cx18-driver.h 23 KB

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  1. /*
  2. * cx18 driver internal defines and structures
  3. *
  4. * Derived from ivtv-driver.h
  5. *
  6. * Copyright (C) 2007 Hans Verkuil <hverkuil@xs4all.nl>
  7. * Copyright (C) 2008 Andy Walls <awalls@radix.net>
  8. *
  9. * This program is free software; you can redistribute it and/or modify
  10. * it under the terms of the GNU General Public License as published by
  11. * the Free Software Foundation; either version 2 of the License, or
  12. * (at your option) any later version.
  13. *
  14. * This program is distributed in the hope that it will be useful,
  15. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  17. * GNU General Public License for more details.
  18. *
  19. * You should have received a copy of the GNU General Public License
  20. * along with this program; if not, write to the Free Software
  21. * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
  22. * 02111-1307 USA
  23. */
  24. #ifndef CX18_DRIVER_H
  25. #define CX18_DRIVER_H
  26. #include <linux/version.h>
  27. #include <linux/module.h>
  28. #include <linux/moduleparam.h>
  29. #include <linux/init.h>
  30. #include <linux/delay.h>
  31. #include <linux/sched.h>
  32. #include <linux/fs.h>
  33. #include <linux/pci.h>
  34. #include <linux/interrupt.h>
  35. #include <linux/spinlock.h>
  36. #include <linux/i2c.h>
  37. #include <linux/i2c-algo-bit.h>
  38. #include <linux/list.h>
  39. #include <linux/unistd.h>
  40. #include <linux/pagemap.h>
  41. #include <linux/workqueue.h>
  42. #include <linux/mutex.h>
  43. #include <asm/byteorder.h>
  44. #include <linux/dvb/video.h>
  45. #include <linux/dvb/audio.h>
  46. #include <media/v4l2-common.h>
  47. #include <media/v4l2-ioctl.h>
  48. #include <media/v4l2-device.h>
  49. #include <media/tuner.h>
  50. #include "cx18-mailbox.h"
  51. #include "cx18-av-core.h"
  52. #include "cx23418.h"
  53. /* DVB */
  54. #include "demux.h"
  55. #include "dmxdev.h"
  56. #include "dvb_demux.h"
  57. #include "dvb_frontend.h"
  58. #include "dvb_net.h"
  59. #include "dvbdev.h"
  60. #ifndef CONFIG_PCI
  61. # error "This driver requires kernel PCI support."
  62. #endif
  63. #define CX18_MEM_OFFSET 0x00000000
  64. #define CX18_MEM_SIZE 0x04000000
  65. #define CX18_REG_OFFSET 0x02000000
  66. /* Maximum cx18 driver instances. */
  67. #define CX18_MAX_CARDS 32
  68. /* Supported cards */
  69. #define CX18_CARD_HVR_1600_ESMT 0 /* Hauppauge HVR 1600 (ESMT memory) */
  70. #define CX18_CARD_HVR_1600_SAMSUNG 1 /* Hauppauge HVR 1600 (Samsung memory) */
  71. #define CX18_CARD_COMPRO_H900 2 /* Compro VideoMate H900 */
  72. #define CX18_CARD_YUAN_MPC718 3 /* Yuan MPC718 */
  73. #define CX18_CARD_CNXT_RAPTOR_PAL 4 /* Conexant Raptor PAL */
  74. #define CX18_CARD_TOSHIBA_QOSMIO_DVBT 5 /* Toshiba Qosmio Interal DVB-T/Analog*/
  75. #define CX18_CARD_LEADTEK_PVR2100 6 /* Leadtek WinFast PVR2100 */
  76. #define CX18_CARD_LEADTEK_DVR3100H 7 /* Leadtek WinFast DVR3100 H */
  77. #define CX18_CARD_LAST 7
  78. #define CX18_ENC_STREAM_TYPE_MPG 0
  79. #define CX18_ENC_STREAM_TYPE_TS 1
  80. #define CX18_ENC_STREAM_TYPE_YUV 2
  81. #define CX18_ENC_STREAM_TYPE_VBI 3
  82. #define CX18_ENC_STREAM_TYPE_PCM 4
  83. #define CX18_ENC_STREAM_TYPE_IDX 5
  84. #define CX18_ENC_STREAM_TYPE_RAD 6
  85. #define CX18_MAX_STREAMS 7
  86. /* system vendor and device IDs */
  87. #define PCI_VENDOR_ID_CX 0x14f1
  88. #define PCI_DEVICE_ID_CX23418 0x5b7a
  89. /* subsystem vendor ID */
  90. #define CX18_PCI_ID_HAUPPAUGE 0x0070
  91. #define CX18_PCI_ID_COMPRO 0x185b
  92. #define CX18_PCI_ID_YUAN 0x12ab
  93. #define CX18_PCI_ID_CONEXANT 0x14f1
  94. #define CX18_PCI_ID_TOSHIBA 0x1179
  95. #define CX18_PCI_ID_LEADTEK 0x107D
  96. /* ======================================================================== */
  97. /* ========================== START USER SETTABLE DMA VARIABLES =========== */
  98. /* ======================================================================== */
  99. /* DMA Buffers, Default size in MB allocated */
  100. #define CX18_DEFAULT_ENC_TS_BUFFERS 1
  101. #define CX18_DEFAULT_ENC_MPG_BUFFERS 2
  102. #define CX18_DEFAULT_ENC_IDX_BUFFERS 1
  103. #define CX18_DEFAULT_ENC_YUV_BUFFERS 2
  104. #define CX18_DEFAULT_ENC_VBI_BUFFERS 1
  105. #define CX18_DEFAULT_ENC_PCM_BUFFERS 1
  106. /* Maximum firmware DMA buffers per stream */
  107. #define CX18_MAX_FW_MDLS_PER_STREAM 63
  108. /* DMA buffer, default size in kB allocated */
  109. #define CX18_DEFAULT_ENC_TS_BUFSIZE 32
  110. #define CX18_DEFAULT_ENC_MPG_BUFSIZE 32
  111. #define CX18_DEFAULT_ENC_IDX_BUFSIZE 32
  112. #define CX18_DEFAULT_ENC_YUV_BUFSIZE 128
  113. /* Default VBI bufsize based on standards supported by card tuner for now */
  114. #define CX18_DEFAULT_ENC_PCM_BUFSIZE 4
  115. /* i2c stuff */
  116. #define I2C_CLIENTS_MAX 16
  117. /* debugging */
  118. /* Flag to turn on high volume debugging */
  119. #define CX18_DBGFLG_WARN (1 << 0)
  120. #define CX18_DBGFLG_INFO (1 << 1)
  121. #define CX18_DBGFLG_API (1 << 2)
  122. #define CX18_DBGFLG_DMA (1 << 3)
  123. #define CX18_DBGFLG_IOCTL (1 << 4)
  124. #define CX18_DBGFLG_FILE (1 << 5)
  125. #define CX18_DBGFLG_I2C (1 << 6)
  126. #define CX18_DBGFLG_IRQ (1 << 7)
  127. /* Flag to turn on high volume debugging */
  128. #define CX18_DBGFLG_HIGHVOL (1 << 8)
  129. /* NOTE: extra space before comma in 'fmt , ## args' is required for
  130. gcc-2.95, otherwise it won't compile. */
  131. #define CX18_DEBUG(x, type, fmt, args...) \
  132. do { \
  133. if ((x) & cx18_debug) \
  134. v4l2_info(&cx->v4l2_dev, " " type ": " fmt , ## args); \
  135. } while (0)
  136. #define CX18_DEBUG_WARN(fmt, args...) CX18_DEBUG(CX18_DBGFLG_WARN, "warning", fmt , ## args)
  137. #define CX18_DEBUG_INFO(fmt, args...) CX18_DEBUG(CX18_DBGFLG_INFO, "info", fmt , ## args)
  138. #define CX18_DEBUG_API(fmt, args...) CX18_DEBUG(CX18_DBGFLG_API, "api", fmt , ## args)
  139. #define CX18_DEBUG_DMA(fmt, args...) CX18_DEBUG(CX18_DBGFLG_DMA, "dma", fmt , ## args)
  140. #define CX18_DEBUG_IOCTL(fmt, args...) CX18_DEBUG(CX18_DBGFLG_IOCTL, "ioctl", fmt , ## args)
  141. #define CX18_DEBUG_FILE(fmt, args...) CX18_DEBUG(CX18_DBGFLG_FILE, "file", fmt , ## args)
  142. #define CX18_DEBUG_I2C(fmt, args...) CX18_DEBUG(CX18_DBGFLG_I2C, "i2c", fmt , ## args)
  143. #define CX18_DEBUG_IRQ(fmt, args...) CX18_DEBUG(CX18_DBGFLG_IRQ, "irq", fmt , ## args)
  144. #define CX18_DEBUG_HIGH_VOL(x, type, fmt, args...) \
  145. do { \
  146. if (((x) & cx18_debug) && (cx18_debug & CX18_DBGFLG_HIGHVOL)) \
  147. v4l2_info(&cx->v4l2_dev, " " type ": " fmt , ## args); \
  148. } while (0)
  149. #define CX18_DEBUG_HI_WARN(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_WARN, "warning", fmt , ## args)
  150. #define CX18_DEBUG_HI_INFO(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_INFO, "info", fmt , ## args)
  151. #define CX18_DEBUG_HI_API(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_API, "api", fmt , ## args)
  152. #define CX18_DEBUG_HI_DMA(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_DMA, "dma", fmt , ## args)
  153. #define CX18_DEBUG_HI_IOCTL(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_IOCTL, "ioctl", fmt , ## args)
  154. #define CX18_DEBUG_HI_FILE(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_FILE, "file", fmt , ## args)
  155. #define CX18_DEBUG_HI_I2C(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_I2C, "i2c", fmt , ## args)
  156. #define CX18_DEBUG_HI_IRQ(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_IRQ, "irq", fmt , ## args)
  157. /* Standard kernel messages */
  158. #define CX18_ERR(fmt, args...) v4l2_err(&cx->v4l2_dev, fmt , ## args)
  159. #define CX18_WARN(fmt, args...) v4l2_warn(&cx->v4l2_dev, fmt , ## args)
  160. #define CX18_INFO(fmt, args...) v4l2_info(&cx->v4l2_dev, fmt , ## args)
  161. /* Messages for internal subdevs to use */
  162. #define CX18_DEBUG_DEV(x, dev, type, fmt, args...) \
  163. do { \
  164. if ((x) & cx18_debug) \
  165. v4l2_info(dev, " " type ": " fmt , ## args); \
  166. } while (0)
  167. #define CX18_DEBUG_WARN_DEV(dev, fmt, args...) \
  168. CX18_DEBUG_DEV(CX18_DBGFLG_WARN, dev, "warning", fmt , ## args)
  169. #define CX18_DEBUG_INFO_DEV(dev, fmt, args...) \
  170. CX18_DEBUG_DEV(CX18_DBGFLG_INFO, dev, "info", fmt , ## args)
  171. #define CX18_DEBUG_API_DEV(dev, fmt, args...) \
  172. CX18_DEBUG_DEV(CX18_DBGFLG_API, dev, "api", fmt , ## args)
  173. #define CX18_DEBUG_DMA_DEV(dev, fmt, args...) \
  174. CX18_DEBUG_DEV(CX18_DBGFLG_DMA, dev, "dma", fmt , ## args)
  175. #define CX18_DEBUG_IOCTL_DEV(dev, fmt, args...) \
  176. CX18_DEBUG_DEV(CX18_DBGFLG_IOCTL, dev, "ioctl", fmt , ## args)
  177. #define CX18_DEBUG_FILE_DEV(dev, fmt, args...) \
  178. CX18_DEBUG_DEV(CX18_DBGFLG_FILE, dev, "file", fmt , ## args)
  179. #define CX18_DEBUG_I2C_DEV(dev, fmt, args...) \
  180. CX18_DEBUG_DEV(CX18_DBGFLG_I2C, dev, "i2c", fmt , ## args)
  181. #define CX18_DEBUG_IRQ_DEV(dev, fmt, args...) \
  182. CX18_DEBUG_DEV(CX18_DBGFLG_IRQ, dev, "irq", fmt , ## args)
  183. #define CX18_DEBUG_HIGH_VOL_DEV(x, dev, type, fmt, args...) \
  184. do { \
  185. if (((x) & cx18_debug) && (cx18_debug & CX18_DBGFLG_HIGHVOL)) \
  186. v4l2_info(dev, " " type ": " fmt , ## args); \
  187. } while (0)
  188. #define CX18_DEBUG_HI_WARN_DEV(dev, fmt, args...) \
  189. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_WARN, dev, "warning", fmt , ## args)
  190. #define CX18_DEBUG_HI_INFO_DEV(dev, fmt, args...) \
  191. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_INFO, dev, "info", fmt , ## args)
  192. #define CX18_DEBUG_HI_API_DEV(dev, fmt, args...) \
  193. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_API, dev, "api", fmt , ## args)
  194. #define CX18_DEBUG_HI_DMA_DEV(dev, fmt, args...) \
  195. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_DMA, dev, "dma", fmt , ## args)
  196. #define CX18_DEBUG_HI_IOCTL_DEV(dev, fmt, args...) \
  197. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_IOCTL, dev, "ioctl", fmt , ## args)
  198. #define CX18_DEBUG_HI_FILE_DEV(dev, fmt, args...) \
  199. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_FILE, dev, "file", fmt , ## args)
  200. #define CX18_DEBUG_HI_I2C_DEV(dev, fmt, args...) \
  201. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_I2C, dev, "i2c", fmt , ## args)
  202. #define CX18_DEBUG_HI_IRQ_DEV(dev, fmt, args...) \
  203. CX18_DEBUG_HIGH_VOL_DEV(CX18_DBGFLG_IRQ, dev, "irq", fmt , ## args)
  204. #define CX18_ERR_DEV(dev, fmt, args...) v4l2_err(dev, fmt , ## args)
  205. #define CX18_WARN_DEV(dev, fmt, args...) v4l2_warn(dev, fmt , ## args)
  206. #define CX18_INFO_DEV(dev, fmt, args...) v4l2_info(dev, fmt , ## args)
  207. /* Values for CX18_API_DEC_PLAYBACK_SPEED mpeg_frame_type_mask parameter: */
  208. #define MPEG_FRAME_TYPE_IFRAME 1
  209. #define MPEG_FRAME_TYPE_IFRAME_PFRAME 3
  210. #define MPEG_FRAME_TYPE_ALL 7
  211. #define CX18_MAX_PGM_INDEX (400)
  212. extern int cx18_debug;
  213. struct cx18_options {
  214. int megabytes[CX18_MAX_STREAMS]; /* Size in megabytes of each stream */
  215. int cardtype; /* force card type on load */
  216. int tuner; /* set tuner on load */
  217. int radio; /* enable/disable radio */
  218. };
  219. /* per-buffer bit flags */
  220. #define CX18_F_B_NEED_BUF_SWAP 0 /* this buffer should be byte swapped */
  221. /* per-stream, s_flags */
  222. #define CX18_F_S_CLAIMED 3 /* this stream is claimed */
  223. #define CX18_F_S_STREAMING 4 /* the fw is decoding/encoding this stream */
  224. #define CX18_F_S_INTERNAL_USE 5 /* this stream is used internally (sliced VBI processing) */
  225. #define CX18_F_S_STREAMOFF 7 /* signal end of stream EOS */
  226. #define CX18_F_S_APPL_IO 8 /* this stream is used read/written by an application */
  227. #define CX18_F_S_STOPPING 9 /* telling the fw to stop capturing */
  228. /* per-cx18, i_flags */
  229. #define CX18_F_I_LOADED_FW 0 /* Loaded firmware 1st time */
  230. #define CX18_F_I_EOS 4 /* End of encoder stream */
  231. #define CX18_F_I_RADIO_USER 5 /* radio tuner is selected */
  232. #define CX18_F_I_ENC_PAUSED 13 /* the encoder is paused */
  233. #define CX18_F_I_INITED 21 /* set after first open */
  234. #define CX18_F_I_FAILED 22 /* set if first open failed */
  235. /* These are the VBI types as they appear in the embedded VBI private packets. */
  236. #define CX18_SLICED_TYPE_TELETEXT_B (1)
  237. #define CX18_SLICED_TYPE_CAPTION_525 (4)
  238. #define CX18_SLICED_TYPE_WSS_625 (5)
  239. #define CX18_SLICED_TYPE_VPS (7)
  240. struct cx18_buffer {
  241. struct list_head list;
  242. dma_addr_t dma_handle;
  243. u32 id;
  244. unsigned long b_flags;
  245. unsigned skipped;
  246. char *buf;
  247. u32 bytesused;
  248. u32 readpos;
  249. };
  250. struct cx18_queue {
  251. struct list_head list;
  252. atomic_t buffers;
  253. u32 bytesused;
  254. spinlock_t lock;
  255. };
  256. struct cx18_dvb {
  257. struct dmx_frontend hw_frontend;
  258. struct dmx_frontend mem_frontend;
  259. struct dmxdev dmxdev;
  260. struct dvb_adapter dvb_adapter;
  261. struct dvb_demux demux;
  262. struct dvb_frontend *fe;
  263. struct dvb_net dvbnet;
  264. int enabled;
  265. int feeding;
  266. struct mutex feedlock;
  267. };
  268. struct cx18; /* forward reference */
  269. struct cx18_scb; /* forward reference */
  270. #define CX18_MAX_MDL_ACKS 2
  271. #define CX18_MAX_IN_WORK_ORDERS (CX18_MAX_FW_MDLS_PER_STREAM + 7)
  272. /* CPU_DE_RELEASE_MDL can burst CX18_MAX_FW_MDLS_PER_STREAM orders in a group */
  273. #define CX18_F_EWO_MB_STALE_UPON_RECEIPT 0x1
  274. #define CX18_F_EWO_MB_STALE_WHILE_PROC 0x2
  275. #define CX18_F_EWO_MB_STALE \
  276. (CX18_F_EWO_MB_STALE_UPON_RECEIPT | CX18_F_EWO_MB_STALE_WHILE_PROC)
  277. struct cx18_in_work_order {
  278. struct work_struct work;
  279. atomic_t pending;
  280. struct cx18 *cx;
  281. unsigned long flags;
  282. int rpu;
  283. struct cx18_mailbox mb;
  284. struct cx18_mdl_ack mdl_ack[CX18_MAX_MDL_ACKS];
  285. char *str;
  286. };
  287. #define CX18_INVALID_TASK_HANDLE 0xffffffff
  288. struct cx18_stream {
  289. /* These first four fields are always set, even if the stream
  290. is not actually created. */
  291. struct video_device *video_dev; /* NULL when stream not created */
  292. struct cx18 *cx; /* for ease of use */
  293. const char *name; /* name of the stream */
  294. int type; /* stream type */
  295. u32 handle; /* task handle */
  296. unsigned mdl_offset;
  297. u32 id;
  298. unsigned long s_flags; /* status flags, see above */
  299. int dma; /* can be PCI_DMA_TODEVICE,
  300. PCI_DMA_FROMDEVICE or
  301. PCI_DMA_NONE */
  302. wait_queue_head_t waitq;
  303. /* Buffer Stats */
  304. u32 buffers;
  305. u32 buf_size;
  306. /* Buffer Queues */
  307. struct cx18_queue q_free; /* free buffers */
  308. struct cx18_queue q_busy; /* busy buffers - in use by firmware */
  309. struct cx18_queue q_full; /* full buffers - data for user apps */
  310. struct work_struct out_work_order;
  311. /* DVB / Digital Transport */
  312. struct cx18_dvb dvb;
  313. };
  314. struct cx18_open_id {
  315. u32 open_id;
  316. int type;
  317. enum v4l2_priority prio;
  318. struct cx18 *cx;
  319. };
  320. /* forward declaration of struct defined in cx18-cards.h */
  321. struct cx18_card;
  322. /*
  323. * A note about "sliced" VBI data as implemented in this driver:
  324. *
  325. * Currently we collect the sliced VBI in the form of Ancillary Data
  326. * packets, inserted by the AV core decoder/digitizer/slicer in the
  327. * horizontal blanking region of the VBI lines, in "raw" mode as far as
  328. * the Encoder is concerned. We don't ever tell the Encoder itself
  329. * to provide sliced VBI. (AV Core: sliced mode - Encoder: raw mode)
  330. *
  331. * We then process the ancillary data ourselves to send the sliced data
  332. * to the user application directly or build up MPEG-2 private stream 1
  333. * packets to splice into (only!) MPEG-2 PS streams for the user app.
  334. *
  335. * (That's how ivtv essentially does it.)
  336. *
  337. * The Encoder should be able to extract certain sliced VBI data for
  338. * us and provide it in a separate stream or splice it into any type of
  339. * MPEG PS or TS stream, but this isn't implemented yet.
  340. */
  341. /*
  342. * Number of "raw" VBI samples per horizontal line we tell the Encoder to
  343. * grab from the decoder/digitizer/slicer output for raw or sliced VBI.
  344. * It depends on the pixel clock and the horiz rate:
  345. *
  346. * (1/Fh)*(2*Fp) = Samples/line
  347. * = 4 bytes EAV + Anc data in hblank + 4 bytes SAV + active samples
  348. *
  349. * Sliced VBI data is sent as ancillary data during horizontal blanking
  350. * Raw VBI is sent as active video samples during vertcal blanking
  351. *
  352. * We use a BT.656 pxiel clock of 13.5 MHz and a BT.656 active line
  353. * length of 720 pixels @ 4:2:2 sampling. Thus...
  354. *
  355. * For systems that use a 15.734 kHz horizontal rate, such as
  356. * NTSC-M, PAL-M, PAL-60, and other 60 Hz/525 line systems, we have:
  357. *
  358. * (1/15.734 kHz) * 2 * 13.5 MHz = 1716 samples/line =
  359. * 4 bytes SAV + 268 bytes anc data + 4 bytes SAV + 1440 active samples
  360. *
  361. * For systems that use a 15.625 kHz horizontal rate, such as
  362. * PAL-B/G/H, PAL-I, SECAM-L and other 50 Hz/625 line systems, we have:
  363. *
  364. * (1/15.625 kHz) * 2 * 13.5 MHz = 1728 samples/line =
  365. * 4 bytes SAV + 280 bytes anc data + 4 bytes SAV + 1440 active samples
  366. */
  367. static const u32 vbi_active_samples = 1444; /* 4 byte SAV + 720 Y + 720 U/V */
  368. static const u32 vbi_hblank_samples_60Hz = 272; /* 4 byte EAV + 268 anc/fill */
  369. static const u32 vbi_hblank_samples_50Hz = 284; /* 4 byte EAV + 280 anc/fill */
  370. #define CX18_VBI_FRAMES 32
  371. struct vbi_info {
  372. /* Current state of v4l2 VBI settings for this device */
  373. struct v4l2_format in;
  374. struct v4l2_sliced_vbi_format *sliced_in; /* pointer to in.fmt.sliced */
  375. u32 count; /* Count of VBI data lines: 60 Hz: 12 or 50 Hz: 18 */
  376. u32 start[2]; /* First VBI data line per field: 10 & 273 or 6 & 318 */
  377. u32 frame; /* Count of VBI buffers/frames received from Encoder */
  378. /*
  379. * Vars for creation and insertion of MPEG Private Stream 1 packets
  380. * of sliced VBI data into an MPEG PS
  381. */
  382. /* Boolean: create and insert Private Stream 1 packets into the PS */
  383. int insert_mpeg;
  384. /*
  385. * Buffer for the maximum of 2 * 18 * packet_size sliced VBI lines.
  386. * Used in cx18-vbi.c only for collecting sliced data, and as a source
  387. * during conversion of sliced VBI data into MPEG Priv Stream 1 packets.
  388. * We don't need to save state here, but the array may have been a bit
  389. * too big (2304 bytes) to alloc from the stack.
  390. */
  391. struct v4l2_sliced_vbi_data sliced_data[36];
  392. /*
  393. * A ring buffer of driver-generated MPEG-2 PS
  394. * Program Pack/Private Stream 1 packets for sliced VBI data insertion
  395. * into the MPEG PS stream.
  396. *
  397. * In each sliced_mpeg_data[] buffer is:
  398. * 16 byte MPEG-2 PS Program Pack Header
  399. * 16 byte MPEG-2 Private Stream 1 PES Header
  400. * 4 byte magic number: "itv0" or "ITV0"
  401. * 4 byte first field line mask, if "itv0"
  402. * 4 byte second field line mask, if "itv0"
  403. * 36 lines, if "ITV0"; or <36 lines, if "itv0"; of sliced VBI data
  404. *
  405. * Each line in the payload is
  406. * 1 byte line header derived from the SDID (WSS, CC, VPS, etc.)
  407. * 42 bytes of line data
  408. *
  409. * That's a maximum 1552 bytes of payload in the Private Stream 1 packet
  410. * which is the payload size a PVR-350 (CX23415) MPEG decoder will
  411. * accept for VBI data. So, including the headers, it's a maximum 1584
  412. * bytes total.
  413. */
  414. #define CX18_SLICED_MPEG_DATA_MAXSZ 1584
  415. /* copy_vbi_buf() needs 8 temp bytes on the end for the worst case */
  416. #define CX18_SLICED_MPEG_DATA_BUFSZ (CX18_SLICED_MPEG_DATA_MAXSZ+8)
  417. u8 *sliced_mpeg_data[CX18_VBI_FRAMES];
  418. u32 sliced_mpeg_size[CX18_VBI_FRAMES];
  419. /* Count of Program Pack/Program Stream 1 packets inserted into PS */
  420. u32 inserted_frame;
  421. /*
  422. * A dummy driver stream transfer buffer with a copy of the next
  423. * sliced_mpeg_data[] buffer for output to userland apps.
  424. * Only used in cx18-fileops.c, but its state needs to persist at times.
  425. */
  426. struct cx18_buffer sliced_mpeg_buf;
  427. };
  428. /* Per cx23418, per I2C bus private algo callback data */
  429. struct cx18_i2c_algo_callback_data {
  430. struct cx18 *cx;
  431. int bus_index; /* 0 or 1 for the cx23418's 1st or 2nd I2C bus */
  432. };
  433. #define CX18_MAX_MMIO_WR_RETRIES 10
  434. /* Struct to hold info about cx18 cards */
  435. struct cx18 {
  436. int instance;
  437. struct pci_dev *pci_dev;
  438. struct v4l2_device v4l2_dev;
  439. struct v4l2_subdev *sd_av; /* A/V decoder/digitizer sub-device */
  440. struct v4l2_subdev *sd_extmux; /* External multiplexer sub-dev */
  441. const struct cx18_card *card; /* card information */
  442. const char *card_name; /* full name of the card */
  443. const struct cx18_card_tuner_i2c *card_i2c; /* i2c addresses to probe for tuner */
  444. u8 is_50hz;
  445. u8 is_60hz;
  446. u8 nof_inputs; /* number of video inputs */
  447. u8 nof_audio_inputs; /* number of audio inputs */
  448. u16 buffer_id; /* buffer ID counter */
  449. u32 v4l2_cap; /* V4L2 capabilities of card */
  450. u32 hw_flags; /* Hardware description of the board */
  451. unsigned mdl_offset;
  452. struct cx18_scb __iomem *scb; /* pointer to SCB */
  453. struct mutex epu2apu_mb_lock; /* protect driver to chip mailbox in SCB*/
  454. struct mutex epu2cpu_mb_lock; /* protect driver to chip mailbox in SCB*/
  455. struct cx18_av_state av_state;
  456. /* codec settings */
  457. struct cx2341x_mpeg_params params;
  458. u32 filter_mode;
  459. u32 temporal_strength;
  460. u32 spatial_strength;
  461. /* dualwatch */
  462. unsigned long dualwatch_jiffies;
  463. u32 dualwatch_stereo_mode;
  464. struct mutex serialize_lock; /* mutex used to serialize open/close/start/stop/ioctl operations */
  465. struct cx18_options options; /* User options */
  466. int stream_buffers[CX18_MAX_STREAMS]; /* # of buffers for each stream */
  467. int stream_buf_size[CX18_MAX_STREAMS]; /* Stream buffer size */
  468. struct cx18_stream streams[CX18_MAX_STREAMS]; /* Stream data */
  469. unsigned long i_flags; /* global cx18 flags */
  470. atomic_t ana_capturing; /* count number of active analog capture streams */
  471. atomic_t tot_capturing; /* total count number of active capture streams */
  472. int search_pack_header;
  473. int open_id; /* incremented each time an open occurs, used as
  474. unique ID. Starts at 1, so 0 can be used as
  475. uninitialized value in the stream->id. */
  476. u32 base_addr;
  477. struct v4l2_prio_state prio;
  478. u8 card_rev;
  479. void __iomem *enc_mem, *reg_mem;
  480. struct vbi_info vbi;
  481. u32 pgm_info_offset;
  482. u32 pgm_info_num;
  483. u32 pgm_info_write_idx;
  484. u32 pgm_info_read_idx;
  485. struct v4l2_enc_idx_entry pgm_info[CX18_MAX_PGM_INDEX];
  486. u64 mpg_data_received;
  487. u64 vbi_data_inserted;
  488. wait_queue_head_t mb_apu_waitq;
  489. wait_queue_head_t mb_cpu_waitq;
  490. wait_queue_head_t cap_w;
  491. /* when the current DMA is finished this queue is woken up */
  492. wait_queue_head_t dma_waitq;
  493. u32 sw1_irq_mask;
  494. u32 sw2_irq_mask;
  495. u32 hw2_irq_mask;
  496. struct workqueue_struct *in_work_queue;
  497. char in_workq_name[11]; /* "cx18-NN-in" */
  498. struct cx18_in_work_order in_work_order[CX18_MAX_IN_WORK_ORDERS];
  499. char epu_debug_str[256]; /* CX18_EPU_DEBUG is rare: use shared space */
  500. struct workqueue_struct *out_work_queue;
  501. char out_workq_name[12]; /* "cx18-NN-out" */
  502. /* i2c */
  503. struct i2c_adapter i2c_adap[2];
  504. struct i2c_algo_bit_data i2c_algo[2];
  505. struct cx18_i2c_algo_callback_data i2c_algo_cb_data[2];
  506. /* gpio */
  507. u32 gpio_dir;
  508. u32 gpio_val;
  509. struct mutex gpio_lock;
  510. struct v4l2_subdev sd_gpiomux;
  511. struct v4l2_subdev sd_resetctrl;
  512. /* v4l2 and User settings */
  513. /* codec settings */
  514. u32 audio_input;
  515. u32 active_input;
  516. v4l2_std_id std;
  517. v4l2_std_id tuner_std; /* The norm of the tuner (fixed) */
  518. };
  519. static inline struct cx18 *to_cx18(struct v4l2_device *v4l2_dev)
  520. {
  521. return container_of(v4l2_dev, struct cx18, v4l2_dev);
  522. }
  523. /* Globals */
  524. extern int cx18_first_minor;
  525. /*==============Prototypes==================*/
  526. /* Return non-zero if a signal is pending */
  527. int cx18_msleep_timeout(unsigned int msecs, int intr);
  528. /* Read Hauppauge eeprom */
  529. struct tveeprom; /* forward reference */
  530. void cx18_read_eeprom(struct cx18 *cx, struct tveeprom *tv);
  531. /* First-open initialization: load firmware, etc. */
  532. int cx18_init_on_first_open(struct cx18 *cx);
  533. /* Test if the current VBI mode is raw (1) or sliced (0) */
  534. static inline int cx18_raw_vbi(const struct cx18 *cx)
  535. {
  536. return cx->vbi.in.type == V4L2_BUF_TYPE_VBI_CAPTURE;
  537. }
  538. /* Call the specified callback for all subdevs with a grp_id bit matching the
  539. * mask in hw (if 0, then match them all). Ignore any errors. */
  540. #define cx18_call_hw(cx, hw, o, f, args...) \
  541. __v4l2_device_call_subdevs(&(cx)->v4l2_dev, \
  542. !(hw) || (sd->grp_id & (hw)), o, f , ##args)
  543. #define cx18_call_all(cx, o, f, args...) cx18_call_hw(cx, 0, o, f , ##args)
  544. /* Call the specified callback for all subdevs with a grp_id bit matching the
  545. * mask in hw (if 0, then match them all). If the callback returns an error
  546. * other than 0 or -ENOIOCTLCMD, then return with that error code. */
  547. #define cx18_call_hw_err(cx, hw, o, f, args...) \
  548. __v4l2_device_call_subdevs_until_err( \
  549. &(cx)->v4l2_dev, !(hw) || (sd->grp_id & (hw)), o, f , ##args)
  550. #define cx18_call_all_err(cx, o, f, args...) \
  551. cx18_call_hw_err(cx, 0, o, f , ##args)
  552. #endif /* CX18_DRIVER_H */