/* round up */
size = PAGE_ALIGN(size);
-#ifdef DEBUG
- printk("amiga_chip_alloc: allocate %ld bytes\n", size);
-#endif
+ pr_debug("amiga_chip_alloc: allocate %lu bytes\n", size);
res = kzalloc(sizeof(struct resource), GFP_KERNEL);
if (!res)
return NULL;
return NULL;
}
chipavail -= size;
-#ifdef DEBUG
- printk("amiga_chip_alloc: returning %lx\n", res->start);
-#endif
+ pr_debug("amiga_chip_alloc: returning %pR\n", res);
return (void *)ZTWO_VADDR(res->start);
}
EXPORT_SYMBOL(amiga_chip_alloc);
/* dmesg into chipmem prefers memory at the safe end */
start = CHIP_PHYSADDR + chipavail - size;
-#ifdef DEBUG
- printk("amiga_chip_alloc_res: allocate %ld bytes\n", size);
-#endif
+ pr_debug("amiga_chip_alloc_res: allocate %lu bytes\n", size);
if (allocate_resource(&chipram_res, res, size, start, UINT_MAX,
PAGE_SIZE, NULL, NULL) < 0) {
- printk("amiga_chip_alloc_res: first alloc failed!\n");
+ pr_err("amiga_chip_alloc_res: first alloc failed!\n");
if (allocate_resource(&chipram_res, res, size, 0, UINT_MAX,
PAGE_SIZE, NULL, NULL) < 0)
return NULL;
}
chipavail -= size;
-#ifdef DEBUG
- printk("amiga_chip_alloc_res: returning %lx\n", res->start);
-#endif
+ pr_debug("amiga_chip_alloc_res: returning %pR\n", res);
return (void *)ZTWO_VADDR(res->start);
}
continue;
*p = res->sibling;
size = res->end-start;
-#ifdef DEBUG
- printk("amiga_chip_free: free %ld bytes at %p\n", size, ptr);
-#endif
+ pr_debug("amiga_chip_free: free %lu bytes at %p\n", size, ptr);
chipavail += size;
kfree(res);
return;
}
- printk("amiga_chip_free: trying to free nonexistent region at %p\n",
+ pr_err("amiga_chip_free: trying to free nonexistent region at %p\n",
ptr);
}
EXPORT_SYMBOL(amiga_chip_free);
unsigned long amiga_chip_avail(void)
{
-#ifdef DEBUG
- printk("amiga_chip_avail : %ld bytes\n", chipavail);
-#endif
+ pr_debug("amiga_chip_avail : %lu bytes\n", chipavail);
return chipavail;
}
EXPORT_SYMBOL(amiga_chip_avail);