sect_buf);
 
                        /* CIS pattern match on the sector buffer */
-                       if ( ret < 0 || retlen != SECTOR_SIZE ) {
+                       if (ret < 0 || retlen != SECTOR_SIZE) {
                                printk(KERN_WARNING
                                        "SSFDC_RO:can't read CIS/IDI sector\n");
-                       } else if ( !memcmp(sect_buf, cis_numbers,
-                                       sizeof(cis_numbers)) ) {
+                       } else if (!memcmp(sect_buf, cis_numbers,
+                                       sizeof(cis_numbers))) {
                                /* Found */
                                cis_sector = (int)(offset >> SECTOR_SHIFT);
                        } else {
                }
        }
 
-       if ( !ok )
+       if (!ok)
                block_address = -2;
 
        DEBUG(MTD_DEBUG_LEVEL3, "SSFDC_RO: get_logical_address() %d\n",
        struct mtd_info *mtd = ssfdc->mbd.mtd;
 
        DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: build_block_map() nblks=%d (%luK)\n",
-               ssfdc->map_len, (unsigned long)ssfdc->map_len *
-               ssfdc->erase_size / 1024 );
+             ssfdc->map_len,
+             (unsigned long)ssfdc->map_len * ssfdc->erase_size / 1024);
 
        /* Scan every physical block, skip CIS block */
        for (phys_block = ssfdc->cis_block + 1; phys_block < ssfdc->map_len;
        /* Set geometry */
        ssfdc->heads = 16;
        ssfdc->sectors = 32;
-       get_chs( mtd->size, NULL, &ssfdc->heads, &ssfdc->sectors);
+       get_chs(mtd->size, NULL, &ssfdc->heads, &ssfdc->sectors);
        ssfdc->cylinders = (unsigned short)((mtd->size >> SECTOR_SHIFT) /
                        ((long)ssfdc->sectors * (long)ssfdc->heads));
 
        DEBUG(MTD_DEBUG_LEVEL1, "SSFDC_RO: using C:%d H:%d S:%d == %ld sects\n",
                ssfdc->cylinders, ssfdc->heads , ssfdc->sectors,
                (long)ssfdc->cylinders * (long)ssfdc->heads *
-               (long)ssfdc->sectors );
+               (long)ssfdc->sectors);
 
        ssfdc->mbd.size = (long)ssfdc->heads * (long)ssfdc->cylinders *
                                (long)ssfdc->sectors;
 
        /* Allocate logical block map */
-       ssfdc->logic_block_map = kmalloc( sizeof(ssfdc->logic_block_map[0]) *
-                                               ssfdc->map_len, GFP_KERNEL);
+       ssfdc->logic_block_map = kmalloc(sizeof(ssfdc->logic_block_map[0]) *
+                                        ssfdc->map_len, GFP_KERNEL);
        if (!ssfdc->logic_block_map) {
                printk(KERN_WARNING
                        "SSFDC_RO: out of memory for data structures\n");
                        "SSFDC_RO: ssfdcr_readsect() phys_sect_no=%lu\n",
                        sect_no);
 
-               if (read_physical_sector( ssfdc->mbd.mtd, buf, sect_no ) < 0)
+               if (read_physical_sector(ssfdc->mbd.mtd, buf, sect_no) < 0)
                        return -EIO;
        } else {
                memset(buf, 0xff, SECTOR_SIZE);