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900210_03.c
// g++ 1.36.1 bug 900210_03
// g++ allows void* type values to be assigned to variables of other
// pointer types. According to the C++ Reference Manual, this is illegal.
// Cfront 2.0 passes this
900519_05.c
// g++ 1.37.1 bug 900519_05
// g++ fails to allow the use of function-reference types.
// cfront 2.0 passes this test.
// keywords: function types, reference types
typedef void (func_type) (int, i
900519_13.c
// g++ 1.37.1 bug 900519_13
// If multiple inheritance creates a situation in which a given name is
// inherited from more than one base class, and if the inherited declarations
// for the name are f
900403_01.c
// g++ 1.37.1 bug 900403_01
// g++ allows casts to be treated as lvalues (even when the -pedantic
// option is used). Neither the C++ Reference Manual nor cfront 2.0
// allow this. (gcc gives warni
900210_07.c
// g++ 1.36.1 bug 900210_07
// g++ allows values of pointer-to-signed types to be assigned to variables
// of pointer-to-unsigned types, and vise versa.
// Cfront 2.0 passes this test.
// keyowrds:
900520_06.c
// g++ 1.37.1 bug 900520_06
// When an object of a class type is passed into a formal parameter of the
// same class type (in a function call) the language definition calls for
// this action to be t
900211_03.c
// g++ 1.36.1 bug 900211_03
// The following erroneous code causes g++ to segfault.
// Cfront 2.0 passes this test.
// keywords: segfault, operator new, arrays, undeclared, array bound
void functi
900119_01.c
// g++ 1.36.1 bug 900119_01
// g++ allows initializers to be included in the declaration of members
// of classes, structs, unions (even when -pedantic is used).
// This is not allowed by the C++ 2.
900210_02.c
// g++ 1.36.1 bug 900210_02
// g++ allows integral type values to be assigned to variables of pointer
// types. According to the C++ Reference Manual, this is illegal.
// Cfront 2.0 passes this tes
900520_02.c
// g++ 1.37.1 bug 900520_02
// keywords: reference types, initialization, parameter passing
typedef int b_array[3];
typedef int u_array[];
typedef b_array &b_array_ref;
typedef u_array &u_array_ref