pd.h 14 KB

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  1. /*
  2. * Copyright 2015-2017 Google, Inc
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. */
  14. #ifndef __LINUX_USB_PD_H
  15. #define __LINUX_USB_PD_H
  16. #include <linux/types.h>
  17. #include <linux/usb/typec.h>
  18. /* USB PD Messages */
  19. enum pd_ctrl_msg_type {
  20. /* 0 Reserved */
  21. PD_CTRL_GOOD_CRC = 1,
  22. PD_CTRL_GOTO_MIN = 2,
  23. PD_CTRL_ACCEPT = 3,
  24. PD_CTRL_REJECT = 4,
  25. PD_CTRL_PING = 5,
  26. PD_CTRL_PS_RDY = 6,
  27. PD_CTRL_GET_SOURCE_CAP = 7,
  28. PD_CTRL_GET_SINK_CAP = 8,
  29. PD_CTRL_DR_SWAP = 9,
  30. PD_CTRL_PR_SWAP = 10,
  31. PD_CTRL_VCONN_SWAP = 11,
  32. PD_CTRL_WAIT = 12,
  33. PD_CTRL_SOFT_RESET = 13,
  34. /* 14-15 Reserved */
  35. PD_CTRL_NOT_SUPP = 16,
  36. PD_CTRL_GET_SOURCE_CAP_EXT = 17,
  37. PD_CTRL_GET_STATUS = 18,
  38. PD_CTRL_FR_SWAP = 19,
  39. PD_CTRL_GET_PPS_STATUS = 20,
  40. PD_CTRL_GET_COUNTRY_CODES = 21,
  41. /* 22-31 Reserved */
  42. };
  43. enum pd_data_msg_type {
  44. /* 0 Reserved */
  45. PD_DATA_SOURCE_CAP = 1,
  46. PD_DATA_REQUEST = 2,
  47. PD_DATA_BIST = 3,
  48. PD_DATA_SINK_CAP = 4,
  49. PD_DATA_BATT_STATUS = 5,
  50. PD_DATA_ALERT = 6,
  51. PD_DATA_GET_COUNTRY_INFO = 7,
  52. /* 8-14 Reserved */
  53. PD_DATA_VENDOR_DEF = 15,
  54. /* 16-31 Reserved */
  55. };
  56. enum pd_ext_msg_type {
  57. /* 0 Reserved */
  58. PD_EXT_SOURCE_CAP_EXT = 1,
  59. PD_EXT_STATUS = 2,
  60. PD_EXT_GET_BATT_CAP = 3,
  61. PD_EXT_GET_BATT_STATUS = 4,
  62. PD_EXT_BATT_CAP = 5,
  63. PD_EXT_GET_MANUFACTURER_INFO = 6,
  64. PD_EXT_MANUFACTURER_INFO = 7,
  65. PD_EXT_SECURITY_REQUEST = 8,
  66. PD_EXT_SECURITY_RESPONSE = 9,
  67. PD_EXT_FW_UPDATE_REQUEST = 10,
  68. PD_EXT_FW_UPDATE_RESPONSE = 11,
  69. PD_EXT_PPS_STATUS = 12,
  70. PD_EXT_COUNTRY_INFO = 13,
  71. PD_EXT_COUNTRY_CODES = 14,
  72. /* 15-31 Reserved */
  73. };
  74. #define PD_REV10 0x0
  75. #define PD_REV20 0x1
  76. #define PD_REV30 0x2
  77. #define PD_MAX_REV PD_REV30
  78. #define PD_HEADER_EXT_HDR BIT(15)
  79. #define PD_HEADER_CNT_SHIFT 12
  80. #define PD_HEADER_CNT_MASK 0x7
  81. #define PD_HEADER_ID_SHIFT 9
  82. #define PD_HEADER_ID_MASK 0x7
  83. #define PD_HEADER_PWR_ROLE BIT(8)
  84. #define PD_HEADER_REV_SHIFT 6
  85. #define PD_HEADER_REV_MASK 0x3
  86. #define PD_HEADER_DATA_ROLE BIT(5)
  87. #define PD_HEADER_TYPE_SHIFT 0
  88. #define PD_HEADER_TYPE_MASK 0x1f
  89. #define PD_HEADER(type, pwr, data, rev, id, cnt, ext_hdr) \
  90. ((((type) & PD_HEADER_TYPE_MASK) << PD_HEADER_TYPE_SHIFT) | \
  91. ((pwr) == TYPEC_SOURCE ? PD_HEADER_PWR_ROLE : 0) | \
  92. ((data) == TYPEC_HOST ? PD_HEADER_DATA_ROLE : 0) | \
  93. (rev << PD_HEADER_REV_SHIFT) | \
  94. (((id) & PD_HEADER_ID_MASK) << PD_HEADER_ID_SHIFT) | \
  95. (((cnt) & PD_HEADER_CNT_MASK) << PD_HEADER_CNT_SHIFT) | \
  96. ((ext_hdr) ? PD_HEADER_EXT_HDR : 0))
  97. #define PD_HEADER_LE(type, pwr, data, rev, id, cnt) \
  98. cpu_to_le16(PD_HEADER((type), (pwr), (data), (rev), (id), (cnt), (0)))
  99. static inline unsigned int pd_header_cnt(u16 header)
  100. {
  101. return (header >> PD_HEADER_CNT_SHIFT) & PD_HEADER_CNT_MASK;
  102. }
  103. static inline unsigned int pd_header_cnt_le(__le16 header)
  104. {
  105. return pd_header_cnt(le16_to_cpu(header));
  106. }
  107. static inline unsigned int pd_header_type(u16 header)
  108. {
  109. return (header >> PD_HEADER_TYPE_SHIFT) & PD_HEADER_TYPE_MASK;
  110. }
  111. static inline unsigned int pd_header_type_le(__le16 header)
  112. {
  113. return pd_header_type(le16_to_cpu(header));
  114. }
  115. static inline unsigned int pd_header_msgid(u16 header)
  116. {
  117. return (header >> PD_HEADER_ID_SHIFT) & PD_HEADER_ID_MASK;
  118. }
  119. static inline unsigned int pd_header_msgid_le(__le16 header)
  120. {
  121. return pd_header_msgid(le16_to_cpu(header));
  122. }
  123. static inline unsigned int pd_header_rev(u16 header)
  124. {
  125. return (header >> PD_HEADER_REV_SHIFT) & PD_HEADER_REV_MASK;
  126. }
  127. static inline unsigned int pd_header_rev_le(__le16 header)
  128. {
  129. return pd_header_rev(le16_to_cpu(header));
  130. }
  131. #define PD_EXT_HDR_CHUNKED BIT(15)
  132. #define PD_EXT_HDR_CHUNK_NUM_SHIFT 11
  133. #define PD_EXT_HDR_CHUNK_NUM_MASK 0xf
  134. #define PD_EXT_HDR_REQ_CHUNK BIT(10)
  135. #define PD_EXT_HDR_DATA_SIZE_SHIFT 0
  136. #define PD_EXT_HDR_DATA_SIZE_MASK 0x1ff
  137. #define PD_EXT_HDR(data_size, req_chunk, chunk_num, chunked) \
  138. ((((data_size) & PD_EXT_HDR_DATA_SIZE_MASK) << PD_EXT_HDR_DATA_SIZE_SHIFT) | \
  139. ((req_chunk) ? PD_EXT_HDR_REQ_CHUNK : 0) | \
  140. (((chunk_num) & PD_EXT_HDR_CHUNK_NUM_MASK) << PD_EXT_HDR_CHUNK_NUM_SHIFT) | \
  141. ((chunked) ? PD_EXT_HDR_CHUNKED : 0))
  142. #define PD_EXT_HDR_LE(data_size, req_chunk, chunk_num, chunked) \
  143. cpu_to_le16(PD_EXT_HDR((data_size), (req_chunk), (chunk_num), (chunked)))
  144. static inline unsigned int pd_ext_header_chunk_num(u16 ext_header)
  145. {
  146. return (ext_header >> PD_EXT_HDR_CHUNK_NUM_SHIFT) &
  147. PD_EXT_HDR_CHUNK_NUM_MASK;
  148. }
  149. static inline unsigned int pd_ext_header_data_size(u16 ext_header)
  150. {
  151. return (ext_header >> PD_EXT_HDR_DATA_SIZE_SHIFT) &
  152. PD_EXT_HDR_DATA_SIZE_MASK;
  153. }
  154. static inline unsigned int pd_ext_header_data_size_le(__le16 ext_header)
  155. {
  156. return pd_ext_header_data_size(le16_to_cpu(ext_header));
  157. }
  158. #define PD_MAX_PAYLOAD 7
  159. #define PD_EXT_MAX_CHUNK_DATA 26
  160. /**
  161. * struct pd_chunked_ext_message_data - PD chunked extended message data as
  162. * seen on wire
  163. * @header: PD extended message header
  164. * @data: PD extended message data
  165. */
  166. struct pd_chunked_ext_message_data {
  167. __le16 header;
  168. u8 data[PD_EXT_MAX_CHUNK_DATA];
  169. } __packed;
  170. /**
  171. * struct pd_message - PD message as seen on wire
  172. * @header: PD message header
  173. * @payload: PD message payload
  174. * @ext_msg: PD message chunked extended message data
  175. */
  176. struct pd_message {
  177. __le16 header;
  178. union {
  179. __le32 payload[PD_MAX_PAYLOAD];
  180. struct pd_chunked_ext_message_data ext_msg;
  181. };
  182. } __packed;
  183. /* PDO: Power Data Object */
  184. #define PDO_MAX_OBJECTS 7
  185. enum pd_pdo_type {
  186. PDO_TYPE_FIXED = 0,
  187. PDO_TYPE_BATT = 1,
  188. PDO_TYPE_VAR = 2,
  189. PDO_TYPE_APDO = 3,
  190. };
  191. #define PDO_TYPE_SHIFT 30
  192. #define PDO_TYPE_MASK 0x3
  193. #define PDO_TYPE(t) ((t) << PDO_TYPE_SHIFT)
  194. #define PDO_VOLT_MASK 0x3ff
  195. #define PDO_CURR_MASK 0x3ff
  196. #define PDO_PWR_MASK 0x3ff
  197. #define PDO_FIXED_DUAL_ROLE BIT(29) /* Power role swap supported */
  198. #define PDO_FIXED_SUSPEND BIT(28) /* USB Suspend supported (Source) */
  199. #define PDO_FIXED_HIGHER_CAP BIT(28) /* Requires more than vSafe5V (Sink) */
  200. #define PDO_FIXED_EXTPOWER BIT(27) /* Externally powered */
  201. #define PDO_FIXED_USB_COMM BIT(26) /* USB communications capable */
  202. #define PDO_FIXED_DATA_SWAP BIT(25) /* Data role swap supported */
  203. #define PDO_FIXED_VOLT_SHIFT 10 /* 50mV units */
  204. #define PDO_FIXED_CURR_SHIFT 0 /* 10mA units */
  205. #define PDO_FIXED_VOLT(mv) ((((mv) / 50) & PDO_VOLT_MASK) << PDO_FIXED_VOLT_SHIFT)
  206. #define PDO_FIXED_CURR(ma) ((((ma) / 10) & PDO_CURR_MASK) << PDO_FIXED_CURR_SHIFT)
  207. #define PDO_FIXED(mv, ma, flags) \
  208. (PDO_TYPE(PDO_TYPE_FIXED) | (flags) | \
  209. PDO_FIXED_VOLT(mv) | PDO_FIXED_CURR(ma))
  210. #define VSAFE5V 5000 /* mv units */
  211. #define PDO_BATT_MAX_VOLT_SHIFT 20 /* 50mV units */
  212. #define PDO_BATT_MIN_VOLT_SHIFT 10 /* 50mV units */
  213. #define PDO_BATT_MAX_PWR_SHIFT 0 /* 250mW units */
  214. #define PDO_BATT_MIN_VOLT(mv) ((((mv) / 50) & PDO_VOLT_MASK) << PDO_BATT_MIN_VOLT_SHIFT)
  215. #define PDO_BATT_MAX_VOLT(mv) ((((mv) / 50) & PDO_VOLT_MASK) << PDO_BATT_MAX_VOLT_SHIFT)
  216. #define PDO_BATT_MAX_POWER(mw) ((((mw) / 250) & PDO_PWR_MASK) << PDO_BATT_MAX_PWR_SHIFT)
  217. #define PDO_BATT(min_mv, max_mv, max_mw) \
  218. (PDO_TYPE(PDO_TYPE_BATT) | PDO_BATT_MIN_VOLT(min_mv) | \
  219. PDO_BATT_MAX_VOLT(max_mv) | PDO_BATT_MAX_POWER(max_mw))
  220. #define PDO_VAR_MAX_VOLT_SHIFT 20 /* 50mV units */
  221. #define PDO_VAR_MIN_VOLT_SHIFT 10 /* 50mV units */
  222. #define PDO_VAR_MAX_CURR_SHIFT 0 /* 10mA units */
  223. #define PDO_VAR_MIN_VOLT(mv) ((((mv) / 50) & PDO_VOLT_MASK) << PDO_VAR_MIN_VOLT_SHIFT)
  224. #define PDO_VAR_MAX_VOLT(mv) ((((mv) / 50) & PDO_VOLT_MASK) << PDO_VAR_MAX_VOLT_SHIFT)
  225. #define PDO_VAR_MAX_CURR(ma) ((((ma) / 10) & PDO_CURR_MASK) << PDO_VAR_MAX_CURR_SHIFT)
  226. #define PDO_VAR(min_mv, max_mv, max_ma) \
  227. (PDO_TYPE(PDO_TYPE_VAR) | PDO_VAR_MIN_VOLT(min_mv) | \
  228. PDO_VAR_MAX_VOLT(max_mv) | PDO_VAR_MAX_CURR(max_ma))
  229. enum pd_apdo_type {
  230. APDO_TYPE_PPS = 0,
  231. };
  232. #define PDO_APDO_TYPE_SHIFT 28 /* Only valid value currently is 0x0 - PPS */
  233. #define PDO_APDO_TYPE_MASK 0x3
  234. #define PDO_APDO_TYPE(t) ((t) << PDO_APDO_TYPE_SHIFT)
  235. #define PDO_PPS_APDO_MAX_VOLT_SHIFT 17 /* 100mV units */
  236. #define PDO_PPS_APDO_MIN_VOLT_SHIFT 8 /* 100mV units */
  237. #define PDO_PPS_APDO_MAX_CURR_SHIFT 0 /* 50mA units */
  238. #define PDO_PPS_APDO_VOLT_MASK 0xff
  239. #define PDO_PPS_APDO_CURR_MASK 0x7f
  240. #define PDO_PPS_APDO_MIN_VOLT(mv) \
  241. ((((mv) / 100) & PDO_PPS_APDO_VOLT_MASK) << PDO_PPS_APDO_MIN_VOLT_SHIFT)
  242. #define PDO_PPS_APDO_MAX_VOLT(mv) \
  243. ((((mv) / 100) & PDO_PPS_APDO_VOLT_MASK) << PDO_PPS_APDO_MAX_VOLT_SHIFT)
  244. #define PDO_PPS_APDO_MAX_CURR(ma) \
  245. ((((ma) / 50) & PDO_PPS_APDO_CURR_MASK) << PDO_PPS_APDO_MAX_CURR_SHIFT)
  246. #define PDO_PPS_APDO(min_mv, max_mv, max_ma) \
  247. (PDO_TYPE(PDO_TYPE_APDO) | PDO_APDO_TYPE(APDO_TYPE_PPS) | \
  248. PDO_PPS_APDO_MIN_VOLT(min_mv) | PDO_PPS_APDO_MAX_VOLT(max_mv) | \
  249. PDO_PPS_APDO_MAX_CURR(max_ma))
  250. static inline enum pd_pdo_type pdo_type(u32 pdo)
  251. {
  252. return (pdo >> PDO_TYPE_SHIFT) & PDO_TYPE_MASK;
  253. }
  254. static inline unsigned int pdo_fixed_voltage(u32 pdo)
  255. {
  256. return ((pdo >> PDO_FIXED_VOLT_SHIFT) & PDO_VOLT_MASK) * 50;
  257. }
  258. static inline unsigned int pdo_min_voltage(u32 pdo)
  259. {
  260. return ((pdo >> PDO_VAR_MIN_VOLT_SHIFT) & PDO_VOLT_MASK) * 50;
  261. }
  262. static inline unsigned int pdo_max_voltage(u32 pdo)
  263. {
  264. return ((pdo >> PDO_VAR_MAX_VOLT_SHIFT) & PDO_VOLT_MASK) * 50;
  265. }
  266. static inline unsigned int pdo_max_current(u32 pdo)
  267. {
  268. return ((pdo >> PDO_VAR_MAX_CURR_SHIFT) & PDO_CURR_MASK) * 10;
  269. }
  270. static inline unsigned int pdo_max_power(u32 pdo)
  271. {
  272. return ((pdo >> PDO_BATT_MAX_PWR_SHIFT) & PDO_PWR_MASK) * 250;
  273. }
  274. static inline enum pd_apdo_type pdo_apdo_type(u32 pdo)
  275. {
  276. return (pdo >> PDO_APDO_TYPE_SHIFT) & PDO_APDO_TYPE_MASK;
  277. }
  278. static inline unsigned int pdo_pps_apdo_min_voltage(u32 pdo)
  279. {
  280. return ((pdo >> PDO_PPS_APDO_MIN_VOLT_SHIFT) &
  281. PDO_PPS_APDO_VOLT_MASK) * 100;
  282. }
  283. static inline unsigned int pdo_pps_apdo_max_voltage(u32 pdo)
  284. {
  285. return ((pdo >> PDO_PPS_APDO_MAX_VOLT_SHIFT) &
  286. PDO_PPS_APDO_VOLT_MASK) * 100;
  287. }
  288. static inline unsigned int pdo_pps_apdo_max_current(u32 pdo)
  289. {
  290. return ((pdo >> PDO_PPS_APDO_MAX_CURR_SHIFT) &
  291. PDO_PPS_APDO_CURR_MASK) * 50;
  292. }
  293. /* RDO: Request Data Object */
  294. #define RDO_OBJ_POS_SHIFT 28
  295. #define RDO_OBJ_POS_MASK 0x7
  296. #define RDO_GIVE_BACK BIT(27) /* Supports reduced operating current */
  297. #define RDO_CAP_MISMATCH BIT(26) /* Not satisfied by source caps */
  298. #define RDO_USB_COMM BIT(25) /* USB communications capable */
  299. #define RDO_NO_SUSPEND BIT(24) /* USB Suspend not supported */
  300. #define RDO_PWR_MASK 0x3ff
  301. #define RDO_CURR_MASK 0x3ff
  302. #define RDO_FIXED_OP_CURR_SHIFT 10
  303. #define RDO_FIXED_MAX_CURR_SHIFT 0
  304. #define RDO_OBJ(idx) (((idx) & RDO_OBJ_POS_MASK) << RDO_OBJ_POS_SHIFT)
  305. #define PDO_FIXED_OP_CURR(ma) ((((ma) / 10) & RDO_CURR_MASK) << RDO_FIXED_OP_CURR_SHIFT)
  306. #define PDO_FIXED_MAX_CURR(ma) ((((ma) / 10) & RDO_CURR_MASK) << RDO_FIXED_MAX_CURR_SHIFT)
  307. #define RDO_FIXED(idx, op_ma, max_ma, flags) \
  308. (RDO_OBJ(idx) | (flags) | \
  309. PDO_FIXED_OP_CURR(op_ma) | PDO_FIXED_MAX_CURR(max_ma))
  310. #define RDO_BATT_OP_PWR_SHIFT 10 /* 250mW units */
  311. #define RDO_BATT_MAX_PWR_SHIFT 0 /* 250mW units */
  312. #define RDO_BATT_OP_PWR(mw) ((((mw) / 250) & RDO_PWR_MASK) << RDO_BATT_OP_PWR_SHIFT)
  313. #define RDO_BATT_MAX_PWR(mw) ((((mw) / 250) & RDO_PWR_MASK) << RDO_BATT_MAX_PWR_SHIFT)
  314. #define RDO_BATT(idx, op_mw, max_mw, flags) \
  315. (RDO_OBJ(idx) | (flags) | \
  316. RDO_BATT_OP_PWR(op_mw) | RDO_BATT_MAX_PWR(max_mw))
  317. #define RDO_PROG_VOLT_MASK 0x7ff
  318. #define RDO_PROG_CURR_MASK 0x7f
  319. #define RDO_PROG_VOLT_SHIFT 9
  320. #define RDO_PROG_CURR_SHIFT 0
  321. #define RDO_PROG_VOLT_MV_STEP 20
  322. #define RDO_PROG_CURR_MA_STEP 50
  323. #define PDO_PROG_OUT_VOLT(mv) \
  324. ((((mv) / RDO_PROG_VOLT_MV_STEP) & RDO_PROG_VOLT_MASK) << RDO_PROG_VOLT_SHIFT)
  325. #define PDO_PROG_OP_CURR(ma) \
  326. ((((ma) / RDO_PROG_CURR_MA_STEP) & RDO_PROG_CURR_MASK) << RDO_PROG_CURR_SHIFT)
  327. #define RDO_PROG(idx, out_mv, op_ma, flags) \
  328. (RDO_OBJ(idx) | (flags) | \
  329. PDO_PROG_OUT_VOLT(out_mv) | PDO_PROG_OP_CURR(op_ma))
  330. static inline unsigned int rdo_index(u32 rdo)
  331. {
  332. return (rdo >> RDO_OBJ_POS_SHIFT) & RDO_OBJ_POS_MASK;
  333. }
  334. static inline unsigned int rdo_op_current(u32 rdo)
  335. {
  336. return ((rdo >> RDO_FIXED_OP_CURR_SHIFT) & RDO_CURR_MASK) * 10;
  337. }
  338. static inline unsigned int rdo_max_current(u32 rdo)
  339. {
  340. return ((rdo >> RDO_FIXED_MAX_CURR_SHIFT) &
  341. RDO_CURR_MASK) * 10;
  342. }
  343. static inline unsigned int rdo_op_power(u32 rdo)
  344. {
  345. return ((rdo >> RDO_BATT_OP_PWR_SHIFT) & RDO_PWR_MASK) * 250;
  346. }
  347. static inline unsigned int rdo_max_power(u32 rdo)
  348. {
  349. return ((rdo >> RDO_BATT_MAX_PWR_SHIFT) & RDO_PWR_MASK) * 250;
  350. }
  351. /* USB PD timers and counters */
  352. #define PD_T_NO_RESPONSE 5000 /* 4.5 - 5.5 seconds */
  353. #define PD_T_DB_DETECT 10000 /* 10 - 15 seconds */
  354. #define PD_T_SEND_SOURCE_CAP 150 /* 100 - 200 ms */
  355. #define PD_T_SENDER_RESPONSE 60 /* 24 - 30 ms, relaxed */
  356. #define PD_T_SOURCE_ACTIVITY 45
  357. #define PD_T_SINK_ACTIVITY 135
  358. #define PD_T_SINK_WAIT_CAP 240
  359. #define PD_T_PS_TRANSITION 500
  360. #define PD_T_SRC_TRANSITION 35
  361. #define PD_T_DRP_SNK 40
  362. #define PD_T_DRP_SRC 30
  363. #define PD_T_PS_SOURCE_OFF 920
  364. #define PD_T_PS_SOURCE_ON 480
  365. #define PD_T_PS_HARD_RESET 30
  366. #define PD_T_SRC_RECOVER 760
  367. #define PD_T_SRC_RECOVER_MAX 1000
  368. #define PD_T_SRC_TURN_ON 275
  369. #define PD_T_SAFE_0V 650
  370. #define PD_T_VCONN_SOURCE_ON 100
  371. #define PD_T_SINK_REQUEST 100 /* 100 ms minimum */
  372. #define PD_T_ERROR_RECOVERY 100 /* minimum 25 is insufficient */
  373. #define PD_T_SRCSWAPSTDBY 625 /* Maximum of 650ms */
  374. #define PD_T_NEWSRC 250 /* Maximum of 275ms */
  375. #define PD_T_DRP_TRY 100 /* 75 - 150 ms */
  376. #define PD_T_DRP_TRYWAIT 600 /* 400 - 800 ms */
  377. #define PD_T_CC_DEBOUNCE 200 /* 100 - 200 ms */
  378. #define PD_T_PD_DEBOUNCE 20 /* 10 - 20 ms */
  379. #define PD_N_CAPS_COUNT (PD_T_NO_RESPONSE / PD_T_SEND_SOURCE_CAP)
  380. #define PD_N_HARD_RESET_COUNT 2
  381. #endif /* __LINUX_USB_PD_H */