head	1.1;
branch	1.1.1;
access;
symbols
	netbsd-11-0-RC4:1.1.1.5
	netbsd-11-0-RC3:1.1.1.5
	netbsd-11-0-RC2:1.1.1.5
	netbsd-11-0-RC1:1.1.1.5
	perseant-exfatfs-base-20250801:1.1.1.5
	netbsd-11:1.1.1.5.0.10
	netbsd-11-base:1.1.1.5
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	pgoyette-compat-0930:1.1.1.4
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	pgoyette-localcount-20170320:1.1.1.3
	netbsd-7-1:1.1.1.1.2.2.0.6
	netbsd-7-1-RELEASE:1.1.1.1.2.2
	netbsd-7-1-RC2:1.1.1.1.2.2
	clang-294123:1.1.1.3
	netbsd-7-nhusb-base-20170116:1.1.1.1.2.2
	bouyer-socketcan:1.1.1.3.0.2
	bouyer-socketcan-base:1.1.1.3
	clang-291444:1.1.1.3
	pgoyette-localcount-20170107:1.1.1.2
	netbsd-7-1-RC1:1.1.1.1.2.2
	pgoyette-localcount-20161104:1.1.1.2
	netbsd-7-0-2-RELEASE:1.1.1.1.2.2
	localcount-20160914:1.1.1.2
	netbsd-7-nhusb:1.1.1.1.2.2.0.4
	netbsd-7-nhusb-base:1.1.1.1.2.2
	clang-280599:1.1.1.2
	pgoyette-localcount-20160806:1.1.1.2
	pgoyette-localcount-20160726:1.1.1.2
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	pgoyette-localcount-base:1.1.1.2
	netbsd-7-0-1-RELEASE:1.1.1.1.2.2
	clang-261930:1.1.1.2
	netbsd-7-0:1.1.1.1.2.2.0.2
	netbsd-7-0-RELEASE:1.1.1.1.2.2
	netbsd-7-0-RC3:1.1.1.1.2.2
	netbsd-7-0-RC2:1.1.1.1.2.2
	netbsd-7-0-RC1:1.1.1.1.2.2
	netbsd-7:1.1.1.1.0.2
	clang-237755:1.1.1.1
	clang-232565:1.1.1.1
	clang-227398:1.1.1.1
	LLVM:1.1.1;
locks; strict;
comment	@// @;


1.1
date	2015.01.29.19.57.35;	author joerg;	state Exp;
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1.1.1.2
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1.1.1.3
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1.1.1.5
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1.1.1.3.12.1
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1.1.1.3.14.1
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1.1.1.3.14.2
date	2020.04.13.07.50.11;	author martin;	state dead;
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desc
@@


1.1
log
@Initial revision
@
text
@// RUN: %clang_cc1 -verify -fopenmp=libiomp5 %s

namespace X {
  int x;
};

struct B {
  static int ib; // expected-note {{'B::ib' declared here}}
  static int bfoo() { return 8; }
};

int bfoo() { return 4; }

int z;
const int C1 = 1;
const int C2 = 2;
void test_linear_colons()
{
  int B = 0;
  #pragma omp for simd linear(B:bfoo())
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{unexpected ':' in nested name specifier; did you mean '::'}}
  #pragma omp for simd linear(B::ib:B:bfoo())
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{use of undeclared identifier 'ib'; did you mean 'B::ib'}}
  #pragma omp for simd linear(B:ib)
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{unexpected ':' in nested name specifier; did you mean '::'?}}
  #pragma omp for simd linear(z:B:ib)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B:B::bfoo())
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(X::x : ::z)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B,::z, X::x)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(::z)
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{expected variable name}}
  #pragma omp for simd linear(B::bfoo())
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B::ib,B:C1+C2)
  for (int i = 0; i < 10; ++i) ;
}

template<int L, class T, class N> T test_template(T* arr, N num) {
  N i;
  T sum = (T)0;
  T ind2 = - num * L; // expected-note {{'ind2' defined here}}
  // expected-error@@+1 {{argument of a linear clause should be of integral or pointer type}}
#pragma omp for simd linear(ind2:L)
  for (i = 0; i < num; ++i) {
    T cur = arr[(int)ind2];
    ind2 += L;
    sum += cur;
  }
  return T();
}

template<int LEN> int test_warn() {
  int ind2 = 0;
  // expected-warning@@+1 {{zero linear step (ind2 should probably be const)}}
  #pragma omp for simd linear(ind2:LEN)
  for (int i = 0; i < 100; i++) {
    ind2 += LEN;
  }
  return ind2;
}

struct S1; // expected-note 2 {{declared here}} expected-note 2 {{forward declaration of 'S1'}}
extern S1 a;
class S2 {
  mutable int a;
public:
  S2():a(0) { }
};
const S2 b; // expected-note 2 {{'b' defined here}}
const S2 ba[5];
class S3 {
  int a;
public:
  S3():a(0) { }
};
const S3 ca[5];
class S4 {
  int a;
  S4();
public:
  S4(int v):a(v) { }
};
class S5 {
  int a;
  S5():a(0) {}
public:
  S5(int v):a(v) { }
};

S3 h;
#pragma omp threadprivate(h) // expected-note 2 {{defined as threadprivate or thread local}}

template<class I, class C> int foomain(I argc, C **argv) {
  I e(4);
  I g(5);
  int i;
  int &j = i; // expected-note {{'j' defined here}}
  #pragma omp for simd linear // expected-error {{expected '(' after 'linear'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear ( // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear () // expected-error {{expected expression}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc // expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc, // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc > 0 ? argv[1] : argv[2]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc : 5)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (S1) // expected-error {{'S1' does not refer to a value}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{linear variable with incomplete type 'S1'}}
  // expected-error@@+1 {{const-qualified variable cannot be linear}}
  #pragma omp for simd linear (a, b:B::ib)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argv[1]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(e, g)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(h) // expected-error {{threadprivate or thread local variable cannot be linear}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp parallel
  {
    int v = 0;
    int i;
    #pragma omp for simd linear(v:i)
    for (int k = 0; k < argc; ++k) { i = k; v += i; }
  }
  #pragma omp for simd linear(j) // expected-error {{arguments of OpenMP clause 'linear' cannot be of reference type}}
  for (int k = 0; k < argc; ++k) ++k;
  int v = 0;
  #pragma omp for simd linear(v:j)
  for (int k = 0; k < argc; ++k) { ++k; v += j; }
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;
  return 0;
}

int main(int argc, char **argv) {
  double darr[100];
  // expected-note@@+1 {{in instantiation of function template specialization 'test_template<-4, double, int>' requested here}}
  test_template<-4>(darr, 4);
  // expected-note@@+1 {{in instantiation of function template specialization 'test_warn<0>' requested here}}
  test_warn<0>();

  S4 e(4); // expected-note {{'e' defined here}}
  S5 g(5); // expected-note {{'g' defined here}}
  int i;
  int &j = i; // expected-note {{'j' defined here}}
  #pragma omp for simd linear // expected-error {{expected '(' after 'linear'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear ( // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear () // expected-error {{expected expression}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc // expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc, // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc > 0 ? argv[1] : argv[2]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (S1) // expected-error {{'S1' does not refer to a value}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{linear variable with incomplete type 'S1'}}
  // expected-error@@+1 {{const-qualified variable cannot be linear}}
  #pragma omp for simd linear (a, b) 
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argv[1]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{argument of a linear clause should be of integral or pointer type, not 'S4'}}
  // expected-error@@+1 {{argument of a linear clause should be of integral or pointer type, not 'S5'}}
  #pragma omp for simd linear(e, g)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(h) // expected-error {{threadprivate or thread local variable cannot be linear}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp parallel
  {
    int i;
    #pragma omp for simd linear(i)
    for (int k = 0; k < argc; ++k) ++k;
    #pragma omp for simd linear(i : 4)
    for (int k = 0; k < argc; ++k) { ++k; i += 4; }
  }
  #pragma omp for simd linear(j) // expected-error {{arguments of OpenMP clause 'linear' cannot be of reference type 'int &'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;

  foomain<int,char>(argc,argv);
  return 0;
}

@


1.1.1.1
log
@Import Clang 3.6RC1 r227398.
@
text
@@


1.1.1.2
log
@Import Clang 3.8.0rc3 r261930.
@
text
@d1 1
a1 1
// RUN: %clang_cc1 -verify -fopenmp %s
d105 1
a105 1
  int &j = i;
d141 1
a141 1
  #pragma omp for simd linear(j)
a150 8
namespace A {
double x;
#pragma omp threadprivate(x) // expected-note {{defined as threadprivate or thread local}}
}
namespace C {
using A::x;
}

d161 1
a161 1
  int &j = i;
d188 1
a188 1
  #pragma omp for simd linear(h, C::x) // expected-error 2 {{threadprivate or thread local variable cannot be linear}}
d198 1
a198 1
  #pragma omp for simd linear(j)
@


1.1.1.2.2.1
log
@Sync with HEAD
@
text
@d211 1
a211 1
  foomain<int,char>(argc,argv); // expected-note {{in instantiation of function template specialization 'foomain<int, char>' requested here}}
@


1.1.1.3
log
@Import Clang pre-4.0.0 r291444.
@
text
@d211 1
a211 1
  foomain<int,char>(argc,argv); // expected-note {{in instantiation of function template specialization 'foomain<int, char>' requested here}}
@


1.1.1.3.14.1
log
@Sync with HEAD
@
text
@a2 2
// RUN: %clang_cc1 -verify -fopenmp-simd %s

@


1.1.1.3.14.2
log
@Mostly merge changes from HEAD upto 20200411
@
text
@@


1.1.1.3.12.1
log
@Sync with HEAD
@
text
@a2 2
// RUN: %clang_cc1 -verify -fopenmp-simd %s

@


1.1.1.4
log
@Import clang r337282 from trunk
@
text
@a2 2
// RUN: %clang_cc1 -verify -fopenmp-simd %s

@


1.1.1.5
log
@Mark old LLVM instance as dead.
@
text
@@


1.1.1.1.2.1
log
@file for_simd_linear_messages.cpp was added on branch netbsd-7 on 2015-06-04 20:04:43 +0000
@
text
@d1 206
@


1.1.1.1.2.2
log
@Update LLVM to 3.6.1, requested by joerg in ticket 824.
@
text
@a0 206
// RUN: %clang_cc1 -verify -fopenmp=libiomp5 %s

namespace X {
  int x;
};

struct B {
  static int ib; // expected-note {{'B::ib' declared here}}
  static int bfoo() { return 8; }
};

int bfoo() { return 4; }

int z;
const int C1 = 1;
const int C2 = 2;
void test_linear_colons()
{
  int B = 0;
  #pragma omp for simd linear(B:bfoo())
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{unexpected ':' in nested name specifier; did you mean '::'}}
  #pragma omp for simd linear(B::ib:B:bfoo())
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{use of undeclared identifier 'ib'; did you mean 'B::ib'}}
  #pragma omp for simd linear(B:ib)
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{unexpected ':' in nested name specifier; did you mean '::'?}}
  #pragma omp for simd linear(z:B:ib)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B:B::bfoo())
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(X::x : ::z)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B,::z, X::x)
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(::z)
  for (int i = 0; i < 10; ++i) ;
  // expected-error@@+1 {{expected variable name}}
  #pragma omp for simd linear(B::bfoo())
  for (int i = 0; i < 10; ++i) ;
  #pragma omp for simd linear(B::ib,B:C1+C2)
  for (int i = 0; i < 10; ++i) ;
}

template<int L, class T, class N> T test_template(T* arr, N num) {
  N i;
  T sum = (T)0;
  T ind2 = - num * L; // expected-note {{'ind2' defined here}}
  // expected-error@@+1 {{argument of a linear clause should be of integral or pointer type}}
#pragma omp for simd linear(ind2:L)
  for (i = 0; i < num; ++i) {
    T cur = arr[(int)ind2];
    ind2 += L;
    sum += cur;
  }
  return T();
}

template<int LEN> int test_warn() {
  int ind2 = 0;
  // expected-warning@@+1 {{zero linear step (ind2 should probably be const)}}
  #pragma omp for simd linear(ind2:LEN)
  for (int i = 0; i < 100; i++) {
    ind2 += LEN;
  }
  return ind2;
}

struct S1; // expected-note 2 {{declared here}} expected-note 2 {{forward declaration of 'S1'}}
extern S1 a;
class S2 {
  mutable int a;
public:
  S2():a(0) { }
};
const S2 b; // expected-note 2 {{'b' defined here}}
const S2 ba[5];
class S3 {
  int a;
public:
  S3():a(0) { }
};
const S3 ca[5];
class S4 {
  int a;
  S4();
public:
  S4(int v):a(v) { }
};
class S5 {
  int a;
  S5():a(0) {}
public:
  S5(int v):a(v) { }
};

S3 h;
#pragma omp threadprivate(h) // expected-note 2 {{defined as threadprivate or thread local}}

template<class I, class C> int foomain(I argc, C **argv) {
  I e(4);
  I g(5);
  int i;
  int &j = i; // expected-note {{'j' defined here}}
  #pragma omp for simd linear // expected-error {{expected '(' after 'linear'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear ( // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear () // expected-error {{expected expression}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc // expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc, // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc > 0 ? argv[1] : argv[2]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc : 5)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (S1) // expected-error {{'S1' does not refer to a value}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{linear variable with incomplete type 'S1'}}
  // expected-error@@+1 {{const-qualified variable cannot be linear}}
  #pragma omp for simd linear (a, b:B::ib)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argv[1]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(e, g)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(h) // expected-error {{threadprivate or thread local variable cannot be linear}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp parallel
  {
    int v = 0;
    int i;
    #pragma omp for simd linear(v:i)
    for (int k = 0; k < argc; ++k) { i = k; v += i; }
  }
  #pragma omp for simd linear(j) // expected-error {{arguments of OpenMP clause 'linear' cannot be of reference type}}
  for (int k = 0; k < argc; ++k) ++k;
  int v = 0;
  #pragma omp for simd linear(v:j)
  for (int k = 0; k < argc; ++k) { ++k; v += j; }
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;
  return 0;
}

int main(int argc, char **argv) {
  double darr[100];
  // expected-note@@+1 {{in instantiation of function template specialization 'test_template<-4, double, int>' requested here}}
  test_template<-4>(darr, 4);
  // expected-note@@+1 {{in instantiation of function template specialization 'test_warn<0>' requested here}}
  test_warn<0>();

  S4 e(4); // expected-note {{'e' defined here}}
  S5 g(5); // expected-note {{'g' defined here}}
  int i;
  int &j = i; // expected-note {{'j' defined here}}
  #pragma omp for simd linear // expected-error {{expected '(' after 'linear'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear ( // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear () // expected-error {{expected expression}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc // expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc, // expected-error {{expected expression}} expected-error {{expected ')'}} expected-note {{to match this '('}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc > 0 ? argv[1] : argv[2]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argc)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (S1) // expected-error {{'S1' does not refer to a value}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{linear variable with incomplete type 'S1'}}
  // expected-error@@+1 {{const-qualified variable cannot be linear}}
  #pragma omp for simd linear (a, b) 
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear (argv[1]) // expected-error {{expected variable name}}
  for (int k = 0; k < argc; ++k) ++k;
  // expected-error@@+2 {{argument of a linear clause should be of integral or pointer type, not 'S4'}}
  // expected-error@@+1 {{argument of a linear clause should be of integral or pointer type, not 'S5'}}
  #pragma omp for simd linear(e, g)
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(h) // expected-error {{threadprivate or thread local variable cannot be linear}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp parallel
  {
    int i;
    #pragma omp for simd linear(i)
    for (int k = 0; k < argc; ++k) ++k;
    #pragma omp for simd linear(i : 4)
    for (int k = 0; k < argc; ++k) { ++k; i += 4; }
  }
  #pragma omp for simd linear(j) // expected-error {{arguments of OpenMP clause 'linear' cannot be of reference type 'int &'}}
  for (int k = 0; k < argc; ++k) ++k;
  #pragma omp for simd linear(i)
  for (int k = 0; k < argc; ++k) ++k;

  foomain<int,char>(argc,argv);
  return 0;
}

@


