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Chris Lattner30fdc8d2010-06-08 16:52:24 +00001//===-- DWARFCallFrameInfo.cpp ----------------------------------*- 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
11// C Includes
12// C++ Includes
13#include <list>
14
Jason Molendae6194f12010-10-26 12:01:35 +000015#include "lldb/Core/Log.h"
Jason Molendafbcb7f22010-09-10 07:49:16 +000016#include "lldb/Core/Section.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000017#include "lldb/Core/ArchSpec.h"
18#include "lldb/Core/Module.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000019#include "lldb/Core/Section.h"
Jason Molenda74303822013-03-20 21:57:42 +000020#include "lldb/Core/Timer.h"
Greg Claytone38a5ed2012-01-05 03:57:59 +000021#include "lldb/Host/Host.h"
22#include "lldb/Symbol/DWARFCallFrameInfo.h"
23#include "lldb/Symbol/ObjectFile.h"
Jason Molendafbcb7f22010-09-10 07:49:16 +000024#include "lldb/Symbol/UnwindPlan.h"
Greg Claytone38a5ed2012-01-05 03:57:59 +000025#include "lldb/Target/RegisterContext.h"
26#include "lldb/Target/Thread.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000027
28using namespace lldb;
29using namespace lldb_private;
30
Greg Claytonc9660542012-02-05 02:38:54 +000031DWARFCallFrameInfo::DWARFCallFrameInfo(ObjectFile& objfile, SectionSP& section_sp, lldb::RegisterKind reg_kind, bool is_eh_frame) :
Chris Lattner30fdc8d2010-06-08 16:52:24 +000032 m_objfile (objfile),
Greg Claytonc9660542012-02-05 02:38:54 +000033 m_section_sp (section_sp),
Jason Molendafbcb7f22010-09-10 07:49:16 +000034 m_reg_kind (reg_kind), // The flavor of registers that the CFI data uses (enum RegisterKind)
Stephen Wilson71c21d12011-04-11 19:41:40 +000035 m_flags (),
Chris Lattner30fdc8d2010-06-08 16:52:24 +000036 m_cie_map (),
Jason Molendafbcb7f22010-09-10 07:49:16 +000037 m_cfi_data (),
38 m_cfi_data_initialized (false),
39 m_fde_index (),
40 m_fde_index_initialized (false),
Stephen Wilson71c21d12011-04-11 19:41:40 +000041 m_is_eh_frame (is_eh_frame)
Chris Lattner30fdc8d2010-06-08 16:52:24 +000042{
Chris Lattner30fdc8d2010-06-08 16:52:24 +000043}
44
45DWARFCallFrameInfo::~DWARFCallFrameInfo()
46{
47}
48
Jason Molendafbcb7f22010-09-10 07:49:16 +000049
Chris Lattner30fdc8d2010-06-08 16:52:24 +000050bool
Jason Molenda74303822013-03-20 21:57:42 +000051DWARFCallFrameInfo::GetUnwindPlan (Address addr, UnwindPlan& unwind_plan)
52{
53 FDEEntryMap::Entry fde_entry;
54
55 // Make sure that the Address we're searching for is the same object file
56 // as this DWARFCallFrameInfo, we only store File offsets in m_fde_index.
57 ModuleSP module_sp = addr.GetModule();
Ed Masted4612ad2014-04-20 13:17:36 +000058 if (module_sp.get() == nullptr || module_sp->GetObjectFile() == nullptr || module_sp->GetObjectFile() != &m_objfile)
Jason Molenda74303822013-03-20 21:57:42 +000059 return false;
60
61 if (GetFDEEntryByFileAddress (addr.GetFileAddress(), fde_entry) == false)
62 return false;
63 return FDEToUnwindPlan (fde_entry.data, addr, unwind_plan);
64}
65
66bool
Jason Molendafbcb7f22010-09-10 07:49:16 +000067DWARFCallFrameInfo::GetAddressRange (Address addr, AddressRange &range)
Chris Lattner30fdc8d2010-06-08 16:52:24 +000068{
Jason Molenda74303822013-03-20 21:57:42 +000069
70 // Make sure that the Address we're searching for is the same object file
71 // as this DWARFCallFrameInfo, we only store File offsets in m_fde_index.
72 ModuleSP module_sp = addr.GetModule();
Ed Masted4612ad2014-04-20 13:17:36 +000073 if (module_sp.get() == nullptr || module_sp->GetObjectFile() == nullptr || module_sp->GetObjectFile() != &m_objfile)
Jason Molendafbcb7f22010-09-10 07:49:16 +000074 return false;
Jason Molenda74303822013-03-20 21:57:42 +000075
Ed Masted4612ad2014-04-20 13:17:36 +000076 if (m_section_sp.get() == nullptr || m_section_sp->IsEncrypted())
Jason Molenda74303822013-03-20 21:57:42 +000077 return false;
78 GetFDEIndex();
79 FDEEntryMap::Entry *fde_entry = m_fde_index.FindEntryThatContains (addr.GetFileAddress());
80 if (!fde_entry)
81 return false;
82
83 range = AddressRange(fde_entry->base, fde_entry->size, m_objfile.GetSectionList());
Jason Molendafbcb7f22010-09-10 07:49:16 +000084 return true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +000085}
86
Jason Molendafbcb7f22010-09-10 07:49:16 +000087bool
Jason Molenda74303822013-03-20 21:57:42 +000088DWARFCallFrameInfo::GetFDEEntryByFileAddress (addr_t file_addr, FDEEntryMap::Entry &fde_entry)
Chris Lattner30fdc8d2010-06-08 16:52:24 +000089{
Ed Masted4612ad2014-04-20 13:17:36 +000090 if (m_section_sp.get() == nullptr || m_section_sp->IsEncrypted())
Jason Molendafbcb7f22010-09-10 07:49:16 +000091 return false;
Jason Molenda74303822013-03-20 21:57:42 +000092
Jason Molendafbcb7f22010-09-10 07:49:16 +000093 GetFDEIndex();
94
Jason Molenda74303822013-03-20 21:57:42 +000095 if (m_fde_index.IsEmpty())
Jason Molendafbcb7f22010-09-10 07:49:16 +000096 return false;
97
Jason Molenda74303822013-03-20 21:57:42 +000098 FDEEntryMap::Entry *fde = m_fde_index.FindEntryThatContains (file_addr);
Jason Molendafbcb7f22010-09-10 07:49:16 +000099
Ed Masted4612ad2014-04-20 13:17:36 +0000100 if (fde == nullptr)
Jason Molenda74303822013-03-20 21:57:42 +0000101 return false;
102
103 fde_entry = *fde;
104 return true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000105}
106
Jason Molenda5635f772013-03-21 03:36:01 +0000107void
108DWARFCallFrameInfo::GetFunctionAddressAndSizeVector (FunctionAddressAndSizeVector &function_info)
109{
110 GetFDEIndex();
111 const size_t count = m_fde_index.GetSize();
Jason Molendaee7593f2013-03-22 22:43:14 +0000112 function_info.Clear();
Jason Molendac1946cd2013-03-22 23:42:09 +0000113 if (count > 0)
114 function_info.Reserve(count);
Jason Molenda5635f772013-03-21 03:36:01 +0000115 for (size_t i = 0; i < count; ++i)
116 {
117 const FDEEntryMap::Entry *func_offset_data_entry = m_fde_index.GetEntryAtIndex (i);
118 if (func_offset_data_entry)
119 {
120 FunctionAddressAndSizeVector::Entry function_offset_entry (func_offset_data_entry->base, func_offset_data_entry->size);
121 function_info.Append (function_offset_entry);
122 }
123 }
124}
125
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000126const DWARFCallFrameInfo::CIE*
127DWARFCallFrameInfo::GetCIE(dw_offset_t cie_offset)
128{
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000129 cie_map_t::iterator pos = m_cie_map.find(cie_offset);
130
131 if (pos != m_cie_map.end())
132 {
133 // Parse and cache the CIE
Ed Masted4612ad2014-04-20 13:17:36 +0000134 if (pos->second.get() == nullptr)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000135 pos->second = ParseCIE (cie_offset);
136
137 return pos->second.get();
138 }
Ed Masted4612ad2014-04-20 13:17:36 +0000139 return nullptr;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000140}
141
Jason Molendafbcb7f22010-09-10 07:49:16 +0000142DWARFCallFrameInfo::CIESP
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000143DWARFCallFrameInfo::ParseCIE (const dw_offset_t cie_offset)
144{
Jason Molendafbcb7f22010-09-10 07:49:16 +0000145 CIESP cie_sp(new CIE(cie_offset));
Greg Claytonc7bece562013-01-25 18:06:21 +0000146 lldb::offset_t offset = cie_offset;
Jason Molendafbcb7f22010-09-10 07:49:16 +0000147 if (m_cfi_data_initialized == false)
Greg Claytonf97c5212011-12-29 00:05:26 +0000148 GetCFIData();
Todd Fiala1767e112014-08-25 21:39:30 +0000149 uint32_t length = m_cfi_data.GetU32(&offset);
150 dw_offset_t cie_id, end_offset;
151 bool is_64bit = (length == UINT32_MAX);
152 if (is_64bit) {
153 length = m_cfi_data.GetU64(&offset);
154 cie_id = m_cfi_data.GetU64(&offset);
155 end_offset = cie_offset + length + 12;
156 } else {
157 cie_id = m_cfi_data.GetU32(&offset);
158 end_offset = cie_offset + length + 4;
159 }
Greg Claytonc7bece562013-01-25 18:06:21 +0000160 if (length > 0 && ((!m_is_eh_frame && cie_id == UINT32_MAX) || (m_is_eh_frame && cie_id == 0ul)))
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000161 {
162 size_t i;
163 // cie.offset = cie_offset;
164 // cie.length = length;
165 // cie.cieID = cieID;
Ashok Thirumurthi6e264d32013-07-29 16:05:11 +0000166 cie_sp->ptr_encoding = DW_EH_PE_absptr; // default
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000167 cie_sp->version = m_cfi_data.GetU8(&offset);
168
169 for (i=0; i<CFI_AUG_MAX_SIZE; ++i)
170 {
171 cie_sp->augmentation[i] = m_cfi_data.GetU8(&offset);
172 if (cie_sp->augmentation[i] == '\0')
173 {
174 // Zero out remaining bytes in augmentation string
175 for (size_t j = i+1; j<CFI_AUG_MAX_SIZE; ++j)
176 cie_sp->augmentation[j] = '\0';
177
178 break;
179 }
180 }
181
182 if (i == CFI_AUG_MAX_SIZE && cie_sp->augmentation[CFI_AUG_MAX_SIZE-1] != '\0')
183 {
Greg Claytone38a5ed2012-01-05 03:57:59 +0000184 Host::SystemLog (Host::eSystemLogError, "CIE parse error: CIE augmentation string was too large for the fixed sized buffer of %d bytes.\n", CFI_AUG_MAX_SIZE);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000185 return cie_sp;
186 }
187 cie_sp->code_align = (uint32_t)m_cfi_data.GetULEB128(&offset);
188 cie_sp->data_align = (int32_t)m_cfi_data.GetSLEB128(&offset);
189 cie_sp->return_addr_reg_num = m_cfi_data.GetU8(&offset);
190
191 if (cie_sp->augmentation[0])
192 {
193 // Get the length of the eh_frame augmentation data
194 // which starts with a ULEB128 length in bytes
195 const size_t aug_data_len = (size_t)m_cfi_data.GetULEB128(&offset);
196 const size_t aug_data_end = offset + aug_data_len;
197 const size_t aug_str_len = strlen(cie_sp->augmentation);
198 // A 'z' may be present as the first character of the string.
199 // If present, the Augmentation Data field shall be present.
Bruce Mitchener58ef3912015-06-18 05:27:05 +0000200 // The contents of the Augmentation Data shall be interpreted
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000201 // according to other characters in the Augmentation String.
202 if (cie_sp->augmentation[0] == 'z')
203 {
204 // Extract the Augmentation Data
205 size_t aug_str_idx = 0;
206 for (aug_str_idx = 1; aug_str_idx < aug_str_len; aug_str_idx++)
207 {
208 char aug = cie_sp->augmentation[aug_str_idx];
209 switch (aug)
210 {
211 case 'L':
212 // Indicates the presence of one argument in the
213 // Augmentation Data of the CIE, and a corresponding
214 // argument in the Augmentation Data of the FDE. The
215 // argument in the Augmentation Data of the CIE is
216 // 1-byte and represents the pointer encoding used
217 // for the argument in the Augmentation Data of the
218 // FDE, which is the address of a language-specific
219 // data area (LSDA). The size of the LSDA pointer is
220 // specified by the pointer encoding used.
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000221 cie_sp->lsda_addr_encoding = m_cfi_data.GetU8(&offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000222 break;
223
224 case 'P':
225 // Indicates the presence of two arguments in the
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000226 // Augmentation Data of the CIE. The first argument
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000227 // is 1-byte and represents the pointer encoding
228 // used for the second argument, which is the
229 // address of a personality routine handler. The
230 // size of the personality routine pointer is
231 // specified by the pointer encoding used.
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000232 //
233 // The address of the personality function will
234 // be stored at this location. Pre-execution, it
235 // will be all zero's so don't read it until we're
236 // trying to do an unwind & the reloc has been
237 // resolved.
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000238 {
239 uint8_t arg_ptr_encoding = m_cfi_data.GetU8(&offset);
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000240 const lldb::addr_t pc_rel_addr = m_section_sp->GetFileAddress();
241 cie_sp->personality_loc = m_cfi_data.GetGNUEHPointer(&offset, arg_ptr_encoding, pc_rel_addr, LLDB_INVALID_ADDRESS, LLDB_INVALID_ADDRESS);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000242 }
243 break;
244
245 case 'R':
246 // A 'R' may be present at any position after the
247 // first character of the string. The Augmentation
248 // Data shall include a 1 byte argument that
249 // represents the pointer encoding for the address
250 // pointers used in the FDE.
Ashok Thirumurthi6e264d32013-07-29 16:05:11 +0000251 // Example: 0x1B == DW_EH_PE_pcrel | DW_EH_PE_sdata4
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000252 cie_sp->ptr_encoding = m_cfi_data.GetU8(&offset);
253 break;
254 }
255 }
256 }
257 else if (strcmp(cie_sp->augmentation, "eh") == 0)
258 {
259 // If the Augmentation string has the value "eh", then
260 // the EH Data field shall be present
261 }
262
263 // Set the offset to be the end of the augmentation data just in case
264 // we didn't understand any of the data.
265 offset = (uint32_t)aug_data_end;
266 }
267
268 if (end_offset > offset)
269 {
270 cie_sp->inst_offset = offset;
271 cie_sp->inst_length = end_offset - offset;
272 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000273 while (offset < end_offset)
274 {
275 uint8_t inst = m_cfi_data.GetU8(&offset);
276 uint8_t primary_opcode = inst & 0xC0;
277 uint8_t extended_opcode = inst & 0x3F;
278
279 if (extended_opcode == DW_CFA_def_cfa)
280 {
281 // Takes two unsigned LEB128 operands representing a register
282 // number and a (non-factored) offset. The required action
283 // is to define the current CFA rule to use the provided
284 // register and offset.
285 uint32_t reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
286 int op_offset = (int32_t)m_cfi_data.GetULEB128(&offset);
Pavel Labathab970f52015-02-23 10:19:16 +0000287 cie_sp->initial_row.GetCFAValue().SetIsRegisterPlusOffset (reg_num, op_offset);
Jason Molendafbcb7f22010-09-10 07:49:16 +0000288 continue;
289 }
Pavel Labath701db362015-04-22 09:47:21 +0000290 if (extended_opcode == DW_CFA_def_cfa_sf)
291 {
292 // The DW_CFA_def_cfa_sf instruction takes two operands: an unsigned LEB128 value
293 // representing a register number and a signed LEB128 factored offset. This
294 // instruction is identical to DW_CFA_def_cfa except that the second operand is
295 // signed and factored.
296 // The resulting offset is factored_offset * data_alignment_factor.
297 uint32_t reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
298 int op_offset = (int32_t)m_cfi_data.GetSLEB128(&offset);
299 cie_sp->initial_row.GetCFAValue().SetIsRegisterPlusOffset (
300 reg_num, op_offset * cie_sp->data_align);
301 continue;
302 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000303 if (primary_opcode == DW_CFA_offset)
304 {
305 // 0x80 - high 2 bits are 0x2, lower 6 bits are register.
306 // Takes two arguments: an unsigned LEB128 constant representing a
307 // factored offset and a register number. The required action is to
308 // change the rule for the register indicated by the register number
309 // to be an offset(N) rule with a value of
310 // (N = factored offset * data_align).
311 uint32_t reg_num = extended_opcode;
312 int op_offset = (int32_t)m_cfi_data.GetULEB128(&offset) * cie_sp->data_align;
313 UnwindPlan::Row::RegisterLocation reg_location;
314 reg_location.SetAtCFAPlusOffset(op_offset);
315 cie_sp->initial_row.SetRegisterInfo (reg_num, reg_location);
316 continue;
317 }
318 if (extended_opcode == DW_CFA_nop)
319 {
320 continue;
321 }
322 break; // Stop if we hit an unrecognized opcode
323 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000324 }
325
326 return cie_sp;
327}
328
Greg Claytonf97c5212011-12-29 00:05:26 +0000329void
330DWARFCallFrameInfo::GetCFIData()
331{
332 if (m_cfi_data_initialized == false)
333 {
Greg Clayton5160ce52013-03-27 23:08:40 +0000334 Log *log(GetLogIfAllCategoriesSet (LIBLLDB_LOG_UNWIND));
Greg Claytonf97c5212011-12-29 00:05:26 +0000335 if (log)
Greg Clayton5160ce52013-03-27 23:08:40 +0000336 m_objfile.GetModule()->LogMessage(log, "Reading EH frame info");
Greg Claytonc9660542012-02-05 02:38:54 +0000337 m_objfile.ReadSectionData (m_section_sp.get(), m_cfi_data);
Greg Claytonf97c5212011-12-29 00:05:26 +0000338 m_cfi_data_initialized = true;
339 }
340}
Jason Molendafbcb7f22010-09-10 07:49:16 +0000341// Scan through the eh_frame or debug_frame section looking for FDEs and noting the start/end addresses
342// of the functions and a pointer back to the function's FDE for later expansion.
343// Internalize CIEs as we come across them.
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000344
Jason Molendafbcb7f22010-09-10 07:49:16 +0000345void
346DWARFCallFrameInfo::GetFDEIndex ()
347{
Ed Masted4612ad2014-04-20 13:17:36 +0000348 if (m_section_sp.get() == nullptr || m_section_sp->IsEncrypted())
Jason Molendafbcb7f22010-09-10 07:49:16 +0000349 return;
Sean Callanan7d69f122012-07-12 01:11:40 +0000350
Jason Molendafbcb7f22010-09-10 07:49:16 +0000351 if (m_fde_index_initialized)
352 return;
Sean Callanan7d69f122012-07-12 01:11:40 +0000353
354 Mutex::Locker locker(m_fde_index_mutex);
355
356 if (m_fde_index_initialized) // if two threads hit the locker
357 return;
Jason Molendae6194f12010-10-26 12:01:35 +0000358
Jason Molenda74303822013-03-20 21:57:42 +0000359 Timer scoped_timer (__PRETTY_FUNCTION__, "%s - %s", __PRETTY_FUNCTION__, m_objfile.GetFileSpec().GetFilename().AsCString(""));
360
Greg Claytonc7bece562013-01-25 18:06:21 +0000361 lldb::offset_t offset = 0;
Jason Molendafbcb7f22010-09-10 07:49:16 +0000362 if (m_cfi_data_initialized == false)
Greg Claytonf97c5212011-12-29 00:05:26 +0000363 GetCFIData();
Jason Molendafbcb7f22010-09-10 07:49:16 +0000364 while (m_cfi_data.ValidOffsetForDataOfSize (offset, 8))
365 {
Greg Clayton73bf5db2011-06-17 01:22:15 +0000366 const dw_offset_t current_entry = offset;
Todd Fiala1767e112014-08-25 21:39:30 +0000367 dw_offset_t cie_id, next_entry, cie_offset;
Jason Molendafbcb7f22010-09-10 07:49:16 +0000368 uint32_t len = m_cfi_data.GetU32 (&offset);
Todd Fiala1767e112014-08-25 21:39:30 +0000369 bool is_64bit = (len == UINT32_MAX);
370 if (is_64bit) {
371 len = m_cfi_data.GetU64 (&offset);
372 cie_id = m_cfi_data.GetU64 (&offset);
373 next_entry = current_entry + len + 12;
374 cie_offset = current_entry + 12 - cie_id;
375 } else {
376 cie_id = m_cfi_data.GetU32 (&offset);
377 next_entry = current_entry + len + 4;
378 cie_offset = current_entry + 4 - cie_id;
379 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000380
Jason Molendac48ef342015-04-02 04:35:32 +0000381 if (next_entry > m_cfi_data.GetByteSize() + 1)
382 {
383 Host::SystemLog (Host::eSystemLogError,
384 "error: Invalid fde/cie next entry offset of 0x%x found in cie/fde at 0x%x\n",
385 next_entry,
386 current_entry);
387 // Don't trust anything in this eh_frame section if we find blatently
388 // invalid data.
389 m_fde_index.Clear();
390 m_fde_index_initialized = true;
391 return;
392 }
393 if (cie_offset > m_cfi_data.GetByteSize())
394 {
395 Host::SystemLog (Host::eSystemLogError,
396 "error: Invalid cie offset of 0x%x found in cie/fde at 0x%x\n",
397 cie_offset,
398 current_entry);
399 // Don't trust anything in this eh_frame section if we find blatently
400 // invalid data.
401 m_fde_index.Clear();
402 m_fde_index_initialized = true;
403 return;
404 }
405
Virgile Bello8452cb52013-08-25 13:24:48 +0000406 if (cie_id == 0 || cie_id == UINT32_MAX || len == 0)
Jason Molendafbcb7f22010-09-10 07:49:16 +0000407 {
408 m_cie_map[current_entry] = ParseCIE (current_entry);
409 offset = next_entry;
410 continue;
411 }
412
Greg Clayton73bf5db2011-06-17 01:22:15 +0000413 const CIE *cie = GetCIE (cie_offset);
414 if (cie)
415 {
Greg Claytonc9660542012-02-05 02:38:54 +0000416 const lldb::addr_t pc_rel_addr = m_section_sp->GetFileAddress();
Greg Clayton73bf5db2011-06-17 01:22:15 +0000417 const lldb::addr_t text_addr = LLDB_INVALID_ADDRESS;
418 const lldb::addr_t data_addr = LLDB_INVALID_ADDRESS;
Jason Molendafbcb7f22010-09-10 07:49:16 +0000419
Greg Clayton73bf5db2011-06-17 01:22:15 +0000420 lldb::addr_t addr = m_cfi_data.GetGNUEHPointer(&offset, cie->ptr_encoding, pc_rel_addr, text_addr, data_addr);
421 lldb::addr_t length = m_cfi_data.GetGNUEHPointer(&offset, cie->ptr_encoding & DW_EH_PE_MASK_ENCODING, pc_rel_addr, text_addr, data_addr);
Jason Molenda74303822013-03-20 21:57:42 +0000422 FDEEntryMap::Entry fde (addr, length, current_entry);
423 m_fde_index.Append(fde);
Greg Clayton73bf5db2011-06-17 01:22:15 +0000424 }
425 else
426 {
Greg Claytone38a5ed2012-01-05 03:57:59 +0000427 Host::SystemLog (Host::eSystemLogError,
428 "error: unable to find CIE at 0x%8.8x for cie_id = 0x%8.8x for entry at 0x%8.8x.\n",
429 cie_offset,
430 cie_id,
431 current_entry);
Greg Clayton73bf5db2011-06-17 01:22:15 +0000432 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000433 offset = next_entry;
434 }
Jason Molenda74303822013-03-20 21:57:42 +0000435 m_fde_index.Sort();
Jason Molendafbcb7f22010-09-10 07:49:16 +0000436 m_fde_index_initialized = true;
437}
438
439bool
Greg Claytonc7bece562013-01-25 18:06:21 +0000440DWARFCallFrameInfo::FDEToUnwindPlan (dw_offset_t dwarf_offset, Address startaddr, UnwindPlan& unwind_plan)
Jason Molendafbcb7f22010-09-10 07:49:16 +0000441{
Greg Claytonc7bece562013-01-25 18:06:21 +0000442 lldb::offset_t offset = dwarf_offset;
443 lldb::offset_t current_entry = offset;
Jason Molendafbcb7f22010-09-10 07:49:16 +0000444
Ed Masted4612ad2014-04-20 13:17:36 +0000445 if (m_section_sp.get() == nullptr || m_section_sp->IsEncrypted())
Jason Molendafbcb7f22010-09-10 07:49:16 +0000446 return false;
447
448 if (m_cfi_data_initialized == false)
Greg Claytonf97c5212011-12-29 00:05:26 +0000449 GetCFIData();
Jason Molendafbcb7f22010-09-10 07:49:16 +0000450
451 uint32_t length = m_cfi_data.GetU32 (&offset);
Todd Fiala1767e112014-08-25 21:39:30 +0000452 dw_offset_t cie_offset;
453 bool is_64bit = (length == UINT32_MAX);
454 if (is_64bit) {
455 length = m_cfi_data.GetU64 (&offset);
456 cie_offset = m_cfi_data.GetU64 (&offset);
457 } else {
458 cie_offset = m_cfi_data.GetU32 (&offset);
459 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000460
461 assert (cie_offset != 0 && cie_offset != UINT32_MAX);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000462
463 // Translate the CIE_id from the eh_frame format, which
464 // is relative to the FDE offset, into a __eh_frame section
465 // offset
Jason Molendafbcb7f22010-09-10 07:49:16 +0000466 if (m_is_eh_frame)
Jason Molendaab4f1922010-10-25 11:12:07 +0000467 {
468 unwind_plan.SetSourceName ("eh_frame CFI");
Todd Fiala1767e112014-08-25 21:39:30 +0000469 cie_offset = current_entry + (is_64bit ? 12 : 4) - cie_offset;
Jason Molenda60f0bd42012-10-26 06:08:58 +0000470 unwind_plan.SetUnwindPlanValidAtAllInstructions (eLazyBoolNo);
Jason Molendaab4f1922010-10-25 11:12:07 +0000471 }
472 else
473 {
474 unwind_plan.SetSourceName ("DWARF CFI");
Jason Molenda60f0bd42012-10-26 06:08:58 +0000475 // In theory the debug_frame info should be valid at all call sites
476 // ("asynchronous unwind info" as it is sometimes called) but in practice
477 // gcc et al all emit call frame info for the prologue and call sites, but
478 // not for the epilogue or all the other locations during the function reliably.
479 unwind_plan.SetUnwindPlanValidAtAllInstructions (eLazyBoolNo);
Jason Molendaab4f1922010-10-25 11:12:07 +0000480 }
Jason Molenda60f0bd42012-10-26 06:08:58 +0000481 unwind_plan.SetSourcedFromCompiler (eLazyBoolYes);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000482
Jason Molendafbcb7f22010-09-10 07:49:16 +0000483 const CIE *cie = GetCIE (cie_offset);
Ed Masted4612ad2014-04-20 13:17:36 +0000484 assert (cie != nullptr);
Jason Molendafbcb7f22010-09-10 07:49:16 +0000485
Todd Fiala1767e112014-08-25 21:39:30 +0000486 const dw_offset_t end_offset = current_entry + length + (is_64bit ? 12 : 4);
Jason Molendafbcb7f22010-09-10 07:49:16 +0000487
Greg Claytonc9660542012-02-05 02:38:54 +0000488 const lldb::addr_t pc_rel_addr = m_section_sp->GetFileAddress();
Jason Molendafbcb7f22010-09-10 07:49:16 +0000489 const lldb::addr_t text_addr = LLDB_INVALID_ADDRESS;
490 const lldb::addr_t data_addr = LLDB_INVALID_ADDRESS;
491 lldb::addr_t range_base = m_cfi_data.GetGNUEHPointer(&offset, cie->ptr_encoding, pc_rel_addr, text_addr, data_addr);
492 lldb::addr_t range_len = m_cfi_data.GetGNUEHPointer(&offset, cie->ptr_encoding & DW_EH_PE_MASK_ENCODING, pc_rel_addr, text_addr, data_addr);
493 AddressRange range (range_base, m_objfile.GetAddressByteSize(), m_objfile.GetSectionList());
494 range.SetByteSize (range_len);
495
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000496 addr_t lsda_data_file_address = LLDB_INVALID_ADDRESS;
497
Jason Molendafbcb7f22010-09-10 07:49:16 +0000498 if (cie->augmentation[0] == 'z')
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000499 {
Jason Molendafbcb7f22010-09-10 07:49:16 +0000500 uint32_t aug_data_len = (uint32_t)m_cfi_data.GetULEB128(&offset);
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000501 if (aug_data_len != 0 && cie->lsda_addr_encoding != DW_EH_PE_omit)
502 {
503 offset_t saved_offset = offset;
504 lsda_data_file_address = m_cfi_data.GetGNUEHPointer(&offset, cie->lsda_addr_encoding, pc_rel_addr, text_addr, data_addr);
505 if (offset - saved_offset != aug_data_len)
506 {
507 // There is more in the augmentation region than we know how to process;
508 // don't read anything.
509 lsda_data_file_address = LLDB_INVALID_ADDRESS;
510 }
511 offset = saved_offset;
512 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000513 offset += aug_data_len;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000514 }
Jason Molendae9c7ecf2014-11-18 02:27:42 +0000515 Address lsda_data;
516 Address personality_function_ptr;
517
518 if (lsda_data_file_address != LLDB_INVALID_ADDRESS && cie->personality_loc != LLDB_INVALID_ADDRESS)
519 {
520 m_objfile.GetModule()->ResolveFileAddress (lsda_data_file_address, lsda_data);
521 m_objfile.GetModule()->ResolveFileAddress (cie->personality_loc, personality_function_ptr);
522 }
523
524 if (lsda_data.IsValid() && personality_function_ptr.IsValid())
525 {
526 unwind_plan.SetLSDAAddress (lsda_data);
527 unwind_plan.SetPersonalityFunctionPtr (personality_function_ptr);
528 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000529
530 uint32_t reg_num = 0;
531 int32_t op_offset = 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000532 uint32_t code_align = cie->code_align;
533 int32_t data_align = cie->data_align;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000534
Jason Molendafbcb7f22010-09-10 07:49:16 +0000535 unwind_plan.SetPlanValidAddressRange (range);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000536 UnwindPlan::Row *cie_initial_row = new UnwindPlan::Row;
537 *cie_initial_row = cie->initial_row;
538 UnwindPlan::RowSP row(cie_initial_row);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000539
Jason Molendafbcb7f22010-09-10 07:49:16 +0000540 unwind_plan.SetRegisterKind (m_reg_kind);
Jason Molenda8eba46c2012-08-18 06:53:34 +0000541 unwind_plan.SetReturnAddressRegister (cie->return_addr_reg_num);
Jason Molendafbcb7f22010-09-10 07:49:16 +0000542
Richard Mittonf70d6042013-09-12 23:38:30 +0000543 std::vector<UnwindPlan::RowSP> stack;
544
Jason Molendafbcb7f22010-09-10 07:49:16 +0000545 UnwindPlan::Row::RegisterLocation reg_location;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000546 while (m_cfi_data.ValidOffset(offset) && offset < end_offset)
547 {
548 uint8_t inst = m_cfi_data.GetU8(&offset);
549 uint8_t primary_opcode = inst & 0xC0;
550 uint8_t extended_opcode = inst & 0x3F;
551
552 if (primary_opcode)
553 {
554 switch (primary_opcode)
555 {
556 case DW_CFA_advance_loc : // (Row Creation Instruction)
557 { // 0x40 - high 2 bits are 0x1, lower 6 bits are delta
558 // takes a single argument that represents a constant delta. The
559 // required action is to create a new table row with a location
560 // value that is computed by taking the current entry's location
561 // value and adding (delta * code_align). All other
562 // values in the new row are initially identical to the current row.
Jason Molendafbcb7f22010-09-10 07:49:16 +0000563 unwind_plan.AppendRow(row);
Jason Molendafa67e872012-07-31 22:42:30 +0000564 UnwindPlan::Row *newrow = new UnwindPlan::Row;
565 *newrow = *row.get();
566 row.reset (newrow);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000567 row->SlideOffset(extended_opcode * code_align);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000568 }
569 break;
570
571 case DW_CFA_offset :
572 { // 0x80 - high 2 bits are 0x2, lower 6 bits are register
573 // takes two arguments: an unsigned LEB128 constant representing a
574 // factored offset and a register number. The required action is to
575 // change the rule for the register indicated by the register number
576 // to be an offset(N) rule with a value of
577 // (N = factored offset * data_align).
578 reg_num = extended_opcode;
579 op_offset = (int32_t)m_cfi_data.GetULEB128(&offset) * data_align;
580 reg_location.SetAtCFAPlusOffset(op_offset);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000581 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000582 }
583 break;
584
585 case DW_CFA_restore :
586 { // 0xC0 - high 2 bits are 0x3, lower 6 bits are register
587 // takes a single argument that represents a register number. The
588 // required action is to change the rule for the indicated register
589 // to the rule assigned it by the initial_instructions in the CIE.
590 reg_num = extended_opcode;
591 // We only keep enough register locations around to
592 // unwind what is in our thread, and these are organized
593 // by the register index in that state, so we need to convert our
Jason Molendafbcb7f22010-09-10 07:49:16 +0000594 // GCC register number from the EH frame info, to a register index
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000595
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000596 if (unwind_plan.IsValidRowIndex(0) && unwind_plan.GetRowAtIndex(0)->GetRegisterInfo(reg_num, reg_location))
597 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000598 }
599 break;
600 }
601 }
602 else
603 {
604 switch (extended_opcode)
605 {
606 case DW_CFA_nop : // 0x0
607 break;
608
609 case DW_CFA_set_loc : // 0x1 (Row Creation Instruction)
610 {
611 // DW_CFA_set_loc takes a single argument that represents an address.
612 // The required action is to create a new table row using the
613 // specified address as the location. All other values in the new row
614 // are initially identical to the current row. The new location value
615 // should always be greater than the current one.
Jason Molendafbcb7f22010-09-10 07:49:16 +0000616 unwind_plan.AppendRow(row);
Jason Molendafa67e872012-07-31 22:42:30 +0000617 UnwindPlan::Row *newrow = new UnwindPlan::Row;
618 *newrow = *row.get();
619 row.reset (newrow);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000620 row->SetOffset(m_cfi_data.GetPointer(&offset) - startaddr.GetFileAddress());
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000621 }
622 break;
623
624 case DW_CFA_advance_loc1 : // 0x2 (Row Creation Instruction)
625 {
626 // takes a single uword argument that represents a constant delta.
627 // This instruction is identical to DW_CFA_advance_loc except for the
628 // encoding and size of the delta argument.
Jason Molendafbcb7f22010-09-10 07:49:16 +0000629 unwind_plan.AppendRow(row);
Jason Molendafa67e872012-07-31 22:42:30 +0000630 UnwindPlan::Row *newrow = new UnwindPlan::Row;
631 *newrow = *row.get();
632 row.reset (newrow);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000633 row->SlideOffset (m_cfi_data.GetU8(&offset) * code_align);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000634 }
635 break;
636
637 case DW_CFA_advance_loc2 : // 0x3 (Row Creation Instruction)
638 {
639 // takes a single uword argument that represents a constant delta.
640 // This instruction is identical to DW_CFA_advance_loc except for the
641 // encoding and size of the delta argument.
Jason Molendafbcb7f22010-09-10 07:49:16 +0000642 unwind_plan.AppendRow(row);
Jason Molendafa67e872012-07-31 22:42:30 +0000643 UnwindPlan::Row *newrow = new UnwindPlan::Row;
644 *newrow = *row.get();
645 row.reset (newrow);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000646 row->SlideOffset (m_cfi_data.GetU16(&offset) * code_align);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000647 }
648 break;
649
650 case DW_CFA_advance_loc4 : // 0x4 (Row Creation Instruction)
651 {
652 // takes a single uword argument that represents a constant delta.
653 // This instruction is identical to DW_CFA_advance_loc except for the
654 // encoding and size of the delta argument.
Jason Molendafbcb7f22010-09-10 07:49:16 +0000655 unwind_plan.AppendRow(row);
Jason Molendafa67e872012-07-31 22:42:30 +0000656 UnwindPlan::Row *newrow = new UnwindPlan::Row;
657 *newrow = *row.get();
658 row.reset (newrow);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000659 row->SlideOffset (m_cfi_data.GetU32(&offset) * code_align);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000660 }
661 break;
662
663 case DW_CFA_offset_extended : // 0x5
664 {
665 // takes two unsigned LEB128 arguments representing a register number
666 // and a factored offset. This instruction is identical to DW_CFA_offset
667 // except for the encoding and size of the register argument.
668 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
669 op_offset = (int32_t)m_cfi_data.GetULEB128(&offset) * data_align;
670 reg_location.SetAtCFAPlusOffset(op_offset);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000671 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000672 }
673 break;
674
675 case DW_CFA_restore_extended : // 0x6
676 {
677 // takes a single unsigned LEB128 argument that represents a register
678 // number. This instruction is identical to DW_CFA_restore except for
679 // the encoding and size of the register argument.
680 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000681 if (unwind_plan.IsValidRowIndex(0) && unwind_plan.GetRowAtIndex(0)->GetRegisterInfo(reg_num, reg_location))
682 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000683 }
684 break;
685
686 case DW_CFA_undefined : // 0x7
687 {
688 // takes a single unsigned LEB128 argument that represents a register
689 // number. The required action is to set the rule for the specified
690 // register to undefined.
691 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
692 reg_location.SetUndefined();
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000693 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000694 }
695 break;
696
697 case DW_CFA_same_value : // 0x8
698 {
699 // takes a single unsigned LEB128 argument that represents a register
700 // number. The required action is to set the rule for the specified
701 // register to same value.
702 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
703 reg_location.SetSame();
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000704 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000705 }
706 break;
707
708 case DW_CFA_register : // 0x9
709 {
710 // takes two unsigned LEB128 arguments representing register numbers.
711 // The required action is to set the rule for the first register to be
712 // the second register.
713
714 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
715 uint32_t other_reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
716 reg_location.SetInRegister(other_reg_num);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000717 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000718 }
719 break;
720
721 case DW_CFA_remember_state : // 0xA
Jason Molendafa67e872012-07-31 22:42:30 +0000722 {
723 // These instructions define a stack of information. Encountering the
724 // DW_CFA_remember_state instruction means to save the rules for every
725 // register on the current row on the stack. Encountering the
726 // DW_CFA_restore_state instruction means to pop the set of rules off
727 // the stack and place them in the current row. (This operation is
728 // useful for compilers that move epilogue code into the body of a
729 // function.)
Richard Mittonf70d6042013-09-12 23:38:30 +0000730 stack.push_back (row);
Jason Molendafa67e872012-07-31 22:42:30 +0000731 UnwindPlan::Row *newrow = new UnwindPlan::Row;
732 *newrow = *row.get();
733 row.reset (newrow);
734 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000735 break;
736
737 case DW_CFA_restore_state : // 0xB
738 // These instructions define a stack of information. Encountering the
739 // DW_CFA_remember_state instruction means to save the rules for every
740 // register on the current row on the stack. Encountering the
741 // DW_CFA_restore_state instruction means to pop the set of rules off
742 // the stack and place them in the current row. (This operation is
743 // useful for compilers that move epilogue code into the body of a
744 // function.)
745 {
Tamas Berghammer49dd6d12015-07-03 09:30:14 +0000746 lldb::addr_t offset = row->GetOffset ();
Richard Mittonf70d6042013-09-12 23:38:30 +0000747 row = stack.back ();
748 stack.pop_back ();
Tamas Berghammer49dd6d12015-07-03 09:30:14 +0000749 row->SetOffset (offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000750 }
751 break;
752
753 case DW_CFA_def_cfa : // 0xC (CFA Definition Instruction)
754 {
755 // Takes two unsigned LEB128 operands representing a register
756 // number and a (non-factored) offset. The required action
757 // is to define the current CFA rule to use the provided
758 // register and offset.
759 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
760 op_offset = (int32_t)m_cfi_data.GetULEB128(&offset);
Pavel Labathab970f52015-02-23 10:19:16 +0000761 row->GetCFAValue().SetIsRegisterPlusOffset (reg_num, op_offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000762 }
763 break;
764
765 case DW_CFA_def_cfa_register : // 0xD (CFA Definition Instruction)
766 {
767 // takes a single unsigned LEB128 argument representing a register
768 // number. The required action is to define the current CFA rule to
769 // use the provided register (but to keep the old offset).
770 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
Pavel Labathab970f52015-02-23 10:19:16 +0000771 row->GetCFAValue().SetIsRegisterPlusOffset (reg_num,
772 row->GetCFAValue().GetOffset());
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000773 }
774 break;
775
776 case DW_CFA_def_cfa_offset : // 0xE (CFA Definition Instruction)
777 {
778 // Takes a single unsigned LEB128 operand representing a
779 // (non-factored) offset. The required action is to define
780 // the current CFA rule to use the provided offset (but
781 // to keep the old register).
782 op_offset = (int32_t)m_cfi_data.GetULEB128(&offset);
Pavel Labathab970f52015-02-23 10:19:16 +0000783 row->GetCFAValue().SetIsRegisterPlusOffset (
784 row->GetCFAValue().GetRegisterNumber(), op_offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000785 }
786 break;
787
788 case DW_CFA_def_cfa_expression : // 0xF (CFA Definition Instruction)
789 {
790 size_t block_len = (size_t)m_cfi_data.GetULEB128(&offset);
Pavel Labathdbb41cf2015-02-23 10:29:01 +0000791 const uint8_t *block_data =
792 static_cast<const uint8_t *>(m_cfi_data.GetData(&offset, block_len));
793 row->GetCFAValue().SetIsDWARFExpression(block_data, block_len);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000794 }
795 break;
796
797 case DW_CFA_expression : // 0x10
798 {
799 // Takes two operands: an unsigned LEB128 value representing
800 // a register number, and a DW_FORM_block value representing a DWARF
801 // expression. The required action is to change the rule for the
802 // register indicated by the register number to be an expression(E)
803 // rule where E is the DWARF expression. That is, the DWARF
804 // expression computes the address. The value of the CFA is
805 // pushed on the DWARF evaluation stack prior to execution of
806 // the DWARF expression.
807 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
808 uint32_t block_len = (uint32_t)m_cfi_data.GetULEB128(&offset);
Vince Harrond7e6a4f2015-05-13 00:25:54 +0000809 const uint8_t *block_data = (const uint8_t *)m_cfi_data.GetData(&offset, block_len);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000810
811 reg_location.SetAtDWARFExpression(block_data, block_len);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000812 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000813 }
814 break;
815
816 case DW_CFA_offset_extended_sf : // 0x11
817 {
818 // takes two operands: an unsigned LEB128 value representing a
819 // register number and a signed LEB128 factored offset. This
820 // instruction is identical to DW_CFA_offset_extended except
821 //that the second operand is signed and factored.
822 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
823 op_offset = (int32_t)m_cfi_data.GetSLEB128(&offset) * data_align;
824 reg_location.SetAtCFAPlusOffset(op_offset);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000825 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000826 }
827 break;
828
829 case DW_CFA_def_cfa_sf : // 0x12 (CFA Definition Instruction)
830 {
831 // Takes two operands: an unsigned LEB128 value representing
832 // a register number and a signed LEB128 factored offset.
833 // This instruction is identical to DW_CFA_def_cfa except
834 // that the second operand is signed and factored.
835 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
836 op_offset = (int32_t)m_cfi_data.GetSLEB128(&offset) * data_align;
Pavel Labathab970f52015-02-23 10:19:16 +0000837 row->GetCFAValue().SetIsRegisterPlusOffset (reg_num, op_offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000838 }
839 break;
840
841 case DW_CFA_def_cfa_offset_sf : // 0x13 (CFA Definition Instruction)
842 {
843 // takes a signed LEB128 operand representing a factored
844 // offset. This instruction is identical to DW_CFA_def_cfa_offset
845 // except that the operand is signed and factored.
846 op_offset = (int32_t)m_cfi_data.GetSLEB128(&offset) * data_align;
Pavel Labathab970f52015-02-23 10:19:16 +0000847 row->GetCFAValue().SetIsRegisterPlusOffset (
848 row->GetCFAValue().GetRegisterNumber(), op_offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000849 }
850 break;
851
852 case DW_CFA_val_expression : // 0x16
853 {
854 // takes two operands: an unsigned LEB128 value representing a register
855 // number, and a DW_FORM_block value representing a DWARF expression.
856 // The required action is to change the rule for the register indicated
857 // by the register number to be a val_expression(E) rule where E is the
858 // DWARF expression. That is, the DWARF expression computes the value of
859 // the given register. The value of the CFA is pushed on the DWARF
860 // evaluation stack prior to execution of the DWARF expression.
861 reg_num = (uint32_t)m_cfi_data.GetULEB128(&offset);
862 uint32_t block_len = (uint32_t)m_cfi_data.GetULEB128(&offset);
Vince Harrond7e6a4f2015-05-13 00:25:54 +0000863 const uint8_t* block_data = (const uint8_t*)m_cfi_data.GetData(&offset, block_len);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000864//#if defined(__i386__) || defined(__x86_64__)
865// // The EH frame info for EIP and RIP contains code that looks for traps to
866// // be a specific type and increments the PC.
867// // For i386:
868// // DW_CFA_val_expression where:
869// // eip = DW_OP_breg6(+28), DW_OP_deref, DW_OP_dup, DW_OP_plus_uconst(0x34),
870// // DW_OP_deref, DW_OP_swap, DW_OP_plus_uconst(0), DW_OP_deref,
871// // DW_OP_dup, DW_OP_lit3, DW_OP_ne, DW_OP_swap, DW_OP_lit4, DW_OP_ne,
872// // DW_OP_and, DW_OP_plus
873// // This basically does a:
874// // eip = ucontenxt.mcontext32->gpr.eip;
875// // if (ucontenxt.mcontext32->exc.trapno != 3 && ucontenxt.mcontext32->exc.trapno != 4)
876// // eip++;
877// //
878// // For x86_64:
879// // DW_CFA_val_expression where:
880// // rip = DW_OP_breg3(+48), DW_OP_deref, DW_OP_dup, DW_OP_plus_uconst(0x90), DW_OP_deref,
881// // DW_OP_swap, DW_OP_plus_uconst(0), DW_OP_deref_size(4), DW_OP_dup, DW_OP_lit3,
882// // DW_OP_ne, DW_OP_swap, DW_OP_lit4, DW_OP_ne, DW_OP_and, DW_OP_plus
883// // This basically does a:
884// // rip = ucontenxt.mcontext64->gpr.rip;
885// // if (ucontenxt.mcontext64->exc.trapno != 3 && ucontenxt.mcontext64->exc.trapno != 4)
886// // rip++;
887// // The trap comparisons and increments are not needed as it hoses up the unwound PC which
888// // is expected to point at least past the instruction that causes the fault/trap. So we
889// // take it out by trimming the expression right at the first "DW_OP_swap" opcodes
890// if (block_data != NULL && thread->GetPCRegNum(Thread::GCC) == reg_num)
891// {
892// if (thread->Is64Bit())
893// {
894// if (block_len > 9 && block_data[8] == DW_OP_swap && block_data[9] == DW_OP_plus_uconst)
895// block_len = 8;
896// }
897// else
898// {
899// if (block_len > 8 && block_data[7] == DW_OP_swap && block_data[8] == DW_OP_plus_uconst)
900// block_len = 7;
901// }
902// }
903//#endif
904 reg_location.SetIsDWARFExpression(block_data, block_len);
Jason Molenda1d42c7b2012-07-14 04:52:53 +0000905 row->SetRegisterInfo (reg_num, reg_location);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000906 }
907 break;
908
909 case DW_CFA_val_offset : // 0x14
910 case DW_CFA_val_offset_sf : // 0x15
911 default:
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000912 break;
913 }
914 }
915 }
Jason Molendafbcb7f22010-09-10 07:49:16 +0000916 unwind_plan.AppendRow(row);
917
918 return true;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000919}