(_LIBUNWIND_TARGET_ARM)
640 if (regNum >= UNW_ARM_R0 && regNum <= UNW_ARM_R15) return true;
641#endif
642 return false;
643}
644
645template <typename A, typename R>
646unw_word_t UnwindCursor<A, R>::getReg(int regNum) {
647 switch (regNum) {
648#if defined(_LIBUNWIND_TARGET_X86_64)
649 case UNW_REG_IP: return _msContext.Rip;
650 case UNW_X86_64_RAX: return _msContext.Rax;
651 case UNW_X86_64_RDX: return _msContext.Rdx;
652 case UNW_X86_64_RCX: return _msContext.Rcx;
653 case UNW_X86_64_RBX: return _msContext.Rbx;
654 case UNW_REG_SP:
655 case UNW_X86_64_RSP: return _msContext.Rsp;
656 case UNW_X86_64_RBP: return _msContext.Rbp;
657 case UNW_X86_64_RSI: return _msContext.Rsi;
658 case UNW_X86_64_RDI: return _msContext.Rdi;
659 case UNW_X86_64_R8: return _msContext.R8;
660 case UNW_X86_64_R9: return _msContext.R9;
661 case UNW_X86_64_R10: return _msContext.R10;
662 case UNW_X86_64_R11: return _msContext.R11;
663 case UNW_X86_64_R12: return _msContext.R12;
664 case UNW_X86_64_R13: return _msContext.R13;
665 case UNW_X86_64_R14: return _msContext.R14;
666 case UNW_X86_64_R15: return _msContext.R15;
667#elif defined(_LIBUNWIND_TARGET_ARM)
668 case UNW_ARM_R0: return _msContext.R0;
669 case UNW_ARM_R1: return _msContext.R1;
670 case UNW_ARM_R2: return _msContext.R2;
671 case UNW_ARM_R3: return _msContext.R3;
672 case UNW_ARM_R4: return _msContext.R4;
673 case UNW_ARM_R5: return _msContext.R5;
674 case UNW_ARM_R6: return _msContext.R6;
675 case UNW_ARM_R7: return _msContext.R7;
676 case UNW_ARM_R8: return _msContext.R8;
677 case UNW_ARM_R9: return _msContext.R9;
678 case UNW_ARM_R10: return _msContext.R10;
679 case UNW_ARM_R11: return _msContext.R11;
680 case UNW_ARM_R12: return _msContext.R12;
681 case UNW_REG_SP:
682 case UNW_ARM_SP: return _msContext.Sp;
683 case UNW_ARM_LR: return _msContext.Lr;
684 case UNW_REG_IP:
685 case UNW_ARM_PC: return _msContext.Pc;
686#endif
687 }
688 _LIBUNWIND_ABORT("unsupported register");
689}
690
691template <typename A, typename R>
692void UnwindCursor<A, R>::setReg(int regNum, unw_word_t value) {
693 switch (regNum) {
694#if defined(_LIBUNWIND_TARGET_X86_64)
695 case UNW_REG_IP: _msContext.Rip = value; break;
696 case UNW_X86_64_RAX: _msContext.Rax = value; break;
697 case UNW_X86_64_RDX: _msContext.Rdx = value; break;
698 case UNW_X86_64_RCX: _msContext.Rcx = value; break;
699 case UNW_X86_64_RBX: _msContext.Rbx = value; break;
700 case UNW_REG_SP:
701 case UNW_X86_64_RSP: _msContext.Rsp = value; break;
702 case UNW_X86_64_RBP: _msContext.Rbp = value; break;
703 case UNW_X86_64_RSI: _msContext.Rsi = value; break;
704 case UNW_X86_64_RDI: _msContext.Rdi = value; break;
705 case UNW_X86_64_R8: _msContext.R8 = value; break;
706 case UNW_X86_64_R9: _msContext.R9 = value; break;
707 case UNW_X86_64_R10: _msContext.R10 = value; break;
708 case UNW_X86_64_R11: _msContext.R11 = value; break;
709 case UNW_X86_64_R12: _msContext.R12 = value; break;
710 case UNW_X86_64_R13: _msContext.R13 = value; break;
711 case UNW_X86_64_R14: _msContext.R14 = value; break;
712 case UNW_X86_64_R15: _msContext.R15 = value; break;
713#elif defined(_LIBUNWIND_TARGET_ARM)
714 case UNW_ARM_R0: _msContext.R0 = value; break;
715 case UNW_ARM_R1: _msContext.R1 = value; break;
716 case UNW_ARM_R2: _msContext.R2 = value; break;
717 case UNW_ARM_R3: _msContext.R3 = value; break;
718 case UNW_ARM_R4: _msContext.R4 = value; break;
719 case UNW_ARM_R5: _msContext.R5 = value; break;
720 case UNW_ARM_R6: _msContext.R6 = value; break;
721 case UNW_ARM_R7: _msContext.R7 = value; break;
722 case UNW_ARM_R8: _msContext.R8 = value; break;
723 case UNW_ARM_R9: _msContext.R9 = value; break;
724 case UNW_ARM_R10: _msContext.R10 = value; break;
725 case UNW_ARM_R11: _msContext.R11 = value; break;
726 case UNW_ARM_R12: _msContext.R12 = value; break;
727 case UNW_REG_SP:
728 case UNW_ARM_SP: _msContext.Sp = value; break;
729 case UNW_ARM_LR: _msContext.Lr = value; break;
730 case UNW_REG_IP:
731 case UNW_ARM_PC: _msContext.Pc = value; break;
732#endif
733 default:
734 _LIBUNWIND_ABORT("unsupported register");
735 }
736}
737
738template <typename A, typename R>
739bool UnwindCursor<A, R>::validFloatReg(int regNum) {
740#if defined(_LIBUNWIND_TARGET_ARM)
741 if (regNum >= UNW_ARM_S0 && regNum <= UNW_ARM_S31) return true;
742 if (regNum >= UNW_ARM_D0 && regNum <= UNW_ARM_D31) return true;
743#endif
744 return false;
745}
746
747template <typename A, typename R>
748unw_fpreg_t UnwindCursor<A, R>::getFloatReg(int regNum) {
749#if defined(_LIBUNWIND_TARGET_ARM)
750 if (regNum >= UNW_ARM_S0 && regNum <= UNW_ARM_S31) {
751 union {
752 uint32_t w;
753 float f;
754 } d;
755 d.w = _msContext.S[regNum - UNW_ARM_S0];
756 return d.f;
757 }
758 if (regNum >= UNW_ARM_D0 && regNum <= UNW_ARM_D31) {
759 union {
760 uint64_t w;
761 double d;
762 } d;
763 d.w = _msContext.D[regNum - UNW_ARM_D0];
764 return d.d;
765 }
766 _LIBUNWIND_ABORT("unsupported float register");
767#else
768 _LIBUNWIND_ABORT("float registers unimplemented");
769#endif
770}
771
772template <typename A, typename R>
773void UnwindCursor<A, R>::setFloatReg(int regNum, unw_fpreg_t value) {
774#if defined(_LIBUNWIND_TARGET_ARM)
775 if (regNum >= UNW_ARM_S0 && regNum <= UNW_ARM_S31) {
776 union {
777 uint32_t w;
778 float f;
779 } d;
780 d.f = value;
781 _msContext.S[regNum - UNW_ARM_S0] = d.w;
782 }
783 if (regNum >= UNW_ARM_D0 && regNum <= UNW_ARM_D31) {
784 union {
785 uint64_t w;
786 double d;
787 } d;
788 d.d = value;
789 _msContext.D[regNum - UNW_ARM_D0] = d.w;
790 }
791 _LIBUNWIND_ABORT("unsupported float register");
792#else
793 _LIBUNWIND_ABORT("float registers unimplemented");
794#endif
795}
796
797template <typename A, typename R> void UnwindCursor<A, R>::jumpto() {
798 RtlRestoreContext(&_msContext, nullptr);
799}
800
801#ifdef __arm__
802template <typename A, typename R> void UnwindCursor<A, R>::saveVFPAsX() {}
803#endif
804
805template <typename A, typename R>
806const char *UnwindCursor<A, R>::getRegisterName(int regNum) {
807 switch (regNum) {
808#if defined(_LIBUNWIND_TARGET_X86_64)
809 case UNW_REG_IP: return "rip";
810 case UNW_X86_64_RAX: return "rax";
811 case UNW_X86_64_RDX: return "rdx";
812 case UNW_X86_64_RCX: return "rcx";
813 case UNW_X86_64_RBX: return "rbx";
814 case UNW_REG_SP:
815 case UNW_X86_64_RSP: return "rsp";
816 case UNW_X86_64_RBP: return "rbp";
817 case UNW_X86_64_RSI: return "rsi";
818 case UNW_X86_64_RDI: return "rdi";
819 case UNW_X86_64_R8: return "r8";
820 case UNW_X86_64_R9: return "r9";
821 case UNW_X86_64_R10: return "r10";
822 case UNW_X86_64_R11: return "r11";
823 case UNW_X86_64_R12: return "r12";
824 case UNW_X86_64_R13: return "r13";
825 case UNW_X86_64_R14: return "r14";
826 case UNW_X86_64_R15: return "r15";
827#elif defined(_LIBUNWIND_TARGET_ARM)
828 case UNW_ARM_R0: return "r0";
829 case UNW_ARM_R1: return "r1";
830 case UNW_ARM_R2: return "r2";
831 case UNW_ARM_R3: return "r3";
832 case UNW_ARM_R4: return "r4";
833 case UNW_ARM_R5: return "r5";
834 case UNW_ARM_R6: return "r6";
835 case UNW_ARM_R7: return "r7";
836 case UNW_ARM_R8: return "r8";
837 case UNW_ARM_R9: return "r9";
838 case UNW_ARM_R10: return "r10";
839 case UNW_ARM_R11: return "r11";
840 case UNW_ARM_R12: return "r12";
841 case UNW_REG_SP:
842 case UNW_ARM_SP: return "sp";
843 case UNW_ARM_LR: return "lr";
844 case UNW_REG_IP:
845 case UNW_ARM_PC: return "pc";
846 case UNW_ARM_S0: return "s0";
847 case UNW_ARM_S1: return "s1";
848 case UNW_ARM_S2: return "s2";
849 case UNW_ARM_S3: return "s3";
850 case UNW_ARM_S4: return "s4";
851 case UNW_ARM_S5: return "s5";
852 case UNW_ARM_S6: return "s6";
853 case UNW_ARM_S7: return "s7";
854 case UNW_ARM_S8: return "s8";
855 case UNW_ARM_S9: return "s9";
856 case UNW_ARM_S10: return "s10";
857 case UNW_ARM_S11: return "s11";
858 case UNW_ARM_S12: return "s12";
859 case UNW_ARM_S13: return "s13";
860 case UNW_ARM_S14: return "s14";
861 case UNW_ARM_S15: return "s15";
862 case UNW_ARM_S16: return "s16";
863 case UNW_ARM_S17: return "s17";
864 case UNW_ARM_S18: return "s18";
865 case UNW_ARM_S19: return "s19";
866 case UNW_ARM_S20: return "s20";
867 case UNW_ARM_S21: return "s21";
868 case UNW_ARM_S22: return "s22";
869 case UNW_ARM_S23: return "s23";
870 case UNW_ARM_S24: return "s24";
871 case UNW_ARM_S25: return "s25";
872 case UNW_ARM_S26: return "s26";
873 case UNW_ARM_S27: return "s27";
874 case UNW_ARM_S28: return "s28";
875 case UNW_ARM_S29: return "s29";
876 case UNW_ARM_S30: return "s30";
877 case UNW_ARM_S31: return "s31";
878 case UNW_ARM_D0: return "d0";
879 case UNW_ARM_D1: return "d1";
880 case UNW_ARM_D2: return "d2";
881 case UNW_ARM_D3: return "d3";
882 case UNW_ARM_D4: return "d4";
883 case UNW_ARM_D5: return "d5";
884 case UNW_ARM_D6: return "d6";
885 case UNW_ARM_D7: return "d7";
886 case UNW_ARM_D8: return "d8";
887 case UNW_ARM_D9: return "d9";
888 case UNW_ARM_D10: return "d10";
889 case UNW_ARM_D11: return "d11";
890 case UNW_ARM_D12: return "d12";
891 case UNW_ARM_D13: return "d13";
892 case UNW_ARM_D14: return "d14";
893 case UNW_ARM_D15: return "d15";
894 case UNW_ARM_D16: return "d16";
895 case UNW_ARM_D17: return "d17";
896 case UNW_ARM_D18: return "d18";
897 case UNW_ARM_D19: return "d19";
898 case UNW_ARM_D20: return "d20";
899 case UNW_ARM_D21: return "d21";
900 case UNW_ARM_D22: return "d22";
901 case UNW_ARM_D23: return "d23";
902 case UNW_ARM_D24: return "d24";
903 case UNW_ARM_D25: return "d25";
904 case UNW_ARM_D26: return "d26";
905 case UNW_ARM_D27: return "d27";
906 case UNW_ARM_D28: return "d28";
907 case UNW_ARM_D29: return "d29";
908 case UNW_ARM_D30: return "d30";
909 case UNW_ARM_D31: return "d31";
910#endif
911 default:
912 _LIBUNWIND_ABORT("unsupported register");
913 }
914}
915
916template <typename A, typename R> bool UnwindCursor<A, R>::isSignalFrame() {
917 return false;
918}
919
920#else // !defined(_LIBUNWIND_SUPPORT_SEH_UNWIND) || !defined(_WIN32)
921
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000922/// UnwindCursor contains all state (including all register values) during
923/// an unwind. This is normally stack allocated inside a unw_cursor_t.
924template <typename A, typename R>
925class UnwindCursor : public AbstractUnwindCursor{
926 typedef typename A::pint_t pint_t;
927public:
928 UnwindCursor(unw_context_t *context, A &as);
929 UnwindCursor(A &as, void *threadArg);
930 virtual ~UnwindCursor() {}
931 virtual bool validReg(int);
932 virtual unw_word_t getReg(int);
933 virtual void setReg(int, unw_word_t);
934 virtual bool validFloatReg(int);
935 virtual unw_fpreg_t getFloatReg(int);
936 virtual void setFloatReg(int, unw_fpreg_t);
937 virtual int step();
938 virtual void getInfo(unw_proc_info_t *);
939 virtual void jumpto();
940 virtual bool isSignalFrame();
941 virtual bool getFunctionName(char *buf, size_t len, unw_word_t *off);
942 virtual void setInfoBasedOnIPRegister(bool isReturnAddress = false);
943 virtual const char *getRegisterName(int num);
944#ifdef __arm__
945 virtual void saveVFPAsX();
946#endif
947
948private:
949
Ranjeet Singh421231a2017-03-31 15:28:06 +0000950#if defined(_LIBUNWIND_ARM_EHABI)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000951 bool getInfoFromEHABISection(pint_t pc, const UnwindInfoSections &sects);
Logan Chiena54f0962015-05-29 15:33:38 +0000952
953 int stepWithEHABI() {
954 size_t len = 0;
955 size_t off = 0;
956 // FIXME: Calling decode_eht_entry() here is violating the libunwind
957 // abstraction layer.
958 const uint32_t *ehtp =
959 decode_eht_entry(reinterpret_cast<const uint32_t *>(_info.unwind_info),
960 &off, &len);
961 if (_Unwind_VRS_Interpret((_Unwind_Context *)this, ehtp, off, len) !=
962 _URC_CONTINUE_UNWIND)
963 return UNW_STEP_END;
964 return UNW_STEP_SUCCESS;
965 }
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000966#endif
967
Ranjeet Singh421231a2017-03-31 15:28:06 +0000968#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000969 bool getInfoFromDwarfSection(pint_t pc, const UnwindInfoSections &sects,
970 uint32_t fdeSectionOffsetHint=0);
971 int stepWithDwarfFDE() {
972 return DwarfInstructions<A, R>::stepWithDwarf(_addressSpace,
973 (pint_t)this->getReg(UNW_REG_IP),
974 (pint_t)_info.unwind_info,
975 _registers);
976 }
977#endif
978
Ranjeet Singh421231a2017-03-31 15:28:06 +0000979#if defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000980 bool getInfoFromCompactEncodingSection(pint_t pc,
981 const UnwindInfoSections &sects);
982 int stepWithCompactEncoding() {
Ranjeet Singh421231a2017-03-31 15:28:06 +0000983 #if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000984 if ( compactSaysUseDwarf() )
985 return stepWithDwarfFDE();
986 #endif
987 R dummy;
988 return stepWithCompactEncoding(dummy);
989 }
990
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +0000991#if defined(_LIBUNWIND_TARGET_X86_64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000992 int stepWithCompactEncoding(Registers_x86_64 &) {
993 return CompactUnwinder_x86_64<A>::stepWithCompactEncoding(
994 _info.format, _info.start_ip, _addressSpace, _registers);
995 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +0000996#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000997
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +0000998#if defined(_LIBUNWIND_TARGET_I386)
Saleem Abdulrasool17552662015-04-24 19:39:17 +0000999 int stepWithCompactEncoding(Registers_x86 &) {
1000 return CompactUnwinder_x86<A>::stepWithCompactEncoding(
1001 _info.format, (uint32_t)_info.start_ip, _addressSpace, _registers);
1002 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001003#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001004
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001005#if defined(_LIBUNWIND_TARGET_PPC)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001006 int stepWithCompactEncoding(Registers_ppc &) {
1007 return UNW_EINVAL;
1008 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001009#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001010
Martin Storsjo8338b0a2018-01-02 22:11:30 +00001011#if defined(_LIBUNWIND_TARGET_PPC64)
1012 int stepWithCompactEncoding(Registers_ppc64 &) {
1013 return UNW_EINVAL;
1014 }
1015#endif
1016
1017
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001018#if defined(_LIBUNWIND_TARGET_AARCH64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001019 int stepWithCompactEncoding(Registers_arm64 &) {
1020 return CompactUnwinder_arm64<A>::stepWithCompactEncoding(
1021 _info.format, _info.start_ip, _addressSpace, _registers);
1022 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001023#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001024
John Baldwin56441d42017-12-12 21:43:36 +00001025#if defined(_LIBUNWIND_TARGET_MIPS_O32)
1026 int stepWithCompactEncoding(Registers_mips_o32 &) {
1027 return UNW_EINVAL;
1028 }
1029#endif
1030
John Baldwin541a4352018-01-09 17:07:18 +00001031#if defined(_LIBUNWIND_TARGET_MIPS_NEWABI)
1032 int stepWithCompactEncoding(Registers_mips_newabi &) {
John Baldwin56441d42017-12-12 21:43:36 +00001033 return UNW_EINVAL;
1034 }
1035#endif
1036
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001037 bool compactSaysUseDwarf(uint32_t *offset=NULL) const {
1038 R dummy;
1039 return compactSaysUseDwarf(dummy, offset);
1040 }
1041
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001042#if defined(_LIBUNWIND_TARGET_X86_64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001043 bool compactSaysUseDwarf(Registers_x86_64 &, uint32_t *offset) const {
1044 if ((_info.format & UNWIND_X86_64_MODE_MASK) == UNWIND_X86_64_MODE_DWARF) {
1045 if (offset)
1046 *offset = (_info.format & UNWIND_X86_64_DWARF_SECTION_OFFSET);
1047 return true;
1048 }
1049 return false;
1050 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001051#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001052
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001053#if defined(_LIBUNWIND_TARGET_I386)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001054 bool compactSaysUseDwarf(Registers_x86 &, uint32_t *offset) const {
1055 if ((_info.format & UNWIND_X86_MODE_MASK) == UNWIND_X86_MODE_DWARF) {
1056 if (offset)
1057 *offset = (_info.format & UNWIND_X86_DWARF_SECTION_OFFSET);
1058 return true;
1059 }
1060 return false;
1061 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001062#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001063
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001064#if defined(_LIBUNWIND_TARGET_PPC)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001065 bool compactSaysUseDwarf(Registers_ppc &, uint32_t *) const {
1066 return true;
1067 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001068#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001069
Martin Storsjo8338b0a2018-01-02 22:11:30 +00001070#if defined(_LIBUNWIND_TARGET_PPC64)
1071 bool compactSaysUseDwarf(Registers_ppc64 &, uint32_t *) const {
1072 return true;
1073 }
1074#endif
1075
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001076#if defined(_LIBUNWIND_TARGET_AARCH64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001077 bool compactSaysUseDwarf(Registers_arm64 &, uint32_t *offset) const {
1078 if ((_info.format & UNWIND_ARM64_MODE_MASK) == UNWIND_ARM64_MODE_DWARF) {
1079 if (offset)
1080 *offset = (_info.format & UNWIND_ARM64_DWARF_SECTION_OFFSET);
1081 return true;
1082 }
1083 return false;
1084 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001085#endif
John Baldwin56441d42017-12-12 21:43:36 +00001086
1087#if defined(_LIBUNWIND_TARGET_MIPS_O32)
1088 bool compactSaysUseDwarf(Registers_mips_o32 &, uint32_t *) const {
1089 return true;
1090 }
1091#endif
1092
John Baldwin541a4352018-01-09 17:07:18 +00001093#if defined(_LIBUNWIND_TARGET_MIPS_NEWABI)
1094 bool compactSaysUseDwarf(Registers_mips_newabi &, uint32_t *) const {
John Baldwin56441d42017-12-12 21:43:36 +00001095 return true;
1096 }
1097#endif
Ranjeet Singh421231a2017-03-31 15:28:06 +00001098#endif // defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001099
Ranjeet Singh421231a2017-03-31 15:28:06 +00001100#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001101 compact_unwind_encoding_t dwarfEncoding() const {
1102 R dummy;
1103 return dwarfEncoding(dummy);
1104 }
1105
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001106#if defined(_LIBUNWIND_TARGET_X86_64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001107 compact_unwind_encoding_t dwarfEncoding(Registers_x86_64 &) const {
1108 return UNWIND_X86_64_MODE_DWARF;
1109 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001110#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001111
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001112#if defined(_LIBUNWIND_TARGET_I386)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001113 compact_unwind_encoding_t dwarfEncoding(Registers_x86 &) const {
1114 return UNWIND_X86_MODE_DWARF;
1115 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001116#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001117
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001118#if defined(_LIBUNWIND_TARGET_PPC)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001119 compact_unwind_encoding_t dwarfEncoding(Registers_ppc &) const {
1120 return 0;
1121 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001122#endif
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001123
Martin Storsjo8338b0a2018-01-02 22:11:30 +00001124#if defined(_LIBUNWIND_TARGET_PPC64)
1125 compact_unwind_encoding_t dwarfEncoding(Registers_ppc64 &) const {
1126 return 0;
1127 }
1128#endif
1129
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001130#if defined(_LIBUNWIND_TARGET_AARCH64)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001131 compact_unwind_encoding_t dwarfEncoding(Registers_arm64 &) const {
1132 return UNWIND_ARM64_MODE_DWARF;
1133 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001134#endif
Peter Zotov8d639992015-08-31 05:26:37 +00001135
Martin Storsjoa72285f2017-11-02 08:16:16 +00001136#if defined(_LIBUNWIND_TARGET_ARM)
1137 compact_unwind_encoding_t dwarfEncoding(Registers_arm &) const {
1138 return 0;
1139 }
1140#endif
1141
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001142#if defined (_LIBUNWIND_TARGET_OR1K)
Peter Zotov8d639992015-08-31 05:26:37 +00001143 compact_unwind_encoding_t dwarfEncoding(Registers_or1k &) const {
1144 return 0;
1145 }
Asiri Rathnayakec00dcef2016-05-25 12:36:34 +00001146#endif
John Baldwin56441d42017-12-12 21:43:36 +00001147
1148#if defined (_LIBUNWIND_TARGET_MIPS_O32)
1149 compact_unwind_encoding_t dwarfEncoding(Registers_mips_o32 &) const {
1150 return 0;
1151 }
1152#endif
1153
John Baldwin541a4352018-01-09 17:07:18 +00001154#if defined (_LIBUNWIND_TARGET_MIPS_NEWABI)
1155 compact_unwind_encoding_t dwarfEncoding(Registers_mips_newabi &) const {
John Baldwin56441d42017-12-12 21:43:36 +00001156 return 0;
1157 }
1158#endif
Ranjeet Singh421231a2017-03-31 15:28:06 +00001159#endif // defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001160
Charles Davisfa2e6202018-08-30 21:29:00 +00001161#if defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1162 // For runtime environments using SEH unwind data without Windows runtime
1163 // support.
1164 pint_t getLastPC() const { /* FIXME: Implement */ return 0; }
1165 void setLastPC(pint_t pc) { /* FIXME: Implement */ }
1166 RUNTIME_FUNCTION *lookUpSEHUnwindInfo(pint_t pc, pint_t *base) {
1167 /* FIXME: Implement */
1168 *base = 0;
1169 return nullptr;
1170 }
1171 bool getInfoFromSEH(pint_t pc);
1172 int stepWithSEHData() { /* FIXME: Implement */ return 0; }
1173#endif // defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1174
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001175
1176 A &_addressSpace;
1177 R _registers;
1178 unw_proc_info_t _info;
1179 bool _unwindInfoMissing;
1180 bool _isSignalFrame;
1181};
1182
1183
1184template <typename A, typename R>
1185UnwindCursor<A, R>::UnwindCursor(unw_context_t *context, A &as)
1186 : _addressSpace(as), _registers(context), _unwindInfoMissing(false),
1187 _isSignalFrame(false) {
Asiri Rathnayake74d35252016-05-26 21:45:54 +00001188 static_assert((check_fit<UnwindCursor<A, R>, unw_cursor_t>::does_fit),
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001189 "UnwindCursor<> does not fit in unw_cursor_t");
1190 memset(&_info, 0, sizeof(_info));
1191}
1192
1193template <typename A, typename R>
1194UnwindCursor<A, R>::UnwindCursor(A &as, void *)
1195 : _addressSpace(as), _unwindInfoMissing(false), _isSignalFrame(false) {
1196 memset(&_info, 0, sizeof(_info));
1197 // FIXME
1198 // fill in _registers from thread arg
1199}
1200
1201
1202template <typename A, typename R>
1203bool UnwindCursor<A, R>::validReg(int regNum) {
1204 return _registers.validRegister(regNum);
1205}
1206
1207template <typename A, typename R>
1208unw_word_t UnwindCursor<A, R>::getReg(int regNum) {
1209 return _registers.getRegister(regNum);
1210}
1211
1212template <typename A, typename R>
1213void UnwindCursor<A, R>::setReg(int regNum, unw_word_t value) {
1214 _registers.setRegister(regNum, (typename A::pint_t)value);
1215}
1216
1217template <typename A, typename R>
1218bool UnwindCursor<A, R>::validFloatReg(int regNum) {
1219 return _registers.validFloatRegister(regNum);
1220}
1221
1222template <typename A, typename R>
1223unw_fpreg_t UnwindCursor<A, R>::getFloatReg(int regNum) {
1224 return _registers.getFloatRegister(regNum);
1225}
1226
1227template <typename A, typename R>
1228void UnwindCursor<A, R>::setFloatReg(int regNum, unw_fpreg_t value) {
1229 _registers.setFloatRegister(regNum, value);
1230}
1231
1232template <typename A, typename R> void UnwindCursor<A, R>::jumpto() {
1233 _registers.jumpto();
1234}
1235
1236#ifdef __arm__
1237template <typename A, typename R> void UnwindCursor<A, R>::saveVFPAsX() {
1238 _registers.saveVFPAsX();
1239}
1240#endif
1241
1242template <typename A, typename R>
1243const char *UnwindCursor<A, R>::getRegisterName(int regNum) {
1244 return _registers.getRegisterName(regNum);
1245}
1246
1247template <typename A, typename R> bool UnwindCursor<A, R>::isSignalFrame() {
1248 return _isSignalFrame;
1249}
1250
Charles Davisfa2e6202018-08-30 21:29:00 +00001251#endif // defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1252
Ranjeet Singh421231a2017-03-31 15:28:06 +00001253#if defined(_LIBUNWIND_ARM_EHABI)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001254struct EHABIIndexEntry {
1255 uint32_t functionOffset;
1256 uint32_t data;
1257};
1258
1259template<typename A>
1260struct EHABISectionIterator {
1261 typedef EHABISectionIterator _Self;
1262
1263 typedef std::random_access_iterator_tag iterator_category;
1264 typedef typename A::pint_t value_type;
1265 typedef typename A::pint_t* pointer;
1266 typedef typename A::pint_t& reference;
1267 typedef size_t size_type;
1268 typedef size_t difference_type;
1269
1270 static _Self begin(A& addressSpace, const UnwindInfoSections& sects) {
1271 return _Self(addressSpace, sects, 0);
1272 }
1273 static _Self end(A& addressSpace, const UnwindInfoSections& sects) {
Ed Schouten5d3f35b2017-03-07 15:21:57 +00001274 return _Self(addressSpace, sects,
1275 sects.arm_section_length / sizeof(EHABIIndexEntry));
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001276 }
1277
1278 EHABISectionIterator(A& addressSpace, const UnwindInfoSections& sects, size_t i)
1279 : _i(i), _addressSpace(&addressSpace), _sects(&sects) {}
1280
1281 _Self& operator++() { ++_i; return *this; }
1282 _Self& operator+=(size_t a) { _i += a; return *this; }
1283 _Self& operator--() { assert(_i > 0); --_i; return *this; }
1284 _Self& operator-=(size_t a) { assert(_i >= a); _i -= a; return *this; }
1285
1286 _Self operator+(size_t a) { _Self out = *this; out._i += a; return out; }
1287 _Self operator-(size_t a) { assert(_i >= a); _Self out = *this; out._i -= a; return out; }
1288
1289 size_t operator-(const _Self& other) { return _i - other._i; }
1290
1291 bool operator==(const _Self& other) const {
1292 assert(_addressSpace == other._addressSpace);
1293 assert(_sects == other._sects);
1294 return _i == other._i;
1295 }
1296
1297 typename A::pint_t operator*() const { return functionAddress(); }
1298
1299 typename A::pint_t functionAddress() const {
1300 typename A::pint_t indexAddr = _sects->arm_section + arrayoffsetof(
1301 EHABIIndexEntry, _i, functionOffset);
1302 return indexAddr + signExtendPrel31(_addressSpace->get32(indexAddr));
1303 }
1304
1305 typename A::pint_t dataAddress() {
1306 typename A::pint_t indexAddr = _sects->arm_section + arrayoffsetof(
1307 EHABIIndexEntry, _i, data);
1308 return indexAddr;
1309 }
1310
1311 private:
1312 size_t _i;
1313 A* _addressSpace;
1314 const UnwindInfoSections* _sects;
1315};
1316
1317template <typename A, typename R>
1318bool UnwindCursor<A, R>::getInfoFromEHABISection(
1319 pint_t pc,
1320 const UnwindInfoSections &sects) {
1321 EHABISectionIterator<A> begin =
1322 EHABISectionIterator<A>::begin(_addressSpace, sects);
1323 EHABISectionIterator<A> end =
1324 EHABISectionIterator<A>::end(_addressSpace, sects);
Momchil Velikov064d69a2017-07-24 09:19:32 +00001325 if (begin == end)
1326 return false;
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001327
1328 EHABISectionIterator<A> itNextPC = std::upper_bound(begin, end, pc);
Momchil Velikov064d69a2017-07-24 09:19:32 +00001329 if (itNextPC == begin)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001330 return false;
1331 EHABISectionIterator<A> itThisPC = itNextPC - 1;
1332
1333 pint_t thisPC = itThisPC.functionAddress();
Momchil Velikov064d69a2017-07-24 09:19:32 +00001334 // If an exception is thrown from a function, corresponding to the last entry
1335 // in the table, we don't really know the function extent and have to choose a
1336 // value for nextPC. Choosing max() will allow the range check during trace to
1337 // succeed.
1338 pint_t nextPC = (itNextPC == end) ? std::numeric_limits<pint_t>::max()
1339 : itNextPC.functionAddress();
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001340 pint_t indexDataAddr = itThisPC.dataAddress();
1341
1342 if (indexDataAddr == 0)
1343 return false;
1344
1345 uint32_t indexData = _addressSpace.get32(indexDataAddr);
1346 if (indexData == UNW_EXIDX_CANTUNWIND)
1347 return false;
1348
1349 // If the high bit is set, the exception handling table entry is inline inside
1350 // the index table entry on the second word (aka |indexDataAddr|). Otherwise,
1351 // the table points at an offset in the exception handling table (section 5 EHABI).
1352 pint_t exceptionTableAddr;
1353 uint32_t exceptionTableData;
1354 bool isSingleWordEHT;
1355 if (indexData & 0x80000000) {
1356 exceptionTableAddr = indexDataAddr;
1357 // TODO(ajwong): Should this data be 0?
1358 exceptionTableData = indexData;
1359 isSingleWordEHT = true;
1360 } else {
1361 exceptionTableAddr = indexDataAddr + signExtendPrel31(indexData);
1362 exceptionTableData = _addressSpace.get32(exceptionTableAddr);
1363 isSingleWordEHT = false;
1364 }
1365
1366 // Now we know the 3 things:
1367 // exceptionTableAddr -- exception handler table entry.
1368 // exceptionTableData -- the data inside the first word of the eht entry.
1369 // isSingleWordEHT -- whether the entry is in the index.
1370 unw_word_t personalityRoutine = 0xbadf00d;
1371 bool scope32 = false;
Logan Chiena54f0962015-05-29 15:33:38 +00001372 uintptr_t lsda;
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001373
1374 // If the high bit in the exception handling table entry is set, the entry is
1375 // in compact form (section 6.3 EHABI).
1376 if (exceptionTableData & 0x80000000) {
1377 // Grab the index of the personality routine from the compact form.
1378 uint32_t choice = (exceptionTableData & 0x0f000000) >> 24;
1379 uint32_t extraWords = 0;
1380 switch (choice) {
1381 case 0:
1382 personalityRoutine = (unw_word_t) &__aeabi_unwind_cpp_pr0;
1383 extraWords = 0;
1384 scope32 = false;
Logan Chiena54f0962015-05-29 15:33:38 +00001385 lsda = isSingleWordEHT ? 0 : (exceptionTableAddr + 4);
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001386 break;
1387 case 1:
1388 personalityRoutine = (unw_word_t) &__aeabi_unwind_cpp_pr1;
1389 extraWords = (exceptionTableData & 0x00ff0000) >> 16;
1390 scope32 = false;
Logan Chiena54f0962015-05-29 15:33:38 +00001391 lsda = exceptionTableAddr + (extraWords + 1) * 4;
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001392 break;
1393 case 2:
1394 personalityRoutine = (unw_word_t) &__aeabi_unwind_cpp_pr2;
1395 extraWords = (exceptionTableData & 0x00ff0000) >> 16;
1396 scope32 = true;
Logan Chiena54f0962015-05-29 15:33:38 +00001397 lsda = exceptionTableAddr + (extraWords + 1) * 4;
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001398 break;
1399 default:
1400 _LIBUNWIND_ABORT("unknown personality routine");
1401 return false;
1402 }
1403
1404 if (isSingleWordEHT) {
1405 if (extraWords != 0) {
1406 _LIBUNWIND_ABORT("index inlined table detected but pr function "
1407 "requires extra words");
1408 return false;
1409 }
1410 }
1411 } else {
1412 pint_t personalityAddr =
1413 exceptionTableAddr + signExtendPrel31(exceptionTableData);
1414 personalityRoutine = personalityAddr;
1415
1416 // ARM EHABI # 6.2, # 9.2
1417 //
1418 // +---- ehtp
1419 // v
1420 // +--------------------------------------+
1421 // | +--------+--------+--------+-------+ |
1422 // | |0| prel31 to personalityRoutine | |
1423 // | +--------+--------+--------+-------+ |
1424 // | | N | unwind opcodes | | <-- UnwindData
1425 // | +--------+--------+--------+-------+ |
1426 // | | Word 2 unwind opcodes | |
1427 // | +--------+--------+--------+-------+ |
1428 // | ... |
1429 // | +--------+--------+--------+-------+ |
1430 // | | Word N unwind opcodes | |
1431 // | +--------+--------+--------+-------+ |
1432 // | | LSDA | | <-- lsda
1433 // | | ... | |
1434 // | +--------+--------+--------+-------+ |
1435 // +--------------------------------------+
1436
1437 uint32_t *UnwindData = reinterpret_cast<uint32_t*>(exceptionTableAddr) + 1;
1438 uint32_t FirstDataWord = *UnwindData;
1439 size_t N = ((FirstDataWord >> 24) & 0xff);
1440 size_t NDataWords = N + 1;
1441 lsda = reinterpret_cast<uintptr_t>(UnwindData + NDataWords);
1442 }
1443
1444 _info.start_ip = thisPC;
1445 _info.end_ip = nextPC;
1446 _info.handler = personalityRoutine;
1447 _info.unwind_info = exceptionTableAddr;
1448 _info.lsda = lsda;
1449 // flags is pr_cache.additional. See EHABI #7.2 for definition of bit 0.
1450 _info.flags = isSingleWordEHT ? 1 : 0 | scope32 ? 0x2 : 0; // Use enum?
1451
1452 return true;
1453}
1454#endif
1455
Ranjeet Singh421231a2017-03-31 15:28:06 +00001456#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001457template <typename A, typename R>
1458bool UnwindCursor<A, R>::getInfoFromDwarfSection(pint_t pc,
1459 const UnwindInfoSections &sects,
1460 uint32_t fdeSectionOffsetHint) {
1461 typename CFI_Parser<A>::FDE_Info fdeInfo;
1462 typename CFI_Parser<A>::CIE_Info cieInfo;
1463 bool foundFDE = false;
1464 bool foundInCache = false;
1465 // If compact encoding table gave offset into dwarf section, go directly there
1466 if (fdeSectionOffsetHint != 0) {
1467 foundFDE = CFI_Parser<A>::findFDE(_addressSpace, pc, sects.dwarf_section,
1468 (uint32_t)sects.dwarf_section_length,
1469 sects.dwarf_section + fdeSectionOffsetHint,
1470 &fdeInfo, &cieInfo);
1471 }
Ranjeet Singh421231a2017-03-31 15:28:06 +00001472#if defined(_LIBUNWIND_SUPPORT_DWARF_INDEX)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001473 if (!foundFDE && (sects.dwarf_index_section != 0)) {
1474 foundFDE = EHHeaderParser<A>::findFDE(
1475 _addressSpace, pc, sects.dwarf_index_section,
1476 (uint32_t)sects.dwarf_index_section_length, &fdeInfo, &cieInfo);
1477 }
1478#endif
1479 if (!foundFDE) {
1480 // otherwise, search cache of previously found FDEs.
1481 pint_t cachedFDE = DwarfFDECache<A>::findFDE(sects.dso_base, pc);
1482 if (cachedFDE != 0) {
1483 foundFDE =
1484 CFI_Parser<A>::findFDE(_addressSpace, pc, sects.dwarf_section,
1485 (uint32_t)sects.dwarf_section_length,
1486 cachedFDE, &fdeInfo, &cieInfo);
1487 foundInCache = foundFDE;
1488 }
1489 }
1490 if (!foundFDE) {
1491 // Still not found, do full scan of __eh_frame section.
1492 foundFDE = CFI_Parser<A>::findFDE(_addressSpace, pc, sects.dwarf_section,
1493 (uint32_t)sects.dwarf_section_length, 0,
1494 &fdeInfo, &cieInfo);
1495 }
1496 if (foundFDE) {
1497 typename CFI_Parser<A>::PrologInfo prolog;
1498 if (CFI_Parser<A>::parseFDEInstructions(_addressSpace, fdeInfo, cieInfo, pc,
1499 &prolog)) {
1500 // Save off parsed FDE info
1501 _info.start_ip = fdeInfo.pcStart;
1502 _info.end_ip = fdeInfo.pcEnd;
1503 _info.lsda = fdeInfo.lsda;
1504 _info.handler = cieInfo.personality;
1505 _info.gp = prolog.spExtraArgSize;
1506 _info.flags = 0;
1507 _info.format = dwarfEncoding();
1508 _info.unwind_info = fdeInfo.fdeStart;
1509 _info.unwind_info_size = (uint32_t)fdeInfo.fdeLength;
1510 _info.extra = (unw_word_t) sects.dso_base;
1511
1512 // Add to cache (to make next lookup faster) if we had no hint
1513 // and there was no index.
1514 if (!foundInCache && (fdeSectionOffsetHint == 0)) {
Ranjeet Singh421231a2017-03-31 15:28:06 +00001515 #if defined(_LIBUNWIND_SUPPORT_DWARF_INDEX)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001516 if (sects.dwarf_index_section == 0)
1517 #endif
1518 DwarfFDECache<A>::add(sects.dso_base, fdeInfo.pcStart, fdeInfo.pcEnd,
1519 fdeInfo.fdeStart);
1520 }
1521 return true;
1522 }
1523 }
Ed Maste41bc5a72016-08-30 15:38:10 +00001524 //_LIBUNWIND_DEBUG_LOG("can't find/use FDE for pc=0x%llX", (uint64_t)pc);
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001525 return false;
1526}
Ranjeet Singh421231a2017-03-31 15:28:06 +00001527#endif // defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001528
1529
Ranjeet Singh421231a2017-03-31 15:28:06 +00001530#if defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001531template <typename A, typename R>
1532bool UnwindCursor<A, R>::getInfoFromCompactEncodingSection(pint_t pc,
1533 const UnwindInfoSections &sects) {
1534 const bool log = false;
1535 if (log)
1536 fprintf(stderr, "getInfoFromCompactEncodingSection(pc=0x%llX, mh=0x%llX)\n",
1537 (uint64_t)pc, (uint64_t)sects.dso_base);
1538
1539 const UnwindSectionHeader<A> sectionHeader(_addressSpace,
1540 sects.compact_unwind_section);
1541 if (sectionHeader.version() != UNWIND_SECTION_VERSION)
1542 return false;
1543
1544 // do a binary search of top level index to find page with unwind info
1545 pint_t targetFunctionOffset = pc - sects.dso_base;
1546 const UnwindSectionIndexArray<A> topIndex(_addressSpace,
1547 sects.compact_unwind_section
1548 + sectionHeader.indexSectionOffset());
1549 uint32_t low = 0;
1550 uint32_t high = sectionHeader.indexCount();
1551 uint32_t last = high - 1;
1552 while (low < high) {
1553 uint32_t mid = (low + high) / 2;
1554 //if ( log ) fprintf(stderr, "\tmid=%d, low=%d, high=%d, *mid=0x%08X\n",
1555 //mid, low, high, topIndex.functionOffset(mid));
1556 if (topIndex.functionOffset(mid) <= targetFunctionOffset) {
1557 if ((mid == last) ||
1558 (topIndex.functionOffset(mid + 1) > targetFunctionOffset)) {
1559 low = mid;
1560 break;
1561 } else {
1562 low = mid + 1;
1563 }
1564 } else {
1565 high = mid;
1566 }
1567 }
1568 const uint32_t firstLevelFunctionOffset = topIndex.functionOffset(low);
1569 const uint32_t firstLevelNextPageFunctionOffset =
1570 topIndex.functionOffset(low + 1);
1571 const pint_t secondLevelAddr =
1572 sects.compact_unwind_section + topIndex.secondLevelPagesSectionOffset(low);
1573 const pint_t lsdaArrayStartAddr =
1574 sects.compact_unwind_section + topIndex.lsdaIndexArraySectionOffset(low);
1575 const pint_t lsdaArrayEndAddr =
1576 sects.compact_unwind_section + topIndex.lsdaIndexArraySectionOffset(low+1);
1577 if (log)
1578 fprintf(stderr, "\tfirst level search for result index=%d "
1579 "to secondLevelAddr=0x%llX\n",
1580 low, (uint64_t) secondLevelAddr);
1581 // do a binary search of second level page index
1582 uint32_t encoding = 0;
1583 pint_t funcStart = 0;
1584 pint_t funcEnd = 0;
1585 pint_t lsda = 0;
1586 pint_t personality = 0;
1587 uint32_t pageKind = _addressSpace.get32(secondLevelAddr);
1588 if (pageKind == UNWIND_SECOND_LEVEL_REGULAR) {
1589 // regular page
1590 UnwindSectionRegularPageHeader<A> pageHeader(_addressSpace,
1591 secondLevelAddr);
1592 UnwindSectionRegularArray<A> pageIndex(
1593 _addressSpace, secondLevelAddr + pageHeader.entryPageOffset());
1594 // binary search looks for entry with e where index[e].offset <= pc <
1595 // index[e+1].offset
1596 if (log)
1597 fprintf(stderr, "\tbinary search for targetFunctionOffset=0x%08llX in "
1598 "regular page starting at secondLevelAddr=0x%llX\n",
1599 (uint64_t) targetFunctionOffset, (uint64_t) secondLevelAddr);
1600 low = 0;
1601 high = pageHeader.entryCount();
1602 while (low < high) {
1603 uint32_t mid = (low + high) / 2;
1604 if (pageIndex.functionOffset(mid) <= targetFunctionOffset) {
1605 if (mid == (uint32_t)(pageHeader.entryCount() - 1)) {
1606 // at end of table
1607 low = mid;
1608 funcEnd = firstLevelNextPageFunctionOffset + sects.dso_base;
1609 break;
1610 } else if (pageIndex.functionOffset(mid + 1) > targetFunctionOffset) {
1611 // next is too big, so we found it
1612 low = mid;
1613 funcEnd = pageIndex.functionOffset(low + 1) + sects.dso_base;
1614 break;
1615 } else {
1616 low = mid + 1;
1617 }
1618 } else {
1619 high = mid;
1620 }
1621 }
1622 encoding = pageIndex.encoding(low);
1623 funcStart = pageIndex.functionOffset(low) + sects.dso_base;
1624 if (pc < funcStart) {
1625 if (log)
1626 fprintf(
1627 stderr,
1628 "\tpc not in table, pc=0x%llX, funcStart=0x%llX, funcEnd=0x%llX\n",
1629 (uint64_t) pc, (uint64_t) funcStart, (uint64_t) funcEnd);
1630 return false;
1631 }
1632 if (pc > funcEnd) {
1633 if (log)
1634 fprintf(
1635 stderr,
1636 "\tpc not in table, pc=0x%llX, funcStart=0x%llX, funcEnd=0x%llX\n",
1637 (uint64_t) pc, (uint64_t) funcStart, (uint64_t) funcEnd);
1638 return false;
1639 }
1640 } else if (pageKind == UNWIND_SECOND_LEVEL_COMPRESSED) {
1641 // compressed page
1642 UnwindSectionCompressedPageHeader<A> pageHeader(_addressSpace,
1643 secondLevelAddr);
1644 UnwindSectionCompressedArray<A> pageIndex(
1645 _addressSpace, secondLevelAddr + pageHeader.entryPageOffset());
1646 const uint32_t targetFunctionPageOffset =
1647 (uint32_t)(targetFunctionOffset - firstLevelFunctionOffset);
1648 // binary search looks for entry with e where index[e].offset <= pc <
1649 // index[e+1].offset
1650 if (log)
1651 fprintf(stderr, "\tbinary search of compressed page starting at "
1652 "secondLevelAddr=0x%llX\n",
1653 (uint64_t) secondLevelAddr);
1654 low = 0;
1655 last = pageHeader.entryCount() - 1;
1656 high = pageHeader.entryCount();
1657 while (low < high) {
1658 uint32_t mid = (low + high) / 2;
1659 if (pageIndex.functionOffset(mid) <= targetFunctionPageOffset) {
1660 if ((mid == last) ||
1661 (pageIndex.functionOffset(mid + 1) > targetFunctionPageOffset)) {
1662 low = mid;
1663 break;
1664 } else {
1665 low = mid + 1;
1666 }
1667 } else {
1668 high = mid;
1669 }
1670 }
1671 funcStart = pageIndex.functionOffset(low) + firstLevelFunctionOffset
1672 + sects.dso_base;
1673 if (low < last)
1674 funcEnd =
1675 pageIndex.functionOffset(low + 1) + firstLevelFunctionOffset
1676 + sects.dso_base;
1677 else
1678 funcEnd = firstLevelNextPageFunctionOffset + sects.dso_base;
1679 if (pc < funcStart) {
1680 _LIBUNWIND_DEBUG_LOG("malformed __unwind_info, pc=0x%llX not in second "
Ed Maste41bc5a72016-08-30 15:38:10 +00001681 "level compressed unwind table. funcStart=0x%llX",
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001682 (uint64_t) pc, (uint64_t) funcStart);
1683 return false;
1684 }
1685 if (pc > funcEnd) {
1686 _LIBUNWIND_DEBUG_LOG("malformed __unwind_info, pc=0x%llX not in second "
Ed Maste41bc5a72016-08-30 15:38:10 +00001687 "level compressed unwind table. funcEnd=0x%llX",
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001688 (uint64_t) pc, (uint64_t) funcEnd);
1689 return false;
1690 }
1691 uint16_t encodingIndex = pageIndex.encodingIndex(low);
1692 if (encodingIndex < sectionHeader.commonEncodingsArrayCount()) {
1693 // encoding is in common table in section header
1694 encoding = _addressSpace.get32(
1695 sects.compact_unwind_section +
1696 sectionHeader.commonEncodingsArraySectionOffset() +
1697 encodingIndex * sizeof(uint32_t));
1698 } else {
1699 // encoding is in page specific table
1700 uint16_t pageEncodingIndex =
1701 encodingIndex - (uint16_t)sectionHeader.commonEncodingsArrayCount();
1702 encoding = _addressSpace.get32(secondLevelAddr +
1703 pageHeader.encodingsPageOffset() +
1704 pageEncodingIndex * sizeof(uint32_t));
1705 }
1706 } else {
1707 _LIBUNWIND_DEBUG_LOG("malformed __unwind_info at 0x%0llX bad second "
Ed Maste41bc5a72016-08-30 15:38:10 +00001708 "level page",
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001709 (uint64_t) sects.compact_unwind_section);
1710 return false;
1711 }
1712
1713 // look up LSDA, if encoding says function has one
1714 if (encoding & UNWIND_HAS_LSDA) {
1715 UnwindSectionLsdaArray<A> lsdaIndex(_addressSpace, lsdaArrayStartAddr);
1716 uint32_t funcStartOffset = (uint32_t)(funcStart - sects.dso_base);
1717 low = 0;
1718 high = (uint32_t)(lsdaArrayEndAddr - lsdaArrayStartAddr) /
1719 sizeof(unwind_info_section_header_lsda_index_entry);
1720 // binary search looks for entry with exact match for functionOffset
1721 if (log)
1722 fprintf(stderr,
1723 "\tbinary search of lsda table for targetFunctionOffset=0x%08X\n",
1724 funcStartOffset);
1725 while (low < high) {
1726 uint32_t mid = (low + high) / 2;
1727 if (lsdaIndex.functionOffset(mid) == funcStartOffset) {
1728 lsda = lsdaIndex.lsdaOffset(mid) + sects.dso_base;
1729 break;
1730 } else if (lsdaIndex.functionOffset(mid) < funcStartOffset) {
1731 low = mid + 1;
1732 } else {
1733 high = mid;
1734 }
1735 }
1736 if (lsda == 0) {
1737 _LIBUNWIND_DEBUG_LOG("found encoding 0x%08X with HAS_LSDA bit set for "
Ed Maste41bc5a72016-08-30 15:38:10 +00001738 "pc=0x%0llX, but lsda table has no entry",
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001739 encoding, (uint64_t) pc);
1740 return false;
1741 }
1742 }
1743
1744 // extact personality routine, if encoding says function has one
1745 uint32_t personalityIndex = (encoding & UNWIND_PERSONALITY_MASK) >>
1746 (__builtin_ctz(UNWIND_PERSONALITY_MASK));
1747 if (personalityIndex != 0) {
1748 --personalityIndex; // change 1-based to zero-based index
1749 if (personalityIndex > sectionHeader.personalityArrayCount()) {
1750 _LIBUNWIND_DEBUG_LOG("found encoding 0x%08X with personality index %d, "
Ed Maste41bc5a72016-08-30 15:38:10 +00001751 "but personality table has only %d entires",
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001752 encoding, personalityIndex,
1753 sectionHeader.personalityArrayCount());
1754 return false;
1755 }
1756 int32_t personalityDelta = (int32_t)_addressSpace.get32(
1757 sects.compact_unwind_section +
1758 sectionHeader.personalityArraySectionOffset() +
1759 personalityIndex * sizeof(uint32_t));
1760 pint_t personalityPointer = sects.dso_base + (pint_t)personalityDelta;
1761 personality = _addressSpace.getP(personalityPointer);
1762 if (log)
1763 fprintf(stderr, "getInfoFromCompactEncodingSection(pc=0x%llX), "
1764 "personalityDelta=0x%08X, personality=0x%08llX\n",
1765 (uint64_t) pc, personalityDelta, (uint64_t) personality);
1766 }
1767
1768 if (log)
1769 fprintf(stderr, "getInfoFromCompactEncodingSection(pc=0x%llX), "
1770 "encoding=0x%08X, lsda=0x%08llX for funcStart=0x%llX\n",
1771 (uint64_t) pc, encoding, (uint64_t) lsda, (uint64_t) funcStart);
1772 _info.start_ip = funcStart;
1773 _info.end_ip = funcEnd;
1774 _info.lsda = lsda;
1775 _info.handler = personality;
1776 _info.gp = 0;
1777 _info.flags = 0;
1778 _info.format = encoding;
1779 _info.unwind_info = 0;
1780 _info.unwind_info_size = 0;
1781 _info.extra = sects.dso_base;
1782 return true;
1783}
Ranjeet Singh421231a2017-03-31 15:28:06 +00001784#endif // defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001785
1786
Charles Davisfa2e6202018-08-30 21:29:00 +00001787#if defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1788template <typename A, typename R>
1789bool UnwindCursor<A, R>::getInfoFromSEH(pint_t pc) {
1790 pint_t base;
1791 RUNTIME_FUNCTION *unwindEntry = lookUpSEHUnwindInfo(pc, &base);
1792 if (!unwindEntry) {
1793 _LIBUNWIND_DEBUG_LOG("\tpc not in table, pc=0x%llX", (uint64_t) pc);
1794 return false;
1795 }
1796 _info.gp = 0;
1797 _info.flags = 0;
1798 _info.format = 0;
1799 _info.unwind_info_size = sizeof(RUNTIME_FUNCTION);
1800 _info.unwind_info = reinterpret_cast<unw_word_t>(unwindEntry);
1801 _info.extra = base;
1802 _info.start_ip = base + unwindEntry->BeginAddress;
1803#ifdef _LIBUNWIND_TARGET_X86_64
1804 _info.end_ip = base + unwindEntry->EndAddress;
1805 // Only fill in the handler and LSDA if they're stale.
1806 if (pc != getLastPC()) {
1807 UNWIND_INFO *xdata = reinterpret_cast<UNWIND_INFO *>(base + unwindEntry->UnwindData);
1808 if (xdata->Flags & (UNW_FLAG_EHANDLER|UNW_FLAG_UHANDLER)) {
1809 // The personality is given in the UNWIND_INFO itself. The LSDA immediately
1810 // follows the UNWIND_INFO. (This follows how both Clang and MSVC emit
1811 // these structures.)
1812 // N.B. UNWIND_INFO structs are DWORD-aligned.
1813 uint32_t lastcode = (xdata->CountOfCodes + 1) & ~1;
1814 const uint32_t *handler = reinterpret_cast<uint32_t *>(&xdata->UnwindCodes[lastcode]);
1815 _info.lsda = reinterpret_cast<unw_word_t>(handler+1);
1816 if (*handler) {
1817 _info.handler = reinterpret_cast<unw_word_t>(__libunwind_seh_personality);
1818 } else
1819 _info.handler = 0;
1820 } else {
1821 _info.lsda = 0;
1822 _info.handler = 0;
1823 }
1824 }
1825#elif defined(_LIBUNWIND_TARGET_ARM)
1826 _info.end_ip = _info.start_ip + unwindEntry->FunctionLength;
1827 _info.lsda = 0; // FIXME
1828 _info.handler = 0; // FIXME
1829#endif
1830 setLastPC(pc);
1831 return true;
1832}
1833#endif
1834
1835
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001836template <typename A, typename R>
1837void UnwindCursor<A, R>::setInfoBasedOnIPRegister(bool isReturnAddress) {
1838 pint_t pc = (pint_t)this->getReg(UNW_REG_IP);
Ranjeet Singh421231a2017-03-31 15:28:06 +00001839#if defined(_LIBUNWIND_ARM_EHABI)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001840 // Remove the thumb bit so the IP represents the actual instruction address.
1841 // This matches the behaviour of _Unwind_GetIP on arm.
1842 pc &= (pint_t)~0x1;
1843#endif
1844
1845 // If the last line of a function is a "throw" the compiler sometimes
1846 // emits no instructions after the call to __cxa_throw. This means
1847 // the return address is actually the start of the next function.
1848 // To disambiguate this, back up the pc when we know it is a return
1849 // address.
1850 if (isReturnAddress)
1851 --pc;
1852
1853 // Ask address space object to find unwind sections for this pc.
1854 UnwindInfoSections sects;
1855 if (_addressSpace.findUnwindSections(pc, sects)) {
Ranjeet Singh421231a2017-03-31 15:28:06 +00001856#if defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001857 // If there is a compact unwind encoding table, look there first.
1858 if (sects.compact_unwind_section != 0) {
1859 if (this->getInfoFromCompactEncodingSection(pc, sects)) {
Ranjeet Singh421231a2017-03-31 15:28:06 +00001860 #if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001861 // Found info in table, done unless encoding says to use dwarf.
1862 uint32_t dwarfOffset;
1863 if ((sects.dwarf_section != 0) && compactSaysUseDwarf(&dwarfOffset)) {
1864 if (this->getInfoFromDwarfSection(pc, sects, dwarfOffset)) {
1865 // found info in dwarf, done
1866 return;
1867 }
1868 }
1869 #endif
1870 // If unwind table has entry, but entry says there is no unwind info,
1871 // record that we have no unwind info.
1872 if (_info.format == 0)
1873 _unwindInfoMissing = true;
1874 return;
1875 }
1876 }
Ranjeet Singh421231a2017-03-31 15:28:06 +00001877#endif // defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001878
Charles Davisfa2e6202018-08-30 21:29:00 +00001879#if defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1880 // If there is SEH unwind info, look there next.
1881 if (this->getInfoFromSEH(pc))
1882 return;
1883#endif
1884
Ranjeet Singh421231a2017-03-31 15:28:06 +00001885#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001886 // If there is dwarf unwind info, look there next.
1887 if (sects.dwarf_section != 0) {
1888 if (this->getInfoFromDwarfSection(pc, sects)) {
1889 // found info in dwarf, done
1890 return;
1891 }
1892 }
1893#endif
1894
Ranjeet Singh421231a2017-03-31 15:28:06 +00001895#if defined(_LIBUNWIND_ARM_EHABI)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001896 // If there is ARM EHABI unwind info, look there next.
1897 if (sects.arm_section != 0 && this->getInfoFromEHABISection(pc, sects))
1898 return;
1899#endif
1900 }
1901
Ranjeet Singh421231a2017-03-31 15:28:06 +00001902#if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001903 // There is no static unwind info for this pc. Look to see if an FDE was
1904 // dynamically registered for it.
1905 pint_t cachedFDE = DwarfFDECache<A>::findFDE(0, pc);
1906 if (cachedFDE != 0) {
1907 CFI_Parser<LocalAddressSpace>::FDE_Info fdeInfo;
1908 CFI_Parser<LocalAddressSpace>::CIE_Info cieInfo;
1909 const char *msg = CFI_Parser<A>::decodeFDE(_addressSpace,
1910 cachedFDE, &fdeInfo, &cieInfo);
1911 if (msg == NULL) {
1912 typename CFI_Parser<A>::PrologInfo prolog;
1913 if (CFI_Parser<A>::parseFDEInstructions(_addressSpace, fdeInfo, cieInfo,
1914 pc, &prolog)) {
1915 // save off parsed FDE info
1916 _info.start_ip = fdeInfo.pcStart;
1917 _info.end_ip = fdeInfo.pcEnd;
1918 _info.lsda = fdeInfo.lsda;
1919 _info.handler = cieInfo.personality;
1920 _info.gp = prolog.spExtraArgSize;
1921 // Some frameless functions need SP
1922 // altered when resuming in function.
1923 _info.flags = 0;
1924 _info.format = dwarfEncoding();
1925 _info.unwind_info = fdeInfo.fdeStart;
1926 _info.unwind_info_size = (uint32_t)fdeInfo.fdeLength;
1927 _info.extra = 0;
1928 return;
1929 }
1930 }
1931 }
1932
1933 // Lastly, ask AddressSpace object about platform specific ways to locate
1934 // other FDEs.
1935 pint_t fde;
1936 if (_addressSpace.findOtherFDE(pc, fde)) {
1937 CFI_Parser<LocalAddressSpace>::FDE_Info fdeInfo;
1938 CFI_Parser<LocalAddressSpace>::CIE_Info cieInfo;
1939 if (!CFI_Parser<A>::decodeFDE(_addressSpace, fde, &fdeInfo, &cieInfo)) {
1940 // Double check this FDE is for a function that includes the pc.
1941 if ((fdeInfo.pcStart <= pc) && (pc < fdeInfo.pcEnd)) {
1942 typename CFI_Parser<A>::PrologInfo prolog;
1943 if (CFI_Parser<A>::parseFDEInstructions(_addressSpace, fdeInfo,
1944 cieInfo, pc, &prolog)) {
1945 // save off parsed FDE info
1946 _info.start_ip = fdeInfo.pcStart;
1947 _info.end_ip = fdeInfo.pcEnd;
1948 _info.lsda = fdeInfo.lsda;
1949 _info.handler = cieInfo.personality;
1950 _info.gp = prolog.spExtraArgSize;
1951 _info.flags = 0;
1952 _info.format = dwarfEncoding();
1953 _info.unwind_info = fdeInfo.fdeStart;
1954 _info.unwind_info_size = (uint32_t)fdeInfo.fdeLength;
1955 _info.extra = 0;
1956 return;
1957 }
1958 }
1959 }
1960 }
Ranjeet Singh421231a2017-03-31 15:28:06 +00001961#endif // #if defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001962
1963 // no unwind info, flag that we can't reliably unwind
1964 _unwindInfoMissing = true;
1965}
1966
1967template <typename A, typename R>
1968int UnwindCursor<A, R>::step() {
1969 // Bottom of stack is defined is when unwind info cannot be found.
1970 if (_unwindInfoMissing)
1971 return UNW_STEP_END;
1972
1973 // Use unwinding info to modify register set as if function returned.
1974 int result;
Ranjeet Singh421231a2017-03-31 15:28:06 +00001975#if defined(_LIBUNWIND_SUPPORT_COMPACT_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001976 result = this->stepWithCompactEncoding();
Charles Davisfa2e6202018-08-30 21:29:00 +00001977#elif defined(_LIBUNWIND_SUPPORT_SEH_UNWIND)
1978 result = this->stepWithSEHData();
Ranjeet Singh421231a2017-03-31 15:28:06 +00001979#elif defined(_LIBUNWIND_SUPPORT_DWARF_UNWIND)
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001980 result = this->stepWithDwarfFDE();
Ranjeet Singh421231a2017-03-31 15:28:06 +00001981#elif defined(_LIBUNWIND_ARM_EHABI)
Logan Chiena54f0962015-05-29 15:33:38 +00001982 result = this->stepWithEHABI();
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001983#else
1984 #error Need _LIBUNWIND_SUPPORT_COMPACT_UNWIND or \
Charles Davisfa2e6202018-08-30 21:29:00 +00001985 _LIBUNWIND_SUPPORT_SEH_UNWIND or \
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001986 _LIBUNWIND_SUPPORT_DWARF_UNWIND or \
Logan Chien06b0c7a2015-07-19 15:23:10 +00001987 _LIBUNWIND_ARM_EHABI
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001988#endif
1989
1990 // update info based on new PC
1991 if (result == UNW_STEP_SUCCESS) {
1992 this->setInfoBasedOnIPRegister(true);
1993 if (_unwindInfoMissing)
1994 return UNW_STEP_END;
Saleem Abdulrasool17552662015-04-24 19:39:17 +00001995 }
1996
1997 return result;
1998}
1999
2000template <typename A, typename R>
2001void UnwindCursor<A, R>::getInfo(unw_proc_info_t *info) {
2002 *info = _info;
2003}
2004
2005template <typename A, typename R>
2006bool UnwindCursor<A, R>::getFunctionName(char *buf, size_t bufLen,
2007 unw_word_t *offset) {
2008 return _addressSpace.findFunctionName((pint_t)this->getReg(UNW_REG_IP),
2009 buf, bufLen, offset);
2010}
2011
2012} // namespace libunwind
2013
2014#endif // __UNWINDCURSOR_HPP__