This updates transform test cases for ADCE AddDiscriminators AggressiveInstCombine AlignmentFromAssumptions ArgumentPromotion BDCE CalledValuePropagation DCE Reg2Mem WholeProgramDevirt to use the -passes syntax when specifying the pipeline. Given that LLVM_ENABLE_NEW_PASS_MANAGER isn't set to off (which is a deprecated feature) the updated test cases already used the new pass manager, but they were using the legacy syntax when specifying the passes to run. This patch can be seen as a step toward deprecating that interface. This patch also removes some redundant RUN lines. Here I am referring to test cases that had multiple RUN lines verifying both the legacy "-passname" syntax and the new "-passes=passname" syntax. Since we switched the default pass manager to "new PM" both RUN lines have verified the new PM version of the pass (more or less wasting time running the same test twice), unless LLVM_ENABLE_NEW_PASS_MANAGER is set to "off". It is assumed that it is enough to run these tests with the new pass manager now. Differential Revision: https://reviews.llvm.org/D108472
165 lines
7.6 KiB
LLVM
165 lines
7.6 KiB
LLVM
; RUN: opt -S -passes=wholeprogramdevirt -whole-program-visibility -pass-remarks=wholeprogramdevirt %s 2>&1 | FileCheck %s
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; Skipping vf0i1 is identical to setting public LTO visibility. We don't devirtualize vf0i1 and all other
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; virtual call targets.
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; RUN: opt -S -passes=wholeprogramdevirt -whole-program-visibility -pass-remarks=wholeprogramdevirt -wholeprogramdevirt-skip=vf0i1 %s 2>&1 | FileCheck %s --check-prefix=SKIP
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; We have two set of call targets {vf0i1, vf1i1} and {vf1i32, vf2i32, vf3i32, vf4i32}.
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; The command below prevents both of them from devirtualization.
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; RUN: opt -S -passes=wholeprogramdevirt -whole-program-visibility -pass-remarks=wholeprogramdevirt -wholeprogramdevirt-skip=vf0i1,vf1i32 %s 2>&1 | FileCheck %s --check-prefix=SKIP-ALL
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; Check wildcard
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; RUN: opt -S -passes=wholeprogramdevirt -whole-program-visibility -pass-remarks=wholeprogramdevirt -wholeprogramdevirt-skip=vf?i1 %s 2>&1 | FileCheck %s --check-prefix=SKIP
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target datalayout = "e-p:64:64"
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target triple = "x86_64-unknown-linux-gnu"
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; CHECK: remark: <unknown>:0:0: virtual-const-prop-1-bit: devirtualized a call to vf0i1
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; CHECK: remark: <unknown>:0:0: virtual-const-prop-1-bit: devirtualized a call to vf1i1
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; CHECK: remark: <unknown>:0:0: virtual-const-prop: devirtualized a call to vf1i32
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; CHECK: remark: <unknown>:0:0: devirtualized vf0i1
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; CHECK: remark: <unknown>:0:0: devirtualized vf1i1
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; CHECK: remark: <unknown>:0:0: devirtualized vf1i32
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; CHECK: remark: <unknown>:0:0: devirtualized vf2i32
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; CHECK: remark: <unknown>:0:0: devirtualized vf3i32
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; CHECK: remark: <unknown>:0:0: devirtualized vf4i32
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; CHECK-NOT: devirtualized
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; SKIP: remark: <unknown>:0:0: virtual-const-prop: devirtualized a call to vf1i32
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; SKIP: remark: <unknown>:0:0: devirtualized vf1i32
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; SKIP: remark: <unknown>:0:0: devirtualized vf2i32
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; SKIP: remark: <unknown>:0:0: devirtualized vf3i32
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; SKIP: remark: <unknown>:0:0: devirtualized vf4i32
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; SKIP-NOT: devirtualized
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; SKIP-ALL-NOT: devirtualized
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; CHECK: [[VT1DATA:@[^ ]*]] = private constant { [8 x i8], [3 x i8*], [0 x i8] } { [8 x i8] c"\00\00\00\01\00\00\00\02", [3 x i8*] [i8* bitcast (i1 (i8*)* @vf0i1 to i8*), i8* bitcast (i1 (i8*)* @vf1i1 to i8*), i8* bitcast (i32 (i8*)* @vf1i32 to i8*)], [0 x i8] zeroinitializer }, section "vt1sec", !type [[T8:![0-9]+]]
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@vt1 = constant [3 x i8*] [
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i8* bitcast (i1 (i8*)* @vf0i1 to i8*),
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i8* bitcast (i1 (i8*)* @vf1i1 to i8*),
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i8* bitcast (i32 (i8*)* @vf1i32 to i8*)
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], section "vt1sec", !type !0
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; CHECK: [[VT2DATA:@[^ ]*]] = private constant { [8 x i8], [3 x i8*], [0 x i8] } { [8 x i8] c"\00\00\00\02\00\00\00\01", [3 x i8*] [i8* bitcast (i1 (i8*)* @vf1i1 to i8*), i8* bitcast (i1 (i8*)* @vf0i1 to i8*), i8* bitcast (i32 (i8*)* @vf2i32 to i8*)], [0 x i8] zeroinitializer }, !type [[T8]]
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@vt2 = constant [3 x i8*] [
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i8* bitcast (i1 (i8*)* @vf1i1 to i8*),
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i8* bitcast (i1 (i8*)* @vf0i1 to i8*),
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i8* bitcast (i32 (i8*)* @vf2i32 to i8*)
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], !type !0
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; CHECK: [[VT3DATA:@[^ ]*]] = private constant { [8 x i8], [3 x i8*], [0 x i8] } { [8 x i8] c"\00\00\00\03\00\00\00\02", [3 x i8*] [i8* bitcast (i1 (i8*)* @vf0i1 to i8*), i8* bitcast (i1 (i8*)* @vf1i1 to i8*), i8* bitcast (i32 (i8*)* @vf3i32 to i8*)], [0 x i8] zeroinitializer }, !type [[T8]]
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@vt3 = constant [3 x i8*] [
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i8* bitcast (i1 (i8*)* @vf0i1 to i8*),
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i8* bitcast (i1 (i8*)* @vf1i1 to i8*),
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i8* bitcast (i32 (i8*)* @vf3i32 to i8*)
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], !type !0
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; CHECK: [[VT4DATA:@[^ ]*]] = private constant { [8 x i8], [3 x i8*], [0 x i8] } { [8 x i8] c"\00\00\00\04\00\00\00\01", [3 x i8*] [i8* bitcast (i1 (i8*)* @vf1i1 to i8*), i8* bitcast (i1 (i8*)* @vf0i1 to i8*), i8* bitcast (i32 (i8*)* @vf4i32 to i8*)], [0 x i8] zeroinitializer }, !type [[T8]]
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@vt4 = constant [3 x i8*] [
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i8* bitcast (i1 (i8*)* @vf1i1 to i8*),
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i8* bitcast (i1 (i8*)* @vf0i1 to i8*),
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i8* bitcast (i32 (i8*)* @vf4i32 to i8*)
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], !type !0
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; CHECK: @vt5 = {{.*}}, !type [[T0:![0-9]+]]
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@vt5 = constant [3 x i8*] [
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i8* bitcast (void ()* @__cxa_pure_virtual to i8*),
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i8* bitcast (void ()* @__cxa_pure_virtual to i8*),
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i8* bitcast (void ()* @__cxa_pure_virtual to i8*)
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], !type !0
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; CHECK: @vt1 = alias [3 x i8*], getelementptr inbounds ({ [8 x i8], [3 x i8*], [0 x i8] }, { [8 x i8], [3 x i8*], [0 x i8] }* [[VT1DATA]], i32 0, i32 1)
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; CHECK: @vt2 = alias [3 x i8*], getelementptr inbounds ({ [8 x i8], [3 x i8*], [0 x i8] }, { [8 x i8], [3 x i8*], [0 x i8] }* [[VT2DATA]], i32 0, i32 1)
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; CHECK: @vt3 = alias [3 x i8*], getelementptr inbounds ({ [8 x i8], [3 x i8*], [0 x i8] }, { [8 x i8], [3 x i8*], [0 x i8] }* [[VT3DATA]], i32 0, i32 1)
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; CHECK: @vt4 = alias [3 x i8*], getelementptr inbounds ({ [8 x i8], [3 x i8*], [0 x i8] }, { [8 x i8], [3 x i8*], [0 x i8] }* [[VT4DATA]], i32 0, i32 1)
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define i1 @vf0i1(i8* %this) readnone {
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ret i1 0
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}
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define i1 @vf1i1(i8* %this) readnone {
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ret i1 1
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}
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define i32 @vf1i32(i8* %this) readnone {
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ret i32 1
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}
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define i32 @vf2i32(i8* %this) readnone {
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ret i32 2
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}
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define i32 @vf3i32(i8* %this) readnone {
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ret i32 3
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}
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define i32 @vf4i32(i8* %this) readnone {
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ret i32 4
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}
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; CHECK: define i1 @call1(
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define i1 @call1(i8* %obj) {
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%vtableptr = bitcast i8* %obj to [3 x i8*]**
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%vtable = load [3 x i8*]*, [3 x i8*]** %vtableptr
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; CHECK: [[VT1:%[^ ]*]] = bitcast [3 x i8*]* {{.*}} to i8*
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%vtablei8 = bitcast [3 x i8*]* %vtable to i8*
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%pair = call {i8*, i1} @llvm.type.checked.load(i8* %vtablei8, i32 0, metadata !"typeid")
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%fptr = extractvalue {i8*, i1} %pair, 0
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%fptr_casted = bitcast i8* %fptr to i1 (i8*)*
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; CHECK: [[VTGEP1:%[^ ]*]] = getelementptr i8, i8* [[VT1]], i32 -1
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; CHECK: [[VTLOAD1:%[^ ]*]] = load i8, i8* [[VTGEP1]]
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; CHECK: [[VTAND1:%[^ ]*]] = and i8 [[VTLOAD1]], 1
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; CHECK: [[VTCMP1:%[^ ]*]] = icmp ne i8 [[VTAND1]], 0
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%result = call i1 %fptr_casted(i8* %obj)
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; CHECK: [[AND1:%[^ ]*]] = and i1 [[VTCMP1]], true
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%p = extractvalue {i8*, i1} %pair, 1
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%and = and i1 %result, %p
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; CHECK: ret i1 [[AND1]]
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ret i1 %and
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}
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; CHECK: define i1 @call2(
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define i1 @call2(i8* %obj) {
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%vtableptr = bitcast i8* %obj to [3 x i8*]**
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%vtable = load [3 x i8*]*, [3 x i8*]** %vtableptr
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; CHECK: [[VT2:%[^ ]*]] = bitcast [3 x i8*]* {{.*}} to i8*
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%vtablei8 = bitcast [3 x i8*]* %vtable to i8*
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%pair = call {i8*, i1} @llvm.type.checked.load(i8* %vtablei8, i32 8, metadata !"typeid")
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%fptr = extractvalue {i8*, i1} %pair, 0
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%fptr_casted = bitcast i8* %fptr to i1 (i8*)*
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; CHECK: [[VTGEP2:%[^ ]*]] = getelementptr i8, i8* [[VT2]], i32 -1
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; CHECK: [[VTLOAD2:%[^ ]*]] = load i8, i8* [[VTGEP2]]
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; CHECK: [[VTAND2:%[^ ]*]] = and i8 [[VTLOAD2]], 2
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; CHECK: [[VTCMP2:%[^ ]*]] = icmp ne i8 [[VTAND2]], 0
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%result = call i1 %fptr_casted(i8* %obj)
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; CHECK: [[AND2:%[^ ]*]] = and i1 [[VTCMP2]], true
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%p = extractvalue {i8*, i1} %pair, 1
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%and = and i1 %result, %p
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; CHECK: ret i1 [[AND2]]
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ret i1 %and
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}
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; CHECK: define i32 @call3(
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define i32 @call3(i8* %obj) {
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%vtableptr = bitcast i8* %obj to [3 x i8*]**
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%vtable = load [3 x i8*]*, [3 x i8*]** %vtableptr
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; CHECK: [[VT3:%[^ ]*]] = bitcast [3 x i8*]* {{.*}} to i8*
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%vtablei8 = bitcast [3 x i8*]* %vtable to i8*
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%pair = call {i8*, i1} @llvm.type.checked.load(i8* %vtablei8, i32 16, metadata !"typeid")
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%fptr = extractvalue {i8*, i1} %pair, 0
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%fptr_casted = bitcast i8* %fptr to i32 (i8*)*
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; CHECK: [[VTGEP3:%[^ ]*]] = getelementptr i8, i8* [[VT3]], i32 -5
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; CHECK: [[VTBC3:%[^ ]*]] = bitcast i8* [[VTGEP3]] to i32*
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; CHECK: [[VTLOAD3:%[^ ]*]] = load i32, i32* [[VTBC3]]
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%result = call i32 %fptr_casted(i8* %obj)
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; CHECK: ret i32 [[VTLOAD3]]
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ret i32 %result
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}
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declare {i8*, i1} @llvm.type.checked.load(i8*, i32, metadata)
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declare void @llvm.assume(i1)
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declare void @__cxa_pure_virtual()
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; CHECK: [[T8]] = !{i32 8, !"typeid"}
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; CHECK: [[T0]] = !{i32 0, !"typeid"}
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!0 = !{i32 0, !"typeid"}
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