llvm/test/CodeGen/Thumb2/machine-licm.ll
Bob Wilson 7d24705f65 Change register allocation order for ARM VFP and NEON registers to put the
callee-saved registers at the end of the lists.  Also prefer to avoid using
the low registers that are in register subclasses required by certain
instructions, so that those registers will more likely be available when needed.
This change makes a huge improvement in spilling in some cases.  Thanks to
Jakob for helping me realize the problem.

Most of this patch is fixing the testsuite.  There are quite a few places
where we're checking for specific registers.  I changed those to wildcards
in places where that doesn't weaken the tests.  The spill-q.ll and
thumb2-spill-q.ll tests stopped spilling with this change, so I added a bunch
of live values to force spills on those tests.


git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@116055 91177308-0d34-0410-b5e6-96231b3b80d8
2010-10-08 06:15:13 +00:00

87 lines
2.9 KiB
LLVM

; RUN: llc < %s -mtriple=thumbv7-apple-darwin -mcpu=cortex-a8 -disable-fp-elim | FileCheck %s
; RUN: llc < %s -mtriple=thumbv7-apple-darwin -mcpu=cortex-a8 -relocation-model=pic -disable-fp-elim | FileCheck %s --check-prefix=PIC
; rdar://7353541
; rdar://7354376
; The generated code is no where near ideal. It's not recognizing the two
; constantpool entries being loaded can be merged into one.
@GV = external global i32 ; <i32*> [#uses=2]
define void @t1(i32* nocapture %vals, i32 %c) nounwind {
entry:
; CHECK: t1:
; CHECK: cbz
%0 = icmp eq i32 %c, 0 ; <i1> [#uses=1]
br i1 %0, label %return, label %bb.nph
bb.nph: ; preds = %entry
; CHECK: BB#1
; CHECK: ldr.n r2, LCPI0_0
; CHECK: ldr r2, [r2]
; CHECK: ldr r3, [r2]
; CHECK: LBB0_2
; CHECK: LCPI0_0:
; CHECK-NOT: LCPI0_1:
; PIC: BB#1
; PIC: ldr.n r2, LCPI0_0
; PIC: add r2, pc
; PIC: ldr r2, [r2]
; PIC: ldr r3, [r2]
; PIC: LBB0_2
; PIC: LCPI0_0:
; PIC-NOT: LCPI0_1:
; PIC: .section
%.pre = load i32* @GV, align 4 ; <i32> [#uses=1]
br label %bb
bb: ; preds = %bb, %bb.nph
%1 = phi i32 [ %.pre, %bb.nph ], [ %3, %bb ] ; <i32> [#uses=1]
%i.03 = phi i32 [ 0, %bb.nph ], [ %4, %bb ] ; <i32> [#uses=2]
%scevgep = getelementptr i32* %vals, i32 %i.03 ; <i32*> [#uses=1]
%2 = load i32* %scevgep, align 4 ; <i32> [#uses=1]
%3 = add nsw i32 %1, %2 ; <i32> [#uses=2]
store i32 %3, i32* @GV, align 4
%4 = add i32 %i.03, 1 ; <i32> [#uses=2]
%exitcond = icmp eq i32 %4, %c ; <i1> [#uses=1]
br i1 %exitcond, label %return, label %bb
return: ; preds = %bb, %entry
ret void
}
; rdar://8001136
define void @t2(i8* %ptr1, i8* %ptr2) nounwind {
entry:
; CHECK: t2:
; CHECK: adr r{{.}}, #LCPI1_0
; CHECK: vldmia r3, {d16, d17}
br i1 undef, label %bb1, label %bb2
bb1:
; CHECK-NEXT: %bb1
%indvar = phi i32 [ %indvar.next, %bb1 ], [ 0, %entry ]
%tmp1 = shl i32 %indvar, 2
%gep1 = getelementptr i8* %ptr1, i32 %tmp1
%tmp2 = call <4 x float> @llvm.arm.neon.vld1.v4f32(i8* %gep1, i32 1)
%tmp3 = call <4 x float> @llvm.arm.neon.vmaxs.v4f32(<4 x float> <float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00>, <4 x float> %tmp2)
%gep2 = getelementptr i8* %ptr2, i32 %tmp1
call void @llvm.arm.neon.vst1.v4f32(i8* %gep2, <4 x float> %tmp3, i32 1)
%indvar.next = add i32 %indvar, 1
%cond = icmp eq i32 %indvar.next, 10
br i1 %cond, label %bb2, label %bb1
bb2:
ret void
}
; CHECK: LCPI1_0:
; CHECK: .section
declare <4 x float> @llvm.arm.neon.vld1.v4f32(i8*, i32) nounwind readonly
declare void @llvm.arm.neon.vst1.v4f32(i8*, <4 x float>, i32) nounwind
declare <4 x float> @llvm.arm.neon.vmaxs.v4f32(<4 x float>, <4 x float>) nounwind readnone