blob: 303c4e65f637d85ee962fd53898c43c86938a4a2 [file] [log] [blame]
extern void abort (void);
typedef unsigned long HARD_REG_SET[2];
HARD_REG_SET reg_class_contents[2];
struct du_chain
{
struct du_chain *next_use;
int cl;
};
void __attribute__((noinline))
merge_overlapping_regs (HARD_REG_SET *p)
{
if ((*p)[0] != -1 || (*p)[1] != -1)
abort ();
}
void __attribute__((noinline))
regrename_optimize (struct du_chain *this)
{
HARD_REG_SET this_unavailable;
unsigned long *scan_fp_;
int n_uses;
struct du_chain *last;
this_unavailable[0] = 0;
this_unavailable[1] = 0;
n_uses = 0;
for (last = this; last->next_use; last = last->next_use)
{
scan_fp_ = reg_class_contents[last->cl];
n_uses++;
this_unavailable[0] |= ~ scan_fp_[0];
this_unavailable[1] |= ~ scan_fp_[1];
}
if (n_uses < 1)
return;
scan_fp_ = reg_class_contents[last->cl];
this_unavailable[0] |= ~ scan_fp_[0];
this_unavailable[1] |= ~ scan_fp_[1];
merge_overlapping_regs (&this_unavailable);
}
int main()
{
struct du_chain du1 = { 0, 0 };
struct du_chain du0 = { &du1, 1 };
reg_class_contents[0][0] = -1;
reg_class_contents[0][1] = -1;
reg_class_contents[1][0] = 0;
reg_class_contents[1][1] = 0;
regrename_optimize (&du0);
return 0;
}