4c5f37d568
2004-08-24 David Daney <daney@avtrex.com> * testsuite/libffi.call/closure_fn0.c: Xfail mips64* instead of mips*. * testsuite/libffi.call/closure_fn1.c: Likewise. * testsuite/libffi.call/closure_fn2.c Likewise. * testsuite/libffi.call/closure_fn3.c: Likewise. * testsuite/libffi.call/closure_fn4.c: Likewise. * testsuite/libffi.call/closure_fn5.c: Likewise. * testsuite/libffi.call/cls_18byte.c: Likewise. * testsuite/libffi.call/cls_19byte.c: Likewise. * testsuite/libffi.call/cls_1_1byte.c: Likewise. * testsuite/libffi.call/cls_20byte.c: Likewise. * testsuite/libffi.call/cls_20byte1.c: Likewise. * testsuite/libffi.call/cls_24byte.c: Likewise. * testsuite/libffi.call/cls_2byte.c: Likewise. * testsuite/libffi.call/cls_3_1byte.c: Likewise. * testsuite/libffi.call/cls_3byte1.c: Likewise. * testsuite/libffi.call/cls_3byte2.c: Likewise. * testsuite/libffi.call/cls_4_1byte.c: Likewise. * testsuite/libffi.call/cls_4byte.c: Likewise. * testsuite/libffi.call/cls_64byte.c: Likewise. * testsuite/libffi.call/cls_6byte.c: Likewise. * testsuite/libffi.call/cls_7byte.c: Likewise. * testsuite/libffi.call/cls_8byte.c: Likewise. * testsuite/libffi.call/cls_9byte1.c: Likewise. * testsuite/libffi.call/cls_9byte2.c: Likewise. * testsuite/libffi.call/cls_align_double.c: Likewise. * testsuite/libffi.call/cls_align_float.c: Likewise. * testsuite/libffi.call/cls_align_longdouble.c: Likewise. * testsuite/libffi.call/cls_align_pointer.c: Likewise. * testsuite/libffi.call/cls_align_sint16.c: Likewise. * testsuite/libffi.call/cls_align_sint32.c: Likewise. * testsuite/libffi.call/cls_align_sint64.c: Likewise. * testsuite/libffi.call/cls_align_uint16.c: Likewise. * testsuite/libffi.call/cls_align_uint32.c: Likewise. * testsuite/libffi.call/cls_align_uint64.c: Likewise. * testsuite/libffi.call/cls_double.c: Likewise. * testsuite/libffi.call/cls_float.c: Likewise. * testsuite/libffi.call/cls_multi_schar.c: Likewise. * testsuite/libffi.call/cls_multi_sshort.c: Likewise. * testsuite/libffi.call/cls_multi_sshortchar.c: Likewise. * testsuite/libffi.call/cls_multi_uchar.c: Likewise. * testsuite/libffi.call/cls_multi_ushort.c: Likewise. * testsuite/libffi.call/cls_multi_ushortchar.c: Likewise. * testsuite/libffi.call/cls_schar.c: Likewise. * testsuite/libffi.call/cls_sint.c: Likewise. * testsuite/libffi.call/cls_sshort.c: Likewise. * testsuite/libffi.call/cls_uchar.c: Likewise. * testsuite/libffi.call/cls_uint.c: Likewise. * testsuite/libffi.call/cls_ulonglong.c: Likewise. * testsuite/libffi.call/cls_ushort.c: Likewise. * testsuite/libffi.call/nested_struct.c: Likewise. * testsuite/libffi.call/nested_struct1.c: Likewise. * testsuite/libffi.call/nested_struct2.c: Likewise. * testsuite/libffi.call/nested_struct3.c: Likewise. * testsuite/libffi.call/problem1.c: Likewise. * testsuite/libffi.special/unwindtest.cc: Likewise. * testsuite/libffi.call/cls_12byte.c: Likewise and set return value to zero. * testsuite/libffi.call/cls_16byte.c: Likewise. * testsuite/libffi.call/cls_5byte.c: Likewise. From-SVN: r86534
128 lines
3.0 KiB
C
128 lines
3.0 KiB
C
/* Area: ffi_call, closure_call
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Purpose: Check structure passing with different structure size.
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Contains structs as parameter of the struct itself.
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Sample taken from Alan Modras patch to src/prep_cif.c.
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Limitations: none.
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PR: none.
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Originator: <andreast@gcc.gnu.org> 20030911 */
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/* { dg-do run { xfail mips64*-*-* arm*-*-* strongarm*-*-* xscale*-*-* } } */
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#include "ffitest.h"
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#if LONG_MAX == 2147483647
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#define ffi_type_mylong ffi_type_uint32
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#else
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#if LONG_MAX == 9223372036854775807
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#define ffi_type_mylong ffi_type_uint64
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#else
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#error "Error, size LONG not defined as expected"
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#endif
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#endif
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typedef struct A {
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unsigned long a;
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unsigned char b;
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} A;
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typedef struct B {
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struct A x;
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unsigned char y;
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} B;
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B B_fn(struct A b0, struct B b1)
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{
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struct B result;
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result.x.a = b0.a + b1.x.a;
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result.x.b = b0.b + b1.x.b + b1.y;
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result.y = b0.b + b1.x.b;
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printf("%d %d %d %d %d: %d %d %d\n", b0.a, b0.b, b1.x.a, b1.x.b, b1.y,
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result.x.a, result.x.b, result.y);
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return result;
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}
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static void
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B_gn(ffi_cif* cif, void* resp, void** args, void* userdata)
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{
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struct A b0;
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struct B b1;
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b0 = *(struct A*)(args[0]);
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b1 = *(struct B*)(args[1]);
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*(B*)resp = B_fn(b0, b1);
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}
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int main (void)
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{
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ffi_cif cif;
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#ifndef USING_MMAP
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static ffi_closure cl;
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#endif
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ffi_closure *pcl;
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void* args_dbl[3];
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ffi_type* cls_struct_fields[3];
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ffi_type* cls_struct_fields1[3];
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ffi_type cls_struct_type, cls_struct_type1;
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ffi_type* dbl_arg_types[3];
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#ifdef USING_MMAP
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pcl = allocate_mmap (sizeof(ffi_closure));
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#else
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pcl = &cl;
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#endif
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cls_struct_type.size = 0;
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cls_struct_type.alignment = 0;
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cls_struct_type.type = FFI_TYPE_STRUCT;
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cls_struct_type.elements = cls_struct_fields;
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cls_struct_type1.size = 0;
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cls_struct_type1.alignment = 0;
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cls_struct_type1.type = FFI_TYPE_STRUCT;
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cls_struct_type1.elements = cls_struct_fields1;
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struct A e_dbl = { 1, 7};
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struct B f_dbl = {{12 , 127}, 99};
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struct B res_dbl;
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cls_struct_fields[0] = &ffi_type_mylong;
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cls_struct_fields[1] = &ffi_type_uchar;
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cls_struct_fields[2] = NULL;
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cls_struct_fields1[0] = &cls_struct_type;
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cls_struct_fields1[1] = &ffi_type_uchar;
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cls_struct_fields1[2] = NULL;
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dbl_arg_types[0] = &cls_struct_type;
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dbl_arg_types[1] = &cls_struct_type1;
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dbl_arg_types[2] = NULL;
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CHECK(ffi_prep_cif(&cif, FFI_DEFAULT_ABI, 2, &cls_struct_type1,
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dbl_arg_types) == FFI_OK);
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args_dbl[0] = &e_dbl;
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args_dbl[1] = &f_dbl;
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args_dbl[2] = NULL;
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ffi_call(&cif, FFI_FN(B_fn), &res_dbl, args_dbl);
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/* { dg-output "1 7 12 127 99: 13 233 134" } */
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CHECK( res_dbl.x.a == (e_dbl.a + f_dbl.x.a));
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CHECK( res_dbl.x.b == (e_dbl.b + f_dbl.x.b + f_dbl.y));
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CHECK( res_dbl.y == (e_dbl.b + f_dbl.x.b));
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CHECK(ffi_prep_closure(pcl, &cif, B_gn, NULL) == FFI_OK);
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res_dbl = ((B(*)(A, B))(pcl))(e_dbl, f_dbl);
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/* { dg-output "\n1 7 12 127 99: 13 233 134" } */
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CHECK( res_dbl.x.a == (e_dbl.a + f_dbl.x.a));
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CHECK( res_dbl.x.b == (e_dbl.b + f_dbl.x.b + f_dbl.y));
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CHECK( res_dbl.y == (e_dbl.b + f_dbl.x.b));
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exit(0);
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}
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