gcc/libffi/testsuite/libffi.call/problem1.c
Andreas Jaeger 5196736e47 acinclude.m4: Add AC_FUNC_MMAP_BLACKLIST.
2003-11-21  Andreas Jaeger  <aj@suse.de>
	    Andreas Tobler  <a.tobler@schweiz.ch>

	* acinclude.m4: Add AC_FUNC_MMAP_BLACKLIST.
	* configure.in: Call AC_FUNC_MMAP_BLACKLIST.
	* Makefile.in: Rebuilt.
	* aclocal.m4: Likewise.
	* configure: Likewise.
	* fficonfig.h.in: Likewise.
	* testsuite/lib/libffi-dg.exp: Add include dir.
	* testsuite/libffi.call/ffitest.h: Add MMAP definitions.
	* testsuite/libffi.special/ffitestcxx.h: Likewise.
	* testsuite/libffi.call/closure_fn0.c: Use MMAP functionality
	for ffi_closure if available.
	* 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_12byte.c: Likewise.
	* testsuite/libffi.call/cls_16byte.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_5byte.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_double.c: Likewise.
	* testsuite/libffi.call/cls_float.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.

Co-Authored-By: Andreas Tobler <a.tobler@schweiz.ch>

From-SVN: r73800
2003-11-21 12:24:10 +01:00

98 lines
2.4 KiB
C

/* Area: ffi_call, closure_call
Purpose: Check structure passing with different structure size.
Limitations: none.
PR: none.
Originator: <andreast@gcc.gnu.org> 20030828 */
/* { dg-do run { xfail mips*-*-* arm*-*-* strongarm*-*-* xscale*-*-* } } */
#include "ffitest.h"
typedef struct my_ffi_struct {
double a;
double b;
double c;
} my_ffi_struct;
my_ffi_struct callee(struct my_ffi_struct a1, struct my_ffi_struct a2)
{
struct my_ffi_struct result;
result.a = a1.a + a2.a;
result.b = a1.b + a2.b;
result.c = a1.c + a2.c;
printf("%g %g %g %g %g %g: %g %g %g\n", a1.a, a1.b, a1.c,
a2.a, a2.b, a2.c, result.a, result.b, result.c);
return result;
}
void stub(ffi_cif* cif, void* resp, void** args, void* userdata)
{
struct my_ffi_struct a1;
struct my_ffi_struct a2;
a1 = *(struct my_ffi_struct*)(args[0]);
a2 = *(struct my_ffi_struct*)(args[1]);
*(my_ffi_struct *)resp = callee(a1, a2);
}
int main(void)
{
ffi_type* my_ffi_struct_fields[4];
ffi_type my_ffi_struct_type;
ffi_cif cif;
#ifndef USING_MMAP
static ffi_closure cl;
#endif
ffi_closure *pcl;
void* args[4];
ffi_type* arg_types[3];
#ifdef USING_MMAP
pcl = allocate_mmap (sizeof(ffi_closure));
#else
pcl = &cl;
#endif
struct my_ffi_struct g = { 1.0, 2.0, 3.0 };
struct my_ffi_struct f = { 1.0, 2.0, 3.0 };
struct my_ffi_struct res;
my_ffi_struct_type.size = 0;
my_ffi_struct_type.alignment = 0;
my_ffi_struct_type.type = FFI_TYPE_STRUCT;
my_ffi_struct_type.elements = my_ffi_struct_fields;
my_ffi_struct_fields[0] = &ffi_type_double;
my_ffi_struct_fields[1] = &ffi_type_double;
my_ffi_struct_fields[2] = &ffi_type_double;
my_ffi_struct_fields[3] = NULL;
arg_types[0] = &my_ffi_struct_type;
arg_types[1] = &my_ffi_struct_type;
arg_types[2] = NULL;
CHECK(ffi_prep_cif(&cif, FFI_DEFAULT_ABI, 2, &my_ffi_struct_type,
arg_types) == FFI_OK);
args[0] = &g;
args[1] = &f;
args[2] = NULL;
ffi_call(&cif, FFI_FN(callee), &res, args);
/* { dg-output "1 2 3 1 2 3: 2 4 6" } */
printf("res: %g %g %g\n", res.a, res.b, res.c);
/* { dg-output "\nres: 2 4 6" } */
CHECK(ffi_prep_closure(pcl, &cif, stub, NULL) == FFI_OK);
res = ((my_ffi_struct(*)(struct my_ffi_struct, struct my_ffi_struct))(pcl))(g, f);
/* { dg-output "\n1 2 3 1 2 3: 2 4 6" } */
printf("res: %g %g %g\n", res.a, res.b, res.c);
/* { dg-output "\nres: 2 4 6" } */
exit(0);;
}