7 Commits

Author SHA1 Message Date
Chen Zheng
eb7d16ea25 [PowerPC] make expensive mflr be away from its user in the function prologue
mflr is kind of expensive on Power version smaller than 10, so we should
schedule the store for the mflr's def away from mflr.

In epilogue, the expensive mtlr has no user for its def, so it doesn't
matter that the load and the mtlr are back-to-back.

Reviewed By: RolandF

Differential Revision: https://reviews.llvm.org/D137423
2022-11-14 21:14:20 -05:00
Kai Nacke
5403c59c60 [PPC] Opaque pointer migration, part 2.
The LIT test cases were migrated with the script provided by
Nikita Popov. Due to the size of the change it is split into
several parts.

Reviewed By: nemanja, nikic

Differential Revision: https://reviews.llvm.org/D135474
2022-10-11 17:24:06 +00:00
Quinn Pham
335e8bf100 [PowerPC] emit VSX instructions instead of VMX instructions for vector loads and stores
This patch changes the PowerPC backend to generate VSX load/store instructions
for all vector loads/stores on Power8 and earlier  (LE) instead of VMX
load/store instructions. The reason for this change is because VMX instructions
require the vector to be 16-byte aligned. So, a vector load/store will fail with
VMX instructions if the vector is misaligned. Also, `gcc` generates VSX
instructions in this situation which allow for unaligned access but require a
swap instruction after loading/before storing. This is not an issue for BE
because we already emit VSX instructions since no swap is required. And this is
not an issue on Power9 and up since we have access to `lxv[x]`/`stxv[x]` which
allow for unaligned access and do not require swaps.

This patch also delays the VSX load/store for LE combines until after
LegalizeOps to prioritize other load/store combines.

Reviewed By: #powerpc, stefanp

Differential Revision: https://reviews.llvm.org/D127309
2022-06-15 12:06:04 -05:00
Amy Kwan
5041a485b9 [PowerPC] Exploit Prefixed Load/Stores using the refactored Load/Store Implementation
This patch exploits the prefixed load and store instructions utilizing the
refactored load/store implementation introduced in D93370.

Prefixed load and store instructions are emitted whenever we are loading or
storing a value with an offset that fits into a 34-bit signed immediate.
Patterns for the prefixed load and stores are added in this patch, as well as
the implementation that detects when we are loading and storing a value with an
offset that fits in 34-bits.

Differential Revision: https://reviews.llvm.org/D96075
2021-09-14 08:39:49 -05:00
Amy Kwan
351a0d8a90 [PowerPC] Update PC-Relative Load/Store Patterns to use the refactored Load/Store Implementation
This patch updates the PC-Relative load and store patterns to utilize the
refactored load/store implementation introduced in D93370.

PC-Relative implementation has been added to PPCISelLowering.cpp, and also the
patterns in PPCInstrPrefix.td have been updated and no longer require AddedComplexity.
All existing test cases pass with this update.

Differential Revision: https://reviews.llvm.org/D95116
2021-09-09 15:38:42 -05:00
Amy Kwan
ba627a32e1 [PowerPC] Update Refactored Load/Store Implementation, XForm VSX Patterns, and Tests
This patch includes the following updates to the load/store refactoring effort introduced in D93370:
 - Update various VSX patterns that use to "force" an XForm, to instead just XForm.
   This allows the ability for the patterns to compute the most optimal addressing
   mode (and to produce a DForm instruction when possible)
- Update pattern and test case for the LXVD2X/STXVD2X intrinsics
- Update LIT test cases that use to use the XForm instruction to use the DForm instruction

Differential Revision: https://reviews.llvm.org/D95115
2021-07-16 09:28:48 -05:00
Amy Kwan
e582c073d1 [NFC][PowerPC] Add additional load/store test cases
This patch adds additional load/store test cases involving scalars, vectors,
and PC-Rel in preparation for the refactored load and store implementation
introduced in D93370.

Differential Revision: https://reviews.llvm.org/D97391
2021-03-15 08:54:38 -05:00