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| author | Richard Weinberger <richard@nod.at> | 2020-08-07 08:54:16 +0200 |
|---|---|---|
| committer | Richard Weinberger <richard@nod.at> | 2020-08-07 08:54:16 +0200 |
| commit | 6a1380271b75e0d9a961e192e56b733fedf7a23a (patch) | |
| tree | 629e4667798883dade207c9be602b61261c1265a | |
| parent | 0c84b7fc973f9220ef8732c430ccc7c92d083184 (diff) | |
| parent | da151e3458c825fa9d57c2db6e37748166e4d129 (diff) | |
| download | linux-6a1380271b75e0d9a961e192e56b733fedf7a23a.tar.gz linux-6a1380271b75e0d9a961e192e56b733fedf7a23a.tar.bz2 linux-6a1380271b75e0d9a961e192e56b733fedf7a23a.zip | |
Merge tag 'nand/for-5.9' of git://git.kernel.org/pub/scm/linux/kernel/git/mtd/linux into mtd/next
Core changes:
* Drop useless 'depends on' in Kconfig
* Add an extra level in the Kconfig hierarchy
* Trivial spellings
* Dynamic allocation of the interface configurations
* Dropping the default ONFI timing mode
* Various cleanup (types, structures, naming, comments)
* Hide the chip->data_interface indirection
* Add the generic rb-gpios property
* Add the ->choose_interface_config() hook
* Introduce nand_choose_best_sdr_timings()
* Use default values for tPROG_max and tBERS_max
* Avoid redefining tR_max and tCCS_min
* Add a helper to find the closest ONFI mode
* bcm63xx MTD parsers: simplify CFE detection
Raw NAND controller drivers changes:
* fsl-upm: Deprecation of specific DT properties
* fsl_upm: Driver rework and cleanup in favor of ->exec_op()
* Ingenic: Cleanup ARRAY_SIZE() vs sizeof() use
* brcmnand: ECC error handling on EDU transfers
* brcmnand: Don't default to EDU transfers
* qcom: Set BAM mode only if not set already
* qcom: Avoid write to unavailable register
* gpio: Driver rework in favor of ->exec_op()
* tango: ->exec_op() conversion
* mtk: ->exec_op() conversion
Raw NAND chip drivers changes:
* toshiba: Implement ->choose_interface_config() for TH58NVG2S3HBAI4
* toshiba: Implement ->choose_interface_config() for TC58NVG0S3E
* toshiba: Implement ->choose_interface_config() for TC58TEG5DCLTA00
* hynix: Implement ->choose_interface_config() for H27UCG8T2ATR-BC
41 files changed, 1018 insertions, 747 deletions
diff --git a/Documentation/devicetree/bindings/mtd/fsl-upm-nand.txt b/Documentation/devicetree/bindings/mtd/fsl-upm-nand.txt index fce4894f5a98..25f07c1f9e44 100644 --- a/Documentation/devicetree/bindings/mtd/fsl-upm-nand.txt +++ b/Documentation/devicetree/bindings/mtd/fsl-upm-nand.txt @@ -7,14 +7,16 @@ Required properties: - fsl,upm-cmd-offset : UPM pattern offset for the command latch. Optional properties: -- fsl,upm-wait-flags : add chip-dependent short delays after running the - UPM pattern (0x1), after writing a data byte (0x2) or after - writing out a buffer (0x4). - fsl,upm-addr-line-cs-offsets : address offsets for multi-chip support. The corresponding address lines are used to select the chip. - gpios : may specify optional GPIOs connected to the Ready-Not-Busy pins (R/B#). For multi-chip devices, "n" GPIO definitions are required according to the number of chips. + +Deprecated properties: +- fsl,upm-wait-flags : add chip-dependent short delays after running the + UPM pattern (0x1), after writing a data byte (0x2) or after + writing out a buffer (0x4). - chip-delay : chip dependent delay for transferring data from array to read registers (tR). Required if property "gpios" is not used (R/B# pins not connected). @@ -52,8 +54,6 @@ upm@3,0 { fsl,upm-cmd-offset = <0x08>; /* Multi-chip NAND device */ fsl,upm-addr-line-cs-offsets = <0x0 0x200>; - fsl,upm-wait-flags = <0x5>; - chip-delay = <25>; // in micro-seconds nand@0 { #address-cells = <1>; diff --git a/Documentation/devicetree/bindings/mtd/nand-controller.yaml b/Documentation/devicetree/bindings/mtd/nand-controller.yaml index cde7c4d79efe..40fc5b0b2b8c 100644 --- a/Documentation/devicetree/bindings/mtd/nand-controller.yaml +++ b/Documentation/devicetree/bindings/mtd/nand-controller.yaml @@ -114,6 +114,13 @@ patternProperties: description: Contains the native Ready/Busy IDs. + rb-gpios: + description: + Contains one or more GPIO descriptor (the numper of descriptor + depends on the number of R/B pins exposed by the flash) for the + Ready/Busy pins. Active state refers to the NAND ready state and + should be set to GPIOD_ACTIVE_HIGH unless the signal is inverted. + required: - reg diff --git a/drivers/mtd/nand/Kconfig b/drivers/mtd/nand/Kconfig index a5d8a211cb8a..c1a45b071165 100644 --- a/drivers/mtd/nand/Kconfig +++ b/drivers/mtd/nand/Kconfig @@ -1,7 +1,12 @@ # SPDX-License-Identifier: GPL-2.0-only + +menu "NAND" + config MTD_NAND_CORE tristate source "drivers/mtd/nand/onenand/Kconfig" source "drivers/mtd/nand/raw/Kconfig" source "drivers/mtd/nand/spi/Kconfig" + +endmenu diff --git a/drivers/mtd/nand/onenand/Kconfig b/drivers/mtd/nand/onenand/Kconfig index 572b8fe69abb..1a0e65bc246e 100644 --- a/drivers/mtd/nand/onenand/Kconfig +++ b/drivers/mtd/nand/onenand/Kconfig @@ -1,7 +1,6 @@ # SPDX-License-Identifier: GPL-2.0-only menuconfig MTD_ONENAND tristate "OneNAND Device Support" - depends on MTD depends on HAS_IOMEM help This enables support for accessing all type of OneNAND flash diff --git a/drivers/mtd/nand/raw/Kconfig b/drivers/mtd/nand/raw/Kconfig index 8dd0d7c8dfcf..1203775023ad 100644 --- a/drivers/mtd/nand/raw/Kconfig +++ b/drivers/mtd/nand/raw/Kconfig @@ -12,7 +12,6 @@ config MTD_NAND_ECC_SW_HAMMING_SMC menuconfig MTD_RAW_NAND tristate "Raw/Parallel NAND Device Support" - depends on MTD select MTD_NAND_CORE select MTD_NAND_ECC_SW_HAMMING help diff --git a/drivers/mtd/nand/raw/ams-delta.c b/drivers/mtd/nand/raw/ams-delta.c index 3711e7a0436c..fdba155416d2 100644 --- a/drivers/mtd/nand/raw/ams-delta.c +++ b/drivers/mtd/nand/raw/ams-delta.c @@ -191,8 +191,8 @@ static int gpio_nand_exec_op(struct nand_chip *this, return ret; } -static int gpio_nand_setup_data_interface(struct nand_chip *this, int csline, - const struct nand_data_interface *cf) +static int gpio_nand_setup_interface(struct nand_chip *this, int csline, + const struct nand_interface_config *cf) { struct gpio_nand *priv = nand_get_controller_data(this); const struct nand_sdr_timings *sdr = nand_get_sdr_timings(cf); @@ -217,7 +217,7 @@ static int gpio_nand_setup_data_interface(struct nand_chip *this, int csline, static const struct nand_controller_ops gpio_nand_ops = { .exec_op = gpio_nand_exec_op, - .setup_data_interface = gpio_nand_setup_data_interface, + .setup_interface = gpio_nand_setup_interface, }; /* diff --git a/drivers/mtd/nand/raw/arasan-nand-controller.c b/drivers/mtd/nand/raw/arasan-nand-controller.c index 7141dcccba3c..12c643e97c85 100644 --- a/drivers/mtd/nand/raw/arasan-nand-controller.c +++ b/drivers/mtd/nand/raw/arasan-nand-controller.c @@ -854,8 +854,8 @@ static int anfc_exec_op(struct nand_chip *chip, return nand_op_parser_exec_op(chip, &anfc_op_parser, op, check_only); } -static int anfc_setup_data_interface(struct nand_chip *chip, int target, - const struct nand_data_interface *conf) +static int anfc_setup_interface(struct nand_chip *chip, int target, + const struct nand_interface_config *conf) { struct anand *anand = to_anand(chip); struct arasan_nfc *nfc = to_anfc(chip->controller); @@ -1083,7 +1083,7 @@ static void anfc_detach_chip(struct nand_chip *chip) static const struct nand_controller_ops anfc_ops = { .exec_op = anfc_exec_op, - .setup_data_interface = anfc_setup_data_interface, + .setup_interface = anfc_setup_interface, .attach_chip = anfc_attach_chip, .detach_chip = anfc_detach_chip, }; diff --git a/drivers/mtd/nand/raw/atmel/nand-controller.c b/drivers/mtd/nand/raw/atmel/nand-controller.c index 46a3724a788e..c9818f548d07 100644 --- a/drivers/mtd/nand/raw/atmel/nand-controller.c +++ b/drivers/mtd/nand/raw/atmel/nand-controller.c @@ -200,8 +200,8 @@ struct atmel_nand_controller_ops { void (*nand_init)(struct atmel_nand_controller *nc, struct atmel_nand *nand); int (*ecc_init)(struct nand_chip *chip); - int (*setup_data_interface)(struct atmel_nand *nand, int csline, - const struct nand_data_interface *conf); + int (*setup_interface)(struct atmel_nand *nand, int csline, + const struct nand_interface_config *conf); }; struct atmel_nand_controller_caps { @@ -1168,7 +1168,7 @@ static int atmel_hsmc_nand_ecc_init(struct nand_chip *chip) } static int atmel_smc_nand_prepare_smcconf(struct atmel_nand *nand, - const struct nand_data_interface *conf, + const struct nand_interface_config *conf, struct atmel_smc_cs_conf *smcconf) { u32 ncycles, totalcycles, timeps, mckperiodps; @@ -1397,9 +1397,9 @@ static int atmel_smc_nand_prepare_smcconf(struct atmel_nand *nand, return 0; } -static int atmel_smc_nand_setup_data_interface(struct atmel_nand *nand, +static int atmel_smc_nand_setup_interface(struct atmel_nand *nand, int csline, - const struct nand_data_interface *conf) + const struct nand_interface_config *conf) { struct atmel_nand_controller *nc; struct atmel_smc_cs_conf smcconf; @@ -1422,9 +1422,9 @@ static int atmel_smc_nand_setup_data_interface(struct atmel_nand *nand, return 0; } -static int atmel_hsmc_nand_setup_data_interface(struct atmel_nand *nand, +static int atmel_hsmc_nand_setup_interface(struct atmel_nand *nand, int csline, - const struct nand_data_interface *conf) + const struct nand_interface_config *conf) { struct atmel_hsmc_nand_controller *nc; struct atmel_smc_cs_conf smcconf; @@ -1452,8 +1452,8 @@ static int atmel_hsmc_nand_setup_data_interface(struct atmel_nand *nand, return 0; } -static int atmel_nand_setup_data_interface(struct nand_chip *chip, int csline, - const struct nand_data_interface *conf) +static int atmel_nand_setup_interface(struct nand_chip *chip, int csline, + const struct nand_interface_config *conf) { struct atmel_nand *nand = to_atmel_nand(chip); struct atmel_nand_controller *nc; @@ -1464,7 +1464,7 @@ static int atmel_nand_setup_data_interface(struct nand_chip *chip, int csline, (csline < 0 && csline != NAND_DATA_IFACE_CHECK_ONLY)) return -EINVAL; - return nc->caps->ops->setup_data_interface(nand, csline, conf); + return nc->caps->ops->setup_interface(nand, csline, conf); } static void atmel_nand_init(struct atmel_nand_controller *nc, @@ -1483,7 +1483,7 @@ static void atmel_nand_init(struct atmel_nand_controller *nc, chip->legacy.write_buf = atmel_nand_write_buf; chip->legacy.select_chip = atmel_nand_select_chip; - if (!nc->mck || !nc->caps->ops->setup_data_interface) + if (!nc->mck || !nc->caps->ops->setup_interface) chip->options |= NAND_KEEP_TIMINGS; /* Some NANDs require a longer delay than the default one (20us). */ @@ -1956,7 +1956,7 @@ static int atmel_nand_attach_chip(struct nand_chip *chip) static const struct nand_controller_ops atmel_nand_controller_ops = { .attach_chip = atmel_nand_attach_chip, - .setup_data_interface = atmel_nand_setup_data_interface, + .setup_interface = atmel_nand_setup_interface, }; static int atmel_nand_controller_init(struct atmel_nand_controller *nc, @@ -2318,7 +2318,7 @@ static const struct atmel_nand_controller_ops atmel_hsmc_nc_ops = { .remove = atmel_hsmc_nand_controller_remove, .ecc_init = atmel_hsmc_nand_ecc_init, .nand_init = atmel_hsmc_nand_init, - .setup_data_interface = atmel_hsmc_nand_setup_data_interface, + .setup_interface = atmel_hsmc_nand_setup_interface, }; static const struct atmel_nand_controller_caps atmel_sama5_nc_caps = { @@ -2375,10 +2375,10 @@ atmel_smc_nand_controller_remove(struct atmel_nand_controller *nc) /* * The SMC reg layout of at91rm9200 is completely different which prevents us - * from re-using atmel_smc_nand_setup_data_interface() for the - * ->setup_data_interface() hook. + * from re-using atmel_smc_nand_setup_interface() for the + * ->setup_interface() hook. * At this point, there's no support for the at91rm9200 SMC IP, so we leave - * ->setup_data_interface() unassigned. + * ->setup_interface() unassigned. */ static const struct atmel_nand_controller_ops at91rm9200_nc_ops = { .probe = atmel_smc_nand_controller_probe, @@ -2399,7 +2399,7 @@ static const struct atmel_nand_controller_ops atmel_smc_nc_ops = { .remove = atmel_smc_nand_controller_remove, .ecc_init = atmel_nand_ecc_init, .nand_init = atmel_smc_nand_init, - .setup_data_interface = atmel_smc_nand_setup_data_interface, + .setup_interface = atmel_smc_nand_setup_interface, }; static const struct atmel_nand_controller_caps atmel_sam9260_nc_caps = { diff --git a/drivers/mtd/nand/raw/brcmnand/brcmnand.c b/drivers/mtd/nand/raw/brcmnand/brcmnand.c index 44068e9eea03..a4033d32a710 100644 --- a/drivers/mtd/nand/raw/brcmnand/brcmnand.c +++ b/drivers/mtd/nand/raw/brcmnand/brcmnand.c @@ -1918,6 +1918,22 @@ static int brcmnand_edu_trans(struct brcmnand_host *host, u64 addr, u32 *buf, edu_writel(ctrl, EDU_STOP, 0); /* force stop */ edu_readl(ctrl, EDU_STOP); + if (!ret && edu_cmd == EDU_CMD_READ) { + u64 err_addr = 0; + + /* + * check for ECC errors here, subpage ECC errors are + * retained in ECC error address register + */ + err_addr = brcmnand_get_uncorrecc_addr(ctrl); + if (!err_addr) { + err_addr = brcmnand_get_correcc_addr(ctrl); + if (err_addr) + ret = -EUCLEAN; + } else + ret = -EBADMSG; + } + return ret; } @@ -2124,6 +2140,7 @@ static int brcmnand_read(struct mtd_info *mtd, struct nand_chip *chip, u64 err_addr = 0; int err; bool retry = true; + bool edu_err = false; dev_dbg(ctrl->dev, "read %llx -> %p\n", (unsigned long long)addr, buf); @@ -2141,6 +2158,10 @@ try_dmaread: else return -EIO; } + + if (has_edu(ctrl) && err_addr) + edu_err = true; + } else { if (oob) memset(oob, 0x99, mtd->oobsize); @@ -2188,6 +2209,11 @@ try_dmaread: if (mtd_is_bitflip(err)) { unsigned int corrected = brcmnand_count_corrected(ctrl); + /* in case of EDU correctable error we read again using PIO */ + if (edu_err) + err = brcmnand_read_by_pio(mtd, chip, addr, trans, buf, + oob, &err_addr); + dev_dbg(ctrl->dev, "corrected error at 0x%llx\n", (unsigned long long)err_addr); mtd->ecc_stats.corrected += corrected; @@ -3023,8 +3049,9 @@ int brcmnand_probe(struct platform_device *pdev, struct brcmnand_soc *soc) if (ret < 0) goto err; - /* set edu transfer function to call */ - ctrl->dma_trans = brcmnand_edu_trans; + if (has_edu(ctrl)) + /* set edu transfer function to call */ + ctrl->dma_trans = brcmnand_edu_trans; } /* Disable automatic device ID config, direct addressing */ diff --git a/drivers/mtd/nand/raw/cadence-nand-controller.c b/drivers/mtd/nand/raw/cadence-nand-controller.c index c405722adfe1..574cbd3446e5 100644 --- a/drivers/mtd/nand/raw/cadence-nand-controller.c +++ b/drivers/mtd/nand/raw/cadence-nand-controller.c @@ -2303,8 +2303,8 @@ static inline u32 calc_tdvw(u32 trp_cnt, u32 clk_period, u32 trhoh_min, } static int -cadence_nand_setup_data_interface(struct nand_chip *chip, int chipnr, - const struct nand_data_interface *conf) +cadence_nand_setup_interface(struct nand_chip *chip, int chipnr, + const struct nand_interface_config *conf) { const struct nand_sdr_timings *sdr; struct cdns_nand_ctrl *cdns_ctrl = to_cdns_nand_ctrl(chip->controller); @@ -2690,7 +2690,7 @@ static int cadence_nand_attach_chip(struct nand_chip *chip) static const struct nand_controller_ops cadence_nand_controller_ops = { .attach_chip = cadence_nand_attach_chip, .exec_op = cadence_nand_exec_op, - .setup_data_interface = cadence_nand_setup_data_interface, + .setup_interface = cadence_nand_setup_interface, }; static int cadence_nand_chip_init(struct cdns_nand_ctrl *cdns_ctrl, diff --git a/drivers/mtd/nand/raw/denali.c b/drivers/mtd/nand/raw/denali.c index 4e6e1578aa2d..9d99dade95ce 100644 --- a/drivers/mtd/nand/raw/denali.c +++ b/drivers/mtd/nand/raw/denali.c @@ -761,8 +761,8 @@ static int denali_write_page(struct nand_chip *chip, const u8 *buf, return denali_page_xfer(chip, (void *)buf, mtd->writesize, page, true); } -static int denali_setup_data_interface(struct nand_chip *chip, int chipnr, - const struct nand_data_interface *conf) +static int denali_setup_interface(struct nand_chip *chip, int chipnr, + const struct nand_interface_config *conf) { static const unsigned int data_setup_on_host = 10000; struct denali_controller *denali = to_denali_controller(chip); @@ -1173,7 +1173,7 @@ static int denali_exec_op(struct nand_chip *chip, static const struct nand_controller_ops denali_controller_ops = { .attach_chip = denali_attach_chip, .exec_op = denali_exec_op, - .setup_data_interface = denali_setup_data_interface, + .setup_interface = denali_setup_interface, }; int denali_chip_init(struct denali_controller *denali, @@ -1230,7 +1230,7 @@ int denali_chip_init(struct denali_controller *denali, chip->buf_align = 16; } - /* clk rate info is needed for setup_data_interface */ + /* clk rate info is needed for setup_interface */ if (!denali->clk_rate || !denali->clk_x_rate) chip->options |= NAND_KEEP_TIMINGS; diff --git a/drivers/mtd/nand/raw/fsl_upm.c b/drivers/mtd/nand/raw/fsl_upm.c index 627deb26db51..197850aeb261 100644 --- a/drivers/mtd/nand/raw/fsl_upm.c +++ b/drivers/mtd/nand/raw/fsl_upm.c @@ -14,32 +14,23 @@ #include <linux/mtd/nand_ecc.h> #include <linux/mtd/partitions.h> #include <linux/mtd/mtd.h> -#include <linux/of_address.h> #include <linux/of_platform.h> -#include <linux/of_gpio.h> #include <linux/io.h> #include <linux/slab.h> #include <asm/fsl_lbc.h> -#define FSL_UPM_WAIT_RUN_PATTERN 0x1 -#define FSL_UPM_WAIT_WRITE_BYTE 0x2 -#define FSL_UPM_WAIT_WRITE_BUFFER 0x4 - struct fsl_upm_nand { + struct nand_controller base; struct device *dev; struct nand_chip chip; - int last_ctrl; - struct mtd_partition *parts; struct fsl_upm upm; uint8_t upm_addr_offset; uint8_t upm_cmd_offset; void __iomem *io_base; - int rnb_gpio[NAND_MAX_CHIPS]; + struct gpio_desc *rnb_gpio[NAND_MAX_CHIPS]; uint32_t mchip_offsets[NAND_MAX_CHIPS]; uint32_t mchip_count; uint32_t mchip_number; - int chip_delay; - uint32_t wait_flags; }; static inline struct fsl_upm_nand *to_fsl_upm_nand(struct mtd_info *mtdinfo) @@ -48,106 +39,6 @@ static inline struct fsl_upm_nand *to_fsl_upm_nand(struct mtd_info *mtdinfo) chip); } -static int fun_chip_ready(struct nand_chip *chip) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - - if (gpio_get_value(fun->rnb_gpio[fun->mchip_number])) - return 1; - - dev_vdbg(fun->dev, "busy\n"); - return 0; -} - -static void fun_wait_rnb(struct fsl_upm_nand *fun) -{ - if (fun->rnb_gpio[fun->mchip_number] >= 0) { - struct mtd_info *mtd = nand_to_mtd(&fun->chip); - int cnt = 1000000; - - while (--cnt && !fun_chip_ready(&fun->chip)) - cpu_relax(); - if (!cnt) - dev_err(fun->dev, "tired waiting for RNB\n"); - } else { - ndelay(100); - } -} - -static void fun_cmd_ctrl(struct nand_chip *chip, int cmd, unsigned int ctrl) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - u32 mar; - - if (!(ctrl & fun->last_ctrl)) { - fsl_upm_end_pattern(&fun->upm); - - if (cmd == NAND_CMD_NONE) - return; - - fun->last_ctrl = ctrl & (NAND_ALE | NAND_CLE); - } - - if (ctrl & NAND_CTRL_CHANGE) { - if (ctrl & NAND_ALE) - fsl_upm_start_pattern(&fun->upm, fun->upm_addr_offset); - else if (ctrl & NAND_CLE) - fsl_upm_start_pattern(&fun->upm, fun->upm_cmd_offset); - } - - mar = (cmd << (32 - fun->upm.width)) | - fun->mchip_offsets[fun->mchip_number]; - fsl_upm_run_pattern(&fun->upm, chip->legacy.IO_ADDR_R, mar); - - if (fun->wait_flags & FSL_UPM_WAIT_RUN_PATTERN) - fun_wait_rnb(fun); -} - -static void fun_select_chip(struct nand_chip *chip, int mchip_nr) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - - if (mchip_nr == -1) { - chip->legacy.cmd_ctrl(chip, NAND_CMD_NONE, 0 | NAND_CTRL_CHANGE); - } else if (mchip_nr >= 0 && mchip_nr < NAND_MAX_CHIPS) { - fun->mchip_number = mchip_nr; - chip->legacy.IO_ADDR_R = fun->io_base + fun->mchip_offsets[mchip_nr]; - chip->legacy.IO_ADDR_W = chip->legacy.IO_ADDR_R; - } else { - BUG(); - } -} - -static uint8_t fun_read_byte(struct nand_chip *chip) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - - return in_8(fun->chip.legacy.IO_ADDR_R); -} - -static void fun_read_buf(struct nand_chip *chip, uint8_t *buf, int len) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - int i; - - for (i = 0; i < len; i++) - buf[i] = in_8(fun->chip.legacy.IO_ADDR_R); -} - -static void fun_write_buf(struct nand_chip *chip, const uint8_t *buf, int len) -{ - struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); - int i; - - for (i = 0; i < len; i++) { - out_8(fun->chip.legacy.IO_ADDR_W, buf[i]); - if (fun->wait_flags & FSL_UPM_WAIT_WRITE_BYTE) - fun_wait_rnb(fun); - } - if (fun->wait_flags & FSL_UPM_WAIT_WRITE_BUFFER) - fun_wait_rnb(fun); -} - static int fun_chip_init(struct fsl_upm_nand *fun, const struct device_node *upm_np, const struct resource *io_res) @@ -156,21 +47,9 @@ static int fun_chip_init(struct fsl_upm_nand *fun, int ret; struct device_node *flash_np; - fun->chip.legacy.IO_ADDR_R = fun->io_base; - fun->chip.legacy.IO_ADDR_W = fun->io_base; - fun->chip.legacy.cmd_ctrl = fun_cmd_ctrl; - fun->chip.legacy.chip_delay = fun->chip_delay; - fun->chip.legacy.read_byte = fun_read_byte; - fun->chip.legacy.read_buf = fun_read_buf; - fun->chip.legacy.write_buf = fun_write_buf; fun->chip.ecc.mode = NAND_ECC_SOFT; fun->chip.ecc.algo = NAND_ECC_HAMMING; - if (fun->mchip_count > 1) - fun->chip.legacy.select_chip = fun_select_chip; - - if (fun->rnb_gpio[0] >= 0) - fun->chip.legacy.dev_ready = fun_chip_ready; - + fun->chip.controller = &fun->base; mtd->dev.parent = fun->dev; flash_np = of_get_next_child(upm_np, NULL); @@ -178,8 +57,9 @@ static int fun_chip_init(struct fsl_upm_nand *fun, return -ENODEV; nand_set_flash_node(&fun->chip, flash_np); - mtd->name = kasprintf(GFP_KERNEL, "0x%llx.%pOFn", (u64)io_res->start, - flash_np); + mtd->name = devm_kasprintf(fun->dev, GFP_KERNEL, "0x%llx.%pOFn", + (u64)io_res->start, + flash_np); if (!mtd->name) { ret = -ENOMEM; goto err; @@ -192,51 +72,130 @@ static int fun_chip_init(struct fsl_upm_nand *fun, ret = mtd_device_register(mtd, NULL, 0); err: of_node_put(flash_np); - if (ret) - kfree(mtd->name); return ret; } +static int func_exec_instr(struct nand_chip *chip, + const struct nand_op_instr *instr) +{ + struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); + u32 mar, reg_offs = fun->mchip_offsets[fun->mchip_number]; + unsigned int i; + const u8 *out; + u8 *in; + + switch (instr->type) { + case NAND_OP_CMD_INSTR: + fsl_upm_start_pattern(&fun->upm, fun->upm_cmd_offset); + mar = (instr->ctx.cmd.opcode << (32 - fun->upm.width)) | + reg_offs; + fsl_upm_run_pattern(&fun->upm, fun->io_base + reg_offs, mar); + fsl_upm_end_pattern(&fun->upm); + return 0; + + case NAND_OP_ADDR_INSTR: + fsl_upm_start_pattern(&fun->upm, fun->upm_addr_offset); + for (i = 0; i < instr->ctx.addr.naddrs; i++) { + mar = (instr->ctx.addr.addrs[i] << (32 - fun->upm.width)) | + reg_offs; + fsl_upm_run_pattern(&fun->upm, fun->io_base + reg_offs, mar); + } + fsl_upm_end_pattern(&fun->upm); + return 0; + + case NAND_OP_DATA_IN_INSTR: + in = instr->ctx.data.buf.in; + for (i = 0; i < instr->ctx.data.len; i++) + in[i] = in_8(fun->io_base + reg_offs); + return 0; + + case NAND_OP_DATA_OUT_INSTR: + out = instr->ctx.data.buf.out; + for (i = 0; i < instr->ctx.data.len; i++) + out_8(fun->io_base + reg_offs, out[i]); + return 0; + + case NAND_OP_WAITRDY_INSTR: + if (!fun->rnb_gpio[fun->mchip_number]) + return nand_soft_waitrdy(chip, instr->ctx.waitrdy.timeout_ms); + + return nand_gpio_waitrdy(chip, fun->rnb_gpio[fun->mchip_number], + instr->ctx.waitrdy.timeout_ms); + + default: + return -EINVAL; + } + + return 0; +} + +static int fun_exec_op(struct nand_chip *chip, const struct nand_operation *op, + bool check_only) +{ + struct fsl_upm_nand *fun = to_fsl_upm_nand(nand_to_mtd(chip)); + unsigned int i; |
