#include "check.h"
 #include "efi.h"
 
-#undef EFI_DEBUG
-#ifdef EFI_DEBUG
-#define Dprintk(x...) printk(KERN_DEBUG x)
-#else
-#define Dprintk(x...)
-#endif
-
 /* This allows a kernel command line option 'gpt' to override
  * the test for invalid PMBR.  Not __initdata because reloading
  * the partition tables happens after init too.
 
        /* Check the GUID Partition Table signature */
        if (le64_to_cpu((*gpt)->signature) != GPT_HEADER_SIGNATURE) {
-               Dprintk("GUID Partition Table Header signature is wrong:"
-                       "%lld != %lld\n",
-                       (unsigned long long)le64_to_cpu((*gpt)->signature),
-                       (unsigned long long)GPT_HEADER_SIGNATURE);
+               pr_debug("GUID Partition Table Header signature is wrong:"
+                        "%lld != %lld\n",
+                        (unsigned long long)le64_to_cpu((*gpt)->signature),
+                        (unsigned long long)GPT_HEADER_SIGNATURE);
                goto fail;
        }
 
        crc = efi_crc32((const unsigned char *) (*gpt), le32_to_cpu((*gpt)->header_size));
 
        if (crc != origcrc) {
-               Dprintk
-                   ("GUID Partition Table Header CRC is wrong: %x != %x\n",
-                    crc, origcrc);
+               pr_debug("GUID Partition Table Header CRC is wrong: %x != %x\n",
+                        crc, origcrc);
                goto fail;
        }
        (*gpt)->header_crc32 = cpu_to_le32(origcrc);
        /* Check that the my_lba entry points to the LBA that contains
         * the GUID Partition Table */
        if (le64_to_cpu((*gpt)->my_lba) != lba) {
-               Dprintk("GPT my_lba incorrect: %lld != %lld\n",
-                       (unsigned long long)le64_to_cpu((*gpt)->my_lba),
-                       (unsigned long long)lba);
+               pr_debug("GPT my_lba incorrect: %lld != %lld\n",
+                        (unsigned long long)le64_to_cpu((*gpt)->my_lba),
+                        (unsigned long long)lba);
                goto fail;
        }
 
         */
        lastlba = last_lba(bdev);
        if (le64_to_cpu((*gpt)->first_usable_lba) > lastlba) {
-               Dprintk("GPT: first_usable_lba incorrect: %lld > %lld\n",
-                       (unsigned long long)le64_to_cpu((*gpt)->first_usable_lba),
-                       (unsigned long long)lastlba);
+               pr_debug("GPT: first_usable_lba incorrect: %lld > %lld\n",
+                        (unsigned long long)le64_to_cpu((*gpt)->first_usable_lba),
+                        (unsigned long long)lastlba);
                goto fail;
        }
        if (le64_to_cpu((*gpt)->last_usable_lba) > lastlba) {
-               Dprintk("GPT: last_usable_lba incorrect: %lld > %lld\n",
-                       (unsigned long long)le64_to_cpu((*gpt)->last_usable_lba),
-                       (unsigned long long)lastlba);
+               pr_debug("GPT: last_usable_lba incorrect: %lld > %lld\n",
+                        (unsigned long long)le64_to_cpu((*gpt)->last_usable_lba),
+                        (unsigned long long)lastlba);
                goto fail;
        }
 
                        le32_to_cpu((*gpt)->sizeof_partition_entry));
 
        if (crc != le32_to_cpu((*gpt)->partition_entry_array_crc32)) {
-               Dprintk("GUID Partitition Entry Array CRC check failed.\n");
+               pr_debug("GUID Partitition Entry Array CRC check failed.\n");
                goto fail_ptes;
        }
 
                return 0;
        }
 
-       Dprintk("GUID Partition Table is valid!  Yea!\n");
+       pr_debug("GUID Partition Table is valid!  Yea!\n");
 
        for (i = 0; i < le32_to_cpu(gpt->num_partition_entries) && i < state->limit-1; i++) {
                if (!is_pte_valid(&ptes[i], last_lba(bdev)))