gcc/libffi/testsuite/libffi.call/cls_multi_uchar.c
Andreas Tobler d18c338615 re PR libffi/13221 (libffi's closure couldn't pass sequence of char and/or short arguments.)
2003-12-01  Andreas Tobler  <a.tobler@schweiz.ch>

	PR other/13221
	* testsuite/libffi.call/cls_multi_sshort.c: New test case.
	* testsuite/libffi.call/cls_multi_sshortchar.c: Likewise.
	* testsuite/libffi.call/cls_multi_uchar.c: Likewise.
	* testsuite/libffi.call/cls_multi_schar.c: Likewise.
	* testsuite/libffi.call/cls_multi_ushortchar.c: Likewise.
	* testsuite/libffi.call/cls_multi_ushort.c: Likewise.

	* testsuite/libffi.special/unwindtest.cc: Cosmetics.

From-SVN: r74093
2003-12-01 08:23:28 +01:00

97 lines
2.3 KiB
C

/* Area: ffi_call, closure_call
Purpose: Check passing of multiple unsigned char values.
Limitations: none.
PR: PR13221.
Originator: <andreast@gcc.gnu.org> 20031129 */
/* { dg-do run { xfail mips*-*-* arm*-*-* strongarm*-*-* xscale*-*-* } } */
#include "ffitest.h"
unsigned char test_func_fn(unsigned char a1, unsigned char a2,
unsigned char a3, unsigned char a4)
{
unsigned char result;
result = a1 + a2 + a3 + a4;
printf("%d %d %d %d: %d\n", a1, a2, a3, a4, result);
return result;
}
static void test_func_gn(ffi_cif *cif, void *rval, void **avals, void *data)
{
unsigned char a1, a2, a3, a4;
a1 = *(unsigned char *)avals[0];
a2 = *(unsigned char *)avals[1];
a3 = *(unsigned char *)avals[2];
a4 = *(unsigned char *)avals[3];
*(ffi_arg *)rval = test_func_fn(a1, a2, a3, a4);
}
typedef unsigned char (*test_type)(unsigned char, unsigned char,
unsigned char, unsigned char);
void test_func(ffi_cif *cif, void *rval, void **avals, void *data)
{
printf("%d %d %d %d\n", *(unsigned char *)avals[0],
*(unsigned char *)avals[1], *(unsigned char *)avals[2],
*(unsigned char *)avals[3]);
}
int main (void)
{
ffi_cif cif;
#ifndef USING_MMAP
static ffi_closure cl;
#endif
ffi_closure *pcl;
void * args_dbl[5];
ffi_type * cl_arg_types[5];
ffi_arg res_call;
unsigned char a, b, c, d, res_closure;
#ifdef USING_MMAP
pcl = allocate_mmap (sizeof(ffi_closure));
#else
pcl = &cl;
#endif
a = 1;
b = 2;
c = 127;
d = 125;
args_dbl[0] = &a;
args_dbl[1] = &b;
args_dbl[2] = &c;
args_dbl[3] = &d;
args_dbl[4] = NULL;
cl_arg_types[0] = &ffi_type_uchar;
cl_arg_types[1] = &ffi_type_uchar;
cl_arg_types[2] = &ffi_type_uchar;
cl_arg_types[3] = &ffi_type_uchar;
cl_arg_types[4] = NULL;
/* Initialize the cif */
CHECK(ffi_prep_cif(&cif, FFI_DEFAULT_ABI, 4,
&ffi_type_uchar, cl_arg_types) == FFI_OK);
ffi_call(&cif, FFI_FN(test_func_fn), &res_call, args_dbl);
/* { dg-output "1 2 127 125: 255" } */
printf("res: %d\n", res_call);
/* { dg-output "\nres: 255" } */
CHECK(ffi_prep_closure(pcl, &cif, test_func_gn, NULL) == FFI_OK);
res_closure = (*((test_type)pcl))(1, 2, 127, 125);
/* { dg-output "\n1 2 127 125: 255" } */
printf("res: %d\n", res_closure);
/* { dg-output "\nres: 255" } */
exit(0);
}