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llvm-mirror/test/CodeGen/PowerPC/testComparesieqsll.ll
Stefan Pintilie f220e7cb76 [PowerPC] Replace the Post RA List Scheduler with the Machine Scheduler
We want to run the Machine Scheduler instead of the List Scheduler after RA.
  Checked with a performance run on a Power 9 machine with SPEC 2006 and while
  some benchmarks improved and others degraded the geomean was slightly improved
  with the Machine Scheduler.

  Differential Revision: https://reviews.llvm.org/D45265

llvm-svn: 336295
2018-07-04 18:54:25 +00:00

135 lines
4.0 KiB
LLVM

; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
; RUN: llc -verify-machineinstrs -mtriple=powerpc64-unknown-linux-gnu -O2 \
; RUN: -ppc-gpr-icmps=all -ppc-asm-full-reg-names -mcpu=pwr8 < %s | FileCheck %s \
; RUN: --implicit-check-not cmpw --implicit-check-not cmpd --implicit-check-not cmpl
; RUN: llc -verify-machineinstrs -mtriple=powerpc64le-unknown-linux-gnu -O2 \
; RUN: -ppc-gpr-icmps=all -ppc-asm-full-reg-names -mcpu=pwr8 < %s | FileCheck %s \
; RUN: --implicit-check-not cmpw --implicit-check-not cmpd --implicit-check-not cmpl
; ModuleID = 'ComparisonTestCases/testComparesieqsll.c'
@glob = common local_unnamed_addr global i64 0, align 8
; Function Attrs: norecurse nounwind readnone
define signext i32 @test_ieqsll(i64 %a, i64 %b) {
; CHECK-LABEL: test_ieqsll:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: xor r3, r3, r4
; CHECK-NEXT: cntlzd r3, r3
; CHECK-NEXT: rldicl r3, r3, 58, 63
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, %b
%conv = zext i1 %cmp to i32
ret i32 %conv
}
; Function Attrs: norecurse nounwind readnone
define signext i32 @test_ieqsll_sext(i64 %a, i64 %b) {
; CHECK-LABEL: test_ieqsll_sext:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: xor r3, r3, r4
; CHECK-NEXT: addic r3, r3, -1
; CHECK-NEXT: subfe r3, r3, r3
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, %b
%sub = sext i1 %cmp to i32
ret i32 %sub
}
; Function Attrs: norecurse nounwind readnone
define signext i32 @test_ieqsll_z(i64 %a) {
; CHECK-LABEL: test_ieqsll_z:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: cntlzd r3, r3
; CHECK-NEXT: rldicl r3, r3, 58, 63
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, 0
%conv = zext i1 %cmp to i32
ret i32 %conv
}
; Function Attrs: norecurse nounwind readnone
define signext i32 @test_ieqsll_sext_z(i64 %a) {
; CHECK-LABEL: test_ieqsll_sext_z:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: addic r3, r3, -1
; CHECK-NEXT: subfe r3, r3, r3
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, 0
%sub = sext i1 %cmp to i32
ret i32 %sub
}
; Function Attrs: norecurse nounwind
define void @test_ieqsll_store(i64 %a, i64 %b) {
; CHECK-LABEL: test_ieqsll_store:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: addis r5, r2, .LC0@toc@ha
; CHECK-NEXT: xor r3, r3, r4
; CHECK-NEXT: ld r4, .LC0@toc@l(r5)
; CHECK-NEXT: cntlzd r3, r3
; CHECK-NEXT: rldicl r3, r3, 58, 63
; CHECK-NEXT: std r3, 0(r4)
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, %b
%conv1 = zext i1 %cmp to i64
store i64 %conv1, i64* @glob, align 8
ret void
}
; Function Attrs: norecurse nounwind
define void @test_ieqsll_sext_store(i64 %a, i64 %b) {
; CHECK-LABEL: test_ieqsll_sext_store:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: addis r5, r2, .LC0@toc@ha
; CHECK-NEXT: xor r3, r3, r4
; CHECK-NEXT: ld r4, .LC0@toc@l(r5)
; CHECK-NEXT: addic r3, r3, -1
; CHECK-NEXT: subfe r3, r3, r3
; CHECK-NEXT: std r3, 0(r4)
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, %b
%conv1 = sext i1 %cmp to i64
store i64 %conv1, i64* @glob, align 8
ret void
}
; Function Attrs: norecurse nounwind
define void @test_ieqsll_z_store(i64 %a) {
; CHECK-LABEL: test_ieqsll_z_store:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: addis r4, r2, .LC0@toc@ha
; CHECK-NEXT: cntlzd r3, r3
; CHECK-NEXT: ld r4, .LC0@toc@l(r4)
; CHECK-NEXT: rldicl r3, r3, 58, 63
; CHECK-NEXT: std r3, 0(r4)
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, 0
%conv1 = zext i1 %cmp to i64
store i64 %conv1, i64* @glob, align 8
ret void
}
; Function Attrs: norecurse nounwind
define void @test_ieqsll_sext_z_store(i64 %a) {
; CHECK-LABEL: test_ieqsll_sext_z_store:
; CHECK: # %bb.0: # %entry
; CHECK-NEXT: addis r4, r2, .LC0@toc@ha
; CHECK-NEXT: addic r3, r3, -1
; CHECK-NEXT: ld r4, .LC0@toc@l(r4)
; CHECK-NEXT: subfe r3, r3, r3
; CHECK-NEXT: std r3, 0(r4)
; CHECK-NEXT: blr
entry:
%cmp = icmp eq i64 %a, 0
%conv1 = sext i1 %cmp to i64
store i64 %conv1, i64* @glob, align 8
ret void
}