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Support for leaf functions which don't touch any callee-saved registers
for Windows x64 stacks. According to https://reviews.llvm.org/D2474, LLVM does't generate unwind info for leaf function which doesn't touch any callee-saved registers. According to MSDN, leaf functions can be unwound simply by simulating a return. Change-Id: Ic0503e2aca90b0ba5799133ea8439f1b5f2eefda Reviewed-on: https://chromium-review.googlesource.com/c/breakpad/breakpad/+/3489332 Reviewed-by: Mark Mentovai <mark@chromium.org> Reviewed-by: Joshua Peraza <jperaza@chromium.org>
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@ -50,9 +50,12 @@ struct StackFrame {
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FRAME_TRUST_CFI_SCAN, // Found while scanning stack using call frame info
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FRAME_TRUST_CFI_SCAN, // Found while scanning stack using call frame info
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FRAME_TRUST_FP, // Derived from frame pointer
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FRAME_TRUST_FP, // Derived from frame pointer
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FRAME_TRUST_CFI, // Derived from call frame info
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FRAME_TRUST_CFI, // Derived from call frame info
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FRAME_TRUST_PREWALKED, // Explicitly provided by some external stack walker.
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// Explicitly provided by some external stack walker.
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FRAME_TRUST_PREWALKED,
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FRAME_TRUST_CONTEXT, // Given as instruction pointer in a context
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FRAME_TRUST_CONTEXT, // Given as instruction pointer in a context
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FRAME_TRUST_INLINE // Found by inline records in symbol files.
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FRAME_TRUST_INLINE, // Found by inline records in symbol files.
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// Derived from leaf function by simulating a return.
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FRAME_TRUST_LEAF,
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};
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};
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StackFrame()
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StackFrame()
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@ -85,6 +88,8 @@ struct StackFrame {
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return "stack scanning";
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return "stack scanning";
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case StackFrame::FRAME_TRUST_INLINE:
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case StackFrame::FRAME_TRUST_INLINE:
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return "inline record";
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return "inline record";
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case StackFrame::FRAME_TRUST_LEAF:
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return "simulating a return from leaf function";
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default:
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default:
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return "unknown";
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return "unknown";
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}
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}
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@ -221,6 +221,35 @@ StackFrameAMD64* StackwalkerAMD64::GetCallerByFramePointerRecovery(
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return NULL;
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return NULL;
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}
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}
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StackFrameAMD64* StackwalkerAMD64::GetCallerBySimulatingReturn(
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const vector<StackFrame*>& frames) {
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assert(frames.size() == 1);
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StackFrameAMD64* last_frame = static_cast<StackFrameAMD64*>(frames.back());
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uint64_t last_rsp = last_frame->context.rsp;
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uint64_t caller_rip_address, caller_rip;
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int searchwords = 1;
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if (!ScanForReturnAddress(last_rsp, &caller_rip_address, &caller_rip,
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searchwords)) {
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// No plausible return address at the top of the stack. Unable to simulate
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// a return.
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return NULL;
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}
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// Create a new stack frame (ownership will be transferred to the caller)
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// and fill it in.
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StackFrameAMD64* frame = new StackFrameAMD64();
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frame->trust = StackFrame::FRAME_TRUST_LEAF;
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frame->context = last_frame->context;
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frame->context.rip = caller_rip;
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// The caller's %rsp is directly underneath the return address pushed by
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// the call.
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frame->context.rsp = caller_rip_address + 8;
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frame->context_validity = last_frame->context_validity;
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return frame;
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}
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StackFrameAMD64* StackwalkerAMD64::GetCallerByStackScan(
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StackFrameAMD64* StackwalkerAMD64::GetCallerByStackScan(
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const vector<StackFrame*>& frames) {
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const vector<StackFrame*>& frames) {
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StackFrameAMD64* last_frame = static_cast<StackFrameAMD64*>(frames.back());
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StackFrameAMD64* last_frame = static_cast<StackFrameAMD64*>(frames.back());
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@ -282,12 +311,22 @@ StackFrame* StackwalkerAMD64::GetCallerFrame(const CallStack* stack,
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StackFrameAMD64* last_frame = static_cast<StackFrameAMD64*>(frames.back());
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StackFrameAMD64* last_frame = static_cast<StackFrameAMD64*>(frames.back());
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scoped_ptr<StackFrameAMD64> new_frame;
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scoped_ptr<StackFrameAMD64> new_frame;
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// If we have DWARF CFI information, use it.
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// If we have CFI information, use it.
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scoped_ptr<CFIFrameInfo> cfi_frame_info(
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scoped_ptr<CFIFrameInfo> cfi_frame_info(
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frame_symbolizer_->FindCFIFrameInfo(last_frame));
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frame_symbolizer_->FindCFIFrameInfo(last_frame));
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if (cfi_frame_info.get())
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if (cfi_frame_info.get())
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new_frame.reset(GetCallerByCFIFrameInfo(frames, cfi_frame_info.get()));
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new_frame.reset(GetCallerByCFIFrameInfo(frames, cfi_frame_info.get()));
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// If CFI was not available and this is a Windows x64 stack, check whether
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// this is a leaf function which doesn't touch any callee-saved registers.
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// According to https://reviews.llvm.org/D24748, LLVM doesn't generate unwind
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// info for such functions. According to MSDN, leaf functions can be unwound
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// simply by simulating a return.
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if (!new_frame.get() && stack->frames()->size() == 1 &&
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system_info_->os_short == "windows") {
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new_frame.reset(GetCallerBySimulatingReturn(frames));
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}
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// If CFI was not available or failed, try using frame pointer recovery.
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// If CFI was not available or failed, try using frame pointer recovery.
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// Never try to use frame pointer unwinding on Windows x64 stack. MSVC never
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// Never try to use frame pointer unwinding on Windows x64 stack. MSVC never
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// generates code that works with frame pointer chasing, and LLVM does the
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// generates code that works with frame pointer chasing, and LLVM does the
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@ -90,6 +90,11 @@ class StackwalkerAMD64 : public Stackwalker {
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// of the returned frame. Return NULL on failure.
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// of the returned frame. Return NULL on failure.
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StackFrameAMD64* GetCallerByStackScan(const vector<StackFrame*>& frames);
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StackFrameAMD64* GetCallerByStackScan(const vector<StackFrame*>& frames);
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// Trying to simulate a return. The caller takes ownership of the returned
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// frame. Return NULL on failure.
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StackFrameAMD64* GetCallerBySimulatingReturn(
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const vector<StackFrame*>& frames);
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// Stores the CPU context corresponding to the innermost stack frame to
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// Stores the CPU context corresponding to the innermost stack frame to
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// be returned by GetContextFrame.
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// be returned by GetContextFrame.
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const MDRawContextAMD64* context_;
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const MDRawContextAMD64* context_;
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