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authorMark Rowe <mark@vector35.com>2025-11-18 15:45:15 -0800
committerMark Rowe <mark@vector35.com>2026-01-14 09:34:32 -0800
commit6e50ceda4e65e5952e59449fad4953ea6c5aaf37 (patch)
tree3f9defd37d0b2d1b7725b0f876fa474b6301d056 /function.cpp
parent56010d289afa142ebd206db8fc3b22f89d7a4ec0 (diff)
Allow controlling which address is used for instructions created when inlining during analysis
Previously the address of the instruction in the function being inlined was used as the new instruction's address when copying it during inlining. Now there is an additional option: use the address of the call instruction that is being replaced as the new instruction's address. This new mode is useful when inlining thunks or stub functions, but care must be taken if using it beyond that. The benefit is that it ensures that when a function contains multiple calls to the same stub function, each inlined copy ends up with distinct addresses. This ensures that call type adjustments and other overrides that are stored on the function and keyed by address can be applied independently to each callsite that was inlined. The trade-off is that if the function being inlined contains non-trivial logic, all of the inlined instructions sharing an address will limit what type of adjustments can be applied to them. The Objective-C and shared cache workflows are updated to take advantage of this new mode when they enable inlining of stub functions. This will make it possible for multiple calls to the same runtime function within a single function to have separate call type adjustments applied in the future.
Diffstat (limited to 'function.cpp')
-rw-r--r--function.cpp27
1 files changed, 17 insertions, 10 deletions
diff --git a/function.cpp b/function.cpp
index d5e692de..3f5f5b2e 100644
--- a/function.cpp
+++ b/function.cpp
@@ -3230,21 +3230,28 @@ Confidence<bool> Function::IsInlinedDuringAnalysis()
}
-void Function::SetAutoInlinedDuringAnalysis(Confidence<bool> inlined)
+Confidence<BNInlineDuringAnalysis> Function::GetInlinedDuringAnalysis()
{
- BNBoolWithConfidence bc;
- bc.value = inlined.GetValue();
- bc.confidence = inlined.GetConfidence();
- BNSetAutoFunctionInlinedDuringAnalysis(m_object, bc);
+ BNInlineDuringAnalysisWithConfidence value = BNGetFunctionInlinedDuringAnalysis(m_object);
+ return Confidence(value.value, value.confidence);
}
-void Function::SetUserInlinedDuringAnalysis(Confidence<bool> inlined)
+void Function::SetAutoInlinedDuringAnalysis(Confidence<BNInlineDuringAnalysis> inlined)
{
- BNBoolWithConfidence bc;
- bc.value = inlined.GetValue();
- bc.confidence = inlined.GetConfidence();
- BNSetUserFunctionInlinedDuringAnalysis(m_object, bc);
+ BNInlineDuringAnalysisWithConfidence value;
+ value.value = inlined.GetValue();
+ value.confidence = inlined.GetConfidence();
+ BNSetAutoFunctionInlinedDuringAnalysis(m_object, value);
+}
+
+
+void Function::SetUserInlinedDuringAnalysis(Confidence<BNInlineDuringAnalysis> inlined)
+{
+ BNInlineDuringAnalysisWithConfidence value;
+ value.value = inlined.GetValue();
+ value.confidence = inlined.GetConfidence();
+ BNSetUserFunctionInlinedDuringAnalysis(m_object, value);
}