dib0700_devices.c 10 KB

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  1. /* Linux driver for devices based on the DiBcom DiB0700 USB bridge
  2. *
  3. * This program is free software; you can redistribute it and/or modify it
  4. * under the terms of the GNU General Public License as published by the Free
  5. * Software Foundation, version 2.
  6. *
  7. * Copyright (C) 2005-6 DiBcom, SA
  8. */
  9. #include "dib0700.h"
  10. #include "dib3000mc.h"
  11. #include "dib7000m.h"
  12. #include "dib7000p.h"
  13. #include "mt2060.h"
  14. static int force_lna_activation;
  15. module_param(force_lna_activation, int, 0644);
  16. MODULE_PARM_DESC(force_lna_activation, "force the activation of Low-Noise-Amplifyer(s) (LNA), "
  17. "if applicable for the device (default: 0=automatic/off).");
  18. /* Hauppauge Nova-T 500
  19. * has a LNA on GPIO0 which is enabled by setting 1 */
  20. static struct mt2060_config bristol_mt2060_config[2] = {
  21. {
  22. .i2c_address = 0x60,
  23. .clock_out = 3,
  24. }, {
  25. .i2c_address = 0x61,
  26. }
  27. };
  28. static struct dibx000_agc_config bristol_dib3000p_mt2060_agc_config = {
  29. .band_caps = BAND_VHF | BAND_UHF,
  30. .setup = (1 << 8) | (5 << 5) | (0 << 4) | (0 << 3) | (0 << 2) | (2 << 0),
  31. .agc1_max = 42598,
  32. .agc1_min = 17694,
  33. .agc2_max = 45875,
  34. .agc2_min = 0,
  35. .agc1_pt1 = 0,
  36. .agc1_pt2 = 59,
  37. .agc1_slope1 = 0,
  38. .agc1_slope2 = 69,
  39. .agc2_pt1 = 0,
  40. .agc2_pt2 = 59,
  41. .agc2_slope1 = 111,
  42. .agc2_slope2 = 28,
  43. };
  44. static struct dib3000mc_config bristol_dib3000mc_config[2] = {
  45. { .agc = &bristol_dib3000p_mt2060_agc_config,
  46. .max_time = 0x196,
  47. .ln_adc_level = 0x1cc7,
  48. .output_mpeg2_in_188_bytes = 1,
  49. },
  50. { .agc = &bristol_dib3000p_mt2060_agc_config,
  51. .max_time = 0x196,
  52. .ln_adc_level = 0x1cc7,
  53. .output_mpeg2_in_188_bytes = 1,
  54. }
  55. };
  56. static int bristol_frontend_attach(struct dvb_usb_adapter *adap)
  57. {
  58. struct dib0700_state *st = adap->dev->priv;
  59. if (adap->id == 0) {
  60. dib0700_set_gpio(adap->dev, GPIO6, GPIO_OUT, 0); msleep(10);
  61. dib0700_set_gpio(adap->dev, GPIO6, GPIO_OUT, 1); msleep(10);
  62. dib0700_set_gpio(adap->dev, GPIO10, GPIO_OUT, 0); msleep(10);
  63. dib0700_set_gpio(adap->dev, GPIO10, GPIO_OUT, 1); msleep(10);
  64. if (force_lna_activation)
  65. dib0700_set_gpio(adap->dev, GPIO0, GPIO_OUT, 1);
  66. else
  67. dib0700_set_gpio(adap->dev, GPIO0, GPIO_OUT, 0);
  68. if (dib3000mc_i2c_enumeration(&adap->dev->i2c_adap, 2, DEFAULT_DIB3000P_I2C_ADDRESS, bristol_dib3000mc_config) != 0) {
  69. dib0700_set_gpio(adap->dev, GPIO6, GPIO_OUT, 0); msleep(10);
  70. return -ENODEV;
  71. }
  72. }
  73. st->mt2060_if1[adap->id] = 1220;
  74. return (adap->fe = dvb_attach(dib3000mc_attach, &adap->dev->i2c_adap,
  75. (10 + adap->id) << 1, &bristol_dib3000mc_config[adap->id])) == NULL ? -ENODEV : 0;
  76. }
  77. static int bristol_tuner_attach(struct dvb_usb_adapter *adap)
  78. {
  79. struct dib0700_state *st = adap->dev->priv;
  80. struct i2c_adapter *tun_i2c = dib3000mc_get_tuner_i2c_master(adap->fe, 1);
  81. return dvb_attach(mt2060_attach,adap->fe, tun_i2c, &bristol_mt2060_config[adap->id],
  82. st->mt2060_if1[adap->id]) == NULL ? -ENODEV : 0;
  83. }
  84. /* STK7700P: Hauppauge Nova-T Stick, AVerMedia Volar */
  85. static struct dibx000_agc_config stk7700p_7000m_mt2060_agc_config = {
  86. BAND_UHF | BAND_VHF, // band_caps
  87. /* P_agc_use_sd_mod1=0, P_agc_use_sd_mod2=0, P_agc_freq_pwm_div=5, P_agc_inv_pwm1=0, P_agc_inv_pwm2=0,
  88. * P_agc_inh_dc_rv_est=0, P_agc_time_est=3, P_agc_freeze=0, P_agc_nb_est=2, P_agc_write=0 */
  89. (0 << 15) | (0 << 14) | (5 << 11) | (0 << 10) | (0 << 9) | (0 << 8) | (3 << 5) | (0 << 4) | (2 << 1) | (0 << 0), // setup
  90. 712, // inv_gain
  91. 41, // time_stabiliz
  92. 0, // alpha_level
  93. 118, // thlock
  94. 0, // wbd_inv
  95. 4095, // wbd_ref
  96. 0, // wbd_sel
  97. 0, // wbd_alpha
  98. 42598, // agc1_max
  99. 17694, // agc1_min
  100. 45875, // agc2_max
  101. 2621, // agc2_min
  102. 0, // agc1_pt1
  103. 76, // agc1_pt2
  104. 139, // agc1_pt3
  105. 52, // agc1_slope1
  106. 59, // agc1_slope2
  107. 107, // agc2_pt1
  108. 172, // agc2_pt2
  109. 57, // agc2_slope1
  110. 70, // agc2_slope2
  111. 21, // alpha_mant
  112. 25, // alpha_exp
  113. 28, // beta_mant
  114. 48, // beta_exp
  115. 1, // perform_agc_softsplit
  116. { 0, // split_min
  117. 107, // split_max
  118. 51800, // global_split_min
  119. 24700 // global_split_max
  120. },
  121. };
  122. static struct dibx000_agc_config stk7700p_7000p_mt2060_agc_config = {
  123. BAND_UHF | BAND_VHF,
  124. /* P_agc_use_sd_mod1=0, P_agc_use_sd_mod2=0, P_agc_freq_pwm_div=5, P_agc_inv_pwm1=0, P_agc_inv_pwm2=0,
  125. * P_agc_inh_dc_rv_est=0, P_agc_time_est=3, P_agc_freeze=0, P_agc_nb_est=2, P_agc_write=0 */
  126. (0 << 15) | (0 << 14) | (5 << 11) | (0 << 10) | (0 << 9) | (0 << 8) | (3 << 5) | (0 << 4) | (2 << 1) | (0 << 0), // setup
  127. 712, // inv_gain
  128. 41, // time_stabiliz
  129. 0, // alpha_level
  130. 118, // thlock
  131. 0, // wbd_inv
  132. 4095, // wbd_ref
  133. 0, // wbd_sel
  134. 0, // wbd_alpha
  135. 42598, // agc1_max
  136. 16384, // agc1_min
  137. 42598, // agc2_max
  138. 0, // agc2_min
  139. 0, // agc1_pt1
  140. 137, // agc1_pt2
  141. 255, // agc1_pt3
  142. 0, // agc1_slope1
  143. 255, // agc1_slope2
  144. 0, // agc2_pt1
  145. 0, // agc2_pt2
  146. 0, // agc2_slope1
  147. 41, // agc2_slope2
  148. 15, // alpha_mant
  149. 25, // alpha_exp
  150. 28, // beta_mant
  151. 48, // beta_exp
  152. 0, // perform_agc_softsplit
  153. };
  154. static struct dibx000_bandwidth_config stk7700p_pll_config = {
  155. 60000, 30000, // internal, sampling
  156. 1, 8, 3, 1, 0, // pll_cfg: prediv, ratio, range, reset, bypass
  157. 0, 0, 1, 1, 0, // misc: refdiv, bypclk_div, IO_CLK_en_core, ADClkSrc, modulo
  158. (3 << 14) | (1 << 12) | (524 << 0), // sad_cfg: refsel, sel, freq_15k
  159. 60258167, // ifreq
  160. 20452225, // timf
  161. };
  162. static struct dib7000m_config stk7700p_dib7000m_config = {
  163. .dvbt_mode = 1,
  164. .output_mpeg2_in_188_bytes = 1,
  165. .quartz_direct = 1,
  166. .agc_config_count = 1,
  167. .agc = &stk7700p_7000m_mt2060_agc_config,
  168. .bw = &stk7700p_pll_config,
  169. .gpio_dir = DIB7000M_GPIO_DEFAULT_DIRECTIONS,
  170. .gpio_val = DIB7000M_GPIO_DEFAULT_VALUES,
  171. .gpio_pwm_pos = DIB7000M_GPIO_DEFAULT_PWM_POS,
  172. };
  173. static struct dib7000p_config stk7700p_dib7000p_config = {
  174. .output_mpeg2_in_188_bytes = 1,
  175. .agc = &stk7700p_7000p_mt2060_agc_config,
  176. .bw = &stk7700p_pll_config,
  177. .gpio_dir = DIB7000M_GPIO_DEFAULT_DIRECTIONS,
  178. .gpio_val = DIB7000M_GPIO_DEFAULT_VALUES,
  179. .gpio_pwm_pos = DIB7000M_GPIO_DEFAULT_PWM_POS,
  180. };
  181. static int stk7700p_frontend_attach(struct dvb_usb_adapter *adap)
  182. {
  183. struct dib0700_state *st = adap->dev->priv;
  184. /* unless there is no real power management in DVB - we leave the device on GPIO6 */
  185. dib0700_set_gpio(adap->dev, GPIO10, GPIO_OUT, 0);
  186. dib0700_set_gpio(adap->dev, GPIO6, GPIO_OUT, 0); msleep(50);
  187. dib0700_set_gpio(adap->dev, GPIO6, GPIO_OUT, 1); msleep(10);
  188. dib0700_set_gpio(adap->dev, GPIO9, GPIO_OUT, 1);
  189. dib0700_set_gpio(adap->dev, GPIO10, GPIO_OUT, 0); msleep(10);
  190. dib0700_ctrl_clock(adap->dev, 72, 1);
  191. dib0700_set_gpio(adap->dev, GPIO10, GPIO_OUT, 1); msleep(100);
  192. dib0700_set_gpio(adap->dev, GPIO0, GPIO_OUT, 1);
  193. st->mt2060_if1[0] = 1220;
  194. if (dib7000pc_detection(&adap->dev->i2c_adap)) {
  195. adap->fe = dvb_attach(dib7000p_attach, &adap->dev->i2c_adap, 18, &stk7700p_dib7000p_config);
  196. st->is_dib7000pc = 1;
  197. } else
  198. adap->fe = dvb_attach(dib7000m_attach, &adap->dev->i2c_adap, 18, &stk7700p_dib7000m_config);
  199. return adap->fe == NULL ? -ENODEV : 0;
  200. }
  201. static struct mt2060_config stk7700p_mt2060_config = {
  202. 0x60
  203. };
  204. static int stk7700p_tuner_attach(struct dvb_usb_adapter *adap)
  205. {
  206. struct dib0700_state *st = adap->dev->priv;
  207. struct i2c_adapter *tun_i2c;
  208. if (st->is_dib7000pc)
  209. tun_i2c = dib7000p_get_i2c_master(adap->fe, DIBX000_I2C_INTERFACE_TUNER, 1);
  210. else
  211. tun_i2c = dib7000m_get_i2c_master(adap->fe, DIBX000_I2C_INTERFACE_TUNER, 1);
  212. return dvb_attach(mt2060_attach, adap->fe, tun_i2c, &stk7700p_mt2060_config,
  213. st->mt2060_if1[0]) == NULL ? -ENODEV : 0;
  214. }
  215. struct usb_device_id dib0700_usb_id_table[] = {
  216. { USB_DEVICE(USB_VID_DIBCOM, USB_PID_DIBCOM_STK7700P) },
  217. { USB_DEVICE(USB_VID_DIBCOM, USB_PID_DIBCOM_STK7700P_PC) },
  218. { USB_DEVICE(USB_VID_HAUPPAUGE, USB_PID_HAUPPAUGE_NOVA_T_500) },
  219. { USB_DEVICE(USB_VID_HAUPPAUGE, USB_PID_HAUPPAUGE_NOVA_T_500_2) },
  220. { USB_DEVICE(USB_VID_HAUPPAUGE, USB_PID_HAUPPAUGE_NOVA_T_STICK) },
  221. { USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_VOLAR) },
  222. { USB_DEVICE(USB_VID_COMPRO, USB_PID_COMPRO_VIDEOMATE_U500) },
  223. { USB_DEVICE(USB_VID_UNIWILL, USB_PID_UNIWILL_STK7700P) },
  224. { USB_DEVICE(USB_VID_LEADTEK, USB_PID_WINFAST_DTV_DONGLE_STK7700P) },
  225. { USB_DEVICE(USB_VID_HAUPPAUGE, USB_PID_HAUPPAUGE_NOVA_T_STICK_2) },
  226. { USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_VOLAR_2) },
  227. { } /* Terminating entry */
  228. };
  229. MODULE_DEVICE_TABLE(usb, dib0700_usb_id_table);
  230. #define DIB0700_DEFAULT_DEVICE_PROPERTIES \
  231. .caps = DVB_USB_IS_AN_I2C_ADAPTER, \
  232. .usb_ctrl = DEVICE_SPECIFIC, \
  233. .firmware = "dvb-usb-dib0700-01.fw", \
  234. .download_firmware = dib0700_download_firmware, \
  235. .no_reconnect = 1, \
  236. .size_of_priv = sizeof(struct dib0700_state), \
  237. .i2c_algo = &dib0700_i2c_algo, \
  238. .identify_state = dib0700_identify_state
  239. #define DIB0700_DEFAULT_STREAMING_CONFIG(ep) \
  240. .streaming_ctrl = dib0700_streaming_ctrl, \
  241. .stream = { \
  242. .type = USB_BULK, \
  243. .count = 4, \
  244. .endpoint = ep, \
  245. .u = { \
  246. .bulk = { \
  247. .buffersize = 39480, \
  248. } \
  249. } \
  250. }
  251. struct dvb_usb_device_properties dib0700_devices[] = {
  252. {
  253. DIB0700_DEFAULT_DEVICE_PROPERTIES,
  254. .num_adapters = 1,
  255. .adapter = {
  256. {
  257. .frontend_attach = stk7700p_frontend_attach,
  258. .tuner_attach = stk7700p_tuner_attach,
  259. DIB0700_DEFAULT_STREAMING_CONFIG(0x02),
  260. },
  261. },
  262. .num_device_descs = 6,
  263. .devices = {
  264. { "DiBcom STK7700P reference design",
  265. { &dib0700_usb_id_table[0], &dib0700_usb_id_table[1] },
  266. { NULL },
  267. },
  268. { "Hauppauge Nova-T Stick",
  269. { &dib0700_usb_id_table[4], &dib0700_usb_id_table[9], NULL },
  270. { NULL },
  271. },
  272. { "AVerMedia AVerTV DVB-T Volar",
  273. { &dib0700_usb_id_table[5], &dib0700_usb_id_table[10] },
  274. { NULL },
  275. },
  276. { "Compro Videomate U500",
  277. { &dib0700_usb_id_table[6], NULL },
  278. { NULL },
  279. },
  280. { "Uniwill STK7700P based (Hama and others)",
  281. { &dib0700_usb_id_table[7], NULL },
  282. { NULL },
  283. },
  284. { "Leadtek Winfast DTV Dongle (STK7700P based)",
  285. { &dib0700_usb_id_table[8], NULL },
  286. { NULL },
  287. }
  288. }
  289. }, { DIB0700_DEFAULT_DEVICE_PROPERTIES,
  290. .num_adapters = 2,
  291. .adapter = {
  292. {
  293. .frontend_attach = bristol_frontend_attach,
  294. .tuner_attach = bristol_tuner_attach,
  295. DIB0700_DEFAULT_STREAMING_CONFIG(0x02),
  296. }, {
  297. .frontend_attach = bristol_frontend_attach,
  298. .tuner_attach = bristol_tuner_attach,
  299. DIB0700_DEFAULT_STREAMING_CONFIG(0x03),
  300. }
  301. },
  302. .num_device_descs = 1,
  303. .devices = {
  304. { "Hauppauge Nova-T 500 Dual DVB-T",
  305. { &dib0700_usb_id_table[2], &dib0700_usb_id_table[3], NULL },
  306. { NULL },
  307. },
  308. }
  309. }
  310. };
  311. int dib0700_device_count = ARRAY_SIZE(dib0700_devices);