{.offset = 3,
                 .length = 2},
                {.offset = 6,
-                .length = 2}}
+                .length = 2} }
 };
 
 static struct nand_ecclayout nand_oob_16 = {
        .eccpos = {0, 1, 2, 3, 6, 7},
        .oobfree = {
                {.offset = 8,
-                . length = 8}}
+                . length = 8} }
 };
 
 static struct nand_ecclayout nand_oob_64 = {
                   56, 57, 58, 59, 60, 61, 62, 63},
        .oobfree = {
                {.offset = 2,
-                .length = 38}}
+                .length = 38} }
 };
 
 static struct nand_ecclayout nand_oob_128 = {
                   120, 121, 122, 123, 124, 125, 126, 127},
        .oobfree = {
                {.offset = 2,
-                .length = 78}}
+                .length = 78} }
 };
 
 static int nand_get_device(struct nand_chip *chip, struct mtd_info *mtd,
                               NAND_CTRL_CLE | NAND_CTRL_CHANGE);
                chip->cmd_ctrl(mtd,
                               NAND_CMD_NONE, NAND_NCE | NAND_CTRL_CHANGE);
-               while (!(chip->read_byte(mtd) & NAND_STATUS_READY)) ;
+               while (!(chip->read_byte(mtd) & NAND_STATUS_READY))
+                               ;
                return;
 
                /* This applies to read commands */
                               NAND_NCE | NAND_CLE | NAND_CTRL_CHANGE);
                chip->cmd_ctrl(mtd, NAND_CMD_NONE,
                               NAND_NCE | NAND_CTRL_CHANGE);
-               while (!(chip->read_byte(mtd) & NAND_STATUS_READY)) ;
+               while (!(chip->read_byte(mtd) & NAND_STATUS_READY))
+                               ;
                return;
 
        case NAND_CMD_RNDOUT:
                                break;
                }
                mdelay(1);
-        }
+       }
 }
 
 /**
 static uint8_t *nand_transfer_oob(struct nand_chip *chip, uint8_t *oob,
                                  struct mtd_oob_ops *ops, size_t len)
 {
-       switch(ops->mode) {
+       switch (ops->mode) {
 
        case MTD_OOB_PLACE:
        case MTD_OOB_RAW:
                uint32_t boffs = 0, roffs = ops->ooboffs;
                size_t bytes = 0;
 
-               for(; free->length && len; free++, len -= bytes) {
+               for (; free->length && len; free++, len -= bytes) {
                        /* Read request not from offset 0 ? */
                        if (unlikely(roffs)) {
                                if (roffs >= free->length) {
        buf = ops->datbuf;
        oob = ops->oobbuf;
 
-       while(1) {
+       while (1) {
                bytes = min(mtd->writesize - col, readlen);
                aligned = (bytes == mtd->writesize);
 
        realpage = (int)(from >> chip->page_shift);
        page = realpage & chip->pagemask;
 
-       while(1) {
+       while (1) {
                sndcmd = chip->ecc.read_oob(mtd, chip, page, sndcmd);
 
                len = min(len, readlen);
 
        nand_get_device(chip, mtd, FL_READING);
 
-       switch(ops->mode) {
+       switch (ops->mode) {
        case MTD_OOB_PLACE:
        case MTD_OOB_AUTO:
        case MTD_OOB_RAW:
 static uint8_t *nand_fill_oob(struct nand_chip *chip, uint8_t *oob, size_t len,
                                                struct mtd_oob_ops *ops)
 {
-       switch(ops->mode) {
+       switch (ops->mode) {
 
        case MTD_OOB_PLACE:
        case MTD_OOB_RAW:
                uint32_t boffs = 0, woffs = ops->ooboffs;
                size_t bytes = 0;
 
-               for(; free->length && len; free++, len -= bytes) {
+               for (; free->length && len; free++, len -= bytes) {
                        /* Write request not from offset 0 ? */
                        if (unlikely(woffs)) {
                                if (woffs >= free->length) {
        return NULL;
 }
 
-#define NOTALIGNED(x)  (x & (chip->subpagesize - 1)) != 0
+#define NOTALIGNED(x)  ((x & (chip->subpagesize - 1)) != 0)
 
 /**
  * nand_do_write_ops - [Internal] NAND write with ECC
        if (ops->ooboffs && (ops->ooboffs + ops->ooblen > oobmaxlen))
                return -EINVAL;
 
-       while(1) {
+       while (1) {
                int bytes = mtd->writesize;
                int cached = writelen > bytes && page != blockmask;
                uint8_t *wbuf = buf;
 
        nand_get_device(chip, mtd, FL_WRITING);
 
-       switch(ops->mode) {
+       switch (ops->mode) {
        case MTD_OOB_PLACE:
        case MTD_OOB_AUTO:
        case MTD_OOB_RAW:
 {
        int page, status, pages_per_block, ret, chipnr;
        struct nand_chip *chip = mtd->priv;
-       loff_t rewrite_bbt[NAND_MAX_CHIPS]={0};
+       loff_t rewrite_bbt[NAND_MAX_CHIPS] = {0};
        unsigned int bbt_masked_page = 0xffffffff;
        loff_t len;
 
        struct nand_chip *chip = mtd->priv;
        int ret;
 
-       if ((ret = nand_block_isbad(mtd, ofs))) {
+       ret = nand_block_isbad(mtd, ofs);
+       if (ret) {
                /* If it was bad already, return success and do nothing. */
                if (ret > 0)
                        return 0;
 
        for (; type->name != NULL; type++)
                if (*dev_id == type->id)
-                        break;
+                       break;
 
        chip->onfi_version = 0;
        if (!type->name || !type->pagesize) {
        printk(KERN_INFO "NAND device: Manufacturer ID:"
                " 0x%02x, Chip ID: 0x%02x (%s %s)\n", *maf_id, *dev_id,
                nand_manuf_ids[maf_idx].name,
-               chip->onfi_version ? type->name:chip->onfi_params.model);
+       chip->onfi_version ? type->name : chip->onfi_params.model);
 
        return type;
 }
         * mode
         */
        chip->ecc.steps = mtd->writesize / chip->ecc.size;
-       if(chip->ecc.steps * chip->ecc.size != mtd->writesize) {
+       if (chip->ecc.steps * chip->ecc.size != mtd->writesize) {
                printk(KERN_WARNING "Invalid ecc parameters\n");
                BUG();
        }
         */
        if (!(chip->options & NAND_NO_SUBPAGE_WRITE) &&
            !(chip->cellinfo & NAND_CI_CELLTYPE_MSK)) {
-               switch(chip->ecc.steps) {
+               switch (chip->ecc.steps) {
                case 2:
                        mtd->subpage_sft = 1;
                        break;