spi.h 9.3 KB

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  1. /*
  2. * Common SPI Interface: Controller-specific definitions
  3. *
  4. * (C) Copyright 2001
  5. * Gerald Van Baren, Custom IDEAS, vanbaren@cideas.com.
  6. *
  7. * SPDX-License-Identifier: GPL-2.0+
  8. */
  9. #ifndef _SPI_H_
  10. #define _SPI_H_
  11. /* SPI mode flags */
  12. #define SPI_CPHA 0x01 /* clock phase */
  13. #define SPI_CPOL 0x02 /* clock polarity */
  14. #define SPI_MODE_0 (0|0) /* (original MicroWire) */
  15. #define SPI_MODE_1 (0|SPI_CPHA)
  16. #define SPI_MODE_2 (SPI_CPOL|0)
  17. #define SPI_MODE_3 (SPI_CPOL|SPI_CPHA)
  18. #define SPI_CS_HIGH 0x04 /* CS active high */
  19. #define SPI_LSB_FIRST 0x08 /* per-word bits-on-wire */
  20. #define SPI_3WIRE 0x10 /* SI/SO signals shared */
  21. #define SPI_LOOP 0x20 /* loopback mode */
  22. #define SPI_SLAVE 0x40 /* slave mode */
  23. #define SPI_PREAMBLE 0x80 /* Skip preamble bytes */
  24. /* SPI transfer flags */
  25. #define SPI_XFER_BEGIN 0x01 /* Assert CS before transfer */
  26. #define SPI_XFER_END 0x02 /* Deassert CS after transfer */
  27. #define SPI_XFER_MMAP 0x08 /* Memory Mapped start */
  28. #define SPI_XFER_MMAP_END 0x10 /* Memory Mapped End */
  29. #define SPI_XFER_ONCE (SPI_XFER_BEGIN | SPI_XFER_END)
  30. #define SPI_XFER_U_PAGE (1 << 5)
  31. /* SPI TX operation modes */
  32. #define SPI_OPM_TX_QPP 1 << 0
  33. /* SPI RX operation modes */
  34. #define SPI_OPM_RX_AS 1 << 0
  35. #define SPI_OPM_RX_DOUT 1 << 1
  36. #define SPI_OPM_RX_DIO 1 << 2
  37. #define SPI_OPM_RX_QOF 1 << 3
  38. #define SPI_OPM_RX_QIOF 1 << 4
  39. #define SPI_OPM_RX_EXTN SPI_OPM_RX_AS | SPI_OPM_RX_DOUT | \
  40. SPI_OPM_RX_DIO | SPI_OPM_RX_QOF | \
  41. SPI_OPM_RX_QIOF
  42. /* SPI bus connection options */
  43. #define SPI_CONN_DUAL_SHARED 1 << 0
  44. /* Header byte that marks the start of the message */
  45. #define SPI_PREAMBLE_END_BYTE 0xec
  46. #define SPI_DEFAULT_WORDLEN 8
  47. /**
  48. * struct spi_slave - Representation of a SPI slave
  49. *
  50. * Drivers are expected to extend this with controller-specific data.
  51. *
  52. * @bus: ID of the bus that the slave is attached to.
  53. * @cs: ID of the chip select connected to the slave.
  54. * @op_mode_rx: SPI RX operation mode.
  55. * @op_mode_tx: SPI TX operation mode.
  56. * @wordlen: Size of SPI word in number of bits
  57. * @max_write_size: If non-zero, the maximum number of bytes which can
  58. * be written at once, excluding command bytes.
  59. * @memory_map: Address of read-only SPI flash access.
  60. * @option: Varies SPI bus options - separate bus.
  61. * @flags: Indication of SPI flags.
  62. */
  63. struct spi_slave {
  64. unsigned int bus;
  65. unsigned int cs;
  66. u8 op_mode_rx;
  67. u8 op_mode_tx;
  68. unsigned int wordlen;
  69. unsigned int max_write_size;
  70. void *memory_map;
  71. u8 option;
  72. u8 flags;
  73. };
  74. /**
  75. * Initialization, must be called once on start up.
  76. *
  77. * TODO: I don't think we really need this.
  78. */
  79. void spi_init(void);
  80. /**
  81. * spi_do_alloc_slave - Allocate a new SPI slave (internal)
  82. *
  83. * Allocate and zero all fields in the spi slave, and set the bus/chip
  84. * select. Use the helper macro spi_alloc_slave() to call this.
  85. *
  86. * @offset: Offset of struct spi_slave within slave structure.
  87. * @size: Size of slave structure.
  88. * @bus: Bus ID of the slave chip.
  89. * @cs: Chip select ID of the slave chip on the specified bus.
  90. */
  91. void *spi_do_alloc_slave(int offset, int size, unsigned int bus,
  92. unsigned int cs);
  93. /**
  94. * spi_alloc_slave - Allocate a new SPI slave
  95. *
  96. * Allocate and zero all fields in the spi slave, and set the bus/chip
  97. * select.
  98. *
  99. * @_struct: Name of structure to allocate (e.g. struct tegra_spi).
  100. * This structure must contain a member 'struct spi_slave *slave'.
  101. * @bus: Bus ID of the slave chip.
  102. * @cs: Chip select ID of the slave chip on the specified bus.
  103. */
  104. #define spi_alloc_slave(_struct, bus, cs) \
  105. spi_do_alloc_slave(offsetof(_struct, slave), \
  106. sizeof(_struct), bus, cs)
  107. /**
  108. * spi_alloc_slave_base - Allocate a new SPI slave with no private data
  109. *
  110. * Allocate and zero all fields in the spi slave, and set the bus/chip
  111. * select.
  112. *
  113. * @bus: Bus ID of the slave chip.
  114. * @cs: Chip select ID of the slave chip on the specified bus.
  115. */
  116. #define spi_alloc_slave_base(bus, cs) \
  117. spi_do_alloc_slave(0, sizeof(struct spi_slave), bus, cs)
  118. /**
  119. * Set up communications parameters for a SPI slave.
  120. *
  121. * This must be called once for each slave. Note that this function
  122. * usually doesn't touch any actual hardware, it only initializes the
  123. * contents of spi_slave so that the hardware can be easily
  124. * initialized later.
  125. *
  126. * @bus: Bus ID of the slave chip.
  127. * @cs: Chip select ID of the slave chip on the specified bus.
  128. * @max_hz: Maximum SCK rate in Hz.
  129. * @mode: Clock polarity, clock phase and other parameters.
  130. *
  131. * Returns: A spi_slave reference that can be used in subsequent SPI
  132. * calls, or NULL if one or more of the parameters are not supported.
  133. */
  134. struct spi_slave *spi_setup_slave(unsigned int bus, unsigned int cs,
  135. unsigned int max_hz, unsigned int mode);
  136. /**
  137. * Free any memory associated with a SPI slave.
  138. *
  139. * @slave: The SPI slave
  140. */
  141. void spi_free_slave(struct spi_slave *slave);
  142. /**
  143. * Claim the bus and prepare it for communication with a given slave.
  144. *
  145. * This must be called before doing any transfers with a SPI slave. It
  146. * will enable and initialize any SPI hardware as necessary, and make
  147. * sure that the SCK line is in the correct idle state. It is not
  148. * allowed to claim the same bus for several slaves without releasing
  149. * the bus in between.
  150. *
  151. * @slave: The SPI slave
  152. *
  153. * Returns: 0 if the bus was claimed successfully, or a negative value
  154. * if it wasn't.
  155. */
  156. int spi_claim_bus(struct spi_slave *slave);
  157. /**
  158. * Release the SPI bus
  159. *
  160. * This must be called once for every call to spi_claim_bus() after
  161. * all transfers have finished. It may disable any SPI hardware as
  162. * appropriate.
  163. *
  164. * @slave: The SPI slave
  165. */
  166. void spi_release_bus(struct spi_slave *slave);
  167. /**
  168. * Set the word length for SPI transactions
  169. *
  170. * Set the word length (number of bits per word) for SPI transactions.
  171. *
  172. * @slave: The SPI slave
  173. * @wordlen: The number of bits in a word
  174. *
  175. * Returns: 0 on success, -1 on failure.
  176. */
  177. int spi_set_wordlen(struct spi_slave *slave, unsigned int wordlen);
  178. /**
  179. * SPI transfer
  180. *
  181. * This writes "bitlen" bits out the SPI MOSI port and simultaneously clocks
  182. * "bitlen" bits in the SPI MISO port. That's just the way SPI works.
  183. *
  184. * The source of the outgoing bits is the "dout" parameter and the
  185. * destination of the input bits is the "din" parameter. Note that "dout"
  186. * and "din" can point to the same memory location, in which case the
  187. * input data overwrites the output data (since both are buffered by
  188. * temporary variables, this is OK).
  189. *
  190. * spi_xfer() interface:
  191. * @slave: The SPI slave which will be sending/receiving the data.
  192. * @bitlen: How many bits to write and read.
  193. * @dout: Pointer to a string of bits to send out. The bits are
  194. * held in a byte array and are sent MSB first.
  195. * @din: Pointer to a string of bits that will be filled in.
  196. * @flags: A bitwise combination of SPI_XFER_* flags.
  197. *
  198. * Returns: 0 on success, not 0 on failure
  199. */
  200. int spi_xfer(struct spi_slave *slave, unsigned int bitlen, const void *dout,
  201. void *din, unsigned long flags);
  202. /**
  203. * Determine if a SPI chipselect is valid.
  204. * This function is provided by the board if the low-level SPI driver
  205. * needs it to determine if a given chipselect is actually valid.
  206. *
  207. * Returns: 1 if bus:cs identifies a valid chip on this board, 0
  208. * otherwise.
  209. */
  210. int spi_cs_is_valid(unsigned int bus, unsigned int cs);
  211. /**
  212. * Activate a SPI chipselect.
  213. * This function is provided by the board code when using a driver
  214. * that can't control its chipselects automatically (e.g.
  215. * common/soft_spi.c). When called, it should activate the chip select
  216. * to the device identified by "slave".
  217. */
  218. void spi_cs_activate(struct spi_slave *slave);
  219. /**
  220. * Deactivate a SPI chipselect.
  221. * This function is provided by the board code when using a driver
  222. * that can't control its chipselects automatically (e.g.
  223. * common/soft_spi.c). When called, it should deactivate the chip
  224. * select to the device identified by "slave".
  225. */
  226. void spi_cs_deactivate(struct spi_slave *slave);
  227. /**
  228. * Set transfer speed.
  229. * This sets a new speed to be applied for next spi_xfer().
  230. * @slave: The SPI slave
  231. * @hz: The transfer speed
  232. */
  233. void spi_set_speed(struct spi_slave *slave, uint hz);
  234. /**
  235. * Write 8 bits, then read 8 bits.
  236. * @slave: The SPI slave we're communicating with
  237. * @byte: Byte to be written
  238. *
  239. * Returns: The value that was read, or a negative value on error.
  240. *
  241. * TODO: This function probably shouldn't be inlined.
  242. */
  243. static inline int spi_w8r8(struct spi_slave *slave, unsigned char byte)
  244. {
  245. unsigned char dout[2];
  246. unsigned char din[2];
  247. int ret;
  248. dout[0] = byte;
  249. dout[1] = 0;
  250. ret = spi_xfer(slave, 16, dout, din, SPI_XFER_BEGIN | SPI_XFER_END);
  251. return ret < 0 ? ret : din[1];
  252. }
  253. /**
  254. * Set up a SPI slave for a particular device tree node
  255. *
  256. * This calls spi_setup_slave() with the correct bus number. Call
  257. * spi_free_slave() to free it later.
  258. *
  259. * @param blob: Device tree blob
  260. * @param slave_node: Slave node to use
  261. * @param spi_node: SPI peripheral node to use
  262. * @return pointer to new spi_slave structure
  263. */
  264. struct spi_slave *spi_setup_slave_fdt(const void *blob, int slave_node,
  265. int spi_node);
  266. /**
  267. * spi_base_setup_slave_fdt() - helper function to set up a SPI slace
  268. *
  269. * This decodes SPI properties from the slave node to determine the
  270. * chip select and SPI parameters.
  271. *
  272. * @blob: Device tree blob
  273. * @busnum: Bus number to use
  274. * @node: Device tree node for the SPI bus
  275. */
  276. struct spi_slave *spi_base_setup_slave_fdt(const void *blob, int busnum,
  277. int node);
  278. #endif /* _SPI_H_ */