505 lines
16 KiB
C
505 lines
16 KiB
C
/*
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* cx18 driver internal defines and structures
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*
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* Derived from ivtv-driver.h
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*
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* Copyright (C) 2007 Hans Verkuil <hverkuil@xs4all.nl>
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA
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* 02111-1307 USA
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*/
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#ifndef CX18_DRIVER_H
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#define CX18_DRIVER_H
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#include <linux/version.h>
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#include <linux/module.h>
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#include <linux/moduleparam.h>
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#include <linux/init.h>
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#include <linux/delay.h>
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#include <linux/sched.h>
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#include <linux/fs.h>
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#include <linux/pci.h>
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#include <linux/interrupt.h>
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#include <linux/spinlock.h>
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#include <linux/i2c.h>
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#include <linux/i2c-algo-bit.h>
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#include <linux/list.h>
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#include <linux/unistd.h>
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#include <linux/byteorder/swab.h>
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#include <linux/pagemap.h>
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#include <linux/workqueue.h>
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#include <linux/mutex.h>
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#include <linux/dvb/video.h>
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#include <linux/dvb/audio.h>
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#include <media/v4l2-common.h>
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#include <media/tuner.h>
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#include "cx18-mailbox.h"
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#include "cx18-av-core.h"
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#include "cx23418.h"
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/* DVB */
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#include "demux.h"
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#include "dmxdev.h"
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#include "dvb_demux.h"
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#include "dvb_frontend.h"
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#include "dvb_net.h"
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#include "dvbdev.h"
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#ifndef CONFIG_PCI
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# error "This driver requires kernel PCI support."
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#endif
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#define CX18_MEM_OFFSET 0x00000000
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#define CX18_MEM_SIZE 0x04000000
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#define CX18_REG_OFFSET 0x02000000
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/* Maximum cx18 driver instances. */
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#define CX18_MAX_CARDS 32
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/* Supported cards */
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#define CX18_CARD_HVR_1600_ESMT 0 /* Hauppauge HVR 1600 (ESMT memory) */
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#define CX18_CARD_HVR_1600_SAMSUNG 1 /* Hauppauge HVR 1600 (Samsung memory) */
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#define CX18_CARD_COMPRO_H900 2 /* Compro VideoMate H900 */
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#define CX18_CARD_YUAN_MPC718 3 /* Yuan MPC718 */
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#define CX18_CARD_CNXT_RAPTOR_PAL 4 /* Conexant Raptor PAL */
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#define CX18_CARD_LAST 4
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#define CX18_ENC_STREAM_TYPE_MPG 0
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#define CX18_ENC_STREAM_TYPE_TS 1
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#define CX18_ENC_STREAM_TYPE_YUV 2
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#define CX18_ENC_STREAM_TYPE_VBI 3
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#define CX18_ENC_STREAM_TYPE_PCM 4
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#define CX18_ENC_STREAM_TYPE_IDX 5
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#define CX18_ENC_STREAM_TYPE_RAD 6
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#define CX18_MAX_STREAMS 7
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/* system vendor and device IDs */
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#define PCI_VENDOR_ID_CX 0x14f1
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#define PCI_DEVICE_ID_CX23418 0x5b7a
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/* subsystem vendor ID */
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#define CX18_PCI_ID_HAUPPAUGE 0x0070
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#define CX18_PCI_ID_COMPRO 0x185b
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#define CX18_PCI_ID_YUAN 0x12ab
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#define CX18_PCI_ID_CONEXANT 0x14f1
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/* ======================================================================== */
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/* ========================== START USER SETTABLE DMA VARIABLES =========== */
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/* ======================================================================== */
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/* DMA Buffers, Default size in MB allocated */
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#define CX18_DEFAULT_ENC_TS_BUFFERS 1
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#define CX18_DEFAULT_ENC_MPG_BUFFERS 2
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#define CX18_DEFAULT_ENC_IDX_BUFFERS 1
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#define CX18_DEFAULT_ENC_YUV_BUFFERS 2
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#define CX18_DEFAULT_ENC_VBI_BUFFERS 1
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#define CX18_DEFAULT_ENC_PCM_BUFFERS 1
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/* i2c stuff */
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#define I2C_CLIENTS_MAX 16
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/* debugging */
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/* Flag to turn on high volume debugging */
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#define CX18_DBGFLG_WARN (1 << 0)
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#define CX18_DBGFLG_INFO (1 << 1)
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#define CX18_DBGFLG_API (1 << 2)
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#define CX18_DBGFLG_DMA (1 << 3)
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#define CX18_DBGFLG_IOCTL (1 << 4)
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#define CX18_DBGFLG_FILE (1 << 5)
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#define CX18_DBGFLG_I2C (1 << 6)
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#define CX18_DBGFLG_IRQ (1 << 7)
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/* Flag to turn on high volume debugging */
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#define CX18_DBGFLG_HIGHVOL (1 << 8)
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/* NOTE: extra space before comma in 'cx->num , ## args' is required for
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gcc-2.95, otherwise it won't compile. */
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#define CX18_DEBUG(x, type, fmt, args...) \
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do { \
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if ((x) & cx18_debug) \
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printk(KERN_INFO "cx18-%d " type ": " fmt, cx->num , ## args); \
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} while (0)
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#define CX18_DEBUG_WARN(fmt, args...) CX18_DEBUG(CX18_DBGFLG_WARN, "warning", fmt , ## args)
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#define CX18_DEBUG_INFO(fmt, args...) CX18_DEBUG(CX18_DBGFLG_INFO, "info", fmt , ## args)
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#define CX18_DEBUG_API(fmt, args...) CX18_DEBUG(CX18_DBGFLG_API, "api", fmt , ## args)
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#define CX18_DEBUG_DMA(fmt, args...) CX18_DEBUG(CX18_DBGFLG_DMA, "dma", fmt , ## args)
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#define CX18_DEBUG_IOCTL(fmt, args...) CX18_DEBUG(CX18_DBGFLG_IOCTL, "ioctl", fmt , ## args)
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#define CX18_DEBUG_FILE(fmt, args...) CX18_DEBUG(CX18_DBGFLG_FILE, "file", fmt , ## args)
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#define CX18_DEBUG_I2C(fmt, args...) CX18_DEBUG(CX18_DBGFLG_I2C, "i2c", fmt , ## args)
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#define CX18_DEBUG_IRQ(fmt, args...) CX18_DEBUG(CX18_DBGFLG_IRQ, "irq", fmt , ## args)
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#define CX18_DEBUG_HIGH_VOL(x, type, fmt, args...) \
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do { \
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if (((x) & cx18_debug) && (cx18_debug & CX18_DBGFLG_HIGHVOL)) \
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printk(KERN_INFO "cx18%d " type ": " fmt, cx->num , ## args); \
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} while (0)
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#define CX18_DEBUG_HI_WARN(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_WARN, "warning", fmt , ## args)
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#define CX18_DEBUG_HI_INFO(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_INFO, "info", fmt , ## args)
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#define CX18_DEBUG_HI_API(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_API, "api", fmt , ## args)
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#define CX18_DEBUG_HI_DMA(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_DMA, "dma", fmt , ## args)
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#define CX18_DEBUG_HI_IOCTL(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_IOCTL, "ioctl", fmt , ## args)
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#define CX18_DEBUG_HI_FILE(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_FILE, "file", fmt , ## args)
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#define CX18_DEBUG_HI_I2C(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_I2C, "i2c", fmt , ## args)
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#define CX18_DEBUG_HI_IRQ(fmt, args...) CX18_DEBUG_HIGH_VOL(CX18_DBGFLG_IRQ, "irq", fmt , ## args)
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/* Standard kernel messages */
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#define CX18_ERR(fmt, args...) printk(KERN_ERR "cx18-%d: " fmt, cx->num , ## args)
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#define CX18_WARN(fmt, args...) printk(KERN_WARNING "cx18-%d: " fmt, cx->num , ## args)
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#define CX18_INFO(fmt, args...) printk(KERN_INFO "cx18-%d: " fmt, cx->num , ## args)
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/* Values for CX18_API_DEC_PLAYBACK_SPEED mpeg_frame_type_mask parameter: */
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#define MPEG_FRAME_TYPE_IFRAME 1
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#define MPEG_FRAME_TYPE_IFRAME_PFRAME 3
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#define MPEG_FRAME_TYPE_ALL 7
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#define CX18_MAX_PGM_INDEX (400)
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extern int cx18_debug;
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struct cx18_options {
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int megabytes[CX18_MAX_STREAMS]; /* Size in megabytes of each stream */
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int cardtype; /* force card type on load */
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int tuner; /* set tuner on load */
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int radio; /* enable/disable radio */
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};
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/* per-buffer bit flags */
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#define CX18_F_B_NEED_BUF_SWAP 0 /* this buffer should be byte swapped */
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/* per-stream, s_flags */
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#define CX18_F_S_CLAIMED 3 /* this stream is claimed */
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#define CX18_F_S_STREAMING 4 /* the fw is decoding/encoding this stream */
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#define CX18_F_S_INTERNAL_USE 5 /* this stream is used internally (sliced VBI processing) */
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#define CX18_F_S_STREAMOFF 7 /* signal end of stream EOS */
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#define CX18_F_S_APPL_IO 8 /* this stream is used read/written by an application */
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/* per-cx18, i_flags */
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#define CX18_F_I_LOADED_FW 0 /* Loaded the firmware the first time */
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#define CX18_F_I_EOS 4 /* End of encoder stream reached */
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#define CX18_F_I_RADIO_USER 5 /* The radio tuner is selected */
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#define CX18_F_I_ENC_PAUSED 13 /* the encoder is paused */
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#define CX18_F_I_INITED 21 /* set after first open */
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#define CX18_F_I_FAILED 22 /* set if first open failed */
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/* These are the VBI types as they appear in the embedded VBI private packets. */
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#define CX18_SLICED_TYPE_TELETEXT_B (1)
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#define CX18_SLICED_TYPE_CAPTION_525 (4)
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#define CX18_SLICED_TYPE_WSS_625 (5)
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#define CX18_SLICED_TYPE_VPS (7)
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struct cx18_buffer {
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struct list_head list;
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dma_addr_t dma_handle;
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u32 id;
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unsigned long b_flags;
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char *buf;
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u32 bytesused;
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u32 readpos;
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};
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struct cx18_queue {
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struct list_head list;
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u32 buffers;
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u32 length;
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u32 bytesused;
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};
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struct cx18_dvb {
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struct dmx_frontend hw_frontend;
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struct dmx_frontend mem_frontend;
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struct dmxdev dmxdev;
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struct dvb_adapter dvb_adapter;
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struct dvb_demux demux;
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struct dvb_frontend *fe;
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struct dvb_net dvbnet;
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int enabled;
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int feeding;
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struct mutex feedlock;
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};
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struct cx18; /* forward reference */
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struct cx18_scb; /* forward reference */
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struct cx18_stream {
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/* These first four fields are always set, even if the stream
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is not actually created. */
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struct video_device *v4l2dev; /* NULL when stream not created */
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struct cx18 *cx; /* for ease of use */
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const char *name; /* name of the stream */
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int type; /* stream type */
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u32 handle; /* task handle */
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unsigned mdl_offset;
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u32 id;
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spinlock_t qlock; /* locks access to the queues */
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unsigned long s_flags; /* status flags, see above */
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int dma; /* can be PCI_DMA_TODEVICE,
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PCI_DMA_FROMDEVICE or
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PCI_DMA_NONE */
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u64 dma_pts;
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wait_queue_head_t waitq;
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/* Buffer Stats */
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u32 buffers;
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u32 buf_size;
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u32 buffers_stolen;
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/* Buffer Queues */
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struct cx18_queue q_free; /* free buffers */
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struct cx18_queue q_full; /* full buffers */
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struct cx18_queue q_io; /* waiting for I/O */
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/* DVB / Digital Transport */
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struct cx18_dvb dvb;
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};
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struct cx18_open_id {
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u32 open_id;
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int type;
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enum v4l2_priority prio;
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struct cx18 *cx;
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};
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/* forward declaration of struct defined in cx18-cards.h */
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struct cx18_card;
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#define CX18_VBI_FRAMES 32
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/* VBI data */
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struct vbi_info {
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u32 enc_size;
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u32 frame;
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u8 cc_data_odd[256];
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u8 cc_data_even[256];
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int cc_pos;
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u8 cc_no_update;
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u8 vps[5];
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u8 vps_found;
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int wss;
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u8 wss_found;
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u8 wss_no_update;
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u32 raw_decoder_line_size;
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u8 raw_decoder_sav_odd_field;
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u8 raw_decoder_sav_even_field;
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u32 sliced_decoder_line_size;
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u8 sliced_decoder_sav_odd_field;
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u8 sliced_decoder_sav_even_field;
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struct v4l2_format in;
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/* convenience pointer to sliced struct in vbi_in union */
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struct v4l2_sliced_vbi_format *sliced_in;
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u32 service_set_in;
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int insert_mpeg;
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/* Buffer for the maximum of 2 * 18 * packet_size sliced VBI lines.
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One for /dev/vbi0 and one for /dev/vbi8 */
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struct v4l2_sliced_vbi_data sliced_data[36];
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/* Buffer for VBI data inserted into MPEG stream.
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The first byte is a dummy byte that's never used.
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The next 16 bytes contain the MPEG header for the VBI data,
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the remainder is the actual VBI data.
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The max size accepted by the MPEG VBI reinsertion turns out
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to be 1552 bytes, which happens to be 4 + (1 + 42) * (2 * 18) bytes,
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where 4 is a four byte header, 42 is the max sliced VBI payload, 1 is
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a single line header byte and 2 * 18 is the number of VBI lines per frame.
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However, it seems that the data must be 1K aligned, so we have to
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pad the data until the 1 or 2 K boundary.
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This pointer array will allocate 2049 bytes to store each VBI frame. */
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u8 *sliced_mpeg_data[CX18_VBI_FRAMES];
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u32 sliced_mpeg_size[CX18_VBI_FRAMES];
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struct cx18_buffer sliced_mpeg_buf;
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u32 inserted_frame;
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u32 start[2], count;
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u32 raw_size;
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u32 sliced_size;
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};
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/* Per cx23418, per I2C bus private algo callback data */
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struct cx18_i2c_algo_callback_data {
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struct cx18 *cx;
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int bus_index; /* 0 or 1 for the cx23418's 1st or 2nd I2C bus */
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};
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/* Struct to hold info about cx18 cards */
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struct cx18 {
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int num; /* board number, -1 during init! */
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char name[8]; /* board name for printk and interrupts (e.g. 'cx180') */
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struct pci_dev *dev; /* PCI device */
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const struct cx18_card *card; /* card information */
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const char *card_name; /* full name of the card */
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const struct cx18_card_tuner_i2c *card_i2c; /* i2c addresses to probe for tuner */
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u8 is_50hz;
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u8 is_60hz;
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u8 is_out_50hz;
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u8 is_out_60hz;
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u8 nof_inputs; /* number of video inputs */
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u8 nof_audio_inputs; /* number of audio inputs */
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u16 buffer_id; /* buffer ID counter */
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u32 v4l2_cap; /* V4L2 capabilities of card */
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u32 hw_flags; /* Hardware description of the board */
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unsigned mdl_offset;
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struct cx18_scb __iomem *scb; /* pointer to SCB */
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struct cx18_av_state av_state;
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/* codec settings */
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struct cx2341x_mpeg_params params;
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u32 filter_mode;
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u32 temporal_strength;
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u32 spatial_strength;
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/* dualwatch */
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unsigned long dualwatch_jiffies;
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u16 dualwatch_stereo_mode;
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/* Digitizer type */
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int digitizer; /* 0x00EF = saa7114 0x00FO = saa7115 0x0106 = mic */
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struct mutex serialize_lock; /* mutex used to serialize open/close/start/stop/ioctl operations */
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struct cx18_options options; /* User options */
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int stream_buf_size[CX18_MAX_STREAMS]; /* Stream buffer size */
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struct cx18_stream streams[CX18_MAX_STREAMS]; /* Stream data */
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unsigned long i_flags; /* global cx18 flags */
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atomic_t ana_capturing; /* count number of active analog capture streams */
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atomic_t tot_capturing; /* total count number of active capture streams */
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spinlock_t lock; /* lock access to this struct */
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int search_pack_header;
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spinlock_t dma_reg_lock; /* lock access to DMA engine registers */
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int open_id; /* incremented each time an open occurs, used as
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unique ID. Starts at 1, so 0 can be used as
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uninitialized value in the stream->id. */
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u32 base_addr;
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struct v4l2_prio_state prio;
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u8 card_rev;
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void __iomem *enc_mem, *reg_mem;
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struct vbi_info vbi;
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u32 pgm_info_offset;
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u32 pgm_info_num;
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u32 pgm_info_write_idx;
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u32 pgm_info_read_idx;
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struct v4l2_enc_idx_entry pgm_info[CX18_MAX_PGM_INDEX];
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u64 mpg_data_received;
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u64 vbi_data_inserted;
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wait_queue_head_t mb_apu_waitq;
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wait_queue_head_t mb_cpu_waitq;
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wait_queue_head_t mb_epu_waitq;
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wait_queue_head_t mb_hpu_waitq;
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wait_queue_head_t cap_w;
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/* when the current DMA is finished this queue is woken up */
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wait_queue_head_t dma_waitq;
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/* i2c */
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struct i2c_adapter i2c_adap[2];
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struct i2c_algo_bit_data i2c_algo[2];
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struct cx18_i2c_algo_callback_data i2c_algo_cb_data[2];
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struct i2c_client i2c_client[2];
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struct mutex i2c_bus_lock[2];
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struct i2c_client *i2c_clients[I2C_CLIENTS_MAX];
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/* gpio */
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u32 gpio_dir;
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u32 gpio_val;
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/* v4l2 and User settings */
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/* codec settings */
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u32 audio_input;
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u32 active_input;
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u32 active_output;
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v4l2_std_id std;
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v4l2_std_id tuner_std; /* The norm of the tuner (fixed) */
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};
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/* Globals */
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extern struct cx18 *cx18_cards[];
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extern int cx18_cards_active;
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extern int cx18_first_minor;
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extern spinlock_t cx18_cards_lock;
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/*==============Prototypes==================*/
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/* Return non-zero if a signal is pending */
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int cx18_msleep_timeout(unsigned int msecs, int intr);
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/* Read Hauppauge eeprom */
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struct tveeprom; /* forward reference */
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void cx18_read_eeprom(struct cx18 *cx, struct tveeprom *tv);
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/* First-open initialization: load firmware, etc. */
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int cx18_init_on_first_open(struct cx18 *cx);
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/* This is a PCI post thing, where if the pci register is not read, then
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the write doesn't always take effect right away. By reading back the
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register any pending PCI writes will be performed (in order), and so
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you can be sure that the writes are guaranteed to be done.
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Rarely needed, only in some timing sensitive cases.
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Apparently if this is not done some motherboards seem
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to kill the firmware and get into the broken state until computer is
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rebooted. */
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#define write_sync(val, reg) \
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do { writel(val, reg); readl(reg); } while (0)
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#define read_reg(reg) readl(cx->reg_mem + (reg))
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#define write_reg(val, reg) writel(val, cx->reg_mem + (reg))
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#define write_reg_sync(val, reg) \
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do { write_reg(val, reg); read_reg(reg); } while (0)
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#define read_enc(addr) readl(cx->enc_mem + (u32)(addr))
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#define write_enc(val, addr) writel(val, cx->enc_mem + (u32)(addr))
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#define write_enc_sync(val, addr) \
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do { write_enc(val, addr); read_enc(addr); } while (0)
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#define sw1_irq_enable(val) do { \
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write_reg(val, SW1_INT_STATUS); \
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write_reg(read_reg(SW1_INT_ENABLE_PCI) | (val), SW1_INT_ENABLE_PCI); \
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} while (0)
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#define sw1_irq_disable(val) \
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write_reg(read_reg(SW1_INT_ENABLE_PCI) & ~(val), SW1_INT_ENABLE_PCI);
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#define sw2_irq_enable(val) do { \
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write_reg(val, SW2_INT_STATUS); \
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write_reg(read_reg(SW2_INT_ENABLE_PCI) | (val), SW2_INT_ENABLE_PCI); \
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} while (0)
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#define sw2_irq_disable(val) \
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write_reg(read_reg(SW2_INT_ENABLE_PCI) & ~(val), SW2_INT_ENABLE_PCI);
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#define setup_page(addr) do { \
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u32 val = read_reg(0xD000F8) & ~0x1f00; \
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write_reg(val | (((addr) >> 17) & 0x1f00), 0xD000F8); \
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} while (0)
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#endif /* CX18_DRIVER_H */
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