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Reid Klecknera3609b02013-04-11 18:13:19 +00001// RUN: %clang_cc1 -fno-rtti -emit-llvm %s -o - -cxx-abi microsoft -triple=i386-pc-win32 | FileCheck %s
2
3struct B1 {
4 int b;
5};
6struct B2 { };
7struct Single : B1 { };
8struct Multiple : B1, B2 { };
9struct Virtual : virtual B1 {
10 int v;
11};
Reid Klecknera8a0f762013-03-22 19:02:54 +000012
13struct POD {
14 int a;
15 int b;
16};
17
Reid Klecknera3609b02013-04-11 18:13:19 +000018struct Polymorphic {
19 virtual void myVirtual();
20 int a;
21 int b;
22};
23
24// This class uses the virtual inheritance model, yet its vbptr offset is not 0.
25// We still use zero for the null field offset, despite it being a valid field
26// offset.
27struct NonZeroVBPtr : POD, Virtual {
28 int n;
29};
30
31struct Unspecified;
32
33// Check that we can lower the LLVM types and get the initializers right.
34int Single ::*s_d_memptr;
35int Polymorphic::*p_d_memptr;
36int Multiple ::*m_d_memptr;
37int Virtual ::*v_d_memptr;
38int NonZeroVBPtr::*n_d_memptr;
39int Unspecified::*u_d_memptr;
40// CHECK: @"\01?s_d_memptr@@3PQSingle@@HA" = global i32 -1, align 4
41// CHECK: @"\01?p_d_memptr@@3PQPolymorphic@@HA" = global i32 0, align 4
42// CHECK: @"\01?m_d_memptr@@3PQMultiple@@HA" = global i32 -1, align 4
43// CHECK: @"\01?v_d_memptr@@3PQVirtual@@HA" = global { i32, i32 }
44// CHECK: { i32 0, i32 -1 }, align 4
45// CHECK: @"\01?n_d_memptr@@3PQNonZeroVBPtr@@HA" = global { i32, i32 }
46// CHECK: { i32 0, i32 -1 }, align 4
47// CHECK: @"\01?u_d_memptr@@3PQUnspecified@@HA" = global { i32, i32, i32 }
48// CHECK: { i32 0, i32 0, i32 -1 }, align 4
49
50void (Single ::*s_f_memptr)();
51void (Multiple::*m_f_memptr)();
52void (Virtual ::*v_f_memptr)();
53// CHECK: @"\01?s_f_memptr@@3P8Single@@AEXXZA" = global i8* null, align 4
54// CHECK: @"\01?m_f_memptr@@3P8Multiple@@AEXXZA" = global { i8*, i32 } zeroinitializer, align 4
55// CHECK: @"\01?v_f_memptr@@3P8Virtual@@AEXXZA" = global { i8*, i32, i32 } zeroinitializer, align 4
56
Reid Klecknera8a0f762013-03-22 19:02:54 +000057void podMemPtrs() {
58 int POD::*memptr;
59 memptr = &POD::a;
60 memptr = &POD::b;
61 if (memptr)
62 memptr = 0;
63// Check that member pointers use the right offsets and that null is -1.
64// CHECK: define void @"\01?podMemPtrs@@YAXXZ"() #0 {
65// CHECK: %[[memptr:.*]] = alloca i32, align 4
66// CHECK-NEXT: store i32 0, i32* %[[memptr]], align 4
67// CHECK-NEXT: store i32 4, i32* %[[memptr]], align 4
68// CHECK-NEXT: %[[memptr_val:.*]] = load i32* %[[memptr]], align 4
69// CHECK-NEXT: %{{.*}} = icmp ne i32 %[[memptr_val]], -1
70// CHECK-NEXT: br i1 %{{.*}}, label %{{.*}}, label %{{.*}}
71// CHECK: store i32 -1, i32* %[[memptr]], align 4
72// CHECK: ret void
73// CHECK: }
74}
75
Reid Klecknera8a0f762013-03-22 19:02:54 +000076void polymorphicMemPtrs() {
77 int Polymorphic::*memptr;
78 memptr = &Polymorphic::a;
79 memptr = &Polymorphic::b;
80 if (memptr)
81 memptr = 0;
82// Member pointers for polymorphic classes include the vtable slot in their
83// offset and use 0 to represent null.
84// CHECK: define void @"\01?polymorphicMemPtrs@@YAXXZ"() #0 {
85// CHECK: %[[memptr:.*]] = alloca i32, align 4
86// CHECK-NEXT: store i32 4, i32* %[[memptr]], align 4
87// CHECK-NEXT: store i32 8, i32* %[[memptr]], align 4
88// CHECK-NEXT: %[[memptr_val:.*]] = load i32* %[[memptr]], align 4
89// CHECK-NEXT: %{{.*}} = icmp ne i32 %[[memptr_val]], 0
90// CHECK-NEXT: br i1 %{{.*}}, label %{{.*}}, label %{{.*}}
91// CHECK: store i32 0, i32* %[[memptr]], align 4
92// CHECK: ret void
93// CHECK: }
94}
Reid Klecknera3609b02013-04-11 18:13:19 +000095
96bool nullTestDataUnspecified(int Unspecified::*mp) {
97 return mp;
98// CHECK: define zeroext i1 @"\01?nullTestDataUnspecified@@YA_NPQUnspecified@@H@Z"{{.*}} {
99// CHECK: %{{.*}} = load { i32, i32, i32 }* %{{.*}}, align 4
100// CHECK: store { i32, i32, i32 } {{.*}} align 4
101// CHECK: %[[mp:.*]] = load { i32, i32, i32 }* %{{.*}}, align 4
102// CHECK: %[[mp0:.*]] = extractvalue { i32, i32, i32 } %[[mp]], 0
103// CHECK: %[[cmp0:.*]] = icmp ne i32 %[[mp0]], 0
104// CHECK: %[[mp1:.*]] = extractvalue { i32, i32, i32 } %[[mp]], 1
105// CHECK: %[[cmp1:.*]] = icmp ne i32 %[[mp1]], 0
106// CHECK: %[[and0:.*]] = and i1 %[[cmp0]], %[[cmp1]]
107// CHECK: %[[mp2:.*]] = extractvalue { i32, i32, i32 } %[[mp]], 2
108// CHECK: %[[cmp2:.*]] = icmp ne i32 %[[mp2]], -1
109// CHECK: %[[and1:.*]] = and i1 %[[and0]], %[[cmp2]]
110// CHECK: ret i1 %[[and1]]
111// CHECK: }
112}
113
114bool nullTestFunctionUnspecified(void (Unspecified::*mp)()) {
115 return mp;
116// CHECK: define zeroext i1 @"\01?nullTestFunctionUnspecified@@YA_NP8Unspecified@@AEXXZ@Z"{{.*}} {
117// CHECK: %{{.*}} = load { i8*, i32, i32, i32 }* %{{.*}}, align 4
118// CHECK: store { i8*, i32, i32, i32 } {{.*}} align 4
119// CHECK: %[[mp:.*]] = load { i8*, i32, i32, i32 }* %{{.*}}, align 4
120// CHECK: %[[mp0:.*]] = extractvalue { i8*, i32, i32, i32 } %[[mp]], 0
121// CHECK: %[[cmp0:.*]] = icmp ne i8* %[[mp0]], null
122// CHECK: ret i1 %[[cmp0]]
123// CHECK: }
124}
125
126int loadDataMemberPointerVirtual(Virtual *o, int Virtual::*memptr) {
127 return o->*memptr;
128// Test that we can unpack this aggregate member pointer and load the member
129// data pointer.
130// CHECK: define i32 @"\01?loadDataMemberPointerVirtual@@YAHPAUVirtual@@PQ1@H@Z"{{.*}} {
131// CHECK: %[[o:.*]] = load %{{.*}}** %{{.*}}, align 4
Reid Kleckner49eef342013-04-11 19:01:17 +0000132// CHECK: %[[memptr:.*]] = load { i32, i32 }* %{{.*}}, align 4
Reid Klecknera3609b02013-04-11 18:13:19 +0000133// CHECK: %[[memptr0:.*]] = extractvalue { i32, i32 } %[[memptr:.*]], 0
134// CHECK: %[[memptr1:.*]] = extractvalue { i32, i32 } %[[memptr:.*]], 1
135// CHECK: %[[v6:.*]] = bitcast %{{.*}}* %[[o]] to i8*
136// CHECK: %[[vbptr:.*]] = getelementptr inbounds i8* %[[v6]], i32 0
137// CHECK: %[[vbptr_a:.*]] = bitcast i8* %[[vbptr]] to i8**
138// CHECK: %[[vbtable:.*]] = load i8** %[[vbptr_a:.*]]
139// CHECK: %[[v7:.*]] = getelementptr inbounds i8* %[[vbtable]], i32 %[[memptr1]]
140// CHECK: %[[v8:.*]] = bitcast i8* %[[v7]] to i32*
141// CHECK: %[[vbase_offs:.*]] = load i32* %[[v8]]
142// CHECK: %[[v10:.*]] = getelementptr inbounds i8* %[[vbptr]], i32 %[[vbase_offs]]
143// CHECK: %[[offset:.*]] = getelementptr inbounds i8* %[[v10]], i32 %[[memptr0]]
144// CHECK: %[[v11:.*]] = bitcast i8* %[[offset]] to i32*
145// CHECK: %[[v12:.*]] = load i32* %[[v11]]
146// CHECK: ret i32 %[[v12]]
147// CHECK: }
148}
149
150int loadDataMemberPointerUnspecified(Unspecified *o, int Unspecified::*memptr) {
151 return o->*memptr;
152// Test that we can unpack this aggregate member pointer and load the member
153// data pointer.
154// CHECK: define i32 @"\01?loadDataMemberPointerUnspecified@@YAHPAUUnspecified@@PQ1@H@Z"{{.*}} {
155// CHECK: %[[o:.*]] = load %{{.*}}** %{{.*}}, align 4
Reid Kleckner49eef342013-04-11 19:01:17 +0000156// CHECK: %[[memptr:.*]] = load { i32, i32, i32 }* %{{.*}}, align 4
Reid Klecknera3609b02013-04-11 18:13:19 +0000157// CHECK: %[[memptr0:.*]] = extractvalue { i32, i32, i32 } %[[memptr:.*]], 0
158// CHECK: %[[memptr1:.*]] = extractvalue { i32, i32, i32 } %[[memptr:.*]], 1
159// CHECK: %[[memptr2:.*]] = extractvalue { i32, i32, i32 } %[[memptr:.*]], 2
160// CHECK: %[[base:.*]] = bitcast %{{.*}}* %[[o]] to i8*
161// CHECK: %[[is_vbase:.*]] = icmp ne i32 %[[memptr2]], 0
162// CHECK: br i1 %[[is_vbase]], label %[[vadjust:.*]], label %[[skip:.*]]
163//
Reid Kleckner49eef342013-04-11 19:01:17 +0000164// CHECK: [[vadjust]]
Reid Klecknera3609b02013-04-11 18:13:19 +0000165// CHECK: %[[vbptr:.*]] = getelementptr inbounds i8* %[[base]], i32 %[[memptr1]]
166// CHECK: %[[vbptr_a:.*]] = bitcast i8* %[[vbptr]] to i8**
167// CHECK: %[[vbtable:.*]] = load i8** %[[vbptr_a:.*]]
168// CHECK: %[[v7:.*]] = getelementptr inbounds i8* %[[vbtable]], i32 %[[memptr2]]
169// CHECK: %[[v8:.*]] = bitcast i8* %[[v7]] to i32*
170// CHECK: %[[vbase_offs:.*]] = load i32* %[[v8]]
171// CHECK: %[[base_adj:.*]] = getelementptr inbounds i8* %[[vbptr]], i32 %[[vbase_offs]]
172//
Reid Kleckner49eef342013-04-11 19:01:17 +0000173// CHECK: [[skip]]
174// CHECK: %[[new_base:.*]] = phi i8* [ %[[base]], %{{.*}} ], [ %[[base_adj]], %[[vadjust]] ]
Reid Klecknera3609b02013-04-11 18:13:19 +0000175// CHECK: %[[offset:.*]] = getelementptr inbounds i8* %[[new_base]], i32 %[[memptr0]]
176// CHECK: %[[v11:.*]] = bitcast i8* %[[offset]] to i32*
177// CHECK: %[[v12:.*]] = load i32* %[[v11]]
178// CHECK: ret i32 %[[v12]]
179// CHECK: }
180}
181
182void callMemberPointerSingle(Single *o, void (Single::*memptr)()) {
183 (o->*memptr)();
184// Just look for an indirect thiscall.
185// CHECK: define void @"\01?callMemberPointerSingle@@{{.*}} #0 {
186// CHECK: call x86_thiscallcc void %{{.*}}(%{{.*}} %{{.*}})
187// CHECK: ret void
188// CHECK: }
189}
190
191void callMemberPointerMultiple(Multiple *o, void (Multiple::*memptr)()) {
192 (o->*memptr)();
193// CHECK: define void @"\01?callMemberPointerMultiple@@{{.*}} #0 {
194// CHECK: %[[memptr0:.*]] = extractvalue { i8*, i32 } %{{.*}}, 0
195// CHECK: %[[memptr1:.*]] = extractvalue { i8*, i32 } %{{.*}}, 1
196// CHECK: %[[this_adjusted:.*]] = getelementptr inbounds i8* %{{.*}}, i32 %[[memptr1]]
197// CHECK: %[[this:.*]] = bitcast i8* %[[this_adjusted]] to {{.*}}
198// CHECK: %[[fptr:.*]] = bitcast i8* %[[memptr0]] to {{.*}}
199// CHECK: call x86_thiscallcc void %[[fptr]](%{{.*}} %[[this]])
200// CHECK: ret void
201// CHECK: }
202}
203
204void callMemberPointerVirtualBase(Virtual *o, void (Virtual::*memptr)()) {
205 (o->*memptr)();
206// This shares a lot with virtual data member pointers.
207// CHECK: define void @"\01?callMemberPointerVirtualBase@@{{.*}} #0 {
208// CHECK: %[[memptr0:.*]] = extractvalue { i8*, i32, i32 } %{{.*}}, 0
209// CHECK: %[[memptr1:.*]] = extractvalue { i8*, i32, i32 } %{{.*}}, 1
210// CHECK: %[[memptr2:.*]] = extractvalue { i8*, i32, i32 } %{{.*}}, 2
211// CHECK: %[[vbptr:.*]] = getelementptr inbounds i8* %{{.*}}, i32 0
212// CHECK: %[[vbptr_a:.*]] = bitcast i8* %[[vbptr]] to i8**
213// CHECK: %[[vbtable:.*]] = load i8** %[[vbptr_a:.*]]
214// CHECK: %[[v7:.*]] = getelementptr inbounds i8* %[[vbtable]], i32 %[[memptr2]]
215// CHECK: %[[v8:.*]] = bitcast i8* %[[v7]] to i32*
216// CHECK: %[[vbase_offs:.*]] = load i32* %[[v8]]
217// CHECK: %[[v10:.*]] = getelementptr inbounds i8* %[[vbptr]], i32 %[[vbase_offs]]
218// CHECK: %[[this_adjusted:.*]] = getelementptr inbounds i8* %[[v10]], i32 %[[memptr1]]
219// CHECK: %[[fptr:.*]] = bitcast i8* %[[memptr0]] to void ({{.*}})
220// CHECK: %[[this:.*]] = bitcast i8* %[[this_adjusted]] to {{.*}}
221// CHECK: call x86_thiscallcc void %[[fptr]](%{{.*}} %[[this]])
222// CHECK: ret void
223// CHECK: }
224}
Reid Kleckner3d2f0002013-04-30 20:15:14 +0000225
226bool compareSingleFunctionMemptr(void (Single::*l)(), void (Single::*r)()) {
227 return l == r;
228// Should only be one comparison here.
229// CHECK: define zeroext i1 @"\01?compareSingleFunctionMemptr@@YA_NP8Single@@AEXXZ0@Z"{{.*}} {
230// CHECK-NOT: icmp
231// CHECK: %[[r:.*]] = icmp eq
232// CHECK-NOT: icmp
233// CHECK: ret i1 %[[r]]
234// CHECK: }
235}
236
237bool compareNeqSingleFunctionMemptr(void (Single::*l)(), void (Single::*r)()) {
238 return l != r;
239// Should only be one comparison here.
240// CHECK: define zeroext i1 @"\01?compareNeqSingleFunctionMemptr@@YA_NP8Single@@AEXXZ0@Z"{{.*}} {
241// CHECK-NOT: icmp
242// CHECK: %[[r:.*]] = icmp ne
243// CHECK-NOT: icmp
244// CHECK: ret i1 %[[r]]
245// CHECK: }
246}
247
248bool unspecFuncMemptrEq(void (Unspecified::*l)(), void (Unspecified::*r)()) {
249 return l == r;
250// CHECK: define zeroext i1 @"\01?unspecFuncMemptrEq@@YA_NP8Unspecified@@AEXXZ0@Z"{{.*}} {
251// CHECK: %[[lhs0:.*]] = extractvalue { i8*, i32, i32, i32 } %[[l:.*]], 0
252// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r:.*]], 0
253// CHECK: %[[cmp0:.*]] = icmp eq i8* %[[lhs0]], %{{.*}}
254// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 1
255// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 1
256// CHECK: %[[cmp1:.*]] = icmp eq i32
257// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 2
258// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 2
259// CHECK: %[[cmp2:.*]] = icmp eq i32
260// CHECK: %[[res12:.*]] = and i1 %[[cmp1]], %[[cmp2]]
261// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 3
262// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 3
263// CHECK: %[[cmp3:.*]] = icmp eq i32
264// CHECK: %[[res123:.*]] = and i1 %[[res12]], %[[cmp3]]
265// CHECK: %[[iszero:.*]] = icmp eq i8* %[[lhs0]], null
266// CHECK: %[[bits_or_null:.*]] = or i1 %[[res123]], %[[iszero]]
267// CHECK: %{{.*}} = and i1 %[[bits_or_null]], %[[cmp0]]
268// CHECK: ret i1 %{{.*}}
269// CHECK: }
270}
271
272bool unspecFuncMemptrNeq(void (Unspecified::*l)(), void (Unspecified::*r)()) {
273 return l != r;
274// CHECK: define zeroext i1 @"\01?unspecFuncMemptrNeq@@YA_NP8Unspecified@@AEXXZ0@Z"{{.*}} {
275// CHECK: %[[lhs0:.*]] = extractvalue { i8*, i32, i32, i32 } %[[l:.*]], 0
276// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r:.*]], 0
277// CHECK: %[[cmp0:.*]] = icmp ne i8* %[[lhs0]], %{{.*}}
278// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 1
279// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 1
280// CHECK: %[[cmp1:.*]] = icmp ne i32
281// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 2
282// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 2
283// CHECK: %[[cmp2:.*]] = icmp ne i32
284// CHECK: %[[res12:.*]] = or i1 %[[cmp1]], %[[cmp2]]
285// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[l]], 3
286// CHECK: %{{.*}} = extractvalue { i8*, i32, i32, i32 } %[[r]], 3
287// CHECK: %[[cmp3:.*]] = icmp ne i32
288// CHECK: %[[res123:.*]] = or i1 %[[res12]], %[[cmp3]]
289// CHECK: %[[iszero:.*]] = icmp ne i8* %[[lhs0]], null
290// CHECK: %[[bits_or_null:.*]] = and i1 %[[res123]], %[[iszero]]
291// CHECK: %{{.*}} = or i1 %[[bits_or_null]], %[[cmp0]]
292// CHECK: ret i1 %{{.*}}
293// CHECK: }
294}
295
296bool unspecDataMemptrEq(int Unspecified::*l, int Unspecified::*r) {
297 return l == r;
298// CHECK: define zeroext i1 @"\01?unspecDataMemptrEq@@YA_NPQUnspecified@@H0@Z"{{.*}} {
299// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 0
300// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 0
301// CHECK: icmp eq i32
302// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 1
303// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 1
304// CHECK: icmp eq i32
305// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 2
306// CHECK: extractvalue { i32, i32, i32 } %{{.*}}, 2
307// CHECK: icmp eq i32
308// CHECK: and i1
309// CHECK: and i1
310// CHECK: ret i1
311// CHECK: }
312}