ata.h 30 KB

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  1. /*
  2. * Copyright 2003-2004 Red Hat, Inc. All rights reserved.
  3. * Copyright 2003-2004 Jeff Garzik
  4. *
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2, or (at your option)
  9. * any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program; see the file COPYING. If not, write to
  18. * the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
  19. *
  20. *
  21. * libata documentation is available via 'make {ps|pdf}docs',
  22. * as Documentation/DocBook/libata.*
  23. *
  24. * Hardware documentation available from http://www.t13.org/
  25. *
  26. */
  27. #ifndef __LINUX_ATA_H__
  28. #define __LINUX_ATA_H__
  29. #include <linux/kernel.h>
  30. #include <linux/string.h>
  31. #include <linux/types.h>
  32. #include <asm/byteorder.h>
  33. /* defines only for the constants which don't work well as enums */
  34. #define ATA_DMA_BOUNDARY 0xffffUL
  35. #define ATA_DMA_MASK 0xffffffffULL
  36. enum {
  37. /* various global constants */
  38. ATA_MAX_DEVICES = 2, /* per bus/port */
  39. ATA_MAX_PRD = 256, /* we could make these 256/256 */
  40. ATA_SECT_SIZE = 512,
  41. ATA_MAX_SECTORS_128 = 128,
  42. ATA_MAX_SECTORS = 256,
  43. ATA_MAX_SECTORS_LBA48 = 65535,/* TODO: 65536? */
  44. ATA_MAX_SECTORS_TAPE = 65535,
  45. ATA_ID_WORDS = 256,
  46. ATA_ID_CONFIG = 0,
  47. ATA_ID_CYLS = 1,
  48. ATA_ID_HEADS = 3,
  49. ATA_ID_SECTORS = 6,
  50. ATA_ID_SERNO = 10,
  51. ATA_ID_BUF_SIZE = 21,
  52. ATA_ID_FW_REV = 23,
  53. ATA_ID_PROD = 27,
  54. ATA_ID_MAX_MULTSECT = 47,
  55. ATA_ID_DWORD_IO = 48,
  56. ATA_ID_CAPABILITY = 49,
  57. ATA_ID_OLD_PIO_MODES = 51,
  58. ATA_ID_OLD_DMA_MODES = 52,
  59. ATA_ID_FIELD_VALID = 53,
  60. ATA_ID_CUR_CYLS = 54,
  61. ATA_ID_CUR_HEADS = 55,
  62. ATA_ID_CUR_SECTORS = 56,
  63. ATA_ID_MULTSECT = 59,
  64. ATA_ID_LBA_CAPACITY = 60,
  65. ATA_ID_SWDMA_MODES = 62,
  66. ATA_ID_MWDMA_MODES = 63,
  67. ATA_ID_PIO_MODES = 64,
  68. ATA_ID_EIDE_DMA_MIN = 65,
  69. ATA_ID_EIDE_DMA_TIME = 66,
  70. ATA_ID_EIDE_PIO = 67,
  71. ATA_ID_EIDE_PIO_IORDY = 68,
  72. ATA_ID_ADDITIONAL_SUPP = 69,
  73. ATA_ID_QUEUE_DEPTH = 75,
  74. ATA_ID_SATA_CAPABILITY = 76,
  75. ATA_ID_SATA_CAPABILITY_2 = 77,
  76. ATA_ID_FEATURE_SUPP = 78,
  77. ATA_ID_MAJOR_VER = 80,
  78. ATA_ID_COMMAND_SET_1 = 82,
  79. ATA_ID_COMMAND_SET_2 = 83,
  80. ATA_ID_CFSSE = 84,
  81. ATA_ID_CFS_ENABLE_1 = 85,
  82. ATA_ID_CFS_ENABLE_2 = 86,
  83. ATA_ID_CSF_DEFAULT = 87,
  84. ATA_ID_UDMA_MODES = 88,
  85. ATA_ID_HW_CONFIG = 93,
  86. ATA_ID_SPG = 98,
  87. ATA_ID_LBA_CAPACITY_2 = 100,
  88. ATA_ID_SECTOR_SIZE = 106,
  89. ATA_ID_WWN = 108,
  90. ATA_ID_LOGICAL_SECTOR_SIZE = 117, /* and 118 */
  91. ATA_ID_LAST_LUN = 126,
  92. ATA_ID_DLF = 128,
  93. ATA_ID_CSFO = 129,
  94. ATA_ID_CFA_POWER = 160,
  95. ATA_ID_CFA_KEY_MGMT = 162,
  96. ATA_ID_CFA_MODES = 163,
  97. ATA_ID_DATA_SET_MGMT = 169,
  98. ATA_ID_ROT_SPEED = 217,
  99. ATA_ID_PIO4 = (1 << 1),
  100. ATA_ID_SERNO_LEN = 20,
  101. ATA_ID_FW_REV_LEN = 8,
  102. ATA_ID_PROD_LEN = 40,
  103. ATA_ID_WWN_LEN = 8,
  104. ATA_PCI_CTL_OFS = 2,
  105. ATA_PIO0 = (1 << 0),
  106. ATA_PIO1 = ATA_PIO0 | (1 << 1),
  107. ATA_PIO2 = ATA_PIO1 | (1 << 2),
  108. ATA_PIO3 = ATA_PIO2 | (1 << 3),
  109. ATA_PIO4 = ATA_PIO3 | (1 << 4),
  110. ATA_PIO5 = ATA_PIO4 | (1 << 5),
  111. ATA_PIO6 = ATA_PIO5 | (1 << 6),
  112. ATA_PIO4_ONLY = (1 << 4),
  113. ATA_SWDMA0 = (1 << 0),
  114. ATA_SWDMA1 = ATA_SWDMA0 | (1 << 1),
  115. ATA_SWDMA2 = ATA_SWDMA1 | (1 << 2),
  116. ATA_SWDMA2_ONLY = (1 << 2),
  117. ATA_MWDMA0 = (1 << 0),
  118. ATA_MWDMA1 = ATA_MWDMA0 | (1 << 1),
  119. ATA_MWDMA2 = ATA_MWDMA1 | (1 << 2),
  120. ATA_MWDMA3 = ATA_MWDMA2 | (1 << 3),
  121. ATA_MWDMA4 = ATA_MWDMA3 | (1 << 4),
  122. ATA_MWDMA12_ONLY = (1 << 1) | (1 << 2),
  123. ATA_MWDMA2_ONLY = (1 << 2),
  124. ATA_UDMA0 = (1 << 0),
  125. ATA_UDMA1 = ATA_UDMA0 | (1 << 1),
  126. ATA_UDMA2 = ATA_UDMA1 | (1 << 2),
  127. ATA_UDMA3 = ATA_UDMA2 | (1 << 3),
  128. ATA_UDMA4 = ATA_UDMA3 | (1 << 4),
  129. ATA_UDMA5 = ATA_UDMA4 | (1 << 5),
  130. ATA_UDMA6 = ATA_UDMA5 | (1 << 6),
  131. ATA_UDMA7 = ATA_UDMA6 | (1 << 7),
  132. /* ATA_UDMA7 is just for completeness... doesn't exist (yet?). */
  133. ATA_UDMA24_ONLY = (1 << 2) | (1 << 4),
  134. ATA_UDMA_MASK_40C = ATA_UDMA2, /* udma0-2 */
  135. /* DMA-related */
  136. ATA_PRD_SZ = 8,
  137. ATA_PRD_TBL_SZ = (ATA_MAX_PRD * ATA_PRD_SZ),
  138. ATA_PRD_EOT = (1 << 31), /* end-of-table flag */
  139. ATA_DMA_TABLE_OFS = 4,
  140. ATA_DMA_STATUS = 2,
  141. ATA_DMA_CMD = 0,
  142. ATA_DMA_WR = (1 << 3),
  143. ATA_DMA_START = (1 << 0),
  144. ATA_DMA_INTR = (1 << 2),
  145. ATA_DMA_ERR = (1 << 1),
  146. ATA_DMA_ACTIVE = (1 << 0),
  147. /* bits in ATA command block registers */
  148. ATA_HOB = (1 << 7), /* LBA48 selector */
  149. ATA_NIEN = (1 << 1), /* disable-irq flag */
  150. ATA_LBA = (1 << 6), /* LBA28 selector */
  151. ATA_DEV1 = (1 << 4), /* Select Device 1 (slave) */
  152. ATA_DEVICE_OBS = (1 << 7) | (1 << 5), /* obs bits in dev reg */
  153. ATA_DEVCTL_OBS = (1 << 3), /* obsolete bit in devctl reg */
  154. ATA_BUSY = (1 << 7), /* BSY status bit */
  155. ATA_DRDY = (1 << 6), /* device ready */
  156. ATA_DF = (1 << 5), /* device fault */
  157. ATA_DSC = (1 << 4), /* drive seek complete */
  158. ATA_DRQ = (1 << 3), /* data request i/o */
  159. ATA_CORR = (1 << 2), /* corrected data error */
  160. ATA_IDX = (1 << 1), /* index */
  161. ATA_ERR = (1 << 0), /* have an error */
  162. ATA_SRST = (1 << 2), /* software reset */
  163. ATA_ICRC = (1 << 7), /* interface CRC error */
  164. ATA_BBK = ATA_ICRC, /* pre-EIDE: block marked bad */
  165. ATA_UNC = (1 << 6), /* uncorrectable media error */
  166. ATA_MC = (1 << 5), /* media changed */
  167. ATA_IDNF = (1 << 4), /* ID not found */
  168. ATA_MCR = (1 << 3), /* media change requested */
  169. ATA_ABORTED = (1 << 2), /* command aborted */
  170. ATA_TRK0NF = (1 << 1), /* track 0 not found */
  171. ATA_AMNF = (1 << 0), /* address mark not found */
  172. ATAPI_LFS = 0xF0, /* last failed sense */
  173. ATAPI_EOM = ATA_TRK0NF, /* end of media */
  174. ATAPI_ILI = ATA_AMNF, /* illegal length indication */
  175. ATAPI_IO = (1 << 1),
  176. ATAPI_COD = (1 << 0),
  177. /* ATA command block registers */
  178. ATA_REG_DATA = 0x00,
  179. ATA_REG_ERR = 0x01,
  180. ATA_REG_NSECT = 0x02,
  181. ATA_REG_LBAL = 0x03,
  182. ATA_REG_LBAM = 0x04,
  183. ATA_REG_LBAH = 0x05,
  184. ATA_REG_DEVICE = 0x06,
  185. ATA_REG_STATUS = 0x07,
  186. ATA_REG_FEATURE = ATA_REG_ERR, /* and their aliases */
  187. ATA_REG_CMD = ATA_REG_STATUS,
  188. ATA_REG_BYTEL = ATA_REG_LBAM,
  189. ATA_REG_BYTEH = ATA_REG_LBAH,
  190. ATA_REG_DEVSEL = ATA_REG_DEVICE,
  191. ATA_REG_IRQ = ATA_REG_NSECT,
  192. /* ATA device commands */
  193. ATA_CMD_DEV_RESET = 0x08, /* ATAPI device reset */
  194. ATA_CMD_CHK_POWER = 0xE5, /* check power mode */
  195. ATA_CMD_STANDBY = 0xE2, /* place in standby power mode */
  196. ATA_CMD_IDLE = 0xE3, /* place in idle power mode */
  197. ATA_CMD_EDD = 0x90, /* execute device diagnostic */
  198. ATA_CMD_DOWNLOAD_MICRO = 0x92,
  199. ATA_CMD_NOP = 0x00,
  200. ATA_CMD_FLUSH = 0xE7,
  201. ATA_CMD_FLUSH_EXT = 0xEA,
  202. ATA_CMD_ID_ATA = 0xEC,
  203. ATA_CMD_ID_ATAPI = 0xA1,
  204. ATA_CMD_SERVICE = 0xA2,
  205. ATA_CMD_READ = 0xC8,
  206. ATA_CMD_READ_EXT = 0x25,
  207. ATA_CMD_READ_QUEUED = 0x26,
  208. ATA_CMD_READ_STREAM_EXT = 0x2B,
  209. ATA_CMD_READ_STREAM_DMA_EXT = 0x2A,
  210. ATA_CMD_WRITE = 0xCA,
  211. ATA_CMD_WRITE_EXT = 0x35,
  212. ATA_CMD_WRITE_QUEUED = 0x36,
  213. ATA_CMD_WRITE_STREAM_EXT = 0x3B,
  214. ATA_CMD_WRITE_STREAM_DMA_EXT = 0x3A,
  215. ATA_CMD_WRITE_FUA_EXT = 0x3D,
  216. ATA_CMD_WRITE_QUEUED_FUA_EXT = 0x3E,
  217. ATA_CMD_FPDMA_READ = 0x60,
  218. ATA_CMD_FPDMA_WRITE = 0x61,
  219. ATA_CMD_PIO_READ = 0x20,
  220. ATA_CMD_PIO_READ_EXT = 0x24,
  221. ATA_CMD_PIO_WRITE = 0x30,
  222. ATA_CMD_PIO_WRITE_EXT = 0x34,
  223. ATA_CMD_READ_MULTI = 0xC4,
  224. ATA_CMD_READ_MULTI_EXT = 0x29,
  225. ATA_CMD_WRITE_MULTI = 0xC5,
  226. ATA_CMD_WRITE_MULTI_EXT = 0x39,
  227. ATA_CMD_WRITE_MULTI_FUA_EXT = 0xCE,
  228. ATA_CMD_SET_FEATURES = 0xEF,
  229. ATA_CMD_SET_MULTI = 0xC6,
  230. ATA_CMD_PACKET = 0xA0,
  231. ATA_CMD_VERIFY = 0x40,
  232. ATA_CMD_VERIFY_EXT = 0x42,
  233. ATA_CMD_WRITE_UNCORR_EXT = 0x45,
  234. ATA_CMD_STANDBYNOW1 = 0xE0,
  235. ATA_CMD_IDLEIMMEDIATE = 0xE1,
  236. ATA_CMD_SLEEP = 0xE6,
  237. ATA_CMD_INIT_DEV_PARAMS = 0x91,
  238. ATA_CMD_READ_NATIVE_MAX = 0xF8,
  239. ATA_CMD_READ_NATIVE_MAX_EXT = 0x27,
  240. ATA_CMD_SET_MAX = 0xF9,
  241. ATA_CMD_SET_MAX_EXT = 0x37,
  242. ATA_CMD_READ_LOG_EXT = 0x2F,
  243. ATA_CMD_WRITE_LOG_EXT = 0x3F,
  244. ATA_CMD_READ_LOG_DMA_EXT = 0x47,
  245. ATA_CMD_WRITE_LOG_DMA_EXT = 0x57,
  246. ATA_CMD_TRUSTED_RCV = 0x5C,
  247. ATA_CMD_TRUSTED_RCV_DMA = 0x5D,
  248. ATA_CMD_TRUSTED_SND = 0x5E,
  249. ATA_CMD_TRUSTED_SND_DMA = 0x5F,
  250. ATA_CMD_PMP_READ = 0xE4,
  251. ATA_CMD_PMP_WRITE = 0xE8,
  252. ATA_CMD_CONF_OVERLAY = 0xB1,
  253. ATA_CMD_SEC_SET_PASS = 0xF1,
  254. ATA_CMD_SEC_UNLOCK = 0xF2,
  255. ATA_CMD_SEC_ERASE_PREP = 0xF3,
  256. ATA_CMD_SEC_ERASE_UNIT = 0xF4,
  257. ATA_CMD_SEC_FREEZE_LOCK = 0xF5,
  258. ATA_CMD_SEC_DISABLE_PASS = 0xF6,
  259. ATA_CMD_CONFIG_STREAM = 0x51,
  260. ATA_CMD_SMART = 0xB0,
  261. ATA_CMD_MEDIA_LOCK = 0xDE,
  262. ATA_CMD_MEDIA_UNLOCK = 0xDF,
  263. ATA_CMD_DSM = 0x06,
  264. ATA_CMD_CHK_MED_CRD_TYP = 0xD1,
  265. ATA_CMD_CFA_REQ_EXT_ERR = 0x03,
  266. ATA_CMD_CFA_WRITE_NE = 0x38,
  267. ATA_CMD_CFA_TRANS_SECT = 0x87,
  268. ATA_CMD_CFA_ERASE = 0xC0,
  269. ATA_CMD_CFA_WRITE_MULT_NE = 0xCD,
  270. /* marked obsolete in the ATA/ATAPI-7 spec */
  271. ATA_CMD_RESTORE = 0x10,
  272. /* READ_LOG_EXT pages */
  273. ATA_LOG_SATA_NCQ = 0x10,
  274. ATA_LOG_SATA_ID_DEV_DATA = 0x30,
  275. ATA_LOG_SATA_SETTINGS = 0x08,
  276. ATA_LOG_DEVSLP_OFFSET = 0x30,
  277. ATA_LOG_DEVSLP_SIZE = 0x08,
  278. ATA_LOG_DEVSLP_MDAT = 0x00,
  279. ATA_LOG_DEVSLP_MDAT_MASK = 0x1F,
  280. ATA_LOG_DEVSLP_DETO = 0x01,
  281. ATA_LOG_DEVSLP_VALID = 0x07,
  282. ATA_LOG_DEVSLP_VALID_MASK = 0x80,
  283. /* READ/WRITE LONG (obsolete) */
  284. ATA_CMD_READ_LONG = 0x22,
  285. ATA_CMD_READ_LONG_ONCE = 0x23,
  286. ATA_CMD_WRITE_LONG = 0x32,
  287. ATA_CMD_WRITE_LONG_ONCE = 0x33,
  288. /* SETFEATURES stuff */
  289. SETFEATURES_XFER = 0x03,
  290. XFER_UDMA_7 = 0x47,
  291. XFER_UDMA_6 = 0x46,
  292. XFER_UDMA_5 = 0x45,
  293. XFER_UDMA_4 = 0x44,
  294. XFER_UDMA_3 = 0x43,
  295. XFER_UDMA_2 = 0x42,
  296. XFER_UDMA_1 = 0x41,
  297. XFER_UDMA_0 = 0x40,
  298. XFER_MW_DMA_4 = 0x24, /* CFA only */
  299. XFER_MW_DMA_3 = 0x23, /* CFA only */
  300. XFER_MW_DMA_2 = 0x22,
  301. XFER_MW_DMA_1 = 0x21,
  302. XFER_MW_DMA_0 = 0x20,
  303. XFER_SW_DMA_2 = 0x12,
  304. XFER_SW_DMA_1 = 0x11,
  305. XFER_SW_DMA_0 = 0x10,
  306. XFER_PIO_6 = 0x0E, /* CFA only */
  307. XFER_PIO_5 = 0x0D, /* CFA only */
  308. XFER_PIO_4 = 0x0C,
  309. XFER_PIO_3 = 0x0B,
  310. XFER_PIO_2 = 0x0A,
  311. XFER_PIO_1 = 0x09,
  312. XFER_PIO_0 = 0x08,
  313. XFER_PIO_SLOW = 0x00,
  314. SETFEATURES_WC_ON = 0x02, /* Enable write cache */
  315. SETFEATURES_WC_OFF = 0x82, /* Disable write cache */
  316. /* Enable/Disable Automatic Acoustic Management */
  317. SETFEATURES_AAM_ON = 0x42,
  318. SETFEATURES_AAM_OFF = 0xC2,
  319. SETFEATURES_SPINUP = 0x07, /* Spin-up drive */
  320. SETFEATURES_SATA_ENABLE = 0x10, /* Enable use of SATA feature */
  321. SETFEATURES_SATA_DISABLE = 0x90, /* Disable use of SATA feature */
  322. /* SETFEATURE Sector counts for SATA features */
  323. SATA_FPDMA_OFFSET = 0x01, /* FPDMA non-zero buffer offsets */
  324. SATA_FPDMA_AA = 0x02, /* FPDMA Setup FIS Auto-Activate */
  325. SATA_DIPM = 0x03, /* Device Initiated Power Management */
  326. SATA_FPDMA_IN_ORDER = 0x04, /* FPDMA in-order data delivery */
  327. SATA_AN = 0x05, /* Asynchronous Notification */
  328. SATA_SSP = 0x06, /* Software Settings Preservation */
  329. SATA_DEVSLP = 0x09, /* Device Sleep */
  330. /* feature values for SET_MAX */
  331. ATA_SET_MAX_ADDR = 0x00,
  332. ATA_SET_MAX_PASSWD = 0x01,
  333. ATA_SET_MAX_LOCK = 0x02,
  334. ATA_SET_MAX_UNLOCK = 0x03,
  335. ATA_SET_MAX_FREEZE_LOCK = 0x04,
  336. /* feature values for DEVICE CONFIGURATION OVERLAY */
  337. ATA_DCO_RESTORE = 0xC0,
  338. ATA_DCO_FREEZE_LOCK = 0xC1,
  339. ATA_DCO_IDENTIFY = 0xC2,
  340. ATA_DCO_SET = 0xC3,
  341. /* feature values for SMART */
  342. ATA_SMART_ENABLE = 0xD8,
  343. ATA_SMART_READ_VALUES = 0xD0,
  344. ATA_SMART_READ_THRESHOLDS = 0xD1,
  345. /* feature values for Data Set Management */
  346. ATA_DSM_TRIM = 0x01,
  347. /* password used in LBA Mid / LBA High for executing SMART commands */
  348. ATA_SMART_LBAM_PASS = 0x4F,
  349. ATA_SMART_LBAH_PASS = 0xC2,
  350. /* ATAPI stuff */
  351. ATAPI_PKT_DMA = (1 << 0),
  352. ATAPI_DMADIR = (1 << 2), /* ATAPI data dir:
  353. 0=to device, 1=to host */
  354. ATAPI_CDB_LEN = 16,
  355. /* PMP stuff */
  356. SATA_PMP_MAX_PORTS = 15,
  357. SATA_PMP_CTRL_PORT = 15,
  358. SATA_PMP_GSCR_DWORDS = 128,
  359. SATA_PMP_GSCR_PROD_ID = 0,
  360. SATA_PMP_GSCR_REV = 1,
  361. SATA_PMP_GSCR_PORT_INFO = 2,
  362. SATA_PMP_GSCR_ERROR = 32,
  363. SATA_PMP_GSCR_ERROR_EN = 33,
  364. SATA_PMP_GSCR_FEAT = 64,
  365. SATA_PMP_GSCR_FEAT_EN = 96,
  366. SATA_PMP_PSCR_STATUS = 0,
  367. SATA_PMP_PSCR_ERROR = 1,
  368. SATA_PMP_PSCR_CONTROL = 2,
  369. SATA_PMP_FEAT_BIST = (1 << 0),
  370. SATA_PMP_FEAT_PMREQ = (1 << 1),
  371. SATA_PMP_FEAT_DYNSSC = (1 << 2),
  372. SATA_PMP_FEAT_NOTIFY = (1 << 3),
  373. /* cable types */
  374. ATA_CBL_NONE = 0,
  375. ATA_CBL_PATA40 = 1,
  376. ATA_CBL_PATA80 = 2,
  377. ATA_CBL_PATA40_SHORT = 3, /* 40 wire cable to high UDMA spec */
  378. ATA_CBL_PATA_UNK = 4, /* don't know, maybe 80c? */
  379. ATA_CBL_PATA_IGN = 5, /* don't know, ignore cable handling */
  380. ATA_CBL_SATA = 6,
  381. /* SATA Status and Control Registers */
  382. SCR_STATUS = 0,
  383. SCR_ERROR = 1,
  384. SCR_CONTROL = 2,
  385. SCR_ACTIVE = 3,
  386. SCR_NOTIFICATION = 4,
  387. /* SError bits */
  388. SERR_DATA_RECOVERED = (1 << 0), /* recovered data error */
  389. SERR_COMM_RECOVERED = (1 << 1), /* recovered comm failure */
  390. SERR_DATA = (1 << 8), /* unrecovered data error */
  391. SERR_PERSISTENT = (1 << 9), /* persistent data/comm error */
  392. SERR_PROTOCOL = (1 << 10), /* protocol violation */
  393. SERR_INTERNAL = (1 << 11), /* host internal error */
  394. SERR_PHYRDY_CHG = (1 << 16), /* PHY RDY changed */
  395. SERR_PHY_INT_ERR = (1 << 17), /* PHY internal error */
  396. SERR_COMM_WAKE = (1 << 18), /* Comm wake */
  397. SERR_10B_8B_ERR = (1 << 19), /* 10b to 8b decode error */
  398. SERR_DISPARITY = (1 << 20), /* Disparity */
  399. SERR_CRC = (1 << 21), /* CRC error */
  400. SERR_HANDSHAKE = (1 << 22), /* Handshake error */
  401. SERR_LINK_SEQ_ERR = (1 << 23), /* Link sequence error */
  402. SERR_TRANS_ST_ERROR = (1 << 24), /* Transport state trans. error */
  403. SERR_UNRECOG_FIS = (1 << 25), /* Unrecognized FIS */
  404. SERR_DEV_XCHG = (1 << 26), /* device exchanged */
  405. /* struct ata_taskfile flags */
  406. ATA_TFLAG_LBA48 = (1 << 0), /* enable 48-bit LBA and "HOB" */
  407. ATA_TFLAG_ISADDR = (1 << 1), /* enable r/w to nsect/lba regs */
  408. ATA_TFLAG_DEVICE = (1 << 2), /* enable r/w to device reg */
  409. ATA_TFLAG_WRITE = (1 << 3), /* data dir: host->dev==1 (write) */
  410. ATA_TFLAG_LBA = (1 << 4), /* enable LBA */
  411. ATA_TFLAG_FUA = (1 << 5), /* enable FUA */
  412. ATA_TFLAG_POLLING = (1 << 6), /* set nIEN to 1 and use polling */
  413. /* protocol flags */
  414. ATA_PROT_FLAG_PIO = (1 << 0), /* is PIO */
  415. ATA_PROT_FLAG_DMA = (1 << 1), /* is DMA */
  416. ATA_PROT_FLAG_DATA = ATA_PROT_FLAG_PIO | ATA_PROT_FLAG_DMA,
  417. ATA_PROT_FLAG_NCQ = (1 << 2), /* is NCQ */
  418. ATA_PROT_FLAG_ATAPI = (1 << 3), /* is ATAPI */
  419. };
  420. enum ata_tf_protocols {
  421. /* ATA taskfile protocols */
  422. ATA_PROT_UNKNOWN, /* unknown/invalid */
  423. ATA_PROT_NODATA, /* no data */
  424. ATA_PROT_PIO, /* PIO data xfer */
  425. ATA_PROT_DMA, /* DMA */
  426. ATA_PROT_NCQ, /* NCQ */
  427. ATAPI_PROT_NODATA, /* packet command, no data */
  428. ATAPI_PROT_PIO, /* packet command, PIO data xfer*/
  429. ATAPI_PROT_DMA, /* packet command with special DMA sauce */
  430. };
  431. enum ata_ioctls {
  432. ATA_IOC_GET_IO32 = 0x309,
  433. ATA_IOC_SET_IO32 = 0x324,
  434. };
  435. /* core structures */
  436. struct ata_bmdma_prd {
  437. __le32 addr;
  438. __le32 flags_len;
  439. };
  440. struct ata_taskfile {
  441. unsigned long flags; /* ATA_TFLAG_xxx */
  442. u8 protocol; /* ATA_PROT_xxx */
  443. u8 ctl; /* control reg */
  444. u8 hob_feature; /* additional data */
  445. u8 hob_nsect; /* to support LBA48 */
  446. u8 hob_lbal;
  447. u8 hob_lbam;
  448. u8 hob_lbah;
  449. u8 feature;
  450. u8 nsect;
  451. u8 lbal;
  452. u8 lbam;
  453. u8 lbah;
  454. u8 device;
  455. u8 command; /* IO operation */
  456. };
  457. /*
  458. * protocol tests
  459. */
  460. static inline unsigned int ata_prot_flags(u8 prot)
  461. {
  462. switch (prot) {
  463. case ATA_PROT_NODATA:
  464. return 0;
  465. case ATA_PROT_PIO:
  466. return ATA_PROT_FLAG_PIO;
  467. case ATA_PROT_DMA:
  468. return ATA_PROT_FLAG_DMA;
  469. case ATA_PROT_NCQ:
  470. return ATA_PROT_FLAG_DMA | ATA_PROT_FLAG_NCQ;
  471. case ATAPI_PROT_NODATA:
  472. return ATA_PROT_FLAG_ATAPI;
  473. case ATAPI_PROT_PIO:
  474. return ATA_PROT_FLAG_ATAPI | ATA_PROT_FLAG_PIO;
  475. case ATAPI_PROT_DMA:
  476. return ATA_PROT_FLAG_ATAPI | ATA_PROT_FLAG_DMA;
  477. }
  478. return 0;
  479. }
  480. static inline int ata_is_atapi(u8 prot)
  481. {
  482. return ata_prot_flags(prot) & ATA_PROT_FLAG_ATAPI;
  483. }
  484. static inline int ata_is_nodata(u8 prot)
  485. {
  486. return !(ata_prot_flags(prot) & ATA_PROT_FLAG_DATA);
  487. }
  488. static inline int ata_is_pio(u8 prot)
  489. {
  490. return ata_prot_flags(prot) & ATA_PROT_FLAG_PIO;
  491. }
  492. static inline int ata_is_dma(u8 prot)
  493. {
  494. return ata_prot_flags(prot) & ATA_PROT_FLAG_DMA;
  495. }
  496. static inline int ata_is_ncq(u8 prot)
  497. {
  498. return ata_prot_flags(prot) & ATA_PROT_FLAG_NCQ;
  499. }
  500. static inline int ata_is_data(u8 prot)
  501. {
  502. return ata_prot_flags(prot) & ATA_PROT_FLAG_DATA;
  503. }
  504. /*
  505. * id tests
  506. */
  507. #define ata_id_is_ata(id) (((id)[ATA_ID_CONFIG] & (1 << 15)) == 0)
  508. #define ata_id_has_lba(id) ((id)[ATA_ID_CAPABILITY] & (1 << 9))
  509. #define ata_id_has_dma(id) ((id)[ATA_ID_CAPABILITY] & (1 << 8))
  510. #define ata_id_has_ncq(id) ((id)[ATA_ID_SATA_CAPABILITY] & (1 << 8))
  511. #define ata_id_queue_depth(id) (((id)[ATA_ID_QUEUE_DEPTH] & 0x1f) + 1)
  512. #define ata_id_removeable(id) ((id)[ATA_ID_CONFIG] & (1 << 7))
  513. #define ata_id_has_atapi_AN(id) \
  514. ((((id)[ATA_ID_SATA_CAPABILITY] != 0x0000) && \
  515. ((id)[ATA_ID_SATA_CAPABILITY] != 0xffff)) && \
  516. ((id)[ATA_ID_FEATURE_SUPP] & (1 << 5)))
  517. #define ata_id_has_fpdma_aa(id) \
  518. ((((id)[ATA_ID_SATA_CAPABILITY] != 0x0000) && \
  519. ((id)[ATA_ID_SATA_CAPABILITY] != 0xffff)) && \
  520. ((id)[ATA_ID_FEATURE_SUPP] & (1 << 2)))
  521. #define ata_id_iordy_disable(id) ((id)[ATA_ID_CAPABILITY] & (1 << 10))
  522. #define ata_id_has_iordy(id) ((id)[ATA_ID_CAPABILITY] & (1 << 11))
  523. #define ata_id_u32(id,n) \
  524. (((u32) (id)[(n) + 1] << 16) | ((u32) (id)[(n)]))
  525. #define ata_id_u64(id,n) \
  526. ( ((u64) (id)[(n) + 3] << 48) | \
  527. ((u64) (id)[(n) + 2] << 32) | \
  528. ((u64) (id)[(n) + 1] << 16) | \
  529. ((u64) (id)[(n) + 0]) )
  530. #define ata_id_cdb_intr(id) (((id)[ATA_ID_CONFIG] & 0x60) == 0x20)
  531. #define ata_id_has_da(id) ((id)[ATA_ID_SATA_CAPABILITY_2] & (1 << 4))
  532. #define ata_id_has_devslp(id) ((id)[ATA_ID_FEATURE_SUPP] & (1 << 8))
  533. static inline bool ata_id_has_hipm(const u16 *id)
  534. {
  535. u16 val = id[ATA_ID_SATA_CAPABILITY];
  536. if (val == 0 || val == 0xffff)
  537. return false;
  538. return val & (1 << 9);
  539. }
  540. static inline bool ata_id_has_dipm(const u16 *id)
  541. {
  542. u16 val = id[ATA_ID_FEATURE_SUPP];
  543. if (val == 0 || val == 0xffff)
  544. return false;
  545. return val & (1 << 3);
  546. }
  547. static inline bool ata_id_has_fua(const u16 *id)
  548. {
  549. if ((id[ATA_ID_CFSSE] & 0xC000) != 0x4000)
  550. return false;
  551. return id[ATA_ID_CFSSE] & (1 << 6);
  552. }
  553. static inline bool ata_id_has_flush(const u16 *id)
  554. {
  555. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  556. return false;
  557. return id[ATA_ID_COMMAND_SET_2] & (1 << 12);
  558. }
  559. static inline bool ata_id_flush_enabled(const u16 *id)
  560. {
  561. if (ata_id_has_flush(id) == 0)
  562. return false;
  563. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  564. return false;
  565. return id[ATA_ID_CFS_ENABLE_2] & (1 << 12);
  566. }
  567. static inline bool ata_id_has_flush_ext(const u16 *id)
  568. {
  569. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  570. return false;
  571. return id[ATA_ID_COMMAND_SET_2] & (1 << 13);
  572. }
  573. static inline bool ata_id_flush_ext_enabled(const u16 *id)
  574. {
  575. if (ata_id_has_flush_ext(id) == 0)
  576. return false;
  577. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  578. return false;
  579. /*
  580. * some Maxtor disks have bit 13 defined incorrectly
  581. * so check bit 10 too
  582. */
  583. return (id[ATA_ID_CFS_ENABLE_2] & 0x2400) == 0x2400;
  584. }
  585. static inline u32 ata_id_logical_sector_size(const u16 *id)
  586. {
  587. /* T13/1699-D Revision 6a, Sep 6, 2008. Page 128.
  588. * IDENTIFY DEVICE data, word 117-118.
  589. * 0xd000 ignores bit 13 (logical:physical > 1)
  590. */
  591. if ((id[ATA_ID_SECTOR_SIZE] & 0xd000) == 0x5000)
  592. return (((id[ATA_ID_LOGICAL_SECTOR_SIZE+1] << 16)
  593. + id[ATA_ID_LOGICAL_SECTOR_SIZE]) * sizeof(u16)) ;
  594. return ATA_SECT_SIZE;
  595. }
  596. static inline u8 ata_id_log2_per_physical_sector(const u16 *id)
  597. {
  598. /* T13/1699-D Revision 6a, Sep 6, 2008. Page 128.
  599. * IDENTIFY DEVICE data, word 106.
  600. * 0xe000 ignores bit 12 (logical sector > 512 bytes)
  601. */
  602. if ((id[ATA_ID_SECTOR_SIZE] & 0xe000) == 0x6000)
  603. return (id[ATA_ID_SECTOR_SIZE] & 0xf);
  604. return 0;
  605. }
  606. /* Offset of logical sectors relative to physical sectors.
  607. *
  608. * If device has more than one logical sector per physical sector
  609. * (aka 512 byte emulation), vendors might offset the "sector 0" address
  610. * so sector 63 is "naturally aligned" - e.g. FAT partition table.
  611. * This avoids Read/Mod/Write penalties when using FAT partition table
  612. * and updating "well aligned" (FS perspective) physical sectors on every
  613. * transaction.
  614. */
  615. static inline u16 ata_id_logical_sector_offset(const u16 *id,
  616. u8 log2_per_phys)
  617. {
  618. u16 word_209 = id[209];
  619. if ((log2_per_phys > 1) && (word_209 & 0xc000) == 0x4000) {
  620. u16 first = word_209 & 0x3fff;
  621. if (first > 0)
  622. return (1 << log2_per_phys) - first;
  623. }
  624. return 0;
  625. }
  626. static inline bool ata_id_has_lba48(const u16 *id)
  627. {
  628. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  629. return false;
  630. if (!ata_id_u64(id, ATA_ID_LBA_CAPACITY_2))
  631. return false;
  632. return id[ATA_ID_COMMAND_SET_2] & (1 << 10);
  633. }
  634. static inline bool ata_id_lba48_enabled(const u16 *id)
  635. {
  636. if (ata_id_has_lba48(id) == 0)
  637. return false;
  638. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  639. return false;
  640. return id[ATA_ID_CFS_ENABLE_2] & (1 << 10);
  641. }
  642. static inline bool ata_id_hpa_enabled(const u16 *id)
  643. {
  644. /* Yes children, word 83 valid bits cover word 82 data */
  645. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  646. return false;
  647. /* And 87 covers 85-87 */
  648. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  649. return false;
  650. /* Check command sets enabled as well as supported */
  651. if ((id[ATA_ID_CFS_ENABLE_1] & (1 << 10)) == 0)
  652. return false;
  653. return id[ATA_ID_COMMAND_SET_1] & (1 << 10);
  654. }
  655. static inline bool ata_id_has_wcache(const u16 *id)
  656. {
  657. /* Yes children, word 83 valid bits cover word 82 data */
  658. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  659. return false;
  660. return id[ATA_ID_COMMAND_SET_1] & (1 << 5);
  661. }
  662. static inline bool ata_id_has_pm(const u16 *id)
  663. {
  664. if ((id[ATA_ID_COMMAND_SET_2] & 0xC000) != 0x4000)
  665. return false;
  666. return id[ATA_ID_COMMAND_SET_1] & (1 << 3);
  667. }
  668. static inline bool ata_id_rahead_enabled(const u16 *id)
  669. {
  670. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  671. return false;
  672. return id[ATA_ID_CFS_ENABLE_1] & (1 << 6);
  673. }
  674. static inline bool ata_id_wcache_enabled(const u16 *id)
  675. {
  676. if ((id[ATA_ID_CSF_DEFAULT] & 0xC000) != 0x4000)
  677. return false;
  678. return id[ATA_ID_CFS_ENABLE_1] & (1 << 5);
  679. }
  680. /**
  681. * ata_id_major_version - get ATA level of drive
  682. * @id: Identify data
  683. *
  684. * Caveats:
  685. * ATA-1 considers identify optional
  686. * ATA-2 introduces mandatory identify
  687. * ATA-3 introduces word 80 and accurate reporting
  688. *
  689. * The practical impact of this is that ata_id_major_version cannot
  690. * reliably report on drives below ATA3.
  691. */
  692. static inline unsigned int ata_id_major_version(const u16 *id)
  693. {
  694. unsigned int mver;
  695. if (id[ATA_ID_MAJOR_VER] == 0xFFFF)
  696. return 0;
  697. for (mver = 14; mver >= 1; mver--)
  698. if (id[ATA_ID_MAJOR_VER] & (1 << mver))
  699. break;
  700. return mver;
  701. }
  702. static inline bool ata_id_is_sata(const u16 *id)
  703. {
  704. /*
  705. * See if word 93 is 0 AND drive is at least ATA-5 compatible
  706. * verifying that word 80 by casting it to a signed type --
  707. * this trick allows us to filter out the reserved values of
  708. * 0x0000 and 0xffff along with the earlier ATA revisions...
  709. */
  710. if (id[ATA_ID_HW_CONFIG] == 0 && (short)id[ATA_ID_MAJOR_VER] >= 0x0020)
  711. return true;
  712. return false;
  713. }
  714. static inline bool ata_id_has_tpm(const u16 *id)
  715. {
  716. /* The TPM bits are only valid on ATA8 */
  717. if (ata_id_major_version(id) < 8)
  718. return false;
  719. if ((id[48] & 0xC000) != 0x4000)
  720. return false;
  721. return id[48] & (1 << 0);
  722. }
  723. static inline bool ata_id_has_dword_io(const u16 *id)
  724. {
  725. /* ATA 8 reuses this flag for "trusted" computing */
  726. if (ata_id_major_version(id) > 7)
  727. return false;
  728. return id[ATA_ID_DWORD_IO] & (1 << 0);
  729. }
  730. static inline bool ata_id_has_unload(const u16 *id)
  731. {
  732. if (ata_id_major_version(id) >= 7 &&
  733. (id[ATA_ID_CFSSE] & 0xC000) == 0x4000 &&
  734. id[ATA_ID_CFSSE] & (1 << 13))
  735. return true;
  736. return false;
  737. }
  738. static inline bool ata_id_has_wwn(const u16 *id)
  739. {
  740. return (id[ATA_ID_CSF_DEFAULT] & 0xC100) == 0x4100;
  741. }
  742. static inline int ata_id_form_factor(const u16 *id)
  743. {
  744. u16 val = id[168];
  745. if (ata_id_major_version(id) < 7 || val == 0 || val == 0xffff)
  746. return 0;
  747. val &= 0xf;
  748. if (val > 5)
  749. return 0;
  750. return val;
  751. }
  752. static inline int ata_id_rotation_rate(const u16 *id)
  753. {
  754. u16 val = id[217];
  755. if (ata_id_major_version(id) < 7 || val == 0 || val == 0xffff)
  756. return 0;
  757. if (val > 1 && val < 0x401)
  758. return 0;
  759. return val;
  760. }
  761. static inline bool ata_id_has_trim(const u16 *id)
  762. {
  763. if (ata_id_major_version(id) >= 7 &&
  764. (id[ATA_ID_DATA_SET_MGMT] & 1))
  765. return true;
  766. return false;
  767. }
  768. static inline bool ata_id_has_zero_after_trim(const u16 *id)
  769. {
  770. /* DSM supported, deterministic read, and read zero after trim set */
  771. if (ata_id_has_trim(id) &&
  772. (id[ATA_ID_ADDITIONAL_SUPP] & 0x4020) == 0x4020)
  773. return true;
  774. return false;
  775. }
  776. static inline bool ata_id_current_chs_valid(const u16 *id)
  777. {
  778. /* For ATA-1 devices, if the INITIALIZE DEVICE PARAMETERS command
  779. has not been issued to the device then the values of
  780. id[ATA_ID_CUR_CYLS] to id[ATA_ID_CUR_SECTORS] are vendor specific. */
  781. return (id[ATA_ID_FIELD_VALID] & 1) && /* Current translation valid */
  782. id[ATA_ID_CUR_CYLS] && /* cylinders in current translation */
  783. id[ATA_ID_CUR_HEADS] && /* heads in current translation */
  784. id[ATA_ID_CUR_HEADS] <= 16 &&
  785. id[ATA_ID_CUR_SECTORS]; /* sectors in current translation */
  786. }
  787. static inline bool ata_id_is_cfa(const u16 *id)
  788. {
  789. if ((id[ATA_ID_CONFIG] == 0x848A) || /* Traditional CF */
  790. (id[ATA_ID_CONFIG] == 0x844A)) /* Delkin Devices CF */
  791. return true;
  792. /*
  793. * CF specs don't require specific value in the word 0 anymore and yet
  794. * they forbid to report the ATA version in the word 80 and require the
  795. * CFA feature set support to be indicated in the word 83 in this case.
  796. * Unfortunately, some cards only follow either of this requirements,
  797. * and while those that don't indicate CFA feature support need some
  798. * sort of quirk list, it seems impractical for the ones that do...
  799. */
  800. return (id[ATA_ID_COMMAND_SET_2] & 0xC004) == 0x4004;
  801. }
  802. static inline bool ata_id_is_ssd(const u16 *id)
  803. {
  804. return id[ATA_ID_ROT_SPEED] == 0x01;
  805. }
  806. static inline bool ata_id_pio_need_iordy(const u16 *id, const u8 pio)
  807. {
  808. /* CF spec. r4.1 Table 22 says no IORDY on PIO5 and PIO6. */
  809. if (pio > 4 && ata_id_is_cfa(id))
  810. return false;
  811. /* For PIO3 and higher it is mandatory. */
  812. if (pio > 2)
  813. return true;
  814. /* Turn it on when possible. */
  815. return ata_id_has_iordy(id);
  816. }
  817. static inline bool ata_drive_40wire(const u16 *dev_id)
  818. {
  819. if (ata_id_is_sata(dev_id))
  820. return false; /* SATA */
  821. if ((dev_id[ATA_ID_HW_CONFIG] & 0xE000) == 0x6000)
  822. return false; /* 80 wire */
  823. return true;
  824. }
  825. static inline bool ata_drive_40wire_relaxed(const u16 *dev_id)
  826. {
  827. if ((dev_id[ATA_ID_HW_CONFIG] & 0x2000) == 0x2000)
  828. return false; /* 80 wire */
  829. return true;
  830. }
  831. static inline int atapi_cdb_len(const u16 *dev_id)
  832. {
  833. u16 tmp = dev_id[ATA_ID_CONFIG] & 0x3;
  834. switch (tmp) {
  835. case 0: return 12;
  836. case 1: return 16;
  837. default: return -1;
  838. }
  839. }
  840. static inline int atapi_command_packet_set(const u16 *dev_id)
  841. {
  842. return (dev_id[ATA_ID_CONFIG] >> 8) & 0x1f;
  843. }
  844. static inline bool atapi_id_dmadir(const u16 *dev_id)
  845. {
  846. return ata_id_major_version(dev_id) >= 7 && (dev_id[62] & 0x8000);
  847. }
  848. /*
  849. * ata_id_is_lba_capacity_ok() performs a sanity check on
  850. * the claimed LBA capacity value for the device.
  851. *
  852. * Returns 1 if LBA capacity looks sensible, 0 otherwise.
  853. *
  854. * It is called only once for each device.
  855. */
  856. static inline bool ata_id_is_lba_capacity_ok(u16 *id)
  857. {
  858. unsigned long lba_sects, chs_sects, head, tail;
  859. /* No non-LBA info .. so valid! */
  860. if (id[ATA_ID_CYLS] == 0)
  861. return true;
  862. lba_sects = ata_id_u32(id, ATA_ID_LBA_CAPACITY);
  863. /*
  864. * The ATA spec tells large drives to return
  865. * C/H/S = 16383/16/63 independent of their size.
  866. * Some drives can be jumpered to use 15 heads instead of 16.
  867. * Some drives can be jumpered to use 4092 cyls instead of 16383.
  868. */
  869. if ((id[ATA_ID_CYLS] == 16383 ||
  870. (id[ATA_ID_CYLS] == 4092 && id[ATA_ID_CUR_CYLS] == 16383)) &&
  871. id[ATA_ID_SECTORS] == 63 &&
  872. (id[ATA_ID_HEADS] == 15 || id[ATA_ID_HEADS] == 16) &&
  873. (lba_sects >= 16383 * 63 * id[ATA_ID_HEADS]))
  874. return true;
  875. chs_sects = id[ATA_ID_CYLS] * id[ATA_ID_HEADS] * id[ATA_ID_SECTORS];
  876. /* perform a rough sanity check on lba_sects: within 10% is OK */
  877. if (lba_sects - chs_sects < chs_sects/10)
  878. return true;
  879. /* some drives have the word order reversed */
  880. head = (lba_sects >> 16) & 0xffff;
  881. tail = lba_sects & 0xffff;
  882. lba_sects = head | (tail << 16);
  883. if (lba_sects - chs_sects < chs_sects/10) {
  884. *(__le32 *)&id[ATA_ID_LBA_CAPACITY] = __cpu_to_le32(lba_sects);
  885. return true; /* LBA capacity is (now) good */
  886. }
  887. return false; /* LBA capacity value may be bad */
  888. }
  889. static inline void ata_id_to_hd_driveid(u16 *id)
  890. {
  891. #ifdef __BIG_ENDIAN
  892. /* accessed in struct hd_driveid as 8-bit values */
  893. id[ATA_ID_MAX_MULTSECT] = __cpu_to_le16(id[ATA_ID_MAX_MULTSECT]);
  894. id[ATA_ID_CAPABILITY] = __cpu_to_le16(id[ATA_ID_CAPABILITY]);
  895. id[ATA_ID_OLD_PIO_MODES] = __cpu_to_le16(id[ATA_ID_OLD_PIO_MODES]);
  896. id[ATA_ID_OLD_DMA_MODES] = __cpu_to_le16(id[ATA_ID_OLD_DMA_MODES]);
  897. id[ATA_ID_MULTSECT] = __cpu_to_le16(id[ATA_ID_MULTSECT]);
  898. /* as 32-bit values */
  899. *(u32 *)&id[ATA_ID_LBA_CAPACITY] = ata_id_u32(id, ATA_ID_LBA_CAPACITY);
  900. *(u32 *)&id[ATA_ID_SPG] = ata_id_u32(id, ATA_ID_SPG);
  901. /* as 64-bit value */
  902. *(u64 *)&id[ATA_ID_LBA_CAPACITY_2] =
  903. ata_id_u64(id, ATA_ID_LBA_CAPACITY_2);
  904. #endif
  905. }
  906. /*
  907. * Write LBA Range Entries to the buffer that will cover the extent from
  908. * sector to sector + count. This is used for TRIM and for ADD LBA(S)
  909. * TO NV CACHE PINNED SET.
  910. */
  911. static inline unsigned ata_set_lba_range_entries(void *_buffer,
  912. unsigned buf_size, u64 sector, unsigned long count)
  913. {
  914. __le64 *buffer = _buffer;
  915. unsigned i = 0, used_bytes;
  916. while (i < buf_size / 8 ) { /* 6-byte LBA + 2-byte range per entry */
  917. u64 entry = sector |
  918. ((u64)(count > 0xffff ? 0xffff : count) << 48);
  919. buffer[i++] = __cpu_to_le64(entry);
  920. if (count <= 0xffff)
  921. break;
  922. count -= 0xffff;
  923. sector += 0xffff;
  924. }
  925. used_bytes = ALIGN(i * 8, 512);
  926. memset(buffer + i, 0, used_bytes - i * 8);
  927. return used_bytes;
  928. }
  929. static inline int is_multi_taskfile(struct ata_taskfile *tf)
  930. {
  931. return (tf->command == ATA_CMD_READ_MULTI) ||
  932. (tf->command == ATA_CMD_WRITE_MULTI) ||
  933. (tf->command == ATA_CMD_READ_MULTI_EXT) ||
  934. (tf->command == ATA_CMD_WRITE_MULTI_EXT) ||
  935. (tf->command == ATA_CMD_WRITE_MULTI_FUA_EXT);
  936. }
  937. static inline bool ata_ok(u8 status)
  938. {
  939. return ((status & (ATA_BUSY | ATA_DRDY | ATA_DF | ATA_DRQ | ATA_ERR))
  940. == ATA_DRDY);
  941. }
  942. static inline bool lba_28_ok(u64 block, u32 n_block)
  943. {
  944. /* check the ending block number: must be LESS THAN 0x0fffffff */
  945. return ((block + n_block) < ((1 << 28) - 1)) && (n_block <= 256);
  946. }
  947. static inline bool lba_48_ok(u64 block, u32 n_block)
  948. {
  949. /* check the ending block number */
  950. return ((block + n_block - 1) < ((u64)1 << 48)) && (n_block <= 65536);
  951. }
  952. #define sata_pmp_gscr_vendor(gscr) ((gscr)[SATA_PMP_GSCR_PROD_ID] & 0xffff)
  953. #define sata_pmp_gscr_devid(gscr) ((gscr)[SATA_PMP_GSCR_PROD_ID] >> 16)
  954. #define sata_pmp_gscr_rev(gscr) (((gscr)[SATA_PMP_GSCR_REV] >> 8) & 0xff)
  955. #define sata_pmp_gscr_ports(gscr) ((gscr)[SATA_PMP_GSCR_PORT_INFO] & 0xf)
  956. #endif /* __LINUX_ATA_H__ */