ftdi_sio.c 66 KB

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  1. /*
  2. * USB FTDI SIO driver
  3. *
  4. * Copyright (C) 1999 - 2001
  5. * Greg Kroah-Hartman (greg@kroah.com)
  6. * Bill Ryder (bryder@sgi.com)
  7. * Copyright (C) 2002
  8. * Kuba Ober (kuba@mareimbrium.org)
  9. *
  10. * This program is free software; you can redistribute it and/or modify
  11. * it under the terms of the GNU General Public License as published by
  12. * the Free Software Foundation; either version 2 of the License, or
  13. * (at your option) any later version.
  14. *
  15. * See Documentation/usb/usb-serial.txt for more information on using this driver
  16. *
  17. * See http://ftdi-usb-sio.sourceforge.net for upto date testing info
  18. * and extra documentation
  19. *
  20. * Change entries from 2004 and earlier can be found in versions of this
  21. * file in kernel versions prior to the 2.6.24 release.
  22. *
  23. */
  24. /* Bill Ryder - bryder@sgi.com - wrote the FTDI_SIO implementation */
  25. /* Thanx to FTDI for so kindly providing details of the protocol required */
  26. /* to talk to the device */
  27. /* Thanx to gkh and the rest of the usb dev group for all code I have assimilated :-) */
  28. #include <linux/kernel.h>
  29. #include <linux/errno.h>
  30. #include <linux/init.h>
  31. #include <linux/slab.h>
  32. #include <linux/tty.h>
  33. #include <linux/tty_driver.h>
  34. #include <linux/tty_flip.h>
  35. #include <linux/module.h>
  36. #include <linux/spinlock.h>
  37. #include <asm/uaccess.h>
  38. #include <linux/usb.h>
  39. #include <linux/serial.h>
  40. #include <linux/usb/serial.h>
  41. #include "ftdi_sio.h"
  42. /*
  43. * Version Information
  44. */
  45. #define DRIVER_VERSION "v1.4.3"
  46. #define DRIVER_AUTHOR "Greg Kroah-Hartman <greg@kroah.com>, Bill Ryder <bryder@sgi.com>, Kuba Ober <kuba@mareimbrium.org>"
  47. #define DRIVER_DESC "USB FTDI Serial Converters Driver"
  48. static int debug;
  49. static __u16 vendor = FTDI_VID;
  50. static __u16 product;
  51. struct ftdi_private {
  52. ftdi_chip_type_t chip_type;
  53. /* type of the device, either SIO or FT8U232AM */
  54. int baud_base; /* baud base clock for divisor setting */
  55. int custom_divisor; /* custom_divisor kludge, this is for baud_base (different from what goes to the chip!) */
  56. __u16 last_set_data_urb_value ;
  57. /* the last data state set - needed for doing a break */
  58. int write_offset; /* This is the offset in the usb data block to write the serial data -
  59. * it is different between devices
  60. */
  61. int flags; /* some ASYNC_xxxx flags are supported */
  62. unsigned long last_dtr_rts; /* saved modem control outputs */
  63. wait_queue_head_t delta_msr_wait; /* Used for TIOCMIWAIT */
  64. char prev_status, diff_status; /* Used for TIOCMIWAIT */
  65. __u8 rx_flags; /* receive state flags (throttling) */
  66. spinlock_t rx_lock; /* spinlock for receive state */
  67. struct delayed_work rx_work;
  68. struct usb_serial_port *port;
  69. int rx_processed;
  70. unsigned long rx_bytes;
  71. __u16 interface; /* FT2232C port interface (0 for FT232/245) */
  72. speed_t force_baud; /* if non-zero, force the baud rate to this value */
  73. int force_rtscts; /* if non-zero, force RTS-CTS to always be enabled */
  74. spinlock_t tx_lock; /* spinlock for transmit state */
  75. unsigned long tx_bytes;
  76. unsigned long tx_outstanding_bytes;
  77. unsigned long tx_outstanding_urbs;
  78. };
  79. /* struct ftdi_sio_quirk is used by devices requiring special attention. */
  80. struct ftdi_sio_quirk {
  81. int (*probe)(struct usb_serial *);
  82. void (*port_probe)(struct ftdi_private *); /* Special settings for probed ports. */
  83. };
  84. static int ftdi_jtag_probe (struct usb_serial *serial);
  85. static void ftdi_USB_UIRT_setup (struct ftdi_private *priv);
  86. static void ftdi_HE_TIRA1_setup (struct ftdi_private *priv);
  87. static struct ftdi_sio_quirk ftdi_jtag_quirk = {
  88. .probe = ftdi_jtag_probe,
  89. };
  90. static struct ftdi_sio_quirk ftdi_USB_UIRT_quirk = {
  91. .port_probe = ftdi_USB_UIRT_setup,
  92. };
  93. static struct ftdi_sio_quirk ftdi_HE_TIRA1_quirk = {
  94. .port_probe = ftdi_HE_TIRA1_setup,
  95. };
  96. /*
  97. * The 8U232AM has the same API as the sio except for:
  98. * - it can support MUCH higher baudrates; up to:
  99. * o 921600 for RS232 and 2000000 for RS422/485 at 48MHz
  100. * o 230400 at 12MHz
  101. * so .. 8U232AM's baudrate setting codes are different
  102. * - it has a two byte status code.
  103. * - it returns characters every 16ms (the FTDI does it every 40ms)
  104. *
  105. * the bcdDevice value is used to differentiate FT232BM and FT245BM from
  106. * the earlier FT8U232AM and FT8U232BM. For now, include all known VID/PID
  107. * combinations in both tables.
  108. * FIXME: perhaps bcdDevice can also identify 12MHz FT8U232AM devices,
  109. * but I don't know if those ever went into mass production. [Ian Abbott]
  110. */
  111. static struct usb_device_id id_table_combined [] = {
  112. { USB_DEVICE(FTDI_VID, FTDI_AMC232_PID) },
  113. { USB_DEVICE(FTDI_VID, FTDI_CANUSB_PID) },
  114. { USB_DEVICE(FTDI_VID, FTDI_ACTZWAVE_PID) },
  115. { USB_DEVICE(FTDI_VID, FTDI_IRTRANS_PID) },
  116. { USB_DEVICE(FTDI_VID, FTDI_IPLUS_PID) },
  117. { USB_DEVICE(FTDI_VID, FTDI_IPLUS2_PID) },
  118. { USB_DEVICE(FTDI_VID, FTDI_DMX4ALL) },
  119. { USB_DEVICE(FTDI_VID, FTDI_SIO_PID) },
  120. { USB_DEVICE(FTDI_VID, FTDI_8U232AM_PID) },
  121. { USB_DEVICE(FTDI_VID, FTDI_8U232AM_ALT_PID) },
  122. { USB_DEVICE(FTDI_VID, FTDI_232RL_PID) },
  123. { USB_DEVICE(FTDI_VID, FTDI_8U2232C_PID) },
  124. { USB_DEVICE(FTDI_VID, FTDI_MICRO_CHAMELEON_PID) },
  125. { USB_DEVICE(FTDI_VID, FTDI_RELAIS_PID) },
  126. { USB_DEVICE(FTDI_VID, FTDI_OPENDCC_PID) },
  127. { USB_DEVICE(INTERBIOMETRICS_VID, INTERBIOMETRICS_IOBOARD_PID) },
  128. { USB_DEVICE(INTERBIOMETRICS_VID, INTERBIOMETRICS_MINI_IOBOARD_PID) },
  129. { USB_DEVICE(FTDI_VID, FTDI_XF_632_PID) },
  130. { USB_DEVICE(FTDI_VID, FTDI_XF_634_PID) },
  131. { USB_DEVICE(FTDI_VID, FTDI_XF_547_PID) },
  132. { USB_DEVICE(FTDI_VID, FTDI_XF_633_PID) },
  133. { USB_DEVICE(FTDI_VID, FTDI_XF_631_PID) },
  134. { USB_DEVICE(FTDI_VID, FTDI_XF_635_PID) },
  135. { USB_DEVICE(FTDI_VID, FTDI_XF_640_PID) },
  136. { USB_DEVICE(FTDI_VID, FTDI_XF_642_PID) },
  137. { USB_DEVICE(FTDI_VID, FTDI_DSS20_PID) },
  138. { USB_DEVICE(FTDI_NF_RIC_VID, FTDI_NF_RIC_PID) },
  139. { USB_DEVICE(FTDI_VID, FTDI_VNHCPCUSB_D_PID) },
  140. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_0_PID) },
  141. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_1_PID) },
  142. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_2_PID) },
  143. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_3_PID) },
  144. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_4_PID) },
  145. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_5_PID) },
  146. { USB_DEVICE(FTDI_VID, FTDI_MTXORB_6_PID) },
  147. { USB_DEVICE(FTDI_VID, FTDI_PERLE_ULTRAPORT_PID) },
  148. { USB_DEVICE(FTDI_VID, FTDI_PIEGROUP_PID) },
  149. { USB_DEVICE(FTDI_VID, FTDI_TNC_X_PID) },
  150. { USB_DEVICE(FTDI_VID, FTDI_USBX_707_PID) },
  151. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2101_PID) },
  152. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2102_PID) },
  153. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2103_PID) },
  154. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2104_PID) },
  155. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2106_PID) },
  156. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2201_1_PID) },
  157. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2201_2_PID) },
  158. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2202_1_PID) },
  159. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2202_2_PID) },
  160. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2203_1_PID) },
  161. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2203_2_PID) },
  162. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2401_1_PID) },
  163. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2401_2_PID) },
  164. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2401_3_PID) },
  165. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2401_4_PID) },
  166. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2402_1_PID) },
  167. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2402_2_PID) },
  168. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2402_3_PID) },
  169. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2402_4_PID) },
  170. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2403_1_PID) },
  171. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2403_2_PID) },
  172. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2403_3_PID) },
  173. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2403_4_PID) },
  174. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_1_PID) },
  175. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_2_PID) },
  176. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_3_PID) },
  177. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_4_PID) },
  178. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_5_PID) },
  179. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_6_PID) },
  180. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_7_PID) },
  181. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2801_8_PID) },
  182. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_1_PID) },
  183. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_2_PID) },
  184. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_3_PID) },
  185. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_4_PID) },
  186. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_5_PID) },
  187. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_6_PID) },
  188. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_7_PID) },
  189. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2802_8_PID) },
  190. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_1_PID) },
  191. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_2_PID) },
  192. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_3_PID) },
  193. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_4_PID) },
  194. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_5_PID) },
  195. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_6_PID) },
  196. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_7_PID) },
  197. { USB_DEVICE(SEALEVEL_VID, SEALEVEL_2803_8_PID) },
  198. { USB_DEVICE(IDTECH_VID, IDTECH_IDT1221U_PID) },
  199. { USB_DEVICE(OCT_VID, OCT_US101_PID) },
  200. { USB_DEVICE(FTDI_VID, FTDI_HE_TIRA1_PID),
  201. .driver_info = (kernel_ulong_t)&ftdi_HE_TIRA1_quirk },
  202. { USB_DEVICE(FTDI_VID, FTDI_USB_UIRT_PID),
  203. .driver_info = (kernel_ulong_t)&ftdi_USB_UIRT_quirk },
  204. { USB_DEVICE(FTDI_VID, PROTEGO_SPECIAL_1) },
  205. { USB_DEVICE(FTDI_VID, PROTEGO_R2X0) },
  206. { USB_DEVICE(FTDI_VID, PROTEGO_SPECIAL_3) },
  207. { USB_DEVICE(FTDI_VID, PROTEGO_SPECIAL_4) },
  208. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E808_PID) },
  209. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E809_PID) },
  210. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80A_PID) },
  211. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80B_PID) },
  212. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80C_PID) },
  213. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80D_PID) },
  214. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80E_PID) },
  215. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E80F_PID) },
  216. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E888_PID) },
  217. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E889_PID) },
  218. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88A_PID) },
  219. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88B_PID) },
  220. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88C_PID) },
  221. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88D_PID) },
  222. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88E_PID) },
  223. { USB_DEVICE(FTDI_VID, FTDI_GUDEADS_E88F_PID) },
  224. { USB_DEVICE(FTDI_VID, FTDI_ELV_UO100_PID) },
  225. { USB_DEVICE(FTDI_VID, FTDI_ELV_UM100_PID) },
  226. { USB_DEVICE(FTDI_VID, FTDI_ELV_UR100_PID) },
  227. { USB_DEVICE(FTDI_VID, FTDI_ELV_ALC8500_PID) },
  228. { USB_DEVICE(FTDI_VID, FTDI_PYRAMID_PID) },
  229. { USB_DEVICE(FTDI_VID, FTDI_ELV_FHZ1000PC_PID) },
  230. { USB_DEVICE(FTDI_VID, FTDI_IBS_US485_PID) },
  231. { USB_DEVICE(FTDI_VID, FTDI_IBS_PICPRO_PID) },
  232. { USB_DEVICE(FTDI_VID, FTDI_IBS_PCMCIA_PID) },
  233. { USB_DEVICE(FTDI_VID, FTDI_IBS_PK1_PID) },
  234. { USB_DEVICE(FTDI_VID, FTDI_IBS_RS232MON_PID) },
  235. { USB_DEVICE(FTDI_VID, FTDI_IBS_APP70_PID) },
  236. { USB_DEVICE(FTDI_VID, FTDI_IBS_PEDO_PID) },
  237. { USB_DEVICE(FTDI_VID, FTDI_IBS_PROD_PID) },
  238. /*
  239. * Due to many user requests for multiple ELV devices we enable
  240. * them by default.
  241. */
  242. { USB_DEVICE(FTDI_VID, FTDI_ELV_CLI7000_PID) },
  243. { USB_DEVICE(FTDI_VID, FTDI_ELV_PPS7330_PID) },
  244. { USB_DEVICE(FTDI_VID, FTDI_ELV_TFM100_PID) },
  245. { USB_DEVICE(FTDI_VID, FTDI_ELV_UDF77_PID) },
  246. { USB_DEVICE(FTDI_VID, FTDI_ELV_UIO88_PID) },
  247. { USB_DEVICE(FTDI_VID, FTDI_ELV_UAD8_PID) },
  248. { USB_DEVICE(FTDI_VID, FTDI_ELV_UDA7_PID) },
  249. { USB_DEVICE(FTDI_VID, FTDI_ELV_USI2_PID) },
  250. { USB_DEVICE(FTDI_VID, FTDI_ELV_T1100_PID) },
  251. { USB_DEVICE(FTDI_VID, FTDI_ELV_PCD200_PID) },
  252. { USB_DEVICE(FTDI_VID, FTDI_ELV_ULA200_PID) },
  253. { USB_DEVICE(FTDI_VID, FTDI_ELV_CSI8_PID) },
  254. { USB_DEVICE(FTDI_VID, FTDI_ELV_EM1000DL_PID) },
  255. { USB_DEVICE(FTDI_VID, FTDI_ELV_PCK100_PID) },
  256. { USB_DEVICE(FTDI_VID, FTDI_ELV_RFP500_PID) },
  257. { USB_DEVICE(FTDI_VID, FTDI_ELV_FS20SIG_PID) },
  258. { USB_DEVICE(FTDI_VID, FTDI_ELV_WS300PC_PID) },
  259. { USB_DEVICE(FTDI_VID, FTDI_ELV_FHZ1300PC_PID) },
  260. { USB_DEVICE(FTDI_VID, FTDI_ELV_WS500_PID) },
  261. { USB_DEVICE(FTDI_VID, LINX_SDMUSBQSS_PID) },
  262. { USB_DEVICE(FTDI_VID, LINX_MASTERDEVEL2_PID) },
  263. { USB_DEVICE(FTDI_VID, LINX_FUTURE_0_PID) },
  264. { USB_DEVICE(FTDI_VID, LINX_FUTURE_1_PID) },
  265. { USB_DEVICE(FTDI_VID, LINX_FUTURE_2_PID) },
  266. { USB_DEVICE(FTDI_VID, FTDI_CCSICDU20_0_PID) },
  267. { USB_DEVICE(FTDI_VID, FTDI_CCSICDU40_1_PID) },
  268. { USB_DEVICE(FTDI_VID, FTDI_CCSMACHX_2_PID) },
  269. { USB_DEVICE(FTDI_VID, INSIDE_ACCESSO) },
  270. { USB_DEVICE(INTREPID_VID, INTREPID_VALUECAN_PID) },
  271. { USB_DEVICE(INTREPID_VID, INTREPID_NEOVI_PID) },
  272. { USB_DEVICE(FALCOM_VID, FALCOM_TWIST_PID) },
  273. { USB_DEVICE(FALCOM_VID, FALCOM_SAMBA_PID) },
  274. { USB_DEVICE(FTDI_VID, FTDI_SUUNTO_SPORTS_PID) },
  275. { USB_DEVICE(TTI_VID, TTI_QL355P_PID) },
  276. { USB_DEVICE(FTDI_VID, FTDI_RM_CANVIEW_PID) },
  277. { USB_DEVICE(BANDB_VID, BANDB_USOTL4_PID) },
  278. { USB_DEVICE(BANDB_VID, BANDB_USTL4_PID) },
  279. { USB_DEVICE(BANDB_VID, BANDB_USO9ML2_PID) },
  280. { USB_DEVICE(FTDI_VID, EVER_ECO_PRO_CDS) },
  281. { USB_DEVICE(FTDI_VID, FTDI_4N_GALAXY_DE_1_PID) },
  282. { USB_DEVICE(FTDI_VID, FTDI_4N_GALAXY_DE_2_PID) },
  283. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_0_PID) },
  284. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_1_PID) },
  285. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_2_PID) },
  286. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_3_PID) },
  287. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_4_PID) },
  288. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_5_PID) },
  289. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_6_PID) },
  290. { USB_DEVICE(FTDI_VID, XSENS_CONVERTER_7_PID) },
  291. { USB_DEVICE(MOBILITY_VID, MOBILITY_USB_SERIAL_PID) },
  292. { USB_DEVICE(FTDI_VID, FTDI_ACTIVE_ROBOTS_PID) },
  293. { USB_DEVICE(FTDI_VID, FTDI_MHAM_KW_PID) },
  294. { USB_DEVICE(FTDI_VID, FTDI_MHAM_YS_PID) },
  295. { USB_DEVICE(FTDI_VID, FTDI_MHAM_Y6_PID) },
  296. { USB_DEVICE(FTDI_VID, FTDI_MHAM_Y8_PID) },
  297. { USB_DEVICE(FTDI_VID, FTDI_MHAM_IC_PID) },
  298. { USB_DEVICE(FTDI_VID, FTDI_MHAM_DB9_PID) },
  299. { USB_DEVICE(FTDI_VID, FTDI_MHAM_RS232_PID) },
  300. { USB_DEVICE(FTDI_VID, FTDI_MHAM_Y9_PID) },
  301. { USB_DEVICE(FTDI_VID, FTDI_TERATRONIK_VCP_PID) },
  302. { USB_DEVICE(FTDI_VID, FTDI_TERATRONIK_D2XX_PID) },
  303. { USB_DEVICE(EVOLUTION_VID, EVOLUTION_ER1_PID) },
  304. { USB_DEVICE(EVOLUTION_VID, EVO_HYBRID_PID) },
  305. { USB_DEVICE(EVOLUTION_VID, EVO_RCM4_PID) },
  306. { USB_DEVICE(FTDI_VID, FTDI_ARTEMIS_PID) },
  307. { USB_DEVICE(FTDI_VID, FTDI_ATIK_ATK16_PID) },
  308. { USB_DEVICE(FTDI_VID, FTDI_ATIK_ATK16C_PID) },
  309. { USB_DEVICE(FTDI_VID, FTDI_ATIK_ATK16HR_PID) },
  310. { USB_DEVICE(FTDI_VID, FTDI_ATIK_ATK16HRC_PID) },
  311. { USB_DEVICE(FTDI_VID, FTDI_ATIK_ATK16IC_PID) },
  312. { USB_DEVICE(KOBIL_VID, KOBIL_CONV_B1_PID) },
  313. { USB_DEVICE(KOBIL_VID, KOBIL_CONV_KAAN_PID) },
  314. { USB_DEVICE(POSIFLEX_VID, POSIFLEX_PP7000_PID) },
  315. { USB_DEVICE(FTDI_VID, FTDI_TTUSB_PID) },
  316. { USB_DEVICE(FTDI_VID, FTDI_ECLO_COM_1WIRE_PID) },
  317. { USB_DEVICE(FTDI_VID, FTDI_WESTREX_MODEL_777_PID) },
  318. { USB_DEVICE(FTDI_VID, FTDI_WESTREX_MODEL_8900F_PID) },
  319. { USB_DEVICE(FTDI_VID, FTDI_PCDJ_DAC2_PID) },
  320. { USB_DEVICE(FTDI_VID, FTDI_RRCIRKITS_LOCOBUFFER_PID) },
  321. { USB_DEVICE(FTDI_VID, FTDI_ASK_RDR400_PID) },
  322. { USB_DEVICE(ICOM_ID1_VID, ICOM_ID1_PID) },
  323. { USB_DEVICE(PAPOUCH_VID, PAPOUCH_TMU_PID) },
  324. { USB_DEVICE(FTDI_VID, FTDI_ACG_HFDUAL_PID) },
  325. { USB_DEVICE(FTDI_VID, FTDI_YEI_SERVOCENTER31_PID) },
  326. { USB_DEVICE(FTDI_VID, FTDI_THORLABS_PID) },
  327. { USB_DEVICE(TESTO_VID, TESTO_USB_INTERFACE_PID) },
  328. { USB_DEVICE(FTDI_VID, FTDI_GAMMA_SCOUT_PID) },
  329. { USB_DEVICE(FTDI_VID, FTDI_TACTRIX_OPENPORT_13M_PID) },
  330. { USB_DEVICE(FTDI_VID, FTDI_TACTRIX_OPENPORT_13S_PID) },
  331. { USB_DEVICE(FTDI_VID, FTDI_TACTRIX_OPENPORT_13U_PID) },
  332. { USB_DEVICE(ELEKTOR_VID, ELEKTOR_FT323R_PID) },
  333. { USB_DEVICE(TELLDUS_VID, TELLDUS_TELLSTICK_PID) },
  334. { USB_DEVICE(FTDI_VID, FTDI_MAXSTREAM_PID) },
  335. { USB_DEVICE(TML_VID, TML_USB_SERIAL_PID) },
  336. { USB_DEVICE(FTDI_VID, FTDI_ELSTER_UNICOM_PID) },
  337. { USB_DEVICE(OLIMEX_VID, OLIMEX_ARM_USB_OCD_PID),
  338. .driver_info = (kernel_ulong_t)&ftdi_jtag_quirk },
  339. { USB_DEVICE(FIC_VID, FIC_NEO1973_DEBUG_PID),
  340. .driver_info = (kernel_ulong_t)&ftdi_jtag_quirk },
  341. { USB_DEVICE(FTDI_VID, FTDI_OOCDLINK_PID),
  342. .driver_info = (kernel_ulong_t)&ftdi_jtag_quirk },
  343. { }, /* Optional parameter entry */
  344. { } /* Terminating entry */
  345. };
  346. MODULE_DEVICE_TABLE (usb, id_table_combined);
  347. static struct usb_driver ftdi_driver = {
  348. .name = "ftdi_sio",
  349. .probe = usb_serial_probe,
  350. .disconnect = usb_serial_disconnect,
  351. .id_table = id_table_combined,
  352. .no_dynamic_id = 1,
  353. };
  354. static const char *ftdi_chip_name[] = {
  355. [SIO] = "SIO", /* the serial part of FT8U100AX */
  356. [FT8U232AM] = "FT8U232AM",
  357. [FT232BM] = "FT232BM",
  358. [FT2232C] = "FT2232C",
  359. [FT232RL] = "FT232RL",
  360. };
  361. /* Constants for read urb and write urb */
  362. #define BUFSZ 512
  363. #define PKTSZ 64
  364. /* rx_flags */
  365. #define THROTTLED 0x01
  366. #define ACTUALLY_THROTTLED 0x02
  367. /* Used for TIOCMIWAIT */
  368. #define FTDI_STATUS_B0_MASK (FTDI_RS0_CTS | FTDI_RS0_DSR | FTDI_RS0_RI | FTDI_RS0_RLSD)
  369. #define FTDI_STATUS_B1_MASK (FTDI_RS_BI)
  370. /* End TIOCMIWAIT */
  371. #define FTDI_IMPL_ASYNC_FLAGS = (ASYNC_SPD_HI | ASYNC_SPD_VHI \
  372. | ASYNC_SPD_CUST | ASYNC_SPD_SHI | ASYNC_SPD_WARP)
  373. /* function prototypes for a FTDI serial converter */
  374. static int ftdi_sio_probe (struct usb_serial *serial, const struct usb_device_id *id);
  375. static void ftdi_shutdown (struct usb_serial *serial);
  376. static int ftdi_sio_port_probe (struct usb_serial_port *port);
  377. static int ftdi_sio_port_remove (struct usb_serial_port *port);
  378. static int ftdi_open (struct usb_serial_port *port, struct file *filp);
  379. static void ftdi_close (struct usb_serial_port *port, struct file *filp);
  380. static int ftdi_write (struct usb_serial_port *port, const unsigned char *buf, int count);
  381. static int ftdi_write_room (struct usb_serial_port *port);
  382. static int ftdi_chars_in_buffer (struct usb_serial_port *port);
  383. static void ftdi_write_bulk_callback (struct urb *urb);
  384. static void ftdi_read_bulk_callback (struct urb *urb);
  385. static void ftdi_process_read (struct work_struct *work);
  386. static void ftdi_set_termios (struct usb_serial_port *port, struct ktermios * old);
  387. static int ftdi_tiocmget (struct usb_serial_port *port, struct file *file);
  388. static int ftdi_tiocmset (struct usb_serial_port *port, struct file * file, unsigned int set, unsigned int clear);
  389. static int ftdi_ioctl (struct usb_serial_port *port, struct file * file, unsigned int cmd, unsigned long arg);
  390. static void ftdi_break_ctl (struct usb_serial_port *port, int break_state );
  391. static void ftdi_throttle (struct usb_serial_port *port);
  392. static void ftdi_unthrottle (struct usb_serial_port *port);
  393. static unsigned short int ftdi_232am_baud_base_to_divisor (int baud, int base);
  394. static unsigned short int ftdi_232am_baud_to_divisor (int baud);
  395. static __u32 ftdi_232bm_baud_base_to_divisor (int baud, int base);
  396. static __u32 ftdi_232bm_baud_to_divisor (int baud);
  397. static struct usb_serial_driver ftdi_sio_device = {
  398. .driver = {
  399. .owner = THIS_MODULE,
  400. .name = "ftdi_sio",
  401. },
  402. .description = "FTDI USB Serial Device",
  403. .usb_driver = &ftdi_driver ,
  404. .id_table = id_table_combined,
  405. .num_interrupt_in = 0,
  406. .num_bulk_in = 1,
  407. .num_bulk_out = 1,
  408. .num_ports = 1,
  409. .probe = ftdi_sio_probe,
  410. .port_probe = ftdi_sio_port_probe,
  411. .port_remove = ftdi_sio_port_remove,
  412. .open = ftdi_open,
  413. .close = ftdi_close,
  414. .throttle = ftdi_throttle,
  415. .unthrottle = ftdi_unthrottle,
  416. .write = ftdi_write,
  417. .write_room = ftdi_write_room,
  418. .chars_in_buffer = ftdi_chars_in_buffer,
  419. .read_bulk_callback = ftdi_read_bulk_callback,
  420. .write_bulk_callback = ftdi_write_bulk_callback,
  421. .tiocmget = ftdi_tiocmget,
  422. .tiocmset = ftdi_tiocmset,
  423. .ioctl = ftdi_ioctl,
  424. .set_termios = ftdi_set_termios,
  425. .break_ctl = ftdi_break_ctl,
  426. .shutdown = ftdi_shutdown,
  427. };
  428. #define WDR_TIMEOUT 5000 /* default urb timeout */
  429. #define WDR_SHORT_TIMEOUT 1000 /* shorter urb timeout */
  430. /* High and low are for DTR, RTS etc etc */
  431. #define HIGH 1
  432. #define LOW 0
  433. /* number of outstanding urbs to prevent userspace DoS from happening */
  434. #define URB_UPPER_LIMIT 42
  435. /*
  436. * ***************************************************************************
  437. * Utility functions
  438. * ***************************************************************************
  439. */
  440. static unsigned short int ftdi_232am_baud_base_to_divisor(int baud, int base)
  441. {
  442. unsigned short int divisor;
  443. int divisor3 = base / 2 / baud; // divisor shifted 3 bits to the left
  444. if ((divisor3 & 0x7) == 7) divisor3 ++; // round x.7/8 up to x+1
  445. divisor = divisor3 >> 3;
  446. divisor3 &= 0x7;
  447. if (divisor3 == 1) divisor |= 0xc000; else // 0.125
  448. if (divisor3 >= 4) divisor |= 0x4000; else // 0.5
  449. if (divisor3 != 0) divisor |= 0x8000; // 0.25
  450. if (divisor == 1) divisor = 0; /* special case for maximum baud rate */
  451. return divisor;
  452. }
  453. static unsigned short int ftdi_232am_baud_to_divisor(int baud)
  454. {
  455. return(ftdi_232am_baud_base_to_divisor(baud, 48000000));
  456. }
  457. static __u32 ftdi_232bm_baud_base_to_divisor(int baud, int base)
  458. {
  459. static const unsigned char divfrac[8] = { 0, 3, 2, 4, 1, 5, 6, 7 };
  460. __u32 divisor;
  461. int divisor3 = base / 2 / baud; // divisor shifted 3 bits to the left
  462. divisor = divisor3 >> 3;
  463. divisor |= (__u32)divfrac[divisor3 & 0x7] << 14;
  464. /* Deal with special cases for highest baud rates. */
  465. if (divisor == 1) divisor = 0; else // 1.0
  466. if (divisor == 0x4001) divisor = 1; // 1.5
  467. return divisor;
  468. }
  469. static __u32 ftdi_232bm_baud_to_divisor(int baud)
  470. {
  471. return(ftdi_232bm_baud_base_to_divisor(baud, 48000000));
  472. }
  473. #define set_mctrl(port, set) update_mctrl((port), (set), 0)
  474. #define clear_mctrl(port, clear) update_mctrl((port), 0, (clear))
  475. static int update_mctrl(struct usb_serial_port *port, unsigned int set, unsigned int clear)
  476. {
  477. struct ftdi_private *priv = usb_get_serial_port_data(port);
  478. char *buf;
  479. unsigned urb_value;
  480. int rv;
  481. if (((set | clear) & (TIOCM_DTR | TIOCM_RTS)) == 0) {
  482. dbg("%s - DTR|RTS not being set|cleared", __FUNCTION__);
  483. return 0; /* no change */
  484. }
  485. buf = kmalloc(1, GFP_NOIO);
  486. if (!buf) {
  487. return -ENOMEM;
  488. }
  489. clear &= ~set; /* 'set' takes precedence over 'clear' */
  490. urb_value = 0;
  491. if (clear & TIOCM_DTR)
  492. urb_value |= FTDI_SIO_SET_DTR_LOW;
  493. if (clear & TIOCM_RTS)
  494. urb_value |= FTDI_SIO_SET_RTS_LOW;
  495. if (set & TIOCM_DTR)
  496. urb_value |= FTDI_SIO_SET_DTR_HIGH;
  497. if (set & TIOCM_RTS)
  498. urb_value |= FTDI_SIO_SET_RTS_HIGH;
  499. rv = usb_control_msg(port->serial->dev,
  500. usb_sndctrlpipe(port->serial->dev, 0),
  501. FTDI_SIO_SET_MODEM_CTRL_REQUEST,
  502. FTDI_SIO_SET_MODEM_CTRL_REQUEST_TYPE,
  503. urb_value, priv->interface,
  504. buf, 0, WDR_TIMEOUT);
  505. kfree(buf);
  506. if (rv < 0) {
  507. err("%s Error from MODEM_CTRL urb: DTR %s, RTS %s",
  508. __FUNCTION__,
  509. (set & TIOCM_DTR) ? "HIGH" :
  510. (clear & TIOCM_DTR) ? "LOW" : "unchanged",
  511. (set & TIOCM_RTS) ? "HIGH" :
  512. (clear & TIOCM_RTS) ? "LOW" : "unchanged");
  513. } else {
  514. dbg("%s - DTR %s, RTS %s", __FUNCTION__,
  515. (set & TIOCM_DTR) ? "HIGH" :
  516. (clear & TIOCM_DTR) ? "LOW" : "unchanged",
  517. (set & TIOCM_RTS) ? "HIGH" :
  518. (clear & TIOCM_RTS) ? "LOW" : "unchanged");
  519. priv->last_dtr_rts = (priv->last_dtr_rts & ~clear) | set;
  520. }
  521. return rv;
  522. }
  523. static __u32 get_ftdi_divisor(struct usb_serial_port * port);
  524. static int change_speed(struct usb_serial_port *port)
  525. {
  526. struct ftdi_private *priv = usb_get_serial_port_data(port);
  527. char *buf;
  528. __u16 urb_value;
  529. __u16 urb_index;
  530. __u32 urb_index_value;
  531. int rv;
  532. buf = kmalloc(1, GFP_NOIO);
  533. if (!buf)
  534. return -ENOMEM;
  535. urb_index_value = get_ftdi_divisor(port);
  536. urb_value = (__u16)urb_index_value;
  537. urb_index = (__u16)(urb_index_value >> 16);
  538. if (priv->interface) { /* FT2232C */
  539. urb_index = (__u16)((urb_index << 8) | priv->interface);
  540. }
  541. rv = usb_control_msg(port->serial->dev,
  542. usb_sndctrlpipe(port->serial->dev, 0),
  543. FTDI_SIO_SET_BAUDRATE_REQUEST,
  544. FTDI_SIO_SET_BAUDRATE_REQUEST_TYPE,
  545. urb_value, urb_index,
  546. buf, 0, WDR_SHORT_TIMEOUT);
  547. kfree(buf);
  548. return rv;
  549. }
  550. static __u32 get_ftdi_divisor(struct usb_serial_port * port)
  551. { /* get_ftdi_divisor */
  552. struct ftdi_private *priv = usb_get_serial_port_data(port);
  553. __u32 div_value = 0;
  554. int div_okay = 1;
  555. int baud;
  556. /*
  557. * The logic involved in setting the baudrate can be cleanly split in 3 steps.
  558. * Obtaining the actual baud rate is a little tricky since unix traditionally
  559. * somehow ignored the possibility to set non-standard baud rates.
  560. * 1. Standard baud rates are set in tty->termios->c_cflag
  561. * 2. If these are not enough, you can set any speed using alt_speed as follows:
  562. * - set tty->termios->c_cflag speed to B38400
  563. * - set your real speed in tty->alt_speed; it gets ignored when
  564. * alt_speed==0, (or)
  565. * - call TIOCSSERIAL ioctl with (struct serial_struct) set as follows:
  566. * flags & ASYNC_SPD_MASK == ASYNC_SPD_[HI, VHI, SHI, WARP], this just
  567. * sets alt_speed to (HI: 57600, VHI: 115200, SHI: 230400, WARP: 460800)
  568. * ** Steps 1, 2 are done courtesy of tty_get_baud_rate
  569. * 3. You can also set baud rate by setting custom divisor as follows
  570. * - set tty->termios->c_cflag speed to B38400
  571. * - call TIOCSSERIAL ioctl with (struct serial_struct) set as follows:
  572. * o flags & ASYNC_SPD_MASK == ASYNC_SPD_CUST
  573. * o custom_divisor set to baud_base / your_new_baudrate
  574. * ** Step 3 is done courtesy of code borrowed from serial.c - I should really
  575. * spend some time and separate+move this common code to serial.c, it is
  576. * replicated in nearly every serial driver you see.
  577. */
  578. /* 1. Get the baud rate from the tty settings, this observes alt_speed hack */
  579. baud = tty_get_baud_rate(port->tty);
  580. dbg("%s - tty_get_baud_rate reports speed %d", __FUNCTION__, baud);
  581. /* 2. Observe async-compatible custom_divisor hack, update baudrate if needed */
  582. if (baud == 38400 &&
  583. ((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST) &&
  584. (priv->custom_divisor)) {
  585. baud = priv->baud_base / priv->custom_divisor;
  586. dbg("%s - custom divisor %d sets baud rate to %d", __FUNCTION__, priv->custom_divisor, baud);
  587. }
  588. /* 3. Convert baudrate to device-specific divisor */
  589. if (!baud) baud = 9600;
  590. switch(priv->chip_type) {
  591. case SIO: /* SIO chip */
  592. switch(baud) {
  593. case 300: div_value = ftdi_sio_b300; break;
  594. case 600: div_value = ftdi_sio_b600; break;
  595. case 1200: div_value = ftdi_sio_b1200; break;
  596. case 2400: div_value = ftdi_sio_b2400; break;
  597. case 4800: div_value = ftdi_sio_b4800; break;
  598. case 9600: div_value = ftdi_sio_b9600; break;
  599. case 19200: div_value = ftdi_sio_b19200; break;
  600. case 38400: div_value = ftdi_sio_b38400; break;
  601. case 57600: div_value = ftdi_sio_b57600; break;
  602. case 115200: div_value = ftdi_sio_b115200; break;
  603. } /* baud */
  604. if (div_value == 0) {
  605. dbg("%s - Baudrate (%d) requested is not supported", __FUNCTION__, baud);
  606. div_value = ftdi_sio_b9600;
  607. baud = 9600;
  608. div_okay = 0;
  609. }
  610. break;
  611. case FT8U232AM: /* 8U232AM chip */
  612. if (baud <= 3000000) {
  613. div_value = ftdi_232am_baud_to_divisor(baud);
  614. } else {
  615. dbg("%s - Baud rate too high!", __FUNCTION__);
  616. baud = 9600;
  617. div_value = ftdi_232am_baud_to_divisor(9600);
  618. div_okay = 0;
  619. }
  620. break;
  621. case FT232BM: /* FT232BM chip */
  622. case FT2232C: /* FT2232C chip */
  623. case FT232RL:
  624. if (baud <= 3000000) {
  625. div_value = ftdi_232bm_baud_to_divisor(baud);
  626. } else {
  627. dbg("%s - Baud rate too high!", __FUNCTION__);
  628. div_value = ftdi_232bm_baud_to_divisor(9600);
  629. div_okay = 0;
  630. baud = 9600;
  631. }
  632. break;
  633. } /* priv->chip_type */
  634. if (div_okay) {
  635. dbg("%s - Baud rate set to %d (divisor 0x%lX) on chip %s",
  636. __FUNCTION__, baud, (unsigned long)div_value,
  637. ftdi_chip_name[priv->chip_type]);
  638. }
  639. tty_encode_baud_rate(port->tty, baud, baud);
  640. return(div_value);
  641. }
  642. static int get_serial_info(struct usb_serial_port * port, struct serial_struct __user * retinfo)
  643. {
  644. struct ftdi_private *priv = usb_get_serial_port_data(port);
  645. struct serial_struct tmp;
  646. if (!retinfo)
  647. return -EFAULT;
  648. memset(&tmp, 0, sizeof(tmp));
  649. tmp.flags = priv->flags;
  650. tmp.baud_base = priv->baud_base;
  651. tmp.custom_divisor = priv->custom_divisor;
  652. if (copy_to_user(retinfo, &tmp, sizeof(*retinfo)))
  653. return -EFAULT;
  654. return 0;
  655. } /* get_serial_info */
  656. static int set_serial_info(struct usb_serial_port * port, struct serial_struct __user * newinfo)
  657. { /* set_serial_info */
  658. struct ftdi_private *priv = usb_get_serial_port_data(port);
  659. struct serial_struct new_serial;
  660. struct ftdi_private old_priv;
  661. if (copy_from_user(&new_serial, newinfo, sizeof(new_serial)))
  662. return -EFAULT;
  663. old_priv = * priv;
  664. /* Do error checking and permission checking */
  665. if (!capable(CAP_SYS_ADMIN)) {
  666. if (((new_serial.flags & ~ASYNC_USR_MASK) !=
  667. (priv->flags & ~ASYNC_USR_MASK)))
  668. return -EPERM;
  669. priv->flags = ((priv->flags & ~ASYNC_USR_MASK) |
  670. (new_serial.flags & ASYNC_USR_MASK));
  671. priv->custom_divisor = new_serial.custom_divisor;
  672. goto check_and_exit;
  673. }
  674. if ((new_serial.baud_base != priv->baud_base) &&
  675. (new_serial.baud_base < 9600))
  676. return -EINVAL;
  677. /* Make the changes - these are privileged changes! */
  678. priv->flags = ((priv->flags & ~ASYNC_FLAGS) |
  679. (new_serial.flags & ASYNC_FLAGS));
  680. priv->custom_divisor = new_serial.custom_divisor;
  681. port->tty->low_latency = (priv->flags & ASYNC_LOW_LATENCY) ? 1 : 0;
  682. check_and_exit:
  683. if ((old_priv.flags & ASYNC_SPD_MASK) !=
  684. (priv->flags & ASYNC_SPD_MASK)) {
  685. if ((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_HI)
  686. port->tty->alt_speed = 57600;
  687. else if ((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_VHI)
  688. port->tty->alt_speed = 115200;
  689. else if ((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_SHI)
  690. port->tty->alt_speed = 230400;
  691. else if ((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_WARP)
  692. port->tty->alt_speed = 460800;
  693. else
  694. port->tty->alt_speed = 0;
  695. }
  696. if (((old_priv.flags & ASYNC_SPD_MASK) !=
  697. (priv->flags & ASYNC_SPD_MASK)) ||
  698. (((priv->flags & ASYNC_SPD_MASK) == ASYNC_SPD_CUST) &&
  699. (old_priv.custom_divisor != priv->custom_divisor))) {
  700. change_speed(port);
  701. }
  702. return (0);
  703. } /* set_serial_info */
  704. /* Determine type of FTDI chip based on USB config and descriptor. */
  705. static void ftdi_determine_type(struct usb_serial_port *port)
  706. {
  707. struct ftdi_private *priv = usb_get_serial_port_data(port);
  708. struct usb_serial *serial = port->serial;
  709. struct usb_device *udev = serial->dev;
  710. unsigned version;
  711. unsigned interfaces;
  712. /* Assume it is not the original SIO device for now. */
  713. priv->baud_base = 48000000 / 2;
  714. priv->write_offset = 0;
  715. version = le16_to_cpu(udev->descriptor.bcdDevice);
  716. interfaces = udev->actconfig->desc.bNumInterfaces;
  717. dbg("%s: bcdDevice = 0x%x, bNumInterfaces = %u", __FUNCTION__,
  718. version, interfaces);
  719. if (interfaces > 1) {
  720. int inter;
  721. /* Multiple interfaces. Assume FT2232C. */
  722. priv->chip_type = FT2232C;
  723. /* Determine interface code. */
  724. inter = serial->interface->altsetting->desc.bInterfaceNumber;
  725. if (inter == 0) {
  726. priv->interface = PIT_SIOA;
  727. } else {
  728. priv->interface = PIT_SIOB;
  729. }
  730. /* BM-type devices have a bug where bcdDevice gets set
  731. * to 0x200 when iSerialNumber is 0. */
  732. if (version < 0x500) {
  733. dbg("%s: something fishy - bcdDevice too low for multi-interface device",
  734. __FUNCTION__);
  735. }
  736. } else if (version < 0x200) {
  737. /* Old device. Assume its the original SIO. */
  738. priv->chip_type = SIO;
  739. priv->baud_base = 12000000 / 16;
  740. priv->write_offset = 1;
  741. } else if (version < 0x400) {
  742. /* Assume its an FT8U232AM (or FT8U245AM) */
  743. /* (It might be a BM because of the iSerialNumber bug,
  744. * but it will still work as an AM device.) */
  745. priv->chip_type = FT8U232AM;
  746. } else if (version < 0x600) {
  747. /* Assume its an FT232BM (or FT245BM) */
  748. priv->chip_type = FT232BM;
  749. } else {
  750. /* Assume its an FT232R */
  751. priv->chip_type = FT232RL;
  752. }
  753. info("Detected %s", ftdi_chip_name[priv->chip_type]);
  754. }
  755. /*
  756. * ***************************************************************************
  757. * Sysfs Attribute
  758. * ***************************************************************************
  759. */
  760. static ssize_t show_latency_timer(struct device *dev, struct device_attribute *attr, char *buf)
  761. {
  762. struct usb_serial_port *port = to_usb_serial_port(dev);
  763. struct ftdi_private *priv = usb_get_serial_port_data(port);
  764. struct usb_device *udev = port->serial->dev;
  765. unsigned short latency = 0;
  766. int rv = 0;
  767. dbg("%s",__FUNCTION__);
  768. rv = usb_control_msg(udev,
  769. usb_rcvctrlpipe(udev, 0),
  770. FTDI_SIO_GET_LATENCY_TIMER_REQUEST,
  771. FTDI_SIO_GET_LATENCY_TIMER_REQUEST_TYPE,
  772. 0, priv->interface,
  773. (char*) &latency, 1, WDR_TIMEOUT);
  774. if (rv < 0) {
  775. dev_err(dev, "Unable to read latency timer: %i\n", rv);
  776. return -EIO;
  777. }
  778. return sprintf(buf, "%i\n", latency);
  779. }
  780. /* Write a new value of the latency timer, in units of milliseconds. */
  781. static ssize_t store_latency_timer(struct device *dev, struct device_attribute *attr, const char *valbuf,
  782. size_t count)
  783. {
  784. struct usb_serial_port *port = to_usb_serial_port(dev);
  785. struct ftdi_private *priv = usb_get_serial_port_data(port);
  786. struct usb_device *udev = port->serial->dev;
  787. char buf[1];
  788. int v = simple_strtoul(valbuf, NULL, 10);
  789. int rv = 0;
  790. dbg("%s: setting latency timer = %i", __FUNCTION__, v);
  791. rv = usb_control_msg(udev,
  792. usb_sndctrlpipe(udev, 0),
  793. FTDI_SIO_SET_LATENCY_TIMER_REQUEST,
  794. FTDI_SIO_SET_LATENCY_TIMER_REQUEST_TYPE,
  795. v, priv->interface,
  796. buf, 0, WDR_TIMEOUT);
  797. if (rv < 0) {
  798. dev_err(dev, "Unable to write latency timer: %i\n", rv);
  799. return -EIO;
  800. }
  801. return count;
  802. }
  803. /* Write an event character directly to the FTDI register. The ASCII
  804. value is in the low 8 bits, with the enable bit in the 9th bit. */
  805. static ssize_t store_event_char(struct device *dev, struct device_attribute *attr, const char *valbuf,
  806. size_t count)
  807. {
  808. struct usb_serial_port *port = to_usb_serial_port(dev);
  809. struct ftdi_private *priv = usb_get_serial_port_data(port);
  810. struct usb_device *udev = port->serial->dev;
  811. char buf[1];
  812. int v = simple_strtoul(valbuf, NULL, 10);
  813. int rv = 0;
  814. dbg("%s: setting event char = %i", __FUNCTION__, v);
  815. rv = usb_control_msg(udev,
  816. usb_sndctrlpipe(udev, 0),
  817. FTDI_SIO_SET_EVENT_CHAR_REQUEST,
  818. FTDI_SIO_SET_EVENT_CHAR_REQUEST_TYPE,
  819. v, priv->interface,
  820. buf, 0, WDR_TIMEOUT);
  821. if (rv < 0) {
  822. dbg("Unable to write event character: %i", rv);
  823. return -EIO;
  824. }
  825. return count;
  826. }
  827. static DEVICE_ATTR(latency_timer, S_IWUSR | S_IRUGO, show_latency_timer, store_latency_timer);
  828. static DEVICE_ATTR(event_char, S_IWUSR, NULL, store_event_char);
  829. static int create_sysfs_attrs(struct usb_serial_port *port)
  830. {
  831. struct ftdi_private *priv = usb_get_serial_port_data(port);
  832. int retval = 0;
  833. dbg("%s",__FUNCTION__);
  834. /* XXX I've no idea if the original SIO supports the event_char
  835. * sysfs parameter, so I'm playing it safe. */
  836. if (priv->chip_type != SIO) {
  837. dbg("sysfs attributes for %s", ftdi_chip_name[priv->chip_type]);
  838. retval = device_create_file(&port->dev, &dev_attr_event_char);
  839. if ((!retval) &&
  840. (priv->chip_type == FT232BM ||
  841. priv->chip_type == FT2232C ||
  842. priv->chip_type == FT232RL)) {
  843. retval = device_create_file(&port->dev,
  844. &dev_attr_latency_timer);
  845. }
  846. }
  847. return retval;
  848. }
  849. static void remove_sysfs_attrs(struct usb_serial_port *port)
  850. {
  851. struct ftdi_private *priv = usb_get_serial_port_data(port);
  852. dbg("%s",__FUNCTION__);
  853. /* XXX see create_sysfs_attrs */
  854. if (priv->chip_type != SIO) {
  855. device_remove_file(&port->dev, &dev_attr_event_char);
  856. if (priv->chip_type == FT232BM ||
  857. priv->chip_type == FT2232C ||
  858. priv->chip_type == FT232RL) {
  859. device_remove_file(&port->dev, &dev_attr_latency_timer);
  860. }
  861. }
  862. }
  863. /*
  864. * ***************************************************************************
  865. * FTDI driver specific functions
  866. * ***************************************************************************
  867. */
  868. /* Probe function to check for special devices */
  869. static int ftdi_sio_probe (struct usb_serial *serial, const struct usb_device_id *id)
  870. {
  871. struct ftdi_sio_quirk *quirk = (struct ftdi_sio_quirk *)id->driver_info;
  872. if (quirk && quirk->probe) {
  873. int ret = quirk->probe(serial);
  874. if (ret != 0)
  875. return ret;
  876. }
  877. usb_set_serial_data(serial, (void *)id->driver_info);
  878. return 0;
  879. }
  880. static int ftdi_sio_port_probe(struct usb_serial_port *port)
  881. {
  882. struct ftdi_private *priv;
  883. struct ftdi_sio_quirk *quirk = usb_get_serial_data(port->serial);
  884. dbg("%s",__FUNCTION__);
  885. priv = kzalloc(sizeof(struct ftdi_private), GFP_KERNEL);
  886. if (!priv){
  887. err("%s- kmalloc(%Zd) failed.", __FUNCTION__, sizeof(struct ftdi_private));
  888. return -ENOMEM;
  889. }
  890. spin_lock_init(&priv->rx_lock);
  891. spin_lock_init(&priv->tx_lock);
  892. init_waitqueue_head(&priv->delta_msr_wait);
  893. /* This will push the characters through immediately rather
  894. than queue a task to deliver them */
  895. priv->flags = ASYNC_LOW_LATENCY;
  896. if (quirk && quirk->port_probe)
  897. quirk->port_probe(priv);
  898. /* Increase the size of read buffers */
  899. kfree(port->bulk_in_buffer);
  900. port->bulk_in_buffer = kmalloc (BUFSZ, GFP_KERNEL);
  901. if (!port->bulk_in_buffer) {
  902. kfree (priv);
  903. return -ENOMEM;
  904. }
  905. if (port->read_urb) {
  906. port->read_urb->transfer_buffer = port->bulk_in_buffer;
  907. port->read_urb->transfer_buffer_length = BUFSZ;
  908. }
  909. INIT_DELAYED_WORK(&priv->rx_work, ftdi_process_read);
  910. priv->port = port;
  911. /* Free port's existing write urb and transfer buffer. */
  912. if (port->write_urb) {
  913. usb_free_urb (port->write_urb);
  914. port->write_urb = NULL;
  915. }
  916. kfree(port->bulk_out_buffer);
  917. port->bulk_out_buffer = NULL;
  918. usb_set_serial_port_data(port, priv);
  919. ftdi_determine_type (port);
  920. create_sysfs_attrs(port);
  921. return 0;
  922. }
  923. /* Setup for the USB-UIRT device, which requires hardwired
  924. * baudrate (38400 gets mapped to 312500) */
  925. /* Called from usbserial:serial_probe */
  926. static void ftdi_USB_UIRT_setup (struct ftdi_private *priv)
  927. {
  928. dbg("%s",__FUNCTION__);
  929. priv->flags |= ASYNC_SPD_CUST;
  930. priv->custom_divisor = 77;
  931. priv->force_baud = 38400;
  932. } /* ftdi_USB_UIRT_setup */
  933. /* Setup for the HE-TIRA1 device, which requires hardwired
  934. * baudrate (38400 gets mapped to 100000) and RTS-CTS enabled. */
  935. static void ftdi_HE_TIRA1_setup (struct ftdi_private *priv)
  936. {
  937. dbg("%s",__FUNCTION__);
  938. priv->flags |= ASYNC_SPD_CUST;
  939. priv->custom_divisor = 240;
  940. priv->force_baud = 38400;
  941. priv->force_rtscts = 1;
  942. } /* ftdi_HE_TIRA1_setup */
  943. /*
  944. * First port on JTAG adaptors such as Olimex arm-usb-ocd or the FIC/OpenMoko
  945. * Neo1973 Debug Board is reserved for JTAG interface and can be accessed from
  946. * userspace using openocd.
  947. */
  948. static int ftdi_jtag_probe(struct usb_serial *serial)
  949. {
  950. struct usb_device *udev = serial->dev;
  951. struct usb_interface *interface = serial->interface;
  952. dbg("%s",__FUNCTION__);
  953. if (interface == udev->actconfig->interface[0]) {
  954. info("Ignoring serial port reserved for JTAG");
  955. return -ENODEV;
  956. }
  957. return 0;
  958. }
  959. /* ftdi_shutdown is called from usbserial:usb_serial_disconnect
  960. * it is called when the usb device is disconnected
  961. *
  962. * usbserial:usb_serial_disconnect
  963. * calls __serial_close for each open of the port
  964. * shutdown is called then (ie ftdi_shutdown)
  965. */
  966. static void ftdi_shutdown (struct usb_serial *serial)
  967. {
  968. dbg("%s", __FUNCTION__);
  969. }
  970. static int ftdi_sio_port_remove(struct usb_serial_port *port)
  971. {
  972. struct ftdi_private *priv = usb_get_serial_port_data(port);
  973. dbg("%s", __FUNCTION__);
  974. remove_sysfs_attrs(port);
  975. /* all open ports are closed at this point
  976. * (by usbserial.c:__serial_close, which calls ftdi_close)
  977. */
  978. if (priv) {
  979. usb_set_serial_port_data(port, NULL);
  980. kfree(priv);
  981. }
  982. return 0;
  983. }
  984. static int ftdi_open (struct usb_serial_port *port, struct file *filp)
  985. { /* ftdi_open */
  986. struct usb_device *dev = port->serial->dev;
  987. struct ftdi_private *priv = usb_get_serial_port_data(port);
  988. unsigned long flags;
  989. int result = 0;
  990. char buf[1]; /* Needed for the usb_control_msg I think */
  991. dbg("%s", __FUNCTION__);
  992. spin_lock_irqsave(&priv->tx_lock, flags);
  993. priv->tx_bytes = 0;
  994. spin_unlock_irqrestore(&priv->tx_lock, flags);
  995. spin_lock_irqsave(&priv->rx_lock, flags);
  996. priv->rx_bytes = 0;
  997. spin_unlock_irqrestore(&priv->rx_lock, flags);
  998. if (port->tty)
  999. port->tty->low_latency = (priv->flags & ASYNC_LOW_LATENCY) ? 1 : 0;
  1000. /* No error checking for this (will get errors later anyway) */
  1001. /* See ftdi_sio.h for description of what is reset */
  1002. usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  1003. FTDI_SIO_RESET_REQUEST, FTDI_SIO_RESET_REQUEST_TYPE,
  1004. FTDI_SIO_RESET_SIO,
  1005. priv->interface, buf, 0, WDR_TIMEOUT);
  1006. /* Termios defaults are set by usb_serial_init. We don't change
  1007. port->tty->termios - this would loose speed settings, etc.
  1008. This is same behaviour as serial.c/rs_open() - Kuba */
  1009. /* ftdi_set_termios will send usb control messages */
  1010. if (port->tty)
  1011. ftdi_set_termios(port, port->tty->termios);
  1012. /* FIXME: Flow control might be enabled, so it should be checked -
  1013. we have no control of defaults! */
  1014. /* Turn on RTS and DTR since we are not flow controlling by default */
  1015. set_mctrl(port, TIOCM_DTR | TIOCM_RTS);
  1016. /* Not throttled */
  1017. spin_lock_irqsave(&priv->rx_lock, flags);
  1018. priv->rx_flags &= ~(THROTTLED | ACTUALLY_THROTTLED);
  1019. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1020. /* Start reading from the device */
  1021. priv->rx_processed = 0;
  1022. usb_fill_bulk_urb(port->read_urb, dev,
  1023. usb_rcvbulkpipe(dev, port->bulk_in_endpointAddress),
  1024. port->read_urb->transfer_buffer, port->read_urb->transfer_buffer_length,
  1025. ftdi_read_bulk_callback, port);
  1026. result = usb_submit_urb(port->read_urb, GFP_KERNEL);
  1027. if (result)
  1028. err("%s - failed submitting read urb, error %d", __FUNCTION__, result);
  1029. return result;
  1030. } /* ftdi_open */
  1031. /*
  1032. * usbserial:__serial_close only calls ftdi_close if the point is open
  1033. *
  1034. * This only gets called when it is the last close
  1035. *
  1036. *
  1037. */
  1038. static void ftdi_close (struct usb_serial_port *port, struct file *filp)
  1039. { /* ftdi_close */
  1040. unsigned int c_cflag = port->tty->termios->c_cflag;
  1041. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1042. char buf[1];
  1043. dbg("%s", __FUNCTION__);
  1044. mutex_lock(&port->serial->disc_mutex);
  1045. if (c_cflag & HUPCL && !port->serial->disconnected){
  1046. /* Disable flow control */
  1047. if (usb_control_msg(port->serial->dev,
  1048. usb_sndctrlpipe(port->serial->dev, 0),
  1049. FTDI_SIO_SET_FLOW_CTRL_REQUEST,
  1050. FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
  1051. 0, priv->interface, buf, 0,
  1052. WDR_TIMEOUT) < 0) {
  1053. err("error from flowcontrol urb");
  1054. }
  1055. /* drop RTS and DTR */
  1056. clear_mctrl(port, TIOCM_DTR | TIOCM_RTS);
  1057. } /* Note change no line if hupcl is off */
  1058. mutex_unlock(&port->serial->disc_mutex);
  1059. /* cancel any scheduled reading */
  1060. cancel_delayed_work(&priv->rx_work);
  1061. flush_scheduled_work();
  1062. /* shutdown our bulk read */
  1063. usb_kill_urb(port->read_urb);
  1064. } /* ftdi_close */
  1065. /* The SIO requires the first byte to have:
  1066. * B0 1
  1067. * B1 0
  1068. * B2..7 length of message excluding byte 0
  1069. *
  1070. * The new devices do not require this byte
  1071. */
  1072. static int ftdi_write (struct usb_serial_port *port,
  1073. const unsigned char *buf, int count)
  1074. { /* ftdi_write */
  1075. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1076. struct urb *urb;
  1077. unsigned char *buffer;
  1078. int data_offset ; /* will be 1 for the SIO and 0 otherwise */
  1079. int status;
  1080. int transfer_size;
  1081. unsigned long flags;
  1082. dbg("%s port %d, %d bytes", __FUNCTION__, port->number, count);
  1083. if (count == 0) {
  1084. dbg("write request of 0 bytes");
  1085. return 0;
  1086. }
  1087. spin_lock_irqsave(&priv->tx_lock, flags);
  1088. if (priv->tx_outstanding_urbs > URB_UPPER_LIMIT) {
  1089. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1090. dbg("%s - write limit hit\n", __FUNCTION__);
  1091. return 0;
  1092. }
  1093. priv->tx_outstanding_urbs++;
  1094. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1095. data_offset = priv->write_offset;
  1096. dbg("data_offset set to %d",data_offset);
  1097. /* Determine total transfer size */
  1098. transfer_size = count;
  1099. if (data_offset > 0) {
  1100. /* Original sio needs control bytes too... */
  1101. transfer_size += (data_offset *
  1102. ((count + (PKTSZ - 1 - data_offset)) /
  1103. (PKTSZ - data_offset)));
  1104. }
  1105. buffer = kmalloc (transfer_size, GFP_ATOMIC);
  1106. if (!buffer) {
  1107. err("%s ran out of kernel memory for urb ...", __FUNCTION__);
  1108. count = -ENOMEM;
  1109. goto error_no_buffer;
  1110. }
  1111. urb = usb_alloc_urb(0, GFP_ATOMIC);
  1112. if (!urb) {
  1113. err("%s - no more free urbs", __FUNCTION__);
  1114. count = -ENOMEM;
  1115. goto error_no_urb;
  1116. }
  1117. /* Copy data */
  1118. if (data_offset > 0) {
  1119. /* Original sio requires control byte at start of each packet. */
  1120. int user_pktsz = PKTSZ - data_offset;
  1121. int todo = count;
  1122. unsigned char *first_byte = buffer;
  1123. const unsigned char *current_position = buf;
  1124. while (todo > 0) {
  1125. if (user_pktsz > todo) {
  1126. user_pktsz = todo;
  1127. }
  1128. /* Write the control byte at the front of the packet*/
  1129. *first_byte = 1 | ((user_pktsz) << 2);
  1130. /* Copy data for packet */
  1131. memcpy (first_byte + data_offset,
  1132. current_position, user_pktsz);
  1133. first_byte += user_pktsz + data_offset;
  1134. current_position += user_pktsz;
  1135. todo -= user_pktsz;
  1136. }
  1137. } else {
  1138. /* No control byte required. */
  1139. /* Copy in the data to send */
  1140. memcpy (buffer, buf, count);
  1141. }
  1142. usb_serial_debug_data(debug, &port->dev, __FUNCTION__, transfer_size, buffer);
  1143. /* fill the buffer and send it */
  1144. usb_fill_bulk_urb(urb, port->serial->dev,
  1145. usb_sndbulkpipe(port->serial->dev, port->bulk_out_endpointAddress),
  1146. buffer, transfer_size,
  1147. ftdi_write_bulk_callback, port);
  1148. status = usb_submit_urb(urb, GFP_ATOMIC);
  1149. if (status) {
  1150. err("%s - failed submitting write urb, error %d", __FUNCTION__, status);
  1151. count = status;
  1152. goto error;
  1153. } else {
  1154. spin_lock_irqsave(&priv->tx_lock, flags);
  1155. priv->tx_outstanding_bytes += count;
  1156. priv->tx_bytes += count;
  1157. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1158. }
  1159. /* we are done with this urb, so let the host driver
  1160. * really free it when it is finished with it */
  1161. usb_free_urb(urb);
  1162. dbg("%s write returning: %d", __FUNCTION__, count);
  1163. return count;
  1164. error:
  1165. usb_free_urb(urb);
  1166. error_no_urb:
  1167. kfree (buffer);
  1168. error_no_buffer:
  1169. spin_lock_irqsave(&priv->tx_lock, flags);
  1170. priv->tx_outstanding_urbs--;
  1171. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1172. return count;
  1173. } /* ftdi_write */
  1174. /* This function may get called when the device is closed */
  1175. static void ftdi_write_bulk_callback (struct urb *urb)
  1176. {
  1177. unsigned long flags;
  1178. struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
  1179. struct ftdi_private *priv;
  1180. int data_offset; /* will be 1 for the SIO and 0 otherwise */
  1181. unsigned long countback;
  1182. int status = urb->status;
  1183. /* free up the transfer buffer, as usb_free_urb() does not do this */
  1184. kfree (urb->transfer_buffer);
  1185. dbg("%s - port %d", __FUNCTION__, port->number);
  1186. if (status) {
  1187. dbg("nonzero write bulk status received: %d", status);
  1188. return;
  1189. }
  1190. priv = usb_get_serial_port_data(port);
  1191. if (!priv) {
  1192. dbg("%s - bad port private data pointer - exiting", __FUNCTION__);
  1193. return;
  1194. }
  1195. /* account for transferred data */
  1196. countback = urb->actual_length;
  1197. data_offset = priv->write_offset;
  1198. if (data_offset > 0) {
  1199. /* Subtract the control bytes */
  1200. countback -= (data_offset * ((countback + (PKTSZ - 1)) / PKTSZ));
  1201. }
  1202. spin_lock_irqsave(&priv->tx_lock, flags);
  1203. --priv->tx_outstanding_urbs;
  1204. priv->tx_outstanding_bytes -= countback;
  1205. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1206. usb_serial_port_softint(port);
  1207. } /* ftdi_write_bulk_callback */
  1208. static int ftdi_write_room( struct usb_serial_port *port )
  1209. {
  1210. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1211. int room;
  1212. unsigned long flags;
  1213. dbg("%s - port %d", __FUNCTION__, port->number);
  1214. spin_lock_irqsave(&priv->tx_lock, flags);
  1215. if (priv->tx_outstanding_urbs < URB_UPPER_LIMIT) {
  1216. /*
  1217. * We really can take anything the user throws at us
  1218. * but let's pick a nice big number to tell the tty
  1219. * layer that we have lots of free space
  1220. */
  1221. room = 2048;
  1222. } else {
  1223. room = 0;
  1224. }
  1225. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1226. return room;
  1227. } /* ftdi_write_room */
  1228. static int ftdi_chars_in_buffer (struct usb_serial_port *port)
  1229. { /* ftdi_chars_in_buffer */
  1230. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1231. int buffered;
  1232. unsigned long flags;
  1233. dbg("%s - port %d", __FUNCTION__, port->number);
  1234. spin_lock_irqsave(&priv->tx_lock, flags);
  1235. buffered = (int)priv->tx_outstanding_bytes;
  1236. spin_unlock_irqrestore(&priv->tx_lock, flags);
  1237. if (buffered < 0) {
  1238. err("%s outstanding tx bytes is negative!", __FUNCTION__);
  1239. buffered = 0;
  1240. }
  1241. return buffered;
  1242. } /* ftdi_chars_in_buffer */
  1243. static void ftdi_read_bulk_callback (struct urb *urb)
  1244. { /* ftdi_read_bulk_callback */
  1245. struct usb_serial_port *port = (struct usb_serial_port *)urb->context;
  1246. struct tty_struct *tty;
  1247. struct ftdi_private *priv;
  1248. unsigned long countread;
  1249. unsigned long flags;
  1250. int status = urb->status;
  1251. if (urb->number_of_packets > 0) {
  1252. err("%s transfer_buffer_length %d actual_length %d number of packets %d",__FUNCTION__,
  1253. urb->transfer_buffer_length, urb->actual_length, urb->number_of_packets );
  1254. err("%s transfer_flags %x ", __FUNCTION__,urb->transfer_flags );
  1255. }
  1256. dbg("%s - port %d", __FUNCTION__, port->number);
  1257. if (port->open_count <= 0)
  1258. return;
  1259. tty = port->tty;
  1260. if (!tty) {
  1261. dbg("%s - bad tty pointer - exiting",__FUNCTION__);
  1262. return;
  1263. }
  1264. priv = usb_get_serial_port_data(port);
  1265. if (!priv) {
  1266. dbg("%s - bad port private data pointer - exiting", __FUNCTION__);
  1267. return;
  1268. }
  1269. if (urb != port->read_urb) {
  1270. err("%s - Not my urb!", __FUNCTION__);
  1271. }
  1272. if (status) {
  1273. /* This will happen at close every time so it is a dbg not an err */
  1274. dbg("(this is ok on close) nonzero read bulk status received: "
  1275. "%d", status);
  1276. return;
  1277. }
  1278. /* count data bytes, but not status bytes */
  1279. countread = urb->actual_length;
  1280. countread -= 2 * ((countread + (PKTSZ - 1)) / PKTSZ);
  1281. spin_lock_irqsave(&priv->rx_lock, flags);
  1282. priv->rx_bytes += countread;
  1283. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1284. ftdi_process_read(&priv->rx_work.work);
  1285. } /* ftdi_read_bulk_callback */
  1286. static void ftdi_process_read (struct work_struct *work)
  1287. { /* ftdi_process_read */
  1288. struct ftdi_private *priv =
  1289. container_of(work, struct ftdi_private, rx_work.work);
  1290. struct usb_serial_port *port = priv->port;
  1291. struct urb *urb;
  1292. struct tty_struct *tty;
  1293. char error_flag;
  1294. unsigned char *data;
  1295. int i;
  1296. int result;
  1297. int need_flip;
  1298. int packet_offset;
  1299. unsigned long flags;
  1300. dbg("%s - port %d", __FUNCTION__, port->number);
  1301. if (port->open_count <= 0)
  1302. return;
  1303. tty = port->tty;
  1304. if (!tty) {
  1305. dbg("%s - bad tty pointer - exiting",__FUNCTION__);
  1306. return;
  1307. }
  1308. priv = usb_get_serial_port_data(port);
  1309. if (!priv) {
  1310. dbg("%s - bad port private data pointer - exiting", __FUNCTION__);
  1311. return;
  1312. }
  1313. urb = port->read_urb;
  1314. if (!urb) {
  1315. dbg("%s - bad read_urb pointer - exiting", __FUNCTION__);
  1316. return;
  1317. }
  1318. data = urb->transfer_buffer;
  1319. if (priv->rx_processed) {
  1320. dbg("%s - already processed: %d bytes, %d remain", __FUNCTION__,
  1321. priv->rx_processed,
  1322. urb->actual_length - priv->rx_processed);
  1323. } else {
  1324. /* The first two bytes of every read packet are status */
  1325. if (urb->actual_length > 2) {
  1326. usb_serial_debug_data(debug, &port->dev, __FUNCTION__, urb->actual_length, data);
  1327. } else {
  1328. dbg("Status only: %03oo %03oo",data[0],data[1]);
  1329. }
  1330. }
  1331. /* TO DO -- check for hung up line and handle appropriately: */
  1332. /* send hangup */
  1333. /* See acm.c - you do a tty_hangup - eg tty_hangup(tty) */
  1334. /* if CD is dropped and the line is not CLOCAL then we should hangup */
  1335. need_flip = 0;
  1336. for (packet_offset = priv->rx_processed; packet_offset < urb->actual_length; packet_offset += PKTSZ) {
  1337. int length;
  1338. /* Compare new line status to the old one, signal if different */
  1339. /* N.B. packet may be processed more than once, but differences
  1340. * are only processed once. */
  1341. if (priv != NULL) {
  1342. char new_status = data[packet_offset+0] & FTDI_STATUS_B0_MASK;
  1343. if (new_status != priv->prev_status) {
  1344. priv->diff_status |= new_status ^ priv->prev_status;
  1345. wake_up_interruptible(&priv->delta_msr_wait);
  1346. priv->prev_status = new_status;
  1347. }
  1348. }
  1349. length = min(PKTSZ, urb->actual_length-packet_offset)-2;
  1350. if (length < 0) {
  1351. err("%s - bad packet length: %d", __FUNCTION__, length+2);
  1352. length = 0;
  1353. }
  1354. if (priv->rx_flags & THROTTLED) {
  1355. dbg("%s - throttled", __FUNCTION__);
  1356. break;
  1357. }
  1358. if (tty_buffer_request_room(tty, length) < length) {
  1359. /* break out & wait for throttling/unthrottling to happen */
  1360. dbg("%s - receive room low", __FUNCTION__);
  1361. break;
  1362. }
  1363. /* Handle errors and break */
  1364. error_flag = TTY_NORMAL;
  1365. /* Although the device uses a bitmask and hence can have multiple */
  1366. /* errors on a packet - the order here sets the priority the */
  1367. /* error is returned to the tty layer */
  1368. if ( data[packet_offset+1] & FTDI_RS_OE ) {
  1369. error_flag = TTY_OVERRUN;
  1370. dbg("OVERRRUN error");
  1371. }
  1372. if ( data[packet_offset+1] & FTDI_RS_BI ) {
  1373. error_flag = TTY_BREAK;
  1374. dbg("BREAK received");
  1375. }
  1376. if ( data[packet_offset+1] & FTDI_RS_PE ) {
  1377. error_flag = TTY_PARITY;
  1378. dbg("PARITY error");
  1379. }
  1380. if ( data[packet_offset+1] & FTDI_RS_FE ) {
  1381. error_flag = TTY_FRAME;
  1382. dbg("FRAMING error");
  1383. }
  1384. if (length > 0) {
  1385. for (i = 2; i < length+2; i++) {
  1386. /* Note that the error flag is duplicated for
  1387. every character received since we don't know
  1388. which character it applied to */
  1389. tty_insert_flip_char(tty, data[packet_offset+i], error_flag);
  1390. }
  1391. need_flip = 1;
  1392. }
  1393. #ifdef NOT_CORRECT_BUT_KEEPING_IT_FOR_NOW
  1394. /* if a parity error is detected you get status packets forever
  1395. until a character is sent without a parity error.
  1396. This doesn't work well since the application receives a never
  1397. ending stream of bad data - even though new data hasn't been sent.
  1398. Therefore I (bill) have taken this out.
  1399. However - this might make sense for framing errors and so on
  1400. so I am leaving the code in for now.
  1401. */
  1402. else {
  1403. if (error_flag != TTY_NORMAL){
  1404. dbg("error_flag is not normal");
  1405. /* In this case it is just status - if that is an error send a bad character */
  1406. if(tty->flip.count >= TTY_FLIPBUF_SIZE) {
  1407. tty_flip_buffer_push(tty);
  1408. }
  1409. tty_insert_flip_char(tty, 0xff, error_flag);
  1410. need_flip = 1;
  1411. }
  1412. }
  1413. #endif
  1414. } /* "for(packet_offset=0..." */
  1415. /* Low latency */
  1416. if (need_flip) {
  1417. tty_flip_buffer_push(tty);
  1418. }
  1419. if (packet_offset < urb->actual_length) {
  1420. /* not completely processed - record progress */
  1421. priv->rx_processed = packet_offset;
  1422. dbg("%s - incomplete, %d bytes processed, %d remain",
  1423. __FUNCTION__, packet_offset,
  1424. urb->actual_length - packet_offset);
  1425. /* check if we were throttled while processing */
  1426. spin_lock_irqsave(&priv->rx_lock, flags);
  1427. if (priv->rx_flags & THROTTLED) {
  1428. priv->rx_flags |= ACTUALLY_THROTTLED;
  1429. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1430. dbg("%s - deferring remainder until unthrottled",
  1431. __FUNCTION__);
  1432. return;
  1433. }
  1434. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1435. /* if the port is closed stop trying to read */
  1436. if (port->open_count > 0){
  1437. /* delay processing of remainder */
  1438. schedule_delayed_work(&priv->rx_work, 1);
  1439. } else {
  1440. dbg("%s - port is closed", __FUNCTION__);
  1441. }
  1442. return;
  1443. }
  1444. /* urb is completely processed */
  1445. priv->rx_processed = 0;
  1446. /* if the port is closed stop trying to read */
  1447. if (port->open_count > 0){
  1448. /* Continue trying to always read */
  1449. usb_fill_bulk_urb(port->read_urb, port->serial->dev,
  1450. usb_rcvbulkpipe(port->serial->dev, port->bulk_in_endpointAddress),
  1451. port->read_urb->transfer_buffer, port->read_urb->transfer_buffer_length,
  1452. ftdi_read_bulk_callback, port);
  1453. result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
  1454. if (result)
  1455. err("%s - failed resubmitting read urb, error %d", __FUNCTION__, result);
  1456. }
  1457. return;
  1458. } /* ftdi_process_read */
  1459. static void ftdi_break_ctl( struct usb_serial_port *port, int break_state )
  1460. {
  1461. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1462. __u16 urb_value = 0;
  1463. char buf[1];
  1464. /* break_state = -1 to turn on break, and 0 to turn off break */
  1465. /* see drivers/char/tty_io.c to see it used */
  1466. /* last_set_data_urb_value NEVER has the break bit set in it */
  1467. if (break_state) {
  1468. urb_value = priv->last_set_data_urb_value | FTDI_SIO_SET_BREAK;
  1469. } else {
  1470. urb_value = priv->last_set_data_urb_value;
  1471. }
  1472. if (usb_control_msg(port->serial->dev, usb_sndctrlpipe(port->serial->dev, 0),
  1473. FTDI_SIO_SET_DATA_REQUEST,
  1474. FTDI_SIO_SET_DATA_REQUEST_TYPE,
  1475. urb_value , priv->interface,
  1476. buf, 0, WDR_TIMEOUT) < 0) {
  1477. err("%s FAILED to enable/disable break state (state was %d)", __FUNCTION__,break_state);
  1478. }
  1479. dbg("%s break state is %d - urb is %d", __FUNCTION__,break_state, urb_value);
  1480. }
  1481. /* old_termios contains the original termios settings and tty->termios contains
  1482. * the new setting to be used
  1483. * WARNING: set_termios calls this with old_termios in kernel space
  1484. */
  1485. static void ftdi_set_termios (struct usb_serial_port *port, struct ktermios *old_termios)
  1486. { /* ftdi_termios */
  1487. struct usb_device *dev = port->serial->dev;
  1488. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1489. struct ktermios *termios = port->tty->termios;
  1490. unsigned int cflag = termios->c_cflag;
  1491. __u16 urb_value; /* will hold the new flags */
  1492. char buf[1]; /* Perhaps I should dynamically alloc this? */
  1493. // Added for xon/xoff support
  1494. unsigned int iflag = termios->c_iflag;
  1495. unsigned char vstop;
  1496. unsigned char vstart;
  1497. dbg("%s", __FUNCTION__);
  1498. /* Force baud rate if this device requires it, unless it is set to B0. */
  1499. if (priv->force_baud && ((termios->c_cflag & CBAUD) != B0)) {
  1500. dbg("%s: forcing baud rate for this device", __FUNCTION__);
  1501. tty_encode_baud_rate(port->tty, priv->force_baud,
  1502. priv->force_baud);
  1503. }
  1504. /* Force RTS-CTS if this device requires it. */
  1505. if (priv->force_rtscts) {
  1506. dbg("%s: forcing rtscts for this device", __FUNCTION__);
  1507. termios->c_cflag |= CRTSCTS;
  1508. }
  1509. cflag = termios->c_cflag;
  1510. /* FIXME -For this cut I don't care if the line is really changing or
  1511. not - so just do the change regardless - should be able to
  1512. compare old_termios and tty->termios */
  1513. /* NOTE These routines can get interrupted by
  1514. ftdi_sio_read_bulk_callback - need to examine what this
  1515. means - don't see any problems yet */
  1516. /* Set number of data bits, parity, stop bits */
  1517. termios->c_cflag &= ~CMSPAR;
  1518. urb_value = 0;
  1519. urb_value |= (cflag & CSTOPB ? FTDI_SIO_SET_DATA_STOP_BITS_2 :
  1520. FTDI_SIO_SET_DATA_STOP_BITS_1);
  1521. urb_value |= (cflag & PARENB ?
  1522. (cflag & PARODD ? FTDI_SIO_SET_DATA_PARITY_ODD :
  1523. FTDI_SIO_SET_DATA_PARITY_EVEN) :
  1524. FTDI_SIO_SET_DATA_PARITY_NONE);
  1525. if (cflag & CSIZE) {
  1526. switch (cflag & CSIZE) {
  1527. case CS5: urb_value |= 5; dbg("Setting CS5"); break;
  1528. case CS6: urb_value |= 6; dbg("Setting CS6"); break;
  1529. case CS7: urb_value |= 7; dbg("Setting CS7"); break;
  1530. case CS8: urb_value |= 8; dbg("Setting CS8"); break;
  1531. default:
  1532. err("CSIZE was set but not CS5-CS8");
  1533. }
  1534. }
  1535. /* This is needed by the break command since it uses the same command - but is
  1536. * or'ed with this value */
  1537. priv->last_set_data_urb_value = urb_value;
  1538. if (usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  1539. FTDI_SIO_SET_DATA_REQUEST,
  1540. FTDI_SIO_SET_DATA_REQUEST_TYPE,
  1541. urb_value , priv->interface,
  1542. buf, 0, WDR_SHORT_TIMEOUT) < 0) {
  1543. err("%s FAILED to set databits/stopbits/parity", __FUNCTION__);
  1544. }
  1545. /* Now do the baudrate */
  1546. if ((cflag & CBAUD) == B0 ) {
  1547. /* Disable flow control */
  1548. if (usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  1549. FTDI_SIO_SET_FLOW_CTRL_REQUEST,
  1550. FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
  1551. 0, priv->interface,
  1552. buf, 0, WDR_TIMEOUT) < 0) {
  1553. err("%s error from disable flowcontrol urb", __FUNCTION__);
  1554. }
  1555. /* Drop RTS and DTR */
  1556. clear_mctrl(port, TIOCM_DTR | TIOCM_RTS);
  1557. } else {
  1558. /* set the baudrate determined before */
  1559. if (change_speed(port)) {
  1560. err("%s urb failed to set baudrate", __FUNCTION__);
  1561. }
  1562. /* Ensure RTS and DTR are raised when baudrate changed from 0 */
  1563. if (!old_termios || (old_termios->c_cflag & CBAUD) == B0) {
  1564. set_mctrl(port, TIOCM_DTR | TIOCM_RTS);
  1565. }
  1566. }
  1567. /* Set flow control */
  1568. /* Note device also supports DTR/CD (ugh) and Xon/Xoff in hardware */
  1569. if (cflag & CRTSCTS) {
  1570. dbg("%s Setting to CRTSCTS flow control", __FUNCTION__);
  1571. if (usb_control_msg(dev,
  1572. usb_sndctrlpipe(dev, 0),
  1573. FTDI_SIO_SET_FLOW_CTRL_REQUEST,
  1574. FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
  1575. 0 , (FTDI_SIO_RTS_CTS_HS | priv->interface),
  1576. buf, 0, WDR_TIMEOUT) < 0) {
  1577. err("urb failed to set to rts/cts flow control");
  1578. }
  1579. } else {
  1580. /*
  1581. * Xon/Xoff code
  1582. *
  1583. * Check the IXOFF status in the iflag component of the termios structure
  1584. * if IXOFF is not set, the pre-xon/xoff code is executed.
  1585. */
  1586. if (iflag & IXOFF) {
  1587. dbg("%s request to enable xonxoff iflag=%04x",__FUNCTION__,iflag);
  1588. // Try to enable the XON/XOFF on the ftdi_sio
  1589. // Set the vstart and vstop -- could have been done up above where
  1590. // a lot of other dereferencing is done but that would be very
  1591. // inefficient as vstart and vstop are not always needed
  1592. vstart = termios->c_cc[VSTART];
  1593. vstop = termios->c_cc[VSTOP];
  1594. urb_value=(vstop << 8) | (vstart);
  1595. if (usb_control_msg(dev,
  1596. usb_sndctrlpipe(dev, 0),
  1597. FTDI_SIO_SET_FLOW_CTRL_REQUEST,
  1598. FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
  1599. urb_value , (FTDI_SIO_XON_XOFF_HS
  1600. | priv->interface),
  1601. buf, 0, WDR_TIMEOUT) < 0) {
  1602. err("urb failed to set to xon/xoff flow control");
  1603. }
  1604. } else {
  1605. /* else clause to only run if cfag ! CRTSCTS and iflag ! XOFF */
  1606. /* CHECKME Assuming XON/XOFF handled by tty stack - not by device */
  1607. dbg("%s Turning off hardware flow control", __FUNCTION__);
  1608. if (usb_control_msg(dev,
  1609. usb_sndctrlpipe(dev, 0),
  1610. FTDI_SIO_SET_FLOW_CTRL_REQUEST,
  1611. FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
  1612. 0, priv->interface,
  1613. buf, 0, WDR_TIMEOUT) < 0) {
  1614. err("urb failed to clear flow control");
  1615. }
  1616. }
  1617. }
  1618. return;
  1619. } /* ftdi_termios */
  1620. static int ftdi_tiocmget (struct usb_serial_port *port, struct file *file)
  1621. {
  1622. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1623. unsigned char buf[2];
  1624. int ret;
  1625. dbg("%s TIOCMGET", __FUNCTION__);
  1626. switch (priv->chip_type) {
  1627. case SIO:
  1628. /* Request the status from the device */
  1629. if ((ret = usb_control_msg(port->serial->dev,
  1630. usb_rcvctrlpipe(port->serial->dev, 0),
  1631. FTDI_SIO_GET_MODEM_STATUS_REQUEST,
  1632. FTDI_SIO_GET_MODEM_STATUS_REQUEST_TYPE,
  1633. 0, 0,
  1634. buf, 1, WDR_TIMEOUT)) < 0 ) {
  1635. err("%s Could not get modem status of device - err: %d", __FUNCTION__,
  1636. ret);
  1637. return(ret);
  1638. }
  1639. break;
  1640. case FT8U232AM:
  1641. case FT232BM:
  1642. case FT2232C:
  1643. case FT232RL:
  1644. /* the 8U232AM returns a two byte value (the sio is a 1 byte value) - in the same
  1645. format as the data returned from the in point */
  1646. if ((ret = usb_control_msg(port->serial->dev,
  1647. usb_rcvctrlpipe(port->serial->dev, 0),
  1648. FTDI_SIO_GET_MODEM_STATUS_REQUEST,
  1649. FTDI_SIO_GET_MODEM_STATUS_REQUEST_TYPE,
  1650. 0, priv->interface,
  1651. buf, 2, WDR_TIMEOUT)) < 0 ) {
  1652. err("%s Could not get modem status of device - err: %d", __FUNCTION__,
  1653. ret);
  1654. return(ret);
  1655. }
  1656. break;
  1657. default:
  1658. return -EFAULT;
  1659. break;
  1660. }
  1661. return (buf[0] & FTDI_SIO_DSR_MASK ? TIOCM_DSR : 0) |
  1662. (buf[0] & FTDI_SIO_CTS_MASK ? TIOCM_CTS : 0) |
  1663. (buf[0] & FTDI_SIO_RI_MASK ? TIOCM_RI : 0) |
  1664. (buf[0] & FTDI_SIO_RLSD_MASK ? TIOCM_CD : 0) |
  1665. priv->last_dtr_rts;
  1666. }
  1667. static int ftdi_tiocmset(struct usb_serial_port *port, struct file * file, unsigned int set, unsigned int clear)
  1668. {
  1669. dbg("%s TIOCMSET", __FUNCTION__);
  1670. return update_mctrl(port, set, clear);
  1671. }
  1672. static int ftdi_ioctl (struct usb_serial_port *port, struct file * file, unsigned int cmd, unsigned long arg)
  1673. {
  1674. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1675. dbg("%s cmd 0x%04x", __FUNCTION__, cmd);
  1676. /* Based on code from acm.c and others */
  1677. switch (cmd) {
  1678. case TIOCGSERIAL: /* gets serial port data */
  1679. return get_serial_info(port, (struct serial_struct __user *) arg);
  1680. case TIOCSSERIAL: /* sets serial port data */
  1681. return set_serial_info(port, (struct serial_struct __user *) arg);
  1682. /*
  1683. * Wait for any of the 4 modem inputs (DCD,RI,DSR,CTS) to change
  1684. * - mask passed in arg for lines of interest
  1685. * (use |'ed TIOCM_RNG/DSR/CD/CTS for masking)
  1686. * Caller should use TIOCGICOUNT to see which one it was.
  1687. *
  1688. * This code is borrowed from linux/drivers/char/serial.c
  1689. */
  1690. case TIOCMIWAIT:
  1691. while (priv != NULL) {
  1692. interruptible_sleep_on(&priv->delta_msr_wait);
  1693. /* see if a signal did it */
  1694. if (signal_pending(current))
  1695. return -ERESTARTSYS;
  1696. else {
  1697. char diff = priv->diff_status;
  1698. if (diff == 0) {
  1699. return -EIO; /* no change => error */
  1700. }
  1701. /* Consume all events */
  1702. priv->diff_status = 0;
  1703. /* Return 0 if caller wanted to know about these bits */
  1704. if ( ((arg & TIOCM_RNG) && (diff & FTDI_RS0_RI)) ||
  1705. ((arg & TIOCM_DSR) && (diff & FTDI_RS0_DSR)) ||
  1706. ((arg & TIOCM_CD) && (diff & FTDI_RS0_RLSD)) ||
  1707. ((arg & TIOCM_CTS) && (diff & FTDI_RS0_CTS)) ) {
  1708. return 0;
  1709. }
  1710. /*
  1711. * Otherwise caller can't care less about what happened,
  1712. * and so we continue to wait for more events.
  1713. */
  1714. }
  1715. }
  1716. return(0);
  1717. break;
  1718. default:
  1719. break;
  1720. }
  1721. /* This is not necessarily an error - turns out the higher layers will do
  1722. * some ioctls itself (see comment above)
  1723. */
  1724. dbg("%s arg not supported - it was 0x%04x - check /usr/include/asm/ioctls.h", __FUNCTION__, cmd);
  1725. return(-ENOIOCTLCMD);
  1726. } /* ftdi_ioctl */
  1727. static void ftdi_throttle (struct usb_serial_port *port)
  1728. {
  1729. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1730. unsigned long flags;
  1731. dbg("%s - port %d", __FUNCTION__, port->number);
  1732. spin_lock_irqsave(&priv->rx_lock, flags);
  1733. priv->rx_flags |= THROTTLED;
  1734. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1735. }
  1736. static void ftdi_unthrottle (struct usb_serial_port *port)
  1737. {
  1738. struct ftdi_private *priv = usb_get_serial_port_data(port);
  1739. int actually_throttled;
  1740. unsigned long flags;
  1741. dbg("%s - port %d", __FUNCTION__, port->number);
  1742. spin_lock_irqsave(&priv->rx_lock, flags);
  1743. actually_throttled = priv->rx_flags & ACTUALLY_THROTTLED;
  1744. priv->rx_flags &= ~(THROTTLED | ACTUALLY_THROTTLED);
  1745. spin_unlock_irqrestore(&priv->rx_lock, flags);
  1746. if (actually_throttled)
  1747. schedule_delayed_work(&priv->rx_work, 0);
  1748. }
  1749. static int __init ftdi_init (void)
  1750. {
  1751. int retval;
  1752. dbg("%s", __FUNCTION__);
  1753. if (vendor > 0 && product > 0) {
  1754. /* Add user specified VID/PID to reserved element of table. */
  1755. int i;
  1756. for (i = 0; id_table_combined[i].idVendor; i++)
  1757. ;
  1758. id_table_combined[i].match_flags = USB_DEVICE_ID_MATCH_DEVICE;
  1759. id_table_combined[i].idVendor = vendor;
  1760. id_table_combined[i].idProduct = product;
  1761. }
  1762. retval = usb_serial_register(&ftdi_sio_device);
  1763. if (retval)
  1764. goto failed_sio_register;
  1765. retval = usb_register(&ftdi_driver);
  1766. if (retval)
  1767. goto failed_usb_register;
  1768. info(DRIVER_VERSION ":" DRIVER_DESC);
  1769. return 0;
  1770. failed_usb_register:
  1771. usb_serial_deregister(&ftdi_sio_device);
  1772. failed_sio_register:
  1773. return retval;
  1774. }
  1775. static void __exit ftdi_exit (void)
  1776. {
  1777. dbg("%s", __FUNCTION__);
  1778. usb_deregister (&ftdi_driver);
  1779. usb_serial_deregister (&ftdi_sio_device);
  1780. }
  1781. module_init(ftdi_init);
  1782. module_exit(ftdi_exit);
  1783. MODULE_AUTHOR( DRIVER_AUTHOR );
  1784. MODULE_DESCRIPTION( DRIVER_DESC );
  1785. MODULE_LICENSE("GPL");
  1786. module_param(debug, bool, S_IRUGO | S_IWUSR);
  1787. MODULE_PARM_DESC(debug, "Debug enabled or not");
  1788. module_param(vendor, ushort, 0);
  1789. MODULE_PARM_DESC(vendor, "User specified vendor ID (default="
  1790. __MODULE_STRING(FTDI_VID)")");
  1791. module_param(product, ushort, 0);
  1792. MODULE_PARM_DESC(vendor, "User specified product ID");