mtd: onenand: add support for chips with 4KiB page size
This patch adds support for OneNAND chips that have 4KiB page size. Signed-off-by: Kyungmin Park <kyungmin.park@samsung.com> Signed-off-by: Marek Szyprowski <m.szyprowski@samsung.com> Signed-off-by: David Woodhouse <David.Woodhouse@intel.com>
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@ -397,7 +397,8 @@ static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t le
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value = onenand_bufferram_address(this, block);
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this->write_word(value, this->base + ONENAND_REG_START_ADDRESS2);
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if (ONENAND_IS_MLC(this) || ONENAND_IS_2PLANE(this))
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if (ONENAND_IS_MLC(this) || ONENAND_IS_2PLANE(this) ||
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ONENAND_IS_4KB_PAGE(this))
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/* It is always BufferRAM0 */
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ONENAND_SET_BUFFERRAM0(this);
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else
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@ -426,7 +427,7 @@ static int onenand_command(struct mtd_info *mtd, int cmd, loff_t addr, size_t le
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case FLEXONENAND_CMD_RECOVER_LSB:
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case ONENAND_CMD_READ:
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case ONENAND_CMD_READOOB:
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if (ONENAND_IS_MLC(this))
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if (ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this))
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/* It is always BufferRAM0 */
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dataram = ONENAND_SET_BUFFERRAM0(this);
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else
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@ -466,11 +467,11 @@ static inline int onenand_read_ecc(struct onenand_chip *this)
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{
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int ecc, i, result = 0;
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if (!FLEXONENAND(this))
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if (!FLEXONENAND(this) && !ONENAND_IS_4KB_PAGE(this))
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return this->read_word(this->base + ONENAND_REG_ECC_STATUS);
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for (i = 0; i < 4; i++) {
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ecc = this->read_word(this->base + ONENAND_REG_ECC_STATUS + i);
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ecc = this->read_word(this->base + ONENAND_REG_ECC_STATUS + i*2);
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if (likely(!ecc))
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continue;
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if (ecc & FLEXONENAND_UNCORRECTABLE_ERROR)
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@ -1425,7 +1426,7 @@ static int onenand_read(struct mtd_info *mtd, loff_t from, size_t len,
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int ret;
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onenand_get_device(mtd, FL_READING);
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ret = ONENAND_IS_MLC(this) ?
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ret = ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this) ?
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onenand_mlc_read_ops_nolock(mtd, from, &ops) :
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onenand_read_ops_nolock(mtd, from, &ops);
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onenand_release_device(mtd);
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@ -1460,7 +1461,7 @@ static int onenand_read_oob(struct mtd_info *mtd, loff_t from,
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onenand_get_device(mtd, FL_READING);
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if (ops->datbuf)
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ret = ONENAND_IS_MLC(this) ?
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ret = ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this) ?
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onenand_mlc_read_ops_nolock(mtd, from, ops) :
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onenand_read_ops_nolock(mtd, from, ops);
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else
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@ -1926,7 +1927,7 @@ static int onenand_write_ops_nolock(struct mtd_info *mtd, loff_t to,
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* 2 PLANE, MLC, and Flex-OneNAND do not support
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* write-while-program feature.
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*/
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if (!ONENAND_IS_2PLANE(this) && !first) {
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if (!ONENAND_IS_2PLANE(this) && !ONENAND_IS_4KB_PAGE(this) && !first) {
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ONENAND_SET_PREV_BUFFERRAM(this);
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ret = this->wait(mtd, FL_WRITING);
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@ -1957,7 +1958,7 @@ static int onenand_write_ops_nolock(struct mtd_info *mtd, loff_t to,
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/*
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* 2 PLANE, MLC, and Flex-OneNAND wait here
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*/
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if (ONENAND_IS_2PLANE(this)) {
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if (ONENAND_IS_2PLANE(this) || ONENAND_IS_4KB_PAGE(this)) {
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ret = this->wait(mtd, FL_WRITING);
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/* In partial page write we don't update bufferram */
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@ -2084,7 +2085,7 @@ static int onenand_write_oob_nolock(struct mtd_info *mtd, loff_t to,
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memcpy(oobbuf + column, buf, thislen);
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this->write_bufferram(mtd, ONENAND_SPARERAM, oobbuf, 0, mtd->oobsize);
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if (ONENAND_IS_MLC(this)) {
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if (ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this)) {
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/* Set main area of DataRAM to 0xff*/
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memset(this->page_buf, 0xff, mtd->writesize);
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this->write_bufferram(mtd, ONENAND_DATARAM,
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@ -3027,7 +3028,7 @@ static int do_otp_read(struct mtd_info *mtd, loff_t from, size_t len,
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this->command(mtd, ONENAND_CMD_OTP_ACCESS, 0, 0);
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this->wait(mtd, FL_OTPING);
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ret = ONENAND_IS_MLC(this) ?
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ret = ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this) ?
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onenand_mlc_read_ops_nolock(mtd, from, &ops) :
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onenand_read_ops_nolock(mtd, from, &ops);
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@ -3372,7 +3373,10 @@ static void onenand_check_features(struct mtd_info *mtd)
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/* Lock scheme */
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switch (density) {
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case ONENAND_DEVICE_DENSITY_4Gb:
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this->options |= ONENAND_HAS_2PLANE;
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if (ONENAND_IS_DDP(this))
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this->options |= ONENAND_HAS_2PLANE;
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else
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this->options |= ONENAND_HAS_4KB_PAGE;
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case ONENAND_DEVICE_DENSITY_2Gb:
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/* 2Gb DDP does not have 2 plane */
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@ -3393,7 +3397,7 @@ static void onenand_check_features(struct mtd_info *mtd)
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break;
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}
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if (ONENAND_IS_MLC(this))
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if (ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this))
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this->options &= ~ONENAND_HAS_2PLANE;
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if (FLEXONENAND(this)) {
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@ -3407,6 +3411,8 @@ static void onenand_check_features(struct mtd_info *mtd)
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printk(KERN_DEBUG "Chip support all block unlock\n");
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if (this->options & ONENAND_HAS_2PLANE)
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printk(KERN_DEBUG "Chip has 2 plane\n");
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if (this->options & ONENAND_HAS_4KB_PAGE)
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printk(KERN_DEBUG "Chip has 4KiB pagesize\n");
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}
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/**
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@ -3799,7 +3805,7 @@ static int onenand_probe(struct mtd_info *mtd)
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/* The data buffer size is equal to page size */
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mtd->writesize = this->read_word(this->base + ONENAND_REG_DATA_BUFFER_SIZE);
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/* We use the full BufferRAM */
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if (ONENAND_IS_MLC(this))
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if (ONENAND_IS_MLC(this) || ONENAND_IS_4KB_PAGE(this))
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mtd->writesize <<= 1;
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mtd->oobsize = mtd->writesize >> 5;
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@ -175,10 +175,14 @@ struct onenand_chip {
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#define ONENAND_HAS_CONT_LOCK (0x0001)
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#define ONENAND_HAS_UNLOCK_ALL (0x0002)
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#define ONENAND_HAS_2PLANE (0x0004)
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#define ONENAND_HAS_4KB_PAGE (0x0008)
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#define ONENAND_SKIP_UNLOCK_CHECK (0x0100)
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#define ONENAND_PAGEBUF_ALLOC (0x1000)
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#define ONENAND_OOBBUF_ALLOC (0x2000)
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#define ONENAND_IS_4KB_PAGE(this) \
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(this->options & ONENAND_HAS_4KB_PAGE)
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/*
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* OneNAND Flash Manufacturer ID Codes
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*/
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