iuu_phoenix.c 30 KB

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  1. /*
  2. * Infinity Unlimited USB Phoenix driver
  3. *
  4. * Copyright (C) 2010 James Courtier-Dutton (James@superbug.co.uk)
  5. * Copyright (C) 2007 Alain Degreffe (eczema@ecze.com)
  6. *
  7. * Original code taken from iuutool (Copyright (C) 2006 Juan Carlos Borrás)
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * And tested with help of WB Electronics
  15. *
  16. */
  17. #include <linux/kernel.h>
  18. #include <linux/errno.h>
  19. #include <linux/slab.h>
  20. #include <linux/tty.h>
  21. #include <linux/tty_driver.h>
  22. #include <linux/tty_flip.h>
  23. #include <linux/serial.h>
  24. #include <linux/module.h>
  25. #include <linux/moduleparam.h>
  26. #include <linux/spinlock.h>
  27. #include <linux/uaccess.h>
  28. #include <linux/usb.h>
  29. #include <linux/usb/serial.h>
  30. #include "iuu_phoenix.h"
  31. #include <linux/random.h>
  32. #define DRIVER_DESC "Infinity USB Unlimited Phoenix driver"
  33. static const struct usb_device_id id_table[] = {
  34. {USB_DEVICE(IUU_USB_VENDOR_ID, IUU_USB_PRODUCT_ID)},
  35. {} /* Terminating entry */
  36. };
  37. MODULE_DEVICE_TABLE(usb, id_table);
  38. /* turbo parameter */
  39. static int boost = 100;
  40. static int clockmode = 1;
  41. static int cdmode = 1;
  42. static int iuu_cardin;
  43. static int iuu_cardout;
  44. static bool xmas;
  45. static int vcc_default = 5;
  46. static int iuu_create_sysfs_attrs(struct usb_serial_port *port);
  47. static int iuu_remove_sysfs_attrs(struct usb_serial_port *port);
  48. static void read_rxcmd_callback(struct urb *urb);
  49. struct iuu_private {
  50. spinlock_t lock; /* store irq state */
  51. u8 line_status;
  52. int tiostatus; /* store IUART SIGNAL for tiocmget call */
  53. u8 reset; /* if 1 reset is needed */
  54. int poll; /* number of poll */
  55. u8 *writebuf; /* buffer for writing to device */
  56. int writelen; /* num of byte to write to device */
  57. u8 *buf; /* used for initialize speed */
  58. u8 len;
  59. int vcc; /* vcc (either 3 or 5 V) */
  60. u32 baud;
  61. u32 boost;
  62. u32 clk;
  63. };
  64. static int iuu_port_probe(struct usb_serial_port *port)
  65. {
  66. struct iuu_private *priv;
  67. int ret;
  68. priv = kzalloc(sizeof(struct iuu_private), GFP_KERNEL);
  69. if (!priv)
  70. return -ENOMEM;
  71. priv->buf = kzalloc(256, GFP_KERNEL);
  72. if (!priv->buf) {
  73. kfree(priv);
  74. return -ENOMEM;
  75. }
  76. priv->writebuf = kzalloc(256, GFP_KERNEL);
  77. if (!priv->writebuf) {
  78. kfree(priv->buf);
  79. kfree(priv);
  80. return -ENOMEM;
  81. }
  82. priv->vcc = vcc_default;
  83. spin_lock_init(&priv->lock);
  84. usb_set_serial_port_data(port, priv);
  85. ret = iuu_create_sysfs_attrs(port);
  86. if (ret) {
  87. kfree(priv->writebuf);
  88. kfree(priv->buf);
  89. kfree(priv);
  90. return ret;
  91. }
  92. return 0;
  93. }
  94. static int iuu_port_remove(struct usb_serial_port *port)
  95. {
  96. struct iuu_private *priv = usb_get_serial_port_data(port);
  97. iuu_remove_sysfs_attrs(port);
  98. kfree(priv->writebuf);
  99. kfree(priv->buf);
  100. kfree(priv);
  101. return 0;
  102. }
  103. static int iuu_tiocmset(struct tty_struct *tty,
  104. unsigned int set, unsigned int clear)
  105. {
  106. struct usb_serial_port *port = tty->driver_data;
  107. struct iuu_private *priv = usb_get_serial_port_data(port);
  108. unsigned long flags;
  109. /* FIXME: locking on tiomstatus */
  110. dev_dbg(&port->dev, "%s msg : SET = 0x%04x, CLEAR = 0x%04x\n",
  111. __func__, set, clear);
  112. spin_lock_irqsave(&priv->lock, flags);
  113. if ((set & TIOCM_RTS) && !(priv->tiostatus == TIOCM_RTS)) {
  114. dev_dbg(&port->dev, "%s TIOCMSET RESET called !!!\n", __func__);
  115. priv->reset = 1;
  116. }
  117. if (set & TIOCM_RTS)
  118. priv->tiostatus = TIOCM_RTS;
  119. spin_unlock_irqrestore(&priv->lock, flags);
  120. return 0;
  121. }
  122. /* This is used to provide a carrier detect mechanism
  123. * When a card is present, the response is 0x00
  124. * When no card , the reader respond with TIOCM_CD
  125. * This is known as CD autodetect mechanism
  126. */
  127. static int iuu_tiocmget(struct tty_struct *tty)
  128. {
  129. struct usb_serial_port *port = tty->driver_data;
  130. struct iuu_private *priv = usb_get_serial_port_data(port);
  131. unsigned long flags;
  132. int rc;
  133. spin_lock_irqsave(&priv->lock, flags);
  134. rc = priv->tiostatus;
  135. spin_unlock_irqrestore(&priv->lock, flags);
  136. return rc;
  137. }
  138. static void iuu_rxcmd(struct urb *urb)
  139. {
  140. struct usb_serial_port *port = urb->context;
  141. int result;
  142. int status = urb->status;
  143. if (status) {
  144. dev_dbg(&port->dev, "%s - status = %d\n", __func__, status);
  145. /* error stop all */
  146. return;
  147. }
  148. memset(port->write_urb->transfer_buffer, IUU_UART_RX, 1);
  149. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  150. usb_sndbulkpipe(port->serial->dev,
  151. port->bulk_out_endpointAddress),
  152. port->write_urb->transfer_buffer, 1,
  153. read_rxcmd_callback, port);
  154. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  155. }
  156. static int iuu_reset(struct usb_serial_port *port, u8 wt)
  157. {
  158. struct iuu_private *priv = usb_get_serial_port_data(port);
  159. int result;
  160. char *buf_ptr = port->write_urb->transfer_buffer;
  161. /* Prepare the reset sequence */
  162. *buf_ptr++ = IUU_RST_SET;
  163. *buf_ptr++ = IUU_DELAY_MS;
  164. *buf_ptr++ = wt;
  165. *buf_ptr = IUU_RST_CLEAR;
  166. /* send the sequence */
  167. usb_fill_bulk_urb(port->write_urb,
  168. port->serial->dev,
  169. usb_sndbulkpipe(port->serial->dev,
  170. port->bulk_out_endpointAddress),
  171. port->write_urb->transfer_buffer, 4, iuu_rxcmd, port);
  172. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  173. priv->reset = 0;
  174. return result;
  175. }
  176. /* Status Function
  177. * Return value is
  178. * 0x00 = no card
  179. * 0x01 = smartcard
  180. * 0x02 = sim card
  181. */
  182. static void iuu_update_status_callback(struct urb *urb)
  183. {
  184. struct usb_serial_port *port = urb->context;
  185. struct iuu_private *priv = usb_get_serial_port_data(port);
  186. u8 *st;
  187. int status = urb->status;
  188. if (status) {
  189. dev_dbg(&port->dev, "%s - status = %d\n", __func__, status);
  190. /* error stop all */
  191. return;
  192. }
  193. st = urb->transfer_buffer;
  194. dev_dbg(&port->dev, "%s - enter\n", __func__);
  195. if (urb->actual_length == 1) {
  196. switch (st[0]) {
  197. case 0x1:
  198. priv->tiostatus = iuu_cardout;
  199. break;
  200. case 0x0:
  201. priv->tiostatus = iuu_cardin;
  202. break;
  203. default:
  204. priv->tiostatus = iuu_cardin;
  205. }
  206. }
  207. iuu_rxcmd(urb);
  208. }
  209. static void iuu_status_callback(struct urb *urb)
  210. {
  211. struct usb_serial_port *port = urb->context;
  212. int result;
  213. int status = urb->status;
  214. dev_dbg(&port->dev, "%s - status = %d\n", __func__, status);
  215. usb_fill_bulk_urb(port->read_urb, port->serial->dev,
  216. usb_rcvbulkpipe(port->serial->dev,
  217. port->bulk_in_endpointAddress),
  218. port->read_urb->transfer_buffer, 256,
  219. iuu_update_status_callback, port);
  220. result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
  221. }
  222. static int iuu_status(struct usb_serial_port *port)
  223. {
  224. int result;
  225. memset(port->write_urb->transfer_buffer, IUU_GET_STATE_REGISTER, 1);
  226. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  227. usb_sndbulkpipe(port->serial->dev,
  228. port->bulk_out_endpointAddress),
  229. port->write_urb->transfer_buffer, 1,
  230. iuu_status_callback, port);
  231. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  232. return result;
  233. }
  234. static int bulk_immediate(struct usb_serial_port *port, u8 *buf, u8 count)
  235. {
  236. int status;
  237. struct usb_serial *serial = port->serial;
  238. int actual = 0;
  239. /* send the data out the bulk port */
  240. status =
  241. usb_bulk_msg(serial->dev,
  242. usb_sndbulkpipe(serial->dev,
  243. port->bulk_out_endpointAddress), buf,
  244. count, &actual, 1000);
  245. if (status != IUU_OPERATION_OK)
  246. dev_dbg(&port->dev, "%s - error = %2x\n", __func__, status);
  247. else
  248. dev_dbg(&port->dev, "%s - write OK !\n", __func__);
  249. return status;
  250. }
  251. static int read_immediate(struct usb_serial_port *port, u8 *buf, u8 count)
  252. {
  253. int status;
  254. struct usb_serial *serial = port->serial;
  255. int actual = 0;
  256. /* send the data out the bulk port */
  257. status =
  258. usb_bulk_msg(serial->dev,
  259. usb_rcvbulkpipe(serial->dev,
  260. port->bulk_in_endpointAddress), buf,
  261. count, &actual, 1000);
  262. if (status != IUU_OPERATION_OK)
  263. dev_dbg(&port->dev, "%s - error = %2x\n", __func__, status);
  264. else
  265. dev_dbg(&port->dev, "%s - read OK !\n", __func__);
  266. return status;
  267. }
  268. static int iuu_led(struct usb_serial_port *port, unsigned int R,
  269. unsigned int G, unsigned int B, u8 f)
  270. {
  271. int status;
  272. u8 *buf;
  273. buf = kmalloc(8, GFP_KERNEL);
  274. if (!buf)
  275. return -ENOMEM;
  276. buf[0] = IUU_SET_LED;
  277. buf[1] = R & 0xFF;
  278. buf[2] = (R >> 8) & 0xFF;
  279. buf[3] = G & 0xFF;
  280. buf[4] = (G >> 8) & 0xFF;
  281. buf[5] = B & 0xFF;
  282. buf[6] = (B >> 8) & 0xFF;
  283. buf[7] = f;
  284. status = bulk_immediate(port, buf, 8);
  285. kfree(buf);
  286. if (status != IUU_OPERATION_OK)
  287. dev_dbg(&port->dev, "%s - led error status = %2x\n", __func__, status);
  288. else
  289. dev_dbg(&port->dev, "%s - led OK !\n", __func__);
  290. return IUU_OPERATION_OK;
  291. }
  292. static void iuu_rgbf_fill_buffer(u8 *buf, u8 r1, u8 r2, u8 g1, u8 g2, u8 b1,
  293. u8 b2, u8 freq)
  294. {
  295. *buf++ = IUU_SET_LED;
  296. *buf++ = r1;
  297. *buf++ = r2;
  298. *buf++ = g1;
  299. *buf++ = g2;
  300. *buf++ = b1;
  301. *buf++ = b2;
  302. *buf = freq;
  303. }
  304. static void iuu_led_activity_on(struct urb *urb)
  305. {
  306. struct usb_serial_port *port = urb->context;
  307. int result;
  308. char *buf_ptr = port->write_urb->transfer_buffer;
  309. *buf_ptr++ = IUU_SET_LED;
  310. if (xmas == 1) {
  311. get_random_bytes(buf_ptr, 6);
  312. *(buf_ptr+7) = 1;
  313. } else {
  314. iuu_rgbf_fill_buffer(buf_ptr, 255, 255, 0, 0, 0, 0, 255);
  315. }
  316. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  317. usb_sndbulkpipe(port->serial->dev,
  318. port->bulk_out_endpointAddress),
  319. port->write_urb->transfer_buffer, 8 ,
  320. iuu_rxcmd, port);
  321. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  322. }
  323. static void iuu_led_activity_off(struct urb *urb)
  324. {
  325. struct usb_serial_port *port = urb->context;
  326. int result;
  327. char *buf_ptr = port->write_urb->transfer_buffer;
  328. if (xmas == 1) {
  329. iuu_rxcmd(urb);
  330. return;
  331. } else {
  332. *buf_ptr++ = IUU_SET_LED;
  333. iuu_rgbf_fill_buffer(buf_ptr, 0, 0, 255, 255, 0, 0, 255);
  334. }
  335. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  336. usb_sndbulkpipe(port->serial->dev,
  337. port->bulk_out_endpointAddress),
  338. port->write_urb->transfer_buffer, 8 ,
  339. iuu_rxcmd, port);
  340. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  341. }
  342. static int iuu_clk(struct usb_serial_port *port, int dwFrq)
  343. {
  344. int status;
  345. struct iuu_private *priv = usb_get_serial_port_data(port);
  346. int Count = 0;
  347. u8 FrqGenAdr = 0x69;
  348. u8 DIV = 0; /* 8bit */
  349. u8 XDRV = 0; /* 8bit */
  350. u8 PUMP = 0; /* 3bit */
  351. u8 PBmsb = 0; /* 2bit */
  352. u8 PBlsb = 0; /* 8bit */
  353. u8 PO = 0; /* 1bit */
  354. u8 Q = 0; /* 7bit */
  355. /* 24bit = 3bytes */
  356. unsigned int P = 0;
  357. unsigned int P2 = 0;
  358. int frq = (int)dwFrq;
  359. if (frq == 0) {
  360. priv->buf[Count++] = IUU_UART_WRITE_I2C;
  361. priv->buf[Count++] = FrqGenAdr << 1;
  362. priv->buf[Count++] = 0x09;
  363. priv->buf[Count++] = 0x00;
  364. status = bulk_immediate(port, (u8 *) priv->buf, Count);
  365. if (status != 0) {
  366. dev_dbg(&port->dev, "%s - write error\n", __func__);
  367. return status;
  368. }
  369. } else if (frq == 3579000) {
  370. DIV = 100;
  371. P = 1193;
  372. Q = 40;
  373. XDRV = 0;
  374. } else if (frq == 3680000) {
  375. DIV = 105;
  376. P = 161;
  377. Q = 5;
  378. XDRV = 0;
  379. } else if (frq == 6000000) {
  380. DIV = 66;
  381. P = 66;
  382. Q = 2;
  383. XDRV = 0x28;
  384. } else {
  385. unsigned int result = 0;
  386. unsigned int tmp = 0;
  387. unsigned int check;
  388. unsigned int check2;
  389. char found = 0x00;
  390. unsigned int lQ = 2;
  391. unsigned int lP = 2055;
  392. unsigned int lDiv = 4;
  393. for (lQ = 2; lQ <= 47 && !found; lQ++)
  394. for (lP = 2055; lP >= 8 && !found; lP--)
  395. for (lDiv = 4; lDiv <= 127 && !found; lDiv++) {
  396. tmp = (12000000 / lDiv) * (lP / lQ);
  397. if (abs((int)(tmp - frq)) <
  398. abs((int)(frq - result))) {
  399. check2 = (12000000 / lQ);
  400. if (check2 < 250000)
  401. continue;
  402. check = (12000000 / lQ) * lP;
  403. if (check > 400000000)
  404. continue;
  405. if (check < 100000000)
  406. continue;
  407. if (lDiv < 4 || lDiv > 127)
  408. continue;
  409. result = tmp;
  410. P = lP;
  411. DIV = lDiv;
  412. Q = lQ;
  413. if (result == frq)
  414. found = 0x01;
  415. }
  416. }
  417. }
  418. P2 = ((P - PO) / 2) - 4;
  419. DIV = DIV;
  420. PUMP = 0x04;
  421. PBmsb = (P2 >> 8 & 0x03);
  422. PBlsb = P2 & 0xFF;
  423. PO = (P >> 10) & 0x01;
  424. Q = Q - 2;
  425. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  426. priv->buf[Count++] = FrqGenAdr << 1;
  427. priv->buf[Count++] = 0x09;
  428. priv->buf[Count++] = 0x20; /* Adr = 0x09 */
  429. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  430. priv->buf[Count++] = FrqGenAdr << 1;
  431. priv->buf[Count++] = 0x0C;
  432. priv->buf[Count++] = DIV; /* Adr = 0x0C */
  433. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  434. priv->buf[Count++] = FrqGenAdr << 1;
  435. priv->buf[Count++] = 0x12;
  436. priv->buf[Count++] = XDRV; /* Adr = 0x12 */
  437. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  438. priv->buf[Count++] = FrqGenAdr << 1;
  439. priv->buf[Count++] = 0x13;
  440. priv->buf[Count++] = 0x6B; /* Adr = 0x13 */
  441. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  442. priv->buf[Count++] = FrqGenAdr << 1;
  443. priv->buf[Count++] = 0x40;
  444. priv->buf[Count++] = (0xC0 | ((PUMP & 0x07) << 2)) |
  445. (PBmsb & 0x03); /* Adr = 0x40 */
  446. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  447. priv->buf[Count++] = FrqGenAdr << 1;
  448. priv->buf[Count++] = 0x41;
  449. priv->buf[Count++] = PBlsb; /* Adr = 0x41 */
  450. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  451. priv->buf[Count++] = FrqGenAdr << 1;
  452. priv->buf[Count++] = 0x42;
  453. priv->buf[Count++] = Q | (((PO & 0x01) << 7)); /* Adr = 0x42 */
  454. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  455. priv->buf[Count++] = FrqGenAdr << 1;
  456. priv->buf[Count++] = 0x44;
  457. priv->buf[Count++] = (char)0xFF; /* Adr = 0x44 */
  458. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  459. priv->buf[Count++] = FrqGenAdr << 1;
  460. priv->buf[Count++] = 0x45;
  461. priv->buf[Count++] = (char)0xFE; /* Adr = 0x45 */
  462. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  463. priv->buf[Count++] = FrqGenAdr << 1;
  464. priv->buf[Count++] = 0x46;
  465. priv->buf[Count++] = 0x7F; /* Adr = 0x46 */
  466. priv->buf[Count++] = IUU_UART_WRITE_I2C; /* 0x4C */
  467. priv->buf[Count++] = FrqGenAdr << 1;
  468. priv->buf[Count++] = 0x47;
  469. priv->buf[Count++] = (char)0x84; /* Adr = 0x47 */
  470. status = bulk_immediate(port, (u8 *) priv->buf, Count);
  471. if (status != IUU_OPERATION_OK)
  472. dev_dbg(&port->dev, "%s - write error\n", __func__);
  473. return status;
  474. }
  475. static int iuu_uart_flush(struct usb_serial_port *port)
  476. {
  477. struct device *dev = &port->dev;
  478. int i;
  479. int status;
  480. u8 rxcmd = IUU_UART_RX;
  481. struct iuu_private *priv = usb_get_serial_port_data(port);
  482. if (iuu_led(port, 0xF000, 0, 0, 0xFF) < 0)
  483. return -EIO;
  484. for (i = 0; i < 2; i++) {
  485. status = bulk_immediate(port, &rxcmd, 1);
  486. if (status != IUU_OPERATION_OK) {
  487. dev_dbg(dev, "%s - uart_flush_write error\n", __func__);
  488. return status;
  489. }
  490. status = read_immediate(port, &priv->len, 1);
  491. if (status != IUU_OPERATION_OK) {
  492. dev_dbg(dev, "%s - uart_flush_read error\n", __func__);
  493. return status;
  494. }
  495. if (priv->len > 0) {
  496. dev_dbg(dev, "%s - uart_flush datalen is : %i\n", __func__, priv->len);
  497. status = read_immediate(port, priv->buf, priv->len);
  498. if (status != IUU_OPERATION_OK) {
  499. dev_dbg(dev, "%s - uart_flush_read error\n", __func__);
  500. return status;
  501. }
  502. }
  503. }
  504. dev_dbg(dev, "%s - uart_flush_read OK!\n", __func__);
  505. iuu_led(port, 0, 0xF000, 0, 0xFF);
  506. return status;
  507. }
  508. static void read_buf_callback(struct urb *urb)
  509. {
  510. struct usb_serial_port *port = urb->context;
  511. unsigned char *data = urb->transfer_buffer;
  512. int status = urb->status;
  513. if (status) {
  514. if (status == -EPROTO) {
  515. /* reschedule needed */
  516. }
  517. return;
  518. }
  519. dev_dbg(&port->dev, "%s - %i chars to write\n", __func__, urb->actual_length);
  520. if (data == NULL)
  521. dev_dbg(&port->dev, "%s - data is NULL !!!\n", __func__);
  522. if (urb->actual_length && data) {
  523. tty_insert_flip_string(&port->port, data, urb->actual_length);
  524. tty_flip_buffer_push(&port->port);
  525. }
  526. iuu_led_activity_on(urb);
  527. }
  528. static int iuu_bulk_write(struct usb_serial_port *port)
  529. {
  530. struct iuu_private *priv = usb_get_serial_port_data(port);
  531. unsigned long flags;
  532. int result;
  533. int buf_len;
  534. char *buf_ptr = port->write_urb->transfer_buffer;
  535. spin_lock_irqsave(&priv->lock, flags);
  536. *buf_ptr++ = IUU_UART_ESC;
  537. *buf_ptr++ = IUU_UART_TX;
  538. *buf_ptr++ = priv->writelen;
  539. memcpy(buf_ptr, priv->writebuf, priv->writelen);
  540. buf_len = priv->writelen;
  541. priv->writelen = 0;
  542. spin_unlock_irqrestore(&priv->lock, flags);
  543. dev_dbg(&port->dev, "%s - writing %i chars : %*ph\n", __func__,
  544. buf_len, buf_len, buf_ptr);
  545. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  546. usb_sndbulkpipe(port->serial->dev,
  547. port->bulk_out_endpointAddress),
  548. port->write_urb->transfer_buffer, buf_len + 3,
  549. iuu_rxcmd, port);
  550. result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
  551. usb_serial_port_softint(port);
  552. return result;
  553. }
  554. static int iuu_read_buf(struct usb_serial_port *port, int len)
  555. {
  556. int result;
  557. usb_fill_bulk_urb(port->read_urb, port->serial->dev,
  558. usb_rcvbulkpipe(port->serial->dev,
  559. port->bulk_in_endpointAddress),
  560. port->read_urb->transfer_buffer, len,
  561. read_buf_callback, port);
  562. result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
  563. return result;
  564. }
  565. static void iuu_uart_read_callback(struct urb *urb)
  566. {
  567. struct usb_serial_port *port = urb->context;
  568. struct iuu_private *priv = usb_get_serial_port_data(port);
  569. unsigned long flags;
  570. int status = urb->status;
  571. int error = 0;
  572. int len = 0;
  573. unsigned char *data = urb->transfer_buffer;
  574. priv->poll++;
  575. if (status) {
  576. dev_dbg(&port->dev, "%s - status = %d\n", __func__, status);
  577. /* error stop all */
  578. return;
  579. }
  580. if (data == NULL)
  581. dev_dbg(&port->dev, "%s - data is NULL !!!\n", __func__);
  582. if (urb->actual_length == 1 && data != NULL)
  583. len = (int) data[0];
  584. if (urb->actual_length > 1) {
  585. dev_dbg(&port->dev, "%s - urb->actual_length = %i\n", __func__,
  586. urb->actual_length);
  587. error = 1;
  588. return;
  589. }
  590. /* if len > 0 call readbuf */
  591. if (len > 0 && error == 0) {
  592. dev_dbg(&port->dev, "%s - call read buf - len to read is %i\n",
  593. __func__, len);
  594. status = iuu_read_buf(port, len);
  595. return;
  596. }
  597. /* need to update status ? */
  598. if (priv->poll > 99) {
  599. status = iuu_status(port);
  600. priv->poll = 0;
  601. return;
  602. }
  603. /* reset waiting ? */
  604. if (priv->reset == 1) {
  605. status = iuu_reset(port, 0xC);
  606. return;
  607. }
  608. /* Writebuf is waiting */
  609. spin_lock_irqsave(&priv->lock, flags);
  610. if (priv->writelen > 0) {
  611. spin_unlock_irqrestore(&priv->lock, flags);
  612. status = iuu_bulk_write(port);
  613. return;
  614. }
  615. spin_unlock_irqrestore(&priv->lock, flags);
  616. /* if nothing to write call again rxcmd */
  617. dev_dbg(&port->dev, "%s - rxcmd recall\n", __func__);
  618. iuu_led_activity_off(urb);
  619. }
  620. static int iuu_uart_write(struct tty_struct *tty, struct usb_serial_port *port,
  621. const u8 *buf, int count)
  622. {
  623. struct iuu_private *priv = usb_get_serial_port_data(port);
  624. unsigned long flags;
  625. if (count > 256)
  626. return -ENOMEM;
  627. spin_lock_irqsave(&priv->lock, flags);
  628. /* fill the buffer */
  629. memcpy(priv->writebuf + priv->writelen, buf, count);
  630. priv->writelen += count;
  631. spin_unlock_irqrestore(&priv->lock, flags);
  632. return count;
  633. }
  634. static void read_rxcmd_callback(struct urb *urb)
  635. {
  636. struct usb_serial_port *port = urb->context;
  637. int result;
  638. int status = urb->status;
  639. if (status) {
  640. /* error stop all */
  641. return;
  642. }
  643. usb_fill_bulk_urb(port->read_urb, port->serial->dev,
  644. usb_rcvbulkpipe(port->serial->dev,
  645. port->bulk_in_endpointAddress),
  646. port->read_urb->transfer_buffer, 256,
  647. iuu_uart_read_callback, port);
  648. result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
  649. dev_dbg(&port->dev, "%s - submit result = %d\n", __func__, result);
  650. }
  651. static int iuu_uart_on(struct usb_serial_port *port)
  652. {
  653. int status;
  654. u8 *buf;
  655. buf = kmalloc(sizeof(u8) * 4, GFP_KERNEL);
  656. if (!buf)
  657. return -ENOMEM;
  658. buf[0] = IUU_UART_ENABLE;
  659. buf[1] = (u8) ((IUU_BAUD_9600 >> 8) & 0x00FF);
  660. buf[2] = (u8) (0x00FF & IUU_BAUD_9600);
  661. buf[3] = (u8) (0x0F0 & IUU_ONE_STOP_BIT) | (0x07 & IUU_PARITY_EVEN);
  662. status = bulk_immediate(port, buf, 4);
  663. if (status != IUU_OPERATION_OK) {
  664. dev_dbg(&port->dev, "%s - uart_on error\n", __func__);
  665. goto uart_enable_failed;
  666. }
  667. /* iuu_reset() the card after iuu_uart_on() */
  668. status = iuu_uart_flush(port);
  669. if (status != IUU_OPERATION_OK)
  670. dev_dbg(&port->dev, "%s - uart_flush error\n", __func__);
  671. uart_enable_failed:
  672. kfree(buf);
  673. return status;
  674. }
  675. /* Disables the IUU UART (a.k.a. the Phoenix voiderface) */
  676. static int iuu_uart_off(struct usb_serial_port *port)
  677. {
  678. int status;
  679. u8 *buf;
  680. buf = kmalloc(1, GFP_KERNEL);
  681. if (!buf)
  682. return -ENOMEM;
  683. buf[0] = IUU_UART_DISABLE;
  684. status = bulk_immediate(port, buf, 1);
  685. if (status != IUU_OPERATION_OK)
  686. dev_dbg(&port->dev, "%s - uart_off error\n", __func__);
  687. kfree(buf);
  688. return status;
  689. }
  690. static int iuu_uart_baud(struct usb_serial_port *port, u32 baud_base,
  691. u32 *actual, u8 parity)
  692. {
  693. int status;
  694. u32 baud;
  695. u8 *dataout;
  696. u8 DataCount = 0;
  697. u8 T1Frekvens = 0;
  698. u8 T1reload = 0;
  699. unsigned int T1FrekvensHZ = 0;
  700. dev_dbg(&port->dev, "%s - enter baud_base=%d\n", __func__, baud_base);
  701. dataout = kmalloc(sizeof(u8) * 5, GFP_KERNEL);
  702. if (!dataout)
  703. return -ENOMEM;
  704. /*baud = (((priv->clk / 35) * baud_base) / 100000); */
  705. baud = baud_base;
  706. if (baud < 1200 || baud > 230400) {
  707. kfree(dataout);
  708. return IUU_INVALID_PARAMETER;
  709. }
  710. if (baud > 977) {
  711. T1Frekvens = 3;
  712. T1FrekvensHZ = 500000;
  713. }
  714. if (baud > 3906) {
  715. T1Frekvens = 2;
  716. T1FrekvensHZ = 2000000;
  717. }
  718. if (baud > 11718) {
  719. T1Frekvens = 1;
  720. T1FrekvensHZ = 6000000;
  721. }
  722. if (baud > 46875) {
  723. T1Frekvens = 0;
  724. T1FrekvensHZ = 24000000;
  725. }
  726. T1reload = 256 - (u8) (T1FrekvensHZ / (baud * 2));
  727. /* magic number here: ENTER_FIRMWARE_UPDATE; */
  728. dataout[DataCount++] = IUU_UART_ESC;
  729. /* magic number here: CHANGE_BAUD; */
  730. dataout[DataCount++] = IUU_UART_CHANGE;
  731. dataout[DataCount++] = T1Frekvens;
  732. dataout[DataCount++] = T1reload;
  733. *actual = (T1FrekvensHZ / (256 - T1reload)) / 2;
  734. switch (parity & 0x0F) {
  735. case IUU_PARITY_NONE:
  736. dataout[DataCount++] = 0x00;
  737. break;
  738. case IUU_PARITY_EVEN:
  739. dataout[DataCount++] = 0x01;
  740. break;
  741. case IUU_PARITY_ODD:
  742. dataout[DataCount++] = 0x02;
  743. break;
  744. case IUU_PARITY_MARK:
  745. dataout[DataCount++] = 0x03;
  746. break;
  747. case IUU_PARITY_SPACE:
  748. dataout[DataCount++] = 0x04;
  749. break;
  750. default:
  751. kfree(dataout);
  752. return IUU_INVALID_PARAMETER;
  753. break;
  754. }
  755. switch (parity & 0xF0) {
  756. case IUU_ONE_STOP_BIT:
  757. dataout[DataCount - 1] |= IUU_ONE_STOP_BIT;
  758. break;
  759. case IUU_TWO_STOP_BITS:
  760. dataout[DataCount - 1] |= IUU_TWO_STOP_BITS;
  761. break;
  762. default:
  763. kfree(dataout);
  764. return IUU_INVALID_PARAMETER;
  765. break;
  766. }
  767. status = bulk_immediate(port, dataout, DataCount);
  768. if (status != IUU_OPERATION_OK)
  769. dev_dbg(&port->dev, "%s - uart_off error\n", __func__);
  770. kfree(dataout);
  771. return status;
  772. }
  773. static void iuu_set_termios(struct tty_struct *tty,
  774. struct usb_serial_port *port, struct ktermios *old_termios)
  775. {
  776. const u32 supported_mask = CMSPAR|PARENB|PARODD;
  777. struct iuu_private *priv = usb_get_serial_port_data(port);
  778. unsigned int cflag = tty->termios.c_cflag;
  779. int status;
  780. u32 actual;
  781. u32 parity;
  782. int csize = CS7;
  783. int baud;
  784. u32 newval = cflag & supported_mask;
  785. /* Just use the ospeed. ispeed should be the same. */
  786. baud = tty->termios.c_ospeed;
  787. dev_dbg(&port->dev, "%s - enter c_ospeed or baud=%d\n", __func__, baud);
  788. /* compute the parity parameter */
  789. parity = 0;
  790. if (cflag & CMSPAR) { /* Using mark space */
  791. if (cflag & PARODD)
  792. parity |= IUU_PARITY_SPACE;
  793. else
  794. parity |= IUU_PARITY_MARK;
  795. } else if (!(cflag & PARENB)) {
  796. parity |= IUU_PARITY_NONE;
  797. csize = CS8;
  798. } else if (cflag & PARODD)
  799. parity |= IUU_PARITY_ODD;
  800. else
  801. parity |= IUU_PARITY_EVEN;
  802. parity |= (cflag & CSTOPB ? IUU_TWO_STOP_BITS : IUU_ONE_STOP_BIT);
  803. /* set it */
  804. status = iuu_uart_baud(port,
  805. baud * priv->boost / 100,
  806. &actual, parity);
  807. /* set the termios value to the real one, so the user now what has
  808. * changed. We support few fields so its easies to copy the old hw
  809. * settings back over and then adjust them
  810. */
  811. if (old_termios)
  812. tty_termios_copy_hw(&tty->termios, old_termios);
  813. if (status != 0) /* Set failed - return old bits */
  814. return;
  815. /* Re-encode speed, parity and csize */
  816. tty_encode_baud_rate(tty, baud, baud);
  817. tty->termios.c_cflag &= ~(supported_mask|CSIZE);
  818. tty->termios.c_cflag |= newval | csize;
  819. }
  820. static void iuu_close(struct usb_serial_port *port)
  821. {
  822. /* iuu_led (port,255,0,0,0); */
  823. iuu_uart_off(port);
  824. usb_kill_urb(port->write_urb);
  825. usb_kill_urb(port->read_urb);
  826. iuu_led(port, 0, 0, 0xF000, 0xFF);
  827. }
  828. static void iuu_init_termios(struct tty_struct *tty)
  829. {
  830. tty->termios = tty_std_termios;
  831. tty->termios.c_cflag = CLOCAL | CREAD | CS8 | B9600
  832. | TIOCM_CTS | CSTOPB | PARENB;
  833. tty->termios.c_ispeed = 9600;
  834. tty->termios.c_ospeed = 9600;
  835. tty->termios.c_lflag = 0;
  836. tty->termios.c_oflag = 0;
  837. tty->termios.c_iflag = 0;
  838. }
  839. static int iuu_open(struct tty_struct *tty, struct usb_serial_port *port)
  840. {
  841. struct usb_serial *serial = port->serial;
  842. struct device *dev = &port->dev;
  843. u8 *buf;
  844. int result;
  845. int baud;
  846. u32 actual;
  847. struct iuu_private *priv = usb_get_serial_port_data(port);
  848. baud = tty->termios.c_ospeed;
  849. tty->termios.c_ispeed = baud;
  850. /* Re-encode speed */
  851. tty_encode_baud_rate(tty, baud, baud);
  852. dev_dbg(dev, "%s - baud %d\n", __func__, baud);
  853. usb_clear_halt(serial->dev, port->write_urb->pipe);
  854. usb_clear_halt(serial->dev, port->read_urb->pipe);
  855. buf = kmalloc(10, GFP_KERNEL);
  856. if (buf == NULL)
  857. return -ENOMEM;
  858. priv->poll = 0;
  859. /* initialize writebuf */
  860. #define FISH(a, b, c, d) do { \
  861. result = usb_control_msg(port->serial->dev, \
  862. usb_rcvctrlpipe(port->serial->dev, 0), \
  863. b, a, c, d, buf, 1, 1000); \
  864. dev_dbg(dev, "0x%x:0x%x:0x%x:0x%x %d - %x\n", a, b, c, d, result, \
  865. buf[0]); } while (0);
  866. #define SOUP(a, b, c, d) do { \
  867. result = usb_control_msg(port->serial->dev, \
  868. usb_sndctrlpipe(port->serial->dev, 0), \
  869. b, a, c, d, NULL, 0, 1000); \
  870. dev_dbg(dev, "0x%x:0x%x:0x%x:0x%x %d\n", a, b, c, d, result); } while (0)
  871. /* This is not UART related but IUU USB driver related or something */
  872. /* like that. Basically no IUU will accept any commands from the USB */
  873. /* host unless it has received the following message */
  874. /* sprintf(buf ,"%c%c%c%c",0x03,0x02,0x02,0x0); */
  875. SOUP(0x03, 0x02, 0x02, 0x0);
  876. kfree(buf);
  877. iuu_led(port, 0xF000, 0xF000, 0, 0xFF);
  878. iuu_uart_on(port);
  879. if (boost < 100)
  880. boost = 100;
  881. priv->boost = boost;
  882. priv->baud = baud;
  883. switch (clockmode) {
  884. case 2: /* 3.680 Mhz */
  885. priv->clk = IUU_CLK_3680000;
  886. iuu_clk(port, IUU_CLK_3680000 * boost / 100);
  887. result =
  888. iuu_uart_baud(port, baud * boost / 100, &actual,
  889. IUU_PARITY_EVEN);
  890. break;
  891. case 3: /* 6.00 Mhz */
  892. iuu_clk(port, IUU_CLK_6000000 * boost / 100);
  893. priv->clk = IUU_CLK_6000000;
  894. /* Ratio of 6000000 to 3500000 for baud 9600 */
  895. result =
  896. iuu_uart_baud(port, 16457 * boost / 100, &actual,
  897. IUU_PARITY_EVEN);
  898. break;
  899. default: /* 3.579 Mhz */
  900. iuu_clk(port, IUU_CLK_3579000 * boost / 100);
  901. priv->clk = IUU_CLK_3579000;
  902. result =
  903. iuu_uart_baud(port, baud * boost / 100, &actual,
  904. IUU_PARITY_EVEN);
  905. }
  906. /* set the cardin cardout signals */
  907. switch (cdmode) {
  908. case 0:
  909. iuu_cardin = 0;
  910. iuu_cardout = 0;
  911. break;
  912. case 1:
  913. iuu_cardin = TIOCM_CD;
  914. iuu_cardout = 0;
  915. break;
  916. case 2:
  917. iuu_cardin = 0;
  918. iuu_cardout = TIOCM_CD;
  919. break;
  920. case 3:
  921. iuu_cardin = TIOCM_DSR;
  922. iuu_cardout = 0;
  923. break;
  924. case 4:
  925. iuu_cardin = 0;
  926. iuu_cardout = TIOCM_DSR;
  927. break;
  928. case 5:
  929. iuu_cardin = TIOCM_CTS;
  930. iuu_cardout = 0;
  931. break;
  932. case 6:
  933. iuu_cardin = 0;
  934. iuu_cardout = TIOCM_CTS;
  935. break;
  936. case 7:
  937. iuu_cardin = TIOCM_RNG;
  938. iuu_cardout = 0;
  939. break;
  940. case 8:
  941. iuu_cardin = 0;
  942. iuu_cardout = TIOCM_RNG;
  943. }
  944. iuu_uart_flush(port);
  945. dev_dbg(dev, "%s - initialization done\n", __func__);
  946. memset(port->write_urb->transfer_buffer, IUU_UART_RX, 1);
  947. usb_fill_bulk_urb(port->write_urb, port->serial->dev,
  948. usb_sndbulkpipe(port->serial->dev,
  949. port->bulk_out_endpointAddress),
  950. port->write_urb->transfer_buffer, 1,
  951. read_rxcmd_callback, port);
  952. result = usb_submit_urb(port->write_urb, GFP_KERNEL);
  953. if (result) {
  954. dev_err(dev, "%s - failed submitting read urb, error %d\n", __func__, result);
  955. iuu_close(port);
  956. } else {
  957. dev_dbg(dev, "%s - rxcmd OK\n", __func__);
  958. }
  959. return result;
  960. }
  961. /* how to change VCC */
  962. static int iuu_vcc_set(struct usb_serial_port *port, unsigned int vcc)
  963. {
  964. int status;
  965. u8 *buf;
  966. buf = kmalloc(5, GFP_KERNEL);
  967. if (!buf)
  968. return -ENOMEM;
  969. buf[0] = IUU_SET_VCC;
  970. buf[1] = vcc & 0xFF;
  971. buf[2] = (vcc >> 8) & 0xFF;
  972. buf[3] = (vcc >> 16) & 0xFF;
  973. buf[4] = (vcc >> 24) & 0xFF;
  974. status = bulk_immediate(port, buf, 5);
  975. kfree(buf);
  976. if (status != IUU_OPERATION_OK)
  977. dev_dbg(&port->dev, "%s - vcc error status = %2x\n", __func__, status);
  978. else
  979. dev_dbg(&port->dev, "%s - vcc OK !\n", __func__);
  980. return status;
  981. }
  982. /*
  983. * Sysfs Attributes
  984. */
  985. static ssize_t vcc_mode_show(struct device *dev,
  986. struct device_attribute *attr, char *buf)
  987. {
  988. struct usb_serial_port *port = to_usb_serial_port(dev);
  989. struct iuu_private *priv = usb_get_serial_port_data(port);
  990. return sprintf(buf, "%d\n", priv->vcc);
  991. }
  992. static ssize_t vcc_mode_store(struct device *dev,
  993. struct device_attribute *attr, const char *buf, size_t count)
  994. {
  995. struct usb_serial_port *port = to_usb_serial_port(dev);
  996. struct iuu_private *priv = usb_get_serial_port_data(port);
  997. unsigned long v;
  998. if (kstrtoul(buf, 10, &v)) {
  999. dev_err(dev, "%s - vcc_mode: %s is not a unsigned long\n",
  1000. __func__, buf);
  1001. goto fail_store_vcc_mode;
  1002. }
  1003. dev_dbg(dev, "%s: setting vcc_mode = %ld\n", __func__, v);
  1004. if ((v != 3) && (v != 5)) {
  1005. dev_err(dev, "%s - vcc_mode %ld is invalid\n", __func__, v);
  1006. } else {
  1007. iuu_vcc_set(port, v);
  1008. priv->vcc = v;
  1009. }
  1010. fail_store_vcc_mode:
  1011. return count;
  1012. }
  1013. static DEVICE_ATTR_RW(vcc_mode);
  1014. static int iuu_create_sysfs_attrs(struct usb_serial_port *port)
  1015. {
  1016. return device_create_file(&port->dev, &dev_attr_vcc_mode);
  1017. }
  1018. static int iuu_remove_sysfs_attrs(struct usb_serial_port *port)
  1019. {
  1020. device_remove_file(&port->dev, &dev_attr_vcc_mode);
  1021. return 0;
  1022. }
  1023. /*
  1024. * End Sysfs Attributes
  1025. */
  1026. static struct usb_serial_driver iuu_device = {
  1027. .driver = {
  1028. .owner = THIS_MODULE,
  1029. .name = "iuu_phoenix",
  1030. },
  1031. .id_table = id_table,
  1032. .num_ports = 1,
  1033. .bulk_in_size = 512,
  1034. .bulk_out_size = 512,
  1035. .open = iuu_open,
  1036. .close = iuu_close,
  1037. .write = iuu_uart_write,
  1038. .read_bulk_callback = iuu_uart_read_callback,
  1039. .tiocmget = iuu_tiocmget,
  1040. .tiocmset = iuu_tiocmset,
  1041. .set_termios = iuu_set_termios,
  1042. .init_termios = iuu_init_termios,
  1043. .port_probe = iuu_port_probe,
  1044. .port_remove = iuu_port_remove,
  1045. };
  1046. static struct usb_serial_driver * const serial_drivers[] = {
  1047. &iuu_device, NULL
  1048. };
  1049. module_usb_serial_driver(serial_drivers, id_table);
  1050. MODULE_AUTHOR("Alain Degreffe eczema@ecze.com");
  1051. MODULE_DESCRIPTION(DRIVER_DESC);
  1052. MODULE_LICENSE("GPL");
  1053. module_param(xmas, bool, S_IRUGO | S_IWUSR);
  1054. MODULE_PARM_DESC(xmas, "Xmas colors enabled or not");
  1055. module_param(boost, int, S_IRUGO | S_IWUSR);
  1056. MODULE_PARM_DESC(boost, "Card overclock boost (in percent 100-500)");
  1057. module_param(clockmode, int, S_IRUGO | S_IWUSR);
  1058. MODULE_PARM_DESC(clockmode, "Card clock mode (1=3.579 MHz, 2=3.680 MHz, "
  1059. "3=6 Mhz)");
  1060. module_param(cdmode, int, S_IRUGO | S_IWUSR);
  1061. MODULE_PARM_DESC(cdmode, "Card detect mode (0=none, 1=CD, 2=!CD, 3=DSR, "
  1062. "4=!DSR, 5=CTS, 6=!CTS, 7=RING, 8=!RING)");
  1063. module_param(vcc_default, int, S_IRUGO | S_IWUSR);
  1064. MODULE_PARM_DESC(vcc_default, "Set default VCC (either 3 for 3.3V or 5 "
  1065. "for 5V). Default to 5.");