ueagle-atm.c 45 KB

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  1. /*-
  2. * Copyright (c) 2003, 2004
  3. * Damien Bergamini <damien.bergamini@free.fr>. All rights reserved.
  4. *
  5. * Copyright (c) 2005 Matthieu Castet <castet.matthieu@free.fr>
  6. *
  7. * This software is available to you under a choice of one of two
  8. * licenses. You may choose to be licensed under the terms of the GNU
  9. * General Public License (GPL) Version 2, available from the file
  10. * COPYING in the main directory of this source tree, or the
  11. * BSD license below:
  12. *
  13. * Redistribution and use in source and binary forms, with or without
  14. * modification, are permitted provided that the following conditions
  15. * are met:
  16. * 1. Redistributions of source code must retain the above copyright
  17. * notice unmodified, this list of conditions, and the following
  18. * disclaimer.
  19. * 2. Redistributions in binary form must reproduce the above copyright
  20. * notice, this list of conditions and the following disclaimer in the
  21. * documentation and/or other materials provided with the distribution.
  22. *
  23. * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
  24. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  25. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  26. * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
  27. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  28. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  29. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  30. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  31. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  32. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  33. * SUCH DAMAGE.
  34. *
  35. * GPL license :
  36. * This program is free software; you can redistribute it and/or
  37. * modify it under the terms of the GNU General Public License
  38. * as published by the Free Software Foundation; either version 2
  39. * of the License, or (at your option) any later version.
  40. *
  41. * This program is distributed in the hope that it will be useful,
  42. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  43. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  44. * GNU General Public License for more details.
  45. *
  46. * You should have received a copy of the GNU General Public License
  47. * along with this program; if not, write to the Free Software
  48. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  49. *
  50. *
  51. * HISTORY : some part of the code was base on ueagle 1.3 BSD driver,
  52. * Damien Bergamini agree to put his code under a DUAL GPL/BSD license.
  53. *
  54. * The rest of the code was was rewritten from scratch.
  55. */
  56. #include <linux/module.h>
  57. #include <linux/moduleparam.h>
  58. #include <linux/init.h>
  59. #include <linux/crc32.h>
  60. #include <linux/usb.h>
  61. #include <linux/firmware.h>
  62. #include <linux/ctype.h>
  63. #include <linux/kthread.h>
  64. #include <linux/version.h>
  65. #include <linux/mutex.h>
  66. #include <linux/freezer.h>
  67. #include <asm/unaligned.h>
  68. #include "usbatm.h"
  69. #define EAGLEUSBVERSION "ueagle 1.4"
  70. /*
  71. * Debug macros
  72. */
  73. #define uea_dbg(usb_dev, format, args...) \
  74. do { \
  75. if (debug >= 1) \
  76. dev_dbg(&(usb_dev)->dev, \
  77. "[ueagle-atm dbg] %s: " format, \
  78. __FUNCTION__, ##args); \
  79. } while (0)
  80. #define uea_vdbg(usb_dev, format, args...) \
  81. do { \
  82. if (debug >= 2) \
  83. dev_dbg(&(usb_dev)->dev, \
  84. "[ueagle-atm vdbg] " format, ##args); \
  85. } while (0)
  86. #define uea_enters(usb_dev) \
  87. uea_vdbg(usb_dev, "entering %s\n", __FUNCTION__)
  88. #define uea_leaves(usb_dev) \
  89. uea_vdbg(usb_dev, "leaving %s\n", __FUNCTION__)
  90. #define uea_err(usb_dev, format,args...) \
  91. dev_err(&(usb_dev)->dev ,"[UEAGLE-ATM] " format , ##args)
  92. #define uea_warn(usb_dev, format,args...) \
  93. dev_warn(&(usb_dev)->dev ,"[Ueagle-atm] " format, ##args)
  94. #define uea_info(usb_dev, format,args...) \
  95. dev_info(&(usb_dev)->dev ,"[ueagle-atm] " format, ##args)
  96. struct uea_cmvs {
  97. u32 address;
  98. u16 offset;
  99. u32 data;
  100. } __attribute__ ((packed));
  101. struct uea_softc {
  102. struct usb_device *usb_dev;
  103. struct usbatm_data *usbatm;
  104. int modem_index;
  105. unsigned int driver_info;
  106. int booting;
  107. int reset;
  108. wait_queue_head_t sync_q;
  109. struct task_struct *kthread;
  110. u32 data;
  111. wait_queue_head_t cmv_ack_wait;
  112. int cmv_ack;
  113. struct work_struct task;
  114. u16 pageno;
  115. u16 ovl;
  116. const struct firmware *dsp_firm;
  117. struct urb *urb_int;
  118. u8 cmv_function;
  119. u16 cmv_idx;
  120. u32 cmv_address;
  121. u16 cmv_offset;
  122. /* keep in sync with eaglectl */
  123. struct uea_stats {
  124. struct {
  125. u32 state;
  126. u32 flags;
  127. u32 mflags;
  128. u32 vidcpe;
  129. u32 vidco;
  130. u32 dsrate;
  131. u32 usrate;
  132. u32 dsunc;
  133. u32 usunc;
  134. u32 dscorr;
  135. u32 uscorr;
  136. u32 txflow;
  137. u32 rxflow;
  138. u32 usattenuation;
  139. u32 dsattenuation;
  140. u32 dsmargin;
  141. u32 usmargin;
  142. u32 firmid;
  143. } phy;
  144. } stats;
  145. };
  146. /*
  147. * Elsa IDs
  148. */
  149. #define ELSA_VID 0x05CC
  150. #define ELSA_PID_PSTFIRM 0x3350
  151. #define ELSA_PID_PREFIRM 0x3351
  152. /*
  153. * Sagem USB IDs
  154. */
  155. #define EAGLE_VID 0x1110
  156. #define EAGLE_I_PID_PREFIRM 0x9010 /* Eagle I */
  157. #define EAGLE_I_PID_PSTFIRM 0x900F /* Eagle I */
  158. #define EAGLE_IIC_PID_PREFIRM 0x9024 /* Eagle IIC */
  159. #define EAGLE_IIC_PID_PSTFIRM 0x9023 /* Eagle IIC */
  160. #define EAGLE_II_PID_PREFIRM 0x9022 /* Eagle II */
  161. #define EAGLE_II_PID_PSTFIRM 0x9021 /* Eagle II */
  162. /*
  163. * Eagle III Pid
  164. */
  165. #define EAGLE_III_PID_PREFIRM 0x9032 /* Eagle III */
  166. #define EAGLE_III_PID_PSTFIRM 0x9031 /* Eagle III */
  167. /*
  168. * USR USB IDs
  169. */
  170. #define USR_VID 0x0BAF
  171. #define MILLER_A_PID_PREFIRM 0x00F2
  172. #define MILLER_A_PID_PSTFIRM 0x00F1
  173. #define MILLER_B_PID_PREFIRM 0x00FA
  174. #define MILLER_B_PID_PSTFIRM 0x00F9
  175. #define HEINEKEN_A_PID_PREFIRM 0x00F6
  176. #define HEINEKEN_A_PID_PSTFIRM 0x00F5
  177. #define HEINEKEN_B_PID_PREFIRM 0x00F8
  178. #define HEINEKEN_B_PID_PSTFIRM 0x00F7
  179. #define PREFIRM 0
  180. #define PSTFIRM (1<<7)
  181. enum {
  182. ADI930 = 0,
  183. EAGLE_I,
  184. EAGLE_II,
  185. EAGLE_III
  186. };
  187. /* macros for both struct usb_device_id and struct uea_softc */
  188. #define UEA_IS_PREFIRM(x) \
  189. (!((x)->driver_info & PSTFIRM))
  190. #define UEA_CHIP_VERSION(x) \
  191. ((x)->driver_info & 0xf)
  192. #define IS_ISDN(usb_dev) \
  193. (le16_to_cpu((usb_dev)->descriptor.bcdDevice) & 0x80)
  194. #define INS_TO_USBDEV(ins) ins->usb_dev
  195. #define GET_STATUS(data) \
  196. ((data >> 8) & 0xf)
  197. #define IS_OPERATIONAL(sc) \
  198. (GET_STATUS(sc->stats.phy.state) == 2)
  199. /*
  200. * Set of macros to handle unaligned data in the firmware blob.
  201. * The FW_GET_BYTE() macro is provided only for consistency.
  202. */
  203. #define FW_GET_BYTE(p) *((__u8 *) (p))
  204. #define FW_GET_WORD(p) le16_to_cpu(get_unaligned((__le16 *) (p)))
  205. #define FW_GET_LONG(p) le32_to_cpu(get_unaligned((__le32 *) (p)))
  206. #define FW_DIR "ueagle-atm/"
  207. #define NB_MODEM 4
  208. #define BULK_TIMEOUT 300
  209. #define CTRL_TIMEOUT 1000
  210. #define ACK_TIMEOUT msecs_to_jiffies(3000)
  211. #define UEA_INTR_IFACE_NO 0
  212. #define UEA_US_IFACE_NO 1
  213. #define UEA_DS_IFACE_NO 2
  214. #define FASTEST_ISO_INTF 8
  215. #define UEA_BULK_DATA_PIPE 0x02
  216. #define UEA_IDMA_PIPE 0x04
  217. #define UEA_INTR_PIPE 0x04
  218. #define UEA_ISO_DATA_PIPE 0x08
  219. #define UEA_SET_BLOCK 0x0001
  220. #define UEA_SET_MODE 0x0003
  221. #define UEA_SET_2183_DATA 0x0004
  222. #define UEA_SET_TIMEOUT 0x0011
  223. #define UEA_LOOPBACK_OFF 0x0002
  224. #define UEA_LOOPBACK_ON 0x0003
  225. #define UEA_BOOT_IDMA 0x0006
  226. #define UEA_START_RESET 0x0007
  227. #define UEA_END_RESET 0x0008
  228. #define UEA_SWAP_MAILBOX (0x3fcd | 0x4000)
  229. #define UEA_MPTX_START (0x3fce | 0x4000)
  230. #define UEA_MPTX_MAILBOX (0x3fd6 | 0x4000)
  231. #define UEA_MPRX_MAILBOX (0x3fdf | 0x4000)
  232. /* structure describing a block within a DSP page */
  233. struct block_info {
  234. __le16 wHdr;
  235. #define UEA_BIHDR 0xabcd
  236. __le16 wAddress;
  237. __le16 wSize;
  238. __le16 wOvlOffset;
  239. __le16 wOvl; /* overlay */
  240. __le16 wLast;
  241. } __attribute__ ((packed));
  242. #define BLOCK_INFO_SIZE 12
  243. /* structure representing a CMV (Configuration and Management Variable) */
  244. struct cmv {
  245. __le16 wPreamble;
  246. #define PREAMBLE 0x535c
  247. __u8 bDirection;
  248. #define MODEMTOHOST 0x01
  249. #define HOSTTOMODEM 0x10
  250. __u8 bFunction;
  251. #define FUNCTION_TYPE(f) ((f) >> 4)
  252. #define MEMACCESS 0x1
  253. #define ADSLDIRECTIVE 0x7
  254. #define FUNCTION_SUBTYPE(f) ((f) & 0x0f)
  255. /* for MEMACCESS */
  256. #define REQUESTREAD 0x0
  257. #define REQUESTWRITE 0x1
  258. #define REPLYREAD 0x2
  259. #define REPLYWRITE 0x3
  260. /* for ADSLDIRECTIVE */
  261. #define KERNELREADY 0x0
  262. #define MODEMREADY 0x1
  263. #define MAKEFUNCTION(t, s) (((t) & 0xf) << 4 | ((s) & 0xf))
  264. __le16 wIndex;
  265. __le32 dwSymbolicAddress;
  266. #define MAKESA(a, b, c, d) \
  267. (((c) & 0xff) << 24 | \
  268. ((d) & 0xff) << 16 | \
  269. ((a) & 0xff) << 8 | \
  270. ((b) & 0xff))
  271. #define GETSA1(a) ((a >> 8) & 0xff)
  272. #define GETSA2(a) (a & 0xff)
  273. #define GETSA3(a) ((a >> 24) & 0xff)
  274. #define GETSA4(a) ((a >> 16) & 0xff)
  275. #define SA_CNTL MAKESA('C', 'N', 'T', 'L')
  276. #define SA_DIAG MAKESA('D', 'I', 'A', 'G')
  277. #define SA_INFO MAKESA('I', 'N', 'F', 'O')
  278. #define SA_OPTN MAKESA('O', 'P', 'T', 'N')
  279. #define SA_RATE MAKESA('R', 'A', 'T', 'E')
  280. #define SA_STAT MAKESA('S', 'T', 'A', 'T')
  281. __le16 wOffsetAddress;
  282. __le32 dwData;
  283. } __attribute__ ((packed));
  284. #define CMV_SIZE 16
  285. /* structure representing swap information */
  286. struct swap_info {
  287. __u8 bSwapPageNo;
  288. __u8 bOvl; /* overlay */
  289. } __attribute__ ((packed));
  290. /* structure representing interrupt data */
  291. struct intr_pkt {
  292. __u8 bType;
  293. __u8 bNotification;
  294. __le16 wValue;
  295. __le16 wIndex;
  296. __le16 wLength;
  297. __le16 wInterrupt;
  298. #define INT_LOADSWAPPAGE 0x0001
  299. #define INT_INCOMINGCMV 0x0002
  300. union {
  301. struct {
  302. struct swap_info swapinfo;
  303. __le16 wDataSize;
  304. } __attribute__ ((packed)) s1;
  305. struct {
  306. struct cmv cmv;
  307. __le16 wDataSize;
  308. } __attribute__ ((packed)) s2;
  309. } __attribute__ ((packed)) u;
  310. #define bSwapPageNo u.s1.swapinfo.bSwapPageNo
  311. #define bOvl u.s1.swapinfo.bOvl
  312. } __attribute__ ((packed));
  313. #define INTR_PKT_SIZE 28
  314. static struct usb_driver uea_driver;
  315. static DEFINE_MUTEX(uea_mutex);
  316. static const char *chip_name[] = {"ADI930", "Eagle I", "Eagle II", "Eagle III"};
  317. static int modem_index;
  318. static unsigned int debug;
  319. static int use_iso[NB_MODEM] = {[0 ... (NB_MODEM - 1)] = 1};
  320. static int sync_wait[NB_MODEM];
  321. static char *cmv_file[NB_MODEM];
  322. module_param(debug, uint, 0644);
  323. MODULE_PARM_DESC(debug, "module debug level (0=off,1=on,2=verbose)");
  324. module_param_array(use_iso, bool, NULL, 0644);
  325. MODULE_PARM_DESC(use_iso, "use isochronous usb pipe for incoming traffic");
  326. module_param_array(sync_wait, bool, NULL, 0644);
  327. MODULE_PARM_DESC(sync_wait, "wait the synchronisation before starting ATM");
  328. module_param_array(cmv_file, charp, NULL, 0644);
  329. MODULE_PARM_DESC(cmv_file,
  330. "file name with configuration and management variables");
  331. #define UPDATE_ATM_STAT(type, val) \
  332. do { \
  333. if (sc->usbatm->atm_dev) \
  334. sc->usbatm->atm_dev->type = val; \
  335. } while (0)
  336. /* Firmware loading */
  337. #define LOAD_INTERNAL 0xA0
  338. #define F8051_USBCS 0x7f92
  339. /**
  340. * uea_send_modem_cmd - Send a command for pre-firmware devices.
  341. */
  342. static int uea_send_modem_cmd(struct usb_device *usb,
  343. u16 addr, u16 size, u8 * buff)
  344. {
  345. int ret = -ENOMEM;
  346. u8 *xfer_buff;
  347. xfer_buff = kmemdup(buff, size, GFP_KERNEL);
  348. if (xfer_buff) {
  349. ret = usb_control_msg(usb,
  350. usb_sndctrlpipe(usb, 0),
  351. LOAD_INTERNAL,
  352. USB_DIR_OUT | USB_TYPE_VENDOR |
  353. USB_RECIP_DEVICE, addr, 0, xfer_buff,
  354. size, CTRL_TIMEOUT);
  355. kfree(xfer_buff);
  356. }
  357. if (ret < 0)
  358. return ret;
  359. return (ret == size) ? 0 : -EIO;
  360. }
  361. static void uea_upload_pre_firmware(const struct firmware *fw_entry, void *context)
  362. {
  363. struct usb_device *usb = context;
  364. u8 *pfw, value;
  365. u32 crc = 0;
  366. int ret, size;
  367. uea_enters(usb);
  368. if (!fw_entry) {
  369. uea_err(usb, "firmware is not available\n");
  370. goto err;
  371. }
  372. pfw = fw_entry->data;
  373. size = fw_entry->size;
  374. if (size < 4)
  375. goto err_fw_corrupted;
  376. crc = FW_GET_LONG(pfw);
  377. pfw += 4;
  378. size -= 4;
  379. if (crc32_be(0, pfw, size) != crc)
  380. goto err_fw_corrupted;
  381. /*
  382. * Start to upload formware : send reset
  383. */
  384. value = 1;
  385. ret = uea_send_modem_cmd(usb, F8051_USBCS, sizeof(value), &value);
  386. if (ret < 0) {
  387. uea_err(usb, "modem reset failed with error %d\n", ret);
  388. goto err;
  389. }
  390. while (size > 3) {
  391. u8 len = FW_GET_BYTE(pfw);
  392. u16 add = FW_GET_WORD(pfw + 1);
  393. size -= len + 3;
  394. if (size < 0)
  395. goto err_fw_corrupted;
  396. ret = uea_send_modem_cmd(usb, add, len, pfw + 3);
  397. if (ret < 0) {
  398. uea_err(usb, "uploading firmware data failed "
  399. "with error %d\n", ret);
  400. goto err;
  401. }
  402. pfw += len + 3;
  403. }
  404. if (size != 0)
  405. goto err_fw_corrupted;
  406. /*
  407. * Tell the modem we finish : de-assert reset
  408. */
  409. value = 0;
  410. ret = uea_send_modem_cmd(usb, F8051_USBCS, 1, &value);
  411. if (ret < 0)
  412. uea_err(usb, "modem de-assert failed with error %d\n", ret);
  413. else
  414. uea_info(usb, "firmware uploaded\n");
  415. uea_leaves(usb);
  416. return;
  417. err_fw_corrupted:
  418. uea_err(usb, "firmware is corrupted\n");
  419. err:
  420. uea_leaves(usb);
  421. }
  422. /**
  423. * uea_load_firmware - Load usb firmware for pre-firmware devices.
  424. */
  425. static int uea_load_firmware(struct usb_device *usb, unsigned int ver)
  426. {
  427. int ret;
  428. char *fw_name = FW_DIR "eagle.fw";
  429. uea_enters(usb);
  430. uea_info(usb, "pre-firmware device, uploading firmware\n");
  431. switch (ver) {
  432. case ADI930:
  433. fw_name = FW_DIR "adi930.fw";
  434. break;
  435. case EAGLE_I:
  436. fw_name = FW_DIR "eagleI.fw";
  437. break;
  438. case EAGLE_II:
  439. fw_name = FW_DIR "eagleII.fw";
  440. break;
  441. case EAGLE_III:
  442. fw_name = FW_DIR "eagleIII.fw";
  443. break;
  444. }
  445. ret = request_firmware_nowait(THIS_MODULE, 1, fw_name, &usb->dev, usb, uea_upload_pre_firmware);
  446. if (ret)
  447. uea_err(usb, "firmware %s is not available\n", fw_name);
  448. else
  449. uea_info(usb, "loading firmware %s\n", fw_name);
  450. uea_leaves(usb);
  451. return ret;
  452. }
  453. /* modem management : dsp firmware, send/read CMV, monitoring statistic
  454. */
  455. /*
  456. * Make sure that the DSP code provided is safe to use.
  457. */
  458. static int check_dsp(u8 *dsp, unsigned int len)
  459. {
  460. u8 pagecount, blockcount;
  461. u16 blocksize;
  462. u32 pageoffset;
  463. unsigned int i, j, p, pp;
  464. pagecount = FW_GET_BYTE(dsp);
  465. p = 1;
  466. /* enough space for page offsets? */
  467. if (p + 4 * pagecount > len)
  468. return 1;
  469. for (i = 0; i < pagecount; i++) {
  470. pageoffset = FW_GET_LONG(dsp + p);
  471. p += 4;
  472. if (pageoffset == 0)
  473. continue;
  474. /* enough space for blockcount? */
  475. if (pageoffset >= len)
  476. return 1;
  477. pp = pageoffset;
  478. blockcount = FW_GET_BYTE(dsp + pp);
  479. pp += 1;
  480. for (j = 0; j < blockcount; j++) {
  481. /* enough space for block header? */
  482. if (pp + 4 > len)
  483. return 1;
  484. pp += 2; /* skip blockaddr */
  485. blocksize = FW_GET_WORD(dsp + pp);
  486. pp += 2;
  487. /* enough space for block data? */
  488. if (pp + blocksize > len)
  489. return 1;
  490. pp += blocksize;
  491. }
  492. }
  493. return 0;
  494. }
  495. /*
  496. * send data to the idma pipe
  497. * */
  498. static int uea_idma_write(struct uea_softc *sc, void *data, u32 size)
  499. {
  500. int ret = -ENOMEM;
  501. u8 *xfer_buff;
  502. int bytes_read;
  503. xfer_buff = kmemdup(data, size, GFP_KERNEL);
  504. if (!xfer_buff) {
  505. uea_err(INS_TO_USBDEV(sc), "can't allocate xfer_buff\n");
  506. return ret;
  507. }
  508. ret = usb_bulk_msg(sc->usb_dev,
  509. usb_sndbulkpipe(sc->usb_dev, UEA_IDMA_PIPE),
  510. xfer_buff, size, &bytes_read, BULK_TIMEOUT);
  511. kfree(xfer_buff);
  512. if (ret < 0)
  513. return ret;
  514. if (size != bytes_read) {
  515. uea_err(INS_TO_USBDEV(sc), "size != bytes_read %d %d\n", size,
  516. bytes_read);
  517. return -EIO;
  518. }
  519. return 0;
  520. }
  521. static int request_dsp(struct uea_softc *sc)
  522. {
  523. int ret;
  524. char *dsp_name;
  525. if (UEA_CHIP_VERSION(sc) == ADI930) {
  526. if (IS_ISDN(sc->usb_dev))
  527. dsp_name = FW_DIR "DSP9i.bin";
  528. else
  529. dsp_name = FW_DIR "DSP9p.bin";
  530. } else {
  531. if (IS_ISDN(sc->usb_dev))
  532. dsp_name = FW_DIR "DSPei.bin";
  533. else
  534. dsp_name = FW_DIR "DSPep.bin";
  535. }
  536. ret = request_firmware(&sc->dsp_firm, dsp_name, &sc->usb_dev->dev);
  537. if (ret < 0) {
  538. uea_err(INS_TO_USBDEV(sc),
  539. "requesting firmware %s failed with error %d\n",
  540. dsp_name, ret);
  541. return ret;
  542. }
  543. if (check_dsp(sc->dsp_firm->data, sc->dsp_firm->size)) {
  544. uea_err(INS_TO_USBDEV(sc), "firmware %s is corrupted\n",
  545. dsp_name);
  546. release_firmware(sc->dsp_firm);
  547. sc->dsp_firm = NULL;
  548. return -EILSEQ;
  549. }
  550. return 0;
  551. }
  552. /*
  553. * The uea_load_page() function must be called within a process context
  554. */
  555. static void uea_load_page(struct work_struct *work)
  556. {
  557. struct uea_softc *sc = container_of(work, struct uea_softc, task);
  558. u16 pageno = sc->pageno;
  559. u16 ovl = sc->ovl;
  560. struct block_info bi;
  561. u8 *p;
  562. u8 pagecount, blockcount;
  563. u16 blockaddr, blocksize;
  564. u32 pageoffset;
  565. int i;
  566. /* reload firmware when reboot start and it's loaded already */
  567. if (ovl == 0 && pageno == 0 && sc->dsp_firm) {
  568. release_firmware(sc->dsp_firm);
  569. sc->dsp_firm = NULL;
  570. }
  571. if (sc->dsp_firm == NULL && request_dsp(sc) < 0)
  572. return;
  573. p = sc->dsp_firm->data;
  574. pagecount = FW_GET_BYTE(p);
  575. p += 1;
  576. if (pageno >= pagecount)
  577. goto bad1;
  578. p += 4 * pageno;
  579. pageoffset = FW_GET_LONG(p);
  580. if (pageoffset == 0)
  581. goto bad1;
  582. p = sc->dsp_firm->data + pageoffset;
  583. blockcount = FW_GET_BYTE(p);
  584. p += 1;
  585. uea_dbg(INS_TO_USBDEV(sc),
  586. "sending %u blocks for DSP page %u\n", blockcount, pageno);
  587. bi.wHdr = cpu_to_le16(UEA_BIHDR);
  588. bi.wOvl = cpu_to_le16(ovl);
  589. bi.wOvlOffset = cpu_to_le16(ovl | 0x8000);
  590. for (i = 0; i < blockcount; i++) {
  591. blockaddr = FW_GET_WORD(p);
  592. p += 2;
  593. blocksize = FW_GET_WORD(p);
  594. p += 2;
  595. bi.wSize = cpu_to_le16(blocksize);
  596. bi.wAddress = cpu_to_le16(blockaddr);
  597. bi.wLast = cpu_to_le16((i == blockcount - 1) ? 1 : 0);
  598. /* send block info through the IDMA pipe */
  599. if (uea_idma_write(sc, &bi, BLOCK_INFO_SIZE))
  600. goto bad2;
  601. /* send block data through the IDMA pipe */
  602. if (uea_idma_write(sc, p, blocksize))
  603. goto bad2;
  604. p += blocksize;
  605. }
  606. return;
  607. bad2:
  608. uea_err(INS_TO_USBDEV(sc), "sending DSP block %u failed\n", i);
  609. return;
  610. bad1:
  611. uea_err(INS_TO_USBDEV(sc), "invalid DSP page %u requested\n", pageno);
  612. }
  613. static inline void wake_up_cmv_ack(struct uea_softc *sc)
  614. {
  615. BUG_ON(sc->cmv_ack);
  616. sc->cmv_ack = 1;
  617. wake_up(&sc->cmv_ack_wait);
  618. }
  619. static inline int wait_cmv_ack(struct uea_softc *sc)
  620. {
  621. int ret = wait_event_interruptible_timeout(sc->cmv_ack_wait,
  622. sc->cmv_ack, ACK_TIMEOUT);
  623. sc->cmv_ack = 0;
  624. uea_dbg(INS_TO_USBDEV(sc), "wait_event_timeout : %d ms\n",
  625. jiffies_to_msecs(ret));
  626. if (ret < 0)
  627. return ret;
  628. return (ret == 0) ? -ETIMEDOUT : 0;
  629. }
  630. #define UCDC_SEND_ENCAPSULATED_COMMAND 0x00
  631. static int uea_request(struct uea_softc *sc,
  632. u16 value, u16 index, u16 size, void *data)
  633. {
  634. u8 *xfer_buff;
  635. int ret = -ENOMEM;
  636. xfer_buff = kmemdup(data, size, GFP_KERNEL);
  637. if (!xfer_buff) {
  638. uea_err(INS_TO_USBDEV(sc), "can't allocate xfer_buff\n");
  639. return ret;
  640. }
  641. ret = usb_control_msg(sc->usb_dev, usb_sndctrlpipe(sc->usb_dev, 0),
  642. UCDC_SEND_ENCAPSULATED_COMMAND,
  643. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
  644. value, index, xfer_buff, size, CTRL_TIMEOUT);
  645. kfree(xfer_buff);
  646. if (ret < 0) {
  647. uea_err(INS_TO_USBDEV(sc), "usb_control_msg error %d\n", ret);
  648. return ret;
  649. }
  650. if (ret != size) {
  651. uea_err(INS_TO_USBDEV(sc),
  652. "usb_control_msg send only %d bytes (instead of %d)\n",
  653. ret, size);
  654. return -EIO;
  655. }
  656. return 0;
  657. }
  658. static int uea_cmv(struct uea_softc *sc,
  659. u8 function, u32 address, u16 offset, u32 data)
  660. {
  661. struct cmv cmv;
  662. int ret;
  663. uea_enters(INS_TO_USBDEV(sc));
  664. uea_vdbg(INS_TO_USBDEV(sc), "Function : %d-%d, Address : %c%c%c%c, "
  665. "offset : 0x%04x, data : 0x%08x\n",
  666. FUNCTION_TYPE(function), FUNCTION_SUBTYPE(function),
  667. GETSA1(address), GETSA2(address), GETSA3(address),
  668. GETSA4(address), offset, data);
  669. /* we send a request, but we expect a reply */
  670. sc->cmv_function = function | 0x2;
  671. sc->cmv_idx++;
  672. sc->cmv_address = address;
  673. sc->cmv_offset = offset;
  674. cmv.wPreamble = cpu_to_le16(PREAMBLE);
  675. cmv.bDirection = HOSTTOMODEM;
  676. cmv.bFunction = function;
  677. cmv.wIndex = cpu_to_le16(sc->cmv_idx);
  678. put_unaligned(cpu_to_le32(address), &cmv.dwSymbolicAddress);
  679. cmv.wOffsetAddress = cpu_to_le16(offset);
  680. put_unaligned(cpu_to_le32(data >> 16 | data << 16), &cmv.dwData);
  681. ret = uea_request(sc, UEA_SET_BLOCK, UEA_MPTX_START, CMV_SIZE, &cmv);
  682. if (ret < 0)
  683. return ret;
  684. ret = wait_cmv_ack(sc);
  685. uea_leaves(INS_TO_USBDEV(sc));
  686. return ret;
  687. }
  688. static inline int uea_read_cmv(struct uea_softc *sc,
  689. u32 address, u16 offset, u32 *data)
  690. {
  691. int ret = uea_cmv(sc, MAKEFUNCTION(MEMACCESS, REQUESTREAD),
  692. address, offset, 0);
  693. if (ret < 0)
  694. uea_err(INS_TO_USBDEV(sc),
  695. "reading cmv failed with error %d\n", ret);
  696. else
  697. *data = sc->data;
  698. return ret;
  699. }
  700. static inline int uea_write_cmv(struct uea_softc *sc,
  701. u32 address, u16 offset, u32 data)
  702. {
  703. int ret = uea_cmv(sc, MAKEFUNCTION(MEMACCESS, REQUESTWRITE),
  704. address, offset, data);
  705. if (ret < 0)
  706. uea_err(INS_TO_USBDEV(sc),
  707. "writing cmv failed with error %d\n", ret);
  708. return ret;
  709. }
  710. /*
  711. * Monitor the modem and update the stat
  712. * return 0 if everything is ok
  713. * return < 0 if an error occurs (-EAGAIN reboot needed)
  714. */
  715. static int uea_stat(struct uea_softc *sc)
  716. {
  717. u32 data;
  718. int ret;
  719. uea_enters(INS_TO_USBDEV(sc));
  720. data = sc->stats.phy.state;
  721. ret = uea_read_cmv(sc, SA_STAT, 0, &sc->stats.phy.state);
  722. if (ret < 0)
  723. return ret;
  724. switch (GET_STATUS(sc->stats.phy.state)) {
  725. case 0: /* not yet synchronized */
  726. uea_dbg(INS_TO_USBDEV(sc),
  727. "modem not yet synchronized\n");
  728. return 0;
  729. case 1: /* initialization */
  730. uea_dbg(INS_TO_USBDEV(sc), "modem initializing\n");
  731. return 0;
  732. case 2: /* operational */
  733. uea_vdbg(INS_TO_USBDEV(sc), "modem operational\n");
  734. break;
  735. case 3: /* fail ... */
  736. uea_info(INS_TO_USBDEV(sc), "modem synchronization failed"
  737. " (may be try other cmv/dsp)\n");
  738. return -EAGAIN;
  739. case 4 ... 6: /* test state */
  740. uea_warn(INS_TO_USBDEV(sc),
  741. "modem in test mode - not supported\n");
  742. return -EAGAIN;
  743. case 7: /* fast-retain ... */
  744. uea_info(INS_TO_USBDEV(sc), "modem in fast-retain mode\n");
  745. return 0;
  746. default:
  747. uea_err(INS_TO_USBDEV(sc), "modem invalid SW mode %d\n",
  748. GET_STATUS(sc->stats.phy.state));
  749. return -EAGAIN;
  750. }
  751. if (GET_STATUS(data) != 2) {
  752. uea_request(sc, UEA_SET_MODE, UEA_LOOPBACK_OFF, 0, NULL);
  753. uea_info(INS_TO_USBDEV(sc), "modem operational\n");
  754. /* release the dsp firmware as it is not needed until
  755. * the next failure
  756. */
  757. if (sc->dsp_firm) {
  758. release_firmware(sc->dsp_firm);
  759. sc->dsp_firm = NULL;
  760. }
  761. }
  762. /* always update it as atm layer could not be init when we switch to
  763. * operational state
  764. */
  765. UPDATE_ATM_STAT(signal, ATM_PHY_SIG_FOUND);
  766. /* wake up processes waiting for synchronization */
  767. wake_up(&sc->sync_q);
  768. ret = uea_read_cmv(sc, SA_DIAG, 2, &sc->stats.phy.flags);
  769. if (ret < 0)
  770. return ret;
  771. sc->stats.phy.mflags |= sc->stats.phy.flags;
  772. /* in case of a flags ( for example delineation LOSS (& 0x10)),
  773. * we check the status again in order to detect the failure earlier
  774. */
  775. if (sc->stats.phy.flags) {
  776. uea_dbg(INS_TO_USBDEV(sc), "Stat flag = 0x%x\n",
  777. sc->stats.phy.flags);
  778. return 0;
  779. }
  780. ret = uea_read_cmv(sc, SA_RATE, 0, &data);
  781. if (ret < 0)
  782. return ret;
  783. /* in bulk mode the modem have problem with high rate
  784. * changing internal timing could improve things, but the
  785. * value is misterious.
  786. * ADI930 don't support it (-EPIPE error).
  787. */
  788. if (UEA_CHIP_VERSION(sc) != ADI930
  789. && !use_iso[sc->modem_index]
  790. && sc->stats.phy.dsrate != (data >> 16) * 32) {
  791. /* Original timming from ADI(used in windows driver)
  792. * 0x20ffff>>16 * 32 = 32 * 32 = 1Mbits
  793. */
  794. u16 timeout = (data <= 0x20ffff) ? 0 : 1;
  795. ret = uea_request(sc, UEA_SET_TIMEOUT, timeout, 0, NULL);
  796. uea_info(INS_TO_USBDEV(sc),
  797. "setting new timeout %d%s\n", timeout,
  798. ret < 0?" failed":"");
  799. }
  800. sc->stats.phy.dsrate = (data >> 16) * 32;
  801. sc->stats.phy.usrate = (data & 0xffff) * 32;
  802. UPDATE_ATM_STAT(link_rate, sc->stats.phy.dsrate * 1000 / 424);
  803. ret = uea_read_cmv(sc, SA_DIAG, 23, &data);
  804. if (ret < 0)
  805. return ret;
  806. sc->stats.phy.dsattenuation = (data & 0xff) / 2;
  807. ret = uea_read_cmv(sc, SA_DIAG, 47, &data);
  808. if (ret < 0)
  809. return ret;
  810. sc->stats.phy.usattenuation = (data & 0xff) / 2;
  811. ret = uea_read_cmv(sc, SA_DIAG, 25, &sc->stats.phy.dsmargin);
  812. if (ret < 0)
  813. return ret;
  814. ret = uea_read_cmv(sc, SA_DIAG, 49, &sc->stats.phy.usmargin);
  815. if (ret < 0)
  816. return ret;
  817. ret = uea_read_cmv(sc, SA_DIAG, 51, &sc->stats.phy.rxflow);
  818. if (ret < 0)
  819. return ret;
  820. ret = uea_read_cmv(sc, SA_DIAG, 52, &sc->stats.phy.txflow);
  821. if (ret < 0)
  822. return ret;
  823. ret = uea_read_cmv(sc, SA_DIAG, 54, &sc->stats.phy.dsunc);
  824. if (ret < 0)
  825. return ret;
  826. /* only for atu-c */
  827. ret = uea_read_cmv(sc, SA_DIAG, 58, &sc->stats.phy.usunc);
  828. if (ret < 0)
  829. return ret;
  830. ret = uea_read_cmv(sc, SA_DIAG, 53, &sc->stats.phy.dscorr);
  831. if (ret < 0)
  832. return ret;
  833. /* only for atu-c */
  834. ret = uea_read_cmv(sc, SA_DIAG, 57, &sc->stats.phy.uscorr);
  835. if (ret < 0)
  836. return ret;
  837. ret = uea_read_cmv(sc, SA_INFO, 8, &sc->stats.phy.vidco);
  838. if (ret < 0)
  839. return ret;
  840. ret = uea_read_cmv(sc, SA_INFO, 13, &sc->stats.phy.vidcpe);
  841. if (ret < 0)
  842. return ret;
  843. return 0;
  844. }
  845. static int request_cmvs(struct uea_softc *sc,
  846. struct uea_cmvs **cmvs, const struct firmware **fw)
  847. {
  848. int ret, size;
  849. u8 *data;
  850. char *file;
  851. char cmv_name[FIRMWARE_NAME_MAX]; /* 30 bytes stack variable */
  852. if (cmv_file[sc->modem_index] == NULL) {
  853. if (UEA_CHIP_VERSION(sc) == ADI930)
  854. file = (IS_ISDN(sc->usb_dev)) ? "CMV9i.bin" : "CMV9p.bin";
  855. else
  856. file = (IS_ISDN(sc->usb_dev)) ? "CMVei.bin" : "CMVep.bin";
  857. } else
  858. file = cmv_file[sc->modem_index];
  859. strcpy(cmv_name, FW_DIR);
  860. strlcat(cmv_name, file, sizeof(cmv_name));
  861. ret = request_firmware(fw, cmv_name, &sc->usb_dev->dev);
  862. if (ret < 0) {
  863. uea_err(INS_TO_USBDEV(sc),
  864. "requesting firmware %s failed with error %d\n",
  865. cmv_name, ret);
  866. return ret;
  867. }
  868. data = (u8 *) (*fw)->data;
  869. size = *data * sizeof(struct uea_cmvs) + 1;
  870. if (size != (*fw)->size) {
  871. uea_err(INS_TO_USBDEV(sc), "firmware %s is corrupted\n",
  872. cmv_name);
  873. release_firmware(*fw);
  874. return -EILSEQ;
  875. }
  876. *cmvs = (struct uea_cmvs *)(data + 1);
  877. return *data;
  878. }
  879. /* Start boot post firmware modem:
  880. * - send reset commands through usb control pipe
  881. * - start workqueue for DSP loading
  882. * - send CMV options to modem
  883. */
  884. static int uea_start_reset(struct uea_softc *sc)
  885. {
  886. u16 zero = 0; /* ;-) */
  887. int i, len, ret;
  888. struct uea_cmvs *cmvs;
  889. const struct firmware *cmvs_fw;
  890. uea_enters(INS_TO_USBDEV(sc));
  891. uea_info(INS_TO_USBDEV(sc), "(re)booting started\n");
  892. /* mask interrupt */
  893. sc->booting = 1;
  894. /* We need to set this here because, a ack timeout could have occured,
  895. * but before we start the reboot, the ack occurs and set this to 1.
  896. * So we will failed to wait Ready CMV.
  897. */
  898. sc->cmv_ack = 0;
  899. UPDATE_ATM_STAT(signal, ATM_PHY_SIG_LOST);
  900. /* reset statistics */
  901. memset(&sc->stats, 0, sizeof(struct uea_stats));
  902. /* tell the modem that we want to boot in IDMA mode */
  903. uea_request(sc, UEA_SET_MODE, UEA_LOOPBACK_ON, 0, NULL);
  904. uea_request(sc, UEA_SET_MODE, UEA_BOOT_IDMA, 0, NULL);
  905. /* enter reset mode */
  906. uea_request(sc, UEA_SET_MODE, UEA_START_RESET, 0, NULL);
  907. /* original driver use 200ms, but windows driver use 100ms */
  908. msleep(100);
  909. /* leave reset mode */
  910. uea_request(sc, UEA_SET_MODE, UEA_END_RESET, 0, NULL);
  911. /* clear tx and rx mailboxes */
  912. uea_request(sc, UEA_SET_2183_DATA, UEA_MPTX_MAILBOX, 2, &zero);
  913. uea_request(sc, UEA_SET_2183_DATA, UEA_MPRX_MAILBOX, 2, &zero);
  914. uea_request(sc, UEA_SET_2183_DATA, UEA_SWAP_MAILBOX, 2, &zero);
  915. msleep(1000);
  916. sc->cmv_function = MAKEFUNCTION(ADSLDIRECTIVE, MODEMREADY);
  917. /* demask interrupt */
  918. sc->booting = 0;
  919. /* start loading DSP */
  920. sc->pageno = 0;
  921. sc->ovl = 0;
  922. schedule_work(&sc->task);
  923. /* wait for modem ready CMV */
  924. ret = wait_cmv_ack(sc);
  925. if (ret < 0)
  926. return ret;
  927. uea_vdbg(INS_TO_USBDEV(sc), "Ready CMV received\n");
  928. /* Enter in R-IDLE (cmv) until instructed otherwise */
  929. ret = uea_write_cmv(sc, SA_CNTL, 0, 1);
  930. if (ret < 0)
  931. return ret;
  932. /* Dump firmware version */
  933. ret = uea_read_cmv(sc, SA_INFO, 10, &sc->stats.phy.firmid);
  934. if (ret < 0)
  935. return ret;
  936. uea_info(INS_TO_USBDEV(sc), "ATU-R firmware version : %x\n",
  937. sc->stats.phy.firmid);
  938. /* get options */
  939. ret = len = request_cmvs(sc, &cmvs, &cmvs_fw);
  940. if (ret < 0)
  941. return ret;
  942. /* send options */
  943. for (i = 0; i < len; i++) {
  944. ret = uea_write_cmv(sc, FW_GET_LONG(&cmvs[i].address),
  945. FW_GET_WORD(&cmvs[i].offset),
  946. FW_GET_LONG(&cmvs[i].data));
  947. if (ret < 0)
  948. goto out;
  949. }
  950. /* Enter in R-ACT-REQ */
  951. ret = uea_write_cmv(sc, SA_CNTL, 0, 2);
  952. uea_vdbg(INS_TO_USBDEV(sc), "Entering in R-ACT-REQ state\n");
  953. uea_info(INS_TO_USBDEV(sc), "Modem started, "
  954. "waiting synchronization\n");
  955. out:
  956. release_firmware(cmvs_fw);
  957. sc->reset = 0;
  958. uea_leaves(INS_TO_USBDEV(sc));
  959. return ret;
  960. }
  961. /*
  962. * In case of an error wait 1s before rebooting the modem
  963. * if the modem don't request reboot (-EAGAIN).
  964. * Monitor the modem every 1s.
  965. */
  966. static int uea_kthread(void *data)
  967. {
  968. struct uea_softc *sc = data;
  969. int ret = -EAGAIN;
  970. uea_enters(INS_TO_USBDEV(sc));
  971. while (!kthread_should_stop()) {
  972. if (ret < 0 || sc->reset)
  973. ret = uea_start_reset(sc);
  974. if (!ret)
  975. ret = uea_stat(sc);
  976. if (ret != -EAGAIN)
  977. msleep_interruptible(1000);
  978. if (try_to_freeze())
  979. uea_err(INS_TO_USBDEV(sc), "suspend/resume not supported, "
  980. "please unplug/replug your modem\n");
  981. }
  982. uea_leaves(INS_TO_USBDEV(sc));
  983. return ret;
  984. }
  985. /* Load second usb firmware for ADI930 chip */
  986. static int load_XILINX_firmware(struct uea_softc *sc)
  987. {
  988. const struct firmware *fw_entry;
  989. int ret, size, u, ln;
  990. u8 *pfw, value;
  991. char *fw_name = FW_DIR "930-fpga.bin";
  992. uea_enters(INS_TO_USBDEV(sc));
  993. ret = request_firmware(&fw_entry, fw_name, &sc->usb_dev->dev);
  994. if (ret) {
  995. uea_err(INS_TO_USBDEV(sc), "firmware %s is not available\n",
  996. fw_name);
  997. goto err0;
  998. }
  999. pfw = fw_entry->data;
  1000. size = fw_entry->size;
  1001. if (size != 0x577B) {
  1002. uea_err(INS_TO_USBDEV(sc), "firmware %s is corrupted\n",
  1003. fw_name);
  1004. ret = -EILSEQ;
  1005. goto err1;
  1006. }
  1007. for (u = 0; u < size; u += ln) {
  1008. ln = min(size - u, 64);
  1009. ret = uea_request(sc, 0xe, 0, ln, pfw + u);
  1010. if (ret < 0) {
  1011. uea_err(INS_TO_USBDEV(sc),
  1012. "elsa download data failed (%d)\n", ret);
  1013. goto err1;
  1014. }
  1015. }
  1016. /* finish to send the fpga */
  1017. ret = uea_request(sc, 0xe, 1, 0, NULL);
  1018. if (ret < 0) {
  1019. uea_err(INS_TO_USBDEV(sc),
  1020. "elsa download data failed (%d)\n", ret);
  1021. goto err1;
  1022. }
  1023. /* Tell the modem we finish : de-assert reset */
  1024. value = 0;
  1025. ret = uea_send_modem_cmd(sc->usb_dev, 0xe, 1, &value);
  1026. if (ret < 0)
  1027. uea_err(sc->usb_dev, "elsa de-assert failed with error %d\n", ret);
  1028. err1:
  1029. release_firmware(fw_entry);
  1030. err0:
  1031. uea_leaves(INS_TO_USBDEV(sc));
  1032. return ret;
  1033. }
  1034. /* The modem send us an ack. First with check if it right */
  1035. static void uea_dispatch_cmv(struct uea_softc *sc, struct cmv* cmv)
  1036. {
  1037. uea_enters(INS_TO_USBDEV(sc));
  1038. if (le16_to_cpu(cmv->wPreamble) != PREAMBLE)
  1039. goto bad1;
  1040. if (cmv->bDirection != MODEMTOHOST)
  1041. goto bad1;
  1042. /* FIXME : ADI930 reply wrong preambule (func = 2, sub = 2) to
  1043. * the first MEMACESS cmv. Ignore it...
  1044. */
  1045. if (cmv->bFunction != sc->cmv_function) {
  1046. if (UEA_CHIP_VERSION(sc) == ADI930
  1047. && cmv->bFunction == MAKEFUNCTION(2, 2)) {
  1048. cmv->wIndex = cpu_to_le16(sc->cmv_idx);
  1049. put_unaligned(cpu_to_le32(sc->cmv_address), &cmv->dwSymbolicAddress);
  1050. cmv->wOffsetAddress = cpu_to_le16(sc->cmv_offset);
  1051. }
  1052. else
  1053. goto bad2;
  1054. }
  1055. if (cmv->bFunction == MAKEFUNCTION(ADSLDIRECTIVE, MODEMREADY)) {
  1056. wake_up_cmv_ack(sc);
  1057. uea_leaves(INS_TO_USBDEV(sc));
  1058. return;
  1059. }
  1060. /* in case of MEMACCESS */
  1061. if (le16_to_cpu(cmv->wIndex) != sc->cmv_idx ||
  1062. le32_to_cpu(get_unaligned(&cmv->dwSymbolicAddress)) !=
  1063. sc->cmv_address
  1064. || le16_to_cpu(cmv->wOffsetAddress) != sc->cmv_offset)
  1065. goto bad2;
  1066. sc->data = le32_to_cpu(get_unaligned(&cmv->dwData));
  1067. sc->data = sc->data << 16 | sc->data >> 16;
  1068. wake_up_cmv_ack(sc);
  1069. uea_leaves(INS_TO_USBDEV(sc));
  1070. return;
  1071. bad2:
  1072. uea_err(INS_TO_USBDEV(sc), "unexpected cmv received,"
  1073. "Function : %d, Subfunction : %d\n",
  1074. FUNCTION_TYPE(cmv->bFunction),
  1075. FUNCTION_SUBTYPE(cmv->bFunction));
  1076. uea_leaves(INS_TO_USBDEV(sc));
  1077. return;
  1078. bad1:
  1079. uea_err(INS_TO_USBDEV(sc), "invalid cmv received, "
  1080. "wPreamble %d, bDirection %d\n",
  1081. le16_to_cpu(cmv->wPreamble), cmv->bDirection);
  1082. uea_leaves(INS_TO_USBDEV(sc));
  1083. }
  1084. /*
  1085. * interrupt handler
  1086. */
  1087. static void uea_intr(struct urb *urb)
  1088. {
  1089. struct uea_softc *sc = urb->context;
  1090. struct intr_pkt *intr = urb->transfer_buffer;
  1091. uea_enters(INS_TO_USBDEV(sc));
  1092. if (unlikely(urb->status < 0)) {
  1093. uea_err(INS_TO_USBDEV(sc), "uea_intr() failed with %d\n",
  1094. urb->status);
  1095. return;
  1096. }
  1097. /* device-to-host interrupt */
  1098. if (intr->bType != 0x08 || sc->booting) {
  1099. uea_err(INS_TO_USBDEV(sc), "wrong interrupt\n");
  1100. goto resubmit;
  1101. }
  1102. switch (le16_to_cpu(intr->wInterrupt)) {
  1103. case INT_LOADSWAPPAGE:
  1104. sc->pageno = intr->bSwapPageNo;
  1105. sc->ovl = intr->bOvl >> 4 | intr->bOvl << 4;
  1106. schedule_work(&sc->task);
  1107. break;
  1108. case INT_INCOMINGCMV:
  1109. uea_dispatch_cmv(sc, &intr->u.s2.cmv);
  1110. break;
  1111. default:
  1112. uea_err(INS_TO_USBDEV(sc), "unknown interrupt %u\n",
  1113. le16_to_cpu(intr->wInterrupt));
  1114. }
  1115. resubmit:
  1116. usb_submit_urb(sc->urb_int, GFP_ATOMIC);
  1117. }
  1118. /*
  1119. * Start the modem : init the data and start kernel thread
  1120. */
  1121. static int uea_boot(struct uea_softc *sc)
  1122. {
  1123. int ret;
  1124. struct intr_pkt *intr;
  1125. uea_enters(INS_TO_USBDEV(sc));
  1126. INIT_WORK(&sc->task, uea_load_page);
  1127. init_waitqueue_head(&sc->sync_q);
  1128. init_waitqueue_head(&sc->cmv_ack_wait);
  1129. if (UEA_CHIP_VERSION(sc) == ADI930)
  1130. load_XILINX_firmware(sc);
  1131. intr = kmalloc(INTR_PKT_SIZE, GFP_KERNEL);
  1132. if (!intr) {
  1133. uea_err(INS_TO_USBDEV(sc),
  1134. "cannot allocate interrupt package\n");
  1135. uea_leaves(INS_TO_USBDEV(sc));
  1136. return -ENOMEM;
  1137. }
  1138. sc->urb_int = usb_alloc_urb(0, GFP_KERNEL);
  1139. if (!sc->urb_int) {
  1140. uea_err(INS_TO_USBDEV(sc), "cannot allocate interrupt URB\n");
  1141. goto err;
  1142. }
  1143. usb_fill_int_urb(sc->urb_int, sc->usb_dev,
  1144. usb_rcvintpipe(sc->usb_dev, UEA_INTR_PIPE),
  1145. intr, INTR_PKT_SIZE, uea_intr, sc,
  1146. sc->usb_dev->actconfig->interface[0]->altsetting[0].
  1147. endpoint[0].desc.bInterval);
  1148. ret = usb_submit_urb(sc->urb_int, GFP_KERNEL);
  1149. if (ret < 0) {
  1150. uea_err(INS_TO_USBDEV(sc),
  1151. "urb submition failed with error %d\n", ret);
  1152. goto err;
  1153. }
  1154. sc->kthread = kthread_run(uea_kthread, sc, "ueagle-atm");
  1155. if (sc->kthread == ERR_PTR(-ENOMEM)) {
  1156. uea_err(INS_TO_USBDEV(sc), "failed to create thread\n");
  1157. goto err2;
  1158. }
  1159. uea_leaves(INS_TO_USBDEV(sc));
  1160. return 0;
  1161. err2:
  1162. usb_kill_urb(sc->urb_int);
  1163. err:
  1164. usb_free_urb(sc->urb_int);
  1165. sc->urb_int = NULL;
  1166. kfree(intr);
  1167. uea_leaves(INS_TO_USBDEV(sc));
  1168. return -ENOMEM;
  1169. }
  1170. /*
  1171. * Stop the modem : kill kernel thread and free data
  1172. */
  1173. static void uea_stop(struct uea_softc *sc)
  1174. {
  1175. int ret;
  1176. uea_enters(INS_TO_USBDEV(sc));
  1177. ret = kthread_stop(sc->kthread);
  1178. uea_dbg(INS_TO_USBDEV(sc), "kthread finish with status %d\n", ret);
  1179. /* stop any pending boot process */
  1180. flush_scheduled_work();
  1181. uea_request(sc, UEA_SET_MODE, UEA_LOOPBACK_ON, 0, NULL);
  1182. usb_kill_urb(sc->urb_int);
  1183. kfree(sc->urb_int->transfer_buffer);
  1184. usb_free_urb(sc->urb_int);
  1185. if (sc->dsp_firm)
  1186. release_firmware(sc->dsp_firm);
  1187. uea_leaves(INS_TO_USBDEV(sc));
  1188. }
  1189. /* syfs interface */
  1190. static struct uea_softc *dev_to_uea(struct device *dev)
  1191. {
  1192. struct usb_interface *intf;
  1193. struct usbatm_data *usbatm;
  1194. intf = to_usb_interface(dev);
  1195. if (!intf)
  1196. return NULL;
  1197. usbatm = usb_get_intfdata(intf);
  1198. if (!usbatm)
  1199. return NULL;
  1200. return usbatm->driver_data;
  1201. }
  1202. static ssize_t read_status(struct device *dev, struct device_attribute *attr,
  1203. char *buf)
  1204. {
  1205. int ret = -ENODEV;
  1206. struct uea_softc *sc;
  1207. mutex_lock(&uea_mutex);
  1208. sc = dev_to_uea(dev);
  1209. if (!sc)
  1210. goto out;
  1211. ret = snprintf(buf, 10, "%08x\n", sc->stats.phy.state);
  1212. out:
  1213. mutex_unlock(&uea_mutex);
  1214. return ret;
  1215. }
  1216. static ssize_t reboot(struct device *dev, struct device_attribute *attr,
  1217. const char *buf, size_t count)
  1218. {
  1219. int ret = -ENODEV;
  1220. struct uea_softc *sc;
  1221. mutex_lock(&uea_mutex);
  1222. sc = dev_to_uea(dev);
  1223. if (!sc)
  1224. goto out;
  1225. sc->reset = 1;
  1226. ret = count;
  1227. out:
  1228. mutex_unlock(&uea_mutex);
  1229. return ret;
  1230. }
  1231. static DEVICE_ATTR(stat_status, S_IWUGO | S_IRUGO, read_status, reboot);
  1232. static ssize_t read_human_status(struct device *dev, struct device_attribute *attr,
  1233. char *buf)
  1234. {
  1235. int ret = -ENODEV;
  1236. struct uea_softc *sc;
  1237. mutex_lock(&uea_mutex);
  1238. sc = dev_to_uea(dev);
  1239. if (!sc)
  1240. goto out;
  1241. switch (GET_STATUS(sc->stats.phy.state)) {
  1242. case 0:
  1243. ret = sprintf(buf, "Modem is booting\n");
  1244. break;
  1245. case 1:
  1246. ret = sprintf(buf, "Modem is initializing\n");
  1247. break;
  1248. case 2:
  1249. ret = sprintf(buf, "Modem is operational\n");
  1250. break;
  1251. default:
  1252. ret = sprintf(buf, "Modem synchronization failed\n");
  1253. break;
  1254. }
  1255. out:
  1256. mutex_unlock(&uea_mutex);
  1257. return ret;
  1258. }
  1259. static DEVICE_ATTR(stat_human_status, S_IWUGO | S_IRUGO, read_human_status, NULL);
  1260. static ssize_t read_delin(struct device *dev, struct device_attribute *attr,
  1261. char *buf)
  1262. {
  1263. int ret = -ENODEV;
  1264. struct uea_softc *sc;
  1265. mutex_lock(&uea_mutex);
  1266. sc = dev_to_uea(dev);
  1267. if (!sc)
  1268. goto out;
  1269. if (sc->stats.phy.flags & 0x0C00)
  1270. ret = sprintf(buf, "ERROR\n");
  1271. else if (sc->stats.phy.flags & 0x0030)
  1272. ret = sprintf(buf, "LOSS\n");
  1273. else
  1274. ret = sprintf(buf, "GOOD\n");
  1275. out:
  1276. mutex_unlock(&uea_mutex);
  1277. return ret;
  1278. }
  1279. static DEVICE_ATTR(stat_delin, S_IWUGO | S_IRUGO, read_delin, NULL);
  1280. #define UEA_ATTR(name, reset) \
  1281. \
  1282. static ssize_t read_##name(struct device *dev, \
  1283. struct device_attribute *attr, char *buf) \
  1284. { \
  1285. int ret = -ENODEV; \
  1286. struct uea_softc *sc; \
  1287. \
  1288. mutex_lock(&uea_mutex); \
  1289. sc = dev_to_uea(dev); \
  1290. if (!sc) \
  1291. goto out; \
  1292. ret = snprintf(buf, 10, "%08x\n", sc->stats.phy.name); \
  1293. if (reset) \
  1294. sc->stats.phy.name = 0; \
  1295. out: \
  1296. mutex_unlock(&uea_mutex); \
  1297. return ret; \
  1298. } \
  1299. \
  1300. static DEVICE_ATTR(stat_##name, S_IRUGO, read_##name, NULL)
  1301. UEA_ATTR(mflags, 1);
  1302. UEA_ATTR(vidcpe, 0);
  1303. UEA_ATTR(usrate, 0);
  1304. UEA_ATTR(dsrate, 0);
  1305. UEA_ATTR(usattenuation, 0);
  1306. UEA_ATTR(dsattenuation, 0);
  1307. UEA_ATTR(usmargin, 0);
  1308. UEA_ATTR(dsmargin, 0);
  1309. UEA_ATTR(txflow, 0);
  1310. UEA_ATTR(rxflow, 0);
  1311. UEA_ATTR(uscorr, 0);
  1312. UEA_ATTR(dscorr, 0);
  1313. UEA_ATTR(usunc, 0);
  1314. UEA_ATTR(dsunc, 0);
  1315. UEA_ATTR(firmid, 0);
  1316. /* Retrieve the device End System Identifier (MAC) */
  1317. #define htoi(x) (isdigit(x) ? x-'0' : toupper(x)-'A'+10)
  1318. static int uea_getesi(struct uea_softc *sc, u_char * esi)
  1319. {
  1320. unsigned char mac_str[2 * ETH_ALEN + 1];
  1321. int i;
  1322. if (usb_string
  1323. (sc->usb_dev, sc->usb_dev->descriptor.iSerialNumber, mac_str,
  1324. sizeof(mac_str)) != 2 * ETH_ALEN)
  1325. return 1;
  1326. for (i = 0; i < ETH_ALEN; i++)
  1327. esi[i] = htoi(mac_str[2 * i]) * 16 + htoi(mac_str[2 * i + 1]);
  1328. return 0;
  1329. }
  1330. /* ATM stuff */
  1331. static int uea_atm_open(struct usbatm_data *usbatm, struct atm_dev *atm_dev)
  1332. {
  1333. struct uea_softc *sc = usbatm->driver_data;
  1334. return uea_getesi(sc, atm_dev->esi);
  1335. }
  1336. static int uea_heavy(struct usbatm_data *usbatm, struct usb_interface *intf)
  1337. {
  1338. struct uea_softc *sc = usbatm->driver_data;
  1339. wait_event_interruptible(sc->sync_q, IS_OPERATIONAL(sc));
  1340. return 0;
  1341. }
  1342. static int claim_interface(struct usb_device *usb_dev,
  1343. struct usbatm_data *usbatm, int ifnum)
  1344. {
  1345. int ret;
  1346. struct usb_interface *intf = usb_ifnum_to_if(usb_dev, ifnum);
  1347. if (!intf) {
  1348. uea_err(usb_dev, "interface %d not found\n", ifnum);
  1349. return -ENODEV;
  1350. }
  1351. ret = usb_driver_claim_interface(&uea_driver, intf, usbatm);
  1352. if (ret != 0)
  1353. uea_err(usb_dev, "can't claim interface %d, error %d\n", ifnum,
  1354. ret);
  1355. return ret;
  1356. }
  1357. static struct attribute *attrs[] = {
  1358. &dev_attr_stat_status.attr,
  1359. &dev_attr_stat_mflags.attr,
  1360. &dev_attr_stat_human_status.attr,
  1361. &dev_attr_stat_delin.attr,
  1362. &dev_attr_stat_vidcpe.attr,
  1363. &dev_attr_stat_usrate.attr,
  1364. &dev_attr_stat_dsrate.attr,
  1365. &dev_attr_stat_usattenuation.attr,
  1366. &dev_attr_stat_dsattenuation.attr,
  1367. &dev_attr_stat_usmargin.attr,
  1368. &dev_attr_stat_dsmargin.attr,
  1369. &dev_attr_stat_txflow.attr,
  1370. &dev_attr_stat_rxflow.attr,
  1371. &dev_attr_stat_uscorr.attr,
  1372. &dev_attr_stat_dscorr.attr,
  1373. &dev_attr_stat_usunc.attr,
  1374. &dev_attr_stat_dsunc.attr,
  1375. &dev_attr_stat_firmid.attr,
  1376. NULL,
  1377. };
  1378. static struct attribute_group attr_grp = {
  1379. .attrs = attrs,
  1380. };
  1381. static int uea_bind(struct usbatm_data *usbatm, struct usb_interface *intf,
  1382. const struct usb_device_id *id)
  1383. {
  1384. struct usb_device *usb = interface_to_usbdev(intf);
  1385. struct uea_softc *sc;
  1386. int ret, ifnum = intf->altsetting->desc.bInterfaceNumber;
  1387. uea_enters(usb);
  1388. /* interface 0 is for firmware/monitoring */
  1389. if (ifnum != UEA_INTR_IFACE_NO)
  1390. return -ENODEV;
  1391. usbatm->flags = (sync_wait[modem_index] ? 0 : UDSL_SKIP_HEAVY_INIT);
  1392. /* interface 1 is for outbound traffic */
  1393. ret = claim_interface(usb, usbatm, UEA_US_IFACE_NO);
  1394. if (ret < 0)
  1395. return ret;
  1396. /* ADI930 has only 2 interfaces and inbound traffic is on interface 1 */
  1397. if (UEA_CHIP_VERSION(id) != ADI930) {
  1398. /* interface 2 is for inbound traffic */
  1399. ret = claim_interface(usb, usbatm, UEA_DS_IFACE_NO);
  1400. if (ret < 0)
  1401. return ret;
  1402. }
  1403. sc = kzalloc(sizeof(struct uea_softc), GFP_KERNEL);
  1404. if (!sc) {
  1405. uea_err(usb, "uea_init: not enough memory !\n");
  1406. return -ENOMEM;
  1407. }
  1408. sc->usb_dev = usb;
  1409. usbatm->driver_data = sc;
  1410. sc->usbatm = usbatm;
  1411. sc->modem_index = (modem_index < NB_MODEM) ? modem_index++ : 0;
  1412. sc->driver_info = id->driver_info;
  1413. /* ADI930 don't support iso */
  1414. if (UEA_CHIP_VERSION(id) != ADI930 && use_iso[sc->modem_index]) {
  1415. int i;
  1416. /* try set fastest alternate for inbound traffic interface */
  1417. for (i = FASTEST_ISO_INTF; i > 0; i--)
  1418. if (usb_set_interface(usb, UEA_DS_IFACE_NO, i) == 0)
  1419. break;
  1420. if (i > 0) {
  1421. uea_dbg(usb, "set alternate %d for 2 interface\n", i);
  1422. uea_info(usb, "using iso mode\n");
  1423. usbatm->flags |= UDSL_USE_ISOC | UDSL_IGNORE_EILSEQ;
  1424. } else {
  1425. uea_err(usb, "setting any alternate failed for "
  1426. "2 interface, using bulk mode\n");
  1427. }
  1428. }
  1429. ret = sysfs_create_group(&intf->dev.kobj, &attr_grp);
  1430. if (ret < 0)
  1431. goto error;
  1432. ret = uea_boot(sc);
  1433. if (ret < 0)
  1434. goto error;
  1435. return 0;
  1436. error:
  1437. kfree(sc);
  1438. return ret;
  1439. }
  1440. static void uea_unbind(struct usbatm_data *usbatm, struct usb_interface *intf)
  1441. {
  1442. struct uea_softc *sc = usbatm->driver_data;
  1443. sysfs_remove_group(&intf->dev.kobj, &attr_grp);
  1444. uea_stop(sc);
  1445. kfree(sc);
  1446. }
  1447. static struct usbatm_driver uea_usbatm_driver = {
  1448. .driver_name = "ueagle-atm",
  1449. .bind = uea_bind,
  1450. .atm_start = uea_atm_open,
  1451. .unbind = uea_unbind,
  1452. .heavy_init = uea_heavy,
  1453. .bulk_in = UEA_BULK_DATA_PIPE,
  1454. .bulk_out = UEA_BULK_DATA_PIPE,
  1455. .isoc_in = UEA_ISO_DATA_PIPE,
  1456. };
  1457. static int uea_probe(struct usb_interface *intf, const struct usb_device_id *id)
  1458. {
  1459. struct usb_device *usb = interface_to_usbdev(intf);
  1460. uea_enters(usb);
  1461. uea_info(usb, "ADSL device founded vid (%#X) pid (%#X) : %s %s\n",
  1462. le16_to_cpu(usb->descriptor.idVendor),
  1463. le16_to_cpu(usb->descriptor.idProduct),
  1464. chip_name[UEA_CHIP_VERSION(id)], IS_ISDN(usb)?"isdn":"pots");
  1465. usb_reset_device(usb);
  1466. if (UEA_IS_PREFIRM(id))
  1467. return uea_load_firmware(usb, UEA_CHIP_VERSION(id));
  1468. return usbatm_usb_probe(intf, id, &uea_usbatm_driver);
  1469. }
  1470. static void uea_disconnect(struct usb_interface *intf)
  1471. {
  1472. struct usb_device *usb = interface_to_usbdev(intf);
  1473. int ifnum = intf->altsetting->desc.bInterfaceNumber;
  1474. uea_enters(usb);
  1475. /* ADI930 has 2 interfaces and eagle 3 interfaces.
  1476. * Pre-firmware device has one interface
  1477. */
  1478. if (usb->config->desc.bNumInterfaces != 1 && ifnum == 0) {
  1479. mutex_lock(&uea_mutex);
  1480. usbatm_usb_disconnect(intf);
  1481. mutex_unlock(&uea_mutex);
  1482. uea_info(usb, "ADSL device removed\n");
  1483. }
  1484. uea_leaves(usb);
  1485. }
  1486. /*
  1487. * List of supported VID/PID
  1488. */
  1489. static const struct usb_device_id uea_ids[] = {
  1490. {USB_DEVICE(ELSA_VID, ELSA_PID_PREFIRM), .driver_info = ADI930 | PREFIRM},
  1491. {USB_DEVICE(ELSA_VID, ELSA_PID_PSTFIRM), .driver_info = ADI930 | PSTFIRM},
  1492. {USB_DEVICE(EAGLE_VID, EAGLE_I_PID_PREFIRM), .driver_info = EAGLE_I | PREFIRM},
  1493. {USB_DEVICE(EAGLE_VID, EAGLE_I_PID_PSTFIRM), .driver_info = EAGLE_I | PSTFIRM},
  1494. {USB_DEVICE(EAGLE_VID, EAGLE_II_PID_PREFIRM), .driver_info = EAGLE_II | PREFIRM},
  1495. {USB_DEVICE(EAGLE_VID, EAGLE_II_PID_PSTFIRM), .driver_info = EAGLE_II | PSTFIRM},
  1496. {USB_DEVICE(EAGLE_VID, EAGLE_IIC_PID_PREFIRM), .driver_info = EAGLE_II | PREFIRM},
  1497. {USB_DEVICE(EAGLE_VID, EAGLE_IIC_PID_PSTFIRM), .driver_info = EAGLE_II | PSTFIRM},
  1498. {USB_DEVICE(EAGLE_VID, EAGLE_III_PID_PREFIRM), .driver_info = EAGLE_III | PREFIRM},
  1499. {USB_DEVICE(EAGLE_VID, EAGLE_III_PID_PSTFIRM), .driver_info = EAGLE_III | PSTFIRM},
  1500. {USB_DEVICE(USR_VID, MILLER_A_PID_PREFIRM), .driver_info = EAGLE_I | PREFIRM},
  1501. {USB_DEVICE(USR_VID, MILLER_A_PID_PSTFIRM), .driver_info = EAGLE_I | PSTFIRM},
  1502. {USB_DEVICE(USR_VID, MILLER_B_PID_PREFIRM), .driver_info = EAGLE_I | PREFIRM},
  1503. {USB_DEVICE(USR_VID, MILLER_B_PID_PSTFIRM), .driver_info = EAGLE_I | PSTFIRM},
  1504. {USB_DEVICE(USR_VID, HEINEKEN_A_PID_PREFIRM),.driver_info = EAGLE_I | PREFIRM},
  1505. {USB_DEVICE(USR_VID, HEINEKEN_A_PID_PSTFIRM),.driver_info = EAGLE_I | PSTFIRM},
  1506. {USB_DEVICE(USR_VID, HEINEKEN_B_PID_PREFIRM),.driver_info = EAGLE_I | PREFIRM},
  1507. {USB_DEVICE(USR_VID, HEINEKEN_B_PID_PSTFIRM),.driver_info = EAGLE_I | PSTFIRM},
  1508. {}
  1509. };
  1510. /*
  1511. * USB driver descriptor
  1512. */
  1513. static struct usb_driver uea_driver = {
  1514. .name = "ueagle-atm",
  1515. .id_table = uea_ids,
  1516. .probe = uea_probe,
  1517. .disconnect = uea_disconnect,
  1518. };
  1519. MODULE_DEVICE_TABLE(usb, uea_ids);
  1520. /**
  1521. * uea_init - Initialize the module.
  1522. * Register to USB subsystem
  1523. */
  1524. static int __init uea_init(void)
  1525. {
  1526. printk(KERN_INFO "[ueagle-atm] driver " EAGLEUSBVERSION " loaded\n");
  1527. usb_register(&uea_driver);
  1528. return 0;
  1529. }
  1530. module_init(uea_init);
  1531. /**
  1532. * uea_exit - Destroy module
  1533. * Deregister with USB subsystem
  1534. */
  1535. static void __exit uea_exit(void)
  1536. {
  1537. /*
  1538. * This calls automatically the uea_disconnect method if necessary:
  1539. */
  1540. usb_deregister(&uea_driver);
  1541. printk(KERN_INFO "[ueagle-atm] driver unloaded\n");
  1542. }
  1543. module_exit(uea_exit);
  1544. MODULE_AUTHOR("Damien Bergamini/Matthieu Castet/Stanislaw W. Gruszka");
  1545. MODULE_DESCRIPTION("ADI 930/Eagle USB ADSL Modem driver");
  1546. MODULE_LICENSE("Dual BSD/GPL");