[PowerPC] avoid unprofitable Repl32 flag in BitPermutationSelector

BitPermutationSelector sets Repl32 flag for bit groups which can be (potentially) benefit from 32-bit rotate-and-mask instructions with bit replication, i.e. rlwinm/rlwimi copies lower 32 bits into upper 32 bits on 64-bit PowerPC before rotation.
However, enforcing 32-bit instruction sometimes results in redundant generated code.
For example, the following simple code is compiled into rotldi + rlwimi while it can be compiled into only rldimi instruction if Repl32 flag is not set on the bit group for (a & 0xFFFFFFFF).

uint64_t func(uint64_t a, uint64_t b) {
	return (a & 0xFFFFFFFF) | (b << 32) ;
}

To avoid such problem, this patch checks the potential benefit of Repl32 flag before setting it. If a bit group does not require rotation (i.e. RLAmt == 0) and won't be merged into another group, we do not benefit from Repl32 flag on this group.

Differential Revision: https://reviews.llvm.org/D47867

llvm-svn: 334195
This commit is contained in:
Hiroshi Inoue 2018-06-07 13:21:14 +00:00
parent 241f286bd7
commit 01ef4c2c64
2 changed files with 26 additions and 0 deletions

View File

@ -1450,6 +1450,20 @@ class BitPermutationSelector {
};
for (auto &BG : BitGroups) {
// If this bit group has RLAmt of 0 and will not be merged with
// another bit group, we don't benefit from Repl32. We don't mark
// such group to give more freedom for later instruction selection.
if (BG.RLAmt == 0) {
auto PotentiallyMerged = [this](BitGroup & BG) {
for (auto &BG2 : BitGroups)
if (&BG != &BG2 && BG.V == BG2.V &&
(BG2.RLAmt == 0 || BG2.RLAmt == 32))
return true;
return false;
};
if (!PotentiallyMerged(BG))
continue;
}
if (BG.StartIdx < 32 && BG.EndIdx < 32) {
if (IsAllLow32(BG)) {
if (BG.RLAmt >= 32) {

View File

@ -271,6 +271,18 @@ entry:
; CHECK: blr
}
define i64 @test16(i64 %a, i64 %b) #0 {
entry:
%and = and i64 %a, 4294967295
%shl = shl i64 %b, 32
%or = or i64 %and, %shl
ret i64 %or
; CHECK-LABEL: @test16
; CHECK: rldimi 3, 4, 32, 0
; CHECK: blr
}
; Function Attrs: nounwind readnone
declare i32 @llvm.bswap.i32(i32) #0
declare i64 @llvm.bswap.i64(i64) #0