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llvm-mirror/test/Transforms/WholeProgramDevirt/unique-retval.ll
Peter Collingbourne 54e8749794 WholeProgramDevirt: introduce.
This pass implements whole program optimization of virtual calls in cases
where we know (via bitset information) that the list of callees is fixed. This
includes the following:

- Single implementation devirtualization: if a virtual call has a single
  possible callee, replace all calls with a direct call to that callee.

- Virtual constant propagation: if the virtual function's return type is an
  integer <=64 bits and all possible callees are readnone, for each class and
  each list of constant arguments: evaluate the function, store the return
  value alongside the virtual table, and rewrite each virtual call as a load
  from the virtual table.

- Uniform return value optimization: if the conditions for virtual constant
  propagation hold and each function returns the same constant value, replace
  each virtual call with that constant.

- Unique return value optimization for i1 return values: if the conditions
  for virtual constant propagation hold and a single vtable's function
  returns 0, or a single vtable's function returns 1, replace each virtual
  call with a comparison of the vptr against that vtable's address.

Differential Revision: http://reviews.llvm.org/D16795

llvm-svn: 260312
2016-02-09 22:50:34 +00:00

62 lines
2.2 KiB
LLVM

; RUN: opt -S -wholeprogramdevirt %s | FileCheck %s
target datalayout = "e-p:64:64"
target triple = "x86_64-unknown-linux-gnu"
@vt1 = constant [1 x i8*] [i8* bitcast (i1 (i8*)* @vf0 to i8*)]
@vt2 = constant [1 x i8*] [i8* bitcast (i1 (i8*)* @vf0 to i8*)]
@vt3 = constant [1 x i8*] [i8* bitcast (i1 (i8*)* @vf1 to i8*)]
@vt4 = constant [1 x i8*] [i8* bitcast (i1 (i8*)* @vf1 to i8*)]
define i1 @vf0(i8* %this) readnone {
ret i1 0
}
define i1 @vf1(i8* %this) readnone {
ret i1 1
}
; CHECK: define i1 @call1
define i1 @call1(i8* %obj) {
%vtableptr = bitcast i8* %obj to [1 x i8*]**
%vtable = load [1 x i8*]*, [1 x i8*]** %vtableptr
; CHECK: [[VT1:%[^ ]*]] = bitcast [1 x i8*]* {{.*}} to i8*
%vtablei8 = bitcast [1 x i8*]* %vtable to i8*
%p = call i1 @llvm.bitset.test(i8* %vtablei8, metadata !"bitset1")
call void @llvm.assume(i1 %p)
%fptrptr = getelementptr [1 x i8*], [1 x i8*]* %vtable, i32 0, i32 0
%fptr = load i8*, i8** %fptrptr
%fptr_casted = bitcast i8* %fptr to i1 (i8*)*
; CHECK: [[RES1:%[^ ]*]] = icmp eq i8* [[VT1]], bitcast ([1 x i8*]* @vt3 to i8*)
%result = call i1 %fptr_casted(i8* %obj)
; CHECK: ret i1 [[RES1]]
ret i1 %result
}
; CHECK: define i1 @call2
define i1 @call2(i8* %obj) {
%vtableptr = bitcast i8* %obj to [1 x i8*]**
%vtable = load [1 x i8*]*, [1 x i8*]** %vtableptr
; CHECK: [[VT2:%[^ ]*]] = bitcast [1 x i8*]* {{.*}} to i8*
%vtablei8 = bitcast [1 x i8*]* %vtable to i8*
%p = call i1 @llvm.bitset.test(i8* %vtablei8, metadata !"bitset2")
call void @llvm.assume(i1 %p)
%fptrptr = getelementptr [1 x i8*], [1 x i8*]* %vtable, i32 0, i32 0
%fptr = load i8*, i8** %fptrptr
%fptr_casted = bitcast i8* %fptr to i1 (i8*)*
; CHECK: [[RES1:%[^ ]*]] = icmp ne i8* [[VT1]], bitcast ([1 x i8*]* @vt2 to i8*)
%result = call i1 %fptr_casted(i8* %obj)
ret i1 %result
}
declare i1 @llvm.bitset.test(i8*, metadata)
declare void @llvm.assume(i1)
!0 = !{!"bitset1", [1 x i8*]* @vt1, i32 0}
!1 = !{!"bitset1", [1 x i8*]* @vt2, i32 0}
!2 = !{!"bitset1", [1 x i8*]* @vt3, i32 0}
!3 = !{!"bitset2", [1 x i8*]* @vt2, i32 0}
!4 = !{!"bitset2", [1 x i8*]* @vt3, i32 0}
!5 = !{!"bitset2", [1 x i8*]* @vt4, i32 0}
!llvm.bitsets = !{!0, !1, !2, !3, !4, !5}