az6007.c 22 KB

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  1. /*
  2. * Driver for AzureWave 6007 DVB-C/T USB2.0 and clones
  3. *
  4. * Copyright (c) Henry Wang <Henry.wang@AzureWave.com>
  5. *
  6. * This driver was made publicly available by Terratec, at:
  7. * http://linux.terratec.de/files/TERRATEC_H7/20110323_TERRATEC_H7_Linux.tar.gz
  8. * The original driver's license is GPL, as declared with MODULE_LICENSE()
  9. *
  10. * Copyright (c) 2010-2012 Mauro Carvalho Chehab
  11. * Driver modified by in order to work with upstream drxk driver, and
  12. * tons of bugs got fixed, and converted to use dvb-usb-v2.
  13. *
  14. * This program is free software; you can redistribute it and/or modify
  15. * it under the terms of the GNU General Public License as published by
  16. * the Free Software Foundation under version 2 of the License.
  17. *
  18. * This program is distributed in the hope that it will be useful,
  19. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  21. * GNU General Public License for more details.
  22. */
  23. #include "drxk.h"
  24. #include "mt2063.h"
  25. #include "dvb_ca_en50221.h"
  26. #include "dvb_usb.h"
  27. #include "cypress_firmware.h"
  28. #define AZ6007_FIRMWARE "dvb-usb-terratec-h7-az6007.fw"
  29. static int az6007_xfer_debug;
  30. module_param_named(xfer_debug, az6007_xfer_debug, int, 0644);
  31. MODULE_PARM_DESC(xfer_debug, "Enable xfer debug");
  32. DVB_DEFINE_MOD_OPT_ADAPTER_NR(adapter_nr);
  33. /* Known requests (Cypress FX2 firmware + az6007 "private" ones*/
  34. #define FX2_OED 0xb5
  35. #define AZ6007_READ_DATA 0xb7
  36. #define AZ6007_I2C_RD 0xb9
  37. #define AZ6007_POWER 0xbc
  38. #define AZ6007_I2C_WR 0xbd
  39. #define FX2_SCON1 0xc0
  40. #define AZ6007_TS_THROUGH 0xc7
  41. #define AZ6007_READ_IR 0xb4
  42. struct az6007_device_state {
  43. struct mutex mutex;
  44. struct mutex ca_mutex;
  45. struct dvb_ca_en50221 ca;
  46. unsigned warm:1;
  47. int (*gate_ctrl) (struct dvb_frontend *, int);
  48. unsigned char data[4096];
  49. };
  50. static struct drxk_config terratec_h7_drxk = {
  51. .adr = 0x29,
  52. .parallel_ts = true,
  53. .dynamic_clk = true,
  54. .single_master = true,
  55. .enable_merr_cfg = true,
  56. .no_i2c_bridge = false,
  57. .chunk_size = 64,
  58. .mpeg_out_clk_strength = 0x02,
  59. .qam_demod_parameter_count = 2,
  60. .microcode_name = "dvb-usb-terratec-h7-drxk.fw",
  61. };
  62. static struct drxk_config cablestar_hdci_drxk = {
  63. .adr = 0x29,
  64. .parallel_ts = true,
  65. .dynamic_clk = true,
  66. .single_master = true,
  67. .enable_merr_cfg = true,
  68. .no_i2c_bridge = false,
  69. .chunk_size = 64,
  70. .mpeg_out_clk_strength = 0x02,
  71. .qam_demod_parameter_count = 2,
  72. .microcode_name = "dvb-usb-technisat-cablestar-hdci-drxk.fw",
  73. };
  74. static int drxk_gate_ctrl(struct dvb_frontend *fe, int enable)
  75. {
  76. struct az6007_device_state *st = fe_to_priv(fe);
  77. struct dvb_usb_adapter *adap = fe->sec_priv;
  78. int status = 0;
  79. pr_debug("%s: %s\n", __func__, enable ? "enable" : "disable");
  80. if (!adap || !st)
  81. return -EINVAL;
  82. if (enable)
  83. status = st->gate_ctrl(fe, 1);
  84. else
  85. status = st->gate_ctrl(fe, 0);
  86. return status;
  87. }
  88. static struct mt2063_config az6007_mt2063_config = {
  89. .tuner_address = 0x60,
  90. .refclock = 36125000,
  91. };
  92. static int __az6007_read(struct usb_device *udev, u8 req, u16 value,
  93. u16 index, u8 *b, int blen)
  94. {
  95. int ret;
  96. ret = usb_control_msg(udev,
  97. usb_rcvctrlpipe(udev, 0),
  98. req,
  99. USB_TYPE_VENDOR | USB_DIR_IN,
  100. value, index, b, blen, 5000);
  101. if (ret < 0) {
  102. pr_warn("usb read operation failed. (%d)\n", ret);
  103. return -EIO;
  104. }
  105. if (az6007_xfer_debug) {
  106. printk(KERN_DEBUG "az6007: IN req: %02x, value: %04x, index: %04x\n",
  107. req, value, index);
  108. print_hex_dump_bytes("az6007: payload: ",
  109. DUMP_PREFIX_NONE, b, blen);
  110. }
  111. return ret;
  112. }
  113. static int az6007_read(struct dvb_usb_device *d, u8 req, u16 value,
  114. u16 index, u8 *b, int blen)
  115. {
  116. struct az6007_device_state *st = d->priv;
  117. int ret;
  118. if (mutex_lock_interruptible(&st->mutex) < 0)
  119. return -EAGAIN;
  120. ret = __az6007_read(d->udev, req, value, index, b, blen);
  121. mutex_unlock(&st->mutex);
  122. return ret;
  123. }
  124. static int __az6007_write(struct usb_device *udev, u8 req, u16 value,
  125. u16 index, u8 *b, int blen)
  126. {
  127. int ret;
  128. if (az6007_xfer_debug) {
  129. printk(KERN_DEBUG "az6007: OUT req: %02x, value: %04x, index: %04x\n",
  130. req, value, index);
  131. print_hex_dump_bytes("az6007: payload: ",
  132. DUMP_PREFIX_NONE, b, blen);
  133. }
  134. if (blen > 64) {
  135. pr_err("az6007: tried to write %d bytes, but I2C max size is 64 bytes\n",
  136. blen);
  137. return -EOPNOTSUPP;
  138. }
  139. ret = usb_control_msg(udev,
  140. usb_sndctrlpipe(udev, 0),
  141. req,
  142. USB_TYPE_VENDOR | USB_DIR_OUT,
  143. value, index, b, blen, 5000);
  144. if (ret != blen) {
  145. pr_err("usb write operation failed. (%d)\n", ret);
  146. return -EIO;
  147. }
  148. return 0;
  149. }
  150. static int az6007_write(struct dvb_usb_device *d, u8 req, u16 value,
  151. u16 index, u8 *b, int blen)
  152. {
  153. struct az6007_device_state *st = d->priv;
  154. int ret;
  155. if (mutex_lock_interruptible(&st->mutex) < 0)
  156. return -EAGAIN;
  157. ret = __az6007_write(d->udev, req, value, index, b, blen);
  158. mutex_unlock(&st->mutex);
  159. return ret;
  160. }
  161. static int az6007_streaming_ctrl(struct dvb_frontend *fe, int onoff)
  162. {
  163. struct dvb_usb_device *d = fe_to_d(fe);
  164. pr_debug("%s: %s\n", __func__, onoff ? "enable" : "disable");
  165. return az6007_write(d, 0xbc, onoff, 0, NULL, 0);
  166. }
  167. #if IS_ENABLED(CONFIG_RC_CORE)
  168. /* remote control stuff (does not work with my box) */
  169. static int az6007_rc_query(struct dvb_usb_device *d)
  170. {
  171. struct az6007_device_state *st = d_to_priv(d);
  172. unsigned code;
  173. enum rc_type proto;
  174. az6007_read(d, AZ6007_READ_IR, 0, 0, st->data, 10);
  175. if (st->data[1] == 0x44)
  176. return 0;
  177. if ((st->data[3] ^ st->data[4]) == 0xff) {
  178. if ((st->data[1] ^ st->data[2]) == 0xff) {
  179. code = RC_SCANCODE_NEC(st->data[1], st->data[3]);
  180. proto = RC_TYPE_NEC;
  181. } else {
  182. code = RC_SCANCODE_NECX(st->data[1] << 8 | st->data[2],
  183. st->data[3]);
  184. proto = RC_TYPE_NECX;
  185. }
  186. } else {
  187. code = RC_SCANCODE_NEC32(st->data[1] << 24 |
  188. st->data[2] << 16 |
  189. st->data[3] << 8 |
  190. st->data[4]);
  191. proto = RC_TYPE_NEC32;
  192. }
  193. rc_keydown(d->rc_dev, proto, code, st->data[5]);
  194. return 0;
  195. }
  196. static int az6007_get_rc_config(struct dvb_usb_device *d, struct dvb_usb_rc *rc)
  197. {
  198. pr_debug("Getting az6007 Remote Control properties\n");
  199. rc->allowed_protos = RC_BIT_NEC | RC_BIT_NECX | RC_BIT_NEC32;
  200. rc->query = az6007_rc_query;
  201. rc->interval = 400;
  202. return 0;
  203. }
  204. #else
  205. #define az6007_get_rc_config NULL
  206. #endif
  207. static int az6007_ci_read_attribute_mem(struct dvb_ca_en50221 *ca,
  208. int slot,
  209. int address)
  210. {
  211. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  212. struct az6007_device_state *state = d_to_priv(d);
  213. int ret;
  214. u8 req;
  215. u16 value;
  216. u16 index;
  217. int blen;
  218. u8 *b;
  219. if (slot != 0)
  220. return -EINVAL;
  221. b = kmalloc(12, GFP_KERNEL);
  222. if (!b)
  223. return -ENOMEM;
  224. mutex_lock(&state->ca_mutex);
  225. req = 0xC1;
  226. value = address;
  227. index = 0;
  228. blen = 1;
  229. ret = az6007_read(d, req, value, index, b, blen);
  230. if (ret < 0) {
  231. pr_warn("usb in operation failed. (%d)\n", ret);
  232. ret = -EINVAL;
  233. } else {
  234. ret = b[0];
  235. }
  236. mutex_unlock(&state->ca_mutex);
  237. kfree(b);
  238. return ret;
  239. }
  240. static int az6007_ci_write_attribute_mem(struct dvb_ca_en50221 *ca,
  241. int slot,
  242. int address,
  243. u8 value)
  244. {
  245. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  246. struct az6007_device_state *state = d_to_priv(d);
  247. int ret;
  248. u8 req;
  249. u16 value1;
  250. u16 index;
  251. int blen;
  252. pr_debug("%s(), slot %d\n", __func__, slot);
  253. if (slot != 0)
  254. return -EINVAL;
  255. mutex_lock(&state->ca_mutex);
  256. req = 0xC2;
  257. value1 = address;
  258. index = value;
  259. blen = 0;
  260. ret = az6007_write(d, req, value1, index, NULL, blen);
  261. if (ret != 0)
  262. pr_warn("usb out operation failed. (%d)\n", ret);
  263. mutex_unlock(&state->ca_mutex);
  264. return ret;
  265. }
  266. static int az6007_ci_read_cam_control(struct dvb_ca_en50221 *ca,
  267. int slot,
  268. u8 address)
  269. {
  270. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  271. struct az6007_device_state *state = d_to_priv(d);
  272. int ret;
  273. u8 req;
  274. u16 value;
  275. u16 index;
  276. int blen;
  277. u8 *b;
  278. if (slot != 0)
  279. return -EINVAL;
  280. b = kmalloc(12, GFP_KERNEL);
  281. if (!b)
  282. return -ENOMEM;
  283. mutex_lock(&state->ca_mutex);
  284. req = 0xC3;
  285. value = address;
  286. index = 0;
  287. blen = 2;
  288. ret = az6007_read(d, req, value, index, b, blen);
  289. if (ret < 0) {
  290. pr_warn("usb in operation failed. (%d)\n", ret);
  291. ret = -EINVAL;
  292. } else {
  293. if (b[0] == 0)
  294. pr_warn("Read CI IO error\n");
  295. ret = b[1];
  296. pr_debug("read cam data = %x from 0x%x\n", b[1], value);
  297. }
  298. mutex_unlock(&state->ca_mutex);
  299. kfree(b);
  300. return ret;
  301. }
  302. static int az6007_ci_write_cam_control(struct dvb_ca_en50221 *ca,
  303. int slot,
  304. u8 address,
  305. u8 value)
  306. {
  307. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  308. struct az6007_device_state *state = d_to_priv(d);
  309. int ret;
  310. u8 req;
  311. u16 value1;
  312. u16 index;
  313. int blen;
  314. if (slot != 0)
  315. return -EINVAL;
  316. mutex_lock(&state->ca_mutex);
  317. req = 0xC4;
  318. value1 = address;
  319. index = value;
  320. blen = 0;
  321. ret = az6007_write(d, req, value1, index, NULL, blen);
  322. if (ret != 0) {
  323. pr_warn("usb out operation failed. (%d)\n", ret);
  324. goto failed;
  325. }
  326. failed:
  327. mutex_unlock(&state->ca_mutex);
  328. return ret;
  329. }
  330. static int CI_CamReady(struct dvb_ca_en50221 *ca, int slot)
  331. {
  332. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  333. int ret;
  334. u8 req;
  335. u16 value;
  336. u16 index;
  337. int blen;
  338. u8 *b;
  339. b = kmalloc(12, GFP_KERNEL);
  340. if (!b)
  341. return -ENOMEM;
  342. req = 0xC8;
  343. value = 0;
  344. index = 0;
  345. blen = 1;
  346. ret = az6007_read(d, req, value, index, b, blen);
  347. if (ret < 0) {
  348. pr_warn("usb in operation failed. (%d)\n", ret);
  349. ret = -EIO;
  350. } else{
  351. ret = b[0];
  352. }
  353. kfree(b);
  354. return ret;
  355. }
  356. static int az6007_ci_slot_reset(struct dvb_ca_en50221 *ca, int slot)
  357. {
  358. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  359. struct az6007_device_state *state = d_to_priv(d);
  360. int ret, i;
  361. u8 req;
  362. u16 value;
  363. u16 index;
  364. int blen;
  365. mutex_lock(&state->ca_mutex);
  366. req = 0xC6;
  367. value = 1;
  368. index = 0;
  369. blen = 0;
  370. ret = az6007_write(d, req, value, index, NULL, blen);
  371. if (ret != 0) {
  372. pr_warn("usb out operation failed. (%d)\n", ret);
  373. goto failed;
  374. }
  375. msleep(500);
  376. req = 0xC6;
  377. value = 0;
  378. index = 0;
  379. blen = 0;
  380. ret = az6007_write(d, req, value, index, NULL, blen);
  381. if (ret != 0) {
  382. pr_warn("usb out operation failed. (%d)\n", ret);
  383. goto failed;
  384. }
  385. for (i = 0; i < 15; i++) {
  386. msleep(100);
  387. if (CI_CamReady(ca, slot)) {
  388. pr_debug("CAM Ready\n");
  389. break;
  390. }
  391. }
  392. msleep(5000);
  393. failed:
  394. mutex_unlock(&state->ca_mutex);
  395. return ret;
  396. }
  397. static int az6007_ci_slot_shutdown(struct dvb_ca_en50221 *ca, int slot)
  398. {
  399. return 0;
  400. }
  401. static int az6007_ci_slot_ts_enable(struct dvb_ca_en50221 *ca, int slot)
  402. {
  403. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  404. struct az6007_device_state *state = d_to_priv(d);
  405. int ret;
  406. u8 req;
  407. u16 value;
  408. u16 index;
  409. int blen;
  410. pr_debug("%s()\n", __func__);
  411. mutex_lock(&state->ca_mutex);
  412. req = 0xC7;
  413. value = 1;
  414. index = 0;
  415. blen = 0;
  416. ret = az6007_write(d, req, value, index, NULL, blen);
  417. if (ret != 0) {
  418. pr_warn("usb out operation failed. (%d)\n", ret);
  419. goto failed;
  420. }
  421. failed:
  422. mutex_unlock(&state->ca_mutex);
  423. return ret;
  424. }
  425. static int az6007_ci_poll_slot_status(struct dvb_ca_en50221 *ca, int slot, int open)
  426. {
  427. struct dvb_usb_device *d = (struct dvb_usb_device *)ca->data;
  428. struct az6007_device_state *state = d_to_priv(d);
  429. int ret;
  430. u8 req;
  431. u16 value;
  432. u16 index;
  433. int blen;
  434. u8 *b;
  435. b = kmalloc(12, GFP_KERNEL);
  436. if (!b)
  437. return -ENOMEM;
  438. mutex_lock(&state->ca_mutex);
  439. req = 0xC5;
  440. value = 0;
  441. index = 0;
  442. blen = 1;
  443. ret = az6007_read(d, req, value, index, b, blen);
  444. if (ret < 0) {
  445. pr_warn("usb in operation failed. (%d)\n", ret);
  446. ret = -EIO;
  447. } else
  448. ret = 0;
  449. if (!ret && b[0] == 1) {
  450. ret = DVB_CA_EN50221_POLL_CAM_PRESENT |
  451. DVB_CA_EN50221_POLL_CAM_READY;
  452. }
  453. mutex_unlock(&state->ca_mutex);
  454. kfree(b);
  455. return ret;
  456. }
  457. static void az6007_ci_uninit(struct dvb_usb_device *d)
  458. {
  459. struct az6007_device_state *state;
  460. pr_debug("%s()\n", __func__);
  461. if (NULL == d)
  462. return;
  463. state = d_to_priv(d);
  464. if (NULL == state)
  465. return;
  466. if (NULL == state->ca.data)
  467. return;
  468. dvb_ca_en50221_release(&state->ca);
  469. memset(&state->ca, 0, sizeof(state->ca));
  470. }
  471. static int az6007_ci_init(struct dvb_usb_adapter *adap)
  472. {
  473. struct dvb_usb_device *d = adap_to_d(adap);
  474. struct az6007_device_state *state = adap_to_priv(adap);
  475. int ret;
  476. pr_debug("%s()\n", __func__);
  477. mutex_init(&state->ca_mutex);
  478. state->ca.owner = THIS_MODULE;
  479. state->ca.read_attribute_mem = az6007_ci_read_attribute_mem;
  480. state->ca.write_attribute_mem = az6007_ci_write_attribute_mem;
  481. state->ca.read_cam_control = az6007_ci_read_cam_control;
  482. state->ca.write_cam_control = az6007_ci_write_cam_control;
  483. state->ca.slot_reset = az6007_ci_slot_reset;
  484. state->ca.slot_shutdown = az6007_ci_slot_shutdown;
  485. state->ca.slot_ts_enable = az6007_ci_slot_ts_enable;
  486. state->ca.poll_slot_status = az6007_ci_poll_slot_status;
  487. state->ca.data = d;
  488. ret = dvb_ca_en50221_init(&adap->dvb_adap,
  489. &state->ca,
  490. 0, /* flags */
  491. 1);/* n_slots */
  492. if (ret != 0) {
  493. pr_err("Cannot initialize CI: Error %d.\n", ret);
  494. memset(&state->ca, 0, sizeof(state->ca));
  495. return ret;
  496. }
  497. pr_debug("CI initialized.\n");
  498. return 0;
  499. }
  500. static int az6007_read_mac_addr(struct dvb_usb_adapter *adap, u8 mac[6])
  501. {
  502. struct dvb_usb_device *d = adap_to_d(adap);
  503. struct az6007_device_state *st = adap_to_priv(adap);
  504. int ret;
  505. ret = az6007_read(d, AZ6007_READ_DATA, 6, 0, st->data, 6);
  506. memcpy(mac, st->data, 6);
  507. if (ret > 0)
  508. pr_debug("%s: mac is %pM\n", __func__, mac);
  509. return ret;
  510. }
  511. static int az6007_frontend_attach(struct dvb_usb_adapter *adap)
  512. {
  513. struct az6007_device_state *st = adap_to_priv(adap);
  514. struct dvb_usb_device *d = adap_to_d(adap);
  515. pr_debug("attaching demod drxk\n");
  516. adap->fe[0] = dvb_attach(drxk_attach, &terratec_h7_drxk,
  517. &d->i2c_adap);
  518. if (!adap->fe[0])
  519. return -EINVAL;
  520. adap->fe[0]->sec_priv = adap;
  521. st->gate_ctrl = adap->fe[0]->ops.i2c_gate_ctrl;
  522. adap->fe[0]->ops.i2c_gate_ctrl = drxk_gate_ctrl;
  523. az6007_ci_init(adap);
  524. return 0;
  525. }
  526. static int az6007_cablestar_hdci_frontend_attach(struct dvb_usb_adapter *adap)
  527. {
  528. struct az6007_device_state *st = adap_to_priv(adap);
  529. struct dvb_usb_device *d = adap_to_d(adap);
  530. pr_debug("attaching demod drxk\n");
  531. adap->fe[0] = dvb_attach(drxk_attach, &cablestar_hdci_drxk,
  532. &d->i2c_adap);
  533. if (!adap->fe[0])
  534. return -EINVAL;
  535. adap->fe[0]->sec_priv = adap;
  536. st->gate_ctrl = adap->fe[0]->ops.i2c_gate_ctrl;
  537. adap->fe[0]->ops.i2c_gate_ctrl = drxk_gate_ctrl;
  538. az6007_ci_init(adap);
  539. return 0;
  540. }
  541. static int az6007_tuner_attach(struct dvb_usb_adapter *adap)
  542. {
  543. struct dvb_usb_device *d = adap_to_d(adap);
  544. pr_debug("attaching tuner mt2063\n");
  545. /* Attach mt2063 to DVB-C frontend */
  546. if (adap->fe[0]->ops.i2c_gate_ctrl)
  547. adap->fe[0]->ops.i2c_gate_ctrl(adap->fe[0], 1);
  548. if (!dvb_attach(mt2063_attach, adap->fe[0],
  549. &az6007_mt2063_config,
  550. &d->i2c_adap))
  551. return -EINVAL;
  552. if (adap->fe[0]->ops.i2c_gate_ctrl)
  553. adap->fe[0]->ops.i2c_gate_ctrl(adap->fe[0], 0);
  554. return 0;
  555. }
  556. static int az6007_power_ctrl(struct dvb_usb_device *d, int onoff)
  557. {
  558. struct az6007_device_state *state = d_to_priv(d);
  559. int ret;
  560. pr_debug("%s()\n", __func__);
  561. if (!state->warm) {
  562. mutex_init(&state->mutex);
  563. ret = az6007_write(d, AZ6007_POWER, 0, 2, NULL, 0);
  564. if (ret < 0)
  565. return ret;
  566. msleep(60);
  567. ret = az6007_write(d, AZ6007_POWER, 1, 4, NULL, 0);
  568. if (ret < 0)
  569. return ret;
  570. msleep(100);
  571. ret = az6007_write(d, AZ6007_POWER, 1, 3, NULL, 0);
  572. if (ret < 0)
  573. return ret;
  574. msleep(20);
  575. ret = az6007_write(d, AZ6007_POWER, 1, 4, NULL, 0);
  576. if (ret < 0)
  577. return ret;
  578. msleep(400);
  579. ret = az6007_write(d, FX2_SCON1, 0, 3, NULL, 0);
  580. if (ret < 0)
  581. return ret;
  582. msleep(150);
  583. ret = az6007_write(d, FX2_SCON1, 1, 3, NULL, 0);
  584. if (ret < 0)
  585. return ret;
  586. msleep(430);
  587. ret = az6007_write(d, AZ6007_POWER, 0, 0, NULL, 0);
  588. if (ret < 0)
  589. return ret;
  590. state->warm = true;
  591. return 0;
  592. }
  593. if (!onoff)
  594. return 0;
  595. az6007_write(d, AZ6007_POWER, 0, 0, NULL, 0);
  596. az6007_write(d, AZ6007_TS_THROUGH, 0, 0, NULL, 0);
  597. return 0;
  598. }
  599. /* I2C */
  600. static int az6007_i2c_xfer(struct i2c_adapter *adap, struct i2c_msg msgs[],
  601. int num)
  602. {
  603. struct dvb_usb_device *d = i2c_get_adapdata(adap);
  604. struct az6007_device_state *st = d_to_priv(d);
  605. int i, j, len;
  606. int ret = 0;
  607. u16 index;
  608. u16 value;
  609. int length;
  610. u8 req, addr;
  611. if (mutex_lock_interruptible(&st->mutex) < 0)
  612. return -EAGAIN;
  613. for (i = 0; i < num; i++) {
  614. addr = msgs[i].addr << 1;
  615. if (((i + 1) < num)
  616. && (msgs[i].len == 1)
  617. && ((msgs[i].flags & I2C_M_RD) != I2C_M_RD)
  618. && (msgs[i + 1].flags & I2C_M_RD)
  619. && (msgs[i].addr == msgs[i + 1].addr)) {
  620. /*
  621. * A write + read xfer for the same address, where
  622. * the first xfer has just 1 byte length.
  623. * Need to join both into one operation
  624. */
  625. if (az6007_xfer_debug)
  626. printk(KERN_DEBUG "az6007: I2C W/R addr=0x%x len=%d/%d\n",
  627. addr, msgs[i].len, msgs[i + 1].len);
  628. req = AZ6007_I2C_RD;
  629. index = msgs[i].buf[0];
  630. value = addr | (1 << 8);
  631. length = 6 + msgs[i + 1].len;
  632. len = msgs[i + 1].len;
  633. ret = __az6007_read(d->udev, req, value, index,
  634. st->data, length);
  635. if (ret >= len) {
  636. for (j = 0; j < len; j++)
  637. msgs[i + 1].buf[j] = st->data[j + 5];
  638. } else
  639. ret = -EIO;
  640. i++;
  641. } else if (!(msgs[i].flags & I2C_M_RD)) {
  642. /* write bytes */
  643. if (az6007_xfer_debug)
  644. printk(KERN_DEBUG "az6007: I2C W addr=0x%x len=%d\n",
  645. addr, msgs[i].len);
  646. req = AZ6007_I2C_WR;
  647. index = msgs[i].buf[0];
  648. value = addr | (1 << 8);
  649. length = msgs[i].len - 1;
  650. len = msgs[i].len - 1;
  651. for (j = 0; j < len; j++)
  652. st->data[j] = msgs[i].buf[j + 1];
  653. ret = __az6007_write(d->udev, req, value, index,
  654. st->data, length);
  655. } else {
  656. /* read bytes */
  657. if (az6007_xfer_debug)
  658. printk(KERN_DEBUG "az6007: I2C R addr=0x%x len=%d\n",
  659. addr, msgs[i].len);
  660. req = AZ6007_I2C_RD;
  661. index = msgs[i].buf[0];
  662. value = addr;
  663. length = msgs[i].len + 6;
  664. len = msgs[i].len;
  665. ret = __az6007_read(d->udev, req, value, index,
  666. st->data, length);
  667. for (j = 0; j < len; j++)
  668. msgs[i].buf[j] = st->data[j + 5];
  669. }
  670. if (ret < 0)
  671. goto err;
  672. }
  673. err:
  674. mutex_unlock(&st->mutex);
  675. if (ret < 0) {
  676. pr_info("%s ERROR: %i\n", __func__, ret);
  677. return ret;
  678. }
  679. return num;
  680. }
  681. static u32 az6007_i2c_func(struct i2c_adapter *adapter)
  682. {
  683. return I2C_FUNC_I2C;
  684. }
  685. static struct i2c_algorithm az6007_i2c_algo = {
  686. .master_xfer = az6007_i2c_xfer,
  687. .functionality = az6007_i2c_func,
  688. };
  689. static int az6007_identify_state(struct dvb_usb_device *d, const char **name)
  690. {
  691. int ret;
  692. u8 *mac;
  693. pr_debug("Identifying az6007 state\n");
  694. mac = kmalloc(6, GFP_ATOMIC);
  695. if (!mac)
  696. return -ENOMEM;
  697. /* Try to read the mac address */
  698. ret = __az6007_read(d->udev, AZ6007_READ_DATA, 6, 0, mac, 6);
  699. if (ret == 6)
  700. ret = WARM;
  701. else
  702. ret = COLD;
  703. kfree(mac);
  704. if (ret == COLD) {
  705. __az6007_write(d->udev, 0x09, 1, 0, NULL, 0);
  706. __az6007_write(d->udev, 0x00, 0, 0, NULL, 0);
  707. __az6007_write(d->udev, 0x00, 0, 0, NULL, 0);
  708. }
  709. pr_debug("Device is on %s state\n",
  710. ret == WARM ? "warm" : "cold");
  711. return ret;
  712. }
  713. static void az6007_usb_disconnect(struct usb_interface *intf)
  714. {
  715. struct dvb_usb_device *d = usb_get_intfdata(intf);
  716. az6007_ci_uninit(d);
  717. dvb_usbv2_disconnect(intf);
  718. }
  719. static int az6007_download_firmware(struct dvb_usb_device *d,
  720. const struct firmware *fw)
  721. {
  722. pr_debug("Loading az6007 firmware\n");
  723. return cypress_load_firmware(d->udev, fw, CYPRESS_FX2);
  724. }
  725. /* DVB USB Driver stuff */
  726. static struct dvb_usb_device_properties az6007_props = {
  727. .driver_name = KBUILD_MODNAME,
  728. .owner = THIS_MODULE,
  729. .firmware = AZ6007_FIRMWARE,
  730. .adapter_nr = adapter_nr,
  731. .size_of_priv = sizeof(struct az6007_device_state),
  732. .i2c_algo = &az6007_i2c_algo,
  733. .tuner_attach = az6007_tuner_attach,
  734. .frontend_attach = az6007_frontend_attach,
  735. .streaming_ctrl = az6007_streaming_ctrl,
  736. .get_rc_config = az6007_get_rc_config,
  737. .read_mac_address = az6007_read_mac_addr,
  738. .download_firmware = az6007_download_firmware,
  739. .identify_state = az6007_identify_state,
  740. .power_ctrl = az6007_power_ctrl,
  741. .num_adapters = 1,
  742. .adapter = {
  743. { .stream = DVB_USB_STREAM_BULK(0x02, 10, 4096), }
  744. }
  745. };
  746. static struct dvb_usb_device_properties az6007_cablestar_hdci_props = {
  747. .driver_name = KBUILD_MODNAME,
  748. .owner = THIS_MODULE,
  749. .firmware = AZ6007_FIRMWARE,
  750. .adapter_nr = adapter_nr,
  751. .size_of_priv = sizeof(struct az6007_device_state),
  752. .i2c_algo = &az6007_i2c_algo,
  753. .tuner_attach = az6007_tuner_attach,
  754. .frontend_attach = az6007_cablestar_hdci_frontend_attach,
  755. .streaming_ctrl = az6007_streaming_ctrl,
  756. /* ditch get_rc_config as it can't work (TS35 remote, I believe it's rc5) */
  757. .get_rc_config = NULL,
  758. .read_mac_address = az6007_read_mac_addr,
  759. .download_firmware = az6007_download_firmware,
  760. .identify_state = az6007_identify_state,
  761. .power_ctrl = az6007_power_ctrl,
  762. .num_adapters = 1,
  763. .adapter = {
  764. { .stream = DVB_USB_STREAM_BULK(0x02, 10, 4096), }
  765. }
  766. };
  767. static struct usb_device_id az6007_usb_table[] = {
  768. {DVB_USB_DEVICE(USB_VID_AZUREWAVE, USB_PID_AZUREWAVE_6007,
  769. &az6007_props, "Azurewave 6007", RC_MAP_EMPTY)},
  770. {DVB_USB_DEVICE(USB_VID_TERRATEC, USB_PID_TERRATEC_H7,
  771. &az6007_props, "Terratec H7", RC_MAP_NEC_TERRATEC_CINERGY_XS)},
  772. {DVB_USB_DEVICE(USB_VID_TERRATEC, USB_PID_TERRATEC_H7_2,
  773. &az6007_props, "Terratec H7", RC_MAP_NEC_TERRATEC_CINERGY_XS)},
  774. {DVB_USB_DEVICE(USB_VID_TECHNISAT, USB_PID_TECHNISAT_USB2_CABLESTAR_HDCI,
  775. &az6007_cablestar_hdci_props, "Technisat CableStar Combo HD CI", RC_MAP_EMPTY)},
  776. {0},
  777. };
  778. MODULE_DEVICE_TABLE(usb, az6007_usb_table);
  779. static int az6007_suspend(struct usb_interface *intf, pm_message_t msg)
  780. {
  781. struct dvb_usb_device *d = usb_get_intfdata(intf);
  782. az6007_ci_uninit(d);
  783. return dvb_usbv2_suspend(intf, msg);
  784. }
  785. static int az6007_resume(struct usb_interface *intf)
  786. {
  787. struct dvb_usb_device *d = usb_get_intfdata(intf);
  788. struct dvb_usb_adapter *adap = &d->adapter[0];
  789. az6007_ci_init(adap);
  790. return dvb_usbv2_resume(intf);
  791. }
  792. /* usb specific object needed to register this driver with the usb subsystem */
  793. static struct usb_driver az6007_usb_driver = {
  794. .name = KBUILD_MODNAME,
  795. .id_table = az6007_usb_table,
  796. .probe = dvb_usbv2_probe,
  797. .disconnect = az6007_usb_disconnect,
  798. .no_dynamic_id = 1,
  799. .soft_unbind = 1,
  800. /*
  801. * FIXME: need to implement reset_resume, likely with
  802. * dvb-usb-v2 core support
  803. */
  804. .suspend = az6007_suspend,
  805. .resume = az6007_resume,
  806. };
  807. module_usb_driver(az6007_usb_driver);
  808. MODULE_AUTHOR("Henry Wang <Henry.wang@AzureWave.com>");
  809. MODULE_AUTHOR("Mauro Carvalho Chehab");
  810. MODULE_DESCRIPTION("Driver for AzureWave 6007 DVB-C/T USB2.0 and clones");
  811. MODULE_VERSION("2.0");
  812. MODULE_LICENSE("GPL");
  813. MODULE_FIRMWARE(AZ6007_FIRMWARE);