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Kate Stoneb9c1b512016-09-06 20:57:50 +00001//===-- CPPLanguageRuntime.cpp
2//-------------------------------------------------*- C++ -*-===//
Jim Ingham22777012010-09-23 02:01:19 +00003//
4// The LLVM Compiler Infrastructure
5//
6// This file is distributed under the University of Illinois Open Source
7// License. See LICENSE.TXT for details.
8//
9//===----------------------------------------------------------------------===//
10
11#include "lldb/Target/CPPLanguageRuntime.h"
Enrico Granata1d261d12012-02-03 01:41:25 +000012
Greg Clayton6ecb2322013-05-18 00:11:21 +000013#include <string.h>
14
Jim Inghamfa39bb42014-10-25 00:33:55 +000015#include "llvm/ADT/StringRef.h"
16
Shafik Yaghmour443e20b2018-09-11 20:58:28 +000017#include "lldb/Symbol/Block.h"
18#include "lldb/Symbol/VariableList.h"
19
Jim Ingham22777012010-09-23 02:01:19 +000020#include "lldb/Core/PluginManager.h"
Enrico Granata1d261d12012-02-03 01:41:25 +000021#include "lldb/Core/UniqueCStringMap.h"
Shafik Yaghmour443e20b2018-09-11 20:58:28 +000022#include "lldb/Symbol/ClangASTContext.h"
23#include "lldb/Target/ABI.h"
Jim Ingham5a369122010-09-28 01:25:32 +000024#include "lldb/Target/ExecutionContext.h"
Shafik Yaghmour443e20b2018-09-11 20:58:28 +000025#include "lldb/Target/RegisterContext.h"
26#include "lldb/Target/SectionLoadList.h"
27#include "lldb/Target/StackFrame.h"
28#include "lldb/Target/ThreadPlanRunToAddress.h"
Shafik Yaghmouraa302682018-10-12 17:20:39 +000029#include "lldb/Target/ThreadPlanStepInRange.h"
Jim Ingham22777012010-09-23 02:01:19 +000030
31using namespace lldb;
32using namespace lldb_private;
33
34//----------------------------------------------------------------------
35// Destructor
36//----------------------------------------------------------------------
Kate Stoneb9c1b512016-09-06 20:57:50 +000037CPPLanguageRuntime::~CPPLanguageRuntime() {}
38
39CPPLanguageRuntime::CPPLanguageRuntime(Process *process)
40 : LanguageRuntime(process) {}
41
42bool CPPLanguageRuntime::GetObjectDescription(Stream &str,
43 ValueObject &object) {
44 // C++ has no generic way to do this.
45 return false;
Jim Ingham22777012010-09-23 02:01:19 +000046}
47
Kate Stoneb9c1b512016-09-06 20:57:50 +000048bool CPPLanguageRuntime::GetObjectDescription(
49 Stream &str, Value &value, ExecutionContextScope *exe_scope) {
50 // C++ has no generic way to do this.
51 return false;
Jim Ingham6c68fb42010-09-30 00:54:27 +000052}
Shafik Yaghmour443e20b2018-09-11 20:58:28 +000053
54CPPLanguageRuntime::LibCppStdFunctionCallableInfo
55CPPLanguageRuntime::FindLibCppStdFunctionCallableInfo(
56 lldb::ValueObjectSP &valobj_sp) {
57 LibCppStdFunctionCallableInfo optional_info;
58
59 if (!valobj_sp)
60 return optional_info;
61
62 // Member __f_ has type __base*, the contents of which will hold:
63 // 1) a vtable entry which may hold type information needed to discover the
64 // lambda being called
65 // 2) possibly hold a pointer to the callable object
66 // e.g.
67 //
68 // (lldb) frame var -R f_display
69 // (std::__1::function<void (int)>) f_display = {
70 // __buf_ = {
71 // …
72 // }
73 // __f_ = 0x00007ffeefbffa00
74 // }
75 // (lldb) memory read -fA 0x00007ffeefbffa00
76 // 0x7ffeefbffa00: ... `vtable for std::__1::__function::__func<void (*) ...
77 // 0x7ffeefbffa08: ... `print_num(int) at std_function_cppreference_exam ...
78 //
79 // We will be handling five cases below, std::function is wrapping:
80 //
81 // 1) a lambda we know at compile time. We will obtain the name of the lambda
82 // from the first template pameter from __func's vtable. We will look up
83 // the lambda's operator()() and obtain the line table entry.
84 // 2) a lambda we know at runtime. A pointer to the lambdas __invoke method
85 // will be stored after the vtable. We will obtain the lambdas name from
86 // this entry and lookup operator()() and obtain the line table entry.
87 // 3) a callable object via operator()(). We will obtain the name of the
88 // object from the first template parameter from __func's vtable. We will
89 // look up the objectc operator()() and obtain the line table entry.
90 // 4) a member function. A pointer to the function will stored after the
91 // we will obtain the name from this pointer.
92 // 5) a free function. A pointer to the function will stored after the vtable
93 // we will obtain the name from this pointer.
94 ValueObjectSP member__f_(
95 valobj_sp->GetChildMemberWithName(ConstString("__f_"), true));
Shafik Yaghmour99bc2b22018-12-10 23:26:38 +000096
97 if (member__f_) {
98 ValueObjectSP sub_member__f_(
99 member__f_->GetChildMemberWithName(ConstString("__f_"), true));
100
101 if (sub_member__f_)
102 member__f_ = sub_member__f_;
103 }
104
Shafik Yaghmour443e20b2018-09-11 20:58:28 +0000105 lldb::addr_t member__f_pointer_value = member__f_->GetValueAsUnsigned(0);
106
107 optional_info.member__f_pointer_value = member__f_pointer_value;
108
109 ExecutionContext exe_ctx(valobj_sp->GetExecutionContextRef());
110 Process *process = exe_ctx.GetProcessPtr();
111
112 if (process == nullptr)
113 return optional_info;
114
115 uint32_t address_size = process->GetAddressByteSize();
116 Status status;
117
118 // First item pointed to by __f_ should be the pointer to the vtable for
119 // a __base object.
120 lldb::addr_t vtable_address =
121 process->ReadPointerFromMemory(member__f_pointer_value, status);
122
123 if (status.Fail())
124 return optional_info;
125
126 lldb::addr_t address_after_vtable = member__f_pointer_value + address_size;
127 // As commened above we may not have a function pointer but if we do we will
128 // need it.
129 lldb::addr_t possible_function_address =
130 process->ReadPointerFromMemory(address_after_vtable, status);
131
132 if (status.Fail())
133 return optional_info;
134
135 Target &target = process->GetTarget();
136
137 if (target.GetSectionLoadList().IsEmpty())
138 return optional_info;
139
140 Address vtable_addr_resolved;
141 SymbolContext sc;
142 Symbol *symbol;
143
144 if (!target.GetSectionLoadList().ResolveLoadAddress(vtable_address,
145 vtable_addr_resolved))
146 return optional_info;
147
148 target.GetImages().ResolveSymbolContextForAddress(
149 vtable_addr_resolved, eSymbolContextEverything, sc);
150 symbol = sc.symbol;
151
152 if (symbol == nullptr)
153 return optional_info;
154
155 llvm::StringRef vtable_name(symbol->GetName().GetCString());
156 bool found_expected_start_string =
157 vtable_name.startswith("vtable for std::__1::__function::__func<");
158
159 if (!found_expected_start_string)
160 return optional_info;
161
162 // Given case 1 or 3 we have a vtable name, we are want to extract the first
163 // template parameter
164 //
165 // ... __func<main::$_0, std::__1::allocator<main::$_0> ...
166 // ^^^^^^^^^
167 //
168 // We do this by find the first < and , and extracting in between.
169 //
170 // This covers the case of the lambda known at compile time.
Shafik Yaghmour443e20b2018-09-11 20:58:28 +0000171 size_t first_open_angle_bracket = vtable_name.find('<') + 1;
172 size_t first_comma = vtable_name.find_first_of(',');
173
174 llvm::StringRef first_template_parameter =
175 vtable_name.slice(first_open_angle_bracket, first_comma);
176
177 Address function_address_resolved;
178
179 // Setup for cases 2, 4 and 5 we have a pointer to a function after the
180 // vtable. We will use a process of elimination to drop through each case
181 // and obtain the data we need.
182 if (target.GetSectionLoadList().ResolveLoadAddress(
183 possible_function_address, function_address_resolved)) {
184 target.GetImages().ResolveSymbolContextForAddress(
185 function_address_resolved, eSymbolContextEverything, sc);
186 symbol = sc.symbol;
187 }
188
189 auto get_name = [&first_template_parameter, &symbol]() {
190 // Given case 1:
191 //
192 // main::$_0
193 //
194 // we want to append ::operator()()
195 if (first_template_parameter.contains("$_"))
196 return llvm::Regex::escape(first_template_parameter.str()) +
197 R"(::operator\(\)\(.*\))";
198
199 if (symbol != NULL &&
200 symbol->GetName().GetStringRef().contains("__invoke")) {
201
202 llvm::StringRef symbol_name = symbol->GetName().GetStringRef();
203 size_t pos2 = symbol_name.find_last_of(':');
204
205 // Given case 2:
206 //
207 // main::$_1::__invoke(...)
208 //
209 // We want to slice off __invoke(...) and append operator()()
210 std::string lambda_operator =
211 llvm::Regex::escape(symbol_name.slice(0, pos2 + 1).str()) +
212 R"(operator\(\)\(.*\))";
213
214 return lambda_operator;
215 }
216
217 // Case 3
218 return first_template_parameter.str() + R"(::operator\(\)\(.*\))";
219 ;
220 };
221
222 std::string func_to_match = get_name();
223
224 SymbolContextList scl;
225
226 target.GetImages().FindFunctions(RegularExpression{func_to_match}, true, true,
227 true, scl);
228
229 // Case 1,2 or 3
230 if (scl.GetSize() >= 1) {
231 SymbolContext sc2 = scl[0];
232
233 AddressRange range;
234 sc2.GetAddressRange(eSymbolContextEverything, 0, false, range);
235
236 Address address = range.GetBaseAddress();
237
238 Address addr;
239 if (target.ResolveLoadAddress(address.GetCallableLoadAddress(&target),
240 addr)) {
241 LineEntry line_entry;
242 addr.CalculateSymbolContextLineEntry(line_entry);
243
244 if (first_template_parameter.contains("$_") ||
245 (symbol != nullptr &&
246 symbol->GetName().GetStringRef().contains("__invoke"))) {
247 // Case 1 and 2
248 optional_info.callable_case = LibCppStdFunctionCallableCase::Lambda;
249 } else {
250 // Case 3
251 optional_info.callable_case =
252 LibCppStdFunctionCallableCase::CallableObject;
253 }
254
255 optional_info.callable_symbol = *symbol;
256 optional_info.callable_line_entry = line_entry;
257 optional_info.callable_address = addr;
258 return optional_info;
259 }
260 }
261
262 // Case 4 or 5
263 if (!symbol->GetName().GetStringRef().startswith("vtable for")) {
264 optional_info.callable_case =
265 LibCppStdFunctionCallableCase::FreeOrMemberFunction;
266 optional_info.callable_address = function_address_resolved;
267 optional_info.callable_symbol = *symbol;
268
269 return optional_info;
270 }
271
272 return optional_info;
273}
Shafik Yaghmouraa302682018-10-12 17:20:39 +0000274
275lldb::ThreadPlanSP
276CPPLanguageRuntime::GetStepThroughTrampolinePlan(Thread &thread,
277 bool stop_others) {
278 ThreadPlanSP ret_plan_sp;
279
280 lldb::addr_t curr_pc = thread.GetRegisterContext()->GetPC();
281
282 TargetSP target_sp(thread.CalculateTarget());
283
284 if (target_sp->GetSectionLoadList().IsEmpty())
285 return ret_plan_sp;
286
287 Address pc_addr_resolved;
288 SymbolContext sc;
289 Symbol *symbol;
290
291 if (!target_sp->GetSectionLoadList().ResolveLoadAddress(curr_pc,
292 pc_addr_resolved))
293 return ret_plan_sp;
294
295 target_sp->GetImages().ResolveSymbolContextForAddress(
296 pc_addr_resolved, eSymbolContextEverything, sc);
297 symbol = sc.symbol;
298
299 if (symbol == nullptr)
300 return ret_plan_sp;
301
302 llvm::StringRef function_name(symbol->GetName().GetCString());
303
304 // Handling the case where we are attempting to step into std::function.
305 // The behavior will be that we will attempt to obtain the wrapped
306 // callable via FindLibCppStdFunctionCallableInfo() and if we find it we
307 // will return a ThreadPlanRunToAddress to the callable. Therefore we will
308 // step into the wrapped callable.
309 //
310 bool found_expected_start_string =
311 function_name.startswith("std::__1::function<");
312
313 if (!found_expected_start_string)
314 return ret_plan_sp;
315
316 AddressRange range_of_curr_func;
317 sc.GetAddressRange(eSymbolContextEverything, 0, false, range_of_curr_func);
318
319 StackFrameSP frame = thread.GetStackFrameAtIndex(0);
320
321 if (frame) {
322 ValueObjectSP value_sp = frame->FindVariable(ConstString("this"));
323
324 CPPLanguageRuntime::LibCppStdFunctionCallableInfo callable_info =
325 FindLibCppStdFunctionCallableInfo(value_sp);
326
327 if (callable_info.callable_case != LibCppStdFunctionCallableCase::Invalid &&
328 value_sp->GetValueIsValid()) {
329 // We found the std::function wrapped callable and we have its address.
330 // We now create a ThreadPlan to run to the callable.
331 ret_plan_sp.reset(new ThreadPlanRunToAddress(
332 thread, callable_info.callable_address, stop_others));
333 return ret_plan_sp;
334 } else {
335 // We are in std::function but we could not obtain the callable.
336 // We create a ThreadPlan to keep stepping through using the address range
337 // of the current function.
338 ret_plan_sp.reset(new ThreadPlanStepInRange(thread, range_of_curr_func,
339 sc, eOnlyThisThread,
340 eLazyBoolYes, eLazyBoolYes));
341 return ret_plan_sp;
342 }
343 }
344
345 return ret_plan_sp;
346}