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Sean Callanan3bfdaa22011-09-15 02:13:07 +00001//===-- IRForTarget.cpp -----------------------------------------*- C++ -*-===//
Sean Callanan2ab712f22010-07-03 01:35:46 +00002//
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
Sean Callanan4dbb2712015-09-25 20:35:58 +000010#include "IRForTarget.h"
11
12#include "ClangExpressionDeclMap.h"
Sean Callanan2ab712f22010-07-03 01:35:46 +000013
Chandler Carruth1e157582013-01-02 12:20:07 +000014#include "llvm/IR/Constants.h"
15#include "llvm/IR/DataLayout.h"
16#include "llvm/IR/InstrTypes.h"
17#include "llvm/IR/Instructions.h"
18#include "llvm/IR/Intrinsics.h"
Ilia Kc9a475d2015-02-13 10:49:18 +000019#include "llvm/IR/LegacyPassManager.h"
Zachary Turner543afa12014-12-09 22:29:47 +000020#include "llvm/IR/Metadata.h"
Kate Stoneb9c1b512016-09-06 20:57:50 +000021#include "llvm/IR/Module.h"
Chandler Carruth1e157582013-01-02 12:20:07 +000022#include "llvm/IR/ValueSymbolTable.h"
Kate Stoneb9c1b512016-09-06 20:57:50 +000023#include "llvm/Support/raw_ostream.h"
24#include "llvm/Transforms/IPO.h"
Sean Callanan549c9f72010-07-13 21:41:46 +000025
26#include "clang/AST/ASTContext.h"
Sean Callanan2ab712f22010-07-03 01:35:46 +000027
Sean Callanan8dfb68e2013-03-19 00:10:07 +000028#include "lldb/Core/ConstString.h"
29#include "lldb/Core/DataBufferHeap.h"
Sean Callanan2ab712f22010-07-03 01:35:46 +000030#include "lldb/Core/Log.h"
31#include "lldb/Core/Scalar.h"
32#include "lldb/Core/StreamString.h"
Zachary Turnerd133f6a2016-03-28 22:53:41 +000033#include "lldb/Core/dwarf.h"
Sean Callanan8dfb68e2013-03-19 00:10:07 +000034#include "lldb/Expression/IRExecutionUnit.h"
Sean Callanan3bfdaa22011-09-15 02:13:07 +000035#include "lldb/Expression/IRInterpreter.h"
Sean Callanan79763a42011-05-23 21:40:23 +000036#include "lldb/Host/Endian.h"
Sean Callanan63697e52011-05-07 01:06:41 +000037#include "lldb/Symbol/ClangASTContext.h"
Zachary Turnerd133f6a2016-03-28 22:53:41 +000038#include "lldb/Symbol/ClangUtil.h"
Greg Claytona1e5dc82015-08-11 22:53:00 +000039#include "lldb/Symbol/CompilerType.h"
Sean Callanan2ab712f22010-07-03 01:35:46 +000040
41#include <map>
42
43using namespace llvm;
44
Sean Callananeaacbc92010-08-18 18:50:51 +000045static char ID;
46
Kate Stoneb9c1b512016-09-06 20:57:50 +000047IRForTarget::FunctionValueCache::FunctionValueCache(Maker const &maker)
48 : m_maker(maker), m_values() {}
Sean Callanan1f9db3e2013-06-28 21:44:15 +000049
Kate Stoneb9c1b512016-09-06 20:57:50 +000050IRForTarget::FunctionValueCache::~FunctionValueCache() {}
Sean Callanan1f9db3e2013-06-28 21:44:15 +000051
Greg Clayton526ae042015-02-12 00:34:25 +000052llvm::Value *
Kate Stoneb9c1b512016-09-06 20:57:50 +000053IRForTarget::FunctionValueCache::GetValue(llvm::Function *function) {
54 if (!m_values.count(function)) {
55 llvm::Value *ret = m_maker(function);
56 m_values[function] = ret;
57 return ret;
58 }
59 return m_values[function];
Sean Callanan1f9db3e2013-06-28 21:44:15 +000060}
61
Kate Stoneb9c1b512016-09-06 20:57:50 +000062static llvm::Value *FindEntryInstruction(llvm::Function *function) {
63 if (function->empty())
64 return NULL;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +000065
Kate Stoneb9c1b512016-09-06 20:57:50 +000066 return function->getEntryBlock().getFirstNonPHIOrDbg();
Sean Callanan1f9db3e2013-06-28 21:44:15 +000067}
68
Kate Stoneb9c1b512016-09-06 20:57:50 +000069IRForTarget::IRForTarget(lldb_private::ClangExpressionDeclMap *decl_map,
70 bool resolve_vars,
71 lldb_private::IRExecutionUnit &execution_unit,
72 lldb_private::Stream &error_stream,
73 const char *func_name)
74 : ModulePass(ID), m_resolve_vars(resolve_vars), m_func_name(func_name),
75 m_module(NULL), m_decl_map(decl_map), m_CFStringCreateWithBytes(NULL),
Sean Callananac900582016-09-29 00:45:33 +000076 m_sel_registerName(NULL), m_objc_getClass(NULL), m_intptr_ty(NULL),
77 m_error_stream(error_stream),
Kate Stoneb9c1b512016-09-06 20:57:50 +000078 m_execution_unit(execution_unit), m_result_store(NULL),
79 m_result_is_pointer(false), m_reloc_placeholder(NULL),
80 m_entry_instruction_finder(FindEntryInstruction) {}
Sean Callanan2ab712f22010-07-03 01:35:46 +000081
Sean Callanan038df5032010-09-30 21:18:25 +000082/* Handy utility functions used at several places in the code */
Sean Callanan2235f322010-08-11 03:57:18 +000083
Kate Stoneb9c1b512016-09-06 20:57:50 +000084static std::string PrintValue(const Value *value, bool truncate = false) {
85 std::string s;
86 if (value) {
Sean Callanan038df5032010-09-30 21:18:25 +000087 raw_string_ostream rso(s);
Kate Stoneb9c1b512016-09-06 20:57:50 +000088 value->print(rso);
Sean Callanan038df5032010-09-30 21:18:25 +000089 rso.flush();
90 if (truncate)
Kate Stoneb9c1b512016-09-06 20:57:50 +000091 s.resize(s.length() - 1);
92 }
93 return s;
Sean Callanan038df5032010-09-30 21:18:25 +000094}
95
Kate Stoneb9c1b512016-09-06 20:57:50 +000096static std::string PrintType(const llvm::Type *type, bool truncate = false) {
97 std::string s;
98 raw_string_ostream rso(s);
99 type->print(rso);
100 rso.flush();
101 if (truncate)
102 s.resize(s.length() - 1);
103 return s;
Sean Callanan2ab712f22010-07-03 01:35:46 +0000104}
105
Kate Stoneb9c1b512016-09-06 20:57:50 +0000106IRForTarget::~IRForTarget() {}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000107
Kate Stoneb9c1b512016-09-06 20:57:50 +0000108bool IRForTarget::FixFunctionLinkage(llvm::Function &llvm_function) {
109 llvm_function.setLinkage(GlobalValue::ExternalLinkage);
110
111 return true;
Sean Callanan79763a42011-05-23 21:40:23 +0000112}
113
Kate Stoneb9c1b512016-09-06 20:57:50 +0000114clang::NamedDecl *IRForTarget::DeclForGlobal(const GlobalValue *global_val,
115 Module *module) {
116 NamedMDNode *named_metadata =
117 module->getNamedMetadata("clang.global.decl.ptrs");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000118
Kate Stoneb9c1b512016-09-06 20:57:50 +0000119 if (!named_metadata)
Sean Callanan63697e52011-05-07 01:06:41 +0000120 return NULL;
Sean Callanan63697e52011-05-07 01:06:41 +0000121
Kate Stoneb9c1b512016-09-06 20:57:50 +0000122 unsigned num_nodes = named_metadata->getNumOperands();
123 unsigned node_index;
Sean Callanan3bfdaa22011-09-15 02:13:07 +0000124
Kate Stoneb9c1b512016-09-06 20:57:50 +0000125 for (node_index = 0; node_index < num_nodes; ++node_index) {
126 llvm::MDNode *metadata_node =
127 dyn_cast<llvm::MDNode>(named_metadata->getOperand(node_index));
128 if (!metadata_node)
129 return NULL;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000130
Kate Stoneb9c1b512016-09-06 20:57:50 +0000131 if (metadata_node->getNumOperands() != 2)
132 continue;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000133
Kate Stoneb9c1b512016-09-06 20:57:50 +0000134 if (mdconst::dyn_extract_or_null<GlobalValue>(
135 metadata_node->getOperand(0)) != global_val)
136 continue;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000137
Kate Stoneb9c1b512016-09-06 20:57:50 +0000138 ConstantInt *constant_int =
139 mdconst::dyn_extract<ConstantInt>(metadata_node->getOperand(1));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000140
Sean Callanan2235f322010-08-11 03:57:18 +0000141 if (!constant_int)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000142 return NULL;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000143
Sean Callanan2235f322010-08-11 03:57:18 +0000144 uintptr_t ptr = constant_int->getZExtValue();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000145
Kate Stoneb9c1b512016-09-06 20:57:50 +0000146 return reinterpret_cast<clang::NamedDecl *>(ptr);
147 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000148
Kate Stoneb9c1b512016-09-06 20:57:50 +0000149 return NULL;
150}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000151
Kate Stoneb9c1b512016-09-06 20:57:50 +0000152clang::NamedDecl *IRForTarget::DeclForGlobal(GlobalValue *global_val) {
153 return DeclForGlobal(global_val, m_module);
154}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000155
Kate Stoneb9c1b512016-09-06 20:57:50 +0000156bool IRForTarget::CreateResultVariable(llvm::Function &llvm_function) {
157 lldb_private::Log *log(
158 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000159
Kate Stoneb9c1b512016-09-06 20:57:50 +0000160 if (!m_resolve_vars)
161 return true;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000162
Kate Stoneb9c1b512016-09-06 20:57:50 +0000163 // Find the result variable. If it doesn't exist, we can give up right here.
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000164
Kate Stoneb9c1b512016-09-06 20:57:50 +0000165 ValueSymbolTable &value_symbol_table = m_module->getValueSymbolTable();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000166
Kate Stoneb9c1b512016-09-06 20:57:50 +0000167 std::string result_name_str;
168 const char *result_name = NULL;
Sean Callanan2235f322010-08-11 03:57:18 +0000169
Kate Stoneb9c1b512016-09-06 20:57:50 +0000170 for (ValueSymbolTable::iterator vi = value_symbol_table.begin(),
171 ve = value_symbol_table.end();
172 vi != ve; ++vi) {
173 result_name_str = vi->first().str();
174 const char *value_name = result_name_str.c_str();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000175
Kate Stoneb9c1b512016-09-06 20:57:50 +0000176 if (strstr(value_name, "$__lldb_expr_result_ptr") &&
177 strncmp(value_name, "_ZGV", 4)) {
178 result_name = value_name;
179 m_result_is_pointer = true;
180 break;
181 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000182
Kate Stoneb9c1b512016-09-06 20:57:50 +0000183 if (strstr(value_name, "$__lldb_expr_result") &&
184 strncmp(value_name, "_ZGV", 4)) {
185 result_name = value_name;
186 m_result_is_pointer = false;
187 break;
188 }
189 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000190
Kate Stoneb9c1b512016-09-06 20:57:50 +0000191 if (!result_name) {
Sean Callanane1175b72011-01-13 21:23:32 +0000192 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000193 log->PutCString("Couldn't find result variable");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000194
Sean Callanan2235f322010-08-11 03:57:18 +0000195 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000196 }
Sean Callanan2235f322010-08-11 03:57:18 +0000197
Kate Stoneb9c1b512016-09-06 20:57:50 +0000198 if (log)
199 log->Printf("Result name: \"%s\"", result_name);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000200
Kate Stoneb9c1b512016-09-06 20:57:50 +0000201 Value *result_value = m_module->getNamedValue(result_name);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000202
Kate Stoneb9c1b512016-09-06 20:57:50 +0000203 if (!result_value) {
204 if (log)
205 log->PutCString("Result variable had no data");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000206
Kate Stoneb9c1b512016-09-06 20:57:50 +0000207 m_error_stream.Printf("Internal error [IRForTarget]: Result variable's "
208 "name (%s) exists, but not its definition\n",
209 result_name);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000210
Sean Callananc70ed462011-10-25 18:36:40 +0000211 return false;
Kate Stoneb9c1b512016-09-06 20:57:50 +0000212 }
Sean Callananc70ed462011-10-25 18:36:40 +0000213
Kate Stoneb9c1b512016-09-06 20:57:50 +0000214 if (log)
215 log->Printf("Found result in the IR: \"%s\"",
216 PrintValue(result_value, false).c_str());
217
218 GlobalVariable *result_global = dyn_cast<GlobalVariable>(result_value);
219
220 if (!result_global) {
221 if (log)
222 log->PutCString("Result variable isn't a GlobalVariable");
223
224 m_error_stream.Printf("Internal error [IRForTarget]: Result variable (%s) "
225 "is defined, but is not a global variable\n",
226 result_name);
227
228 return false;
229 }
230
231 clang::NamedDecl *result_decl = DeclForGlobal(result_global);
232 if (!result_decl) {
233 if (log)
234 log->PutCString("Result variable doesn't have a corresponding Decl");
235
236 m_error_stream.Printf("Internal error [IRForTarget]: Result variable (%s) "
237 "does not have a corresponding Clang entity\n",
238 result_name);
239
240 return false;
241 }
242
243 if (log) {
244 std::string decl_desc_str;
245 raw_string_ostream decl_desc_stream(decl_desc_str);
246 result_decl->print(decl_desc_stream);
247 decl_desc_stream.flush();
248
249 log->Printf("Found result decl: \"%s\"", decl_desc_str.c_str());
250 }
251
252 clang::VarDecl *result_var = dyn_cast<clang::VarDecl>(result_decl);
253 if (!result_var) {
254 if (log)
255 log->PutCString("Result variable Decl isn't a VarDecl");
256
257 m_error_stream.Printf("Internal error [IRForTarget]: Result variable "
258 "(%s)'s corresponding Clang entity isn't a "
259 "variable\n",
260 result_name);
261
262 return false;
263 }
264
265 // Get the next available result name from m_decl_map and create the
266 // persistent
267 // variable for it
268
269 // If the result is an Lvalue, it is emitted as a pointer; see
270 // ASTResultSynthesizer::SynthesizeBodyResult.
271 if (m_result_is_pointer) {
272 clang::QualType pointer_qual_type = result_var->getType();
273 const clang::Type *pointer_type = pointer_qual_type.getTypePtr();
274
275 const clang::PointerType *pointer_pointertype =
276 pointer_type->getAs<clang::PointerType>();
277 const clang::ObjCObjectPointerType *pointer_objcobjpointertype =
278 pointer_type->getAs<clang::ObjCObjectPointerType>();
279
280 if (pointer_pointertype) {
281 clang::QualType element_qual_type = pointer_pointertype->getPointeeType();
282
283 m_result_type = lldb_private::TypeFromParser(
284 element_qual_type.getAsOpaquePtr(),
285 lldb_private::ClangASTContext::GetASTContext(
286 &result_decl->getASTContext()));
287 } else if (pointer_objcobjpointertype) {
288 clang::QualType element_qual_type =
289 clang::QualType(pointer_objcobjpointertype->getObjectType(), 0);
290
291 m_result_type = lldb_private::TypeFromParser(
292 element_qual_type.getAsOpaquePtr(),
293 lldb_private::ClangASTContext::GetASTContext(
294 &result_decl->getASTContext()));
295 } else {
296 if (log)
297 log->PutCString("Expected result to have pointer type, but it did not");
298
299 m_error_stream.Printf("Internal error [IRForTarget]: Lvalue result (%s) "
300 "is not a pointer variable\n",
301 result_name);
302
303 return false;
304 }
305 } else {
306 m_result_type = lldb_private::TypeFromParser(
307 result_var->getType().getAsOpaquePtr(),
308 lldb_private::ClangASTContext::GetASTContext(
309 &result_decl->getASTContext()));
310 }
311
312 lldb::TargetSP target_sp(m_execution_unit.GetTarget());
313 lldb_private::ExecutionContext exe_ctx(target_sp, true);
314 if (m_result_type.GetBitSize(exe_ctx.GetBestExecutionContextScope()) == 0) {
315 lldb_private::StreamString type_desc_stream;
316 m_result_type.DumpTypeDescription(&type_desc_stream);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000317
Sean Callanand7a1ca22010-12-02 19:47:57 +0000318 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000319 log->Printf("Result type has size 0");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000320
Kate Stoneb9c1b512016-09-06 20:57:50 +0000321 m_error_stream.Printf("Error [IRForTarget]: Size of result type '%s' "
322 "couldn't be determined\n",
323 type_desc_stream.GetData());
324 return false;
325 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000326
Kate Stoneb9c1b512016-09-06 20:57:50 +0000327 if (log) {
328 lldb_private::StreamString type_desc_stream;
329 m_result_type.DumpTypeDescription(&type_desc_stream);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000330
Kate Stoneb9c1b512016-09-06 20:57:50 +0000331 log->Printf("Result decl type: \"%s\"", type_desc_stream.GetData());
332 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000333
Kate Stoneb9c1b512016-09-06 20:57:50 +0000334 m_result_name = lldb_private::ConstString("$RESULT_NAME");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000335
Kate Stoneb9c1b512016-09-06 20:57:50 +0000336 if (log)
337 log->Printf("Creating a new result global: \"%s\" with size 0x%" PRIx64,
338 m_result_name.GetCString(), m_result_type.GetByteSize(nullptr));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000339
Kate Stoneb9c1b512016-09-06 20:57:50 +0000340 // Construct a new result global and set up its metadata
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000341
Kate Stoneb9c1b512016-09-06 20:57:50 +0000342 GlobalVariable *new_result_global = new GlobalVariable(
343 (*m_module), result_global->getType()->getElementType(),
344 false, /* not constant */
345 GlobalValue::ExternalLinkage, NULL, /* no initializer */
346 m_result_name.GetCString());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000347
Kate Stoneb9c1b512016-09-06 20:57:50 +0000348 // It's too late in compilation to create a new VarDecl for this, but we don't
349 // need to. We point the metadata at the old VarDecl. This creates an odd
350 // anomaly: a variable with a Value whose name is something like $0 and a
351 // Decl whose name is $__lldb_expr_result. This condition is handled in
352 // ClangExpressionDeclMap::DoMaterialize, and the name of the variable is
353 // fixed up.
Greg Clayton57ee3062013-07-11 22:46:58 +0000354
Kate Stoneb9c1b512016-09-06 20:57:50 +0000355 ConstantInt *new_constant_int =
356 ConstantInt::get(llvm::Type::getInt64Ty(m_module->getContext()),
357 reinterpret_cast<uint64_t>(result_decl), false);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000358
Kate Stoneb9c1b512016-09-06 20:57:50 +0000359 llvm::Metadata *values[2];
360 values[0] = ConstantAsMetadata::get(new_result_global);
361 values[1] = ConstantAsMetadata::get(new_constant_int);
Greg Clayton57ee3062013-07-11 22:46:58 +0000362
Kate Stoneb9c1b512016-09-06 20:57:50 +0000363 ArrayRef<Metadata *> value_ref(values, 2);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000364
Kate Stoneb9c1b512016-09-06 20:57:50 +0000365 MDNode *persistent_global_md = MDNode::get(m_module->getContext(), value_ref);
366 NamedMDNode *named_metadata =
367 m_module->getNamedMetadata("clang.global.decl.ptrs");
368 named_metadata->addOperand(persistent_global_md);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000369
Kate Stoneb9c1b512016-09-06 20:57:50 +0000370 if (log)
371 log->Printf("Replacing \"%s\" with \"%s\"",
372 PrintValue(result_global).c_str(),
373 PrintValue(new_result_global).c_str());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000374
Kate Stoneb9c1b512016-09-06 20:57:50 +0000375 if (result_global->use_empty()) {
376 // We need to synthesize a store for this variable, because otherwise
377 // there's nothing to put into its equivalent persistent variable.
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000378
Greg Clayton1b95a6f2010-11-19 01:05:25 +0000379 BasicBlock &entry_block(llvm_function.getEntryBlock());
Kate Stoneb9c1b512016-09-06 20:57:50 +0000380 Instruction *first_entry_instruction(entry_block.getFirstNonPHIOrDbg());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000381
Kate Stoneb9c1b512016-09-06 20:57:50 +0000382 if (!first_entry_instruction)
383 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000384
Kate Stoneb9c1b512016-09-06 20:57:50 +0000385 if (!result_global->hasInitializer()) {
386 if (log)
387 log->Printf("Couldn't find initializer for unused variable");
388
389 m_error_stream.Printf("Internal error [IRForTarget]: Result variable "
390 "(%s) has no writes and no initializer\n",
391 result_name);
392
393 return false;
Sean Callanan3989fb92011-01-27 01:07:04 +0000394 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000395
Kate Stoneb9c1b512016-09-06 20:57:50 +0000396 Constant *initializer = result_global->getInitializer();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000397
Kate Stoneb9c1b512016-09-06 20:57:50 +0000398 StoreInst *synthesized_store =
399 new StoreInst(initializer, new_result_global, first_entry_instruction);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000400
Kate Stoneb9c1b512016-09-06 20:57:50 +0000401 if (log)
402 log->Printf("Synthesized result store \"%s\"\n",
403 PrintValue(synthesized_store).c_str());
404 } else {
405 result_global->replaceAllUsesWith(new_result_global);
406 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000407
Kate Stoneb9c1b512016-09-06 20:57:50 +0000408 if (!m_decl_map->AddPersistentVariable(
409 result_decl, m_result_name, m_result_type, true, m_result_is_pointer))
410 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000411
Kate Stoneb9c1b512016-09-06 20:57:50 +0000412 result_global->eraseFromParent();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000413
Kate Stoneb9c1b512016-09-06 20:57:50 +0000414 return true;
415}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000416
Kate Stoneb9c1b512016-09-06 20:57:50 +0000417bool IRForTarget::RewriteObjCConstString(llvm::GlobalVariable *ns_str,
418 llvm::GlobalVariable *cstr) {
419 lldb_private::Log *log(
420 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000421
Kate Stoneb9c1b512016-09-06 20:57:50 +0000422 Type *ns_str_ty = ns_str->getType();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000423
Kate Stoneb9c1b512016-09-06 20:57:50 +0000424 Type *i8_ptr_ty = Type::getInt8PtrTy(m_module->getContext());
425 Type *i32_ty = Type::getInt32Ty(m_module->getContext());
426 Type *i8_ty = Type::getInt8Ty(m_module->getContext());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000427
Kate Stoneb9c1b512016-09-06 20:57:50 +0000428 if (!m_CFStringCreateWithBytes) {
429 lldb::addr_t CFStringCreateWithBytes_addr;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000430
Kate Stoneb9c1b512016-09-06 20:57:50 +0000431 static lldb_private::ConstString g_CFStringCreateWithBytes_str(
432 "CFStringCreateWithBytes");
Sean Callanan1f9db3e2013-06-28 21:44:15 +0000433
Kate Stoneb9c1b512016-09-06 20:57:50 +0000434 CFStringCreateWithBytes_addr =
435 m_execution_unit.FindSymbol(g_CFStringCreateWithBytes_str);
436 if (CFStringCreateWithBytes_addr == LLDB_INVALID_ADDRESS) {
437 if (log)
438 log->PutCString("Couldn't find CFStringCreateWithBytes in the target");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000439
Kate Stoneb9c1b512016-09-06 20:57:50 +0000440 m_error_stream.Printf("Error [IRForTarget]: Rewriting an Objective-C "
441 "constant string requires "
442 "CFStringCreateWithBytes\n");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000443
Kate Stoneb9c1b512016-09-06 20:57:50 +0000444 return false;
Sean Callanan549c9f72010-07-13 21:41:46 +0000445 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000446
Sean Callanan549c9f72010-07-13 21:41:46 +0000447 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000448 log->Printf("Found CFStringCreateWithBytes at 0x%" PRIx64,
449 CFStringCreateWithBytes_addr);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000450
Kate Stoneb9c1b512016-09-06 20:57:50 +0000451 // Build the function type:
452 //
453 // CFStringRef CFStringCreateWithBytes (
454 // CFAllocatorRef alloc,
455 // const UInt8 *bytes,
456 // CFIndex numBytes,
457 // CFStringEncoding encoding,
458 // Boolean isExternalRepresentation
459 // );
460 //
461 // We make the following substitutions:
462 //
463 // CFStringRef -> i8*
464 // CFAllocatorRef -> i8*
465 // UInt8 * -> i8*
466 // CFIndex -> long (i32 or i64, as appropriate; we ask the module for its
467 // pointer size for now)
468 // CFStringEncoding -> i32
469 // Boolean -> i8
470
471 Type *arg_type_array[5];
472
473 arg_type_array[0] = i8_ptr_ty;
474 arg_type_array[1] = i8_ptr_ty;
475 arg_type_array[2] = m_intptr_ty;
476 arg_type_array[3] = i32_ty;
477 arg_type_array[4] = i8_ty;
478
479 ArrayRef<Type *> CFSCWB_arg_types(arg_type_array, 5);
480
481 llvm::Type *CFSCWB_ty =
482 FunctionType::get(ns_str_ty, CFSCWB_arg_types, false);
483
484 // Build the constant containing the pointer to the function
485 PointerType *CFSCWB_ptr_ty = PointerType::getUnqual(CFSCWB_ty);
486 Constant *CFSCWB_addr_int =
487 ConstantInt::get(m_intptr_ty, CFStringCreateWithBytes_addr, false);
488 m_CFStringCreateWithBytes =
489 ConstantExpr::getIntToPtr(CFSCWB_addr_int, CFSCWB_ptr_ty);
490 }
491
492 ConstantDataSequential *string_array = NULL;
493
494 if (cstr)
495 string_array = dyn_cast<ConstantDataSequential>(cstr->getInitializer());
496
497 Constant *alloc_arg = Constant::getNullValue(i8_ptr_ty);
498 Constant *bytes_arg = cstr ? ConstantExpr::getBitCast(cstr, i8_ptr_ty)
499 : Constant::getNullValue(i8_ptr_ty);
500 Constant *numBytes_arg = ConstantInt::get(
501 m_intptr_ty, cstr ? string_array->getNumElements() - 1 : 0, false);
502 Constant *encoding_arg = ConstantInt::get(
503 i32_ty, 0x0600, false); /* 0x0600 is kCFStringEncodingASCII */
504 Constant *isExternal_arg =
505 ConstantInt::get(i8_ty, 0x0, false); /* 0x0 is false */
506
507 Value *argument_array[5];
508
509 argument_array[0] = alloc_arg;
510 argument_array[1] = bytes_arg;
511 argument_array[2] = numBytes_arg;
512 argument_array[3] = encoding_arg;
513 argument_array[4] = isExternal_arg;
514
515 ArrayRef<Value *> CFSCWB_arguments(argument_array, 5);
516
517 FunctionValueCache CFSCWB_Caller(
518 [this, &CFSCWB_arguments](llvm::Function *function) -> llvm::Value * {
519 return CallInst::Create(
520 m_CFStringCreateWithBytes, CFSCWB_arguments,
521 "CFStringCreateWithBytes",
522 llvm::cast<Instruction>(
523 m_entry_instruction_finder.GetValue(function)));
524 });
525
526 if (!UnfoldConstant(ns_str, nullptr, CFSCWB_Caller,
527 m_entry_instruction_finder, m_error_stream)) {
528 if (log)
529 log->PutCString(
530 "Couldn't replace the NSString with the result of the call");
531
532 m_error_stream.Printf("error [IRForTarget internal]: Couldn't replace an "
533 "Objective-C constant string with a dynamic "
534 "string\n");
535
536 return false;
537 }
538
539 ns_str->eraseFromParent();
540
541 return true;
Sean Callanan549c9f72010-07-13 21:41:46 +0000542}
543
Kate Stoneb9c1b512016-09-06 20:57:50 +0000544bool IRForTarget::RewriteObjCConstStrings() {
545 lldb_private::Log *log(
546 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000547
Kate Stoneb9c1b512016-09-06 20:57:50 +0000548 ValueSymbolTable &value_symbol_table = m_module->getValueSymbolTable();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000549
Kate Stoneb9c1b512016-09-06 20:57:50 +0000550 for (ValueSymbolTable::iterator vi = value_symbol_table.begin(),
551 ve = value_symbol_table.end();
552 vi != ve; ++vi) {
553 std::string value_name = vi->first().str();
554 const char *value_name_cstr = value_name.c_str();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000555
Kate Stoneb9c1b512016-09-06 20:57:50 +0000556 if (strstr(value_name_cstr, "_unnamed_cfstring_")) {
557 Value *nsstring_value = vi->second;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000558
Kate Stoneb9c1b512016-09-06 20:57:50 +0000559 GlobalVariable *nsstring_global =
560 dyn_cast<GlobalVariable>(nsstring_value);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000561
Kate Stoneb9c1b512016-09-06 20:57:50 +0000562 if (!nsstring_global) {
563 if (log)
564 log->PutCString("NSString variable is not a GlobalVariable");
565
566 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
567 "constant string is not a global variable\n");
568
569 return false;
570 }
571
572 if (!nsstring_global->hasInitializer()) {
573 if (log)
574 log->PutCString("NSString variable does not have an initializer");
575
576 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
577 "constant string does not have an initializer\n");
578
579 return false;
580 }
581
582 ConstantStruct *nsstring_struct =
583 dyn_cast<ConstantStruct>(nsstring_global->getInitializer());
584
585 if (!nsstring_struct) {
586 if (log)
587 log->PutCString(
588 "NSString variable's initializer is not a ConstantStruct");
589
590 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
591 "constant string is not a structure constant\n");
592
593 return false;
594 }
595
596 // We expect the following structure:
597 //
598 // struct {
599 // int *isa;
600 // int flags;
601 // char *str;
602 // long length;
603 // };
604
605 if (nsstring_struct->getNumOperands() != 4) {
606 if (log)
607 log->Printf("NSString variable's initializer structure has an "
608 "unexpected number of members. Should be 4, is %d",
609 nsstring_struct->getNumOperands());
610
611 m_error_stream.Printf("Internal error [IRForTarget]: The struct for an "
612 "Objective-C constant string is not as "
613 "expected\n");
614
615 return false;
616 }
617
618 Constant *nsstring_member = nsstring_struct->getOperand(2);
619
620 if (!nsstring_member) {
621 if (log)
622 log->PutCString("NSString initializer's str element was empty");
623
624 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
625 "constant string does not have a string "
626 "initializer\n");
627
628 return false;
629 }
630
631 ConstantExpr *nsstring_expr = dyn_cast<ConstantExpr>(nsstring_member);
632
633 if (!nsstring_expr) {
634 if (log)
635 log->PutCString(
636 "NSString initializer's str element is not a ConstantExpr");
637
638 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
639 "constant string's string initializer is not "
640 "constant\n");
641
642 return false;
643 }
644
645 if (nsstring_expr->getOpcode() != Instruction::GetElementPtr) {
646 if (log)
647 log->Printf("NSString initializer's str element is not a "
648 "GetElementPtr expression, it's a %s",
649 nsstring_expr->getOpcodeName());
650
651 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
652 "constant string's string initializer is not an "
653 "array\n");
654
655 return false;
656 }
657
658 Constant *nsstring_cstr = nsstring_expr->getOperand(0);
659
660 GlobalVariable *cstr_global = dyn_cast<GlobalVariable>(nsstring_cstr);
661
662 if (!cstr_global) {
663 if (log)
664 log->PutCString(
665 "NSString initializer's str element is not a GlobalVariable");
666
667 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
668 "constant string's string initializer doesn't "
669 "point to a global\n");
670
671 return false;
672 }
673
674 if (!cstr_global->hasInitializer()) {
675 if (log)
676 log->PutCString("NSString initializer's str element does not have an "
677 "initializer");
678
679 m_error_stream.Printf("Internal error [IRForTarget]: An Objective-C "
680 "constant string's string initializer doesn't "
681 "point to initialized data\n");
682
683 return false;
684 }
685
686 /*
687 if (!cstr_array)
688 {
689 if (log)
690 log->PutCString("NSString initializer's str element is not a
691 ConstantArray");
692
693 if (m_error_stream)
694 m_error_stream.Printf("Internal error [IRForTarget]: An
695 Objective-C constant string's string initializer doesn't point to an
696 array\n");
697
698 return false;
699 }
700
701 if (!cstr_array->isCString())
702 {
703 if (log)
704 log->PutCString("NSString initializer's str element is not a C
705 string array");
706
707 if (m_error_stream)
708 m_error_stream.Printf("Internal error [IRForTarget]: An
709 Objective-C constant string's string initializer doesn't point to a C
710 string\n");
711
712 return false;
713 }
714 */
715
716 ConstantDataArray *cstr_array =
717 dyn_cast<ConstantDataArray>(cstr_global->getInitializer());
718
719 if (log) {
720 if (cstr_array)
721 log->Printf("Found NSString constant %s, which contains \"%s\"",
722 value_name_cstr, cstr_array->getAsString().str().c_str());
723 else
724 log->Printf("Found NSString constant %s, which contains \"\"",
725 value_name_cstr);
726 }
727
728 if (!cstr_array)
729 cstr_global = NULL;
730
731 if (!RewriteObjCConstString(nsstring_global, cstr_global)) {
732 if (log)
733 log->PutCString("Error rewriting the constant string");
734
735 // We don't print an error message here because RewriteObjCConstString
736 // has done so for us.
737
738 return false;
739 }
740 }
741 }
742
743 for (ValueSymbolTable::iterator vi = value_symbol_table.begin(),
744 ve = value_symbol_table.end();
745 vi != ve; ++vi) {
746 std::string value_name = vi->first().str();
747 const char *value_name_cstr = value_name.c_str();
748
749 if (!strcmp(value_name_cstr, "__CFConstantStringClassReference")) {
750 GlobalVariable *gv = dyn_cast<GlobalVariable>(vi->second);
751
752 if (!gv) {
753 if (log)
754 log->PutCString(
755 "__CFConstantStringClassReference is not a global variable");
756
757 m_error_stream.Printf("Internal error [IRForTarget]: Found a "
758 "CFConstantStringClassReference, but it is not a "
759 "global object\n");
760
761 return false;
762 }
763
764 gv->eraseFromParent();
765
766 break;
767 }
768 }
769
770 return true;
Sean Callanan79763a42011-05-23 21:40:23 +0000771}
772
Kate Stoneb9c1b512016-09-06 20:57:50 +0000773static bool IsObjCSelectorRef(Value *value) {
774 GlobalVariable *global_variable = dyn_cast<GlobalVariable>(value);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000775
Kate Stoneb9c1b512016-09-06 20:57:50 +0000776 if (!global_variable || !global_variable->hasName() ||
777 !global_variable->getName().startswith("OBJC_SELECTOR_REFERENCES_"))
778 return false;
779
780 return true;
781}
782
783// This function does not report errors; its callers are responsible.
784bool IRForTarget::RewriteObjCSelector(Instruction *selector_load) {
785 lldb_private::Log *log(
786 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
787
788 LoadInst *load = dyn_cast<LoadInst>(selector_load);
789
790 if (!load)
791 return false;
792
793 // Unpack the message name from the selector. In LLVM IR, an objc_msgSend
794 // gets represented as
795 //
796 // %tmp = load i8** @"OBJC_SELECTOR_REFERENCES_" ; <i8*>
797 // %call = call i8* (i8*, i8*, ...)* @objc_msgSend(i8* %obj, i8* %tmp, ...)
798 // ; <i8*>
799 //
800 // where %obj is the object pointer and %tmp is the selector.
801 //
802 // @"OBJC_SELECTOR_REFERENCES_" is a pointer to a character array called
803 // @"\01L_OBJC_llvm_moduleETH_VAR_NAllvm_moduleE_".
804 // @"\01L_OBJC_llvm_moduleETH_VAR_NAllvm_moduleE_" contains the string.
805
806 // Find the pointer's initializer (a ConstantExpr with opcode GetElementPtr)
807 // and get the string from its target
808
809 GlobalVariable *_objc_selector_references_ =
810 dyn_cast<GlobalVariable>(load->getPointerOperand());
811
812 if (!_objc_selector_references_ ||
813 !_objc_selector_references_->hasInitializer())
814 return false;
815
816 Constant *osr_initializer = _objc_selector_references_->getInitializer();
817
818 ConstantExpr *osr_initializer_expr = dyn_cast<ConstantExpr>(osr_initializer);
819
820 if (!osr_initializer_expr ||
821 osr_initializer_expr->getOpcode() != Instruction::GetElementPtr)
822 return false;
823
824 Value *osr_initializer_base = osr_initializer_expr->getOperand(0);
825
826 if (!osr_initializer_base)
827 return false;
828
829 // Find the string's initializer (a ConstantArray) and get the string from it
830
831 GlobalVariable *_objc_meth_var_name_ =
832 dyn_cast<GlobalVariable>(osr_initializer_base);
833
834 if (!_objc_meth_var_name_ || !_objc_meth_var_name_->hasInitializer())
835 return false;
836
837 Constant *omvn_initializer = _objc_meth_var_name_->getInitializer();
838
839 ConstantDataArray *omvn_initializer_array =
840 dyn_cast<ConstantDataArray>(omvn_initializer);
841
842 if (!omvn_initializer_array->isString())
843 return false;
844
845 std::string omvn_initializer_string = omvn_initializer_array->getAsString();
846
847 if (log)
848 log->Printf("Found Objective-C selector reference \"%s\"",
849 omvn_initializer_string.c_str());
850
851 // Construct a call to sel_registerName
852
853 if (!m_sel_registerName) {
854 lldb::addr_t sel_registerName_addr;
855
856 static lldb_private::ConstString g_sel_registerName_str("sel_registerName");
857 sel_registerName_addr = m_execution_unit.FindSymbol(g_sel_registerName_str);
858 if (sel_registerName_addr == LLDB_INVALID_ADDRESS)
859 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000860
Sean Callananc70ed462011-10-25 18:36:40 +0000861 if (log)
Kate Stoneb9c1b512016-09-06 20:57:50 +0000862 log->Printf("Found sel_registerName at 0x%" PRIx64,
863 sel_registerName_addr);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000864
Kate Stoneb9c1b512016-09-06 20:57:50 +0000865 // Build the function type: struct objc_selector *sel_registerName(uint8_t*)
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000866
Kate Stoneb9c1b512016-09-06 20:57:50 +0000867 // The below code would be "more correct," but in actuality what's required
868 // is uint8_t*
869 // Type *sel_type = StructType::get(m_module->getContext());
870 // Type *sel_ptr_type = PointerType::getUnqual(sel_type);
871 Type *sel_ptr_type = Type::getInt8PtrTy(m_module->getContext());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000872
Kate Stoneb9c1b512016-09-06 20:57:50 +0000873 Type *type_array[1];
874
875 type_array[0] = llvm::Type::getInt8PtrTy(m_module->getContext());
876
877 ArrayRef<Type *> srN_arg_types(type_array, 1);
878
879 llvm::Type *srN_type =
880 FunctionType::get(sel_ptr_type, srN_arg_types, false);
881
882 // Build the constant containing the pointer to the function
883 PointerType *srN_ptr_ty = PointerType::getUnqual(srN_type);
884 Constant *srN_addr_int =
885 ConstantInt::get(m_intptr_ty, sel_registerName_addr, false);
886 m_sel_registerName = ConstantExpr::getIntToPtr(srN_addr_int, srN_ptr_ty);
887 }
888
889 Value *argument_array[1];
890
891 Constant *omvn_pointer = ConstantExpr::getBitCast(
892 _objc_meth_var_name_, Type::getInt8PtrTy(m_module->getContext()));
893
894 argument_array[0] = omvn_pointer;
895
896 ArrayRef<Value *> srN_arguments(argument_array, 1);
897
898 CallInst *srN_call = CallInst::Create(m_sel_registerName, srN_arguments,
899 "sel_registerName", selector_load);
900
901 // Replace the load with the call in all users
902
903 selector_load->replaceAllUsesWith(srN_call);
904
905 selector_load->eraseFromParent();
906
907 return true;
908}
909
910bool IRForTarget::RewriteObjCSelectors(BasicBlock &basic_block) {
911 lldb_private::Log *log(
912 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
913
914 BasicBlock::iterator ii;
915
916 typedef SmallVector<Instruction *, 2> InstrList;
917 typedef InstrList::iterator InstrIterator;
918
919 InstrList selector_loads;
920
921 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
922 Instruction &inst = *ii;
923
924 if (LoadInst *load = dyn_cast<LoadInst>(&inst))
925 if (IsObjCSelectorRef(load->getPointerOperand()))
926 selector_loads.push_back(&inst);
927 }
928
929 InstrIterator iter;
930
931 for (iter = selector_loads.begin(); iter != selector_loads.end(); ++iter) {
932 if (!RewriteObjCSelector(*iter)) {
933 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't change a "
934 "static reference to an Objective-C selector to a "
935 "dynamic reference\n");
936
937 if (log)
938 log->PutCString(
939 "Couldn't rewrite a reference to an Objective-C selector");
940
941 return false;
Sean Callananc70ed462011-10-25 18:36:40 +0000942 }
Kate Stoneb9c1b512016-09-06 20:57:50 +0000943 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000944
Kate Stoneb9c1b512016-09-06 20:57:50 +0000945 return true;
946}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +0000947
Sean Callananac900582016-09-29 00:45:33 +0000948static bool IsObjCClassReference(Value *value) {
949 GlobalVariable *global_variable = dyn_cast<GlobalVariable>(value);
950
951 if (!global_variable || !global_variable->hasName() ||
952 !global_variable->getName().startswith("OBJC_CLASS_REFERENCES_"))
953 return false;
954
955 return true;
956}
957
958// This function does not report errors; its callers are responsible.
959bool IRForTarget::RewriteObjCClassReference(Instruction *class_load) {
960 lldb_private::Log *log(
961 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
962
963 LoadInst *load = dyn_cast<LoadInst>(class_load);
964
965 if (!load)
966 return false;
967
968 // Unpack the class name from the reference. In LLVM IR, a reference to an
969 // Objective-C class gets represented as
970 //
971 // %tmp = load %struct._objc_class*,
972 // %struct._objc_class** @OBJC_CLASS_REFERENCES_, align 4
973 //
974 // @"OBJC_CLASS_REFERENCES_ is a bitcast of a character array called
975 // @OBJC_CLASS_NAME_.
976 // @OBJC_CLASS_NAME contains the string.
977
978 // Find the pointer's initializer (a ConstantExpr with opcode BitCast)
979 // and get the string from its target
980
981 GlobalVariable *_objc_class_references_ =
982 dyn_cast<GlobalVariable>(load->getPointerOperand());
983
984 if (!_objc_class_references_ ||
985 !_objc_class_references_->hasInitializer())
986 return false;
987
988 Constant *ocr_initializer = _objc_class_references_->getInitializer();
989
990 ConstantExpr *ocr_initializer_expr = dyn_cast<ConstantExpr>(ocr_initializer);
991
992 if (!ocr_initializer_expr ||
993 ocr_initializer_expr->getOpcode() != Instruction::BitCast)
994 return false;
995
996 Value *ocr_initializer_base = ocr_initializer_expr->getOperand(0);
997
998 if (!ocr_initializer_base)
999 return false;
1000
1001 // Find the string's initializer (a ConstantArray) and get the string from it
1002
1003 GlobalVariable *_objc_class_name_ =
1004 dyn_cast<GlobalVariable>(ocr_initializer_base);
1005
1006 if (!_objc_class_name_ || !_objc_class_name_->hasInitializer())
1007 return false;
1008
1009 Constant *ocn_initializer = _objc_class_name_->getInitializer();
1010
1011 ConstantDataArray *ocn_initializer_array =
1012 dyn_cast<ConstantDataArray>(ocn_initializer);
1013
1014 if (!ocn_initializer_array->isString())
1015 return false;
1016
1017 std::string ocn_initializer_string = ocn_initializer_array->getAsString();
1018
1019 if (log)
1020 log->Printf("Found Objective-C class reference \"%s\"",
1021 ocn_initializer_string.c_str());
1022
1023 // Construct a call to objc_getClass
1024
1025 if (!m_objc_getClass) {
1026 lldb::addr_t objc_getClass_addr;
1027
1028 static lldb_private::ConstString g_objc_getClass_str("objc_getClass");
1029 objc_getClass_addr = m_execution_unit.FindSymbol(g_objc_getClass_str);
1030 if (objc_getClass_addr == LLDB_INVALID_ADDRESS)
1031 return false;
1032
1033 if (log)
1034 log->Printf("Found objc_getClass at 0x%" PRIx64,
1035 objc_getClass_addr);
1036
1037 // Build the function type: %struct._objc_class *objc_getClass(i8*)
1038
1039 Type *class_type = load->getType();
1040 Type *type_array[1];
1041 type_array[0] = llvm::Type::getInt8PtrTy(m_module->getContext());
1042
1043 ArrayRef<Type *> ogC_arg_types(type_array, 1);
1044
1045 llvm::Type *ogC_type =
1046 FunctionType::get(class_type, ogC_arg_types, false);
1047
1048 // Build the constant containing the pointer to the function
1049 PointerType *ogC_ptr_ty = PointerType::getUnqual(ogC_type);
1050 Constant *ogC_addr_int =
1051 ConstantInt::get(m_intptr_ty, objc_getClass_addr, false);
1052 m_objc_getClass = ConstantExpr::getIntToPtr(ogC_addr_int, ogC_ptr_ty);
1053 }
1054
1055 Value *argument_array[1];
1056
1057 Constant *ocn_pointer = ConstantExpr::getBitCast(
1058 _objc_class_name_, Type::getInt8PtrTy(m_module->getContext()));
1059
1060 argument_array[0] = ocn_pointer;
1061
1062 ArrayRef<Value *> ogC_arguments(argument_array, 1);
1063
1064 CallInst *ogC_call = CallInst::Create(m_objc_getClass, ogC_arguments,
1065 "objc_getClass", class_load);
1066
1067 // Replace the load with the call in all users
1068
1069 class_load->replaceAllUsesWith(ogC_call);
1070
1071 class_load->eraseFromParent();
1072
1073 return true;
1074}
1075
1076bool IRForTarget::RewriteObjCClassReferences(BasicBlock &basic_block) {
1077 lldb_private::Log *log(
1078 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1079
1080 BasicBlock::iterator ii;
1081
1082 typedef SmallVector<Instruction *, 2> InstrList;
1083 typedef InstrList::iterator InstrIterator;
1084
1085 InstrList class_loads;
1086
1087 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
1088 Instruction &inst = *ii;
1089
1090 if (LoadInst *load = dyn_cast<LoadInst>(&inst))
1091 if (IsObjCClassReference(load->getPointerOperand()))
1092 class_loads.push_back(&inst);
1093 }
1094
1095 InstrIterator iter;
1096
1097 for (iter = class_loads.begin(); iter != class_loads.end(); ++iter) {
1098 if (!RewriteObjCClassReference(*iter)) {
1099 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't change a "
1100 "static reference to an Objective-C class to a "
1101 "dynamic reference\n");
1102
1103 if (log)
1104 log->PutCString(
1105 "Couldn't rewrite a reference to an Objective-C class");
1106
1107 return false;
1108 }
1109 }
1110
1111 return true;
1112}
1113
Kate Stoneb9c1b512016-09-06 20:57:50 +00001114// This function does not report errors; its callers are responsible.
1115bool IRForTarget::RewritePersistentAlloc(llvm::Instruction *persistent_alloc) {
1116 lldb_private::Log *log(
1117 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001118
Kate Stoneb9c1b512016-09-06 20:57:50 +00001119 AllocaInst *alloc = dyn_cast<AllocaInst>(persistent_alloc);
Sean Callanan1f9db3e2013-06-28 21:44:15 +00001120
Kate Stoneb9c1b512016-09-06 20:57:50 +00001121 MDNode *alloc_md = alloc->getMetadata("clang.decl.ptr");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001122
Kate Stoneb9c1b512016-09-06 20:57:50 +00001123 if (!alloc_md || !alloc_md->getNumOperands())
1124 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001125
Kate Stoneb9c1b512016-09-06 20:57:50 +00001126 ConstantInt *constant_int =
1127 mdconst::dyn_extract<ConstantInt>(alloc_md->getOperand(0));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001128
Kate Stoneb9c1b512016-09-06 20:57:50 +00001129 if (!constant_int)
1130 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001131
Kate Stoneb9c1b512016-09-06 20:57:50 +00001132 // We attempt to register this as a new persistent variable with the DeclMap.
Sean Callanan1f9db3e2013-06-28 21:44:15 +00001133
Kate Stoneb9c1b512016-09-06 20:57:50 +00001134 uintptr_t ptr = constant_int->getZExtValue();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001135
Kate Stoneb9c1b512016-09-06 20:57:50 +00001136 clang::VarDecl *decl = reinterpret_cast<clang::VarDecl *>(ptr);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001137
Kate Stoneb9c1b512016-09-06 20:57:50 +00001138 lldb_private::TypeFromParser result_decl_type(
1139 decl->getType().getAsOpaquePtr(),
1140 lldb_private::ClangASTContext::GetASTContext(&decl->getASTContext()));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001141
Kate Stoneb9c1b512016-09-06 20:57:50 +00001142 StringRef decl_name(decl->getName());
1143 lldb_private::ConstString persistent_variable_name(decl_name.data(),
1144 decl_name.size());
1145 if (!m_decl_map->AddPersistentVariable(decl, persistent_variable_name,
1146 result_decl_type, false, false))
1147 return false;
Sean Callanan6e6d4a62012-07-21 02:02:15 +00001148
Kate Stoneb9c1b512016-09-06 20:57:50 +00001149 GlobalVariable *persistent_global = new GlobalVariable(
1150 (*m_module), alloc->getType(), false, /* not constant */
1151 GlobalValue::ExternalLinkage, NULL, /* no initializer */
Malcolm Parsons771ef6d2016-11-02 20:34:10 +00001152 alloc->getName().str());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001153
Kate Stoneb9c1b512016-09-06 20:57:50 +00001154 // What we're going to do here is make believe this was a regular old external
1155 // variable. That means we need to make the metadata valid.
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001156
Kate Stoneb9c1b512016-09-06 20:57:50 +00001157 NamedMDNode *named_metadata =
1158 m_module->getOrInsertNamedMetadata("clang.global.decl.ptrs");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001159
Kate Stoneb9c1b512016-09-06 20:57:50 +00001160 llvm::Metadata *values[2];
1161 values[0] = ConstantAsMetadata::get(persistent_global);
1162 values[1] = ConstantAsMetadata::get(constant_int);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001163
Kate Stoneb9c1b512016-09-06 20:57:50 +00001164 ArrayRef<llvm::Metadata *> value_ref(values, 2);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001165
Kate Stoneb9c1b512016-09-06 20:57:50 +00001166 MDNode *persistent_global_md = MDNode::get(m_module->getContext(), value_ref);
1167 named_metadata->addOperand(persistent_global_md);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001168
Kate Stoneb9c1b512016-09-06 20:57:50 +00001169 // Now, since the variable is a pointer variable, we will drop in a load of
1170 // that
1171 // pointer variable.
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001172
Kate Stoneb9c1b512016-09-06 20:57:50 +00001173 LoadInst *persistent_load = new LoadInst(persistent_global, "", alloc);
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001174
Kate Stoneb9c1b512016-09-06 20:57:50 +00001175 if (log)
1176 log->Printf("Replacing \"%s\" with \"%s\"", PrintValue(alloc).c_str(),
1177 PrintValue(persistent_load).c_str());
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001178
Kate Stoneb9c1b512016-09-06 20:57:50 +00001179 alloc->replaceAllUsesWith(persistent_load);
1180 alloc->eraseFromParent();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001181
Kate Stoneb9c1b512016-09-06 20:57:50 +00001182 return true;
1183}
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001184
Kate Stoneb9c1b512016-09-06 20:57:50 +00001185bool IRForTarget::RewritePersistentAllocs(llvm::BasicBlock &basic_block) {
1186 if (!m_resolve_vars)
1187 return true;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001188
Kate Stoneb9c1b512016-09-06 20:57:50 +00001189 lldb_private::Log *log(
1190 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001191
Kate Stoneb9c1b512016-09-06 20:57:50 +00001192 BasicBlock::iterator ii;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001193
Kate Stoneb9c1b512016-09-06 20:57:50 +00001194 typedef SmallVector<Instruction *, 2> InstrList;
1195 typedef InstrList::iterator InstrIterator;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001196
Kate Stoneb9c1b512016-09-06 20:57:50 +00001197 InstrList pvar_allocs;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001198
Kate Stoneb9c1b512016-09-06 20:57:50 +00001199 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
1200 Instruction &inst = *ii;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001201
Kate Stoneb9c1b512016-09-06 20:57:50 +00001202 if (AllocaInst *alloc = dyn_cast<AllocaInst>(&inst)) {
1203 llvm::StringRef alloc_name = alloc->getName();
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001204
Kate Stoneb9c1b512016-09-06 20:57:50 +00001205 if (alloc_name.startswith("$") && !alloc_name.startswith("$__lldb")) {
1206 if (alloc_name.find_first_of("0123456789") == 1) {
1207 if (log)
1208 log->Printf("Rejecting a numeric persistent variable.");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001209
Kate Stoneb9c1b512016-09-06 20:57:50 +00001210 m_error_stream.Printf("Error [IRForTarget]: Names starting with $0, "
1211 "$1, ... are reserved for use as result "
1212 "names\n");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001213
Kate Stoneb9c1b512016-09-06 20:57:50 +00001214 return false;
Sean Callanan00294b32016-03-22 21:05:51 +00001215 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001216
Kate Stoneb9c1b512016-09-06 20:57:50 +00001217 pvar_allocs.push_back(alloc);
1218 }
Sean Callanan17827832010-12-13 22:46:15 +00001219 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00001220 }
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001221
Kate Stoneb9c1b512016-09-06 20:57:50 +00001222 InstrIterator iter;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001223
Kate Stoneb9c1b512016-09-06 20:57:50 +00001224 for (iter = pvar_allocs.begin(); iter != pvar_allocs.end(); ++iter) {
1225 if (!RewritePersistentAlloc(*iter)) {
1226 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't rewrite "
1227 "the creation of a persistent variable\n");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001228
Kate Stoneb9c1b512016-09-06 20:57:50 +00001229 if (log)
1230 log->PutCString(
1231 "Couldn't rewrite the creation of a persistent variable");
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001232
Kate Stoneb9c1b512016-09-06 20:57:50 +00001233 return false;
Sean Callanan2ab712f22010-07-03 01:35:46 +00001234 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00001235 }
1236
1237 return true;
1238}
1239
1240bool IRForTarget::MaterializeInitializer(uint8_t *data, Constant *initializer) {
1241 if (!initializer)
1242 return true;
1243
1244 lldb_private::Log *log(
1245 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1246
1247 if (log && log->GetVerbose())
1248 log->Printf(" MaterializeInitializer(%p, %s)", (void *)data,
1249 PrintValue(initializer).c_str());
1250
1251 Type *initializer_type = initializer->getType();
1252
1253 if (ConstantInt *int_initializer = dyn_cast<ConstantInt>(initializer)) {
1254 size_t constant_size = m_target_data->getTypeStoreSize(initializer_type);
1255 lldb_private::Scalar scalar = int_initializer->getValue().zextOrTrunc(
1256 llvm::NextPowerOf2(constant_size) * 8);
1257
1258 lldb_private::Error get_data_error;
1259 if (!scalar.GetAsMemoryData(data, constant_size,
1260 lldb_private::endian::InlHostByteOrder(),
1261 get_data_error))
1262 return false;
Sylvestre Ledruceab3ac2014-07-06 17:54:58 +00001263
1264 return true;
Kate Stoneb9c1b512016-09-06 20:57:50 +00001265 } else if (ConstantDataArray *array_initializer =
1266 dyn_cast<ConstantDataArray>(initializer)) {
1267 if (array_initializer->isString()) {
1268 std::string array_initializer_string = array_initializer->getAsString();
1269 memcpy(data, array_initializer_string.c_str(),
1270 m_target_data->getTypeStoreSize(initializer_type));
1271 } else {
1272 ArrayType *array_initializer_type = array_initializer->getType();
1273 Type *array_element_type = array_initializer_type->getElementType();
1274
1275 size_t element_size = m_target_data->getTypeAllocSize(array_element_type);
1276
1277 for (unsigned i = 0; i < array_initializer->getNumOperands(); ++i) {
1278 Value *operand_value = array_initializer->getOperand(i);
1279 Constant *operand_constant = dyn_cast<Constant>(operand_value);
1280
1281 if (!operand_constant)
1282 return false;
1283
1284 if (!MaterializeInitializer(data + (i * element_size),
1285 operand_constant))
1286 return false;
1287 }
1288 }
1289 return true;
1290 } else if (ConstantStruct *struct_initializer =
1291 dyn_cast<ConstantStruct>(initializer)) {
1292 StructType *struct_initializer_type = struct_initializer->getType();
1293 const StructLayout *struct_layout =
1294 m_target_data->getStructLayout(struct_initializer_type);
1295
1296 for (unsigned i = 0; i < struct_initializer->getNumOperands(); ++i) {
1297 if (!MaterializeInitializer(data + struct_layout->getElementOffset(i),
1298 struct_initializer->getOperand(i)))
1299 return false;
1300 }
1301 return true;
1302 } else if (isa<ConstantAggregateZero>(initializer)) {
1303 memset(data, 0, m_target_data->getTypeStoreSize(initializer_type));
1304 return true;
1305 }
1306 return false;
Sean Callanan2ab712f22010-07-03 01:35:46 +00001307}
1308
Kate Stoneb9c1b512016-09-06 20:57:50 +00001309// This function does not report errors; its callers are responsible.
1310bool IRForTarget::MaybeHandleVariable(Value *llvm_value_ptr) {
1311 lldb_private::Log *log(
1312 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1313
1314 if (log)
1315 log->Printf("MaybeHandleVariable (%s)", PrintValue(llvm_value_ptr).c_str());
1316
1317 if (ConstantExpr *constant_expr = dyn_cast<ConstantExpr>(llvm_value_ptr)) {
1318 switch (constant_expr->getOpcode()) {
1319 default:
1320 break;
1321 case Instruction::GetElementPtr:
1322 case Instruction::BitCast:
1323 Value *s = constant_expr->getOperand(0);
1324 if (!MaybeHandleVariable(s))
1325 return false;
1326 }
1327 } else if (GlobalVariable *global_variable =
1328 dyn_cast<GlobalVariable>(llvm_value_ptr)) {
1329 if (!GlobalValue::isExternalLinkage(global_variable->getLinkage()))
1330 return true;
1331
1332 clang::NamedDecl *named_decl = DeclForGlobal(global_variable);
1333
1334 if (!named_decl) {
1335 if (IsObjCSelectorRef(llvm_value_ptr))
1336 return true;
1337
1338 if (!global_variable->hasExternalLinkage())
1339 return true;
1340
1341 if (log)
1342 log->Printf("Found global variable \"%s\" without metadata",
1343 global_variable->getName().str().c_str());
1344
1345 return false;
1346 }
1347
1348 std::string name(named_decl->getName().str());
1349
1350 clang::ValueDecl *value_decl = dyn_cast<clang::ValueDecl>(named_decl);
1351 if (value_decl == NULL)
1352 return false;
1353
1354 lldb_private::CompilerType compiler_type(&value_decl->getASTContext(),
1355 value_decl->getType());
1356
1357 const Type *value_type = NULL;
1358
1359 if (name[0] == '$') {
1360 // The $__lldb_expr_result name indicates the return value has allocated
1361 // as
1362 // a static variable. Per the comment at
1363 // ASTResultSynthesizer::SynthesizeBodyResult,
1364 // accesses to this static variable need to be redirected to the result of
1365 // dereferencing
1366 // a pointer that is passed in as one of the arguments.
1367 //
1368 // Consequently, when reporting the size of the type, we report a pointer
1369 // type pointing
1370 // to the type of $__lldb_expr_result, not the type itself.
1371 //
1372 // We also do this for any user-declared persistent variables.
1373 compiler_type = compiler_type.GetPointerType();
1374 value_type = PointerType::get(global_variable->getType(), 0);
1375 } else {
1376 value_type = global_variable->getType();
1377 }
1378
1379 const uint64_t value_size = compiler_type.GetByteSize(nullptr);
1380 lldb::offset_t value_alignment =
1381 (compiler_type.GetTypeBitAlign() + 7ull) / 8ull;
1382
1383 if (log) {
1384 log->Printf("Type of \"%s\" is [clang \"%s\", llvm \"%s\"] [size %" PRIu64
1385 ", align %" PRIu64 "]",
1386 name.c_str(),
1387 lldb_private::ClangUtil::GetQualType(compiler_type)
1388 .getAsString()
1389 .c_str(),
1390 PrintType(value_type).c_str(), value_size, value_alignment);
1391 }
1392
1393 if (named_decl &&
1394 !m_decl_map->AddValueToStruct(
1395 named_decl, lldb_private::ConstString(name.c_str()), llvm_value_ptr,
1396 value_size, value_alignment)) {
1397 if (!global_variable->hasExternalLinkage())
1398 return true;
1399 else
1400 return true;
1401 }
1402 } else if (dyn_cast<llvm::Function>(llvm_value_ptr)) {
1403 if (log)
1404 log->Printf("Function pointers aren't handled right now");
1405
1406 return false;
1407 }
1408
1409 return true;
Sean Callanan2ab712f22010-07-03 01:35:46 +00001410}
1411
Kate Stoneb9c1b512016-09-06 20:57:50 +00001412// This function does not report errors; its callers are responsible.
1413bool IRForTarget::HandleSymbol(Value *symbol) {
1414 lldb_private::Log *log(
1415 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1416
1417 lldb_private::ConstString name(symbol->getName().str().c_str());
1418
1419 lldb::addr_t symbol_addr =
1420 m_decl_map->GetSymbolAddress(name, lldb::eSymbolTypeAny);
1421
1422 if (symbol_addr == LLDB_INVALID_ADDRESS) {
1423 if (log)
1424 log->Printf("Symbol \"%s\" had no address", name.GetCString());
1425
1426 return false;
1427 }
1428
1429 if (log)
1430 log->Printf("Found \"%s\" at 0x%" PRIx64, name.GetCString(), symbol_addr);
1431
1432 Type *symbol_type = symbol->getType();
1433
1434 Constant *symbol_addr_int = ConstantInt::get(m_intptr_ty, symbol_addr, false);
1435
1436 Value *symbol_addr_ptr =
1437 ConstantExpr::getIntToPtr(symbol_addr_int, symbol_type);
1438
1439 if (log)
1440 log->Printf("Replacing %s with %s", PrintValue(symbol).c_str(),
1441 PrintValue(symbol_addr_ptr).c_str());
1442
1443 symbol->replaceAllUsesWith(symbol_addr_ptr);
1444
1445 return true;
1446}
1447
1448bool IRForTarget::MaybeHandleCallArguments(CallInst *Old) {
1449 lldb_private::Log *log(
1450 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1451
1452 if (log)
1453 log->Printf("MaybeHandleCallArguments(%s)", PrintValue(Old).c_str());
1454
1455 for (unsigned op_index = 0, num_ops = Old->getNumArgOperands();
1456 op_index < num_ops; ++op_index)
1457 if (!MaybeHandleVariable(Old->getArgOperand(
1458 op_index))) // conservatively believe that this is a store
1459 {
1460 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't rewrite "
1461 "one of the arguments of a function call.\n");
1462
1463 return false;
1464 }
1465
1466 return true;
1467}
1468
1469bool IRForTarget::HandleObjCClass(Value *classlist_reference) {
1470 lldb_private::Log *log(
1471 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1472
1473 GlobalVariable *global_variable =
1474 dyn_cast<GlobalVariable>(classlist_reference);
1475
1476 if (!global_variable)
1477 return false;
1478
1479 Constant *initializer = global_variable->getInitializer();
1480
1481 if (!initializer)
1482 return false;
1483
1484 if (!initializer->hasName())
1485 return false;
1486
1487 StringRef name(initializer->getName());
1488 lldb_private::ConstString name_cstr(name.str().c_str());
1489 lldb::addr_t class_ptr =
1490 m_decl_map->GetSymbolAddress(name_cstr, lldb::eSymbolTypeObjCClass);
1491
1492 if (log)
1493 log->Printf("Found reference to Objective-C class %s (0x%llx)",
1494 name_cstr.AsCString(), (unsigned long long)class_ptr);
1495
1496 if (class_ptr == LLDB_INVALID_ADDRESS)
1497 return false;
1498
1499 if (global_variable->use_empty())
1500 return false;
1501
1502 SmallVector<LoadInst *, 2> load_instructions;
1503
1504 for (llvm::User *u : global_variable->users()) {
1505 if (LoadInst *load_instruction = dyn_cast<LoadInst>(u))
1506 load_instructions.push_back(load_instruction);
1507 }
1508
1509 if (load_instructions.empty())
1510 return false;
1511
1512 Constant *class_addr = ConstantInt::get(m_intptr_ty, (uint64_t)class_ptr);
1513
1514 for (LoadInst *load_instruction : load_instructions) {
1515 Constant *class_bitcast =
1516 ConstantExpr::getIntToPtr(class_addr, load_instruction->getType());
1517
1518 load_instruction->replaceAllUsesWith(class_bitcast);
1519
1520 load_instruction->eraseFromParent();
1521 }
1522
1523 return true;
1524}
1525
1526bool IRForTarget::RemoveCXAAtExit(BasicBlock &basic_block) {
1527 BasicBlock::iterator ii;
1528
1529 std::vector<CallInst *> calls_to_remove;
1530
1531 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
1532 Instruction &inst = *ii;
1533
1534 CallInst *call = dyn_cast<CallInst>(&inst);
1535
1536 // MaybeHandleCallArguments handles error reporting; we are silent here
1537 if (!call)
1538 continue;
1539
1540 bool remove = false;
1541
1542 llvm::Function *func = call->getCalledFunction();
1543
1544 if (func && func->getName() == "__cxa_atexit")
1545 remove = true;
1546
1547 llvm::Value *val = call->getCalledValue();
1548
1549 if (val && val->getName() == "__cxa_atexit")
1550 remove = true;
1551
1552 if (remove)
1553 calls_to_remove.push_back(call);
1554 }
1555
1556 for (std::vector<CallInst *>::iterator ci = calls_to_remove.begin(),
1557 ce = calls_to_remove.end();
1558 ci != ce; ++ci) {
1559 (*ci)->eraseFromParent();
1560 }
1561
1562 return true;
1563}
1564
1565bool IRForTarget::ResolveCalls(BasicBlock &basic_block) {
1566 /////////////////////////////////////////////////////////////////////////
1567 // Prepare the current basic block for execution in the remote process
1568 //
1569
1570 BasicBlock::iterator ii;
1571
1572 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
1573 Instruction &inst = *ii;
1574
1575 CallInst *call = dyn_cast<CallInst>(&inst);
1576
1577 // MaybeHandleCallArguments handles error reporting; we are silent here
1578 if (call && !MaybeHandleCallArguments(call))
1579 return false;
1580 }
1581
1582 return true;
1583}
1584
1585bool IRForTarget::ResolveExternals(Function &llvm_function) {
1586 lldb_private::Log *log(
1587 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1588
1589 for (GlobalVariable &global_var : m_module->globals()) {
1590 std::string global_name = global_var.getName().str();
1591
1592 if (log)
1593 log->Printf("Examining %s, DeclForGlobalValue returns %p",
1594 global_name.c_str(),
1595 static_cast<void *>(DeclForGlobal(&global_var)));
1596
1597 if (global_name.find("OBJC_IVAR") == 0) {
1598 if (!HandleSymbol(&global_var)) {
1599 m_error_stream.Printf("Error [IRForTarget]: Couldn't find Objective-C "
1600 "indirect ivar symbol %s\n",
1601 global_name.c_str());
1602
1603 return false;
1604 }
1605 } else if (global_name.find("OBJC_CLASSLIST_REFERENCES_$") !=
1606 global_name.npos) {
1607 if (!HandleObjCClass(&global_var)) {
1608 m_error_stream.Printf("Error [IRForTarget]: Couldn't resolve the class "
1609 "for an Objective-C static method call\n");
1610
1611 return false;
1612 }
1613 } else if (global_name.find("OBJC_CLASSLIST_SUP_REFS_$") !=
1614 global_name.npos) {
1615 if (!HandleObjCClass(&global_var)) {
1616 m_error_stream.Printf("Error [IRForTarget]: Couldn't resolve the class "
1617 "for an Objective-C static method call\n");
1618
1619 return false;
1620 }
1621 } else if (DeclForGlobal(&global_var)) {
1622 if (!MaybeHandleVariable(&global_var)) {
1623 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't rewrite "
1624 "external variable %s\n",
1625 global_name.c_str());
1626
1627 return false;
1628 }
1629 }
1630 }
1631
1632 return true;
1633}
1634
1635static bool isGuardVariableRef(Value *V) {
1636 Constant *Old = NULL;
1637
1638 if (!(Old = dyn_cast<Constant>(V)))
1639 return false;
1640
1641 ConstantExpr *CE = NULL;
1642
1643 if ((CE = dyn_cast<ConstantExpr>(V))) {
1644 if (CE->getOpcode() != Instruction::BitCast)
1645 return false;
1646
1647 Old = CE->getOperand(0);
1648 }
1649
1650 GlobalVariable *GV = dyn_cast<GlobalVariable>(Old);
1651
1652 if (!GV || !GV->hasName() ||
1653 (!GV->getName().startswith("_ZGV") && // Itanium ABI guard variable
1654 !GV->getName().endswith("@4IA"))) // Microsoft ABI guard variable
1655 {
1656 return false;
1657 }
1658
1659 return true;
1660}
1661
1662void IRForTarget::TurnGuardLoadIntoZero(llvm::Instruction *guard_load) {
1663 Constant *zero(Constant::getNullValue(guard_load->getType()));
1664 guard_load->replaceAllUsesWith(zero);
1665 guard_load->eraseFromParent();
1666}
1667
1668static void ExciseGuardStore(Instruction *guard_store) {
1669 guard_store->eraseFromParent();
1670}
1671
1672bool IRForTarget::RemoveGuards(BasicBlock &basic_block) {
1673 ///////////////////////////////////////////////////////
1674 // Eliminate any reference to guard variables found.
1675 //
1676
1677 BasicBlock::iterator ii;
1678
1679 typedef SmallVector<Instruction *, 2> InstrList;
1680 typedef InstrList::iterator InstrIterator;
1681
1682 InstrList guard_loads;
1683 InstrList guard_stores;
1684
1685 for (ii = basic_block.begin(); ii != basic_block.end(); ++ii) {
1686 Instruction &inst = *ii;
1687
1688 if (LoadInst *load = dyn_cast<LoadInst>(&inst))
1689 if (isGuardVariableRef(load->getPointerOperand()))
1690 guard_loads.push_back(&inst);
1691
1692 if (StoreInst *store = dyn_cast<StoreInst>(&inst))
1693 if (isGuardVariableRef(store->getPointerOperand()))
1694 guard_stores.push_back(&inst);
1695 }
1696
1697 InstrIterator iter;
1698
1699 for (iter = guard_loads.begin(); iter != guard_loads.end(); ++iter)
1700 TurnGuardLoadIntoZero(*iter);
1701
1702 for (iter = guard_stores.begin(); iter != guard_stores.end(); ++iter)
1703 ExciseGuardStore(*iter);
1704
1705 return true;
1706}
1707
1708// This function does not report errors; its callers are responsible.
1709bool IRForTarget::UnfoldConstant(Constant *old_constant,
1710 llvm::Function *llvm_function,
1711 FunctionValueCache &value_maker,
1712 FunctionValueCache &entry_instruction_finder,
1713 lldb_private::Stream &error_stream) {
1714 SmallVector<User *, 16> users;
1715
1716 // We do this because the use list might change, invalidating our iterator.
1717 // Much better to keep a work list ourselves.
1718 for (llvm::User *u : old_constant->users())
1719 users.push_back(u);
1720
1721 for (size_t i = 0; i < users.size(); ++i) {
1722 User *user = users[i];
1723
1724 if (Constant *constant = dyn_cast<Constant>(user)) {
1725 // synthesize a new non-constant equivalent of the constant
1726
1727 if (ConstantExpr *constant_expr = dyn_cast<ConstantExpr>(constant)) {
1728 switch (constant_expr->getOpcode()) {
1729 default:
1730 error_stream.Printf("error [IRForTarget internal]: Unhandled "
1731 "constant expression type: \"%s\"",
1732 PrintValue(constant_expr).c_str());
1733 return false;
1734 case Instruction::BitCast: {
1735 FunctionValueCache bit_cast_maker(
1736 [&value_maker, &entry_instruction_finder, old_constant,
1737 constant_expr](llvm::Function *function) -> llvm::Value * {
1738 // UnaryExpr
1739 // OperandList[0] is value
1740
1741 if (constant_expr->getOperand(0) != old_constant)
1742 return constant_expr;
1743
1744 return new BitCastInst(
1745 value_maker.GetValue(function), constant_expr->getType(),
1746 "", llvm::cast<Instruction>(
1747 entry_instruction_finder.GetValue(function)));
1748 });
1749
1750 if (!UnfoldConstant(constant_expr, llvm_function, bit_cast_maker,
1751 entry_instruction_finder, error_stream))
1752 return false;
1753 } break;
1754 case Instruction::GetElementPtr: {
1755 // GetElementPtrConstantExpr
1756 // OperandList[0] is base
1757 // OperandList[1]... are indices
1758
1759 FunctionValueCache get_element_pointer_maker(
1760 [&value_maker, &entry_instruction_finder, old_constant,
1761 constant_expr](llvm::Function *function) -> llvm::Value * {
1762 Value *ptr = constant_expr->getOperand(0);
1763
1764 if (ptr == old_constant)
1765 ptr = value_maker.GetValue(function);
1766
1767 std::vector<Value *> index_vector;
1768
1769 unsigned operand_index;
1770 unsigned num_operands = constant_expr->getNumOperands();
1771
1772 for (operand_index = 1; operand_index < num_operands;
1773 ++operand_index) {
1774 Value *operand = constant_expr->getOperand(operand_index);
1775
1776 if (operand == old_constant)
1777 operand = value_maker.GetValue(function);
1778
1779 index_vector.push_back(operand);
1780 }
1781
1782 ArrayRef<Value *> indices(index_vector);
1783
1784 return GetElementPtrInst::Create(
1785 nullptr, ptr, indices, "",
1786 llvm::cast<Instruction>(
1787 entry_instruction_finder.GetValue(function)));
1788 });
1789
1790 if (!UnfoldConstant(constant_expr, llvm_function,
1791 get_element_pointer_maker,
1792 entry_instruction_finder, error_stream))
1793 return false;
1794 } break;
1795 }
1796 } else {
1797 error_stream.Printf(
1798 "error [IRForTarget internal]: Unhandled constant type: \"%s\"",
1799 PrintValue(constant).c_str());
1800 return false;
1801 }
1802 } else {
1803 if (Instruction *inst = llvm::dyn_cast<Instruction>(user)) {
1804 if (llvm_function && inst->getParent()->getParent() != llvm_function) {
1805 error_stream.PutCString("error: Capturing non-local variables in "
1806 "expressions is unsupported.\n");
1807 return false;
1808 }
1809 inst->replaceUsesOfWith(
1810 old_constant, value_maker.GetValue(inst->getParent()->getParent()));
1811 } else {
1812 error_stream.Printf(
1813 "error [IRForTarget internal]: Unhandled non-constant type: \"%s\"",
1814 PrintValue(user).c_str());
1815 return false;
1816 }
1817 }
1818 }
1819
1820 if (!isa<GlobalValue>(old_constant)) {
1821 old_constant->destroyConstant();
1822 }
1823
1824 return true;
1825}
1826
1827bool IRForTarget::ReplaceVariables(Function &llvm_function) {
1828 if (!m_resolve_vars)
1829 return true;
1830
1831 lldb_private::Log *log(
1832 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
1833
1834 m_decl_map->DoStructLayout();
1835
1836 if (log)
1837 log->Printf("Element arrangement:");
1838
1839 uint32_t num_elements;
1840 uint32_t element_index;
1841
1842 size_t size;
1843 lldb::offset_t alignment;
1844
1845 if (!m_decl_map->GetStructInfo(num_elements, size, alignment))
1846 return false;
1847
1848 Function::arg_iterator iter(llvm_function.getArgumentList().begin());
1849
1850 if (iter == llvm_function.getArgumentList().end()) {
1851 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes no "
1852 "arguments (should take at least a struct pointer)");
1853
1854 return false;
1855 }
1856
1857 Argument *argument = &*iter;
1858
1859 if (argument->getName().equals("this")) {
1860 ++iter;
1861
1862 if (iter == llvm_function.getArgumentList().end()) {
1863 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes only "
1864 "'this' argument (should take a struct pointer "
1865 "too)");
1866
1867 return false;
1868 }
1869
1870 argument = &*iter;
1871 } else if (argument->getName().equals("self")) {
1872 ++iter;
1873
1874 if (iter == llvm_function.getArgumentList().end()) {
1875 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes only "
1876 "'self' argument (should take '_cmd' and a struct "
1877 "pointer too)");
1878
1879 return false;
1880 }
1881
1882 if (!iter->getName().equals("_cmd")) {
1883 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes '%s' "
1884 "after 'self' argument (should take '_cmd')",
1885 iter->getName().str().c_str());
1886
1887 return false;
1888 }
1889
1890 ++iter;
1891
1892 if (iter == llvm_function.getArgumentList().end()) {
1893 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes only "
1894 "'self' and '_cmd' arguments (should take a struct "
1895 "pointer too)");
1896
1897 return false;
1898 }
1899
1900 argument = &*iter;
1901 }
1902
1903 if (!argument->getName().equals("$__lldb_arg")) {
1904 m_error_stream.Printf("Internal error [IRForTarget]: Wrapper takes an "
1905 "argument named '%s' instead of the struct pointer",
1906 argument->getName().str().c_str());
1907
1908 return false;
1909 }
1910
1911 if (log)
1912 log->Printf("Arg: \"%s\"", PrintValue(argument).c_str());
1913
1914 BasicBlock &entry_block(llvm_function.getEntryBlock());
1915 Instruction *FirstEntryInstruction(entry_block.getFirstNonPHIOrDbg());
1916
1917 if (!FirstEntryInstruction) {
1918 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't find the "
1919 "first instruction in the wrapper for use in "
1920 "rewriting");
1921
1922 return false;
1923 }
1924
1925 LLVMContext &context(m_module->getContext());
1926 IntegerType *offset_type(Type::getInt32Ty(context));
1927
1928 if (!offset_type) {
1929 m_error_stream.Printf(
1930 "Internal error [IRForTarget]: Couldn't produce an offset type");
1931
1932 return false;
1933 }
1934
1935 for (element_index = 0; element_index < num_elements; ++element_index) {
1936 const clang::NamedDecl *decl = NULL;
1937 Value *value = NULL;
1938 lldb::offset_t offset;
1939 lldb_private::ConstString name;
1940
1941 if (!m_decl_map->GetStructElement(decl, value, offset, name,
1942 element_index)) {
1943 m_error_stream.Printf(
1944 "Internal error [IRForTarget]: Structure information is incomplete");
1945
1946 return false;
1947 }
1948
1949 if (log)
1950 log->Printf(" \"%s\" (\"%s\") placed at %" PRIu64, name.GetCString(),
1951 decl->getNameAsString().c_str(), offset);
1952
1953 if (value) {
1954 if (log)
1955 log->Printf(" Replacing [%s]", PrintValue(value).c_str());
1956
1957 FunctionValueCache body_result_maker(
1958 [this, name, offset_type, offset, argument,
1959 value](llvm::Function *function) -> llvm::Value * {
1960 // Per the comment at ASTResultSynthesizer::SynthesizeBodyResult, in
1961 // cases where the result
1962 // variable is an rvalue, we have to synthesize a dereference of the
1963 // appropriate structure
1964 // entry in order to produce the static variable that the AST thinks
1965 // it is accessing.
1966
1967 llvm::Instruction *entry_instruction = llvm::cast<Instruction>(
1968 m_entry_instruction_finder.GetValue(function));
1969
1970 ConstantInt *offset_int(
1971 ConstantInt::get(offset_type, offset, true));
1972 GetElementPtrInst *get_element_ptr = GetElementPtrInst::Create(
1973 nullptr, argument, offset_int, "", entry_instruction);
1974
1975 if (name == m_result_name && !m_result_is_pointer) {
1976 BitCastInst *bit_cast = new BitCastInst(
1977 get_element_ptr, value->getType()->getPointerTo(), "",
1978 entry_instruction);
1979
1980 LoadInst *load = new LoadInst(bit_cast, "", entry_instruction);
1981
1982 return load;
1983 } else {
1984 BitCastInst *bit_cast = new BitCastInst(
1985 get_element_ptr, value->getType(), "", entry_instruction);
1986
1987 return bit_cast;
1988 }
1989 });
1990
1991 if (Constant *constant = dyn_cast<Constant>(value)) {
1992 if (!UnfoldConstant(constant, &llvm_function, body_result_maker,
1993 m_entry_instruction_finder, m_error_stream)) {
1994 return false;
1995 }
1996 } else if (Instruction *instruction = dyn_cast<Instruction>(value)) {
1997 if (instruction->getParent()->getParent() != &llvm_function) {
1998 m_error_stream.PutCString("error: Capturing non-local variables in "
1999 "expressions is unsupported.\n");
2000 return false;
2001 }
2002 value->replaceAllUsesWith(
2003 body_result_maker.GetValue(instruction->getParent()->getParent()));
2004 } else {
2005 if (log)
2006 log->Printf("Unhandled non-constant type: \"%s\"",
2007 PrintValue(value).c_str());
2008 return false;
2009 }
2010
2011 if (GlobalVariable *var = dyn_cast<GlobalVariable>(value))
2012 var->eraseFromParent();
2013 }
2014 }
2015
2016 if (log)
2017 log->Printf("Total structure [align %" PRId64 ", size %" PRIu64 "]",
2018 (int64_t)alignment, (uint64_t)size);
2019
2020 return true;
2021}
2022
2023llvm::Constant *IRForTarget::BuildRelocation(llvm::Type *type,
2024 uint64_t offset) {
2025 llvm::Constant *offset_int = ConstantInt::get(m_intptr_ty, offset);
2026
2027 llvm::Constant *offset_array[1];
2028
2029 offset_array[0] = offset_int;
2030
2031 llvm::ArrayRef<llvm::Constant *> offsets(offset_array, 1);
2032 llvm::Type *char_type = llvm::Type::getInt8Ty(m_module->getContext());
2033 llvm::Type *char_pointer_type = char_type->getPointerTo();
2034
2035 llvm::Constant *reloc_placeholder_bitcast =
2036 ConstantExpr::getBitCast(m_reloc_placeholder, char_pointer_type);
2037 llvm::Constant *reloc_getelementptr = ConstantExpr::getGetElementPtr(
2038 char_type, reloc_placeholder_bitcast, offsets);
2039 llvm::Constant *reloc_bitcast =
2040 ConstantExpr::getBitCast(reloc_getelementptr, type);
2041
2042 return reloc_bitcast;
2043}
2044
2045bool IRForTarget::runOnModule(Module &llvm_module) {
2046 lldb_private::Log *log(
2047 lldb_private::GetLogIfAllCategoriesSet(LIBLLDB_LOG_EXPRESSIONS));
2048
2049 m_module = &llvm_module;
2050 m_target_data.reset(new DataLayout(m_module));
2051 m_intptr_ty = llvm::Type::getIntNTy(m_module->getContext(),
2052 m_target_data->getPointerSizeInBits());
2053
2054 if (log) {
2055 std::string s;
2056 raw_string_ostream oss(s);
2057
2058 m_module->print(oss, NULL);
2059
2060 oss.flush();
2061
2062 log->Printf("Module as passed in to IRForTarget: \n\"%s\"", s.c_str());
2063 }
2064
2065 Function *const main_function =
2066 m_func_name.IsEmpty() ? nullptr
2067 : m_module->getFunction(m_func_name.GetStringRef());
2068
2069 if (!m_func_name.IsEmpty() && !main_function) {
2070 if (log)
2071 log->Printf("Couldn't find \"%s()\" in the module",
2072 m_func_name.AsCString());
2073
2074 m_error_stream.Printf("Internal error [IRForTarget]: Couldn't find wrapper "
2075 "'%s' in the module",
2076 m_func_name.AsCString());
2077
2078 return false;
2079 }
2080
2081 if (main_function) {
2082 if (!FixFunctionLinkage(*main_function)) {
2083 if (log)
2084 log->Printf("Couldn't fix the linkage for the function");
2085
2086 return false;
2087 }
2088 }
2089
2090 llvm::Type *int8_ty = Type::getInt8Ty(m_module->getContext());
2091
2092 m_reloc_placeholder = new llvm::GlobalVariable(
2093 (*m_module), int8_ty, false /* IsConstant */,
2094 GlobalVariable::InternalLinkage, Constant::getNullValue(int8_ty),
2095 "reloc_placeholder", NULL /* InsertBefore */,
2096 GlobalVariable::NotThreadLocal /* ThreadLocal */, 0 /* AddressSpace */);
2097
2098 ////////////////////////////////////////////////////////////
2099 // Replace $__lldb_expr_result with a persistent variable
2100 //
2101
2102 if (main_function) {
2103 if (!CreateResultVariable(*main_function)) {
2104 if (log)
2105 log->Printf("CreateResultVariable() failed");
2106
2107 // CreateResultVariable() reports its own errors, so we don't do so here
2108
2109 return false;
2110 }
2111 }
2112
2113 if (log && log->GetVerbose()) {
2114 std::string s;
2115 raw_string_ostream oss(s);
2116
2117 m_module->print(oss, NULL);
2118
2119 oss.flush();
2120
2121 log->Printf("Module after creating the result variable: \n\"%s\"",
2122 s.c_str());
2123 }
2124
2125 for (Module::iterator fi = m_module->begin(), fe = m_module->end(); fi != fe;
2126 ++fi) {
2127 llvm::Function *function = &*fi;
2128
2129 if (function->begin() == function->end())
2130 continue;
2131
2132 Function::iterator bbi;
2133
2134 for (bbi = function->begin(); bbi != function->end(); ++bbi) {
2135 if (!RemoveGuards(*bbi)) {
2136 if (log)
2137 log->Printf("RemoveGuards() failed");
2138
2139 // RemoveGuards() reports its own errors, so we don't do so here
2140
2141 return false;
2142 }
2143
2144 if (!RewritePersistentAllocs(*bbi)) {
2145 if (log)
2146 log->Printf("RewritePersistentAllocs() failed");
2147
2148 // RewritePersistentAllocs() reports its own errors, so we don't do so
2149 // here
2150
2151 return false;
2152 }
2153
2154 if (!RemoveCXAAtExit(*bbi)) {
2155 if (log)
2156 log->Printf("RemoveCXAAtExit() failed");
2157
2158 // RemoveCXAAtExit() reports its own errors, so we don't do so here
2159
2160 return false;
2161 }
2162 }
2163 }
2164
2165 ///////////////////////////////////////////////////////////////////////////////
2166 // Fix all Objective-C constant strings to use NSStringWithCString:encoding:
2167 //
2168
2169 if (!RewriteObjCConstStrings()) {
2170 if (log)
2171 log->Printf("RewriteObjCConstStrings() failed");
2172
2173 // RewriteObjCConstStrings() reports its own errors, so we don't do so here
2174
2175 return false;
2176 }
2177
2178 for (Module::iterator fi = m_module->begin(), fe = m_module->end(); fi != fe;
2179 ++fi) {
2180 llvm::Function *function = &*fi;
2181
2182 for (llvm::Function::iterator bbi = function->begin(),
2183 bbe = function->end();
2184 bbi != bbe; ++bbi) {
2185 if (!RewriteObjCSelectors(*bbi)) {
2186 if (log)
2187 log->Printf("RewriteObjCSelectors() failed");
2188
2189 // RewriteObjCSelectors() reports its own errors, so we don't do so here
2190
2191 return false;
2192 }
Sean Callananac900582016-09-29 00:45:33 +00002193
2194 if (!RewriteObjCClassReferences(*bbi)) {
2195 if (log)
2196 log->Printf("RewriteObjCClassReferences() failed");
2197
2198 // RewriteObjCClasses() reports its own errors, so we don't do so here
2199
2200 return false;
2201 }
Kate Stoneb9c1b512016-09-06 20:57:50 +00002202 }
2203 }
2204
2205 for (Module::iterator fi = m_module->begin(), fe = m_module->end(); fi != fe;
2206 ++fi) {
2207 llvm::Function *function = &*fi;
2208
2209 for (llvm::Function::iterator bbi = function->begin(),
2210 bbe = function->end();
2211 bbi != bbe; ++bbi) {
2212 if (!ResolveCalls(*bbi)) {
2213 if (log)
2214 log->Printf("ResolveCalls() failed");
2215
2216 // ResolveCalls() reports its own errors, so we don't do so here
2217
2218 return false;
2219 }
2220 }
2221 }
2222
2223 ////////////////////////////////////////////////////////////////////////
2224 // Run function-level passes that only make sense on the main function
2225 //
2226
2227 if (main_function) {
2228 if (!ResolveExternals(*main_function)) {
2229 if (log)
2230 log->Printf("ResolveExternals() failed");
2231
2232 // ResolveExternals() reports its own errors, so we don't do so here
2233
2234 return false;
2235 }
2236
2237 if (!ReplaceVariables(*main_function)) {
2238 if (log)
2239 log->Printf("ReplaceVariables() failed");
2240
2241 // ReplaceVariables() reports its own errors, so we don't do so here
2242
2243 return false;
2244 }
2245 }
2246
2247 if (log && log->GetVerbose()) {
2248 std::string s;
2249 raw_string_ostream oss(s);
2250
2251 m_module->print(oss, NULL);
2252
2253 oss.flush();
2254
2255 log->Printf("Module after preparing for execution: \n\"%s\"", s.c_str());
2256 }
2257
2258 return true;
2259}
2260
2261void IRForTarget::assignPassManager(PMStack &pass_mgr_stack,
2262 PassManagerType pass_mgr_type) {}
2263
2264PassManagerType IRForTarget::getPotentialPassManagerType() const {
2265 return PMT_ModulePassManager;
Sean Callanan2ab712f22010-07-03 01:35:46 +00002266}