don't crash if we disable logging when some code already has a copy of the logger. Prior to this fix, logs were handed out as pointers and if they were held onto while a log got disabled, then it could cause a crash. Now all logs are handed out as shared pointers so this problem shouldn't happen anymore. We are also using our new shared pointers that put the shared pointer count and the object into the same allocation for a tad better performance. llvm-svn: 118319
220 lines
5.5 KiB
C++
220 lines
5.5 KiB
C++
//===-- IRToDWARF.cpp -------------------------------------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "lldb/Expression/IRToDWARF.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/InstrTypes.h"
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#include "llvm/Module.h"
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#include "lldb/Core/dwarf.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Core/Scalar.h"
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#include "lldb/Core/StreamString.h"
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#include "lldb/Expression/ClangExpressionDeclMap.h"
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#include "lldb/Expression/ClangExpressionVariable.h"
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#include <map>
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using namespace llvm;
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static char ID;
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IRToDWARF::IRToDWARF(lldb_private::ClangExpressionVariableStore &local_vars,
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lldb_private::ClangExpressionDeclMap *decl_map,
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lldb_private::StreamString &strm,
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const char *func_name) :
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ModulePass(ID),
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m_local_vars(local_vars),
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m_decl_map(decl_map),
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m_strm(strm),
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m_func_name(func_name)
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{
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}
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IRToDWARF::~IRToDWARF()
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{
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}
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class Relocator
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{
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public:
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Relocator()
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{
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}
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~Relocator()
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{
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}
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void MarkBasicBlock(BasicBlock *bb, uint16_t offset)
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{
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m_basic_blocks[bb] = offset;
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}
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bool BasicBlockIsMarked(BasicBlock *bb)
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{
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return m_basic_blocks.find(bb) != m_basic_blocks.end();
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}
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void MarkRelocation(BasicBlock *bb, uint16_t offset)
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{
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m_relocations[offset] = bb;
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}
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bool ResolveRelocations(lldb_private::StreamString &strm)
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{
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std::map<uint16_t, BasicBlock*>::const_iterator iter;
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lldb_private::StreamString swapper(0, 32, strm.GetByteOrder());
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// This array must be delete [] d at every exit
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size_t temporary_bufsize = strm.GetSize();
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uint8_t *temporary_buffer(new uint8_t[temporary_bufsize]);
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memcpy(temporary_buffer, strm.GetData(), temporary_bufsize);
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for (iter = m_relocations.begin();
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iter != m_relocations.end();
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++iter)
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{
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const std::pair<uint16_t, BasicBlock*> &pair = *iter;
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uint16_t off = pair.first;
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BasicBlock *bb = pair.second;
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if (m_basic_blocks.find(bb) == m_basic_blocks.end())
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{
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delete [] temporary_buffer;
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return false;
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}
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uint16_t target_off = m_basic_blocks[bb];
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int16_t relative = (int16_t)target_off - (int16_t)off;
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swapper.Clear();
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swapper << relative;
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// off is intended to be the offset of the branch opcode (which is
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// what the relative location is added to) so
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// (temporary_buffer + off + 1) skips the opcode and writes to the
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// relative location
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memcpy(temporary_buffer + off + 1, swapper.GetData(), sizeof(uint16_t));
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}
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strm.Clear();
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strm.Write(temporary_buffer, temporary_bufsize);
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delete [] temporary_buffer;
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return true;
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}
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private:
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std::map<BasicBlock*, uint16_t> m_basic_blocks;
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std::map<uint16_t, BasicBlock*> m_relocations;
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};
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bool
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IRToDWARF::runOnBasicBlock(BasicBlock &BB, Relocator &R)
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{
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///////////////////////////////////////
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// Mark the current block as visited
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//
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size_t stream_size = m_strm.GetSize();
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if (stream_size > 0xffff)
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return false;
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uint16_t offset = stream_size & 0xffff;
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R.MarkBasicBlock(&BB, offset);
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////////////////////////////////////////////////
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// Translate the current basic block to DWARF
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//
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/////////////////////////////////////////////////
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// Visit all successors we haven't visited yet
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//
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TerminatorInst *arnold = BB.getTerminator();
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if (!arnold)
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return false;
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unsigned successor_index;
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unsigned num_successors = arnold->getNumSuccessors();
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for (successor_index = 0;
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successor_index < num_successors;
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++successor_index)
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{
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BasicBlock *successor = arnold->getSuccessor(successor_index);
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if (!R.BasicBlockIsMarked(successor))
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{
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if (!runOnBasicBlock(*successor, R))
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return false;
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}
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}
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return true;
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}
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bool
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IRToDWARF::runOnModule(Module &M)
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{
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lldb::LogSP log(lldb_private::GetLogIfAllCategoriesSet (LIBLLDB_LOG_EXPRESSIONS));
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llvm::Function* function = M.getFunction(StringRef(m_func_name.c_str()));
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if (!function)
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{
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if (log)
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log->Printf("Couldn't find %s() in the module", m_func_name.c_str());
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return false;
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}
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Relocator relocator;
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if (!runOnBasicBlock(function->getEntryBlock(), relocator))
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return false;
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if (log)
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{
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std::string s;
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raw_string_ostream oss(s);
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M.print(oss, NULL);
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oss.flush();
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log->Printf("Module being translated to DWARF: \n%s", s.c_str());
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}
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// TEMPORARY: Fail in order to force execution in the target.
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return false;
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return relocator.ResolveRelocations(m_strm);
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}
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void
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IRToDWARF::assignPassManager(PMStack &PMS,
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PassManagerType T)
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{
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}
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PassManagerType
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IRToDWARF::getPotentialPassManagerType() const
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{
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return PMT_ModulePassManager;
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}
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