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@@ -3794,6 +3794,39 @@ int nand_scan_ident(struct mtd_info *mtd, int maxchips,
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}
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}
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EXPORT_SYMBOL(nand_scan_ident);
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EXPORT_SYMBOL(nand_scan_ident);
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+/*
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+ * Check if the chip configuration meet the datasheet requirements.
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+
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+ * If our configuration corrects A bits per B bytes and the minimum
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+ * required correction level is X bits per Y bytes, then we must ensure
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+ * both of the following are true:
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+ *
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+ * (1) A / B >= X / Y
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+ * (2) A >= X
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+ *
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+ * Requirement (1) ensures we can correct for the required bitflip density.
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+ * Requirement (2) ensures we can correct even when all bitflips are clumped
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+ * in the same sector.
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+ */
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+static bool nand_ecc_strength_good(struct mtd_info *mtd)
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+{
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+ struct nand_chip *chip = mtd->priv;
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+ struct nand_ecc_ctrl *ecc = &chip->ecc;
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+ int corr, ds_corr;
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+
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+ if (ecc->size == 0 || chip->ecc_step_ds == 0)
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+ /* Not enough information */
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+ return true;
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+
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+ /*
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+ * We get the number of corrected bits per page to compare
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+ * the correction density.
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+ */
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+ corr = (mtd->writesize * ecc->strength) / ecc->size;
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+ ds_corr = (mtd->writesize * chip->ecc_strength_ds) / chip->ecc_step_ds;
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+
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+ return corr >= ds_corr && ecc->strength >= chip->ecc_strength_ds;
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+}
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/**
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/**
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* nand_scan_tail - [NAND Interface] Scan for the NAND device
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* nand_scan_tail - [NAND Interface] Scan for the NAND device
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@@ -4014,6 +4047,9 @@ int nand_scan_tail(struct mtd_info *mtd)
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ecc->layout->oobavail += ecc->layout->oobfree[i].length;
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ecc->layout->oobavail += ecc->layout->oobfree[i].length;
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mtd->oobavail = ecc->layout->oobavail;
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mtd->oobavail = ecc->layout->oobavail;
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+ /* ECC sanity check: warn noisily if it's too weak */
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+ WARN_ON(!nand_ecc_strength_good(mtd));
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+
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/*
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/*
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* Set the number of read / write steps for one page depending on ECC
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* Set the number of read / write steps for one page depending on ECC
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* mode.
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* mode.
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