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Two main MTD fixes:
1. Read retry counting was off by one, so if we had a true ECC error (i.e., no
retry voltage threshold would give a clean read), we would end up returning
-EINVAL on the Nth mode instead of -EBADMSG after then (N-1)th mode
2. The OMAP NAND driver had some of its ECC layouts wrong when introduced in
3.13, causing incompatibilities between the bootloader on-flash layout and
the layout expected in Linux. The expected layouts are now documented in
the commit messages, and we plan to add this under Documentation/mtd/nand/
eventually.
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Merge tag 'for-linus-20140225' of git://git.infradead.org/linux-mtd
Pull MTD fixes from Brian Norris:
"Two main MTD fixes:
1. Read retry counting was off by one, so if we had a true ECC error
(i.e., no retry voltage threshold would give a clean read), we
would end up returning -EINVAL on the Nth mode instead of -EBADMSG
after then (N-1)th mode
2. The OMAP NAND driver had some of its ECC layouts wrong when
introduced in 3.13, causing incompatibilities between the
bootloader on-flash layout and the layout expected in Linux. The
expected layouts are now documented in the commit messages, and we
plan to add this under Documentation/mtd/nand/ eventually"
* tag 'for-linus-20140225' of git://git.infradead.org/linux-mtd:
mtd: nand: omap: fix ecclayout->oobfree->length
mtd: nand: omap: fix ecclayout->oobfree->offset
mtd: nand: omap: fix ecclayout to be in sync with u-boot NAND driver
mtd: nand: fix off-by-one read retry mode counting
This commit is contained in:
commit
e4cc60cbdc
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@ -1584,7 +1584,7 @@ static int nand_do_read_ops(struct mtd_info *mtd, loff_t from,
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}
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if (mtd->ecc_stats.failed - ecc_failures) {
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if (retry_mode + 1 <= chip->read_retries) {
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if (retry_mode + 1 < chip->read_retries) {
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retry_mode++;
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ret = nand_setup_read_retry(mtd,
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retry_mode);
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@ -1633,6 +1633,7 @@ static int omap_nand_probe(struct platform_device *pdev)
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int i;
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dma_cap_mask_t mask;
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unsigned sig;
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unsigned oob_index;
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struct resource *res;
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struct mtd_part_parser_data ppdata = {};
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@ -1826,11 +1827,14 @@ static int omap_nand_probe(struct platform_device *pdev)
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(mtd->writesize /
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nand_chip->ecc.size);
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if (nand_chip->options & NAND_BUSWIDTH_16)
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ecclayout->eccpos[0] = BADBLOCK_MARKER_LENGTH;
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oob_index = BADBLOCK_MARKER_LENGTH;
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else
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ecclayout->eccpos[0] = 1;
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ecclayout->oobfree->offset = ecclayout->eccpos[0] +
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ecclayout->eccbytes;
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oob_index = 1;
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for (i = 0; i < ecclayout->eccbytes; i++, oob_index++)
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ecclayout->eccpos[i] = oob_index;
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/* no reserved-marker in ecclayout for this ecc-scheme */
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ecclayout->oobfree->offset =
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ecclayout->eccpos[ecclayout->eccbytes - 1] + 1;
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break;
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case OMAP_ECC_BCH4_CODE_HW_DETECTION_SW:
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@ -1847,9 +1851,15 @@ static int omap_nand_probe(struct platform_device *pdev)
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ecclayout->eccbytes = nand_chip->ecc.bytes *
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(mtd->writesize /
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nand_chip->ecc.size);
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ecclayout->eccpos[0] = BADBLOCK_MARKER_LENGTH;
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ecclayout->oobfree->offset = ecclayout->eccpos[0] +
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ecclayout->eccbytes;
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oob_index = BADBLOCK_MARKER_LENGTH;
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for (i = 0; i < ecclayout->eccbytes; i++, oob_index++) {
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ecclayout->eccpos[i] = oob_index;
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if (((i + 1) % nand_chip->ecc.bytes) == 0)
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oob_index++;
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}
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/* include reserved-marker in ecclayout->oobfree calculation */
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ecclayout->oobfree->offset = 1 +
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ecclayout->eccpos[ecclayout->eccbytes - 1] + 1;
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/* software bch library is used for locating errors */
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nand_chip->ecc.priv = nand_bch_init(mtd,
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nand_chip->ecc.size,
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@ -1883,9 +1893,12 @@ static int omap_nand_probe(struct platform_device *pdev)
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ecclayout->eccbytes = nand_chip->ecc.bytes *
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(mtd->writesize /
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nand_chip->ecc.size);
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ecclayout->eccpos[0] = BADBLOCK_MARKER_LENGTH;
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ecclayout->oobfree->offset = ecclayout->eccpos[0] +
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ecclayout->eccbytes;
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oob_index = BADBLOCK_MARKER_LENGTH;
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for (i = 0; i < ecclayout->eccbytes; i++, oob_index++)
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ecclayout->eccpos[i] = oob_index;
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/* reserved marker already included in ecclayout->eccbytes */
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ecclayout->oobfree->offset =
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ecclayout->eccpos[ecclayout->eccbytes - 1] + 1;
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/* This ECC scheme requires ELM H/W block */
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if (is_elm_present(info, pdata->elm_of_node, BCH4_ECC) < 0) {
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pr_err("nand: error: could not initialize ELM\n");
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@ -1913,9 +1926,15 @@ static int omap_nand_probe(struct platform_device *pdev)
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ecclayout->eccbytes = nand_chip->ecc.bytes *
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(mtd->writesize /
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nand_chip->ecc.size);
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ecclayout->eccpos[0] = BADBLOCK_MARKER_LENGTH;
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ecclayout->oobfree->offset = ecclayout->eccpos[0] +
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ecclayout->eccbytes;
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oob_index = BADBLOCK_MARKER_LENGTH;
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for (i = 0; i < ecclayout->eccbytes; i++, oob_index++) {
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ecclayout->eccpos[i] = oob_index;
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if (((i + 1) % nand_chip->ecc.bytes) == 0)
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oob_index++;
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}
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/* include reserved-marker in ecclayout->oobfree calculation */
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ecclayout->oobfree->offset = 1 +
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ecclayout->eccpos[ecclayout->eccbytes - 1] + 1;
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/* software bch library is used for locating errors */
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nand_chip->ecc.priv = nand_bch_init(mtd,
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nand_chip->ecc.size,
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@ -1956,9 +1975,12 @@ static int omap_nand_probe(struct platform_device *pdev)
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ecclayout->eccbytes = nand_chip->ecc.bytes *
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(mtd->writesize /
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nand_chip->ecc.size);
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ecclayout->eccpos[0] = BADBLOCK_MARKER_LENGTH;
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ecclayout->oobfree->offset = ecclayout->eccpos[0] +
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ecclayout->eccbytes;
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oob_index = BADBLOCK_MARKER_LENGTH;
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for (i = 0; i < ecclayout->eccbytes; i++, oob_index++)
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ecclayout->eccpos[i] = oob_index;
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/* reserved marker already included in ecclayout->eccbytes */
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ecclayout->oobfree->offset =
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ecclayout->eccpos[ecclayout->eccbytes - 1] + 1;
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break;
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#else
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pr_err("nand: error: CONFIG_MTD_NAND_OMAP_BCH not enabled\n");
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@ -1972,11 +1994,8 @@ static int omap_nand_probe(struct platform_device *pdev)
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goto return_error;
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}
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/* populate remaining ECC layout data */
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ecclayout->oobfree->length = mtd->oobsize - (BADBLOCK_MARKER_LENGTH +
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ecclayout->eccbytes);
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for (i = 1; i < ecclayout->eccbytes; i++)
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ecclayout->eccpos[i] = ecclayout->eccpos[0] + i;
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/* all OOB bytes from oobfree->offset till end off OOB are free */
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ecclayout->oobfree->length = mtd->oobsize - ecclayout->oobfree->offset;
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/* check if NAND device's OOB is enough to store ECC signatures */
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if (mtd->oobsize < (ecclayout->eccbytes + BADBLOCK_MARKER_LENGTH)) {
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pr_err("not enough OOB bytes required = %d, available=%d\n",
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