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https://github.com/edk2-porting/linux-next.git
synced 2024-12-15 08:44:14 +08:00
mtd: nand: convert printk() to pr_*()
Instead of directly calling printk, it's simpler to use the built-in pr_* functions. This shortens code and allows easy customization through the definition of a pr_fmt() macro (not used currently). Ideally, we could implement much of this with dev_* functions, but the MTD subsystem does not necessarily register all its master `mtd_info.dev` device, so we cannot use dev_* consistently. See: http://lists.infradead.org/pipermail/linux-mtd/2011-July/036950.html Signed-off-by: Brian Norris <computersforpeace@gmail.com> Signed-off-by: Artem Bityutskiy <artem.bityutskiy@intel.com>
This commit is contained in:
parent
a0f5080ecc
commit
9a4d4d6901
@ -2179,7 +2179,7 @@ static int nand_do_write_ops(struct mtd_info *mtd, loff_t to,
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/* Reject writes, which are not page aligned */
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if (NOTALIGNED(to) || NOTALIGNED(ops->len)) {
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printk(KERN_NOTICE "%s: Attempt to write not "
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pr_notice("%s: Attempt to write not "
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"page aligned data\n", __func__);
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return -EINVAL;
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}
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@ -2570,7 +2570,7 @@ int nand_erase_nand(struct mtd_info *mtd, struct erase_info *instr,
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/* Heck if we have a bad block, we do not erase bad blocks! */
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if (nand_block_checkbad(mtd, ((loff_t) page) <<
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chip->page_shift, 0, allowbbt)) {
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printk(KERN_WARNING "%s: attempt to erase a bad block "
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pr_warn("%s: attempt to erase a bad block "
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"at page 0x%08x\n", __func__, page);
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instr->state = MTD_ERASE_FAILED;
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goto erase_exit;
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@ -2744,7 +2744,7 @@ static void nand_resume(struct mtd_info *mtd)
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if (chip->state == FL_PM_SUSPENDED)
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nand_release_device(mtd);
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else
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printk(KERN_ERR "%s called for a chip which is not "
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pr_err("%s called for a chip which is not "
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"in suspended state\n", __func__);
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}
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@ -2836,13 +2836,13 @@ static int nand_flash_detect_onfi(struct mtd_info *mtd, struct nand_chip *chip,
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chip->read_byte(mtd) != 'F' || chip->read_byte(mtd) != 'I')
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return 0;
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printk(KERN_INFO "ONFI flash detected\n");
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pr_info("ONFI flash detected\n");
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chip->cmdfunc(mtd, NAND_CMD_PARAM, 0, -1);
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for (i = 0; i < 3; i++) {
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chip->read_buf(mtd, (uint8_t *)p, sizeof(*p));
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if (onfi_crc16(ONFI_CRC_BASE, (uint8_t *)p, 254) ==
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le16_to_cpu(p->crc)) {
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printk(KERN_INFO "ONFI param page %d valid\n", i);
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pr_info("ONFI param page %d valid\n", i);
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break;
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}
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}
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@ -2866,7 +2866,7 @@ static int nand_flash_detect_onfi(struct mtd_info *mtd, struct nand_chip *chip,
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chip->onfi_version = 0;
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if (!chip->onfi_version) {
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printk(KERN_INFO "%s: unsupported ONFI version: %d\n",
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pr_info("%s: unsupported ONFI version: %d\n",
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__func__, val);
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return 0;
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}
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@ -2932,7 +2932,7 @@ static struct nand_flash_dev *nand_get_flash_type(struct mtd_info *mtd,
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id_data[i] = chip->read_byte(mtd);
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if (id_data[0] != *maf_id || id_data[1] != *dev_id) {
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printk(KERN_INFO "%s: second ID read did not match "
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pr_info("%s: second ID read did not match "
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"%02x,%02x against %02x,%02x\n", __func__,
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*maf_id, *dev_id, id_data[0], id_data[1]);
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return ERR_PTR(-ENODEV);
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@ -3077,10 +3077,10 @@ ident_done:
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* chip correct!
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*/
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if (busw != (chip->options & NAND_BUSWIDTH_16)) {
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printk(KERN_INFO "NAND device: Manufacturer ID:"
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pr_info("NAND device: Manufacturer ID:"
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" 0x%02x, Chip ID: 0x%02x (%s %s)\n", *maf_id,
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*dev_id, nand_manuf_ids[maf_idx].name, mtd->name);
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printk(KERN_WARNING "NAND bus width %d instead %d bit\n",
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pr_warn("NAND bus width %d instead %d bit\n",
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(chip->options & NAND_BUSWIDTH_16) ? 16 : 8,
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busw ? 16 : 8);
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return ERR_PTR(-EINVAL);
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@ -3138,7 +3138,7 @@ ident_done:
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if (mtd->writesize > 512 && chip->cmdfunc == nand_command)
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chip->cmdfunc = nand_command_lp;
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printk(KERN_INFO "NAND device: Manufacturer ID:"
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pr_info("NAND device: Manufacturer ID:"
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" 0x%02x, Chip ID: 0x%02x (%s %s)\n", *maf_id, *dev_id,
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nand_manuf_ids[maf_idx].name,
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chip->onfi_version ? chip->onfi_params.model : type->name);
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@ -3175,7 +3175,7 @@ int nand_scan_ident(struct mtd_info *mtd, int maxchips,
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if (IS_ERR(type)) {
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if (!(chip->options & NAND_SCAN_SILENT_NODEV))
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printk(KERN_WARNING "No NAND device found.\n");
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pr_warn("No NAND device found.\n");
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chip->select_chip(mtd, -1);
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return PTR_ERR(type);
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}
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@ -3193,7 +3193,7 @@ int nand_scan_ident(struct mtd_info *mtd, int maxchips,
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break;
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}
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if (i > 1)
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printk(KERN_INFO "%d NAND chips detected\n", i);
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pr_info("%d NAND chips detected\n", i);
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/* Store the number of chips and calc total size for mtd */
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chip->numchips = i;
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@ -3243,7 +3243,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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chip->ecc.layout = &nand_oob_128;
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break;
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default:
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printk(KERN_WARNING "No oob scheme defined for "
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pr_warn("No oob scheme defined for "
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"oobsize %d\n", mtd->oobsize);
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BUG();
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}
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@ -3262,7 +3262,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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/* Similar to NAND_ECC_HW, but a separate read_page handle */
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if (!chip->ecc.calculate || !chip->ecc.correct ||
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!chip->ecc.hwctl) {
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printk(KERN_WARNING "No ECC functions supplied; "
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pr_warn("No ECC functions supplied; "
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"Hardware ECC not possible\n");
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BUG();
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}
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@ -3291,7 +3291,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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chip->ecc.read_page == nand_read_page_hwecc ||
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!chip->ecc.write_page ||
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chip->ecc.write_page == nand_write_page_hwecc)) {
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printk(KERN_WARNING "No ECC functions supplied; "
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pr_warn("No ECC functions supplied; "
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"Hardware ECC not possible\n");
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BUG();
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}
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@ -3311,7 +3311,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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if (mtd->writesize >= chip->ecc.size)
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break;
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printk(KERN_WARNING "%d byte HW ECC not possible on "
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pr_warn("%d byte HW ECC not possible on "
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"%d byte page size, fallback to SW ECC\n",
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chip->ecc.size, mtd->writesize);
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chip->ecc.mode = NAND_ECC_SOFT;
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@ -3333,7 +3333,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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case NAND_ECC_SOFT_BCH:
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if (!mtd_nand_has_bch()) {
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printk(KERN_WARNING "CONFIG_MTD_ECC_BCH not enabled\n");
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pr_warn("CONFIG_MTD_ECC_BCH not enabled\n");
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BUG();
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}
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chip->ecc.calculate = nand_bch_calculate_ecc;
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@ -3360,13 +3360,13 @@ int nand_scan_tail(struct mtd_info *mtd)
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chip->ecc.bytes,
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&chip->ecc.layout);
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if (!chip->ecc.priv) {
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printk(KERN_WARNING "BCH ECC initialization failed!\n");
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pr_warn("BCH ECC initialization failed!\n");
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BUG();
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}
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break;
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case NAND_ECC_NONE:
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printk(KERN_WARNING "NAND_ECC_NONE selected by board driver. "
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pr_warn("NAND_ECC_NONE selected by board driver. "
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"This is not recommended !!\n");
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chip->ecc.read_page = nand_read_page_raw;
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chip->ecc.write_page = nand_write_page_raw;
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@ -3379,7 +3379,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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break;
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default:
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printk(KERN_WARNING "Invalid NAND_ECC_MODE %d\n",
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pr_warn("Invalid NAND_ECC_MODE %d\n",
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chip->ecc.mode);
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BUG();
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}
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@ -3401,7 +3401,7 @@ int nand_scan_tail(struct mtd_info *mtd)
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*/
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chip->ecc.steps = mtd->writesize / chip->ecc.size;
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if (chip->ecc.steps * chip->ecc.size != mtd->writesize) {
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printk(KERN_WARNING "Invalid ECC parameters\n");
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pr_warn("Invalid ECC parameters\n");
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BUG();
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}
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chip->ecc.total = chip->ecc.steps * chip->ecc.bytes;
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@ -3492,7 +3492,7 @@ int nand_scan(struct mtd_info *mtd, int maxchips)
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/* Many callers got this wrong, so check for it for a while... */
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if (!mtd->owner && caller_is_module()) {
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printk(KERN_CRIT "%s called with NULL mtd->owner!\n",
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pr_crit("%s called with NULL mtd->owner!\n",
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__func__);
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BUG();
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}
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@ -205,10 +205,10 @@ static int read_bbt(struct mtd_info *mtd, uint8_t *buf, int page, int num,
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res = mtd->read(mtd, from, len, &retlen, buf);
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if (res < 0) {
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if (retlen != len) {
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printk(KERN_INFO "nand_bbt: Error reading bad block table\n");
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pr_info("nand_bbt: Error reading bad block table\n");
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return res;
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}
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printk(KERN_WARNING "nand_bbt: ECC error while reading bad block table\n");
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pr_warn("nand_bbt: ECC error while reading bad block table\n");
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}
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/* Analyse data */
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@ -219,7 +219,7 @@ static int read_bbt(struct mtd_info *mtd, uint8_t *buf, int page, int num,
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if (tmp == msk)
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continue;
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if (reserved_block_code && (tmp == reserved_block_code)) {
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printk(KERN_INFO "nand_read_bbt: Reserved block at 0x%012llx\n",
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pr_info("nand_read_bbt: Reserved block at 0x%012llx\n",
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(loff_t)((offs << 2) + (act >> 1)) << this->bbt_erase_shift);
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this->bbt[offs + (act >> 3)] |= 0x2 << (act & 0x06);
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mtd->ecc_stats.bbtblocks++;
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@ -229,7 +229,7 @@ static int read_bbt(struct mtd_info *mtd, uint8_t *buf, int page, int num,
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* Leave it for now, if it's matured we can
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* move this message to pr_debug.
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*/
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printk(KERN_INFO "nand_read_bbt: Bad block at 0x%012llx\n",
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pr_info("nand_read_bbt: Bad block at 0x%012llx\n",
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(loff_t)((offs << 2) + (act >> 1)) << this->bbt_erase_shift);
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/* Factory marked bad or worn out? */
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if (tmp == 0)
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@ -389,7 +389,7 @@ static int read_abs_bbts(struct mtd_info *mtd, uint8_t *buf,
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scan_read_raw(mtd, buf, (loff_t)td->pages[0] << this->page_shift,
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mtd->writesize, td);
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td->version[0] = buf[bbt_get_ver_offs(mtd, td)];
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printk(KERN_INFO "Bad block table at page %d, version 0x%02X\n",
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pr_info("Bad block table at page %d, version 0x%02X\n",
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td->pages[0], td->version[0]);
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}
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@ -398,7 +398,7 @@ static int read_abs_bbts(struct mtd_info *mtd, uint8_t *buf,
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scan_read_raw(mtd, buf, (loff_t)md->pages[0] << this->page_shift,
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mtd->writesize, td);
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md->version[0] = buf[bbt_get_ver_offs(mtd, md)];
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printk(KERN_INFO "Bad block table at page %d, version 0x%02X\n",
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pr_info("Bad block table at page %d, version 0x%02X\n",
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md->pages[0], md->version[0]);
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}
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return 1;
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@ -473,7 +473,7 @@ static int create_bbt(struct mtd_info *mtd, uint8_t *buf,
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loff_t from;
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size_t readlen;
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printk(KERN_INFO "Scanning device for bad blocks\n");
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pr_info("Scanning device for bad blocks\n");
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if (bd->options & NAND_BBT_SCANALLPAGES)
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len = 1 << (this->bbt_erase_shift - this->page_shift);
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@ -502,7 +502,7 @@ static int create_bbt(struct mtd_info *mtd, uint8_t *buf,
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from = 0;
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} else {
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if (chip >= this->numchips) {
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printk(KERN_WARNING "create_bbt(): chipnr (%d) > available chips (%d)\n",
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pr_warn("create_bbt(): chipnr (%d) > available chips (%d)\n",
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chip + 1, this->numchips);
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return -EINVAL;
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}
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@ -531,7 +531,7 @@ static int create_bbt(struct mtd_info *mtd, uint8_t *buf,
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if (ret) {
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this->bbt[i >> 3] |= 0x03 << (i & 0x6);
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printk(KERN_WARNING "Bad eraseblock %d at 0x%012llx\n",
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pr_warn("Bad eraseblock %d at 0x%012llx\n",
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i >> 1, (unsigned long long)from);
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mtd->ecc_stats.badblocks++;
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}
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@ -614,9 +614,9 @@ static int search_bbt(struct mtd_info *mtd, uint8_t *buf, struct nand_bbt_descr
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/* Check, if we found a bbt for each requested chip */
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for (i = 0; i < chips; i++) {
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if (td->pages[i] == -1)
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printk(KERN_WARNING "Bad block table not found for chip %d\n", i);
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pr_warn("Bad block table not found for chip %d\n", i);
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else
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printk(KERN_INFO "Bad block table found at page %d, version 0x%02X\n", td->pages[i],
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pr_info("Bad block table found at page %d, version 0x%02X\n", td->pages[i],
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td->version[i]);
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}
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return 0;
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@ -730,7 +730,7 @@ static int write_bbt(struct mtd_info *mtd, uint8_t *buf,
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if (!md || md->pages[chip] != page)
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goto write;
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}
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printk(KERN_ERR "No space left to write bad block table\n");
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pr_err("No space left to write bad block table\n");
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return -ENOSPC;
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write:
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@ -765,12 +765,12 @@ static int write_bbt(struct mtd_info *mtd, uint8_t *buf,
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res = mtd->read(mtd, to, len, &retlen, buf);
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if (res < 0) {
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if (retlen != len) {
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printk(KERN_INFO "nand_bbt: Error "
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pr_info("nand_bbt: Error "
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"reading block for writing "
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"the bad block table\n");
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return res;
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}
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printk(KERN_WARNING "nand_bbt: ECC error "
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pr_warn("nand_bbt: ECC error "
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"while reading block for writing "
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"bad block table\n");
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}
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@ -847,7 +847,7 @@ static int write_bbt(struct mtd_info *mtd, uint8_t *buf,
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if (res < 0)
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goto outerr;
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printk(KERN_INFO "Bad block table written to 0x%012llx, version "
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pr_info("Bad block table written to 0x%012llx, version "
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"0x%02X\n", (unsigned long long)to, td->version[chip]);
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/* Mark it as used */
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@ -1137,7 +1137,7 @@ int nand_scan_bbt(struct mtd_info *mtd, struct nand_bbt_descr *bd)
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*/
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if (!td) {
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if ((res = nand_memory_bbt(mtd, bd))) {
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printk(KERN_ERR "nand_bbt: Can't scan flash and build the RAM-based BBT\n");
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pr_err("nand_bbt: Can't scan flash and build the RAM-based BBT\n");
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kfree(this->bbt);
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this->bbt = NULL;
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}
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@ -1305,7 +1305,7 @@ static int nand_create_default_bbt_descr(struct nand_chip *this)
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{
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struct nand_bbt_descr *bd;
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if (this->badblock_pattern) {
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printk(KERN_WARNING "BBT descr already allocated; not replacing.\n");
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pr_warn("BBT descr already allocated; not replacing.\n");
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return -EINVAL;
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}
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bd = kzalloc(sizeof(*bd), GFP_KERNEL);
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