cp210x.c 33 KB

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  1. /*
  2. * Silicon Laboratories CP210x USB to RS232 serial adaptor driver
  3. *
  4. * Copyright (C) 2005 Craig Shelley (craig@microtron.org.uk)
  5. *
  6. * This program is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU General Public License version
  8. * 2 as published by the Free Software Foundation.
  9. *
  10. * Support to set flow control line levels using TIOCMGET and TIOCMSET
  11. * thanks to Karl Hiramoto karl@hiramoto.org. RTSCTS hardware flow
  12. * control thanks to Munir Nassar nassarmu@real-time.com
  13. *
  14. */
  15. #include <linux/kernel.h>
  16. #include <linux/errno.h>
  17. #include <linux/slab.h>
  18. #include <linux/tty.h>
  19. #include <linux/tty_flip.h>
  20. #include <linux/module.h>
  21. #include <linux/moduleparam.h>
  22. #include <linux/usb.h>
  23. #include <linux/uaccess.h>
  24. #include <linux/usb/serial.h>
  25. #define DRIVER_DESC "Silicon Labs CP210x RS232 serial adaptor driver"
  26. /*
  27. * Function Prototypes
  28. */
  29. static int cp210x_open(struct tty_struct *tty, struct usb_serial_port *);
  30. static void cp210x_close(struct usb_serial_port *);
  31. static void cp210x_get_termios(struct tty_struct *, struct usb_serial_port *);
  32. static void cp210x_get_termios_port(struct usb_serial_port *port,
  33. tcflag_t *cflagp, unsigned int *baudp);
  34. static void cp210x_change_speed(struct tty_struct *, struct usb_serial_port *,
  35. struct ktermios *);
  36. static void cp210x_set_termios(struct tty_struct *, struct usb_serial_port *,
  37. struct ktermios*);
  38. static int cp210x_tiocmget(struct tty_struct *);
  39. static int cp210x_tiocmset(struct tty_struct *, unsigned int, unsigned int);
  40. static int cp210x_tiocmset_port(struct usb_serial_port *port,
  41. unsigned int, unsigned int);
  42. static void cp210x_break_ctl(struct tty_struct *, int);
  43. static int cp210x_startup(struct usb_serial *);
  44. static void cp210x_release(struct usb_serial *);
  45. static void cp210x_dtr_rts(struct usb_serial_port *p, int on);
  46. static const struct usb_device_id id_table[] = {
  47. { USB_DEVICE(0x045B, 0x0053) }, /* Renesas RX610 RX-Stick */
  48. { USB_DEVICE(0x0471, 0x066A) }, /* AKTAKOM ACE-1001 cable */
  49. { USB_DEVICE(0x0489, 0xE000) }, /* Pirelli Broadband S.p.A, DP-L10 SIP/GSM Mobile */
  50. { USB_DEVICE(0x0489, 0xE003) }, /* Pirelli Broadband S.p.A, DP-L10 SIP/GSM Mobile */
  51. { USB_DEVICE(0x0745, 0x1000) }, /* CipherLab USB CCD Barcode Scanner 1000 */
  52. { USB_DEVICE(0x0846, 0x1100) }, /* NetGear Managed Switch M4100 series, M5300 series, M7100 series */
  53. { USB_DEVICE(0x08e6, 0x5501) }, /* Gemalto Prox-PU/CU contactless smartcard reader */
  54. { USB_DEVICE(0x08FD, 0x000A) }, /* Digianswer A/S , ZigBee/802.15.4 MAC Device */
  55. { USB_DEVICE(0x0908, 0x01FF) }, /* Siemens RUGGEDCOM USB Serial Console */
  56. { USB_DEVICE(0x0B00, 0x3070) }, /* Ingenico 3070 */
  57. { USB_DEVICE(0x0BED, 0x1100) }, /* MEI (TM) Cashflow-SC Bill/Voucher Acceptor */
  58. { USB_DEVICE(0x0BED, 0x1101) }, /* MEI series 2000 Combo Acceptor */
  59. { USB_DEVICE(0x0FCF, 0x1003) }, /* Dynastream ANT development board */
  60. { USB_DEVICE(0x0FCF, 0x1004) }, /* Dynastream ANT2USB */
  61. { USB_DEVICE(0x0FCF, 0x1006) }, /* Dynastream ANT development board */
  62. { USB_DEVICE(0x0FDE, 0xCA05) }, /* OWL Wireless Electricity Monitor CM-160 */
  63. { USB_DEVICE(0x10A6, 0xAA26) }, /* Knock-off DCU-11 cable */
  64. { USB_DEVICE(0x10AB, 0x10C5) }, /* Siemens MC60 Cable */
  65. { USB_DEVICE(0x10B5, 0xAC70) }, /* Nokia CA-42 USB */
  66. { USB_DEVICE(0x10C4, 0x0F91) }, /* Vstabi */
  67. { USB_DEVICE(0x10C4, 0x1101) }, /* Arkham Technology DS101 Bus Monitor */
  68. { USB_DEVICE(0x10C4, 0x1601) }, /* Arkham Technology DS101 Adapter */
  69. { USB_DEVICE(0x10C4, 0x800A) }, /* SPORTident BSM7-D-USB main station */
  70. { USB_DEVICE(0x10C4, 0x803B) }, /* Pololu USB-serial converter */
  71. { USB_DEVICE(0x10C4, 0x8044) }, /* Cygnal Debug Adapter */
  72. { USB_DEVICE(0x10C4, 0x804E) }, /* Software Bisque Paramount ME build-in converter */
  73. { USB_DEVICE(0x10C4, 0x8053) }, /* Enfora EDG1228 */
  74. { USB_DEVICE(0x10C4, 0x8054) }, /* Enfora GSM2228 */
  75. { USB_DEVICE(0x10C4, 0x8056) }, /* Lorenz Messtechnik devices */
  76. { USB_DEVICE(0x10C4, 0x8066) }, /* Argussoft In-System Programmer */
  77. { USB_DEVICE(0x10C4, 0x806F) }, /* IMS USB to RS422 Converter Cable */
  78. { USB_DEVICE(0x10C4, 0x807A) }, /* Crumb128 board */
  79. { USB_DEVICE(0x10C4, 0x80C4) }, /* Cygnal Integrated Products, Inc., Optris infrared thermometer */
  80. { USB_DEVICE(0x10C4, 0x80CA) }, /* Degree Controls Inc */
  81. { USB_DEVICE(0x10C4, 0x80DD) }, /* Tracient RFID */
  82. { USB_DEVICE(0x10C4, 0x80F6) }, /* Suunto sports instrument */
  83. { USB_DEVICE(0x10C4, 0x8115) }, /* Arygon NFC/Mifare Reader */
  84. { USB_DEVICE(0x10C4, 0x813D) }, /* Burnside Telecom Deskmobile */
  85. { USB_DEVICE(0x10C4, 0x813F) }, /* Tams Master Easy Control */
  86. { USB_DEVICE(0x10C4, 0x814A) }, /* West Mountain Radio RIGblaster P&P */
  87. { USB_DEVICE(0x10C4, 0x814B) }, /* West Mountain Radio RIGtalk */
  88. { USB_DEVICE(0x2405, 0x0003) }, /* West Mountain Radio RIGblaster Advantage */
  89. { USB_DEVICE(0x10C4, 0x8156) }, /* B&G H3000 link cable */
  90. { USB_DEVICE(0x10C4, 0x815E) }, /* Helicomm IP-Link 1220-DVM */
  91. { USB_DEVICE(0x10C4, 0x815F) }, /* Timewave HamLinkUSB */
  92. { USB_DEVICE(0x10C4, 0x817C) }, /* CESINEL MEDCAL N Power Quality Monitor */
  93. { USB_DEVICE(0x10C4, 0x817D) }, /* CESINEL MEDCAL NT Power Quality Monitor */
  94. { USB_DEVICE(0x10C4, 0x817E) }, /* CESINEL MEDCAL S Power Quality Monitor */
  95. { USB_DEVICE(0x10C4, 0x818B) }, /* AVIT Research USB to TTL */
  96. { USB_DEVICE(0x10C4, 0x819F) }, /* MJS USB Toslink Switcher */
  97. { USB_DEVICE(0x10C4, 0x81A6) }, /* ThinkOptics WavIt */
  98. { USB_DEVICE(0x10C4, 0x81A9) }, /* Multiplex RC Interface */
  99. { USB_DEVICE(0x10C4, 0x81AC) }, /* MSD Dash Hawk */
  100. { USB_DEVICE(0x10C4, 0x81AD) }, /* INSYS USB Modem */
  101. { USB_DEVICE(0x10C4, 0x81C8) }, /* Lipowsky Industrie Elektronik GmbH, Baby-JTAG */
  102. { USB_DEVICE(0x10C4, 0x81D7) }, /* IAI Corp. RCB-CV-USB USB to RS485 Adaptor */
  103. { USB_DEVICE(0x10C4, 0x81E2) }, /* Lipowsky Industrie Elektronik GmbH, Baby-LIN */
  104. { USB_DEVICE(0x10C4, 0x81E7) }, /* Aerocomm Radio */
  105. { USB_DEVICE(0x10C4, 0x81E8) }, /* Zephyr Bioharness */
  106. { USB_DEVICE(0x10C4, 0x81F2) }, /* C1007 HF band RFID controller */
  107. { USB_DEVICE(0x10C4, 0x8218) }, /* Lipowsky Industrie Elektronik GmbH, HARP-1 */
  108. { USB_DEVICE(0x10C4, 0x822B) }, /* Modem EDGE(GSM) Comander 2 */
  109. { USB_DEVICE(0x10C4, 0x826B) }, /* Cygnal Integrated Products, Inc., Fasttrax GPS demonstration module */
  110. { USB_DEVICE(0x10C4, 0x8281) }, /* Nanotec Plug & Drive */
  111. { USB_DEVICE(0x10C4, 0x8293) }, /* Telegesis ETRX2USB */
  112. { USB_DEVICE(0x10C4, 0x82EF) }, /* CESINEL FALCO 6105 AC Power Supply */
  113. { USB_DEVICE(0x10C4, 0x82F1) }, /* CESINEL MEDCAL EFD Earth Fault Detector */
  114. { USB_DEVICE(0x10C4, 0x82F2) }, /* CESINEL MEDCAL ST Network Analyzer */
  115. { USB_DEVICE(0x10C4, 0x82F4) }, /* Starizona MicroTouch */
  116. { USB_DEVICE(0x10C4, 0x82F9) }, /* Procyon AVS */
  117. { USB_DEVICE(0x10C4, 0x8341) }, /* Siemens MC35PU GPRS Modem */
  118. { USB_DEVICE(0x10C4, 0x8382) }, /* Cygnal Integrated Products, Inc. */
  119. { USB_DEVICE(0x10C4, 0x83A8) }, /* Amber Wireless AMB2560 */
  120. { USB_DEVICE(0x10C4, 0x83D8) }, /* DekTec DTA Plus VHF/UHF Booster/Attenuator */
  121. { USB_DEVICE(0x10C4, 0x8411) }, /* Kyocera GPS Module */
  122. { USB_DEVICE(0x10C4, 0x8418) }, /* IRZ Automation Teleport SG-10 GSM/GPRS Modem */
  123. { USB_DEVICE(0x10C4, 0x846E) }, /* BEI USB Sensor Interface (VCP) */
  124. { USB_DEVICE(0x10C4, 0x8470) }, /* Juniper Networks BX Series System Console */
  125. { USB_DEVICE(0x10C4, 0x8477) }, /* Balluff RFID */
  126. { USB_DEVICE(0x10C4, 0x84B6) }, /* Starizona Hyperion */
  127. { USB_DEVICE(0x10C4, 0x851E) }, /* CESINEL MEDCAL PT Network Analyzer */
  128. { USB_DEVICE(0x10C4, 0x85A7) }, /* LifeScan OneTouch Verio IQ */
  129. { USB_DEVICE(0x10C4, 0x85B8) }, /* CESINEL ReCon T Energy Logger */
  130. { USB_DEVICE(0x10C4, 0x85EA) }, /* AC-Services IBUS-IF */
  131. { USB_DEVICE(0x10C4, 0x85EB) }, /* AC-Services CIS-IBUS */
  132. { USB_DEVICE(0x10C4, 0x85F8) }, /* Virtenio Preon32 */
  133. { USB_DEVICE(0x10C4, 0x8664) }, /* AC-Services CAN-IF */
  134. { USB_DEVICE(0x10C4, 0x8665) }, /* AC-Services OBD-IF */
  135. { USB_DEVICE(0x10C4, 0x8856) }, /* CEL EM357 ZigBee USB Stick - LR */
  136. { USB_DEVICE(0x10C4, 0x8857) }, /* CEL EM357 ZigBee USB Stick */
  137. { USB_DEVICE(0x10C4, 0x88A4) }, /* MMB Networks ZigBee USB Device */
  138. { USB_DEVICE(0x10C4, 0x88A5) }, /* Planet Innovation Ingeni ZigBee USB Device */
  139. { USB_DEVICE(0x10C4, 0x88FB) }, /* CESINEL MEDCAL STII Network Analyzer */
  140. { USB_DEVICE(0x10C4, 0x8938) }, /* CESINEL MEDCAL S II Network Analyzer */
  141. { USB_DEVICE(0x10C4, 0x8946) }, /* Ketra N1 Wireless Interface */
  142. { USB_DEVICE(0x10C4, 0x8962) }, /* Brim Brothers charging dock */
  143. { USB_DEVICE(0x10C4, 0x8977) }, /* CEL MeshWorks DevKit Device */
  144. { USB_DEVICE(0x10C4, 0x8998) }, /* KCF Technologies PRN */
  145. { USB_DEVICE(0x10C4, 0x89A4) }, /* CESINEL FTBC Flexible Thyristor Bridge Controller */
  146. { USB_DEVICE(0x10C4, 0x89FB) }, /* Qivicon ZigBee USB Radio Stick */
  147. { USB_DEVICE(0x10C4, 0x8A2A) }, /* HubZ dual ZigBee and Z-Wave dongle */
  148. { USB_DEVICE(0x10C4, 0x8A5E) }, /* CEL EM3588 ZigBee USB Stick Long Range */
  149. { USB_DEVICE(0x10C4, 0x8B34) }, /* Qivicon ZigBee USB Radio Stick */
  150. { USB_DEVICE(0x10C4, 0xEA60) }, /* Silicon Labs factory default */
  151. { USB_DEVICE(0x10C4, 0xEA61) }, /* Silicon Labs factory default */
  152. { USB_DEVICE(0x10C4, 0xEA63) }, /* Silicon Labs Windows Update (CP2101-4/CP2102N) */
  153. { USB_DEVICE(0x10C4, 0xEA70) }, /* Silicon Labs factory default */
  154. { USB_DEVICE(0x10C4, 0xEA71) }, /* Infinity GPS-MIC-1 Radio Monophone */
  155. { USB_DEVICE(0x10C4, 0xEA7A) }, /* Silicon Labs Windows Update (CP2105) */
  156. { USB_DEVICE(0x10C4, 0xEA7B) }, /* Silicon Labs Windows Update (CP2108) */
  157. { USB_DEVICE(0x10C4, 0xF001) }, /* Elan Digital Systems USBscope50 */
  158. { USB_DEVICE(0x10C4, 0xF002) }, /* Elan Digital Systems USBwave12 */
  159. { USB_DEVICE(0x10C4, 0xF003) }, /* Elan Digital Systems USBpulse100 */
  160. { USB_DEVICE(0x10C4, 0xF004) }, /* Elan Digital Systems USBcount50 */
  161. { USB_DEVICE(0x10C5, 0xEA61) }, /* Silicon Labs MobiData GPRS USB Modem */
  162. { USB_DEVICE(0x10CE, 0xEA6A) }, /* Silicon Labs MobiData GPRS USB Modem 100EU */
  163. { USB_DEVICE(0x12B8, 0xEC60) }, /* Link G4 ECU */
  164. { USB_DEVICE(0x12B8, 0xEC62) }, /* Link G4+ ECU */
  165. { USB_DEVICE(0x13AD, 0x9999) }, /* Baltech card reader */
  166. { USB_DEVICE(0x1555, 0x0004) }, /* Owen AC4 USB-RS485 Converter */
  167. { USB_DEVICE(0x155A, 0x1006) }, /* ELDAT Easywave RX09 */
  168. { USB_DEVICE(0x166A, 0x0201) }, /* Clipsal 5500PACA C-Bus Pascal Automation Controller */
  169. { USB_DEVICE(0x166A, 0x0301) }, /* Clipsal 5800PC C-Bus Wireless PC Interface */
  170. { USB_DEVICE(0x166A, 0x0303) }, /* Clipsal 5500PCU C-Bus USB interface */
  171. { USB_DEVICE(0x166A, 0x0304) }, /* Clipsal 5000CT2 C-Bus Black and White Touchscreen */
  172. { USB_DEVICE(0x166A, 0x0305) }, /* Clipsal C-5000CT2 C-Bus Spectrum Colour Touchscreen */
  173. { USB_DEVICE(0x166A, 0x0401) }, /* Clipsal L51xx C-Bus Architectural Dimmer */
  174. { USB_DEVICE(0x166A, 0x0101) }, /* Clipsal 5560884 C-Bus Multi-room Audio Matrix Switcher */
  175. { USB_DEVICE(0x16C0, 0x09B0) }, /* Lunatico Seletek */
  176. { USB_DEVICE(0x16C0, 0x09B1) }, /* Lunatico Seletek */
  177. { USB_DEVICE(0x16D6, 0x0001) }, /* Jablotron serial interface */
  178. { USB_DEVICE(0x16DC, 0x0010) }, /* W-IE-NE-R Plein & Baus GmbH PL512 Power Supply */
  179. { USB_DEVICE(0x16DC, 0x0011) }, /* W-IE-NE-R Plein & Baus GmbH RCM Remote Control for MARATON Power Supply */
  180. { USB_DEVICE(0x16DC, 0x0012) }, /* W-IE-NE-R Plein & Baus GmbH MPOD Multi Channel Power Supply */
  181. { USB_DEVICE(0x16DC, 0x0015) }, /* W-IE-NE-R Plein & Baus GmbH CML Control, Monitoring and Data Logger */
  182. { USB_DEVICE(0x17A8, 0x0001) }, /* Kamstrup Optical Eye/3-wire */
  183. { USB_DEVICE(0x17A8, 0x0005) }, /* Kamstrup M-Bus Master MultiPort 250D */
  184. { USB_DEVICE(0x17F4, 0xAAAA) }, /* Wavesense Jazz blood glucose meter */
  185. { USB_DEVICE(0x1843, 0x0200) }, /* Vaisala USB Instrument Cable */
  186. { USB_DEVICE(0x18EF, 0xE00F) }, /* ELV USB-I2C-Interface */
  187. { USB_DEVICE(0x18EF, 0xE025) }, /* ELV Marble Sound Board 1 */
  188. { USB_DEVICE(0x18EF, 0xE030) }, /* ELV ALC 8xxx Battery Charger */
  189. { USB_DEVICE(0x18EF, 0xE032) }, /* ELV TFD500 Data Logger */
  190. { USB_DEVICE(0x1901, 0x0190) }, /* GE B850 CP2105 Recorder interface */
  191. { USB_DEVICE(0x1901, 0x0193) }, /* GE B650 CP2104 PMC interface */
  192. { USB_DEVICE(0x1901, 0x0194) }, /* GE Healthcare Remote Alarm Box */
  193. { USB_DEVICE(0x1901, 0x0195) }, /* GE B850/B650/B450 CP2104 DP UART interface */
  194. { USB_DEVICE(0x1901, 0x0196) }, /* GE B850 CP2105 DP UART interface */
  195. { USB_DEVICE(0x19CF, 0x3000) }, /* Parrot NMEA GPS Flight Recorder */
  196. { USB_DEVICE(0x1ADB, 0x0001) }, /* Schweitzer Engineering C662 Cable */
  197. { USB_DEVICE(0x1B1C, 0x1C00) }, /* Corsair USB Dongle */
  198. { USB_DEVICE(0x1BA4, 0x0002) }, /* Silicon Labs 358x factory default */
  199. { USB_DEVICE(0x1BE3, 0x07A6) }, /* WAGO 750-923 USB Service Cable */
  200. { USB_DEVICE(0x1D6F, 0x0010) }, /* Seluxit ApS RF Dongle */
  201. { USB_DEVICE(0x1E29, 0x0102) }, /* Festo CPX-USB */
  202. { USB_DEVICE(0x1E29, 0x0501) }, /* Festo CMSP */
  203. { USB_DEVICE(0x1FB9, 0x0100) }, /* Lake Shore Model 121 Current Source */
  204. { USB_DEVICE(0x1FB9, 0x0200) }, /* Lake Shore Model 218A Temperature Monitor */
  205. { USB_DEVICE(0x1FB9, 0x0201) }, /* Lake Shore Model 219 Temperature Monitor */
  206. { USB_DEVICE(0x1FB9, 0x0202) }, /* Lake Shore Model 233 Temperature Transmitter */
  207. { USB_DEVICE(0x1FB9, 0x0203) }, /* Lake Shore Model 235 Temperature Transmitter */
  208. { USB_DEVICE(0x1FB9, 0x0300) }, /* Lake Shore Model 335 Temperature Controller */
  209. { USB_DEVICE(0x1FB9, 0x0301) }, /* Lake Shore Model 336 Temperature Controller */
  210. { USB_DEVICE(0x1FB9, 0x0302) }, /* Lake Shore Model 350 Temperature Controller */
  211. { USB_DEVICE(0x1FB9, 0x0303) }, /* Lake Shore Model 371 AC Bridge */
  212. { USB_DEVICE(0x1FB9, 0x0400) }, /* Lake Shore Model 411 Handheld Gaussmeter */
  213. { USB_DEVICE(0x1FB9, 0x0401) }, /* Lake Shore Model 425 Gaussmeter */
  214. { USB_DEVICE(0x1FB9, 0x0402) }, /* Lake Shore Model 455A Gaussmeter */
  215. { USB_DEVICE(0x1FB9, 0x0403) }, /* Lake Shore Model 475A Gaussmeter */
  216. { USB_DEVICE(0x1FB9, 0x0404) }, /* Lake Shore Model 465 Three Axis Gaussmeter */
  217. { USB_DEVICE(0x1FB9, 0x0600) }, /* Lake Shore Model 625A Superconducting MPS */
  218. { USB_DEVICE(0x1FB9, 0x0601) }, /* Lake Shore Model 642A Magnet Power Supply */
  219. { USB_DEVICE(0x1FB9, 0x0602) }, /* Lake Shore Model 648 Magnet Power Supply */
  220. { USB_DEVICE(0x1FB9, 0x0700) }, /* Lake Shore Model 737 VSM Controller */
  221. { USB_DEVICE(0x1FB9, 0x0701) }, /* Lake Shore Model 776 Hall Matrix */
  222. { USB_DEVICE(0x2626, 0xEA60) }, /* Aruba Networks 7xxx USB Serial Console */
  223. { USB_DEVICE(0x3195, 0xF190) }, /* Link Instruments MSO-19 */
  224. { USB_DEVICE(0x3195, 0xF280) }, /* Link Instruments MSO-28 */
  225. { USB_DEVICE(0x3195, 0xF281) }, /* Link Instruments MSO-28 */
  226. { USB_DEVICE(0x3923, 0x7A0B) }, /* National Instruments USB Serial Console */
  227. { USB_DEVICE(0x413C, 0x9500) }, /* DW700 GPS USB interface */
  228. { } /* Terminating Entry */
  229. };
  230. MODULE_DEVICE_TABLE(usb, id_table);
  231. struct cp210x_serial_private {
  232. __u8 bInterfaceNumber;
  233. };
  234. static struct usb_serial_driver cp210x_device = {
  235. .driver = {
  236. .owner = THIS_MODULE,
  237. .name = "cp210x",
  238. },
  239. .id_table = id_table,
  240. .num_ports = 1,
  241. .bulk_in_size = 256,
  242. .bulk_out_size = 256,
  243. .open = cp210x_open,
  244. .close = cp210x_close,
  245. .break_ctl = cp210x_break_ctl,
  246. .set_termios = cp210x_set_termios,
  247. .tiocmget = cp210x_tiocmget,
  248. .tiocmset = cp210x_tiocmset,
  249. .attach = cp210x_startup,
  250. .release = cp210x_release,
  251. .dtr_rts = cp210x_dtr_rts
  252. };
  253. static struct usb_serial_driver * const serial_drivers[] = {
  254. &cp210x_device, NULL
  255. };
  256. /* Config request types */
  257. #define REQTYPE_HOST_TO_INTERFACE 0x41
  258. #define REQTYPE_INTERFACE_TO_HOST 0xc1
  259. #define REQTYPE_HOST_TO_DEVICE 0x40
  260. #define REQTYPE_DEVICE_TO_HOST 0xc0
  261. /* Config request codes */
  262. #define CP210X_IFC_ENABLE 0x00
  263. #define CP210X_SET_BAUDDIV 0x01
  264. #define CP210X_GET_BAUDDIV 0x02
  265. #define CP210X_SET_LINE_CTL 0x03
  266. #define CP210X_GET_LINE_CTL 0x04
  267. #define CP210X_SET_BREAK 0x05
  268. #define CP210X_IMM_CHAR 0x06
  269. #define CP210X_SET_MHS 0x07
  270. #define CP210X_GET_MDMSTS 0x08
  271. #define CP210X_SET_XON 0x09
  272. #define CP210X_SET_XOFF 0x0A
  273. #define CP210X_SET_EVENTMASK 0x0B
  274. #define CP210X_GET_EVENTMASK 0x0C
  275. #define CP210X_SET_CHAR 0x0D
  276. #define CP210X_GET_CHARS 0x0E
  277. #define CP210X_GET_PROPS 0x0F
  278. #define CP210X_GET_COMM_STATUS 0x10
  279. #define CP210X_RESET 0x11
  280. #define CP210X_PURGE 0x12
  281. #define CP210X_SET_FLOW 0x13
  282. #define CP210X_GET_FLOW 0x14
  283. #define CP210X_EMBED_EVENTS 0x15
  284. #define CP210X_GET_EVENTSTATE 0x16
  285. #define CP210X_SET_CHARS 0x19
  286. #define CP210X_GET_BAUDRATE 0x1D
  287. #define CP210X_SET_BAUDRATE 0x1E
  288. /* CP210X_IFC_ENABLE */
  289. #define UART_ENABLE 0x0001
  290. #define UART_DISABLE 0x0000
  291. /* CP210X_(SET|GET)_BAUDDIV */
  292. #define BAUD_RATE_GEN_FREQ 0x384000
  293. /* CP210X_(SET|GET)_LINE_CTL */
  294. #define BITS_DATA_MASK 0X0f00
  295. #define BITS_DATA_5 0X0500
  296. #define BITS_DATA_6 0X0600
  297. #define BITS_DATA_7 0X0700
  298. #define BITS_DATA_8 0X0800
  299. #define BITS_DATA_9 0X0900
  300. #define BITS_PARITY_MASK 0x00f0
  301. #define BITS_PARITY_NONE 0x0000
  302. #define BITS_PARITY_ODD 0x0010
  303. #define BITS_PARITY_EVEN 0x0020
  304. #define BITS_PARITY_MARK 0x0030
  305. #define BITS_PARITY_SPACE 0x0040
  306. #define BITS_STOP_MASK 0x000f
  307. #define BITS_STOP_1 0x0000
  308. #define BITS_STOP_1_5 0x0001
  309. #define BITS_STOP_2 0x0002
  310. /* CP210X_SET_BREAK */
  311. #define BREAK_ON 0x0001
  312. #define BREAK_OFF 0x0000
  313. /* CP210X_(SET_MHS|GET_MDMSTS) */
  314. #define CONTROL_DTR 0x0001
  315. #define CONTROL_RTS 0x0002
  316. #define CONTROL_CTS 0x0010
  317. #define CONTROL_DSR 0x0020
  318. #define CONTROL_RING 0x0040
  319. #define CONTROL_DCD 0x0080
  320. #define CONTROL_WRITE_DTR 0x0100
  321. #define CONTROL_WRITE_RTS 0x0200
  322. /*
  323. * cp210x_get_config
  324. * Reads from the CP210x configuration registers
  325. * 'size' is specified in bytes.
  326. * 'data' is a pointer to a pre-allocated array of integers large
  327. * enough to hold 'size' bytes (with 4 bytes to each integer)
  328. */
  329. static int cp210x_get_config(struct usb_serial_port *port, u8 request,
  330. unsigned int *data, int size)
  331. {
  332. struct usb_serial *serial = port->serial;
  333. struct cp210x_serial_private *spriv = usb_get_serial_data(serial);
  334. __le32 *buf;
  335. int result, i, length;
  336. /* Number of integers required to contain the array */
  337. length = (((size - 1) | 3) + 1) / 4;
  338. buf = kcalloc(length, sizeof(__le32), GFP_KERNEL);
  339. if (!buf)
  340. return -ENOMEM;
  341. /* Issue the request, attempting to read 'size' bytes */
  342. result = usb_control_msg(serial->dev, usb_rcvctrlpipe(serial->dev, 0),
  343. request, REQTYPE_INTERFACE_TO_HOST, 0x0000,
  344. spriv->bInterfaceNumber, buf, size,
  345. USB_CTRL_GET_TIMEOUT);
  346. /* Convert data into an array of integers */
  347. for (i = 0; i < length; i++)
  348. data[i] = le32_to_cpu(buf[i]);
  349. kfree(buf);
  350. if (result != size) {
  351. dev_dbg(&port->dev, "%s - Unable to send config request, request=0x%x size=%d result=%d\n",
  352. __func__, request, size, result);
  353. if (result > 0)
  354. result = -EPROTO;
  355. return result;
  356. }
  357. return 0;
  358. }
  359. /*
  360. * cp210x_set_config
  361. * Writes to the CP210x configuration registers
  362. * Values less than 16 bits wide are sent directly
  363. * 'size' is specified in bytes.
  364. */
  365. static int cp210x_set_config(struct usb_serial_port *port, u8 request,
  366. unsigned int *data, int size)
  367. {
  368. struct usb_serial *serial = port->serial;
  369. struct cp210x_serial_private *spriv = usb_get_serial_data(serial);
  370. __le32 *buf;
  371. int result, i, length;
  372. /* Number of integers required to contain the array */
  373. length = (((size - 1) | 3) + 1) / 4;
  374. buf = kmalloc(length * sizeof(__le32), GFP_KERNEL);
  375. if (!buf)
  376. return -ENOMEM;
  377. /* Array of integers into bytes */
  378. for (i = 0; i < length; i++)
  379. buf[i] = cpu_to_le32(data[i]);
  380. if (size > 2) {
  381. result = usb_control_msg(serial->dev,
  382. usb_sndctrlpipe(serial->dev, 0),
  383. request, REQTYPE_HOST_TO_INTERFACE, 0x0000,
  384. spriv->bInterfaceNumber, buf, size,
  385. USB_CTRL_SET_TIMEOUT);
  386. } else {
  387. result = usb_control_msg(serial->dev,
  388. usb_sndctrlpipe(serial->dev, 0),
  389. request, REQTYPE_HOST_TO_INTERFACE, data[0],
  390. spriv->bInterfaceNumber, NULL, 0,
  391. USB_CTRL_SET_TIMEOUT);
  392. }
  393. kfree(buf);
  394. if ((size > 2 && result != size) || result < 0) {
  395. dev_dbg(&port->dev, "%s - Unable to send request, request=0x%x size=%d result=%d\n",
  396. __func__, request, size, result);
  397. if (result > 0)
  398. result = -EPROTO;
  399. return result;
  400. }
  401. return 0;
  402. }
  403. /*
  404. * cp210x_set_config_single
  405. * Convenience function for calling cp210x_set_config on single data values
  406. * without requiring an integer pointer
  407. */
  408. static inline int cp210x_set_config_single(struct usb_serial_port *port,
  409. u8 request, unsigned int data)
  410. {
  411. return cp210x_set_config(port, request, &data, 2);
  412. }
  413. /*
  414. * cp210x_quantise_baudrate
  415. * Quantises the baud rate as per AN205 Table 1
  416. */
  417. static unsigned int cp210x_quantise_baudrate(unsigned int baud)
  418. {
  419. if (baud <= 300)
  420. baud = 300;
  421. else if (baud <= 600) baud = 600;
  422. else if (baud <= 1200) baud = 1200;
  423. else if (baud <= 1800) baud = 1800;
  424. else if (baud <= 2400) baud = 2400;
  425. else if (baud <= 4000) baud = 4000;
  426. else if (baud <= 4803) baud = 4800;
  427. else if (baud <= 7207) baud = 7200;
  428. else if (baud <= 9612) baud = 9600;
  429. else if (baud <= 14428) baud = 14400;
  430. else if (baud <= 16062) baud = 16000;
  431. else if (baud <= 19250) baud = 19200;
  432. else if (baud <= 28912) baud = 28800;
  433. else if (baud <= 38601) baud = 38400;
  434. else if (baud <= 51558) baud = 51200;
  435. else if (baud <= 56280) baud = 56000;
  436. else if (baud <= 58053) baud = 57600;
  437. else if (baud <= 64111) baud = 64000;
  438. else if (baud <= 77608) baud = 76800;
  439. else if (baud <= 117028) baud = 115200;
  440. else if (baud <= 129347) baud = 128000;
  441. else if (baud <= 156868) baud = 153600;
  442. else if (baud <= 237832) baud = 230400;
  443. else if (baud <= 254234) baud = 250000;
  444. else if (baud <= 273066) baud = 256000;
  445. else if (baud <= 491520) baud = 460800;
  446. else if (baud <= 567138) baud = 500000;
  447. else if (baud <= 670254) baud = 576000;
  448. else if (baud < 1000000)
  449. baud = 921600;
  450. else if (baud > 2000000)
  451. baud = 2000000;
  452. return baud;
  453. }
  454. static int cp210x_open(struct tty_struct *tty, struct usb_serial_port *port)
  455. {
  456. int result;
  457. result = cp210x_set_config_single(port, CP210X_IFC_ENABLE,
  458. UART_ENABLE);
  459. if (result) {
  460. dev_err(&port->dev, "%s - Unable to enable UART\n", __func__);
  461. return result;
  462. }
  463. /* Configure the termios structure */
  464. cp210x_get_termios(tty, port);
  465. /* The baud rate must be initialised on cp2104 */
  466. if (tty)
  467. cp210x_change_speed(tty, port, NULL);
  468. return usb_serial_generic_open(tty, port);
  469. }
  470. static void cp210x_close(struct usb_serial_port *port)
  471. {
  472. usb_serial_generic_close(port);
  473. cp210x_set_config_single(port, CP210X_IFC_ENABLE, UART_DISABLE);
  474. }
  475. /*
  476. * cp210x_get_termios
  477. * Reads the baud rate, data bits, parity, stop bits and flow control mode
  478. * from the device, corrects any unsupported values, and configures the
  479. * termios structure to reflect the state of the device
  480. */
  481. static void cp210x_get_termios(struct tty_struct *tty,
  482. struct usb_serial_port *port)
  483. {
  484. unsigned int baud;
  485. if (tty) {
  486. cp210x_get_termios_port(tty->driver_data,
  487. &tty->termios.c_cflag, &baud);
  488. tty_encode_baud_rate(tty, baud, baud);
  489. } else {
  490. tcflag_t cflag;
  491. cflag = 0;
  492. cp210x_get_termios_port(port, &cflag, &baud);
  493. }
  494. }
  495. /*
  496. * cp210x_get_termios_port
  497. * This is the heart of cp210x_get_termios which always uses a &usb_serial_port.
  498. */
  499. static void cp210x_get_termios_port(struct usb_serial_port *port,
  500. tcflag_t *cflagp, unsigned int *baudp)
  501. {
  502. struct device *dev = &port->dev;
  503. tcflag_t cflag;
  504. unsigned int modem_ctl[4];
  505. unsigned int baud;
  506. unsigned int bits;
  507. cp210x_get_config(port, CP210X_GET_BAUDRATE, &baud, 4);
  508. dev_dbg(dev, "%s - baud rate = %d\n", __func__, baud);
  509. *baudp = baud;
  510. cflag = *cflagp;
  511. cp210x_get_config(port, CP210X_GET_LINE_CTL, &bits, 2);
  512. cflag &= ~CSIZE;
  513. switch (bits & BITS_DATA_MASK) {
  514. case BITS_DATA_5:
  515. dev_dbg(dev, "%s - data bits = 5\n", __func__);
  516. cflag |= CS5;
  517. break;
  518. case BITS_DATA_6:
  519. dev_dbg(dev, "%s - data bits = 6\n", __func__);
  520. cflag |= CS6;
  521. break;
  522. case BITS_DATA_7:
  523. dev_dbg(dev, "%s - data bits = 7\n", __func__);
  524. cflag |= CS7;
  525. break;
  526. case BITS_DATA_8:
  527. dev_dbg(dev, "%s - data bits = 8\n", __func__);
  528. cflag |= CS8;
  529. break;
  530. case BITS_DATA_9:
  531. dev_dbg(dev, "%s - data bits = 9 (not supported, using 8 data bits)\n", __func__);
  532. cflag |= CS8;
  533. bits &= ~BITS_DATA_MASK;
  534. bits |= BITS_DATA_8;
  535. cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2);
  536. break;
  537. default:
  538. dev_dbg(dev, "%s - Unknown number of data bits, using 8\n", __func__);
  539. cflag |= CS8;
  540. bits &= ~BITS_DATA_MASK;
  541. bits |= BITS_DATA_8;
  542. cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2);
  543. break;
  544. }
  545. switch (bits & BITS_PARITY_MASK) {
  546. case BITS_PARITY_NONE:
  547. dev_dbg(dev, "%s - parity = NONE\n", __func__);
  548. cflag &= ~PARENB;
  549. break;
  550. case BITS_PARITY_ODD:
  551. dev_dbg(dev, "%s - parity = ODD\n", __func__);
  552. cflag |= (PARENB|PARODD);
  553. break;
  554. case BITS_PARITY_EVEN:
  555. dev_dbg(dev, "%s - parity = EVEN\n", __func__);
  556. cflag &= ~PARODD;
  557. cflag |= PARENB;
  558. break;
  559. case BITS_PARITY_MARK:
  560. dev_dbg(dev, "%s - parity = MARK\n", __func__);
  561. cflag |= (PARENB|PARODD|CMSPAR);
  562. break;
  563. case BITS_PARITY_SPACE:
  564. dev_dbg(dev, "%s - parity = SPACE\n", __func__);
  565. cflag &= ~PARODD;
  566. cflag |= (PARENB|CMSPAR);
  567. break;
  568. default:
  569. dev_dbg(dev, "%s - Unknown parity mode, disabling parity\n", __func__);
  570. cflag &= ~PARENB;
  571. bits &= ~BITS_PARITY_MASK;
  572. cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2);
  573. break;
  574. }
  575. cflag &= ~CSTOPB;
  576. switch (bits & BITS_STOP_MASK) {
  577. case BITS_STOP_1:
  578. dev_dbg(dev, "%s - stop bits = 1\n", __func__);
  579. break;
  580. case BITS_STOP_1_5:
  581. dev_dbg(dev, "%s - stop bits = 1.5 (not supported, using 1 stop bit)\n", __func__);
  582. bits &= ~BITS_STOP_MASK;
  583. cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2);
  584. break;
  585. case BITS_STOP_2:
  586. dev_dbg(dev, "%s - stop bits = 2\n", __func__);
  587. cflag |= CSTOPB;
  588. break;
  589. default:
  590. dev_dbg(dev, "%s - Unknown number of stop bits, using 1 stop bit\n", __func__);
  591. bits &= ~BITS_STOP_MASK;
  592. cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2);
  593. break;
  594. }
  595. cp210x_get_config(port, CP210X_GET_FLOW, modem_ctl, 16);
  596. if (modem_ctl[0] & 0x0008) {
  597. dev_dbg(dev, "%s - flow control = CRTSCTS\n", __func__);
  598. cflag |= CRTSCTS;
  599. } else {
  600. dev_dbg(dev, "%s - flow control = NONE\n", __func__);
  601. cflag &= ~CRTSCTS;
  602. }
  603. *cflagp = cflag;
  604. }
  605. /*
  606. * CP2101 supports the following baud rates:
  607. *
  608. * 300, 600, 1200, 1800, 2400, 4800, 7200, 9600, 14400, 19200, 28800,
  609. * 38400, 56000, 57600, 115200, 128000, 230400, 460800, 921600
  610. *
  611. * CP2102 and CP2103 support the following additional rates:
  612. *
  613. * 4000, 16000, 51200, 64000, 76800, 153600, 250000, 256000, 500000,
  614. * 576000
  615. *
  616. * The device will map a requested rate to a supported one, but the result
  617. * of requests for rates greater than 1053257 is undefined (see AN205).
  618. *
  619. * CP2104, CP2105 and CP2110 support most rates up to 2M, 921k and 1M baud,
  620. * respectively, with an error less than 1%. The actual rates are determined
  621. * by
  622. *
  623. * div = round(freq / (2 x prescale x request))
  624. * actual = freq / (2 x prescale x div)
  625. *
  626. * For CP2104 and CP2105 freq is 48Mhz and prescale is 4 for request <= 365bps
  627. * or 1 otherwise.
  628. * For CP2110 freq is 24Mhz and prescale is 4 for request <= 300bps or 1
  629. * otherwise.
  630. */
  631. static void cp210x_change_speed(struct tty_struct *tty,
  632. struct usb_serial_port *port, struct ktermios *old_termios)
  633. {
  634. u32 baud;
  635. baud = tty->termios.c_ospeed;
  636. /* This maps the requested rate to a rate valid on cp2102 or cp2103,
  637. * or to an arbitrary rate in [1M,2M].
  638. *
  639. * NOTE: B0 is not implemented.
  640. */
  641. baud = cp210x_quantise_baudrate(baud);
  642. dev_dbg(&port->dev, "%s - setting baud rate to %u\n", __func__, baud);
  643. if (cp210x_set_config(port, CP210X_SET_BAUDRATE, &baud,
  644. sizeof(baud))) {
  645. dev_warn(&port->dev, "failed to set baud rate to %u\n", baud);
  646. if (old_termios)
  647. baud = old_termios->c_ospeed;
  648. else
  649. baud = 9600;
  650. }
  651. tty_encode_baud_rate(tty, baud, baud);
  652. }
  653. static void cp210x_set_termios(struct tty_struct *tty,
  654. struct usb_serial_port *port, struct ktermios *old_termios)
  655. {
  656. struct device *dev = &port->dev;
  657. unsigned int cflag, old_cflag;
  658. unsigned int bits;
  659. unsigned int modem_ctl[4];
  660. cflag = tty->termios.c_cflag;
  661. old_cflag = old_termios->c_cflag;
  662. if (tty->termios.c_ospeed != old_termios->c_ospeed)
  663. cp210x_change_speed(tty, port, old_termios);
  664. /* If the number of data bits is to be updated */
  665. if ((cflag & CSIZE) != (old_cflag & CSIZE)) {
  666. cp210x_get_config(port, CP210X_GET_LINE_CTL, &bits, 2);
  667. bits &= ~BITS_DATA_MASK;
  668. switch (cflag & CSIZE) {
  669. case CS5:
  670. bits |= BITS_DATA_5;
  671. dev_dbg(dev, "%s - data bits = 5\n", __func__);
  672. break;
  673. case CS6:
  674. bits |= BITS_DATA_6;
  675. dev_dbg(dev, "%s - data bits = 6\n", __func__);
  676. break;
  677. case CS7:
  678. bits |= BITS_DATA_7;
  679. dev_dbg(dev, "%s - data bits = 7\n", __func__);
  680. break;
  681. case CS8:
  682. bits |= BITS_DATA_8;
  683. dev_dbg(dev, "%s - data bits = 8\n", __func__);
  684. break;
  685. /*case CS9:
  686. bits |= BITS_DATA_9;
  687. dev_dbg(dev, "%s - data bits = 9\n", __func__);
  688. break;*/
  689. default:
  690. dev_dbg(dev, "cp210x driver does not support the number of bits requested, using 8 bit mode\n");
  691. bits |= BITS_DATA_8;
  692. break;
  693. }
  694. if (cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2))
  695. dev_dbg(dev, "Number of data bits requested not supported by device\n");
  696. }
  697. if ((cflag & (PARENB|PARODD|CMSPAR)) !=
  698. (old_cflag & (PARENB|PARODD|CMSPAR))) {
  699. cp210x_get_config(port, CP210X_GET_LINE_CTL, &bits, 2);
  700. bits &= ~BITS_PARITY_MASK;
  701. if (cflag & PARENB) {
  702. if (cflag & CMSPAR) {
  703. if (cflag & PARODD) {
  704. bits |= BITS_PARITY_MARK;
  705. dev_dbg(dev, "%s - parity = MARK\n", __func__);
  706. } else {
  707. bits |= BITS_PARITY_SPACE;
  708. dev_dbg(dev, "%s - parity = SPACE\n", __func__);
  709. }
  710. } else {
  711. if (cflag & PARODD) {
  712. bits |= BITS_PARITY_ODD;
  713. dev_dbg(dev, "%s - parity = ODD\n", __func__);
  714. } else {
  715. bits |= BITS_PARITY_EVEN;
  716. dev_dbg(dev, "%s - parity = EVEN\n", __func__);
  717. }
  718. }
  719. }
  720. if (cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2))
  721. dev_dbg(dev, "Parity mode not supported by device\n");
  722. }
  723. if ((cflag & CSTOPB) != (old_cflag & CSTOPB)) {
  724. cp210x_get_config(port, CP210X_GET_LINE_CTL, &bits, 2);
  725. bits &= ~BITS_STOP_MASK;
  726. if (cflag & CSTOPB) {
  727. bits |= BITS_STOP_2;
  728. dev_dbg(dev, "%s - stop bits = 2\n", __func__);
  729. } else {
  730. bits |= BITS_STOP_1;
  731. dev_dbg(dev, "%s - stop bits = 1\n", __func__);
  732. }
  733. if (cp210x_set_config(port, CP210X_SET_LINE_CTL, &bits, 2))
  734. dev_dbg(dev, "Number of stop bits requested not supported by device\n");
  735. }
  736. if ((cflag & CRTSCTS) != (old_cflag & CRTSCTS)) {
  737. cp210x_get_config(port, CP210X_GET_FLOW, modem_ctl, 16);
  738. dev_dbg(dev, "%s - read modem controls = 0x%.4x 0x%.4x 0x%.4x 0x%.4x\n",
  739. __func__, modem_ctl[0], modem_ctl[1],
  740. modem_ctl[2], modem_ctl[3]);
  741. if (cflag & CRTSCTS) {
  742. modem_ctl[0] &= ~0x7B;
  743. modem_ctl[0] |= 0x09;
  744. modem_ctl[1] = 0x80;
  745. dev_dbg(dev, "%s - flow control = CRTSCTS\n", __func__);
  746. } else {
  747. modem_ctl[0] &= ~0x7B;
  748. modem_ctl[0] |= 0x01;
  749. modem_ctl[1] = 0x40;
  750. dev_dbg(dev, "%s - flow control = NONE\n", __func__);
  751. }
  752. dev_dbg(dev, "%s - write modem controls = 0x%.4x 0x%.4x 0x%.4x 0x%.4x\n",
  753. __func__, modem_ctl[0], modem_ctl[1],
  754. modem_ctl[2], modem_ctl[3]);
  755. cp210x_set_config(port, CP210X_SET_FLOW, modem_ctl, 16);
  756. }
  757. }
  758. static int cp210x_tiocmset(struct tty_struct *tty,
  759. unsigned int set, unsigned int clear)
  760. {
  761. struct usb_serial_port *port = tty->driver_data;
  762. return cp210x_tiocmset_port(port, set, clear);
  763. }
  764. static int cp210x_tiocmset_port(struct usb_serial_port *port,
  765. unsigned int set, unsigned int clear)
  766. {
  767. unsigned int control = 0;
  768. if (set & TIOCM_RTS) {
  769. control |= CONTROL_RTS;
  770. control |= CONTROL_WRITE_RTS;
  771. }
  772. if (set & TIOCM_DTR) {
  773. control |= CONTROL_DTR;
  774. control |= CONTROL_WRITE_DTR;
  775. }
  776. if (clear & TIOCM_RTS) {
  777. control &= ~CONTROL_RTS;
  778. control |= CONTROL_WRITE_RTS;
  779. }
  780. if (clear & TIOCM_DTR) {
  781. control &= ~CONTROL_DTR;
  782. control |= CONTROL_WRITE_DTR;
  783. }
  784. dev_dbg(&port->dev, "%s - control = 0x%.4x\n", __func__, control);
  785. return cp210x_set_config(port, CP210X_SET_MHS, &control, 2);
  786. }
  787. static void cp210x_dtr_rts(struct usb_serial_port *p, int on)
  788. {
  789. if (on)
  790. cp210x_tiocmset_port(p, TIOCM_DTR|TIOCM_RTS, 0);
  791. else
  792. cp210x_tiocmset_port(p, 0, TIOCM_DTR|TIOCM_RTS);
  793. }
  794. static int cp210x_tiocmget(struct tty_struct *tty)
  795. {
  796. struct usb_serial_port *port = tty->driver_data;
  797. unsigned int control;
  798. int result;
  799. result = cp210x_get_config(port, CP210X_GET_MDMSTS, &control, 1);
  800. if (result)
  801. return result;
  802. result = ((control & CONTROL_DTR) ? TIOCM_DTR : 0)
  803. |((control & CONTROL_RTS) ? TIOCM_RTS : 0)
  804. |((control & CONTROL_CTS) ? TIOCM_CTS : 0)
  805. |((control & CONTROL_DSR) ? TIOCM_DSR : 0)
  806. |((control & CONTROL_RING)? TIOCM_RI : 0)
  807. |((control & CONTROL_DCD) ? TIOCM_CD : 0);
  808. dev_dbg(&port->dev, "%s - control = 0x%.2x\n", __func__, control);
  809. return result;
  810. }
  811. static void cp210x_break_ctl(struct tty_struct *tty, int break_state)
  812. {
  813. struct usb_serial_port *port = tty->driver_data;
  814. unsigned int state;
  815. if (break_state == 0)
  816. state = BREAK_OFF;
  817. else
  818. state = BREAK_ON;
  819. dev_dbg(&port->dev, "%s - turning break %s\n", __func__,
  820. state == BREAK_OFF ? "off" : "on");
  821. cp210x_set_config(port, CP210X_SET_BREAK, &state, 2);
  822. }
  823. static int cp210x_startup(struct usb_serial *serial)
  824. {
  825. struct usb_host_interface *cur_altsetting;
  826. struct cp210x_serial_private *spriv;
  827. spriv = kzalloc(sizeof(*spriv), GFP_KERNEL);
  828. if (!spriv)
  829. return -ENOMEM;
  830. cur_altsetting = serial->interface->cur_altsetting;
  831. spriv->bInterfaceNumber = cur_altsetting->desc.bInterfaceNumber;
  832. usb_set_serial_data(serial, spriv);
  833. return 0;
  834. }
  835. static void cp210x_release(struct usb_serial *serial)
  836. {
  837. struct cp210x_serial_private *spriv;
  838. spriv = usb_get_serial_data(serial);
  839. kfree(spriv);
  840. }
  841. module_usb_serial_driver(serial_drivers, id_table);
  842. MODULE_DESCRIPTION(DRIVER_DESC);
  843. MODULE_LICENSE("GPL");