Files
clang-p2996/llvm/test/CodeGen/SystemZ/inline-thresh-adjust.ll
Jonas Paulsson 76aa370f44 [SystemZ] Remove inlining threshold multiplier. (#106058)
Due to recently reported problems with having the inlining threshold multiplier
set fairly high (x3), this patch removes the multiplier while addressing
the regressions seen by doing so in adjustInliningThreshold().

The specific cases that benefit from inlining that were now found to be in need
of handling contain a considerable number of memory accesses to the same
memory in both caller and callee.
2024-10-07 10:59:45 +02:00

166 lines
5.6 KiB
LLVM

; RUN: opt < %s -mtriple=systemz-unknown -mcpu=z15 -passes='cgscc(inline)' -disable-output \
; RUN: -debug-only=inline,systemztti 2>&1 | FileCheck %s
; REQUIRES: asserts
; Check that the inlining threshold is incremented for a function using an
; argument only as a memcpy source.
;
; CHECK: Inlining calls in: root_function
; CHECK: Inlining {{.*}} Call: call void @leaf_function_A(ptr %Dst)
; CHECK: ++ SZTTI Adding inlining bonus: 1000
; CHECK: Inlining {{.*}} Call: call void @leaf_function_B(ptr %Dst, ptr %Src)
define void @leaf_function_A(ptr %Dst) {
entry:
call void @llvm.memcpy.p0.p0.i64(ptr %Dst, ptr undef, i64 16, i1 false)
ret void
}
define void @leaf_function_B(ptr %Dst, ptr %Src) {
entry:
call void @llvm.memcpy.p0.p0.i64(ptr %Dst, ptr %Src, i64 16, i1 false)
ret void
}
define void @root_function(ptr %Dst, ptr %Src) {
entry:
call void @leaf_function_A(ptr %Dst)
call void @leaf_function_B(ptr %Dst, ptr %Src)
ret void
}
declare void @llvm.memcpy.p0.p0.i64(ptr noalias nocapture writeonly, ptr noalias nocapture readonly, i64, i1 immarg)
; Check that the inlining threshold is incremented in case of multiple
; accesses of a global variable by both caller and callee (which is true here
; after the first call is inlined).
;
; CHECK: Inlining calls in: Caller1
; CHECK: ++ SZTTI Adding inlining bonus: 1000
@GlobV = external global i32
define i64 @Caller1(i1 %cond1, i32 %0) #0 {
entry:
br i1 %cond1, label %sw.bb3437, label %fake_end
common.ret: ; preds = %fake_end, %sw.bb3437
ret i64 0
sw.bb3437: ; preds = %entry
%call34652 = call i32 @Callee1(ptr null, i32 %0)
br label %common.ret
fake_end: ; preds = %entry
%call57981 = call i32 @Callee1(ptr null, i32 0)
br label %common.ret
}
define i32 @Callee1(ptr %rex, i32 %parenfloor) #0 {
entry:
%cmp21 = icmp slt i32 %parenfloor, 0
br i1 %cmp21, label %for.body, label %for.end
common.ret: ; preds = %for.end, %for.body
ret i32 0
for.body: ; preds = %entry
%0 = load i32, ptr @GlobV, align 4
%inc = or i32 %0, 1
store i32 %inc, ptr @GlobV, align 4
store i64 0, ptr %rex, align 8
%1 = load i32, ptr @GlobV, align 4
%inc28 = or i32 %1, 1
store i32 %inc28, ptr @GlobV, align 4
store i64 0, ptr %rex, align 8
%2 = load i32, ptr @GlobV, align 4
%inc35 = or i32 %2, 1
store i32 %inc35, ptr @GlobV, align 4
store i32 0, ptr %rex, align 8
br label %common.ret
for.end: ; preds = %entry
store i32 0, ptr @GlobV, align 4
store i32 0, ptr %rex, align 8
%3 = load i32, ptr @GlobV, align 4
%inc42 = or i32 %3, 1
store i32 %inc42, ptr @GlobV, align 4
store i32 0, ptr %rex, align 8
%4 = load i32, ptr @GlobV, align 4
%inc48 = or i32 %4, 1
store i32 %inc48, ptr @GlobV, align 4
br label %common.ret
}
; Check that the inlining threshold is incremented for a function that is
; accessing an alloca of the caller multiple times.
;
; CHECK: Inlining calls in: Caller2
; CHECK: ++ SZTTI Adding inlining bonus: 550
define i1 @Caller2() {
entry:
%A = alloca [80 x i64], align 8
call void @Callee2(ptr %A)
ret i1 false
}
define void @Callee2(ptr nocapture readonly %Arg) {
entry:
%nonzero = getelementptr i8, ptr %Arg, i64 48
%0 = load i32, ptr %nonzero, align 8
%tobool1.not = icmp eq i32 %0, 0
br i1 %tobool1.not, label %if.else38, label %if.then2
if.then2: ; preds = %entry
%1 = load i32, ptr %Arg, align 4
%tobool4.not = icmp eq i32 %1, 0
br i1 %tobool4.not, label %common.ret, label %if.then5
if.then5: ; preds = %if.then2
%2 = load double, ptr %Arg, align 8
%slab_den = getelementptr i8, ptr %Arg, i64 24
%3 = load double, ptr %slab_den, align 8
%mul = fmul double %2, %3
%cmp = fcmp olt double %mul, 0.000000e+00
br i1 %cmp, label %common.ret, label %if.end55
common.ret: ; preds = %if.end100, %if.else79, %if.end55, %if.else38, %if.then5, %if.then2
ret void
if.else38: ; preds = %entry
%4 = load double, ptr %Arg, align 8
%cmp52 = fcmp ogt double %4, 0.000000e+00
br i1 %cmp52, label %common.ret, label %if.end55
if.end55: ; preds = %if.else38, %if.then5
%arrayidx57 = getelementptr i8, ptr %Arg, i64 52
%5 = load i32, ptr %arrayidx57, align 4
%tobool58.not = icmp eq i32 %5, 0
br i1 %tobool58.not, label %common.ret, label %if.then59
if.then59: ; preds = %if.end55
%arrayidx61 = getelementptr i8, ptr %Arg, i64 64
%6 = load i32, ptr %arrayidx61, align 4
%tobool62.not = icmp eq i32 %6, 0
br i1 %tobool62.not, label %if.else79, label %if.end100
if.else79: ; preds = %if.then59
%arrayidx84 = getelementptr i8, ptr %Arg, i64 8
%7 = load double, ptr %arrayidx84, align 8
%arrayidx87 = getelementptr i8, ptr %Arg, i64 32
%8 = load double, ptr %arrayidx87, align 8
%mul88 = fmul double %7, %8
%9 = fcmp olt double %mul88, 0.000000e+00
br i1 %9, label %common.ret, label %if.end100
if.end100: ; preds = %if.else79, %if.then59
%arrayidx151 = getelementptr i8, ptr %Arg, i64 16
%10 = load double, ptr %arrayidx151, align 8
%arrayidx154 = getelementptr i8, ptr %Arg, i64 40
%11 = load double, ptr %arrayidx154, align 8
%mul155 = fmul double %10, %11
%cmp181 = fcmp olt double %mul155, 0.000000e+00
br label %common.ret
}