- Removes the block in UnwindLLDB::AddOneMoreFrame that tests for a bad stack setup, since it is neither correct (tests the FP GPR), complete (doesn't consider multi-frame cycles), nor reachable (the construction of RegisterContextLLDB will fail in the case where either of the two (why just two?) previous frames have the same canonical frame address as the frame that we propose adding to the stack). llvm-svn: 191430
309 lines
9.7 KiB
C++
309 lines
9.7 KiB
C++
//===-- UnwindLLDB.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/Core/Module.h"
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#include "lldb/Core/Log.h"
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#include "lldb/Symbol/FuncUnwinders.h"
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#include "lldb/Symbol/Function.h"
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#include "lldb/Symbol/UnwindPlan.h"
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#include "lldb/Target/Thread.h"
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#include "lldb/Target/Target.h"
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#include "lldb/Target/Process.h"
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#include "lldb/Target/RegisterContext.h"
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#include "UnwindLLDB.h"
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#include "RegisterContextLLDB.h"
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using namespace lldb;
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using namespace lldb_private;
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UnwindLLDB::UnwindLLDB (Thread &thread) :
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Unwind (thread),
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m_frames(),
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m_unwind_complete(false)
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{
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}
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uint32_t
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UnwindLLDB::DoGetFrameCount()
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{
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if (!m_unwind_complete)
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{
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//#define DEBUG_FRAME_SPEED 1
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#if DEBUG_FRAME_SPEED
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#define FRAME_COUNT 10000
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TimeValue time_value (TimeValue::Now());
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#endif
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if (!AddFirstFrame ())
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return 0;
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ProcessSP process_sp (m_thread.GetProcess());
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ABI *abi = process_sp ? process_sp->GetABI().get() : NULL;
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while (AddOneMoreFrame (abi))
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{
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#if DEBUG_FRAME_SPEED
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if ((m_frames.size() % FRAME_COUNT) == 0)
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{
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TimeValue now(TimeValue::Now());
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uint64_t delta_t = now - time_value;
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printf ("%u frames in %" PRIu64 ".%09llu ms (%g frames/sec)\n",
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FRAME_COUNT,
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delta_t / TimeValue::NanoSecPerSec,
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delta_t % TimeValue::NanoSecPerSec,
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(float)FRAME_COUNT / ((float)delta_t / (float)TimeValue::NanoSecPerSec));
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time_value = now;
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}
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#endif
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}
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}
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return m_frames.size ();
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}
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bool
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UnwindLLDB::AddFirstFrame ()
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{
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if (m_frames.size() > 0)
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return true;
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// First, set up the 0th (initial) frame
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CursorSP first_cursor_sp(new Cursor ());
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RegisterContextLLDBSP reg_ctx_sp (new RegisterContextLLDB (m_thread,
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RegisterContextLLDBSP(),
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first_cursor_sp->sctx,
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0, *this));
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if (reg_ctx_sp.get() == NULL)
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goto unwind_done;
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if (!reg_ctx_sp->IsValid())
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goto unwind_done;
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if (!reg_ctx_sp->GetCFA (first_cursor_sp->cfa))
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goto unwind_done;
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if (!reg_ctx_sp->ReadPC (first_cursor_sp->start_pc))
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goto unwind_done;
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// Everything checks out, so release the auto pointer value and let the
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// cursor own it in its shared pointer
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first_cursor_sp->reg_ctx_lldb_sp = reg_ctx_sp;
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m_frames.push_back (first_cursor_sp);
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return true;
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unwind_done:
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m_unwind_complete = true;
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return false;
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}
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// For adding a non-zero stack frame to m_frames.
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bool
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UnwindLLDB::AddOneMoreFrame (ABI *abi)
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{
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// If we've already gotten to the end of the stack, don't bother to try again...
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if (m_unwind_complete)
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return false;
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Log *log(GetLogIfAllCategoriesSet (LIBLLDB_LOG_UNWIND));
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CursorSP cursor_sp(new Cursor ());
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// Frame zero is a little different
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if (m_frames.size() == 0)
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return false;
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uint32_t cur_idx = m_frames.size ();
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RegisterContextLLDBSP reg_ctx_sp(new RegisterContextLLDB (m_thread,
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m_frames[cur_idx - 1]->reg_ctx_lldb_sp,
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cursor_sp->sctx,
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cur_idx,
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*this));
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// We want to detect an unwind that cycles erronously and stop backtracing.
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// Don't want this maximum unwind limit to be too low -- if you have a backtrace
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// with an "infinitely recursing" bug, it will crash when the stack blows out
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// and the first 35,000 frames are uninteresting - it's the top most 5 frames that
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// you actually care about. So you can't just cap the unwind at 10,000 or something.
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// Realistically anything over around 200,000 is going to blow out the stack space.
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// If we're still unwinding at that point, we're probably never going to finish.
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if (cur_idx > 300000)
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{
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if (log)
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log->Printf ("%*sFrame %d unwound too many frames, assuming unwind has gone astray, stopping.",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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goto unwind_done;
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}
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if (reg_ctx_sp.get() == NULL)
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goto unwind_done;
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if (!reg_ctx_sp->IsValid())
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{
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if (log)
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{
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log->Printf("%*sFrame %d invalid RegisterContext for this frame, stopping stack walk",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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}
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goto unwind_done;
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}
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if (!reg_ctx_sp->GetCFA (cursor_sp->cfa))
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{
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if (log)
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{
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log->Printf("%*sFrame %d did not get CFA for this frame, stopping stack walk",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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}
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goto unwind_done;
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}
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if (abi && !abi->CallFrameAddressIsValid(cursor_sp->cfa))
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{
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if (log)
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{
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log->Printf("%*sFrame %d did not get a valid CFA for this frame, stopping stack walk",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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}
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goto unwind_done;
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}
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if (!reg_ctx_sp->ReadPC (cursor_sp->start_pc))
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{
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if (log)
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{
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log->Printf("%*sFrame %d did not get PC for this frame, stopping stack walk",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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}
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goto unwind_done;
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}
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if (abi && !abi->CodeAddressIsValid (cursor_sp->start_pc))
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{
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if (log)
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{
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log->Printf("%*sFrame %d did not get a valid PC, stopping stack walk",
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cur_idx < 100 ? cur_idx : 100, "", cur_idx);
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}
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goto unwind_done;
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}
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cursor_sp->reg_ctx_lldb_sp = reg_ctx_sp;
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m_frames.push_back (cursor_sp);
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return true;
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unwind_done:
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m_unwind_complete = true;
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return false;
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}
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bool
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UnwindLLDB::DoGetFrameInfoAtIndex (uint32_t idx, addr_t& cfa, addr_t& pc)
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{
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if (m_frames.size() == 0)
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{
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if (!AddFirstFrame())
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return false;
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}
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ProcessSP process_sp (m_thread.GetProcess());
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ABI *abi = process_sp ? process_sp->GetABI().get() : NULL;
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while (idx >= m_frames.size() && AddOneMoreFrame (abi))
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;
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if (idx < m_frames.size ())
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{
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cfa = m_frames[idx]->cfa;
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pc = m_frames[idx]->start_pc;
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return true;
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}
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return false;
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}
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lldb::RegisterContextSP
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UnwindLLDB::DoCreateRegisterContextForFrame (StackFrame *frame)
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{
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lldb::RegisterContextSP reg_ctx_sp;
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uint32_t idx = frame->GetConcreteFrameIndex ();
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if (idx == 0)
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{
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return m_thread.GetRegisterContext();
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}
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if (m_frames.size() == 0)
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{
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if (!AddFirstFrame())
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return reg_ctx_sp;
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}
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ProcessSP process_sp (m_thread.GetProcess());
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ABI *abi = process_sp ? process_sp->GetABI().get() : NULL;
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while (idx >= m_frames.size())
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{
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if (!AddOneMoreFrame (abi))
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break;
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}
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const uint32_t num_frames = m_frames.size();
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if (idx < num_frames)
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{
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Cursor *frame_cursor = m_frames[idx].get();
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reg_ctx_sp = frame_cursor->reg_ctx_lldb_sp;
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}
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return reg_ctx_sp;
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}
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UnwindLLDB::RegisterContextLLDBSP
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UnwindLLDB::GetRegisterContextForFrameNum (uint32_t frame_num)
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{
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RegisterContextLLDBSP reg_ctx_sp;
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if (frame_num < m_frames.size())
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reg_ctx_sp = m_frames[frame_num]->reg_ctx_lldb_sp;
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return reg_ctx_sp;
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}
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bool
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UnwindLLDB::SearchForSavedLocationForRegister (uint32_t lldb_regnum, lldb_private::UnwindLLDB::RegisterLocation ®loc, uint32_t starting_frame_num, bool pc_reg)
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{
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int64_t frame_num = starting_frame_num;
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if (frame_num >= m_frames.size())
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return false;
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// Never interrogate more than one level while looking for the saved pc value. If the value
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// isn't saved by frame_num, none of the frames lower on the stack will have a useful value.
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if (pc_reg)
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{
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UnwindLLDB::RegisterSearchResult result;
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result = m_frames[frame_num]->reg_ctx_lldb_sp->SavedLocationForRegister (lldb_regnum, regloc);
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if (result == UnwindLLDB::RegisterSearchResult::eRegisterFound)
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return true;
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else
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return false;
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}
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while (frame_num >= 0)
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{
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UnwindLLDB::RegisterSearchResult result;
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result = m_frames[frame_num]->reg_ctx_lldb_sp->SavedLocationForRegister (lldb_regnum, regloc);
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// If we have unwind instructions saying that register N is saved in register M in the middle of
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// the stack (and N can equal M here, meaning the register was not used in this function), then
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// change the register number we're looking for to M and keep looking for a concrete location
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// down the stack, or an actual value from a live RegisterContext at frame 0.
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if (result == UnwindLLDB::RegisterSearchResult::eRegisterFound
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&& regloc.type == UnwindLLDB::RegisterLocation::eRegisterInRegister
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&& frame_num > 0)
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{
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result = UnwindLLDB::RegisterSearchResult::eRegisterNotFound;
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lldb_regnum = regloc.location.register_number;
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}
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if (result == UnwindLLDB::RegisterSearchResult::eRegisterFound)
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return true;
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if (result == UnwindLLDB::RegisterSearchResult::eRegisterIsVolatile)
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return false;
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frame_num--;
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}
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return false;
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}
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