7 Commits

Author SHA1 Message Date
Snehasish Kumar
0a4184909a Reland "[memprof] Extend the index prof format to include memory profiles."
This patch adds support for optional memory profile information to be
included with and indexed profile. The indexed profile header adds a new
field which points to the offset of the memory profile section (if
present) in the indexed profile. For users who do not utilize this
feature the only overhead is a 64-bit offset in the header.

The memory profile section contains (1) profile metadata describing the
information recorded for each entry (2) an on-disk hashtable containing
the profile records indexed via llvm::md5(function_name). We chose to
introduce a separate hash table instead of the existing one since the
indexing for the instrumented fdo hash table is based on a CFG hash
which itself is perturbed by memprof instrumentation.

This commit also includes the changes reviewed separately in D120093.

Differential Revision: https://reviews.llvm.org/D120103
2022-02-17 22:09:52 -08:00
Snehasish Kumar
19bdf44d85 Revert "Reland "[memprof] Extend the index prof format to include memory profiles.""
This reverts commit 807ba7aace188ada83ddb4477265728e97346af1.
2022-02-17 15:51:04 -08:00
Snehasish Kumar
807ba7aace Reland "[memprof] Extend the index prof format to include memory profiles."
This reverts commit 85355a560a33897453df2ef959e255ee725eebce.

This patch adds support for optional memory profile information to be
included with and indexed profile. The indexed profile header adds a new
field which points to the offset of the memory profile section (if
present) in the indexed profile. For users who do not utilize this
feature the only overhead is a 64-bit offset in the header.

The memory profile section contains (1) profile metadata describing the
information recorded for each entry (2) an on-disk hashtable containing
the profile records indexed via llvm::md5(function_name). We chose to
introduce a separate hash table instead of the existing one since the
indexing for the instrumented fdo hash table is based on a CFG hash
which itself is perturbed by memprof instrumentation.

Differential Revision: https://reviews.llvm.org/D118653
2022-02-17 13:14:17 -08:00
Snehasish Kumar
85355a560a Revert "Reland "[memprof] Extend the index prof format to include memory profiles.""
This reverts commit de54e4ab78ef09b60f870e8df6f8a87e56d6bd94 [1/4]
2022-02-14 11:42:58 -08:00
Snehasish Kumar
de54e4ab78 Reland "[memprof] Extend the index prof format to include memory profiles."
This reverts commit 0f73fb18ca333e38cdb9ffa701a8db026c56041d.

Use llvm/Profile/MIBEntryDef.inc instead of relative path.

Generated the raw profile data with `-mllvm
-enable-name-compression=false` so that builbots where the reader is
built without zlib do not fail.

Also updated the test build instructions.
2022-02-14 10:52:13 -08:00
Snehasish Kumar
0f73fb18ca Revert "[memprof] Extend the index prof format to include memory profiles."
This reverts commit 43c2348c5b926df6bdbc5b70efaa35ecdefe12d5.

Buildbots are failing with an error on reading memprof testdata.
"Inputs/basic.profraw: profile uses zlib
compression but the profile reader was built without zlib support"

https://lab.llvm.org/buildbot/#/builders/16/builds/24490
2022-02-14 10:25:01 -08:00
Snehasish Kumar
43c2348c5b [memprof] Extend the index prof format to include memory profiles.
This patch adds support for optional memory profile information to be
included with and indexed profile. The indexed profile header adds a new
field which points to the offset of the memory profile section (if
present) in the indexed profile. For users who do not utilize this
feature the only overhead is a 64-bit offset in the header.

The memory profile section contains (1) profile metadata describing the
information recorded for each entry (2) an on-disk hashtable containing
the profile records indexed via llvm::md5(function_name). We chose to
introduce a separate hash table instead of the existing one since the
indexing for the instrumented fdo hash table is based on a CFG hash
which itself is perturbed by memprof instrumentation.

Differential Revision: https://reviews.llvm.org/D118653
2022-02-14 09:53:45 -08:00