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Sean Callanan65dafa82010-08-27 01:01:44 +00001//===-- ClangExpressionParser.cpp -------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "lldb/Expression/ClangExpressionParser.h"
11
12#include "lldb/Core/ArchSpec.h"
13#include "lldb/Core/DataBufferHeap.h"
14#include "lldb/Core/Disassembler.h"
15#include "lldb/Core/Stream.h"
Sean Callananf18d91c2010-09-01 00:58:00 +000016#include "lldb/Core/StreamString.h"
Sean Callanan65dafa82010-08-27 01:01:44 +000017#include "lldb/Expression/ClangASTSource.h"
18#include "lldb/Expression/ClangExpression.h"
Sean Callananf18d91c2010-09-01 00:58:00 +000019#include "lldb/Expression/IRDynamicChecks.h"
Sean Callanan65dafa82010-08-27 01:01:44 +000020#include "lldb/Expression/IRForTarget.h"
21#include "lldb/Expression/IRToDWARF.h"
22#include "lldb/Expression/RecordingMemoryManager.h"
23#include "lldb/Target/ExecutionContext.h"
24#include "lldb/Target/Process.h"
25#include "lldb/Target/Target.h"
26
27#include "clang/AST/ASTContext.h"
28#include "clang/AST/ExternalASTSource.h"
29#include "clang/Basic/FileManager.h"
30#include "clang/Basic/TargetInfo.h"
31#include "clang/Basic/Version.h"
32#include "clang/Checker/FrontendActions.h"
33#include "clang/CodeGen/CodeGenAction.h"
34#include "clang/CodeGen/ModuleBuilder.h"
35#include "clang/Driver/CC1Options.h"
36#include "clang/Driver/OptTable.h"
37#include "clang/Frontend/CompilerInstance.h"
38#include "clang/Frontend/CompilerInvocation.h"
39#include "clang/Frontend/FrontendActions.h"
40#include "clang/Frontend/FrontendDiagnostic.h"
41#include "clang/Frontend/FrontendPluginRegistry.h"
42#include "clang/Frontend/TextDiagnosticBuffer.h"
43#include "clang/Frontend/TextDiagnosticPrinter.h"
44#include "clang/Frontend/VerifyDiagnosticsClient.h"
45#include "clang/Lex/Preprocessor.h"
46#include "clang/Rewrite/FrontendActions.h"
47#include "clang/Sema/ParseAST.h"
48#include "clang/Sema/SemaConsumer.h"
49
50#include "llvm/ADT/StringRef.h"
51#include "llvm/ExecutionEngine/ExecutionEngine.h"
52#include "llvm/ExecutionEngine/JIT.h"
53#include "llvm/Module.h"
54#include "llvm/LLVMContext.h"
55#include "llvm/Support/ErrorHandling.h"
56#include "llvm/Support/MemoryBuffer.h"
57#include "llvm/System/DynamicLibrary.h"
58#include "llvm/System/Host.h"
59#include "llvm/System/Signals.h"
60#include "llvm/Target/TargetRegistry.h"
61#include "llvm/Target/TargetSelect.h"
62
63using namespace clang;
64using namespace llvm;
65using namespace lldb_private;
66
67//===----------------------------------------------------------------------===//
68// Utility Methods for Clang
69//===----------------------------------------------------------------------===//
70
71std::string GetBuiltinIncludePath(const char *Argv0) {
72 llvm::sys::Path P =
73 llvm::sys::Path::GetMainExecutable(Argv0,
74 (void*)(intptr_t) GetBuiltinIncludePath);
75
76 if (!P.isEmpty()) {
77 P.eraseComponent(); // Remove /clang from foo/bin/clang
78 P.eraseComponent(); // Remove /bin from foo/bin
79
80 // Get foo/lib/clang/<version>/include
81 P.appendComponent("lib");
82 P.appendComponent("clang");
83 P.appendComponent(CLANG_VERSION_STRING);
84 P.appendComponent("include");
85 }
86
87 return P.str();
88}
89
90
91//===----------------------------------------------------------------------===//
92// Main driver for Clang
93//===----------------------------------------------------------------------===//
94
95static void LLVMErrorHandler(void *UserData, const std::string &Message) {
96 Diagnostic &Diags = *static_cast<Diagnostic*>(UserData);
97
98 Diags.Report(diag::err_fe_error_backend) << Message;
99
100 // We cannot recover from llvm errors.
101 exit(1);
102}
103
104static FrontendAction *CreateFrontendBaseAction(CompilerInstance &CI) {
105 using namespace clang::frontend;
106
107 switch (CI.getFrontendOpts().ProgramAction) {
108 default:
109 llvm_unreachable("Invalid program action!");
110
111 case ASTDump: return new ASTDumpAction();
112 case ASTPrint: return new ASTPrintAction();
113 case ASTPrintXML: return new ASTPrintXMLAction();
114 case ASTView: return new ASTViewAction();
115 case BoostCon: return new BoostConAction();
116 case DumpRawTokens: return new DumpRawTokensAction();
117 case DumpTokens: return new DumpTokensAction();
118 case EmitAssembly: return new EmitAssemblyAction();
119 case EmitBC: return new EmitBCAction();
120 case EmitHTML: return new HTMLPrintAction();
121 case EmitLLVM: return new EmitLLVMAction();
122 case EmitLLVMOnly: return new EmitLLVMOnlyAction();
123 case EmitCodeGenOnly: return new EmitCodeGenOnlyAction();
124 case EmitObj: return new EmitObjAction();
125 case FixIt: return new FixItAction();
126 case GeneratePCH: return new GeneratePCHAction();
127 case GeneratePTH: return new GeneratePTHAction();
128 case InheritanceView: return new InheritanceViewAction();
129 case InitOnly: return new InitOnlyAction();
130 case ParseSyntaxOnly: return new SyntaxOnlyAction();
131
132 case PluginAction: {
133 for (FrontendPluginRegistry::iterator it =
134 FrontendPluginRegistry::begin(), ie = FrontendPluginRegistry::end();
135 it != ie; ++it) {
136 if (it->getName() == CI.getFrontendOpts().ActionName) {
137 llvm::OwningPtr<PluginASTAction> P(it->instantiate());
138 if (!P->ParseArgs(CI, CI.getFrontendOpts().PluginArgs))
139 return 0;
140 return P.take();
141 }
142 }
143
144 CI.getDiagnostics().Report(diag::err_fe_invalid_plugin_name)
145 << CI.getFrontendOpts().ActionName;
146 return 0;
147 }
148
149 case PrintDeclContext: return new DeclContextPrintAction();
150 case PrintPreamble: return new PrintPreambleAction();
151 case PrintPreprocessedInput: return new PrintPreprocessedAction();
152 case RewriteMacros: return new RewriteMacrosAction();
153 case RewriteObjC: return new RewriteObjCAction();
154 case RewriteTest: return new RewriteTestAction();
155 case RunAnalysis: return new AnalysisAction();
156 case RunPreprocessorOnly: return new PreprocessOnlyAction();
157 }
158}
159
160static FrontendAction *CreateFrontendAction(CompilerInstance &CI) {
161 // Create the underlying action.
162 FrontendAction *Act = CreateFrontendBaseAction(CI);
163 if (!Act)
164 return 0;
165
166 // If there are any AST files to merge, create a frontend action
167 // adaptor to perform the merge.
168 if (!CI.getFrontendOpts().ASTMergeFiles.empty())
169 Act = new ASTMergeAction(Act, &CI.getFrontendOpts().ASTMergeFiles[0],
170 CI.getFrontendOpts().ASTMergeFiles.size());
171
172 return Act;
173}
174
175//===----------------------------------------------------------------------===//
176// Implementation of ClangExpressionParser
177//===----------------------------------------------------------------------===//
178
179ClangExpressionParser::ClangExpressionParser(const char *target_triple,
180 ClangExpression &expr) :
181 m_expr(expr),
182 m_target_triple (),
183 m_compiler (),
184 m_code_generator (NULL),
185 m_execution_engine (),
186 m_jitted_functions ()
187{
188 // Initialize targets first, so that --version shows registered targets.
189 static struct InitializeLLVM {
190 InitializeLLVM() {
191 llvm::InitializeAllTargets();
192 llvm::InitializeAllAsmPrinters();
193 }
194 } InitializeLLVM;
195
196 if (target_triple && target_triple[0])
197 m_target_triple = target_triple;
198 else
199 m_target_triple = llvm::sys::getHostTriple();
200
201 // 1. Create a new compiler instance.
202 m_compiler.reset(new CompilerInstance());
203 m_compiler->setLLVMContext(new LLVMContext());
204
205 // 2. Set options.
206
207 // Parse expressions as Objective C++ regardless of context.
208 // Our hook into Clang's lookup mechanism only works in C++.
209 m_compiler->getLangOpts().CPlusPlus = true;
210 m_compiler->getLangOpts().ObjC1 = true;
211 m_compiler->getLangOpts().ThreadsafeStatics = false;
212 m_compiler->getLangOpts().AccessControl = false; // Debuggers get universal access
213 m_compiler->getLangOpts().DollarIdents = true; // $ indicates a persistent variable name
214
215 // Set CodeGen options
216 m_compiler->getCodeGenOpts().EmitDeclMetadata = true;
217 m_compiler->getCodeGenOpts().InstrumentFunctions = false;
218
219 // Disable some warnings.
220 m_compiler->getDiagnosticOpts().Warnings.push_back("no-unused-value");
221
222 // Set the target triple.
223 m_compiler->getTargetOpts().Triple = m_target_triple;
224
225 // 3. Set up various important bits of infrastructure.
226 m_compiler->createDiagnostics(0, 0);
227
228 // Create the target instance.
229 m_compiler->setTarget(TargetInfo::CreateTargetInfo(m_compiler->getDiagnostics(),
230 m_compiler->getTargetOpts()));
231
232 assert (m_compiler->hasTarget());
233
234 // Inform the target of the language options
235 //
236 // FIXME: We shouldn't need to do this, the target should be immutable once
237 // created. This complexity should be lifted elsewhere.
238 m_compiler->getTarget().setForcedLangOptions(m_compiler->getLangOpts());
239
240 // 4. Set up the diagnostic buffer for reporting errors
241
242 m_diagnostic_buffer.reset(new clang::TextDiagnosticBuffer);
243 m_compiler->getDiagnostics().setClient(m_diagnostic_buffer.get());
244
245 // 5. Set up the source management objects inside the compiler
246
247 if (!m_compiler->hasSourceManager())
248 m_compiler->createSourceManager();
249
250 m_compiler->createFileManager();
251 m_compiler->createPreprocessor();
252
253 // 6. Most of this we get from the CompilerInstance, but we
254 // also want to give the context an ExternalASTSource.
255 SelectorTable selector_table;
256 m_builtin_context.reset(new Builtin::Context(m_compiler->getTarget()));
257
258 std::auto_ptr<clang::ASTContext> ast_context(new ASTContext(m_compiler->getLangOpts(),
259 m_compiler->getSourceManager(),
260 m_compiler->getTarget(),
261 m_compiler->getPreprocessor().getIdentifierTable(),
262 selector_table,
263 *m_builtin_context.get(),
264 0));
265
266 ClangExpressionDeclMap *decl_map = m_expr.DeclMap();
267
268 if (decl_map)
269 {
270 OwningPtr<clang::ExternalASTSource> ast_source(new ClangASTSource(*ast_context, *decl_map));
271 ast_context->setExternalSource(ast_source);
272 }
273
274 m_compiler->setASTContext(ast_context.release());
275
276 std::string module_name("___clang_module");
277
278 m_code_generator.reset(CreateLLVMCodeGen(m_compiler->getDiagnostics(),
279 module_name,
280 m_compiler->getCodeGenOpts(),
281 m_compiler->getLLVMContext()));
282}
283
284ClangExpressionParser::~ClangExpressionParser()
285{
286}
287
288unsigned
289ClangExpressionParser::Parse (Stream &stream)
290{
291 m_diagnostic_buffer->FlushDiagnostics (m_compiler->getDiagnostics());
292
293 MemoryBuffer *memory_buffer = MemoryBuffer::getMemBufferCopy(m_expr.Text(), __FUNCTION__);
294 FileID memory_buffer_file_id = m_compiler->getSourceManager().createMainFileIDForMemBuffer (memory_buffer);
295
296 m_diagnostic_buffer->BeginSourceFile(m_compiler->getLangOpts(), &m_compiler->getPreprocessor());
297
298 ASTConsumer *ast_transformer = m_expr.ASTTransformer(m_code_generator.get());
299
300 if (ast_transformer)
301 ParseAST(m_compiler->getPreprocessor(), ast_transformer, m_compiler->getASTContext());
302 else
303 ParseAST(m_compiler->getPreprocessor(), m_code_generator.get(), m_compiler->getASTContext());
304
305 m_diagnostic_buffer->EndSourceFile();
306
307 TextDiagnosticBuffer::const_iterator diag_iterator;
308
309 int num_errors = 0;
310
311 for (diag_iterator = m_diagnostic_buffer->warn_begin();
312 diag_iterator != m_diagnostic_buffer->warn_end();
313 ++diag_iterator)
314 stream.Printf("warning: %s\n", (*diag_iterator).second.c_str());
315
316 num_errors = 0;
317
318 for (diag_iterator = m_diagnostic_buffer->err_begin();
319 diag_iterator != m_diagnostic_buffer->err_end();
320 ++diag_iterator)
321 {
322 num_errors++;
323 stream.Printf("error: %s\n", (*diag_iterator).second.c_str());
324 }
325
326 return num_errors;
327}
328
329Error
330ClangExpressionParser::MakeDWARF ()
331{
332 Error err;
333
334 llvm::Module *module = m_code_generator->GetModule();
335
336 if (!module)
337 {
338 err.SetErrorToGenericError();
339 err.SetErrorString("IR doesn't contain a module");
340 return err;
341 }
342
343 ClangExpressionVariableStore *local_variables = m_expr.LocalVariables();
344 ClangExpressionDeclMap *decl_map = m_expr.DeclMap();
345
346 if (!local_variables)
347 {
348 err.SetErrorToGenericError();
349 err.SetErrorString("Can't convert an expression without a VariableList to DWARF");
350 return err;
351 }
352
353 if (!decl_map)
354 {
355 err.SetErrorToGenericError();
356 err.SetErrorString("Can't convert an expression without a DeclMap to DWARF");
357 return err;
358 }
359
360 IRToDWARF ir_to_dwarf(*local_variables, decl_map, m_expr.DwarfOpcodeStream());
361
362 if (!ir_to_dwarf.runOnModule(*module))
363 {
364 err.SetErrorToGenericError();
365 err.SetErrorString("Couldn't convert the expression to DWARF");
366 return err;
367 }
368
369 err.Clear();
370 return err;
371}
372
373Error
Sean Callanan830a9032010-08-27 23:31:21 +0000374ClangExpressionParser::MakeJIT (lldb::addr_t &func_addr,
375 lldb::addr_t &func_end,
376 ExecutionContext &exe_ctx)
Sean Callanan65dafa82010-08-27 01:01:44 +0000377{
378 Error err;
379
380 llvm::Module *module = m_code_generator->ReleaseModule();
381
382 if (!module)
383 {
384 err.SetErrorToGenericError();
385 err.SetErrorString("IR doesn't contain a module");
386 return err;
387 }
388
389 ClangExpressionDeclMap *decl_map = m_expr.DeclMap(); // result can be NULL
390
391 if (decl_map)
392 {
393 std::string target_error;
394
395 const llvm::Target *target = llvm::TargetRegistry::lookupTarget(m_target_triple, target_error);
396
397 if (!target)
398 {
399 err.SetErrorToGenericError();
400 err.SetErrorStringWithFormat("Couldn't find a target for %s", m_target_triple.c_str());
401 return err;
402 }
403
404 std::auto_ptr<llvm::TargetMachine> target_machine(target->createTargetMachine(m_target_triple, ""));
405
Sean Callanane8a59a82010-09-13 21:34:21 +0000406 IRForTarget ir_for_target(decl_map,
407 target_machine->getTargetData(),
408 m_expr.NeedsVariableResolution(),
409 m_expr.FunctionName());
Sean Callanan65dafa82010-08-27 01:01:44 +0000410
411 if (!ir_for_target.runOnModule(*module))
412 {
413 err.SetErrorToGenericError();
414 err.SetErrorString("Couldn't convert the expression to DWARF");
415 return err;
416 }
Sean Callananf18d91c2010-09-01 00:58:00 +0000417
Sean Callanane8a59a82010-09-13 21:34:21 +0000418 if (m_expr.NeedsValidation())
Sean Callananf18d91c2010-09-01 00:58:00 +0000419 {
Sean Callanane8a59a82010-09-13 21:34:21 +0000420 IRDynamicChecks ir_dynamic_checks(*exe_ctx.process->GetDynamicCheckers(), m_expr.FunctionName());
421
422 if (!ir_dynamic_checks.runOnModule(*module))
423 {
424 err.SetErrorToGenericError();
425 err.SetErrorString("Couldn't add dynamic checks to the expression");
426 return err;
427 }
428 }
Sean Callanan65dafa82010-08-27 01:01:44 +0000429 }
430
431 m_jit_mm = new RecordingMemoryManager();
432
433 std::string error_string;
434
435 m_execution_engine.reset(llvm::ExecutionEngine::createJIT (module,
436 &error_string,
437 m_jit_mm,
438 CodeGenOpt::Default,
439 true,
440 CodeModel::Small));
441
442 if (!m_execution_engine.get())
443 {
444 err.SetErrorToGenericError();
445 err.SetErrorStringWithFormat("Couldn't JIT the function: %s", error_string.c_str());
446 return err;
447 }
448
449 m_execution_engine->DisableLazyCompilation();
450
451 llvm::Function *function = module->getFunction (m_expr.FunctionName());
452
453 // We don't actually need the function pointer here, this just forces it to get resolved.
454
455 void *fun_ptr = m_execution_engine->getPointerToFunction(function);
456
457 // Errors usually cause failures in the JIT, but if we're lucky we get here.
458
459 if (!fun_ptr)
460 {
461 err.SetErrorToGenericError();
462 err.SetErrorString("Couldn't JIT the function");
463 return err;
464 }
465
466 m_jitted_functions.push_back (ClangExpressionParser::JittedFunction(m_expr.FunctionName(), (lldb::addr_t)fun_ptr));
467
468 ExecutionContext &exc_context(exe_ctx);
469
470 if (exc_context.process == NULL)
471 {
472 err.SetErrorToGenericError();
473 err.SetErrorString("Couldn't write the JIT compiled code into the target because there is no target");
474 return err;
475 }
476
477 // Look over the regions allocated for the function compiled. The JIT
478 // tries to allocate the functions & stubs close together, so we should try to
479 // write them that way too...
480 // For now I only write functions with no stubs, globals, exception tables,
481 // etc. So I only need to write the functions.
482
483 size_t alloc_size = 0;
484
485 std::map<uint8_t *, uint8_t *>::iterator fun_pos = m_jit_mm->m_functions.begin();
486 std::map<uint8_t *, uint8_t *>::iterator fun_end = m_jit_mm->m_functions.end();
487
488 for (; fun_pos != fun_end; ++fun_pos)
489 alloc_size += (*fun_pos).second - (*fun_pos).first;
490
491 Error alloc_error;
492 lldb::addr_t target_addr = exc_context.process->AllocateMemory (alloc_size, lldb::ePermissionsReadable|lldb::ePermissionsExecutable, alloc_error);
493
494 if (target_addr == LLDB_INVALID_ADDRESS)
495 {
496 err.SetErrorToGenericError();
497 err.SetErrorStringWithFormat("Couldn't allocate memory for the JITted function: %s", alloc_error.AsCString("unknown error"));
498 return err;
499 }
500
501 lldb::addr_t cursor = target_addr;
502
503 for (fun_pos = m_jit_mm->m_functions.begin(); fun_pos != fun_end; fun_pos++)
504 {
505 lldb::addr_t lstart = (lldb::addr_t) (*fun_pos).first;
506 lldb::addr_t lend = (lldb::addr_t) (*fun_pos).second;
507 size_t size = lend - lstart;
508
509 Error write_error;
510
511 if (exc_context.process->WriteMemory(cursor, (void *) lstart, size, write_error) != size)
512 {
513 err.SetErrorToGenericError();
514 err.SetErrorStringWithFormat("Couldn't copy JITted function into the target: %s", write_error.AsCString("unknown error"));
515 return err;
516 }
517
518 m_jit_mm->AddToLocalToRemoteMap (lstart, size, cursor);
519 cursor += size;
520 }
521
522 std::vector<JittedFunction>::iterator pos, end = m_jitted_functions.end();
523
524 for (pos = m_jitted_functions.begin(); pos != end; pos++)
525 {
526 (*pos).m_remote_addr = m_jit_mm->GetRemoteAddressForLocal ((*pos).m_local_addr);
527
528 if (!(*pos).m_name.compare(m_expr.FunctionName()))
Sean Callanan830a9032010-08-27 23:31:21 +0000529 {
530 func_end = m_jit_mm->GetRemoteRangeForLocal ((*pos).m_local_addr).second;
Sean Callanan65dafa82010-08-27 01:01:44 +0000531 func_addr = (*pos).m_remote_addr;
Sean Callanan830a9032010-08-27 23:31:21 +0000532 }
Sean Callanan65dafa82010-08-27 01:01:44 +0000533 }
534
535 err.Clear();
536 return err;
537}
538
539Error
540ClangExpressionParser::DisassembleFunction (Stream &stream, ExecutionContext &exe_ctx)
541{
542 Log *log = lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_EXPRESSIONS);
543
544 const char *name = m_expr.FunctionName();
545
546 Error ret;
547
548 ret.Clear();
549
550 lldb::addr_t func_local_addr = LLDB_INVALID_ADDRESS;
551 lldb::addr_t func_remote_addr = LLDB_INVALID_ADDRESS;
552
553 std::vector<JittedFunction>::iterator pos, end = m_jitted_functions.end();
554
555 for (pos = m_jitted_functions.begin(); pos < end; pos++)
556 {
557 if (strcmp(pos->m_name.c_str(), name) == 0)
558 {
559 func_local_addr = pos->m_local_addr;
560 func_remote_addr = pos->m_remote_addr;
561 }
562 }
563
564 if (func_local_addr == LLDB_INVALID_ADDRESS)
565 {
566 ret.SetErrorToGenericError();
567 ret.SetErrorStringWithFormat("Couldn't find function %s for disassembly", name);
568 return ret;
569 }
570
571 if(log)
572 log->Printf("Found function, has local address 0x%llx and remote address 0x%llx", (uint64_t)func_local_addr, (uint64_t)func_remote_addr);
573
574 std::pair <lldb::addr_t, lldb::addr_t> func_range;
575
576 func_range = m_jit_mm->GetRemoteRangeForLocal(func_local_addr);
577
578 if (func_range.first == 0 && func_range.second == 0)
579 {
580 ret.SetErrorToGenericError();
581 ret.SetErrorStringWithFormat("Couldn't find code range for function %s", name);
582 return ret;
583 }
584
585 if(log)
586 log->Printf("Function's code range is [0x%llx-0x%llx]", func_range.first, func_range.second);
587
588 if (!exe_ctx.target)
589 {
590 ret.SetErrorToGenericError();
591 ret.SetErrorString("Couldn't find the target");
592 }
593
594 lldb::DataBufferSP buffer_sp(new DataBufferHeap(func_range.second - func_remote_addr, 0));
595
596 Error err;
597 exe_ctx.process->ReadMemory(func_remote_addr, buffer_sp->GetBytes(), buffer_sp->GetByteSize(), err);
598
599 if (!err.Success())
600 {
601 ret.SetErrorToGenericError();
602 ret.SetErrorStringWithFormat("Couldn't read from process: %s", err.AsCString("unknown error"));
603 return ret;
604 }
605
606 ArchSpec arch(exe_ctx.target->GetArchitecture());
607
608 Disassembler *disassembler = Disassembler::FindPlugin(arch);
609
610 if (disassembler == NULL)
611 {
612 ret.SetErrorToGenericError();
613 ret.SetErrorStringWithFormat("Unable to find disassembler plug-in for %s architecture.", arch.AsCString());
614 return ret;
615 }
616
617 if (!exe_ctx.process)
618 {
619 ret.SetErrorToGenericError();
620 ret.SetErrorString("Couldn't find the process");
621 return ret;
622 }
623
624 DataExtractor extractor(buffer_sp,
625 exe_ctx.process->GetByteOrder(),
626 exe_ctx.target->GetArchitecture().GetAddressByteSize());
627
628 if(log)
629 {
630 log->Printf("Function data has contents:");
631 extractor.PutToLog (log,
632 0,
633 extractor.GetByteSize(),
634 func_remote_addr,
635 16,
636 DataExtractor::TypeUInt8);
637 }
638
639 disassembler->DecodeInstructions(extractor, 0, UINT32_MAX);
640
641 Disassembler::InstructionList &instruction_list = disassembler->GetInstructionList();
642
643 uint32_t bytes_offset = 0;
644
645 for (uint32_t instruction_index = 0, num_instructions = instruction_list.GetSize();
646 instruction_index < num_instructions;
647 ++instruction_index)
648 {
649 Disassembler::Instruction *instruction = instruction_list.GetInstructionAtIndex(instruction_index);
650 Address addr(NULL, func_remote_addr + bytes_offset);
651 instruction->Dump (&stream,
652 &addr,
653 &extractor,
654 bytes_offset,
655 exe_ctx,
656 true);
657 stream.PutChar('\n');
658 bytes_offset += instruction->GetByteSize();
659 }
660
661 return ret;
662}