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Because references must be initialized using some evaluated expression, they must point to something, and a callee can assume the reference parameter is dereferenceable. Taking advantage of a new attribute just added to LLVM, mark them as such. Because dereferenceability in addrspace(0) implies nonnull in the backend, we don't need both attributes. However, we need to know the size of the object to use the dereferenceable attribute, so for incomplete types we still emit only nonnull. llvm-svn: 213386
194 lines
4.7 KiB
C++
194 lines
4.7 KiB
C++
// RUN: %clang_cc1 -triple x86_64-apple-darwin -emit-llvm -o - %s | FileCheck %s
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extern "C" int printf(...);
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int init = 100;
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struct M {
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int iM;
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M() : iM(init++) {}
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};
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struct N {
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int iN;
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N() : iN(200) {}
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N(N const & arg){this->iN = arg.iN; }
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};
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struct P {
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int iP;
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P() : iP(init++) {}
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};
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// CHECK-LABEL: define linkonce_odr void @_ZN1XC1ERKS_(%struct.X* %this, %struct.X* dereferenceable({{[0-9]+}})) unnamed_addr
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struct X : M, N, P { // ...
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X() : f1(1.0), d1(2.0), i1(3), name("HELLO"), bf1(0xff), bf2(0xabcd),
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au_i1(1234), au1_4("MASKED") {}
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P p0;
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void pr() {
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printf("iM = %d iN = %d, m1.iM = %d\n", iM, iN, m1.iM);
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printf("im = %d p0.iP = %d, p1.iP = %d\n", iP, p0.iP, p1.iP);
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printf("f1 = %f d1 = %f i1 = %d name(%s) \n", f1, d1, i1, name);
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printf("bf1 = %x bf2 = %x\n", bf1, bf2);
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printf("au_i2 = %d\n", au_i2);
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printf("au1_1 = %s\n", au1_1);
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}
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M m1;
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P p1;
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float f1;
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double d1;
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int i1;
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const char *name;
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unsigned bf1 : 8;
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unsigned bf2 : 16;
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int arr[2];
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_Complex float complex;
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union {
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int au_i1;
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int au_i2;
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};
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union {
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const char * au1_1;
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float au1_2;
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int au1_3;
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const char * au1_4;
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};
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};
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static int ix = 1;
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// class with user-defined copy constructor.
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struct S {
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S() : iS(ix++) { }
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S(const S& arg) { *this = arg; }
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int iS;
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};
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// class with trivial copy constructor.
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struct I {
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I() : iI(ix++) { }
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int iI;
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};
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struct XM {
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XM() { }
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double dXM;
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S ARR_S[3][4][2];
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void pr() {
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for (unsigned i = 0; i < 3; i++)
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for (unsigned j = 0; j < 4; j++)
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for (unsigned k = 0; k < 2; k++)
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printf("ARR_S[%d][%d][%d] = %d\n", i,j,k, ARR_S[i][j][k].iS);
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for (unsigned i = 0; i < 3; i++)
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for (unsigned k = 0; k < 2; k++)
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printf("ARR_I[%d][%d] = %d\n", i,k, ARR_I[i][k].iI);
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}
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I ARR_I[3][2];
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};
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int main() {
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X a;
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X b(a);
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b.pr();
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X x;
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X c(x);
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c.pr();
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XM m0;
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XM m1 = m0;
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m1.pr();
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}
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struct A {
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};
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struct B : A {
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A &a;
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};
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void f(const B &b1) {
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B b2(b1);
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}
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// PR6628
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namespace PR6628 {
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struct T {
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T();
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~T();
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double d;
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};
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struct A {
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A(const A &other, const T &t = T(), const T& t2 = T());
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};
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struct B : A {
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A a1;
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A a2;
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A a[10];
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};
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// Force the copy constructor to be synthesized.
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void f(B b1) {
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B b2 = b1;
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}
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// CHECK: define linkonce_odr dereferenceable({{[0-9]+}}) [[A:%.*]]* @_ZN12rdar138169401AaSERKS0_(
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// CHECK: [[THIS:%.*]] = load [[A]]**
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// CHECK-NEXT: [[T0:%.*]] = getelementptr inbounds [[A]]* [[THIS]], i32 0, i32 1
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// CHECK-NEXT: [[OTHER:%.*]] = load [[A]]**
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// CHECK-NEXT: [[T2:%.*]] = getelementptr inbounds [[A]]* [[OTHER]], i32 0, i32 1
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// CHECK-NEXT: [[T4:%.*]] = bitcast i16* [[T0]] to i8*
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// CHECK-NEXT: [[T5:%.*]] = bitcast i16* [[T2]] to i8*
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// CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[T4]], i8* [[T5]], i64 8, i32 8, i1 false)
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// CHECK-NEXT: ret [[A]]* [[THIS]]
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// CHECK-LABEL: define linkonce_odr void @_ZN12rdar138169401AC2ERKS0_(
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// CHECK: [[THIS:%.*]] = load [[A]]**
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// CHECK-NEXT: [[T0:%.*]] = bitcast [[A]]* [[THIS]] to i8***
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// CHECK-NEXT: store i8** getelementptr inbounds ([4 x i8*]* @_ZTVN12rdar138169401AE, i64 0, i64 2), i8*** [[T0]]
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// CHECK-NEXT: [[T0:%.*]] = getelementptr inbounds [[A]]* [[THIS]], i32 0, i32 1
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// CHECK-NEXT: [[OTHER:%.*]] = load [[A]]**
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// CHECK-NEXT: [[T2:%.*]] = getelementptr inbounds [[A]]* [[OTHER]], i32 0, i32 1
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// CHECK-NEXT: [[T4:%.*]] = bitcast i16* [[T0]] to i8*
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// CHECK-NEXT: [[T5:%.*]] = bitcast i16* [[T2]] to i8*
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// CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i64(i8* [[T4]], i8* [[T5]], i64 8, i32 8, i1 false)
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// CHECK-NEXT: ret void
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// CHECK-LABEL: define linkonce_odr void @_ZN6PR66281BC2ERKS0_(%"struct.PR6628::B"* %this, %"struct.PR6628::B"* dereferenceable({{[0-9]+}})) unnamed_addr
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281AC2ERKS0_RKNS_1TES5_
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// CHECK: call void @_ZN6PR66281TD1Ev
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// CHECK: call void @_ZN6PR66281TD1Ev
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281AC1ERKS0_RKNS_1TES5_
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// CHECK: call void @_ZN6PR66281TD1Ev
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// CHECK: call void @_ZN6PR66281TD1Ev
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281TC1Ev
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// CHECK: call void @_ZN6PR66281AC1ERKS0_RKNS_1TES5_
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// CHECK: call void @_ZN6PR66281TD1Ev
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// CHECK: call void @_ZN6PR66281TD1Ev
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}
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// rdar://13816940
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// Test above because things get weirdly re-ordered.
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namespace rdar13816940 {
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struct A {
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virtual ~A();
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unsigned short a : 1;
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unsigned short : 15;
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unsigned other;
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};
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void test(A &a) {
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A x = a; // force copy constructor into existence
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x = a; // also force the copy assignment operator
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}
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}
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