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authorTeresa Johnson <tejohnson@google.com>2022-12-29 12:11:38 -0800
committerTeresa Johnson <tejohnson@google.com>2022-12-30 07:31:47 -0800
commit35c7e457e8b00a4772b00b0100748f9a517ea0c2 (patch)
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parent5dccea5a68fb5181ab88ce6faac4668934f35cd7 (diff)
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[MemProf] Fix inline propagation of memprof metadata
It isn't correct to always remove memprof metadata MIBs from the original allocation call after inlining. Let's say we have the following partial call graph: C D \ / v v B E | / v v A where A contains an allocation call. If both contexts including B have the same allocation behavior, the context in the memprof metadata on the allocation will be pruned, and we will have 2 MIBs with contexts: A,B and A,E. Previously, if we inlined A into B we propagate the matching MIBs onto the inlined allocation call in B' (A,B in this case), and remove it from the original out of line allocation in A. This is correct if we have a single round of bottom up inlining. However, in the compiler we can have multiple invocations of the inliner pass (e.g. LTO). We may also inline non-bottom up with an alternative inliner such as the ModuleInliner. In that case, we could end up first inlining B into C, without having inlined A into B. The call graph then looks like: D | v C' B E \ | / v v v A If we subsequently (perhaps on a later invocation of bottom up inlining) inline A into B, the previous handling would propagate the memprof MIB context A,B up into the inlined allocation in B', and remove it from the original allocation in A. The propagation into B' is fine, however, by removing it from A's allocation, we no longer reflect the context coming from C'. To fix this, simply prevent the removal of MIB from the original allocation callsites. Note that the memprof_inline.ll test has some changes to existing checking to replace "noncold" with "notcold" in the metadata. The corresponding CHECK was accidentally commented out in the old version and thus this mistake was not previously detected. Differential Revision: https://reviews.llvm.org/D140764
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