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mtd: spi-nor: add the basic data structures
The spi_nor{} is cloned from the m25p{}. The spi_nor{} can be used by both the m25p80 and spi-nor controller. We also add the spi_nor_xfer_cfg{} which can be used by the two fundamental primitives: read_xfer/write_xfer. 1) the hooks for spi_nor{}: @prepare/unpreare: used to do some work before or after the read/write/erase/lock/unlock. @read_xfer/write_xfer: We can use these two hooks to code all the following hooks if the driver tries to implement them by itself. @read_reg: used to read the registers, such as read status register, read configure register. @write_reg: used to write the registers, such as write enable, erase sector. @read_id: read out the ID info. @wait_till_ready: wait till the NOR becomes ready. @read: read out the data from the NOR. @write: write data to the NOR. @erase: erase a sector of the NOR. 2) Add a new field sst_write_second for the SST NOR write. Signed-off-by: Huang Shijie <b32955@freescale.com> Acked-by: Marek Vasut <marex@denx.de> Signed-off-by: Brian Norris <computersforpeace@gmail.com>
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@ -52,4 +52,114 @@
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/* Configuration Register bits. */
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#define CR_QUAD_EN_SPAN 0x2 /* Spansion Quad I/O */
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enum read_mode {
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SPI_NOR_NORMAL = 0,
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SPI_NOR_FAST,
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SPI_NOR_DUAL,
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SPI_NOR_QUAD,
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};
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/**
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* struct spi_nor_xfer_cfg - Structure for defining a Serial Flash transfer
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* @wren: command for "Write Enable", or 0x00 for not required
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* @cmd: command for operation
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* @cmd_pins: number of pins to send @cmd (1, 2, 4)
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* @addr: address for operation
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* @addr_pins: number of pins to send @addr (1, 2, 4)
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* @addr_width: number of address bytes
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* (3,4, or 0 for address not required)
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* @mode: mode data
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* @mode_pins: number of pins to send @mode (1, 2, 4)
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* @mode_cycles: number of mode cycles (0 for mode not required)
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* @dummy_cycles: number of dummy cycles (0 for dummy not required)
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*/
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struct spi_nor_xfer_cfg {
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u8 wren;
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u8 cmd;
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u8 cmd_pins;
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u32 addr;
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u8 addr_pins;
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u8 addr_width;
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u8 mode;
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u8 mode_pins;
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u8 mode_cycles;
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u8 dummy_cycles;
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};
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#define SPI_NOR_MAX_CMD_SIZE 8
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enum spi_nor_ops {
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SPI_NOR_OPS_READ = 0,
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SPI_NOR_OPS_WRITE,
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SPI_NOR_OPS_ERASE,
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SPI_NOR_OPS_LOCK,
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SPI_NOR_OPS_UNLOCK,
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};
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/**
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* struct spi_nor - Structure for defining a the SPI NOR layer
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* @mtd: point to a mtd_info structure
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* @lock: the lock for the read/write/erase/lock/unlock operations
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* @dev: point to a spi device, or a spi nor controller device.
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* @page_size: the page size of the SPI NOR
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* @addr_width: number of address bytes
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* @erase_opcode: the opcode for erasing a sector
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* @read_opcode: the read opcode
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* @read_dummy: the dummy needed by the read operation
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* @program_opcode: the program opcode
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* @flash_read: the mode of the read
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* @sst_write_second: used by the SST write operation
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* @cfg: used by the read_xfer/write_xfer
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* @cmd_buf: used by the write_reg
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* @prepare: [OPTIONAL] do some preparations for the
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* read/write/erase/lock/unlock operations
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* @unprepare: [OPTIONAL] do some post work after the
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* read/write/erase/lock/unlock operations
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* @read_xfer: [OPTIONAL] the read fundamental primitive
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* @write_xfer: [OPTIONAL] the writefundamental primitive
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* @read_reg: [DRIVER-SPECIFIC] read out the register
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* @write_reg: [DRIVER-SPECIFIC] write data to the register
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* @read_id: [REPLACEABLE] read out the ID data, and find
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* the proper spi_device_id
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* @wait_till_ready: [REPLACEABLE] wait till the NOR becomes ready
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* @read: [DRIVER-SPECIFIC] read data from the SPI NOR
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* @write: [DRIVER-SPECIFIC] write data to the SPI NOR
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* @erase: [DRIVER-SPECIFIC] erase a sector of the SPI NOR
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* at the offset @offs
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* @priv: the private data
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*/
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struct spi_nor {
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struct mtd_info *mtd;
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struct mutex lock;
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struct device *dev;
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u32 page_size;
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u8 addr_width;
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u8 erase_opcode;
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u8 read_opcode;
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u8 read_dummy;
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u8 program_opcode;
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enum read_mode flash_read;
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bool sst_write_second;
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struct spi_nor_xfer_cfg cfg;
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u8 cmd_buf[SPI_NOR_MAX_CMD_SIZE];
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int (*prepare)(struct spi_nor *nor, enum spi_nor_ops ops);
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void (*unprepare)(struct spi_nor *nor, enum spi_nor_ops ops);
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int (*read_xfer)(struct spi_nor *nor, struct spi_nor_xfer_cfg *cfg,
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u8 *buf, size_t len);
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int (*write_xfer)(struct spi_nor *nor, struct spi_nor_xfer_cfg *cfg,
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u8 *buf, size_t len);
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int (*read_reg)(struct spi_nor *nor, u8 opcode, u8 *buf, int len);
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int (*write_reg)(struct spi_nor *nor, u8 opcode, u8 *buf, int len,
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int write_enable);
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const struct spi_device_id *(*read_id)(struct spi_nor *nor);
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int (*wait_till_ready)(struct spi_nor *nor);
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int (*read)(struct spi_nor *nor, loff_t from,
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size_t len, size_t *retlen, u_char *read_buf);
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void (*write)(struct spi_nor *nor, loff_t to,
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size_t len, size_t *retlen, const u_char *write_buf);
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int (*erase)(struct spi_nor *nor, loff_t offs);
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void *priv;
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};
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#endif
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