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author | Linus Torvalds <torvalds@linux-foundation.org> | 2019-03-05 03:59:37 +0100 |
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committer | Linus Torvalds <torvalds@linux-foundation.org> | 2019-03-05 03:59:37 +0100 |
commit | 811c16a2a2de6fcdeea188a770600210943f8947 (patch) | |
tree | f2c4ebfb33da387f8a52d83b76e9d36a406cae44 /drivers/mtd/nand/spi/gigadevice.c | |
parent | Merge tag 'vfio-v5.1-rc1' of git://github.com/awilliam/linux-vfio (diff) | |
parent | Merge tag 'nand/for-5.1' of git://git.infradead.org/linux-mtd into mtd/next (diff) | |
download | linux-811c16a2a2de6fcdeea188a770600210943f8947.tar.xz linux-811c16a2a2de6fcdeea188a770600210943f8947.zip |
Merge tag 'mtd/for-5.1' of git://git.infradead.org/linux-mtd
Pull MTD updates from Boris Brezillon:
"Core MTD changes:
- Use struct_size() where appropriate
- mtd_{read,write}() as wrappers around mtd_{read,write}_oob()
- Fix misuse of PTR_ERR() in docg3
- Coding style improvements in mtdcore.c
SPI NOR changes:
Core changes:
- Add support of octal mode I/O transfer
- Add a bunch of SPI NOR entries to the flash_info table
SPI NOR controller driver changes:
- cadence-quadspi:
* Add support for Octal SPI controller
* write upto 8-bytes data in STIG mode
- mtk-quadspi:
* rename config to a common one
* add SNOR_HWCAPS_READ to spi_nor_hwcaps mask
- Add Tudor as SPI-NOR co-maintainer
NAND changes:
NAND core changes:
- Fourth batch of fixes/cleanup to the raw NAND core impacting
various controller drivers (Sunxi, Marvell, MTK, TMIO, OMAP2).
- Check the return code of nand_reset() and nand_readid_op().
- Remove ->legacy.erase and single_erase().
- Simplify the locking.
- Several implicit fall through annotations.
Raw NAND controllers drivers changes:
- Fix various possible object reference leaks (MTK, JZ4780, Atmel)
- ST:
* Add support for STM32 FMC2 NAND flash controller
- Meson:
* Add support for Amlogic NAND flash controller
- Denali:
* Several cleanup patches
- Sunxi:
* Several cleanup patches
- FSMC:
* Disable NAND on remove()
* Reset NAND timings on resume()
SPI-NAND drivers changes:
- Toshiba:
* Add support for all Toshiba products.
- Macronix:
* Fix ECC status read.
- Gigadevice:
* Add support for GD5F1GQ4UExxG"
* tag 'mtd/for-5.1' of git://git.infradead.org/linux-mtd: (64 commits)
mtd: spi-nor: Fix wrong abbreviation HWCPAS
mtd: spi-nor: cadence-quadspi: fix spelling mistake: "Couldnt't" -> "Couldn't"
mtd: spi-nor: Add support for en25qh64
mtd: spi-nor: Add support for MX25V8035F
mtd: spi-nor: Add support for EN25Q80A
mtd: spi-nor: cadence-quadspi: Add support for Octal SPI controller
dt-bindings: cadence-quadspi: Add new compatible for AM654 SoC
mtd: spi-nor: split s25fl128s into s25fl128s0 and s25fl128s1
mtd: spi-nor: cadence-quadspi: write upto 8-bytes data in STIG mode
mtd: spi-nor: Add support for mx25u3235f
mtd: rawnand: denali_dt: remove single anonymous clock support
mtd: rawnand: mtk: fix possible object reference leak
mtd: rawnand: jz4780: fix possible object reference leak
mtd: rawnand: atmel: fix possible object reference leak
mtd: rawnand: fsmc: Disable NAND on remove()
mtd: rawnand: fsmc: Reset NAND timings on resume()
mtd: spinand: Add support for GigaDevice GD5F1GQ4UExxG
mtd: rawnand: denali: remove unused dma_addr field from denali_nand_info
mtd: rawnand: denali: remove unused function argument 'raw'
mtd: rawnand: denali: remove unneeded denali_reset_irq() call
...
Diffstat (limited to 'drivers/mtd/nand/spi/gigadevice.c')
-rw-r--r-- | drivers/mtd/nand/spi/gigadevice.c | 83 |
1 files changed, 83 insertions, 0 deletions
diff --git a/drivers/mtd/nand/spi/gigadevice.c b/drivers/mtd/nand/spi/gigadevice.c index e4141c20947a..0b49d8264bef 100644 --- a/drivers/mtd/nand/spi/gigadevice.c +++ b/drivers/mtd/nand/spi/gigadevice.c @@ -12,6 +12,8 @@ #define GD5FXGQ4XA_STATUS_ECC_1_7_BITFLIPS (1 << 4) #define GD5FXGQ4XA_STATUS_ECC_8_BITFLIPS (3 << 4) +#define GD5FXGQ4UEXXG_REG_STATUS2 0xf0 + static SPINAND_OP_VARIANTS(read_cache_variants, SPINAND_PAGE_READ_FROM_CACHE_QUADIO_OP(0, 2, NULL, 0), SPINAND_PAGE_READ_FROM_CACHE_X4_OP(0, 1, NULL, 0), @@ -81,11 +83,83 @@ static int gd5fxgq4xa_ecc_get_status(struct spinand_device *spinand, return -EINVAL; } +static int gd5fxgq4uexxg_ooblayout_ecc(struct mtd_info *mtd, int section, + struct mtd_oob_region *region) +{ + if (section) + return -ERANGE; + + region->offset = 64; + region->length = 64; + + return 0; +} + +static int gd5fxgq4uexxg_ooblayout_free(struct mtd_info *mtd, int section, + struct mtd_oob_region *region) +{ + if (section) + return -ERANGE; + + /* Reserve 1 bytes for the BBM. */ + region->offset = 1; + region->length = 63; + + return 0; +} + +static int gd5fxgq4uexxg_ecc_get_status(struct spinand_device *spinand, + u8 status) +{ + u8 status2; + struct spi_mem_op op = SPINAND_GET_FEATURE_OP(GD5FXGQ4UEXXG_REG_STATUS2, + &status2); + int ret; + + switch (status & STATUS_ECC_MASK) { + case STATUS_ECC_NO_BITFLIPS: + return 0; + + case GD5FXGQ4XA_STATUS_ECC_1_7_BITFLIPS: + /* + * Read status2 register to determine a more fine grained + * bit error status + */ + ret = spi_mem_exec_op(spinand->spimem, &op); + if (ret) + return ret; + + /* + * 4 ... 7 bits are flipped (1..4 can't be detected, so + * report the maximum of 4 in this case + */ + /* bits sorted this way (3...0): ECCS1,ECCS0,ECCSE1,ECCSE0 */ + return ((status & STATUS_ECC_MASK) >> 2) | + ((status2 & STATUS_ECC_MASK) >> 4); + + case GD5FXGQ4XA_STATUS_ECC_8_BITFLIPS: + return 8; + + case STATUS_ECC_UNCOR_ERROR: + return -EBADMSG; + + default: + break; + } + + return -EINVAL; +} + static const struct mtd_ooblayout_ops gd5fxgq4xa_ooblayout = { .ecc = gd5fxgq4xa_ooblayout_ecc, .free = gd5fxgq4xa_ooblayout_free, }; +static const struct mtd_ooblayout_ops gd5fxgq4uexxg_ooblayout = { + .ecc = gd5fxgq4uexxg_ooblayout_ecc, + .free = gd5fxgq4uexxg_ooblayout_free, +}; + static const struct spinand_info gigadevice_spinand_table[] = { SPINAND_INFO("GD5F1GQ4xA", 0xF1, NAND_MEMORG(1, 2048, 64, 64, 1024, 1, 1, 1), @@ -114,6 +188,15 @@ static const struct spinand_info gigadevice_spinand_table[] = { 0, SPINAND_ECCINFO(&gd5fxgq4xa_ooblayout, gd5fxgq4xa_ecc_get_status)), + SPINAND_INFO("GD5F1GQ4UExxG", 0xd1, + NAND_MEMORG(1, 2048, 128, 64, 1024, 1, 1, 1), + NAND_ECCREQ(8, 512), + SPINAND_INFO_OP_VARIANTS(&read_cache_variants, + &write_cache_variants, + &update_cache_variants), + 0, + SPINAND_ECCINFO(&gd5fxgq4uexxg_ooblayout, + gd5fxgq4uexxg_ecc_get_status)), }; static int gigadevice_spinand_detect(struct spinand_device *spinand) |