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Chris Lattner30fdc8d2010-06-08 16:52:24 +00001//===-- DWARFExpression.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#include "lldb/Expression/DWARFExpression.h"
11
Virgile Bellobdae3782013-08-28 12:14:27 +000012// C Includes
13#include <inttypes.h>
14
15// C++ Includes
Chris Lattner30fdc8d2010-06-08 16:52:24 +000016#include <vector>
17
Greg Clayton2fc93ea2011-11-13 04:15:56 +000018#include "lldb/Core/DataEncoder.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000019#include "lldb/Core/dwarf.h"
20#include "lldb/Core/Log.h"
Greg Clayton7349bd92011-05-09 20:18:18 +000021#include "lldb/Core/RegisterValue.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000022#include "lldb/Core/StreamString.h"
23#include "lldb/Core/Scalar.h"
24#include "lldb/Core/Value.h"
Greg Clayton016a95e2010-09-14 02:20:48 +000025#include "lldb/Core/VMRange.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000026
27#include "lldb/Expression/ClangExpressionDeclMap.h"
28#include "lldb/Expression/ClangExpressionVariable.h"
29
Greg Clayton7fb56d02011-02-01 01:31:41 +000030#include "lldb/Host/Endian.h"
Jim Inghamf220d592011-12-01 03:01:30 +000031#include "lldb/Host/Host.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000032
33#include "lldb/lldb-private-log.h"
34
Greg Claytonafacd142011-09-02 01:15:17 +000035#include "lldb/Target/ABI.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000036#include "lldb/Target/ExecutionContext.h"
37#include "lldb/Target/Process.h"
38#include "lldb/Target/RegisterContext.h"
Jason Molendab57e4a12013-11-04 09:33:30 +000039#include "lldb/Target/StackFrame.h"
Ashok Thirumurthi6e264d32013-07-29 16:05:11 +000040#include "lldb/Target/StackID.h"
Richard Mitton0a558352013-10-17 21:14:00 +000041#include "lldb/Target/Thread.h"
Chris Lattner30fdc8d2010-06-08 16:52:24 +000042
43using namespace lldb;
44using namespace lldb_private;
45
Richard Mitton0a558352013-10-17 21:14:00 +000046// TODO- why is this also defined (in a better way) in DWARFDefines.cpp?
Chris Lattner30fdc8d2010-06-08 16:52:24 +000047const char *
48DW_OP_value_to_name (uint32_t val)
49{
50 static char invalid[100];
51 switch (val) {
52 case 0x03: return "DW_OP_addr";
53 case 0x06: return "DW_OP_deref";
54 case 0x08: return "DW_OP_const1u";
55 case 0x09: return "DW_OP_const1s";
56 case 0x0a: return "DW_OP_const2u";
57 case 0x0b: return "DW_OP_const2s";
58 case 0x0c: return "DW_OP_const4u";
59 case 0x0d: return "DW_OP_const4s";
60 case 0x0e: return "DW_OP_const8u";
61 case 0x0f: return "DW_OP_const8s";
62 case 0x10: return "DW_OP_constu";
63 case 0x11: return "DW_OP_consts";
64 case 0x12: return "DW_OP_dup";
65 case 0x13: return "DW_OP_drop";
66 case 0x14: return "DW_OP_over";
67 case 0x15: return "DW_OP_pick";
68 case 0x16: return "DW_OP_swap";
69 case 0x17: return "DW_OP_rot";
70 case 0x18: return "DW_OP_xderef";
71 case 0x19: return "DW_OP_abs";
72 case 0x1a: return "DW_OP_and";
73 case 0x1b: return "DW_OP_div";
74 case 0x1c: return "DW_OP_minus";
75 case 0x1d: return "DW_OP_mod";
76 case 0x1e: return "DW_OP_mul";
77 case 0x1f: return "DW_OP_neg";
78 case 0x20: return "DW_OP_not";
79 case 0x21: return "DW_OP_or";
80 case 0x22: return "DW_OP_plus";
81 case 0x23: return "DW_OP_plus_uconst";
82 case 0x24: return "DW_OP_shl";
83 case 0x25: return "DW_OP_shr";
84 case 0x26: return "DW_OP_shra";
85 case 0x27: return "DW_OP_xor";
86 case 0x2f: return "DW_OP_skip";
87 case 0x28: return "DW_OP_bra";
88 case 0x29: return "DW_OP_eq";
89 case 0x2a: return "DW_OP_ge";
90 case 0x2b: return "DW_OP_gt";
91 case 0x2c: return "DW_OP_le";
92 case 0x2d: return "DW_OP_lt";
93 case 0x2e: return "DW_OP_ne";
94 case 0x30: return "DW_OP_lit0";
95 case 0x31: return "DW_OP_lit1";
96 case 0x32: return "DW_OP_lit2";
97 case 0x33: return "DW_OP_lit3";
98 case 0x34: return "DW_OP_lit4";
99 case 0x35: return "DW_OP_lit5";
100 case 0x36: return "DW_OP_lit6";
101 case 0x37: return "DW_OP_lit7";
102 case 0x38: return "DW_OP_lit8";
103 case 0x39: return "DW_OP_lit9";
104 case 0x3a: return "DW_OP_lit10";
105 case 0x3b: return "DW_OP_lit11";
106 case 0x3c: return "DW_OP_lit12";
107 case 0x3d: return "DW_OP_lit13";
108 case 0x3e: return "DW_OP_lit14";
109 case 0x3f: return "DW_OP_lit15";
110 case 0x40: return "DW_OP_lit16";
111 case 0x41: return "DW_OP_lit17";
112 case 0x42: return "DW_OP_lit18";
113 case 0x43: return "DW_OP_lit19";
114 case 0x44: return "DW_OP_lit20";
115 case 0x45: return "DW_OP_lit21";
116 case 0x46: return "DW_OP_lit22";
117 case 0x47: return "DW_OP_lit23";
118 case 0x48: return "DW_OP_lit24";
119 case 0x49: return "DW_OP_lit25";
120 case 0x4a: return "DW_OP_lit26";
121 case 0x4b: return "DW_OP_lit27";
122 case 0x4c: return "DW_OP_lit28";
123 case 0x4d: return "DW_OP_lit29";
124 case 0x4e: return "DW_OP_lit30";
125 case 0x4f: return "DW_OP_lit31";
126 case 0x50: return "DW_OP_reg0";
127 case 0x51: return "DW_OP_reg1";
128 case 0x52: return "DW_OP_reg2";
129 case 0x53: return "DW_OP_reg3";
130 case 0x54: return "DW_OP_reg4";
131 case 0x55: return "DW_OP_reg5";
132 case 0x56: return "DW_OP_reg6";
133 case 0x57: return "DW_OP_reg7";
134 case 0x58: return "DW_OP_reg8";
135 case 0x59: return "DW_OP_reg9";
136 case 0x5a: return "DW_OP_reg10";
137 case 0x5b: return "DW_OP_reg11";
138 case 0x5c: return "DW_OP_reg12";
139 case 0x5d: return "DW_OP_reg13";
140 case 0x5e: return "DW_OP_reg14";
141 case 0x5f: return "DW_OP_reg15";
142 case 0x60: return "DW_OP_reg16";
143 case 0x61: return "DW_OP_reg17";
144 case 0x62: return "DW_OP_reg18";
145 case 0x63: return "DW_OP_reg19";
146 case 0x64: return "DW_OP_reg20";
147 case 0x65: return "DW_OP_reg21";
148 case 0x66: return "DW_OP_reg22";
149 case 0x67: return "DW_OP_reg23";
150 case 0x68: return "DW_OP_reg24";
151 case 0x69: return "DW_OP_reg25";
152 case 0x6a: return "DW_OP_reg26";
153 case 0x6b: return "DW_OP_reg27";
154 case 0x6c: return "DW_OP_reg28";
155 case 0x6d: return "DW_OP_reg29";
156 case 0x6e: return "DW_OP_reg30";
157 case 0x6f: return "DW_OP_reg31";
158 case 0x70: return "DW_OP_breg0";
159 case 0x71: return "DW_OP_breg1";
160 case 0x72: return "DW_OP_breg2";
161 case 0x73: return "DW_OP_breg3";
162 case 0x74: return "DW_OP_breg4";
163 case 0x75: return "DW_OP_breg5";
164 case 0x76: return "DW_OP_breg6";
165 case 0x77: return "DW_OP_breg7";
166 case 0x78: return "DW_OP_breg8";
167 case 0x79: return "DW_OP_breg9";
168 case 0x7a: return "DW_OP_breg10";
169 case 0x7b: return "DW_OP_breg11";
170 case 0x7c: return "DW_OP_breg12";
171 case 0x7d: return "DW_OP_breg13";
172 case 0x7e: return "DW_OP_breg14";
173 case 0x7f: return "DW_OP_breg15";
174 case 0x80: return "DW_OP_breg16";
175 case 0x81: return "DW_OP_breg17";
176 case 0x82: return "DW_OP_breg18";
177 case 0x83: return "DW_OP_breg19";
178 case 0x84: return "DW_OP_breg20";
179 case 0x85: return "DW_OP_breg21";
180 case 0x86: return "DW_OP_breg22";
181 case 0x87: return "DW_OP_breg23";
182 case 0x88: return "DW_OP_breg24";
183 case 0x89: return "DW_OP_breg25";
184 case 0x8a: return "DW_OP_breg26";
185 case 0x8b: return "DW_OP_breg27";
186 case 0x8c: return "DW_OP_breg28";
187 case 0x8d: return "DW_OP_breg29";
188 case 0x8e: return "DW_OP_breg30";
189 case 0x8f: return "DW_OP_breg31";
190 case 0x90: return "DW_OP_regx";
191 case 0x91: return "DW_OP_fbreg";
192 case 0x92: return "DW_OP_bregx";
193 case 0x93: return "DW_OP_piece";
194 case 0x94: return "DW_OP_deref_size";
195 case 0x95: return "DW_OP_xderef_size";
196 case 0x96: return "DW_OP_nop";
197 case 0x97: return "DW_OP_push_object_address";
198 case 0x98: return "DW_OP_call2";
199 case 0x99: return "DW_OP_call4";
200 case 0x9a: return "DW_OP_call_ref";
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000201// case DW_OP_APPLE_array_ref: return "DW_OP_APPLE_array_ref";
202// case DW_OP_APPLE_extern: return "DW_OP_APPLE_extern";
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000203 case DW_OP_APPLE_uninit: return "DW_OP_APPLE_uninit";
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000204// case DW_OP_APPLE_assign: return "DW_OP_APPLE_assign";
205// case DW_OP_APPLE_address_of: return "DW_OP_APPLE_address_of";
206// case DW_OP_APPLE_value_of: return "DW_OP_APPLE_value_of";
207// case DW_OP_APPLE_deref_type: return "DW_OP_APPLE_deref_type";
208// case DW_OP_APPLE_expr_local: return "DW_OP_APPLE_expr_local";
209// case DW_OP_APPLE_constf: return "DW_OP_APPLE_constf";
210// case DW_OP_APPLE_scalar_cast: return "DW_OP_APPLE_scalar_cast";
211// case DW_OP_APPLE_clang_cast: return "DW_OP_APPLE_clang_cast";
212// case DW_OP_APPLE_clear: return "DW_OP_APPLE_clear";
213// case DW_OP_APPLE_error: return "DW_OP_APPLE_error";
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000214 default:
215 snprintf (invalid, sizeof(invalid), "Unknown DW_OP constant: 0x%x", val);
216 return invalid;
217 }
218}
219
220
221//----------------------------------------------------------------------
222// DWARFExpression constructor
223//----------------------------------------------------------------------
224DWARFExpression::DWARFExpression() :
Richard Mitton0a558352013-10-17 21:14:00 +0000225 m_module_wp(),
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000226 m_data(),
227 m_reg_kind (eRegisterKindDWARF),
Greg Clayton1a65ae12011-01-25 23:55:37 +0000228 m_loclist_slide (LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000229{
230}
231
232DWARFExpression::DWARFExpression(const DWARFExpression& rhs) :
Richard Mitton0a558352013-10-17 21:14:00 +0000233 m_module_wp(rhs.m_module_wp),
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000234 m_data(rhs.m_data),
235 m_reg_kind (rhs.m_reg_kind),
Greg Clayton1a65ae12011-01-25 23:55:37 +0000236 m_loclist_slide(rhs.m_loclist_slide)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000237{
238}
239
240
Richard Mitton0a558352013-10-17 21:14:00 +0000241DWARFExpression::DWARFExpression(lldb::ModuleSP module_sp, const DataExtractor& data, lldb::offset_t data_offset, lldb::offset_t data_length) :
242 m_module_wp(),
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000243 m_data(data, data_offset, data_length),
244 m_reg_kind (eRegisterKindDWARF),
Greg Clayton1a65ae12011-01-25 23:55:37 +0000245 m_loclist_slide(LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000246{
Richard Mitton0a558352013-10-17 21:14:00 +0000247 if (module_sp)
248 m_module_wp = module_sp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000249}
250
251//----------------------------------------------------------------------
252// Destructor
253//----------------------------------------------------------------------
254DWARFExpression::~DWARFExpression()
255{
256}
257
258
259bool
260DWARFExpression::IsValid() const
261{
262 return m_data.GetByteSize() > 0;
263}
264
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000265void
Greg Clayton016a95e2010-09-14 02:20:48 +0000266DWARFExpression::SetOpcodeData (const DataExtractor& data)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000267{
268 m_data = data;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000269}
270
271void
Richard Mitton0a558352013-10-17 21:14:00 +0000272DWARFExpression::CopyOpcodeData (lldb::ModuleSP module_sp, const DataExtractor& data, lldb::offset_t data_offset, lldb::offset_t data_length)
Greg Clayton8179bca2012-08-10 23:33:27 +0000273{
274 const uint8_t *bytes = data.PeekData(data_offset, data_length);
Greg Clayton7f4c7432012-08-11 00:49:14 +0000275 if (bytes)
276 {
Richard Mitton0a558352013-10-17 21:14:00 +0000277 m_module_wp = module_sp;
Greg Clayton7f4c7432012-08-11 00:49:14 +0000278 m_data.SetData(DataBufferSP(new DataBufferHeap(bytes, data_length)));
279 m_data.SetByteOrder(data.GetByteOrder());
280 m_data.SetAddressByteSize(data.GetAddressByteSize());
281 }
Greg Clayton8179bca2012-08-10 23:33:27 +0000282}
283
284void
Enrico Granata4ec130d2014-08-11 19:16:35 +0000285DWARFExpression::CopyOpcodeData (const void *data,
286 lldb::offset_t data_length,
287 ByteOrder byte_order,
288 uint8_t addr_byte_size)
289{
290 if (data && data_length)
291 {
292 m_data.SetData(DataBufferSP(new DataBufferHeap(data, data_length)));
293 m_data.SetByteOrder(byte_order);
294 m_data.SetAddressByteSize(addr_byte_size);
295 }
296}
297
298void
299DWARFExpression::CopyOpcodeData (uint64_t const_value,
300 lldb::offset_t const_value_byte_size,
301 uint8_t addr_byte_size)
302{
303 if (const_value_byte_size)
304 {
305 m_data.SetData(DataBufferSP(new DataBufferHeap(&const_value, const_value_byte_size)));
306 m_data.SetByteOrder(endian::InlHostByteOrder());
307 m_data.SetAddressByteSize(addr_byte_size);
308 }
309}
310
311void
Richard Mitton0a558352013-10-17 21:14:00 +0000312DWARFExpression::SetOpcodeData (lldb::ModuleSP module_sp, const DataExtractor& data, lldb::offset_t data_offset, lldb::offset_t data_length)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000313{
Richard Mitton0a558352013-10-17 21:14:00 +0000314 m_module_wp = module_sp;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000315 m_data.SetData(data, data_offset, data_length);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000316}
317
318void
Greg Claytonc7bece562013-01-25 18:06:21 +0000319DWARFExpression::DumpLocation (Stream *s, lldb::offset_t offset, lldb::offset_t length, lldb::DescriptionLevel level, ABI *abi) const
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000320{
321 if (!m_data.ValidOffsetForDataOfSize(offset, length))
322 return;
Greg Claytonc7bece562013-01-25 18:06:21 +0000323 const lldb::offset_t start_offset = offset;
324 const lldb::offset_t end_offset = offset + length;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000325 while (m_data.ValidOffset(offset) && offset < end_offset)
326 {
Greg Claytonc7bece562013-01-25 18:06:21 +0000327 const lldb::offset_t op_offset = offset;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000328 const uint8_t op = m_data.GetU8(&offset);
329
330 switch (level)
331 {
Greg Claytonc982c762010-07-09 20:39:50 +0000332 default:
333 break;
334
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000335 case lldb::eDescriptionLevelBrief:
336 if (offset > start_offset)
337 s->PutChar(' ');
338 break;
339
340 case lldb::eDescriptionLevelFull:
341 case lldb::eDescriptionLevelVerbose:
342 if (offset > start_offset)
343 s->EOL();
344 s->Indent();
345 if (level == lldb::eDescriptionLevelFull)
346 break;
347 // Fall through for verbose and print offset and DW_OP prefix..
Greg Claytonc7bece562013-01-25 18:06:21 +0000348 s->Printf("0x%8.8" PRIx64 ": %s", op_offset, op >= DW_OP_APPLE_uninit ? "DW_OP_APPLE_" : "DW_OP_");
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000349 break;
350 }
351
352 switch (op)
353 {
Greg Claytonc749eb82011-07-11 05:12:02 +0000354 case DW_OP_addr: *s << "DW_OP_addr(" << m_data.GetAddress(&offset) << ") "; break; // 0x03 1 address
355 case DW_OP_deref: *s << "DW_OP_deref"; break; // 0x06
356 case DW_OP_const1u: s->Printf("DW_OP_const1u(0x%2.2x) ", m_data.GetU8(&offset)); break; // 0x08 1 1-byte constant
357 case DW_OP_const1s: s->Printf("DW_OP_const1s(0x%2.2x) ", m_data.GetU8(&offset)); break; // 0x09 1 1-byte constant
358 case DW_OP_const2u: s->Printf("DW_OP_const2u(0x%4.4x) ", m_data.GetU16(&offset)); break; // 0x0a 1 2-byte constant
359 case DW_OP_const2s: s->Printf("DW_OP_const2s(0x%4.4x) ", m_data.GetU16(&offset)); break; // 0x0b 1 2-byte constant
360 case DW_OP_const4u: s->Printf("DW_OP_const4u(0x%8.8x) ", m_data.GetU32(&offset)); break; // 0x0c 1 4-byte constant
361 case DW_OP_const4s: s->Printf("DW_OP_const4s(0x%8.8x) ", m_data.GetU32(&offset)); break; // 0x0d 1 4-byte constant
Daniel Malead01b2952012-11-29 21:49:15 +0000362 case DW_OP_const8u: s->Printf("DW_OP_const8u(0x%16.16" PRIx64 ") ", m_data.GetU64(&offset)); break; // 0x0e 1 8-byte constant
363 case DW_OP_const8s: s->Printf("DW_OP_const8s(0x%16.16" PRIx64 ") ", m_data.GetU64(&offset)); break; // 0x0f 1 8-byte constant
364 case DW_OP_constu: s->Printf("DW_OP_constu(0x%" PRIx64 ") ", m_data.GetULEB128(&offset)); break; // 0x10 1 ULEB128 constant
365 case DW_OP_consts: s->Printf("DW_OP_consts(0x%" PRId64 ") ", m_data.GetSLEB128(&offset)); break; // 0x11 1 SLEB128 constant
Greg Claytonc749eb82011-07-11 05:12:02 +0000366 case DW_OP_dup: s->PutCString("DW_OP_dup"); break; // 0x12
367 case DW_OP_drop: s->PutCString("DW_OP_drop"); break; // 0x13
368 case DW_OP_over: s->PutCString("DW_OP_over"); break; // 0x14
369 case DW_OP_pick: s->Printf("DW_OP_pick(0x%2.2x) ", m_data.GetU8(&offset)); break; // 0x15 1 1-byte stack index
370 case DW_OP_swap: s->PutCString("DW_OP_swap"); break; // 0x16
371 case DW_OP_rot: s->PutCString("DW_OP_rot"); break; // 0x17
372 case DW_OP_xderef: s->PutCString("DW_OP_xderef"); break; // 0x18
373 case DW_OP_abs: s->PutCString("DW_OP_abs"); break; // 0x19
374 case DW_OP_and: s->PutCString("DW_OP_and"); break; // 0x1a
375 case DW_OP_div: s->PutCString("DW_OP_div"); break; // 0x1b
376 case DW_OP_minus: s->PutCString("DW_OP_minus"); break; // 0x1c
377 case DW_OP_mod: s->PutCString("DW_OP_mod"); break; // 0x1d
378 case DW_OP_mul: s->PutCString("DW_OP_mul"); break; // 0x1e
379 case DW_OP_neg: s->PutCString("DW_OP_neg"); break; // 0x1f
380 case DW_OP_not: s->PutCString("DW_OP_not"); break; // 0x20
381 case DW_OP_or: s->PutCString("DW_OP_or"); break; // 0x21
382 case DW_OP_plus: s->PutCString("DW_OP_plus"); break; // 0x22
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000383 case DW_OP_plus_uconst: // 0x23 1 ULEB128 addend
Daniel Malead01b2952012-11-29 21:49:15 +0000384 s->Printf("DW_OP_plus_uconst(0x%" PRIx64 ") ", m_data.GetULEB128(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000385 break;
386
Greg Claytonc749eb82011-07-11 05:12:02 +0000387 case DW_OP_shl: s->PutCString("DW_OP_shl"); break; // 0x24
388 case DW_OP_shr: s->PutCString("DW_OP_shr"); break; // 0x25
389 case DW_OP_shra: s->PutCString("DW_OP_shra"); break; // 0x26
390 case DW_OP_xor: s->PutCString("DW_OP_xor"); break; // 0x27
391 case DW_OP_skip: s->Printf("DW_OP_skip(0x%4.4x)", m_data.GetU16(&offset)); break; // 0x2f 1 signed 2-byte constant
392 case DW_OP_bra: s->Printf("DW_OP_bra(0x%4.4x)", m_data.GetU16(&offset)); break; // 0x28 1 signed 2-byte constant
393 case DW_OP_eq: s->PutCString("DW_OP_eq"); break; // 0x29
394 case DW_OP_ge: s->PutCString("DW_OP_ge"); break; // 0x2a
395 case DW_OP_gt: s->PutCString("DW_OP_gt"); break; // 0x2b
396 case DW_OP_le: s->PutCString("DW_OP_le"); break; // 0x2c
397 case DW_OP_lt: s->PutCString("DW_OP_lt"); break; // 0x2d
398 case DW_OP_ne: s->PutCString("DW_OP_ne"); break; // 0x2e
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000399
400 case DW_OP_lit0: // 0x30
401 case DW_OP_lit1: // 0x31
402 case DW_OP_lit2: // 0x32
403 case DW_OP_lit3: // 0x33
404 case DW_OP_lit4: // 0x34
405 case DW_OP_lit5: // 0x35
406 case DW_OP_lit6: // 0x36
407 case DW_OP_lit7: // 0x37
408 case DW_OP_lit8: // 0x38
409 case DW_OP_lit9: // 0x39
410 case DW_OP_lit10: // 0x3A
411 case DW_OP_lit11: // 0x3B
412 case DW_OP_lit12: // 0x3C
413 case DW_OP_lit13: // 0x3D
414 case DW_OP_lit14: // 0x3E
415 case DW_OP_lit15: // 0x3F
416 case DW_OP_lit16: // 0x40
417 case DW_OP_lit17: // 0x41
418 case DW_OP_lit18: // 0x42
419 case DW_OP_lit19: // 0x43
420 case DW_OP_lit20: // 0x44
421 case DW_OP_lit21: // 0x45
422 case DW_OP_lit22: // 0x46
423 case DW_OP_lit23: // 0x47
424 case DW_OP_lit24: // 0x48
425 case DW_OP_lit25: // 0x49
426 case DW_OP_lit26: // 0x4A
427 case DW_OP_lit27: // 0x4B
428 case DW_OP_lit28: // 0x4C
429 case DW_OP_lit29: // 0x4D
430 case DW_OP_lit30: // 0x4E
Greg Claytonc749eb82011-07-11 05:12:02 +0000431 case DW_OP_lit31: s->Printf("DW_OP_lit%i", op - DW_OP_lit0); break; // 0x4f
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000432
433 case DW_OP_reg0: // 0x50
434 case DW_OP_reg1: // 0x51
435 case DW_OP_reg2: // 0x52
436 case DW_OP_reg3: // 0x53
437 case DW_OP_reg4: // 0x54
438 case DW_OP_reg5: // 0x55
439 case DW_OP_reg6: // 0x56
440 case DW_OP_reg7: // 0x57
441 case DW_OP_reg8: // 0x58
442 case DW_OP_reg9: // 0x59
443 case DW_OP_reg10: // 0x5A
444 case DW_OP_reg11: // 0x5B
445 case DW_OP_reg12: // 0x5C
446 case DW_OP_reg13: // 0x5D
447 case DW_OP_reg14: // 0x5E
448 case DW_OP_reg15: // 0x5F
449 case DW_OP_reg16: // 0x60
450 case DW_OP_reg17: // 0x61
451 case DW_OP_reg18: // 0x62
452 case DW_OP_reg19: // 0x63
453 case DW_OP_reg20: // 0x64
454 case DW_OP_reg21: // 0x65
455 case DW_OP_reg22: // 0x66
456 case DW_OP_reg23: // 0x67
457 case DW_OP_reg24: // 0x68
458 case DW_OP_reg25: // 0x69
459 case DW_OP_reg26: // 0x6A
460 case DW_OP_reg27: // 0x6B
461 case DW_OP_reg28: // 0x6C
462 case DW_OP_reg29: // 0x6D
463 case DW_OP_reg30: // 0x6E
Greg Claytonafacd142011-09-02 01:15:17 +0000464 case DW_OP_reg31: // 0x6F
465 {
466 uint32_t reg_num = op - DW_OP_reg0;
467 if (abi)
468 {
469 RegisterInfo reg_info;
470 if (abi->GetRegisterInfoByKind(m_reg_kind, reg_num, reg_info))
471 {
472 if (reg_info.name)
473 {
474 s->PutCString (reg_info.name);
475 break;
476 }
477 else if (reg_info.alt_name)
478 {
479 s->PutCString (reg_info.alt_name);
480 break;
481 }
482 }
483 }
484 s->Printf("DW_OP_reg%u", reg_num); break;
485 }
486 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000487
488 case DW_OP_breg0:
489 case DW_OP_breg1:
490 case DW_OP_breg2:
491 case DW_OP_breg3:
492 case DW_OP_breg4:
493 case DW_OP_breg5:
494 case DW_OP_breg6:
495 case DW_OP_breg7:
496 case DW_OP_breg8:
497 case DW_OP_breg9:
498 case DW_OP_breg10:
499 case DW_OP_breg11:
500 case DW_OP_breg12:
501 case DW_OP_breg13:
502 case DW_OP_breg14:
503 case DW_OP_breg15:
504 case DW_OP_breg16:
505 case DW_OP_breg17:
506 case DW_OP_breg18:
507 case DW_OP_breg19:
508 case DW_OP_breg20:
509 case DW_OP_breg21:
510 case DW_OP_breg22:
511 case DW_OP_breg23:
512 case DW_OP_breg24:
513 case DW_OP_breg25:
514 case DW_OP_breg26:
515 case DW_OP_breg27:
516 case DW_OP_breg28:
517 case DW_OP_breg29:
518 case DW_OP_breg30:
Greg Claytonafacd142011-09-02 01:15:17 +0000519 case DW_OP_breg31:
520 {
521 uint32_t reg_num = op - DW_OP_breg0;
522 int64_t reg_offset = m_data.GetSLEB128(&offset);
523 if (abi)
524 {
525 RegisterInfo reg_info;
526 if (abi->GetRegisterInfoByKind(m_reg_kind, reg_num, reg_info))
527 {
528 if (reg_info.name)
529 {
Daniel Malead01b2952012-11-29 21:49:15 +0000530 s->Printf("[%s%+" PRIi64 "]", reg_info.name, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000531 break;
532 }
533 else if (reg_info.alt_name)
534 {
Daniel Malead01b2952012-11-29 21:49:15 +0000535 s->Printf("[%s%+" PRIi64 "]", reg_info.alt_name, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000536 break;
537 }
538 }
539 }
Daniel Malead01b2952012-11-29 21:49:15 +0000540 s->Printf("DW_OP_breg%i(0x%" PRIx64 ")", reg_num, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000541 }
542 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000543
544 case DW_OP_regx: // 0x90 1 ULEB128 register
Greg Claytonafacd142011-09-02 01:15:17 +0000545 {
Greg Claytonc7bece562013-01-25 18:06:21 +0000546 uint32_t reg_num = m_data.GetULEB128(&offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000547 if (abi)
548 {
549 RegisterInfo reg_info;
550 if (abi->GetRegisterInfoByKind(m_reg_kind, reg_num, reg_info))
551 {
552 if (reg_info.name)
553 {
554 s->PutCString (reg_info.name);
555 break;
556 }
557 else if (reg_info.alt_name)
558 {
559 s->PutCString (reg_info.alt_name);
560 break;
561 }
562 }
563 }
Greg Claytonc7bece562013-01-25 18:06:21 +0000564 s->Printf("DW_OP_regx(%" PRIu32 ")", reg_num); break;
Greg Claytonafacd142011-09-02 01:15:17 +0000565 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000566 break;
567 case DW_OP_fbreg: // 0x91 1 SLEB128 offset
Daniel Malead01b2952012-11-29 21:49:15 +0000568 s->Printf("DW_OP_fbreg(%" PRIi64 ")",m_data.GetSLEB128(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000569 break;
570 case DW_OP_bregx: // 0x92 2 ULEB128 register followed by SLEB128 offset
Greg Claytonafacd142011-09-02 01:15:17 +0000571 {
572 uint32_t reg_num = m_data.GetULEB128(&offset);
573 int64_t reg_offset = m_data.GetSLEB128(&offset);
574 if (abi)
575 {
576 RegisterInfo reg_info;
577 if (abi->GetRegisterInfoByKind(m_reg_kind, reg_num, reg_info))
578 {
579 if (reg_info.name)
580 {
Daniel Malead01b2952012-11-29 21:49:15 +0000581 s->Printf("[%s%+" PRIi64 "]", reg_info.name, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000582 break;
583 }
584 else if (reg_info.alt_name)
585 {
Daniel Malead01b2952012-11-29 21:49:15 +0000586 s->Printf("[%s%+" PRIi64 "]", reg_info.alt_name, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000587 break;
588 }
589 }
590 }
Greg Claytonc7bece562013-01-25 18:06:21 +0000591 s->Printf("DW_OP_bregx(reg=%" PRIu32 ",offset=%" PRIi64 ")", reg_num, reg_offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000592 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000593 break;
594 case DW_OP_piece: // 0x93 1 ULEB128 size of piece addressed
Daniel Malead01b2952012-11-29 21:49:15 +0000595 s->Printf("DW_OP_piece(0x%" PRIx64 ")", m_data.GetULEB128(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000596 break;
597 case DW_OP_deref_size: // 0x94 1 1-byte size of data retrieved
Greg Claytonc749eb82011-07-11 05:12:02 +0000598 s->Printf("DW_OP_deref_size(0x%2.2x)", m_data.GetU8(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000599 break;
600 case DW_OP_xderef_size: // 0x95 1 1-byte size of data retrieved
Greg Claytonc749eb82011-07-11 05:12:02 +0000601 s->Printf("DW_OP_xderef_size(0x%2.2x)", m_data.GetU8(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000602 break;
Greg Claytonc749eb82011-07-11 05:12:02 +0000603 case DW_OP_nop: s->PutCString("DW_OP_nop"); break; // 0x96
604 case DW_OP_push_object_address: s->PutCString("DW_OP_push_object_address"); break; // 0x97 DWARF3
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000605 case DW_OP_call2: // 0x98 DWARF3 1 2-byte offset of DIE
Greg Claytonc749eb82011-07-11 05:12:02 +0000606 s->Printf("DW_OP_call2(0x%4.4x)", m_data.GetU16(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000607 break;
608 case DW_OP_call4: // 0x99 DWARF3 1 4-byte offset of DIE
Greg Claytonc749eb82011-07-11 05:12:02 +0000609 s->Printf("DW_OP_call4(0x%8.8x)", m_data.GetU32(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000610 break;
611 case DW_OP_call_ref: // 0x9a DWARF3 1 4- or 8-byte offset of DIE
Daniel Malead01b2952012-11-29 21:49:15 +0000612 s->Printf("DW_OP_call_ref(0x%8.8" PRIx64 ")", m_data.GetAddress(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000613 break;
614// case DW_OP_form_tls_address: s << "form_tls_address"; break; // 0x9b DWARF3
615// case DW_OP_call_frame_cfa: s << "call_frame_cfa"; break; // 0x9c DWARF3
616// case DW_OP_bit_piece: // 0x9d DWARF3 2
Greg Claytonc749eb82011-07-11 05:12:02 +0000617// s->Printf("DW_OP_bit_piece(0x%x, 0x%x)", m_data.GetULEB128(&offset), m_data.GetULEB128(&offset));
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000618// break;
Greg Claytonc749eb82011-07-11 05:12:02 +0000619// case DW_OP_lo_user: s->PutCString("DW_OP_lo_user"); break; // 0xe0
620// case DW_OP_hi_user: s->PutCString("DW_OP_hi_user"); break; // 0xff
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000621// case DW_OP_APPLE_extern:
Daniel Malead01b2952012-11-29 21:49:15 +0000622// s->Printf("DW_OP_APPLE_extern(%" PRIu64 ")", m_data.GetULEB128(&offset));
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000623// break;
624// case DW_OP_APPLE_array_ref:
625// s->PutCString("DW_OP_APPLE_array_ref");
626// break;
Richard Mitton0a558352013-10-17 21:14:00 +0000627 case DW_OP_GNU_push_tls_address:
628 s->PutCString("DW_OP_GNU_push_tls_address"); // 0xe0
629 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000630 case DW_OP_APPLE_uninit:
Greg Claytonc749eb82011-07-11 05:12:02 +0000631 s->PutCString("DW_OP_APPLE_uninit"); // 0xF0
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000632 break;
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000633// case DW_OP_APPLE_assign: // 0xF1 - pops value off and assigns it to second item on stack (2nd item must have assignable context)
634// s->PutCString("DW_OP_APPLE_assign");
635// break;
636// case DW_OP_APPLE_address_of: // 0xF2 - gets the address of the top stack item (top item must be a variable, or have value_type that is an address already)
637// s->PutCString("DW_OP_APPLE_address_of");
638// break;
639// case DW_OP_APPLE_value_of: // 0xF3 - pops the value off the stack and pushes the value of that object (top item must be a variable, or expression local)
640// s->PutCString("DW_OP_APPLE_value_of");
641// break;
642// case DW_OP_APPLE_deref_type: // 0xF4 - gets the address of the top stack item (top item must be a variable, or a clang type)
643// s->PutCString("DW_OP_APPLE_deref_type");
644// break;
645// case DW_OP_APPLE_expr_local: // 0xF5 - ULEB128 expression local index
Daniel Malead01b2952012-11-29 21:49:15 +0000646// s->Printf("DW_OP_APPLE_expr_local(%" PRIu64 ")", m_data.GetULEB128(&offset));
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000647// break;
648// case DW_OP_APPLE_constf: // 0xF6 - 1 byte float size, followed by constant float data
649// {
650// uint8_t float_length = m_data.GetU8(&offset);
651// s->Printf("DW_OP_APPLE_constf(<%u> ", float_length);
652// m_data.Dump(s, offset, eFormatHex, float_length, 1, UINT32_MAX, DW_INVALID_ADDRESS, 0, 0);
653// s->PutChar(')');
654// // Consume the float data
655// m_data.GetData(&offset, float_length);
656// }
657// break;
658// case DW_OP_APPLE_scalar_cast:
659// s->Printf("DW_OP_APPLE_scalar_cast(%s)", Scalar::GetValueTypeAsCString ((Scalar::Type)m_data.GetU8(&offset)));
660// break;
661// case DW_OP_APPLE_clang_cast:
662// {
663// clang::Type *clang_type = (clang::Type *)m_data.GetMaxU64(&offset, sizeof(void*));
664// s->Printf("DW_OP_APPLE_clang_cast(%p)", clang_type);
665// }
666// break;
667// case DW_OP_APPLE_clear:
668// s->PutCString("DW_OP_APPLE_clear");
669// break;
670// case DW_OP_APPLE_error: // 0xFF - Stops expression evaluation and returns an error (no args)
671// s->PutCString("DW_OP_APPLE_error");
672// break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000673 }
674 }
675}
676
677void
Greg Clayton016a95e2010-09-14 02:20:48 +0000678DWARFExpression::SetLocationListSlide (addr_t slide)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000679{
Greg Clayton016a95e2010-09-14 02:20:48 +0000680 m_loclist_slide = slide;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000681}
682
683int
684DWARFExpression::GetRegisterKind ()
685{
686 return m_reg_kind;
687}
688
689void
Greg Claytonafacd142011-09-02 01:15:17 +0000690DWARFExpression::SetRegisterKind (RegisterKind reg_kind)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000691{
692 m_reg_kind = reg_kind;
693}
694
695bool
696DWARFExpression::IsLocationList() const
697{
Greg Clayton016a95e2010-09-14 02:20:48 +0000698 return m_loclist_slide != LLDB_INVALID_ADDRESS;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000699}
700
701void
Greg Claytonafacd142011-09-02 01:15:17 +0000702DWARFExpression::GetDescription (Stream *s, lldb::DescriptionLevel level, addr_t location_list_base_addr, ABI *abi) const
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000703{
704 if (IsLocationList())
705 {
706 // We have a location list
Greg Claytonc7bece562013-01-25 18:06:21 +0000707 lldb::offset_t offset = 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000708 uint32_t count = 0;
Greg Clayton016a95e2010-09-14 02:20:48 +0000709 addr_t curr_base_addr = location_list_base_addr;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000710 while (m_data.ValidOffset(offset))
711 {
712 lldb::addr_t begin_addr_offset = m_data.GetAddress(&offset);
713 lldb::addr_t end_addr_offset = m_data.GetAddress(&offset);
714 if (begin_addr_offset < end_addr_offset)
715 {
716 if (count > 0)
717 s->PutCString(", ");
Greg Clayton016a95e2010-09-14 02:20:48 +0000718 VMRange addr_range(curr_base_addr + begin_addr_offset, curr_base_addr + end_addr_offset);
719 addr_range.Dump(s, 0, 8);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000720 s->PutChar('{');
Greg Claytonc7bece562013-01-25 18:06:21 +0000721 lldb::offset_t location_length = m_data.GetU16(&offset);
Greg Claytonafacd142011-09-02 01:15:17 +0000722 DumpLocation (s, offset, location_length, level, abi);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000723 s->PutChar('}');
724 offset += location_length;
725 }
726 else if (begin_addr_offset == 0 && end_addr_offset == 0)
727 {
728 // The end of the location list is marked by both the start and end offset being zero
729 break;
730 }
731 else
732 {
Greg Claytone0d378b2011-03-24 21:19:54 +0000733 if ((m_data.GetAddressByteSize() == 4 && (begin_addr_offset == UINT32_MAX)) ||
734 (m_data.GetAddressByteSize() == 8 && (begin_addr_offset == UINT64_MAX)))
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000735 {
Greg Clayton016a95e2010-09-14 02:20:48 +0000736 curr_base_addr = end_addr_offset + location_list_base_addr;
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000737 // We have a new base address
738 if (count > 0)
739 s->PutCString(", ");
740 *s << "base_addr = " << end_addr_offset;
741 }
742 }
743
744 count++;
745 }
746 }
747 else
748 {
749 // We have a normal location that contains DW_OP location opcodes
Greg Claytonafacd142011-09-02 01:15:17 +0000750 DumpLocation (s, 0, m_data.GetByteSize(), level, abi);
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000751 }
752}
753
754static bool
755ReadRegisterValueAsScalar
756(
Greg Clayton7349bd92011-05-09 20:18:18 +0000757 RegisterContext *reg_ctx,
Jean-Daniel Dupase7c7c3d2014-07-02 09:51:28 +0000758 lldb::RegisterKind reg_kind,
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000759 uint32_t reg_num,
760 Error *error_ptr,
761 Value &value
762)
763{
Greg Clayton7349bd92011-05-09 20:18:18 +0000764 if (reg_ctx == NULL)
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000765 {
Jason Molenda2d107dd2010-11-20 01:28:30 +0000766 if (error_ptr)
767 error_ptr->SetErrorStringWithFormat("No register context in frame.\n");
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000768 }
769 else
770 {
Greg Clayton7349bd92011-05-09 20:18:18 +0000771 uint32_t native_reg = reg_ctx->ConvertRegisterKindToRegisterNumber(reg_kind, reg_num);
Jason Molenda2d107dd2010-11-20 01:28:30 +0000772 if (native_reg == LLDB_INVALID_REGNUM)
773 {
774 if (error_ptr)
775 error_ptr->SetErrorStringWithFormat("Unable to convert register kind=%u reg_num=%u to a native register number.\n", reg_kind, reg_num);
776 }
777 else
778 {
Greg Clayton7349bd92011-05-09 20:18:18 +0000779 const RegisterInfo *reg_info = reg_ctx->GetRegisterInfoAtIndex(native_reg);
780 RegisterValue reg_value;
781 if (reg_ctx->ReadRegister (reg_info, reg_value))
782 {
783 if (reg_value.GetScalarValue(value.GetScalar()))
784 {
785 value.SetValueType (Value::eValueTypeScalar);
Greg Clayton007d5be2011-05-30 00:49:24 +0000786 value.SetContext (Value::eContextTypeRegisterInfo,
787 const_cast<RegisterInfo *>(reg_info));
Greg Clayton7349bd92011-05-09 20:18:18 +0000788 if (error_ptr)
789 error_ptr->Clear();
790 return true;
791 }
792 else
793 {
Greg Clayton007d5be2011-05-30 00:49:24 +0000794 // If we get this error, then we need to implement a value
795 // buffer in the dwarf expression evaluation function...
Greg Clayton7349bd92011-05-09 20:18:18 +0000796 if (error_ptr)
Greg Clayton007d5be2011-05-30 00:49:24 +0000797 error_ptr->SetErrorStringWithFormat ("register %s can't be converted to a scalar value",
798 reg_info->name);
Greg Clayton7349bd92011-05-09 20:18:18 +0000799 }
800 }
801 else
802 {
803 if (error_ptr)
Greg Clayton007d5be2011-05-30 00:49:24 +0000804 error_ptr->SetErrorStringWithFormat("register %s is not available", reg_info->name);
Greg Clayton7349bd92011-05-09 20:18:18 +0000805 }
Jason Molenda2d107dd2010-11-20 01:28:30 +0000806 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +0000807 }
808 return false;
809}
810
Greg Clayton016a95e2010-09-14 02:20:48 +0000811//bool
812//DWARFExpression::LocationListContainsLoadAddress (Process* process, const Address &addr) const
813//{
814// return LocationListContainsLoadAddress(process, addr.GetLoadAddress(process));
815//}
816//
817//bool
818//DWARFExpression::LocationListContainsLoadAddress (Process* process, addr_t load_addr) const
819//{
820// if (load_addr == LLDB_INVALID_ADDRESS)
821// return false;
822//
823// if (IsLocationList())
824// {
Greg Claytonc7bece562013-01-25 18:06:21 +0000825// lldb::offset_t offset = 0;
Greg Clayton016a95e2010-09-14 02:20:48 +0000826//
827// addr_t loc_list_base_addr = m_loclist_slide.GetLoadAddress(process);
828//
829// if (loc_list_base_addr == LLDB_INVALID_ADDRESS)
830// return false;
831//
832// while (m_data.ValidOffset(offset))
833// {
834// // We need to figure out what the value is for the location.
835// addr_t lo_pc = m_data.GetAddress(&offset);
836// addr_t hi_pc = m_data.GetAddress(&offset);
837// if (lo_pc == 0 && hi_pc == 0)
838// break;
839// else
840// {
841// lo_pc += loc_list_base_addr;
842// hi_pc += loc_list_base_addr;
843//
844// if (lo_pc <= load_addr && load_addr < hi_pc)
845// return true;
846//
847// offset += m_data.GetU16(&offset);
848// }
849// }
850// }
851// return false;
852//}
Greg Clayton9da7bd02010-08-24 21:05:24 +0000853
Greg Claytonc7bece562013-01-25 18:06:21 +0000854static offset_t
855GetOpcodeDataSize (const DataExtractor &data, const lldb::offset_t data_offset, const uint8_t op)
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000856{
Greg Claytonc7bece562013-01-25 18:06:21 +0000857 lldb::offset_t offset = data_offset;
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000858 switch (op)
859 {
860 case DW_OP_addr:
861 case DW_OP_call_ref: // 0x9a 1 address sized offset of DIE (DWARF3)
862 return data.GetAddressByteSize();
863
864 // Opcodes with no arguments
865 case DW_OP_deref: // 0x06
866 case DW_OP_dup: // 0x12
867 case DW_OP_drop: // 0x13
868 case DW_OP_over: // 0x14
869 case DW_OP_swap: // 0x16
870 case DW_OP_rot: // 0x17
871 case DW_OP_xderef: // 0x18
872 case DW_OP_abs: // 0x19
873 case DW_OP_and: // 0x1a
874 case DW_OP_div: // 0x1b
875 case DW_OP_minus: // 0x1c
876 case DW_OP_mod: // 0x1d
877 case DW_OP_mul: // 0x1e
878 case DW_OP_neg: // 0x1f
879 case DW_OP_not: // 0x20
880 case DW_OP_or: // 0x21
881 case DW_OP_plus: // 0x22
882 case DW_OP_shl: // 0x24
883 case DW_OP_shr: // 0x25
884 case DW_OP_shra: // 0x26
885 case DW_OP_xor: // 0x27
886 case DW_OP_eq: // 0x29
887 case DW_OP_ge: // 0x2a
888 case DW_OP_gt: // 0x2b
889 case DW_OP_le: // 0x2c
890 case DW_OP_lt: // 0x2d
891 case DW_OP_ne: // 0x2e
892 case DW_OP_lit0: // 0x30
893 case DW_OP_lit1: // 0x31
894 case DW_OP_lit2: // 0x32
895 case DW_OP_lit3: // 0x33
896 case DW_OP_lit4: // 0x34
897 case DW_OP_lit5: // 0x35
898 case DW_OP_lit6: // 0x36
899 case DW_OP_lit7: // 0x37
900 case DW_OP_lit8: // 0x38
901 case DW_OP_lit9: // 0x39
902 case DW_OP_lit10: // 0x3A
903 case DW_OP_lit11: // 0x3B
904 case DW_OP_lit12: // 0x3C
905 case DW_OP_lit13: // 0x3D
906 case DW_OP_lit14: // 0x3E
907 case DW_OP_lit15: // 0x3F
908 case DW_OP_lit16: // 0x40
909 case DW_OP_lit17: // 0x41
910 case DW_OP_lit18: // 0x42
911 case DW_OP_lit19: // 0x43
912 case DW_OP_lit20: // 0x44
913 case DW_OP_lit21: // 0x45
914 case DW_OP_lit22: // 0x46
915 case DW_OP_lit23: // 0x47
916 case DW_OP_lit24: // 0x48
917 case DW_OP_lit25: // 0x49
918 case DW_OP_lit26: // 0x4A
919 case DW_OP_lit27: // 0x4B
920 case DW_OP_lit28: // 0x4C
921 case DW_OP_lit29: // 0x4D
922 case DW_OP_lit30: // 0x4E
923 case DW_OP_lit31: // 0x4f
924 case DW_OP_reg0: // 0x50
925 case DW_OP_reg1: // 0x51
926 case DW_OP_reg2: // 0x52
927 case DW_OP_reg3: // 0x53
928 case DW_OP_reg4: // 0x54
929 case DW_OP_reg5: // 0x55
930 case DW_OP_reg6: // 0x56
931 case DW_OP_reg7: // 0x57
932 case DW_OP_reg8: // 0x58
933 case DW_OP_reg9: // 0x59
934 case DW_OP_reg10: // 0x5A
935 case DW_OP_reg11: // 0x5B
936 case DW_OP_reg12: // 0x5C
937 case DW_OP_reg13: // 0x5D
938 case DW_OP_reg14: // 0x5E
939 case DW_OP_reg15: // 0x5F
940 case DW_OP_reg16: // 0x60
941 case DW_OP_reg17: // 0x61
942 case DW_OP_reg18: // 0x62
943 case DW_OP_reg19: // 0x63
944 case DW_OP_reg20: // 0x64
945 case DW_OP_reg21: // 0x65
946 case DW_OP_reg22: // 0x66
947 case DW_OP_reg23: // 0x67
948 case DW_OP_reg24: // 0x68
949 case DW_OP_reg25: // 0x69
950 case DW_OP_reg26: // 0x6A
951 case DW_OP_reg27: // 0x6B
952 case DW_OP_reg28: // 0x6C
953 case DW_OP_reg29: // 0x6D
954 case DW_OP_reg30: // 0x6E
955 case DW_OP_reg31: // 0x6F
956 case DW_OP_nop: // 0x96
957 case DW_OP_push_object_address: // 0x97 DWARF3
958 case DW_OP_form_tls_address: // 0x9b DWARF3
959 case DW_OP_call_frame_cfa: // 0x9c DWARF3
Greg Claytoneaeaf6f2011-12-01 04:06:15 +0000960 case DW_OP_stack_value: // 0x9f DWARF4
Richard Mitton0a558352013-10-17 21:14:00 +0000961 case DW_OP_GNU_push_tls_address: // 0xe0 GNU extension
962 return 0;
Greg Clayton2fc93ea2011-11-13 04:15:56 +0000963
964 // Opcodes with a single 1 byte arguments
965 case DW_OP_const1u: // 0x08 1 1-byte constant
966 case DW_OP_const1s: // 0x09 1 1-byte constant
967 case DW_OP_pick: // 0x15 1 1-byte stack index
968 case DW_OP_deref_size: // 0x94 1 1-byte size of data retrieved
969 case DW_OP_xderef_size: // 0x95 1 1-byte size of data retrieved
970 return 1;
971
972 // Opcodes with a single 2 byte arguments
973 case DW_OP_const2u: // 0x0a 1 2-byte constant
974 case DW_OP_const2s: // 0x0b 1 2-byte constant
975 case DW_OP_skip: // 0x2f 1 signed 2-byte constant
976 case DW_OP_bra: // 0x28 1 signed 2-byte constant
977 case DW_OP_call2: // 0x98 1 2-byte offset of DIE (DWARF3)
978 return 2;
979
980 // Opcodes with a single 4 byte arguments
981 case DW_OP_const4u: // 0x0c 1 4-byte constant
982 case DW_OP_const4s: // 0x0d 1 4-byte constant
983 case DW_OP_call4: // 0x99 1 4-byte offset of DIE (DWARF3)
984 return 4;
985
986 // Opcodes with a single 8 byte arguments
987 case DW_OP_const8u: // 0x0e 1 8-byte constant
988 case DW_OP_const8s: // 0x0f 1 8-byte constant
989 return 8;
990
991 // All opcodes that have a single ULEB (signed or unsigned) argument
992 case DW_OP_constu: // 0x10 1 ULEB128 constant
993 case DW_OP_consts: // 0x11 1 SLEB128 constant
994 case DW_OP_plus_uconst: // 0x23 1 ULEB128 addend
995 case DW_OP_breg0: // 0x70 1 ULEB128 register
996 case DW_OP_breg1: // 0x71 1 ULEB128 register
997 case DW_OP_breg2: // 0x72 1 ULEB128 register
998 case DW_OP_breg3: // 0x73 1 ULEB128 register
999 case DW_OP_breg4: // 0x74 1 ULEB128 register
1000 case DW_OP_breg5: // 0x75 1 ULEB128 register
1001 case DW_OP_breg6: // 0x76 1 ULEB128 register
1002 case DW_OP_breg7: // 0x77 1 ULEB128 register
1003 case DW_OP_breg8: // 0x78 1 ULEB128 register
1004 case DW_OP_breg9: // 0x79 1 ULEB128 register
1005 case DW_OP_breg10: // 0x7a 1 ULEB128 register
1006 case DW_OP_breg11: // 0x7b 1 ULEB128 register
1007 case DW_OP_breg12: // 0x7c 1 ULEB128 register
1008 case DW_OP_breg13: // 0x7d 1 ULEB128 register
1009 case DW_OP_breg14: // 0x7e 1 ULEB128 register
1010 case DW_OP_breg15: // 0x7f 1 ULEB128 register
1011 case DW_OP_breg16: // 0x80 1 ULEB128 register
1012 case DW_OP_breg17: // 0x81 1 ULEB128 register
1013 case DW_OP_breg18: // 0x82 1 ULEB128 register
1014 case DW_OP_breg19: // 0x83 1 ULEB128 register
1015 case DW_OP_breg20: // 0x84 1 ULEB128 register
1016 case DW_OP_breg21: // 0x85 1 ULEB128 register
1017 case DW_OP_breg22: // 0x86 1 ULEB128 register
1018 case DW_OP_breg23: // 0x87 1 ULEB128 register
1019 case DW_OP_breg24: // 0x88 1 ULEB128 register
1020 case DW_OP_breg25: // 0x89 1 ULEB128 register
1021 case DW_OP_breg26: // 0x8a 1 ULEB128 register
1022 case DW_OP_breg27: // 0x8b 1 ULEB128 register
1023 case DW_OP_breg28: // 0x8c 1 ULEB128 register
1024 case DW_OP_breg29: // 0x8d 1 ULEB128 register
1025 case DW_OP_breg30: // 0x8e 1 ULEB128 register
1026 case DW_OP_breg31: // 0x8f 1 ULEB128 register
1027 case DW_OP_regx: // 0x90 1 ULEB128 register
1028 case DW_OP_fbreg: // 0x91 1 SLEB128 offset
1029 case DW_OP_piece: // 0x93 1 ULEB128 size of piece addressed
1030 data.Skip_LEB128(&offset);
1031 return offset - data_offset;
1032
Greg Claytoneaeaf6f2011-12-01 04:06:15 +00001033 // All opcodes that have a 2 ULEB (signed or unsigned) arguments
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001034 case DW_OP_bregx: // 0x92 2 ULEB128 register followed by SLEB128 offset
1035 case DW_OP_bit_piece: // 0x9d ULEB128 bit size, ULEB128 bit offset (DWARF3);
1036 data.Skip_LEB128(&offset);
1037 data.Skip_LEB128(&offset);
1038 return offset - data_offset;
Greg Claytoneaeaf6f2011-12-01 04:06:15 +00001039
1040 case DW_OP_implicit_value: // 0x9e ULEB128 size followed by block of that size (DWARF4)
1041 {
1042 uint64_t block_len = data.Skip_LEB128(&offset);
1043 offset += block_len;
1044 return offset - data_offset;
1045 }
1046
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001047 default:
Greg Clayton96c09682012-01-04 22:56:43 +00001048 break;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001049 }
Greg Claytonc7bece562013-01-25 18:06:21 +00001050 return LLDB_INVALID_OFFSET;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001051}
1052
Greg Clayton9422dd62013-03-04 21:46:16 +00001053lldb::addr_t
1054DWARFExpression::GetLocation_DW_OP_addr (uint32_t op_addr_idx, bool &error) const
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001055{
Greg Clayton96c09682012-01-04 22:56:43 +00001056 error = false;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001057 if (IsLocationList())
Greg Clayton9422dd62013-03-04 21:46:16 +00001058 return LLDB_INVALID_ADDRESS;
Greg Claytonc7bece562013-01-25 18:06:21 +00001059 lldb::offset_t offset = 0;
Greg Clayton9422dd62013-03-04 21:46:16 +00001060 uint32_t curr_op_addr_idx = 0;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001061 while (m_data.ValidOffset(offset))
1062 {
1063 const uint8_t op = m_data.GetU8(&offset);
1064
1065 if (op == DW_OP_addr)
1066 {
Greg Clayton9422dd62013-03-04 21:46:16 +00001067 const lldb::addr_t op_file_addr = m_data.GetAddress(&offset);
1068 if (curr_op_addr_idx == op_addr_idx)
1069 return op_file_addr;
1070 else
1071 ++curr_op_addr_idx;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001072 }
1073 else
1074 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001075 const offset_t op_arg_size = GetOpcodeDataSize (m_data, offset, op);
1076 if (op_arg_size == LLDB_INVALID_OFFSET)
Greg Clayton96c09682012-01-04 22:56:43 +00001077 {
1078 error = true;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001079 break;
Greg Clayton96c09682012-01-04 22:56:43 +00001080 }
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001081 offset += op_arg_size;
1082 }
1083 }
Greg Clayton9422dd62013-03-04 21:46:16 +00001084 return LLDB_INVALID_ADDRESS;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001085}
1086
1087bool
1088DWARFExpression::Update_DW_OP_addr (lldb::addr_t file_addr)
1089{
1090 if (IsLocationList())
1091 return false;
Greg Claytonc7bece562013-01-25 18:06:21 +00001092 lldb::offset_t offset = 0;
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001093 while (m_data.ValidOffset(offset))
1094 {
1095 const uint8_t op = m_data.GetU8(&offset);
1096
1097 if (op == DW_OP_addr)
1098 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001099 const uint32_t addr_byte_size = m_data.GetAddressByteSize();
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001100 // We have to make a copy of the data as we don't know if this
1101 // data is from a read only memory mapped buffer, so we duplicate
1102 // all of the data first, then modify it, and if all goes well,
1103 // we then replace the data for this expression
1104
1105 // So first we copy the data into a heap buffer
Greg Clayton7b0992d2013-04-18 22:45:39 +00001106 std::unique_ptr<DataBufferHeap> head_data_ap (new DataBufferHeap (m_data.GetDataStart(),
Greg Claytone01e07b2013-04-18 18:10:51 +00001107 m_data.GetByteSize()));
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001108
1109 // Make en encoder so we can write the address into the buffer using
1110 // the correct byte order (endianness)
1111 DataEncoder encoder (head_data_ap->GetBytes(),
1112 head_data_ap->GetByteSize(),
1113 m_data.GetByteOrder(),
1114 addr_byte_size);
1115
1116 // Replace the address in the new buffer
1117 if (encoder.PutMaxU64 (offset, addr_byte_size, file_addr) == UINT32_MAX)
1118 return false;
1119
1120 // All went well, so now we can reset the data using a shared
1121 // pointer to the heap data so "m_data" will now correctly
1122 // manage the heap data.
1123 m_data.SetData (DataBufferSP (head_data_ap.release()));
1124 return true;
1125 }
1126 else
1127 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001128 const offset_t op_arg_size = GetOpcodeDataSize (m_data, offset, op);
1129 if (op_arg_size == LLDB_INVALID_OFFSET)
Greg Clayton2fc93ea2011-11-13 04:15:56 +00001130 break;
1131 offset += op_arg_size;
1132 }
1133 }
1134 return false;
1135}
1136
Greg Clayton9da7bd02010-08-24 21:05:24 +00001137bool
Greg Clayton016a95e2010-09-14 02:20:48 +00001138DWARFExpression::LocationListContainsAddress (lldb::addr_t loclist_base_addr, lldb::addr_t addr) const
Greg Clayton9da7bd02010-08-24 21:05:24 +00001139{
Greg Clayton016a95e2010-09-14 02:20:48 +00001140 if (addr == LLDB_INVALID_ADDRESS)
Greg Clayton9da7bd02010-08-24 21:05:24 +00001141 return false;
1142
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001143 if (IsLocationList())
1144 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001145 lldb::offset_t offset = 0;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001146
Greg Clayton016a95e2010-09-14 02:20:48 +00001147 if (loclist_base_addr == LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001148 return false;
1149
1150 while (m_data.ValidOffset(offset))
1151 {
1152 // We need to figure out what the value is for the location.
1153 addr_t lo_pc = m_data.GetAddress(&offset);
1154 addr_t hi_pc = m_data.GetAddress(&offset);
1155 if (lo_pc == 0 && hi_pc == 0)
1156 break;
1157 else
1158 {
Greg Clayton016a95e2010-09-14 02:20:48 +00001159 lo_pc += loclist_base_addr - m_loclist_slide;
1160 hi_pc += loclist_base_addr - m_loclist_slide;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001161
Greg Clayton016a95e2010-09-14 02:20:48 +00001162 if (lo_pc <= addr && addr < hi_pc)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001163 return true;
1164
1165 offset += m_data.GetU16(&offset);
1166 }
1167 }
1168 }
1169 return false;
1170}
Greg Clayton9da7bd02010-08-24 21:05:24 +00001171
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001172bool
Greg Claytonc7bece562013-01-25 18:06:21 +00001173DWARFExpression::GetLocation (addr_t base_addr, addr_t pc, lldb::offset_t &offset, lldb::offset_t &length)
Greg Claytonc749eb82011-07-11 05:12:02 +00001174{
1175 offset = 0;
1176 if (!IsLocationList())
1177 {
1178 length = m_data.GetByteSize();
1179 return true;
1180 }
1181
1182 if (base_addr != LLDB_INVALID_ADDRESS && pc != LLDB_INVALID_ADDRESS)
1183 {
1184 addr_t curr_base_addr = base_addr;
1185
1186 while (m_data.ValidOffset(offset))
1187 {
1188 // We need to figure out what the value is for the location.
1189 addr_t lo_pc = m_data.GetAddress(&offset);
1190 addr_t hi_pc = m_data.GetAddress(&offset);
1191 if (lo_pc == 0 && hi_pc == 0)
1192 {
1193 break;
1194 }
1195 else
1196 {
1197 lo_pc += curr_base_addr - m_loclist_slide;
1198 hi_pc += curr_base_addr - m_loclist_slide;
1199
1200 length = m_data.GetU16(&offset);
1201
1202 if (length > 0 && lo_pc <= pc && pc < hi_pc)
1203 return true;
1204
1205 offset += length;
1206 }
1207 }
1208 }
Greg Claytonc7bece562013-01-25 18:06:21 +00001209 offset = LLDB_INVALID_OFFSET;
Greg Claytonc749eb82011-07-11 05:12:02 +00001210 length = 0;
1211 return false;
1212}
1213
1214bool
1215DWARFExpression::DumpLocationForAddress (Stream *s,
1216 lldb::DescriptionLevel level,
1217 addr_t base_addr,
Greg Claytonafacd142011-09-02 01:15:17 +00001218 addr_t address,
1219 ABI *abi)
Greg Claytonc749eb82011-07-11 05:12:02 +00001220{
Greg Claytonc7bece562013-01-25 18:06:21 +00001221 lldb::offset_t offset = 0;
1222 lldb::offset_t length = 0;
Greg Claytonc749eb82011-07-11 05:12:02 +00001223
1224 if (GetLocation (base_addr, address, offset, length))
1225 {
1226 if (length > 0)
1227 {
Greg Claytonafacd142011-09-02 01:15:17 +00001228 DumpLocation(s, offset, length, level, abi);
Greg Claytonc749eb82011-07-11 05:12:02 +00001229 return true;
1230 }
1231 }
1232 return false;
1233}
1234
1235bool
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001236DWARFExpression::Evaluate
1237(
1238 ExecutionContextScope *exe_scope,
Greg Clayton1a65ae12011-01-25 23:55:37 +00001239 ClangExpressionVariableList *expr_locals,
1240 ClangExpressionDeclMap *decl_map,
Greg Clayton016a95e2010-09-14 02:20:48 +00001241 lldb::addr_t loclist_base_load_addr,
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001242 const Value* initial_value_ptr,
1243 Value& result,
1244 Error *error_ptr
1245) const
1246{
1247 ExecutionContext exe_ctx (exe_scope);
Greg Clayton57ee3062013-07-11 22:46:58 +00001248 return Evaluate(&exe_ctx, expr_locals, decl_map, NULL, loclist_base_load_addr, initial_value_ptr, result, error_ptr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001249}
1250
1251bool
1252DWARFExpression::Evaluate
1253(
1254 ExecutionContext *exe_ctx,
Greg Clayton1a65ae12011-01-25 23:55:37 +00001255 ClangExpressionVariableList *expr_locals,
1256 ClangExpressionDeclMap *decl_map,
Jason Molenda2d107dd2010-11-20 01:28:30 +00001257 RegisterContext *reg_ctx,
Greg Clayton016a95e2010-09-14 02:20:48 +00001258 lldb::addr_t loclist_base_load_addr,
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001259 const Value* initial_value_ptr,
1260 Value& result,
1261 Error *error_ptr
1262) const
1263{
Richard Mitton0a558352013-10-17 21:14:00 +00001264 ModuleSP module_sp = m_module_wp.lock();
1265
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001266 if (IsLocationList())
1267 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001268 lldb::offset_t offset = 0;
Jason Molenda2d107dd2010-11-20 01:28:30 +00001269 addr_t pc;
Jason Molendab57e4a12013-11-04 09:33:30 +00001270 StackFrame *frame = NULL;
Jason Molenda2d107dd2010-11-20 01:28:30 +00001271 if (reg_ctx)
1272 pc = reg_ctx->GetPC();
1273 else
Greg Claytonc14ee322011-09-22 04:58:26 +00001274 {
1275 frame = exe_ctx->GetFramePtr();
Sean Callananb7de9602012-03-10 03:03:46 +00001276 if (!frame)
1277 return false;
1278 RegisterContextSP reg_ctx_sp = frame->GetRegisterContext();
1279 if (!reg_ctx_sp)
1280 return false;
1281 pc = reg_ctx_sp->GetPC();
Greg Claytonc14ee322011-09-22 04:58:26 +00001282 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001283
Greg Clayton016a95e2010-09-14 02:20:48 +00001284 if (loclist_base_load_addr != LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001285 {
Greg Clayton016a95e2010-09-14 02:20:48 +00001286 if (pc == LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001287 {
Greg Clayton016a95e2010-09-14 02:20:48 +00001288 if (error_ptr)
1289 error_ptr->SetErrorString("Invalid PC in frame.");
1290 return false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001291 }
Greg Clayton016a95e2010-09-14 02:20:48 +00001292
1293 addr_t curr_loclist_base_load_addr = loclist_base_load_addr;
1294
1295 while (m_data.ValidOffset(offset))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001296 {
Greg Clayton016a95e2010-09-14 02:20:48 +00001297 // We need to figure out what the value is for the location.
1298 addr_t lo_pc = m_data.GetAddress(&offset);
1299 addr_t hi_pc = m_data.GetAddress(&offset);
1300 if (lo_pc == 0 && hi_pc == 0)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001301 {
Greg Clayton016a95e2010-09-14 02:20:48 +00001302 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001303 }
Greg Clayton016a95e2010-09-14 02:20:48 +00001304 else
1305 {
1306 lo_pc += curr_loclist_base_load_addr - m_loclist_slide;
1307 hi_pc += curr_loclist_base_load_addr - m_loclist_slide;
1308
1309 uint16_t length = m_data.GetU16(&offset);
1310
1311 if (length > 0 && lo_pc <= pc && pc < hi_pc)
1312 {
Richard Mitton0a558352013-10-17 21:14:00 +00001313 return DWARFExpression::Evaluate (exe_ctx, expr_locals, decl_map, reg_ctx, module_sp, m_data, offset, length, m_reg_kind, initial_value_ptr, result, error_ptr);
Greg Clayton016a95e2010-09-14 02:20:48 +00001314 }
1315 offset += length;
1316 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001317 }
1318 }
1319 if (error_ptr)
Greg Clayton007d5be2011-05-30 00:49:24 +00001320 error_ptr->SetErrorString ("variable not available");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001321 return false;
1322 }
1323
1324 // Not a location list, just a single expression.
Richard Mitton0a558352013-10-17 21:14:00 +00001325 return DWARFExpression::Evaluate (exe_ctx, expr_locals, decl_map, reg_ctx, module_sp, m_data, 0, m_data.GetByteSize(), m_reg_kind, initial_value_ptr, result, error_ptr);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001326}
1327
1328
1329
1330bool
1331DWARFExpression::Evaluate
1332(
1333 ExecutionContext *exe_ctx,
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001334 ClangExpressionVariableList *expr_locals,
1335 ClangExpressionDeclMap *decl_map,
Jason Molenda2d107dd2010-11-20 01:28:30 +00001336 RegisterContext *reg_ctx,
Enrico Granata4ec130d2014-08-11 19:16:35 +00001337 lldb::ModuleSP module_sp,
Greg Clayton1a65ae12011-01-25 23:55:37 +00001338 const DataExtractor& opcodes,
Greg Claytonc7bece562013-01-25 18:06:21 +00001339 const lldb::offset_t opcodes_offset,
1340 const lldb::offset_t opcodes_length,
Jean-Daniel Dupase7c7c3d2014-07-02 09:51:28 +00001341 const lldb::RegisterKind reg_kind,
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001342 const Value* initial_value_ptr,
1343 Value& result,
1344 Error *error_ptr
1345)
1346{
Greg Clayton9e9f2192013-05-17 00:55:28 +00001347
1348 if (opcodes_length == 0)
1349 {
1350 if (error_ptr)
1351 error_ptr->SetErrorString ("no location, value may have been optimized out");
1352 return false;
1353 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001354 std::vector<Value> stack;
1355
Greg Claytonc14ee322011-09-22 04:58:26 +00001356 Process *process = NULL;
Jason Molendab57e4a12013-11-04 09:33:30 +00001357 StackFrame *frame = NULL;
Greg Claytonc14ee322011-09-22 04:58:26 +00001358
1359 if (exe_ctx)
1360 {
1361 process = exe_ctx->GetProcessPtr();
1362 frame = exe_ctx->GetFramePtr();
1363 }
1364 if (reg_ctx == NULL && frame)
1365 reg_ctx = frame->GetRegisterContext().get();
Jason Molenda2d107dd2010-11-20 01:28:30 +00001366
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001367 if (initial_value_ptr)
1368 stack.push_back(*initial_value_ptr);
1369
Greg Claytonc7bece562013-01-25 18:06:21 +00001370 lldb::offset_t offset = opcodes_offset;
1371 const lldb::offset_t end_offset = opcodes_offset + opcodes_length;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001372 Value tmp;
1373 uint32_t reg_num;
1374
Greg Clayton27407872014-07-12 00:24:33 +00001375 /// Insertion point for evaluating multi-piece expression.
1376 uint64_t op_piece_offset = 0;
Greg Claytonac583612014-07-31 18:19:28 +00001377 Value pieces; // Used for DW_OP_piece
Greg Clayton27407872014-07-12 00:24:33 +00001378
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001379 // Make sure all of the data is available in opcodes.
1380 if (!opcodes.ValidOffsetForDataOfSize(opcodes_offset, opcodes_length))
1381 {
1382 if (error_ptr)
Greg Clayton9e9f2192013-05-17 00:55:28 +00001383 error_ptr->SetErrorString ("invalid offset and/or length for opcodes buffer.");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001384 return false;
1385 }
Greg Clayton5160ce52013-03-27 23:08:40 +00001386 Log *log(lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001387
1388
1389 while (opcodes.ValidOffset(offset) && offset < end_offset)
1390 {
Greg Claytonc7bece562013-01-25 18:06:21 +00001391 const lldb::offset_t op_offset = offset;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001392 const uint8_t op = opcodes.GetU8(&offset);
1393
Sean Callanan7dd98122011-10-14 20:34:21 +00001394 if (log && log->GetVerbose())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001395 {
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001396 size_t count = stack.size();
Greg Clayton6fea17e2014-03-03 19:15:20 +00001397 log->Printf("Stack before operation has %" PRIu64 " values:", (uint64_t)count);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001398 for (size_t i=0; i<count; ++i)
1399 {
1400 StreamString new_value;
Daniel Malead01b2952012-11-29 21:49:15 +00001401 new_value.Printf("[%" PRIu64 "]", (uint64_t)i);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001402 stack[i].Dump(&new_value);
Sean Callananf06ba8d2010-06-23 00:47:48 +00001403 log->Printf(" %s", new_value.GetData());
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001404 }
Greg Claytonc7bece562013-01-25 18:06:21 +00001405 log->Printf("0x%8.8" PRIx64 ": %s", op_offset, DW_OP_value_to_name(op));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001406 }
1407 switch (op)
1408 {
1409 //----------------------------------------------------------------------
1410 // The DW_OP_addr operation has a single operand that encodes a machine
1411 // address and whose size is the size of an address on the target machine.
1412 //----------------------------------------------------------------------
1413 case DW_OP_addr:
Greg Clayton644247c2011-07-07 01:59:51 +00001414 stack.push_back(Scalar(opcodes.GetAddress(&offset)));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001415 stack.back().SetValueType (Value::eValueTypeFileAddress);
1416 break;
1417
1418 //----------------------------------------------------------------------
1419 // The DW_OP_addr_sect_offset4 is used for any location expressions in
1420 // shared libraries that have a location like:
1421 // DW_OP_addr(0x1000)
1422 // If this address resides in a shared library, then this virtual
1423 // address won't make sense when it is evaluated in the context of a
1424 // running process where shared libraries have been slid. To account for
1425 // this, this new address type where we can store the section pointer
1426 // and a 4 byte offset.
1427 //----------------------------------------------------------------------
1428// case DW_OP_addr_sect_offset4:
1429// {
1430// result_type = eResultTypeFileAddress;
1431// lldb::Section *sect = (lldb::Section *)opcodes.GetMaxU64(&offset, sizeof(void *));
1432// lldb::addr_t sect_offset = opcodes.GetU32(&offset);
1433//
1434// Address so_addr (sect, sect_offset);
1435// lldb::addr_t load_addr = so_addr.GetLoadAddress();
1436// if (load_addr != LLDB_INVALID_ADDRESS)
1437// {
1438// // We successfully resolve a file address to a load
1439// // address.
1440// stack.push_back(load_addr);
1441// break;
1442// }
1443// else
1444// {
1445// // We were able
1446// if (error_ptr)
1447// error_ptr->SetErrorStringWithFormat ("Section %s in %s is not currently loaded.\n", sect->GetName().AsCString(), sect->GetModule()->GetFileSpec().GetFilename().AsCString());
1448// return false;
1449// }
1450// }
1451// break;
1452
1453 //----------------------------------------------------------------------
1454 // OPCODE: DW_OP_deref
1455 // OPERANDS: none
1456 // DESCRIPTION: Pops the top stack entry and treats it as an address.
1457 // The value retrieved from that address is pushed. The size of the
1458 // data retrieved from the dereferenced address is the size of an
1459 // address on the target machine.
1460 //----------------------------------------------------------------------
1461 case DW_OP_deref:
1462 {
Ed Maste93447872014-01-13 14:53:09 +00001463 if (stack.empty())
1464 {
1465 if (error_ptr)
1466 error_ptr->SetErrorString("Expression stack empty for DW_OP_deref.");
1467 return false;
1468 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001469 Value::ValueType value_type = stack.back().GetValueType();
1470 switch (value_type)
1471 {
1472 case Value::eValueTypeHostAddress:
1473 {
1474 void *src = (void *)stack.back().GetScalar().ULongLong();
1475 intptr_t ptr;
1476 ::memcpy (&ptr, src, sizeof(void *));
1477 stack.back().GetScalar() = ptr;
1478 stack.back().ClearContext();
1479 }
1480 break;
1481 case Value::eValueTypeLoadAddress:
1482 if (exe_ctx)
1483 {
Greg Claytonc14ee322011-09-22 04:58:26 +00001484 if (process)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001485 {
1486 lldb::addr_t pointer_addr = stack.back().GetScalar().ULongLong(LLDB_INVALID_ADDRESS);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001487 Error error;
Ed Masted4779d52014-07-30 19:33:25 +00001488 lldb::addr_t pointer_value = process->ReadPointerFromMemory(pointer_addr, error);
Greg Clayton4d043092014-07-30 18:34:58 +00001489 if (pointer_value != LLDB_INVALID_ADDRESS)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001490 {
Greg Clayton4d043092014-07-30 18:34:58 +00001491 stack.back().GetScalar() = pointer_value;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001492 stack.back().ClearContext();
1493 }
1494 else
1495 {
1496 if (error_ptr)
Daniel Malead01b2952012-11-29 21:49:15 +00001497 error_ptr->SetErrorStringWithFormat ("Failed to dereference pointer from 0x%" PRIx64 " for DW_OP_deref: %s\n",
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001498 pointer_addr,
1499 error.AsCString());
1500 return false;
1501 }
1502 }
1503 else
1504 {
1505 if (error_ptr)
1506 error_ptr->SetErrorStringWithFormat ("NULL process for DW_OP_deref.\n");
1507 return false;
1508 }
1509 }
1510 else
1511 {
1512 if (error_ptr)
1513 error_ptr->SetErrorStringWithFormat ("NULL execution context for DW_OP_deref.\n");
1514 return false;
1515 }
1516 break;
1517
1518 default:
1519 break;
1520 }
1521
1522 }
1523 break;
1524
1525 //----------------------------------------------------------------------
1526 // OPCODE: DW_OP_deref_size
1527 // OPERANDS: 1
1528 // 1 - uint8_t that specifies the size of the data to dereference.
1529 // DESCRIPTION: Behaves like the DW_OP_deref operation: it pops the top
1530 // stack entry and treats it as an address. The value retrieved from that
1531 // address is pushed. In the DW_OP_deref_size operation, however, the
1532 // size in bytes of the data retrieved from the dereferenced address is
1533 // specified by the single operand. This operand is a 1-byte unsigned
1534 // integral constant whose value may not be larger than the size of an
1535 // address on the target machine. The data retrieved is zero extended
1536 // to the size of an address on the target machine before being pushed
1537 // on the expression stack.
1538 //----------------------------------------------------------------------
1539 case DW_OP_deref_size:
Jason Molenda2d107dd2010-11-20 01:28:30 +00001540 {
Ed Maste93447872014-01-13 14:53:09 +00001541 if (stack.empty())
1542 {
1543 if (error_ptr)
1544 error_ptr->SetErrorString("Expression stack empty for DW_OP_deref_size.");
1545 return false;
1546 }
Jason Molenda2d107dd2010-11-20 01:28:30 +00001547 uint8_t size = opcodes.GetU8(&offset);
1548 Value::ValueType value_type = stack.back().GetValueType();
1549 switch (value_type)
1550 {
1551 case Value::eValueTypeHostAddress:
1552 {
1553 void *src = (void *)stack.back().GetScalar().ULongLong();
1554 intptr_t ptr;
1555 ::memcpy (&ptr, src, sizeof(void *));
1556 // I can't decide whether the size operand should apply to the bytes in their
1557 // lldb-host endianness or the target endianness.. I doubt this'll ever come up
1558 // but I'll opt for assuming big endian regardless.
1559 switch (size)
1560 {
1561 case 1: ptr = ptr & 0xff; break;
1562 case 2: ptr = ptr & 0xffff; break;
1563 case 3: ptr = ptr & 0xffffff; break;
1564 case 4: ptr = ptr & 0xffffffff; break;
Jason Molendac1903402010-11-29 21:38:58 +00001565 // the casts are added to work around the case where intptr_t is a 32 bit quantity;
1566 // presumably we won't hit the 5..7 cases if (void*) is 32-bits in this program.
1567 case 5: ptr = (intptr_t) ptr & 0xffffffffffULL; break;
1568 case 6: ptr = (intptr_t) ptr & 0xffffffffffffULL; break;
1569 case 7: ptr = (intptr_t) ptr & 0xffffffffffffffULL; break;
Jason Molenda2d107dd2010-11-20 01:28:30 +00001570 default: break;
1571 }
1572 stack.back().GetScalar() = ptr;
1573 stack.back().ClearContext();
1574 }
1575 break;
1576 case Value::eValueTypeLoadAddress:
1577 if (exe_ctx)
1578 {
Greg Claytonc14ee322011-09-22 04:58:26 +00001579 if (process)
Jason Molenda2d107dd2010-11-20 01:28:30 +00001580 {
1581 lldb::addr_t pointer_addr = stack.back().GetScalar().ULongLong(LLDB_INVALID_ADDRESS);
1582 uint8_t addr_bytes[sizeof(lldb::addr_t)];
1583 Error error;
Greg Claytonc14ee322011-09-22 04:58:26 +00001584 if (process->ReadMemory(pointer_addr, &addr_bytes, size, error) == size)
Jason Molenda2d107dd2010-11-20 01:28:30 +00001585 {
Greg Claytonc14ee322011-09-22 04:58:26 +00001586 DataExtractor addr_data(addr_bytes, sizeof(addr_bytes), process->GetByteOrder(), size);
Greg Claytonc7bece562013-01-25 18:06:21 +00001587 lldb::offset_t addr_data_offset = 0;
Jason Molenda2d107dd2010-11-20 01:28:30 +00001588 switch (size)
1589 {
1590 case 1: stack.back().GetScalar() = addr_data.GetU8(&addr_data_offset); break;
1591 case 2: stack.back().GetScalar() = addr_data.GetU16(&addr_data_offset); break;
1592 case 4: stack.back().GetScalar() = addr_data.GetU32(&addr_data_offset); break;
1593 case 8: stack.back().GetScalar() = addr_data.GetU64(&addr_data_offset); break;
1594 default: stack.back().GetScalar() = addr_data.GetPointer(&addr_data_offset);
1595 }
1596 stack.back().ClearContext();
1597 }
1598 else
1599 {
1600 if (error_ptr)
Daniel Malead01b2952012-11-29 21:49:15 +00001601 error_ptr->SetErrorStringWithFormat ("Failed to dereference pointer from 0x%" PRIx64 " for DW_OP_deref: %s\n",
Jason Molenda2d107dd2010-11-20 01:28:30 +00001602 pointer_addr,
1603 error.AsCString());
1604 return false;
1605 }
1606 }
1607 else
1608 {
1609 if (error_ptr)
1610 error_ptr->SetErrorStringWithFormat ("NULL process for DW_OP_deref.\n");
1611 return false;
1612 }
1613 }
1614 else
1615 {
1616 if (error_ptr)
1617 error_ptr->SetErrorStringWithFormat ("NULL execution context for DW_OP_deref.\n");
1618 return false;
1619 }
1620 break;
1621
1622 default:
1623 break;
1624 }
1625
1626 }
1627 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001628
1629 //----------------------------------------------------------------------
1630 // OPCODE: DW_OP_xderef_size
1631 // OPERANDS: 1
1632 // 1 - uint8_t that specifies the size of the data to dereference.
1633 // DESCRIPTION: Behaves like the DW_OP_xderef operation: the entry at
1634 // the top of the stack is treated as an address. The second stack
Greg Clayton1b72fcb2010-08-24 00:45:41 +00001635 // entry is treated as an "address space identifier" for those
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001636 // architectures that support multiple address spaces. The top two
1637 // stack elements are popped, a data item is retrieved through an
1638 // implementation-defined address calculation and pushed as the new
1639 // stack top. In the DW_OP_xderef_size operation, however, the size in
1640 // bytes of the data retrieved from the dereferenced address is
1641 // specified by the single operand. This operand is a 1-byte unsigned
1642 // integral constant whose value may not be larger than the size of an
1643 // address on the target machine. The data retrieved is zero extended
1644 // to the size of an address on the target machine before being pushed
1645 // on the expression stack.
1646 //----------------------------------------------------------------------
1647 case DW_OP_xderef_size:
1648 if (error_ptr)
1649 error_ptr->SetErrorString("Unimplemented opcode: DW_OP_xderef_size.");
1650 return false;
1651 //----------------------------------------------------------------------
1652 // OPCODE: DW_OP_xderef
1653 // OPERANDS: none
1654 // DESCRIPTION: Provides an extended dereference mechanism. The entry at
1655 // the top of the stack is treated as an address. The second stack entry
1656 // is treated as an "address space identifier" for those architectures
1657 // that support multiple address spaces. The top two stack elements are
1658 // popped, a data item is retrieved through an implementation-defined
1659 // address calculation and pushed as the new stack top. The size of the
1660 // data retrieved from the dereferenced address is the size of an address
1661 // on the target machine.
1662 //----------------------------------------------------------------------
1663 case DW_OP_xderef:
1664 if (error_ptr)
1665 error_ptr->SetErrorString("Unimplemented opcode: DW_OP_xderef.");
1666 return false;
1667
1668 //----------------------------------------------------------------------
1669 // All DW_OP_constXXX opcodes have a single operand as noted below:
1670 //
1671 // Opcode Operand 1
1672 // --------------- ----------------------------------------------------
1673 // DW_OP_const1u 1-byte unsigned integer constant
1674 // DW_OP_const1s 1-byte signed integer constant
1675 // DW_OP_const2u 2-byte unsigned integer constant
1676 // DW_OP_const2s 2-byte signed integer constant
1677 // DW_OP_const4u 4-byte unsigned integer constant
1678 // DW_OP_const4s 4-byte signed integer constant
1679 // DW_OP_const8u 8-byte unsigned integer constant
1680 // DW_OP_const8s 8-byte signed integer constant
1681 // DW_OP_constu unsigned LEB128 integer constant
1682 // DW_OP_consts signed LEB128 integer constant
1683 //----------------------------------------------------------------------
Greg Clayton644247c2011-07-07 01:59:51 +00001684 case DW_OP_const1u : stack.push_back(Scalar(( uint8_t)opcodes.GetU8 (&offset))); break;
1685 case DW_OP_const1s : stack.push_back(Scalar(( int8_t)opcodes.GetU8 (&offset))); break;
1686 case DW_OP_const2u : stack.push_back(Scalar((uint16_t)opcodes.GetU16 (&offset))); break;
1687 case DW_OP_const2s : stack.push_back(Scalar(( int16_t)opcodes.GetU16 (&offset))); break;
1688 case DW_OP_const4u : stack.push_back(Scalar((uint32_t)opcodes.GetU32 (&offset))); break;
1689 case DW_OP_const4s : stack.push_back(Scalar(( int32_t)opcodes.GetU32 (&offset))); break;
1690 case DW_OP_const8u : stack.push_back(Scalar((uint64_t)opcodes.GetU64 (&offset))); break;
1691 case DW_OP_const8s : stack.push_back(Scalar(( int64_t)opcodes.GetU64 (&offset))); break;
1692 case DW_OP_constu : stack.push_back(Scalar(opcodes.GetULEB128 (&offset))); break;
1693 case DW_OP_consts : stack.push_back(Scalar(opcodes.GetSLEB128 (&offset))); break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001694
1695 //----------------------------------------------------------------------
1696 // OPCODE: DW_OP_dup
1697 // OPERANDS: none
1698 // DESCRIPTION: duplicates the value at the top of the stack
1699 //----------------------------------------------------------------------
1700 case DW_OP_dup:
1701 if (stack.empty())
1702 {
1703 if (error_ptr)
1704 error_ptr->SetErrorString("Expression stack empty for DW_OP_dup.");
1705 return false;
1706 }
1707 else
1708 stack.push_back(stack.back());
1709 break;
1710
1711 //----------------------------------------------------------------------
1712 // OPCODE: DW_OP_drop
1713 // OPERANDS: none
1714 // DESCRIPTION: pops the value at the top of the stack
1715 //----------------------------------------------------------------------
1716 case DW_OP_drop:
1717 if (stack.empty())
1718 {
1719 if (error_ptr)
1720 error_ptr->SetErrorString("Expression stack empty for DW_OP_drop.");
1721 return false;
1722 }
1723 else
1724 stack.pop_back();
1725 break;
1726
1727 //----------------------------------------------------------------------
1728 // OPCODE: DW_OP_over
1729 // OPERANDS: none
1730 // DESCRIPTION: Duplicates the entry currently second in the stack at
1731 // the top of the stack.
1732 //----------------------------------------------------------------------
1733 case DW_OP_over:
1734 if (stack.size() < 2)
1735 {
1736 if (error_ptr)
1737 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_over.");
1738 return false;
1739 }
1740 else
1741 stack.push_back(stack[stack.size() - 2]);
1742 break;
1743
1744
1745 //----------------------------------------------------------------------
1746 // OPCODE: DW_OP_pick
1747 // OPERANDS: uint8_t index into the current stack
1748 // DESCRIPTION: The stack entry with the specified index (0 through 255,
1749 // inclusive) is pushed on the stack
1750 //----------------------------------------------------------------------
1751 case DW_OP_pick:
1752 {
1753 uint8_t pick_idx = opcodes.GetU8(&offset);
1754 if (pick_idx < stack.size())
1755 stack.push_back(stack[pick_idx]);
1756 else
1757 {
1758 if (error_ptr)
1759 error_ptr->SetErrorStringWithFormat("Index %u out of range for DW_OP_pick.\n", pick_idx);
1760 return false;
1761 }
1762 }
1763 break;
1764
1765 //----------------------------------------------------------------------
1766 // OPCODE: DW_OP_swap
1767 // OPERANDS: none
1768 // DESCRIPTION: swaps the top two stack entries. The entry at the top
1769 // of the stack becomes the second stack entry, and the second entry
1770 // becomes the top of the stack
1771 //----------------------------------------------------------------------
1772 case DW_OP_swap:
1773 if (stack.size() < 2)
1774 {
1775 if (error_ptr)
1776 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_swap.");
1777 return false;
1778 }
1779 else
1780 {
1781 tmp = stack.back();
1782 stack.back() = stack[stack.size() - 2];
1783 stack[stack.size() - 2] = tmp;
1784 }
1785 break;
1786
1787 //----------------------------------------------------------------------
1788 // OPCODE: DW_OP_rot
1789 // OPERANDS: none
1790 // DESCRIPTION: Rotates the first three stack entries. The entry at
1791 // the top of the stack becomes the third stack entry, the second
1792 // entry becomes the top of the stack, and the third entry becomes
1793 // the second entry.
1794 //----------------------------------------------------------------------
1795 case DW_OP_rot:
1796 if (stack.size() < 3)
1797 {
1798 if (error_ptr)
1799 error_ptr->SetErrorString("Expression stack needs at least 3 items for DW_OP_rot.");
1800 return false;
1801 }
1802 else
1803 {
1804 size_t last_idx = stack.size() - 1;
1805 Value old_top = stack[last_idx];
1806 stack[last_idx] = stack[last_idx - 1];
1807 stack[last_idx - 1] = stack[last_idx - 2];
1808 stack[last_idx - 2] = old_top;
1809 }
1810 break;
1811
1812 //----------------------------------------------------------------------
1813 // OPCODE: DW_OP_abs
1814 // OPERANDS: none
1815 // DESCRIPTION: pops the top stack entry, interprets it as a signed
1816 // value and pushes its absolute value. If the absolute value can not be
1817 // represented, the result is undefined.
1818 //----------------------------------------------------------------------
1819 case DW_OP_abs:
1820 if (stack.empty())
1821 {
1822 if (error_ptr)
1823 error_ptr->SetErrorString("Expression stack needs at least 1 item for DW_OP_abs.");
1824 return false;
1825 }
Greg Clayton57ee3062013-07-11 22:46:58 +00001826 else if (stack.back().ResolveValue(exe_ctx).AbsoluteValue() == false)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001827 {
1828 if (error_ptr)
1829 error_ptr->SetErrorString("Failed to take the absolute value of the first stack item.");
1830 return false;
1831 }
1832 break;
1833
1834 //----------------------------------------------------------------------
1835 // OPCODE: DW_OP_and
1836 // OPERANDS: none
1837 // DESCRIPTION: pops the top two stack values, performs a bitwise and
1838 // operation on the two, and pushes the result.
1839 //----------------------------------------------------------------------
1840 case DW_OP_and:
1841 if (stack.size() < 2)
1842 {
1843 if (error_ptr)
1844 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_and.");
1845 return false;
1846 }
1847 else
1848 {
1849 tmp = stack.back();
1850 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001851 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) & tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001852 }
1853 break;
1854
1855 //----------------------------------------------------------------------
1856 // OPCODE: DW_OP_div
1857 // OPERANDS: none
1858 // DESCRIPTION: pops the top two stack values, divides the former second
1859 // entry by the former top of the stack using signed division, and
1860 // pushes the result.
1861 //----------------------------------------------------------------------
1862 case DW_OP_div:
1863 if (stack.size() < 2)
1864 {
1865 if (error_ptr)
1866 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_div.");
1867 return false;
1868 }
1869 else
1870 {
1871 tmp = stack.back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001872 if (tmp.ResolveValue(exe_ctx).IsZero())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001873 {
1874 if (error_ptr)
1875 error_ptr->SetErrorString("Divide by zero.");
1876 return false;
1877 }
1878 else
1879 {
1880 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001881 stack.back() = stack.back().ResolveValue(exe_ctx) / tmp.ResolveValue(exe_ctx);
1882 if (!stack.back().ResolveValue(exe_ctx).IsValid())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001883 {
1884 if (error_ptr)
1885 error_ptr->SetErrorString("Divide failed.");
1886 return false;
1887 }
1888 }
1889 }
1890 break;
1891
1892 //----------------------------------------------------------------------
1893 // OPCODE: DW_OP_minus
1894 // OPERANDS: none
1895 // DESCRIPTION: pops the top two stack values, subtracts the former top
1896 // of the stack from the former second entry, and pushes the result.
1897 //----------------------------------------------------------------------
1898 case DW_OP_minus:
1899 if (stack.size() < 2)
1900 {
1901 if (error_ptr)
1902 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_minus.");
1903 return false;
1904 }
1905 else
1906 {
1907 tmp = stack.back();
1908 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001909 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) - tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001910 }
1911 break;
1912
1913 //----------------------------------------------------------------------
1914 // OPCODE: DW_OP_mod
1915 // OPERANDS: none
1916 // DESCRIPTION: pops the top two stack values and pushes the result of
1917 // the calculation: former second stack entry modulo the former top of
1918 // the stack.
1919 //----------------------------------------------------------------------
1920 case DW_OP_mod:
1921 if (stack.size() < 2)
1922 {
1923 if (error_ptr)
1924 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_mod.");
1925 return false;
1926 }
1927 else
1928 {
1929 tmp = stack.back();
1930 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001931 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) % tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001932 }
1933 break;
1934
1935
1936 //----------------------------------------------------------------------
1937 // OPCODE: DW_OP_mul
1938 // OPERANDS: none
1939 // DESCRIPTION: pops the top two stack entries, multiplies them
1940 // together, and pushes the result.
1941 //----------------------------------------------------------------------
1942 case DW_OP_mul:
1943 if (stack.size() < 2)
1944 {
1945 if (error_ptr)
1946 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_mul.");
1947 return false;
1948 }
1949 else
1950 {
1951 tmp = stack.back();
1952 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00001953 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) * tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001954 }
1955 break;
1956
1957 //----------------------------------------------------------------------
1958 // OPCODE: DW_OP_neg
1959 // OPERANDS: none
1960 // DESCRIPTION: pops the top stack entry, and pushes its negation.
1961 //----------------------------------------------------------------------
1962 case DW_OP_neg:
1963 if (stack.empty())
1964 {
1965 if (error_ptr)
1966 error_ptr->SetErrorString("Expression stack needs at least 1 item for DW_OP_neg.");
1967 return false;
1968 }
1969 else
1970 {
Greg Clayton57ee3062013-07-11 22:46:58 +00001971 if (stack.back().ResolveValue(exe_ctx).UnaryNegate() == false)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001972 {
1973 if (error_ptr)
1974 error_ptr->SetErrorString("Unary negate failed.");
1975 return false;
1976 }
1977 }
1978 break;
1979
1980 //----------------------------------------------------------------------
1981 // OPCODE: DW_OP_not
1982 // OPERANDS: none
1983 // DESCRIPTION: pops the top stack entry, and pushes its bitwise
1984 // complement
1985 //----------------------------------------------------------------------
1986 case DW_OP_not:
1987 if (stack.empty())
1988 {
1989 if (error_ptr)
1990 error_ptr->SetErrorString("Expression stack needs at least 1 item for DW_OP_not.");
1991 return false;
1992 }
1993 else
1994 {
Greg Clayton57ee3062013-07-11 22:46:58 +00001995 if (stack.back().ResolveValue(exe_ctx).OnesComplement() == false)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00001996 {
1997 if (error_ptr)
1998 error_ptr->SetErrorString("Logical NOT failed.");
1999 return false;
2000 }
2001 }
2002 break;
2003
2004 //----------------------------------------------------------------------
2005 // OPCODE: DW_OP_or
2006 // OPERANDS: none
2007 // DESCRIPTION: pops the top two stack entries, performs a bitwise or
2008 // operation on the two, and pushes the result.
2009 //----------------------------------------------------------------------
2010 case DW_OP_or:
2011 if (stack.size() < 2)
2012 {
2013 if (error_ptr)
2014 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_or.");
2015 return false;
2016 }
2017 else
2018 {
2019 tmp = stack.back();
2020 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002021 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) | tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002022 }
2023 break;
2024
2025 //----------------------------------------------------------------------
2026 // OPCODE: DW_OP_plus
2027 // OPERANDS: none
2028 // DESCRIPTION: pops the top two stack entries, adds them together, and
2029 // pushes the result.
2030 //----------------------------------------------------------------------
2031 case DW_OP_plus:
2032 if (stack.size() < 2)
2033 {
2034 if (error_ptr)
2035 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_plus.");
2036 return false;
2037 }
2038 else
2039 {
2040 tmp = stack.back();
2041 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002042 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) + tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002043 }
2044 break;
2045
2046 //----------------------------------------------------------------------
2047 // OPCODE: DW_OP_plus_uconst
2048 // OPERANDS: none
2049 // DESCRIPTION: pops the top stack entry, adds it to the unsigned LEB128
2050 // constant operand and pushes the result.
2051 //----------------------------------------------------------------------
2052 case DW_OP_plus_uconst:
2053 if (stack.empty())
2054 {
2055 if (error_ptr)
2056 error_ptr->SetErrorString("Expression stack needs at least 1 item for DW_OP_plus_uconst.");
2057 return false;
2058 }
2059 else
2060 {
Greg Claytonc7bece562013-01-25 18:06:21 +00002061 const uint64_t uconst_value = opcodes.GetULEB128(&offset);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002062 // Implicit conversion from a UINT to a Scalar...
Greg Clayton57ee3062013-07-11 22:46:58 +00002063 stack.back().ResolveValue(exe_ctx) += uconst_value;
2064 if (!stack.back().ResolveValue(exe_ctx).IsValid())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002065 {
2066 if (error_ptr)
2067 error_ptr->SetErrorString("DW_OP_plus_uconst failed.");
2068 return false;
2069 }
2070 }
2071 break;
2072
2073 //----------------------------------------------------------------------
2074 // OPCODE: DW_OP_shl
2075 // OPERANDS: none
2076 // DESCRIPTION: pops the top two stack entries, shifts the former
2077 // second entry left by the number of bits specified by the former top
2078 // of the stack, and pushes the result.
2079 //----------------------------------------------------------------------
2080 case DW_OP_shl:
2081 if (stack.size() < 2)
2082 {
2083 if (error_ptr)
2084 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_shl.");
2085 return false;
2086 }
2087 else
2088 {
2089 tmp = stack.back();
2090 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002091 stack.back().ResolveValue(exe_ctx) <<= tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002092 }
2093 break;
2094
2095 //----------------------------------------------------------------------
2096 // OPCODE: DW_OP_shr
2097 // OPERANDS: none
2098 // DESCRIPTION: pops the top two stack entries, shifts the former second
2099 // entry right logically (filling with zero bits) by the number of bits
2100 // specified by the former top of the stack, and pushes the result.
2101 //----------------------------------------------------------------------
2102 case DW_OP_shr:
2103 if (stack.size() < 2)
2104 {
2105 if (error_ptr)
2106 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_shr.");
2107 return false;
2108 }
2109 else
2110 {
2111 tmp = stack.back();
2112 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002113 if (stack.back().ResolveValue(exe_ctx).ShiftRightLogical(tmp.ResolveValue(exe_ctx)) == false)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002114 {
2115 if (error_ptr)
2116 error_ptr->SetErrorString("DW_OP_shr failed.");
2117 return false;
2118 }
2119 }
2120 break;
2121
2122 //----------------------------------------------------------------------
2123 // OPCODE: DW_OP_shra
2124 // OPERANDS: none
2125 // DESCRIPTION: pops the top two stack entries, shifts the former second
2126 // entry right arithmetically (divide the magnitude by 2, keep the same
2127 // sign for the result) by the number of bits specified by the former
2128 // top of the stack, and pushes the result.
2129 //----------------------------------------------------------------------
2130 case DW_OP_shra:
2131 if (stack.size() < 2)
2132 {
2133 if (error_ptr)
2134 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_shra.");
2135 return false;
2136 }
2137 else
2138 {
2139 tmp = stack.back();
2140 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002141 stack.back().ResolveValue(exe_ctx) >>= tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002142 }
2143 break;
2144
2145 //----------------------------------------------------------------------
2146 // OPCODE: DW_OP_xor
2147 // OPERANDS: none
2148 // DESCRIPTION: pops the top two stack entries, performs the bitwise
2149 // exclusive-or operation on the two, and pushes the result.
2150 //----------------------------------------------------------------------
2151 case DW_OP_xor:
2152 if (stack.size() < 2)
2153 {
2154 if (error_ptr)
2155 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_xor.");
2156 return false;
2157 }
2158 else
2159 {
2160 tmp = stack.back();
2161 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002162 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) ^ tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002163 }
2164 break;
2165
2166
2167 //----------------------------------------------------------------------
2168 // OPCODE: DW_OP_skip
2169 // OPERANDS: int16_t
2170 // DESCRIPTION: An unconditional branch. Its single operand is a 2-byte
2171 // signed integer constant. The 2-byte constant is the number of bytes
2172 // of the DWARF expression to skip forward or backward from the current
2173 // operation, beginning after the 2-byte constant.
2174 //----------------------------------------------------------------------
2175 case DW_OP_skip:
2176 {
2177 int16_t skip_offset = (int16_t)opcodes.GetU16(&offset);
Greg Claytonc7bece562013-01-25 18:06:21 +00002178 lldb::offset_t new_offset = offset + skip_offset;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002179 if (new_offset >= opcodes_offset && new_offset < end_offset)
2180 offset = new_offset;
2181 else
2182 {
2183 if (error_ptr)
2184 error_ptr->SetErrorString("Invalid opcode offset in DW_OP_skip.");
2185 return false;
2186 }
2187 }
2188 break;
2189
2190 //----------------------------------------------------------------------
2191 // OPCODE: DW_OP_bra
2192 // OPERANDS: int16_t
2193 // DESCRIPTION: A conditional branch. Its single operand is a 2-byte
2194 // signed integer constant. This operation pops the top of stack. If
2195 // the value popped is not the constant 0, the 2-byte constant operand
2196 // is the number of bytes of the DWARF expression to skip forward or
2197 // backward from the current operation, beginning after the 2-byte
2198 // constant.
2199 //----------------------------------------------------------------------
2200 case DW_OP_bra:
2201 {
2202 tmp = stack.back();
2203 stack.pop_back();
2204 int16_t bra_offset = (int16_t)opcodes.GetU16(&offset);
2205 Scalar zero(0);
Greg Clayton57ee3062013-07-11 22:46:58 +00002206 if (tmp.ResolveValue(exe_ctx) != zero)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002207 {
Greg Claytonc7bece562013-01-25 18:06:21 +00002208 lldb::offset_t new_offset = offset + bra_offset;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002209 if (new_offset >= opcodes_offset && new_offset < end_offset)
2210 offset = new_offset;
2211 else
2212 {
2213 if (error_ptr)
2214 error_ptr->SetErrorString("Invalid opcode offset in DW_OP_bra.");
2215 return false;
2216 }
2217 }
2218 }
2219 break;
2220
2221 //----------------------------------------------------------------------
2222 // OPCODE: DW_OP_eq
2223 // OPERANDS: none
2224 // DESCRIPTION: pops the top two stack values, compares using the
2225 // equals (==) operator.
2226 // STACK RESULT: push the constant value 1 onto the stack if the result
2227 // of the operation is true or the constant value 0 if the result of the
2228 // operation is false.
2229 //----------------------------------------------------------------------
2230 case DW_OP_eq:
2231 if (stack.size() < 2)
2232 {
2233 if (error_ptr)
2234 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_eq.");
2235 return false;
2236 }
2237 else
2238 {
2239 tmp = stack.back();
2240 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002241 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) == tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002242 }
2243 break;
2244
2245 //----------------------------------------------------------------------
2246 // OPCODE: DW_OP_ge
2247 // OPERANDS: none
2248 // DESCRIPTION: pops the top two stack values, compares using the
2249 // greater than or equal to (>=) operator.
2250 // STACK RESULT: push the constant value 1 onto the stack if the result
2251 // of the operation is true or the constant value 0 if the result of the
2252 // operation is false.
2253 //----------------------------------------------------------------------
2254 case DW_OP_ge:
2255 if (stack.size() < 2)
2256 {
2257 if (error_ptr)
2258 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_ge.");
2259 return false;
2260 }
2261 else
2262 {
2263 tmp = stack.back();
2264 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002265 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) >= tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002266 }
2267 break;
2268
2269 //----------------------------------------------------------------------
2270 // OPCODE: DW_OP_gt
2271 // OPERANDS: none
2272 // DESCRIPTION: pops the top two stack values, compares using the
2273 // greater than (>) operator.
2274 // STACK RESULT: push the constant value 1 onto the stack if the result
2275 // of the operation is true or the constant value 0 if the result of the
2276 // operation is false.
2277 //----------------------------------------------------------------------
2278 case DW_OP_gt:
2279 if (stack.size() < 2)
2280 {
2281 if (error_ptr)
2282 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_gt.");
2283 return false;
2284 }
2285 else
2286 {
2287 tmp = stack.back();
2288 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002289 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) > tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002290 }
2291 break;
2292
2293 //----------------------------------------------------------------------
2294 // OPCODE: DW_OP_le
2295 // OPERANDS: none
2296 // DESCRIPTION: pops the top two stack values, compares using the
2297 // less than or equal to (<=) operator.
2298 // STACK RESULT: push the constant value 1 onto the stack if the result
2299 // of the operation is true or the constant value 0 if the result of the
2300 // operation is false.
2301 //----------------------------------------------------------------------
2302 case DW_OP_le:
2303 if (stack.size() < 2)
2304 {
2305 if (error_ptr)
2306 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_le.");
2307 return false;
2308 }
2309 else
2310 {
2311 tmp = stack.back();
2312 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002313 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) <= tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002314 }
2315 break;
2316
2317 //----------------------------------------------------------------------
2318 // OPCODE: DW_OP_lt
2319 // OPERANDS: none
2320 // DESCRIPTION: pops the top two stack values, compares using the
2321 // less than (<) operator.
2322 // STACK RESULT: push the constant value 1 onto the stack if the result
2323 // of the operation is true or the constant value 0 if the result of the
2324 // operation is false.
2325 //----------------------------------------------------------------------
2326 case DW_OP_lt:
2327 if (stack.size() < 2)
2328 {
2329 if (error_ptr)
2330 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_lt.");
2331 return false;
2332 }
2333 else
2334 {
2335 tmp = stack.back();
2336 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002337 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) < tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002338 }
2339 break;
2340
2341 //----------------------------------------------------------------------
2342 // OPCODE: DW_OP_ne
2343 // OPERANDS: none
2344 // DESCRIPTION: pops the top two stack values, compares using the
2345 // not equal (!=) operator.
2346 // STACK RESULT: push the constant value 1 onto the stack if the result
2347 // of the operation is true or the constant value 0 if the result of the
2348 // operation is false.
2349 //----------------------------------------------------------------------
2350 case DW_OP_ne:
2351 if (stack.size() < 2)
2352 {
2353 if (error_ptr)
2354 error_ptr->SetErrorString("Expression stack needs at least 2 items for DW_OP_ne.");
2355 return false;
2356 }
2357 else
2358 {
2359 tmp = stack.back();
2360 stack.pop_back();
Greg Clayton57ee3062013-07-11 22:46:58 +00002361 stack.back().ResolveValue(exe_ctx) = stack.back().ResolveValue(exe_ctx) != tmp.ResolveValue(exe_ctx);
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002362 }
2363 break;
2364
2365 //----------------------------------------------------------------------
2366 // OPCODE: DW_OP_litn
2367 // OPERANDS: none
2368 // DESCRIPTION: encode the unsigned literal values from 0 through 31.
2369 // STACK RESULT: push the unsigned literal constant value onto the top
2370 // of the stack.
2371 //----------------------------------------------------------------------
2372 case DW_OP_lit0:
2373 case DW_OP_lit1:
2374 case DW_OP_lit2:
2375 case DW_OP_lit3:
2376 case DW_OP_lit4:
2377 case DW_OP_lit5:
2378 case DW_OP_lit6:
2379 case DW_OP_lit7:
2380 case DW_OP_lit8:
2381 case DW_OP_lit9:
2382 case DW_OP_lit10:
2383 case DW_OP_lit11:
2384 case DW_OP_lit12:
2385 case DW_OP_lit13:
2386 case DW_OP_lit14:
2387 case DW_OP_lit15:
2388 case DW_OP_lit16:
2389 case DW_OP_lit17:
2390 case DW_OP_lit18:
2391 case DW_OP_lit19:
2392 case DW_OP_lit20:
2393 case DW_OP_lit21:
2394 case DW_OP_lit22:
2395 case DW_OP_lit23:
2396 case DW_OP_lit24:
2397 case DW_OP_lit25:
2398 case DW_OP_lit26:
2399 case DW_OP_lit27:
2400 case DW_OP_lit28:
2401 case DW_OP_lit29:
2402 case DW_OP_lit30:
2403 case DW_OP_lit31:
Greg Clayton644247c2011-07-07 01:59:51 +00002404 stack.push_back(Scalar(op - DW_OP_lit0));
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002405 break;
2406
2407 //----------------------------------------------------------------------
2408 // OPCODE: DW_OP_regN
2409 // OPERANDS: none
2410 // DESCRIPTION: Push the value in register n on the top of the stack.
2411 //----------------------------------------------------------------------
2412 case DW_OP_reg0:
2413 case DW_OP_reg1:
2414 case DW_OP_reg2:
2415 case DW_OP_reg3:
2416 case DW_OP_reg4:
2417 case DW_OP_reg5:
2418 case DW_OP_reg6:
2419 case DW_OP_reg7:
2420 case DW_OP_reg8:
2421 case DW_OP_reg9:
2422 case DW_OP_reg10:
2423 case DW_OP_reg11:
2424 case DW_OP_reg12:
2425 case DW_OP_reg13:
2426 case DW_OP_reg14:
2427 case DW_OP_reg15:
2428 case DW_OP_reg16:
2429 case DW_OP_reg17:
2430 case DW_OP_reg18:
2431 case DW_OP_reg19:
2432 case DW_OP_reg20:
2433 case DW_OP_reg21:
2434 case DW_OP_reg22:
2435 case DW_OP_reg23:
2436 case DW_OP_reg24:
2437 case DW_OP_reg25:
2438 case DW_OP_reg26:
2439 case DW_OP_reg27:
2440 case DW_OP_reg28:
2441 case DW_OP_reg29:
2442 case DW_OP_reg30:
2443 case DW_OP_reg31:
2444 {
2445 reg_num = op - DW_OP_reg0;
2446
Jason Molenda2d107dd2010-11-20 01:28:30 +00002447 if (ReadRegisterValueAsScalar (reg_ctx, reg_kind, reg_num, error_ptr, tmp))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002448 stack.push_back(tmp);
2449 else
2450 return false;
2451 }
2452 break;
2453 //----------------------------------------------------------------------
2454 // OPCODE: DW_OP_regx
2455 // OPERANDS:
2456 // ULEB128 literal operand that encodes the register.
2457 // DESCRIPTION: Push the value in register on the top of the stack.
2458 //----------------------------------------------------------------------
2459 case DW_OP_regx:
2460 {
2461 reg_num = opcodes.GetULEB128(&offset);
Jason Molenda2d107dd2010-11-20 01:28:30 +00002462 if (ReadRegisterValueAsScalar (reg_ctx, reg_kind, reg_num, error_ptr, tmp))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002463 stack.push_back(tmp);
2464 else
2465 return false;
2466 }
2467 break;
2468
2469 //----------------------------------------------------------------------
2470 // OPCODE: DW_OP_bregN
2471 // OPERANDS:
2472 // SLEB128 offset from register N
2473 // DESCRIPTION: Value is in memory at the address specified by register
2474 // N plus an offset.
2475 //----------------------------------------------------------------------
2476 case DW_OP_breg0:
2477 case DW_OP_breg1:
2478 case DW_OP_breg2:
2479 case DW_OP_breg3:
2480 case DW_OP_breg4:
2481 case DW_OP_breg5:
2482 case DW_OP_breg6:
2483 case DW_OP_breg7:
2484 case DW_OP_breg8:
2485 case DW_OP_breg9:
2486 case DW_OP_breg10:
2487 case DW_OP_breg11:
2488 case DW_OP_breg12:
2489 case DW_OP_breg13:
2490 case DW_OP_breg14:
2491 case DW_OP_breg15:
2492 case DW_OP_breg16:
2493 case DW_OP_breg17:
2494 case DW_OP_breg18:
2495 case DW_OP_breg19:
2496 case DW_OP_breg20:
2497 case DW_OP_breg21:
2498 case DW_OP_breg22:
2499 case DW_OP_breg23:
2500 case DW_OP_breg24:
2501 case DW_OP_breg25:
2502 case DW_OP_breg26:
2503 case DW_OP_breg27:
2504 case DW_OP_breg28:
2505 case DW_OP_breg29:
2506 case DW_OP_breg30:
2507 case DW_OP_breg31:
2508 {
2509 reg_num = op - DW_OP_breg0;
2510
Jason Molenda2d107dd2010-11-20 01:28:30 +00002511 if (ReadRegisterValueAsScalar (reg_ctx, reg_kind, reg_num, error_ptr, tmp))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002512 {
2513 int64_t breg_offset = opcodes.GetSLEB128(&offset);
Greg Clayton57ee3062013-07-11 22:46:58 +00002514 tmp.ResolveValue(exe_ctx) += (uint64_t)breg_offset;
Sean Callanand1a5e012012-01-06 18:24:47 +00002515 tmp.ClearContext();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002516 stack.push_back(tmp);
2517 stack.back().SetValueType (Value::eValueTypeLoadAddress);
2518 }
2519 else
2520 return false;
2521 }
2522 break;
2523 //----------------------------------------------------------------------
2524 // OPCODE: DW_OP_bregx
2525 // OPERANDS: 2
2526 // ULEB128 literal operand that encodes the register.
2527 // SLEB128 offset from register N
2528 // DESCRIPTION: Value is in memory at the address specified by register
2529 // N plus an offset.
2530 //----------------------------------------------------------------------
2531 case DW_OP_bregx:
2532 {
2533 reg_num = opcodes.GetULEB128(&offset);
2534
Jason Molenda2d107dd2010-11-20 01:28:30 +00002535 if (ReadRegisterValueAsScalar (reg_ctx, reg_kind, reg_num, error_ptr, tmp))
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002536 {
2537 int64_t breg_offset = opcodes.GetSLEB128(&offset);
Greg Clayton57ee3062013-07-11 22:46:58 +00002538 tmp.ResolveValue(exe_ctx) += (uint64_t)breg_offset;
Sean Callanand1a5e012012-01-06 18:24:47 +00002539 tmp.ClearContext();
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002540 stack.push_back(tmp);
2541 stack.back().SetValueType (Value::eValueTypeLoadAddress);
2542 }
2543 else
2544 return false;
2545 }
2546 break;
2547
2548 case DW_OP_fbreg:
Greg Claytonc14ee322011-09-22 04:58:26 +00002549 if (exe_ctx)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002550 {
Greg Claytonc14ee322011-09-22 04:58:26 +00002551 if (frame)
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002552 {
Greg Claytonc14ee322011-09-22 04:58:26 +00002553 Scalar value;
2554 if (frame->GetFrameBaseValue(value, error_ptr))
2555 {
2556 int64_t fbreg_offset = opcodes.GetSLEB128(&offset);
2557 value += fbreg_offset;
2558 stack.push_back(value);
2559 stack.back().SetValueType (Value::eValueTypeLoadAddress);
2560 }
2561 else
2562 return false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002563 }
2564 else
Greg Claytonc14ee322011-09-22 04:58:26 +00002565 {
2566 if (error_ptr)
2567 error_ptr->SetErrorString ("Invalid stack frame in context for DW_OP_fbreg opcode.");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002568 return false;
Greg Claytonc14ee322011-09-22 04:58:26 +00002569 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002570 }
2571 else
2572 {
2573 if (error_ptr)
Greg Claytonc14ee322011-09-22 04:58:26 +00002574 error_ptr->SetErrorStringWithFormat ("NULL execution context for DW_OP_fbreg.\n");
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002575 return false;
2576 }
Greg Claytonc14ee322011-09-22 04:58:26 +00002577
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002578 break;
2579
2580 //----------------------------------------------------------------------
2581 // OPCODE: DW_OP_nop
2582 // OPERANDS: none
2583 // DESCRIPTION: A place holder. It has no effect on the location stack
2584 // or any of its values.
2585 //----------------------------------------------------------------------
2586 case DW_OP_nop:
2587 break;
2588
2589 //----------------------------------------------------------------------
2590 // OPCODE: DW_OP_piece
2591 // OPERANDS: 1
2592 // ULEB128: byte size of the piece
2593 // DESCRIPTION: The operand describes the size in bytes of the piece of
2594 // the object referenced by the DWARF expression whose result is at the
2595 // top of the stack. If the piece is located in a register, but does not
2596 // occupy the entire register, the placement of the piece within that
2597 // register is defined by the ABI.
2598 //
2599 // Many compilers store a single variable in sets of registers, or store
2600 // a variable partially in memory and partially in registers.
2601 // DW_OP_piece provides a way of describing how large a part of a
2602 // variable a particular DWARF expression refers to.
2603 //----------------------------------------------------------------------
2604 case DW_OP_piece:
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002605 {
2606 const uint64_t piece_byte_size = opcodes.GetULEB128(&offset);
Greg Claytonac583612014-07-31 18:19:28 +00002607
2608 if (piece_byte_size > 0)
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002609 {
Greg Claytonac583612014-07-31 18:19:28 +00002610 Value curr_piece;
Greg Clayton27407872014-07-12 00:24:33 +00002611
Greg Claytonac583612014-07-31 18:19:28 +00002612 if (stack.empty())
2613 {
2614 // In a multi-piece expression, this means that the current piece is not available.
2615 // Fill with zeros for now by resizing the data and appending it
2616 curr_piece.ResizeData(piece_byte_size);
2617 ::memset (curr_piece.GetBuffer().GetBytes(), 0, piece_byte_size);
2618 pieces.AppendDataToHostBuffer(curr_piece);
2619 }
2620 else
2621 {
2622 Error error;
2623 // Extract the current piece into "curr_piece"
2624 Value curr_piece_source_value(stack.back());
2625 stack.pop_back();
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002626
Greg Claytonac583612014-07-31 18:19:28 +00002627 const Value::ValueType curr_piece_source_value_type = curr_piece_source_value.GetValueType();
2628 switch (curr_piece_source_value_type)
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002629 {
Greg Claytonac583612014-07-31 18:19:28 +00002630 case Value::eValueTypeLoadAddress:
2631 if (process)
2632 {
2633 if (curr_piece.ResizeData(piece_byte_size) == piece_byte_size)
2634 {
2635 lldb::addr_t load_addr = curr_piece_source_value.GetScalar().ULongLong(LLDB_INVALID_ADDRESS);
2636 if (process->ReadMemory(load_addr, curr_piece.GetBuffer().GetBytes(), piece_byte_size, error) != piece_byte_size)
2637 {
2638 if (error_ptr)
2639 error_ptr->SetErrorStringWithFormat ("failed to read memory DW_OP_piece(%" PRIu64 ") from 0x%" PRIx64,
2640 piece_byte_size,
2641 load_addr);
2642 return false;
2643 }
2644 }
2645 else
2646 {
2647 if (error_ptr)
2648 error_ptr->SetErrorStringWithFormat ("failed to resize the piece memory buffer for DW_OP_piece(%" PRIu64 ")", piece_byte_size);
2649 return false;
2650 }
2651 }
2652 break;
2653
2654 case Value::eValueTypeFileAddress:
2655 case Value::eValueTypeHostAddress:
2656 if (error_ptr)
2657 {
2658 lldb::addr_t addr = curr_piece_source_value.GetScalar().ULongLong(LLDB_INVALID_ADDRESS);
2659 error_ptr->SetErrorStringWithFormat ("failed to read memory DW_OP_piece(%" PRIu64 ") from %s address 0x%" PRIx64,
2660 piece_byte_size,
2661 curr_piece_source_value.GetValueType() == Value::eValueTypeFileAddress ? "file" : "host",
2662 addr);
2663 }
2664 return false;
2665
2666 case Value::eValueTypeScalar:
2667 {
2668 uint32_t bit_size = piece_byte_size * 8;
2669 uint32_t bit_offset = 0;
2670 if (!curr_piece_source_value.GetScalar().ExtractBitfield (bit_size, bit_offset))
2671 {
2672 if (error_ptr)
2673 error_ptr->SetErrorStringWithFormat("unable to extract %" PRIu64 " bytes from a %" PRIu64 " byte scalar value.", piece_byte_size, (uint64_t)curr_piece_source_value.GetScalar().GetByteSize());
2674 return false;
2675 }
2676 curr_piece = curr_piece_source_value;
2677 }
2678 break;
2679
2680 case Value::eValueTypeVector:
2681 {
2682 if (curr_piece_source_value.GetVector().length >= piece_byte_size)
2683 curr_piece_source_value.GetVector().length = piece_byte_size;
2684 else
2685 {
2686 if (error_ptr)
2687 error_ptr->SetErrorStringWithFormat("unable to extract %" PRIu64 " bytes from a %" PRIu64 " byte vector value.", piece_byte_size, (uint64_t)curr_piece_source_value.GetVector().length);
2688 return false;
2689 }
2690 }
2691 break;
2692
Greg Claytonac583612014-07-31 18:19:28 +00002693 }
2694
2695 // Check if this is the first piece?
2696 if (op_piece_offset == 0)
2697 {
2698 // This is the first piece, we should push it back onto the stack so subsequent
2699 // pieces will be able to access this piece and add to it
2700 if (pieces.AppendDataToHostBuffer(curr_piece) == 0)
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002701 {
2702 if (error_ptr)
Greg Claytonac583612014-07-31 18:19:28 +00002703 error_ptr->SetErrorString("failed to append piece data");
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002704 return false;
2705 }
2706 }
Greg Claytonac583612014-07-31 18:19:28 +00002707 else if (!stack.empty())
2708 {
2709 // If this is the second or later piece there should be a value on the stack
2710 if (pieces.GetBuffer().GetByteSize() != op_piece_offset)
2711 {
2712 if (error_ptr)
2713 error_ptr->SetErrorStringWithFormat ("DW_OP_piece for offset %" PRIu64 " but top of stack is of size %" PRIu64,
2714 op_piece_offset,
2715 pieces.GetBuffer().GetByteSize());
2716 return false;
2717 }
2718
2719 if (pieces.AppendDataToHostBuffer(curr_piece) == 0)
2720 {
2721 if (error_ptr)
2722 error_ptr->SetErrorString("failed to append piece data");
2723 return false;
2724 }
2725 }
2726 op_piece_offset += piece_byte_size;
2727 }
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002728 }
2729 }
2730 break;
2731
2732 case DW_OP_bit_piece: // 0x9d ULEB128 bit size, ULEB128 bit offset (DWARF3);
2733 if (stack.size() < 1)
2734 {
2735 if (error_ptr)
2736 error_ptr->SetErrorString("Expression stack needs at least 1 item for DW_OP_bit_piece.");
2737 return false;
2738 }
2739 else
2740 {
2741 const uint64_t piece_bit_size = opcodes.GetULEB128(&offset);
2742 const uint64_t piece_bit_offset = opcodes.GetULEB128(&offset);
2743 switch (stack.back().GetValueType())
2744 {
2745 case Value::eValueTypeScalar:
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002746 {
2747 if (!stack.back().GetScalar().ExtractBitfield (piece_bit_size, piece_bit_offset))
2748 {
2749 if (error_ptr)
2750 error_ptr->SetErrorStringWithFormat("unable to extract %" PRIu64 " bit value with %" PRIu64 " bit offset from a %" PRIu64 " bit scalar value.",
2751 piece_bit_size,
2752 piece_bit_offset,
2753 (uint64_t)(stack.back().GetScalar().GetByteSize()*8));
2754 return false;
2755 }
2756 }
2757 break;
Greg Claytonac583612014-07-31 18:19:28 +00002758
2759 case Value::eValueTypeFileAddress:
2760 case Value::eValueTypeLoadAddress:
2761 case Value::eValueTypeHostAddress:
2762 if (error_ptr)
2763 {
2764 error_ptr->SetErrorStringWithFormat ("unable to extract DW_OP_bit_piece(bit_size = %" PRIu64 ", bit_offset = %" PRIu64 ") from an addresss value.",
2765 piece_bit_size,
2766 piece_bit_offset);
2767 }
2768 return false;
2769
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002770 case Value::eValueTypeVector:
2771 if (error_ptr)
2772 {
Greg Claytonac583612014-07-31 18:19:28 +00002773 error_ptr->SetErrorStringWithFormat ("unable to extract DW_OP_bit_piece(bit_size = %" PRIu64 ", bit_offset = %" PRIu64 ") from a vector value.",
Greg Clayton7a1bd0b2014-02-12 23:16:19 +00002774 piece_bit_size,
2775 piece_bit_offset);
2776 }
2777 return false;
2778 }
2779 }
2780 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002781
2782 //----------------------------------------------------------------------
2783 // OPCODE: DW_OP_push_object_address
2784 // OPERANDS: none
2785 // DESCRIPTION: Pushes the address of the object currently being
2786 // evaluated as part of evaluation of a user presented expression.
2787 // This object may correspond to an independent variable described by
2788 // its own DIE or it may be a component of an array, structure, or class
2789 // whose address has been dynamically determined by an earlier step
2790 // during user expression evaluation.
2791 //----------------------------------------------------------------------
2792 case DW_OP_push_object_address:
2793 if (error_ptr)
2794 error_ptr->SetErrorString ("Unimplemented opcode DW_OP_push_object_address.");
2795 return false;
2796
2797 //----------------------------------------------------------------------
2798 // OPCODE: DW_OP_call2
2799 // OPERANDS:
2800 // uint16_t compile unit relative offset of a DIE
2801 // DESCRIPTION: Performs subroutine calls during evaluation
2802 // of a DWARF expression. The operand is the 2-byte unsigned offset
2803 // of a debugging information entry in the current compilation unit.
2804 //
2805 // Operand interpretation is exactly like that for DW_FORM_ref2.
2806 //
2807 // This operation transfers control of DWARF expression evaluation
2808 // to the DW_AT_location attribute of the referenced DIE. If there is
2809 // no such attribute, then there is no effect. Execution of the DWARF
2810 // expression of a DW_AT_location attribute may add to and/or remove from
2811 // values on the stack. Execution returns to the point following the call
2812 // when the end of the attribute is reached. Values on the stack at the
2813 // time of the call may be used as parameters by the called expression
2814 // and values left on the stack by the called expression may be used as
2815 // return values by prior agreement between the calling and called
2816 // expressions.
2817 //----------------------------------------------------------------------
2818 case DW_OP_call2:
2819 if (error_ptr)
2820 error_ptr->SetErrorString ("Unimplemented opcode DW_OP_call2.");
2821 return false;
2822 //----------------------------------------------------------------------
2823 // OPCODE: DW_OP_call4
2824 // OPERANDS: 1
2825 // uint32_t compile unit relative offset of a DIE
2826 // DESCRIPTION: Performs a subroutine call during evaluation of a DWARF
2827 // expression. For DW_OP_call4, the operand is a 4-byte unsigned offset
2828 // of a debugging information entry in the current compilation unit.
2829 //
2830 // Operand interpretation DW_OP_call4 is exactly like that for
2831 // DW_FORM_ref4.
2832 //
2833 // This operation transfers control of DWARF expression evaluation
2834 // to the DW_AT_location attribute of the referenced DIE. If there is
2835 // no such attribute, then there is no effect. Execution of the DWARF
2836 // expression of a DW_AT_location attribute may add to and/or remove from
2837 // values on the stack. Execution returns to the point following the call
2838 // when the end of the attribute is reached. Values on the stack at the
2839 // time of the call may be used as parameters by the called expression
2840 // and values left on the stack by the called expression may be used as
2841 // return values by prior agreement between the calling and called
2842 // expressions.
2843 //----------------------------------------------------------------------
2844 case DW_OP_call4:
2845 if (error_ptr)
2846 error_ptr->SetErrorString ("Unimplemented opcode DW_OP_call4.");
2847 return false;
2848
Andrew Kaylor9e9f1db2013-03-06 21:13:09 +00002849 //----------------------------------------------------------------------
2850 // OPCODE: DW_OP_stack_value
2851 // OPERANDS: None
2852 // DESCRIPTION: Specifies that the object does not exist in memory but
2853 // rather is a constant value. The value from the top of the stack is
2854 // the value to be used. This is the actual object value and not the
2855 // location.
2856 //----------------------------------------------------------------------
2857 case DW_OP_stack_value:
2858 stack.back().SetValueType(Value::eValueTypeScalar);
2859 break;
Ashok Thirumurthi6e264d32013-07-29 16:05:11 +00002860
2861 //----------------------------------------------------------------------
2862 // OPCODE: DW_OP_call_frame_cfa
2863 // OPERANDS: None
2864 // DESCRIPTION: Specifies a DWARF expression that pushes the value of
2865 // the canonical frame address consistent with the call frame information
2866 // located in .debug_frame (or in the FDEs of the eh_frame section).
2867 //----------------------------------------------------------------------
2868 case DW_OP_call_frame_cfa:
2869 if (frame)
2870 {
2871 // Note that we don't have to parse FDEs because this DWARF expression
2872 // is commonly evaluated with a valid stack frame.
2873 StackID id = frame->GetStackID();
2874 addr_t cfa = id.GetCallFrameAddress();
2875 if (cfa != LLDB_INVALID_ADDRESS)
2876 {
2877 stack.push_back(Scalar(cfa));
Jason Molenda275746d2014-10-16 02:56:12 +00002878 stack.back().SetValueType (Value::eValueTypeLoadAddress);
Ashok Thirumurthi6e264d32013-07-29 16:05:11 +00002879 }
2880 else
2881 if (error_ptr)
2882 error_ptr->SetErrorString ("Stack frame does not include a canonical frame address for DW_OP_call_frame_cfa opcode.");
2883 }
2884 else
2885 {
2886 if (error_ptr)
2887 error_ptr->SetErrorString ("Invalid stack frame in context for DW_OP_call_frame_cfa opcode.");
2888 return false;
2889 }
2890 break;
Richard Mitton0a558352013-10-17 21:14:00 +00002891
2892 //----------------------------------------------------------------------
2893 // OPCODE: DW_OP_GNU_push_tls_address
2894 // OPERANDS: none
2895 // DESCRIPTION: Pops a TLS offset from the stack, converts it to
2896 // an absolute value, and pushes it back on.
2897 //----------------------------------------------------------------------
2898 case DW_OP_GNU_push_tls_address:
2899 {
2900 if (stack.size() < 1)
2901 {
2902 if (error_ptr)
2903 error_ptr->SetErrorString("DW_OP_GNU_push_tls_address needs an argument.");
2904 return false;
2905 }
2906
Enrico Granata4ec130d2014-08-11 19:16:35 +00002907 if (!exe_ctx || !module_sp)
Richard Mitton0a558352013-10-17 21:14:00 +00002908 {
2909 if (error_ptr)
2910 error_ptr->SetErrorString("No context to evaluate TLS within.");
2911 return false;
2912 }
2913
2914 Thread *thread = exe_ctx->GetThreadPtr();
2915 if (!thread)
2916 {
2917 if (error_ptr)
2918 error_ptr->SetErrorString("No thread to evaluate TLS within.");
2919 return false;
2920 }
2921
2922 // Lookup the TLS block address for this thread and module.
Enrico Granata4ec130d2014-08-11 19:16:35 +00002923 addr_t tls_addr = thread->GetThreadLocalData (module_sp);
Richard Mitton0a558352013-10-17 21:14:00 +00002924
2925 if (tls_addr == LLDB_INVALID_ADDRESS)
2926 {
2927 if (error_ptr)
2928 error_ptr->SetErrorString ("No TLS data currently exists for this thread.");
2929 return false;
2930 }
2931
2932 // Convert the TLS offset into the absolute address.
2933 Scalar tmp = stack.back().ResolveValue(exe_ctx);
2934 stack.back() = tmp + tls_addr;
2935 stack.back().SetValueType (Value::eValueTypeLoadAddress);
2936 }
2937 break;
2938
Daniel Malea8f0c4462013-07-30 21:26:24 +00002939 default:
Ashok Thirumurthi3e0afb82013-07-31 03:56:45 +00002940 if (log)
2941 log->Printf("Unhandled opcode %s in DWARFExpression.", DW_OP_value_to_name(op));
2942 break;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002943 }
2944 }
2945
2946 if (stack.empty())
2947 {
Greg Claytonac583612014-07-31 18:19:28 +00002948 // Nothing on the stack, check if we created a piece value from DW_OP_piece or DW_OP_bit_piece opcodes
2949 if (pieces.GetBuffer().GetByteSize())
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002950 {
Greg Claytonac583612014-07-31 18:19:28 +00002951 result = pieces;
2952 }
2953 else
2954 {
2955 if (error_ptr)
2956 error_ptr->SetErrorString ("Stack empty after evaluation.");
2957 return false;
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002958 }
2959 }
Greg Claytonac583612014-07-31 18:19:28 +00002960 else
2961 {
2962 if (log && log->GetVerbose())
2963 {
2964 size_t count = stack.size();
2965 log->Printf("Stack after operation has %" PRIu64 " values:", (uint64_t)count);
2966 for (size_t i=0; i<count; ++i)
2967 {
2968 StreamString new_value;
2969 new_value.Printf("[%" PRIu64 "]", (uint64_t)i);
2970 stack[i].Dump(&new_value);
2971 log->Printf(" %s", new_value.GetData());
2972 }
2973 }
2974 result = stack.back();
2975 }
Chris Lattner30fdc8d2010-06-08 16:52:24 +00002976 return true; // Return true on success
2977}
2978