spin_lock(&buddy->lock);
- for (o = order; o <= buddy->max_order; ++o) {
- m = 1 << (buddy->max_order - o);
- seg = find_first_bit(buddy->bits[o], m);
- if (seg < m)
- goto found;
- }
+ for (o = order; o <= buddy->max_order; ++o)
+ if (buddy->num_free[o]) {
+ m = 1 << (buddy->max_order - o);
+ seg = find_first_bit(buddy->bits[o], m);
+ if (seg < m)
+ goto found;
+ }
spin_unlock(&buddy->lock);
return -1;
found:
clear_bit(seg, buddy->bits[o]);
+ --buddy->num_free[o];
while (o > order) {
--o;
seg <<= 1;
set_bit(seg ^ 1, buddy->bits[o]);
+ ++buddy->num_free[o];
}
spin_unlock(&buddy->lock);
while (test_bit(seg ^ 1, buddy->bits[order])) {
clear_bit(seg ^ 1, buddy->bits[order]);
+ --buddy->num_free[order];
seg >>= 1;
++order;
}
set_bit(seg, buddy->bits[order]);
+ ++buddy->num_free[order];
spin_unlock(&buddy->lock);
}
buddy->bits = kzalloc((buddy->max_order + 1) * sizeof (long *),
GFP_KERNEL);
- if (!buddy->bits)
+ buddy->num_free = kzalloc((buddy->max_order + 1) * sizeof (int *),
+ GFP_KERNEL);
+ if (!buddy->bits || !buddy->num_free)
goto err_out;
for (i = 0; i <= buddy->max_order; ++i) {
}
set_bit(0, buddy->bits[buddy->max_order]);
+ buddy->num_free[buddy->max_order] = 1;
return 0;
for (i = 0; i <= buddy->max_order; ++i)
kfree(buddy->bits[i]);
+err_out:
kfree(buddy->bits);
+ kfree(buddy->num_free);
-err_out:
return -ENOMEM;
}
kfree(buddy->bits[i]);
kfree(buddy->bits);
+ kfree(buddy->num_free);
}
static u32 mthca_alloc_mtt_range(struct mthca_dev *dev, int order,