ch7006_mode.c 16 KB

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  1. /*
  2. * Copyright (C) 2009 Francisco Jerez.
  3. * All Rights Reserved.
  4. *
  5. * Permission is hereby granted, free of charge, to any person obtaining
  6. * a copy of this software and associated documentation files (the
  7. * "Software"), to deal in the Software without restriction, including
  8. * without limitation the rights to use, copy, modify, merge, publish,
  9. * distribute, sublicense, and/or sell copies of the Software, and to
  10. * permit persons to whom the Software is furnished to do so, subject to
  11. * the following conditions:
  12. *
  13. * The above copyright notice and this permission notice (including the
  14. * next paragraph) shall be included in all copies or substantial
  15. * portions of the Software.
  16. *
  17. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
  18. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
  19. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
  20. * IN NO EVENT SHALL THE COPYRIGHT OWNER(S) AND/OR ITS SUPPLIERS BE
  21. * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION
  22. * OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
  23. * WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
  24. *
  25. */
  26. #include "ch7006_priv.h"
  27. const char * const ch7006_tv_norm_names[] = {
  28. [TV_NORM_PAL] = "PAL",
  29. [TV_NORM_PAL_M] = "PAL-M",
  30. [TV_NORM_PAL_N] = "PAL-N",
  31. [TV_NORM_PAL_NC] = "PAL-Nc",
  32. [TV_NORM_PAL_60] = "PAL-60",
  33. [TV_NORM_NTSC_M] = "NTSC-M",
  34. [TV_NORM_NTSC_J] = "NTSC-J",
  35. };
  36. #define NTSC_LIKE_TIMINGS .vrefresh = 60 * fixed1/1.001, \
  37. .vdisplay = 480, \
  38. .vtotal = 525, \
  39. .hvirtual = 660
  40. #define PAL_LIKE_TIMINGS .vrefresh = 50 * fixed1, \
  41. .vdisplay = 576, \
  42. .vtotal = 625, \
  43. .hvirtual = 810
  44. const struct ch7006_tv_norm_info ch7006_tv_norms[] = {
  45. [TV_NORM_NTSC_M] = {
  46. NTSC_LIKE_TIMINGS,
  47. .black_level = 0.339 * fixed1,
  48. .subc_freq = 3579545 * fixed1,
  49. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, NTSC),
  50. .voffset = 0,
  51. },
  52. [TV_NORM_NTSC_J] = {
  53. NTSC_LIKE_TIMINGS,
  54. .black_level = 0.286 * fixed1,
  55. .subc_freq = 3579545 * fixed1,
  56. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, NTSC_J),
  57. .voffset = 0,
  58. },
  59. [TV_NORM_PAL] = {
  60. PAL_LIKE_TIMINGS,
  61. .black_level = 0.3 * fixed1,
  62. .subc_freq = 4433618.75 * fixed1,
  63. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, PAL),
  64. .voffset = 0,
  65. },
  66. [TV_NORM_PAL_M] = {
  67. NTSC_LIKE_TIMINGS,
  68. .black_level = 0.339 * fixed1,
  69. .subc_freq = 3575611.433 * fixed1,
  70. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, PAL_M),
  71. .voffset = 16,
  72. },
  73. /* The following modes seem to work right but they're
  74. * undocumented */
  75. [TV_NORM_PAL_N] = {
  76. PAL_LIKE_TIMINGS,
  77. .black_level = 0.339 * fixed1,
  78. .subc_freq = 4433618.75 * fixed1,
  79. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, PAL),
  80. .voffset = 0,
  81. },
  82. [TV_NORM_PAL_NC] = {
  83. PAL_LIKE_TIMINGS,
  84. .black_level = 0.3 * fixed1,
  85. .subc_freq = 3582056.25 * fixed1,
  86. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, PAL),
  87. .voffset = 0,
  88. },
  89. [TV_NORM_PAL_60] = {
  90. NTSC_LIKE_TIMINGS,
  91. .black_level = 0.3 * fixed1,
  92. .subc_freq = 4433618.75 * fixed1,
  93. .dispmode = bitfs(CH7006_DISPMODE_OUTPUT_STD, PAL_M),
  94. .voffset = 16,
  95. },
  96. };
  97. #define __MODE(f, hd, vd, ht, vt, hsynp, vsynp, \
  98. subc, scale, scale_mask, norm_mask, e_hd, e_vd) { \
  99. .mode = { \
  100. .name = #hd "x" #vd, \
  101. .status = 0, \
  102. .type = DRM_MODE_TYPE_DRIVER, \
  103. .clock = f, \
  104. .hdisplay = hd, \
  105. .hsync_start = e_hd + 16, \
  106. .hsync_end = e_hd + 80, \
  107. .htotal = ht, \
  108. .hskew = 0, \
  109. .vdisplay = vd, \
  110. .vsync_start = vd + 10, \
  111. .vsync_end = vd + 26, \
  112. .vtotal = vt, \
  113. .vscan = 0, \
  114. .flags = DRM_MODE_FLAG_##hsynp##HSYNC | \
  115. DRM_MODE_FLAG_##vsynp##VSYNC, \
  116. }, \
  117. .enc_hdisp = e_hd, \
  118. .enc_vdisp = e_vd, \
  119. .subc_coeff = subc * fixed1, \
  120. .dispmode = bitfs(CH7006_DISPMODE_SCALING_RATIO, scale) | \
  121. bitfs(CH7006_DISPMODE_INPUT_RES, e_hd##x##e_vd), \
  122. .valid_scales = scale_mask, \
  123. .valid_norms = norm_mask \
  124. }
  125. #define MODE(f, hd, vd, ht, vt, hsynp, vsynp, \
  126. subc, scale, scale_mask, norm_mask) \
  127. __MODE(f, hd, vd, ht, vt, hsynp, vsynp, subc, scale, \
  128. scale_mask, norm_mask, hd, vd)
  129. #define NTSC_LIKE (1 << TV_NORM_NTSC_M | 1 << TV_NORM_NTSC_J | \
  130. 1 << TV_NORM_PAL_M | 1 << TV_NORM_PAL_60)
  131. #define PAL_LIKE (1 << TV_NORM_PAL | 1 << TV_NORM_PAL_N | 1 << TV_NORM_PAL_NC)
  132. const struct ch7006_mode ch7006_modes[] = {
  133. MODE(21000, 512, 384, 840, 500, N, N, 181.797557582, 5_4, 0x6, PAL_LIKE),
  134. MODE(26250, 512, 384, 840, 625, N, N, 145.438046066, 1_1, 0x1, PAL_LIKE),
  135. MODE(20140, 512, 384, 800, 420, N, N, 213.257083791, 5_4, 0x4, NTSC_LIKE),
  136. MODE(24671, 512, 384, 784, 525, N, N, 174.0874153, 1_1, 0x3, NTSC_LIKE),
  137. MODE(28125, 720, 400, 1125, 500, N, N, 135.742176298, 5_4, 0x6, PAL_LIKE),
  138. MODE(34875, 720, 400, 1116, 625, N, N, 109.469496898, 1_1, 0x1, PAL_LIKE),
  139. MODE(23790, 720, 400, 945, 420, N, N, 160.475642016, 5_4, 0x4, NTSC_LIKE),
  140. MODE(29455, 720, 400, 936, 525, N, N, 129.614941843, 1_1, 0x3, NTSC_LIKE),
  141. MODE(25000, 640, 400, 1000, 500, N, N, 152.709948279, 5_4, 0x6, PAL_LIKE),
  142. MODE(31500, 640, 400, 1008, 625, N, N, 121.198371646, 1_1, 0x1, PAL_LIKE),
  143. MODE(21147, 640, 400, 840, 420, N, N, 180.535097338, 5_4, 0x4, NTSC_LIKE),
  144. MODE(26434, 640, 400, 840, 525, N, N, 144.42807787, 1_1, 0x2, NTSC_LIKE),
  145. MODE(30210, 640, 400, 840, 600, N, N, 126.374568276, 7_8, 0x1, NTSC_LIKE),
  146. MODE(21000, 640, 480, 840, 500, N, N, 181.797557582, 5_4, 0x4, PAL_LIKE),
  147. MODE(26250, 640, 480, 840, 625, N, N, 145.438046066, 1_1, 0x2, PAL_LIKE),
  148. MODE(31500, 640, 480, 840, 750, N, N, 121.198371646, 5_6, 0x1, PAL_LIKE),
  149. MODE(24671, 640, 480, 784, 525, N, N, 174.0874153, 1_1, 0x4, NTSC_LIKE),
  150. MODE(28196, 640, 480, 784, 600, N, N, 152.326488422, 7_8, 0x2, NTSC_LIKE),
  151. MODE(30210, 640, 480, 800, 630, N, N, 142.171389101, 5_6, 0x1, NTSC_LIKE),
  152. __MODE(29500, 720, 576, 944, 625, P, P, 145.592111636, 1_1, 0x7, PAL_LIKE, 800, 600),
  153. MODE(36000, 800, 600, 960, 750, P, P, 119.304647022, 5_6, 0x6, PAL_LIKE),
  154. MODE(39000, 800, 600, 936, 836, P, P, 110.127366499, 3_4, 0x1, PAL_LIKE),
  155. MODE(39273, 800, 600, 1040, 630, P, P, 145.816809399, 5_6, 0x4, NTSC_LIKE),
  156. MODE(43636, 800, 600, 1040, 700, P, P, 131.235128487, 3_4, 0x2, NTSC_LIKE),
  157. MODE(47832, 800, 600, 1064, 750, P, P, 119.723275165, 7_10, 0x1, NTSC_LIKE),
  158. {}
  159. };
  160. const struct ch7006_mode *ch7006_lookup_mode(struct drm_encoder *encoder,
  161. const struct drm_display_mode *drm_mode)
  162. {
  163. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  164. const struct ch7006_mode *mode;
  165. for (mode = ch7006_modes; mode->mode.clock; mode++) {
  166. if (~mode->valid_norms & 1<<priv->norm)
  167. continue;
  168. if (mode->mode.hdisplay != drm_mode->hdisplay ||
  169. mode->mode.vdisplay != drm_mode->vdisplay ||
  170. mode->mode.vtotal != drm_mode->vtotal ||
  171. mode->mode.htotal != drm_mode->htotal ||
  172. mode->mode.clock != drm_mode->clock)
  173. continue;
  174. return mode;
  175. }
  176. return NULL;
  177. }
  178. /* Some common HW state calculation code */
  179. void ch7006_setup_levels(struct drm_encoder *encoder)
  180. {
  181. struct i2c_client *client = drm_i2c_encoder_get_client(encoder);
  182. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  183. uint8_t *regs = priv->state.regs;
  184. const struct ch7006_tv_norm_info *norm = &ch7006_tv_norms[priv->norm];
  185. int gain;
  186. int black_level;
  187. /* Set DAC_GAIN if the voltage drop between white and black is
  188. * high enough. */
  189. if (norm->black_level < 339*fixed1/1000) {
  190. gain = 76;
  191. regs[CH7006_INPUT_FORMAT] |= CH7006_INPUT_FORMAT_DAC_GAIN;
  192. } else {
  193. gain = 71;
  194. regs[CH7006_INPUT_FORMAT] &= ~CH7006_INPUT_FORMAT_DAC_GAIN;
  195. }
  196. black_level = round_fixed(norm->black_level*26625)/gain;
  197. /* Correct it with the specified brightness. */
  198. black_level = interpolate(90, black_level, 208, priv->brightness);
  199. regs[CH7006_BLACK_LEVEL] = bitf(CH7006_BLACK_LEVEL_0, black_level);
  200. ch7006_dbg(client, "black level: %d\n", black_level);
  201. }
  202. void ch7006_setup_subcarrier(struct drm_encoder *encoder)
  203. {
  204. struct i2c_client *client = drm_i2c_encoder_get_client(encoder);
  205. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  206. struct ch7006_state *state = &priv->state;
  207. const struct ch7006_tv_norm_info *norm = &ch7006_tv_norms[priv->norm];
  208. const struct ch7006_mode *mode = priv->mode;
  209. uint32_t subc_inc;
  210. subc_inc = round_fixed((mode->subc_coeff >> 8)
  211. * (norm->subc_freq >> 24));
  212. setbitf(state, CH7006_SUBC_INC0, 28, subc_inc);
  213. setbitf(state, CH7006_SUBC_INC1, 24, subc_inc);
  214. setbitf(state, CH7006_SUBC_INC2, 20, subc_inc);
  215. setbitf(state, CH7006_SUBC_INC3, 16, subc_inc);
  216. setbitf(state, CH7006_SUBC_INC4, 12, subc_inc);
  217. setbitf(state, CH7006_SUBC_INC5, 8, subc_inc);
  218. setbitf(state, CH7006_SUBC_INC6, 4, subc_inc);
  219. setbitf(state, CH7006_SUBC_INC7, 0, subc_inc);
  220. ch7006_dbg(client, "subcarrier inc: %u\n", subc_inc);
  221. }
  222. void ch7006_setup_pll(struct drm_encoder *encoder)
  223. {
  224. struct i2c_client *client = drm_i2c_encoder_get_client(encoder);
  225. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  226. uint8_t *regs = priv->state.regs;
  227. const struct ch7006_mode *mode = priv->mode;
  228. int n, best_n = 0;
  229. int m, best_m = 0;
  230. int freq, best_freq = 0;
  231. for (n = 0; n < CH7006_MAXN; n++) {
  232. for (m = 0; m < CH7006_MAXM; m++) {
  233. freq = CH7006_FREQ0*(n+2)/(m+2);
  234. if (abs(freq - mode->mode.clock) <
  235. abs(best_freq - mode->mode.clock)) {
  236. best_freq = freq;
  237. best_n = n;
  238. best_m = m;
  239. }
  240. }
  241. }
  242. regs[CH7006_PLLOV] = bitf(CH7006_PLLOV_N_8, best_n) |
  243. bitf(CH7006_PLLOV_M_8, best_m);
  244. regs[CH7006_PLLM] = bitf(CH7006_PLLM_0, best_m);
  245. regs[CH7006_PLLN] = bitf(CH7006_PLLN_0, best_n);
  246. if (best_n < 108)
  247. regs[CH7006_PLL_CONTROL] |= CH7006_PLL_CONTROL_CAPACITOR;
  248. else
  249. regs[CH7006_PLL_CONTROL] &= ~CH7006_PLL_CONTROL_CAPACITOR;
  250. ch7006_dbg(client, "n=%d m=%d f=%d c=%d\n",
  251. best_n, best_m, best_freq, best_n < 108);
  252. }
  253. void ch7006_setup_power_state(struct drm_encoder *encoder)
  254. {
  255. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  256. uint8_t *power = &priv->state.regs[CH7006_POWER];
  257. int subconnector;
  258. subconnector = priv->select_subconnector ? priv->select_subconnector :
  259. priv->subconnector;
  260. *power = CH7006_POWER_RESET;
  261. if (priv->last_dpms == DRM_MODE_DPMS_ON) {
  262. switch (subconnector) {
  263. case DRM_MODE_SUBCONNECTOR_SVIDEO:
  264. *power |= bitfs(CH7006_POWER_LEVEL, CVBS_OFF);
  265. break;
  266. case DRM_MODE_SUBCONNECTOR_Composite:
  267. *power |= bitfs(CH7006_POWER_LEVEL, SVIDEO_OFF);
  268. break;
  269. case DRM_MODE_SUBCONNECTOR_SCART:
  270. *power |= bitfs(CH7006_POWER_LEVEL, NORMAL) |
  271. CH7006_POWER_SCART;
  272. break;
  273. }
  274. } else {
  275. if (priv->chip_version >= 0x20)
  276. *power |= bitfs(CH7006_POWER_LEVEL, FULL_POWER_OFF);
  277. else
  278. *power |= bitfs(CH7006_POWER_LEVEL, POWER_OFF);
  279. }
  280. }
  281. void ch7006_setup_properties(struct drm_encoder *encoder)
  282. {
  283. struct i2c_client *client = drm_i2c_encoder_get_client(encoder);
  284. struct ch7006_priv *priv = to_ch7006_priv(encoder);
  285. struct ch7006_state *state = &priv->state;
  286. const struct ch7006_tv_norm_info *norm = &ch7006_tv_norms[priv->norm];
  287. const struct ch7006_mode *ch_mode = priv->mode;
  288. const struct drm_display_mode *mode = &ch_mode->mode;
  289. uint8_t *regs = state->regs;
  290. int flicker, contrast, hpos, vpos;
  291. uint64_t scale, aspect;
  292. flicker = interpolate(0, 2, 3, priv->flicker);
  293. regs[CH7006_FFILTER] = bitf(CH7006_FFILTER_TEXT, flicker) |
  294. bitf(CH7006_FFILTER_LUMA, flicker) |
  295. bitf(CH7006_FFILTER_CHROMA, 1);
  296. contrast = interpolate(0, 5, 7, priv->contrast);
  297. regs[CH7006_CONTRAST] = bitf(CH7006_CONTRAST_0, contrast);
  298. scale = norm->vtotal*fixed1;
  299. do_div(scale, mode->vtotal);
  300. aspect = ch_mode->enc_hdisp*fixed1;
  301. do_div(aspect, ch_mode->enc_vdisp);
  302. hpos = round_fixed((norm->hvirtual * aspect - mode->hdisplay * scale)
  303. * priv->hmargin * mode->vtotal) / norm->vtotal / 100 / 4;
  304. setbitf(state, CH7006_POV, HPOS_8, hpos);
  305. setbitf(state, CH7006_HPOS, 0, hpos);
  306. vpos = max(0, norm->vdisplay - round_fixed(mode->vdisplay*scale)
  307. + norm->voffset) * priv->vmargin / 100 / 2;
  308. setbitf(state, CH7006_POV, VPOS_8, vpos);
  309. setbitf(state, CH7006_VPOS, 0, vpos);
  310. ch7006_dbg(client, "hpos: %d, vpos: %d\n", hpos, vpos);
  311. }
  312. /* HW access functions */
  313. void ch7006_write(struct i2c_client *client, uint8_t addr, uint8_t val)
  314. {
  315. uint8_t buf[] = {addr, val};
  316. int ret;
  317. ret = i2c_master_send(client, buf, ARRAY_SIZE(buf));
  318. if (ret < 0)
  319. ch7006_err(client, "Error %d writing to subaddress 0x%x\n",
  320. ret, addr);
  321. }
  322. uint8_t ch7006_read(struct i2c_client *client, uint8_t addr)
  323. {
  324. uint8_t val;
  325. int ret;
  326. ret = i2c_master_send(client, &addr, sizeof(addr));
  327. if (ret < 0)
  328. goto fail;
  329. ret = i2c_master_recv(client, &val, sizeof(val));
  330. if (ret < 0)
  331. goto fail;
  332. return val;
  333. fail:
  334. ch7006_err(client, "Error %d reading from subaddress 0x%x\n",
  335. ret, addr);
  336. return 0;
  337. }
  338. void ch7006_state_load(struct i2c_client *client,
  339. struct ch7006_state *state)
  340. {
  341. ch7006_load_reg(client, state, CH7006_POWER);
  342. ch7006_load_reg(client, state, CH7006_DISPMODE);
  343. ch7006_load_reg(client, state, CH7006_FFILTER);
  344. ch7006_load_reg(client, state, CH7006_BWIDTH);
  345. ch7006_load_reg(client, state, CH7006_INPUT_FORMAT);
  346. ch7006_load_reg(client, state, CH7006_CLKMODE);
  347. ch7006_load_reg(client, state, CH7006_START_ACTIVE);
  348. ch7006_load_reg(client, state, CH7006_POV);
  349. ch7006_load_reg(client, state, CH7006_BLACK_LEVEL);
  350. ch7006_load_reg(client, state, CH7006_HPOS);
  351. ch7006_load_reg(client, state, CH7006_VPOS);
  352. ch7006_load_reg(client, state, CH7006_INPUT_SYNC);
  353. ch7006_load_reg(client, state, CH7006_DETECT);
  354. ch7006_load_reg(client, state, CH7006_CONTRAST);
  355. ch7006_load_reg(client, state, CH7006_PLLOV);
  356. ch7006_load_reg(client, state, CH7006_PLLM);
  357. ch7006_load_reg(client, state, CH7006_PLLN);
  358. ch7006_load_reg(client, state, CH7006_BCLKOUT);
  359. ch7006_load_reg(client, state, CH7006_SUBC_INC0);
  360. ch7006_load_reg(client, state, CH7006_SUBC_INC1);
  361. ch7006_load_reg(client, state, CH7006_SUBC_INC2);
  362. ch7006_load_reg(client, state, CH7006_SUBC_INC3);
  363. ch7006_load_reg(client, state, CH7006_SUBC_INC4);
  364. ch7006_load_reg(client, state, CH7006_SUBC_INC5);
  365. ch7006_load_reg(client, state, CH7006_SUBC_INC6);
  366. ch7006_load_reg(client, state, CH7006_SUBC_INC7);
  367. ch7006_load_reg(client, state, CH7006_PLL_CONTROL);
  368. ch7006_load_reg(client, state, CH7006_CALC_SUBC_INC0);
  369. }
  370. void ch7006_state_save(struct i2c_client *client,
  371. struct ch7006_state *state)
  372. {
  373. ch7006_save_reg(client, state, CH7006_POWER);
  374. ch7006_save_reg(client, state, CH7006_DISPMODE);
  375. ch7006_save_reg(client, state, CH7006_FFILTER);
  376. ch7006_save_reg(client, state, CH7006_BWIDTH);
  377. ch7006_save_reg(client, state, CH7006_INPUT_FORMAT);
  378. ch7006_save_reg(client, state, CH7006_CLKMODE);
  379. ch7006_save_reg(client, state, CH7006_START_ACTIVE);
  380. ch7006_save_reg(client, state, CH7006_POV);
  381. ch7006_save_reg(client, state, CH7006_BLACK_LEVEL);
  382. ch7006_save_reg(client, state, CH7006_HPOS);
  383. ch7006_save_reg(client, state, CH7006_VPOS);
  384. ch7006_save_reg(client, state, CH7006_INPUT_SYNC);
  385. ch7006_save_reg(client, state, CH7006_DETECT);
  386. ch7006_save_reg(client, state, CH7006_CONTRAST);
  387. ch7006_save_reg(client, state, CH7006_PLLOV);
  388. ch7006_save_reg(client, state, CH7006_PLLM);
  389. ch7006_save_reg(client, state, CH7006_PLLN);
  390. ch7006_save_reg(client, state, CH7006_BCLKOUT);
  391. ch7006_save_reg(client, state, CH7006_SUBC_INC0);
  392. ch7006_save_reg(client, state, CH7006_SUBC_INC1);
  393. ch7006_save_reg(client, state, CH7006_SUBC_INC2);
  394. ch7006_save_reg(client, state, CH7006_SUBC_INC3);
  395. ch7006_save_reg(client, state, CH7006_SUBC_INC4);
  396. ch7006_save_reg(client, state, CH7006_SUBC_INC5);
  397. ch7006_save_reg(client, state, CH7006_SUBC_INC6);
  398. ch7006_save_reg(client, state, CH7006_SUBC_INC7);
  399. ch7006_save_reg(client, state, CH7006_PLL_CONTROL);
  400. ch7006_save_reg(client, state, CH7006_CALC_SUBC_INC0);
  401. state->regs[CH7006_FFILTER] = (state->regs[CH7006_FFILTER] & 0xf0) |
  402. (state->regs[CH7006_FFILTER] & 0x0c) >> 2 |
  403. (state->regs[CH7006_FFILTER] & 0x03) << 2;
  404. }