#ifndef IVTV_DRIVER_H
#define IVTV_DRIVER_H
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
#include <linux/module.h>
#include <linux/init.h>
#include <linux/delay.h>
#include <linux/sched/signal.h>
#include <linux/fs.h>
#include <linux/pci.h>
#include <linux/interrupt.h>
#include <linux/spinlock.h>
#include <linux/i2c.h>
#include <linux/i2c-algo-bit.h>
#include <linux/list.h>
#include <linux/unistd.h>
#include <linux/pagemap.h>
#include <linux/scatterlist.h>
#include <linux/kthread.h>
#include <linux/mutex.h>
#include <linux/slab.h>
#include <linux/uaccess.h>
#include <asm/byteorder.h>
#include <media/v4l2-common.h>
#include <media/v4l2-ioctl.h>
#include <media/v4l2-ctrls.h>
#include <media/v4l2-device.h>
#include <media/v4l2-fh.h>
#include <media/tuner.h>
#include <media/drv-intf/cx2341x.h>
#include <media/i2c/ir-kbd-i2c.h>
#include <linux/ivtv.h>
#define IVTV_ENCODER_OFFSET 0x00000000
#define IVTV_ENCODER_SIZE 0x00800000 /* Total size is 0x01000000, but only first half is used */
#define IVTV_DECODER_OFFSET 0x01000000
#define IVTV_DECODER_SIZE 0x00800000 /* Total size is 0x01000000, but only first half is used */
#define IVTV_REG_OFFSET 0x02000000
#define IVTV_REG_SIZE 0x00010000
#define IVTV_MAX_CARDS 32
#define IVTV_ENC_STREAM_TYPE_MPG 0
#define IVTV_ENC_STREAM_TYPE_YUV 1
#define IVTV_ENC_STREAM_TYPE_VBI 2
#define IVTV_ENC_STREAM_TYPE_PCM 3
#define IVTV_ENC_STREAM_TYPE_RAD 4
#define IVTV_DEC_STREAM_TYPE_MPG 5
#define IVTV_DEC_STREAM_TYPE_VBI 6
#define IVTV_DEC_STREAM_TYPE_VOUT 7
#define IVTV_DEC_STREAM_TYPE_YUV 8
#define IVTV_MAX_STREAMS 9
#define IVTV_DMA_SG_OSD_ENT (2883584/PAGE_SIZE) /* sg entities */
#define IVTV_REG_DMAXFER (0x0000)
#define IVTV_REG_DMASTATUS (0x0004)
#define IVTV_REG_DECDMAADDR (0x0008)
#define IVTV_REG_ENCDMAADDR (0x000c)
#define IVTV_REG_DMACONTROL (0x0010)
#define IVTV_REG_IRQSTATUS (0x0040)
#define IVTV_REG_IRQMASK (0x0048)
#define IVTV_REG_ENC_SDRAM_REFRESH (0x07F8)
#define IVTV_REG_ENC_SDRAM_PRECHARGE (0x07FC)
#define IVTV_REG_DEC_SDRAM_REFRESH (0x08F8)
#define IVTV_REG_DEC_SDRAM_PRECHARGE (0x08FC)
#define IVTV_REG_VDM (0x2800)
#define IVTV_REG_AO (0x2D00)
#define IVTV_REG_BYTEFLUSH (0x2D24)
#define IVTV_REG_SPU (0x9050)
#define IVTV_REG_HW_BLOCKS (0x9054)
#define IVTV_REG_VPU (0x9058)
#define IVTV_REG_APU (0xA064)
#define IVTV_REG_DEC_LINE_FIELD (0x28C0)
extern int ivtv_debug;
#ifdef CONFIG_VIDEO_ADV_DEBUG
extern int ivtv_fw_debug;
#endif
#define IVTV_DBGFLG_WARN (1 << 0)
#define IVTV_DBGFLG_INFO (1 << 1)
#define IVTV_DBGFLG_MB (1 << 2)
#define IVTV_DBGFLG_IOCTL (1 << 3)
#define IVTV_DBGFLG_FILE (1 << 4)
#define IVTV_DBGFLG_DMA (1 << 5)
#define IVTV_DBGFLG_IRQ (1 << 6)
#define IVTV_DBGFLG_DEC (1 << 7)
#define IVTV_DBGFLG_YUV (1 << 8)
#define IVTV_DBGFLG_I2C (1 << 9)
#define IVTV_DBGFLG_HIGHVOL (1 << 10)
#define IVTV_DEBUG(x, type, fmt, args...) \
do { \
if ((x) & ivtv_debug) \
v4l2_info(&itv->v4l2_dev, " " type ": " fmt , ##args); \
} while (0)
#define IVTV_DEBUG_WARN(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_WARN, "warn", fmt , ## args)
#define IVTV_DEBUG_INFO(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_INFO, "info", fmt , ## args)
#define IVTV_DEBUG_MB(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_MB, "mb", fmt , ## args)
#define IVTV_DEBUG_DMA(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_DMA, "dma", fmt , ## args)
#define IVTV_DEBUG_IOCTL(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_IOCTL, "ioctl", fmt , ## args)
#define IVTV_DEBUG_FILE(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_FILE, "file", fmt , ## args)
#define IVTV_DEBUG_I2C(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_I2C, "i2c", fmt , ## args)
#define IVTV_DEBUG_IRQ(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_IRQ, "irq", fmt , ## args)
#define IVTV_DEBUG_DEC(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_DEC, "dec", fmt , ## args)
#define IVTV_DEBUG_YUV(fmt, args...) IVTV_DEBUG(IVTV_DBGFLG_YUV, "yuv", fmt , ## args)
#define IVTV_DEBUG_HIGH_VOL(x, type, fmt, args...) \
do { \
if (((x) & ivtv_debug) && (ivtv_debug & IVTV_DBGFLG_HIGHVOL)) \
v4l2_info(&itv->v4l2_dev, " " type ": " fmt , ##args); \
} while (0)
#define IVTV_DEBUG_HI_WARN(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_WARN, "warn", fmt , ## args)
#define IVTV_DEBUG_HI_INFO(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_INFO, "info", fmt , ## args)
#define IVTV_DEBUG_HI_MB(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_MB, "mb", fmt , ## args)
#define IVTV_DEBUG_HI_DMA(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_DMA, "dma", fmt , ## args)
#define IVTV_DEBUG_HI_IOCTL(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_IOCTL, "ioctl", fmt , ## args)
#define IVTV_DEBUG_HI_FILE(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_FILE, "file", fmt , ## args)
#define IVTV_DEBUG_HI_I2C(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_I2C, "i2c", fmt , ## args)
#define IVTV_DEBUG_HI_IRQ(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_IRQ, "irq", fmt , ## args)
#define IVTV_DEBUG_HI_DEC(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_DEC, "dec", fmt , ## args)
#define IVTV_DEBUG_HI_YUV(fmt, args...) IVTV_DEBUG_HIGH_VOL(IVTV_DBGFLG_YUV, "yuv", fmt , ## args)
#define IVTV_ERR(fmt, args...) v4l2_err(&itv->v4l2_dev, fmt , ## args)
#define IVTV_WARN(fmt, args...) v4l2_warn(&itv->v4l2_dev, fmt , ## args)
#define IVTV_INFO(fmt, args...) v4l2_info(&itv->v4l2_dev, fmt , ## args)
#define OUT_NONE 0
#define OUT_MPG 1
#define OUT_YUV 2
#define OUT_UDMA_YUV 3
#define OUT_PASSTHROUGH 4
#define IVTV_MAX_PGM_INDEX (400)
#define IVTV_DEFAULT_I2C_CLOCK_PERIOD 20
struct ivtv_options {
int kilobytes[IVTV_MAX_STREAMS];
int cardtype;
int tuner;
int radio;
int newi2c;
int i2c_clock_period;
};
struct ivtv_mailbox {
u32 flags;
u32 cmd;
u32 retval;
u32 timeout;
u32 data[CX2341X_MBOX_MAX_DATA];
};
struct ivtv_api_cache {
unsigned long last_jiffies;
u32 data[CX2341X_MBOX_MAX_DATA];
};
struct ivtv_mailbox_data {
volatile struct ivtv_mailbox __iomem *mbox;
unsigned long busy;
u8 max_mbox;
};
#define IVTV_F_B_NEED_BUF_SWAP (1 << 0) /* this buffer should be byte swapped */
#define IVTV_F_S_DMA_PENDING 0 /* this stream has pending DMA */
#define IVTV_F_S_DMA_HAS_VBI 1 /* the current DMA request also requests VBI data */
#define IVTV_F_S_NEEDS_DATA 2 /* this decoding stream needs more data */
#define IVTV_F_S_CLAIMED 3 /* this stream is claimed */
#define IVTV_F_S_STREAMING 4 /* the fw is decoding/encoding this stream */
#define IVTV_F_S_INTERNAL_USE 5 /* this stream is used internally (sliced VBI processing) */
#define IVTV_F_S_PASSTHROUGH 6 /* this stream is in passthrough mode */
#define IVTV_F_S_STREAMOFF 7 /* signal end of stream EOS */
#define IVTV_F_S_APPL_IO 8 /* this stream is used read/written by an application */
#define IVTV_F_S_PIO_PENDING 9 /* this stream has pending PIO */
#define IVTV_F_S_PIO_HAS_VBI 1 /* the current PIO request also requests VBI data */
#define IVTV_F_I_DMA 0 /* DMA in progress */
#define IVTV_F_I_UDMA 1 /* UDMA in progress */
#define IVTV_F_I_UDMA_PENDING 2 /* UDMA pending */
#define IVTV_F_I_SPEED_CHANGE 3 /* a speed change is in progress */
#define IVTV_F_I_EOS 4 /* end of encoder stream reached */
#define IVTV_F_I_RADIO_USER 5 /* the radio tuner is selected */
#define IVTV_F_I_DIG_RST 6 /* reset digitizer */
#define IVTV_F_I_DEC_YUV 7 /* YUV instead of MPG is being decoded */
#define IVTV_F_I_UPDATE_CC 9 /* CC should be updated */
#define IVTV_F_I_UPDATE_WSS 10 /* WSS should be updated */
#define IVTV_F_I_UPDATE_VPS 11 /* VPS should be updated */
#define IVTV_F_I_DECODING_YUV 12 /* this stream is YUV frame decoding */
#define IVTV_F_I_ENC_PAUSED 13 /* the encoder is paused */
#define IVTV_F_I_VALID_DEC_TIMINGS 14 /* last_dec_timing is valid */
#define IVTV_F_I_HAVE_WORK 15 /* used in the interrupt handler: there is work to be done */
#define IVTV_F_I_WORK_HANDLER_VBI 16 /* there is work to be done for VBI */
#define IVTV_F_I_WORK_HANDLER_YUV 17 /* there is work to be done for YUV */
#define IVTV_F_I_WORK_HANDLER_PIO 18 /* there is work to be done for PIO */
#define IVTV_F_I_PIO 19 /* PIO in progress */
#define IVTV_F_I_DEC_PAUSED 20 /* the decoder is paused */
#define IVTV_F_I_INITED 21 /* set after first open */
#define IVTV_F_I_FAILED 22 /* set if first open failed */
#define IVTV_F_I_WORK_HANDLER_PCM 23 /* there is work to be done for PCM */
#define IVTV_F_I_EV_DEC_STOPPED 28 /* decoder stopped event */
#define IVTV_F_I_EV_VSYNC 29 /* VSYNC event */
#define IVTV_F_I_EV_VSYNC_FIELD 30 /* VSYNC event field (0 = first, 1 = second field) */
#define IVTV_F_I_EV_VSYNC_ENABLED 31 /* VSYNC event enabled */
struct ivtv_sg_element {
__le32 src;
__le32 dst;
__le32 size;
};
struct ivtv_sg_host_element {
u32 src;
u32 dst;
u32 size;
};
struct ivtv_user_dma {
struct mutex lock;
int page_count;
struct page *map[IVTV_DMA_SG_OSD_ENT];
struct page *bouncemap[IVTV_DMA_SG_OSD_ENT];
struct ivtv_sg_element SGarray[IVTV_DMA_SG_OSD_ENT];
dma_addr_t SG_handle;
int SG_length;
struct scatterlist SGlist[IVTV_DMA_SG_OSD_ENT];
};
struct ivtv_dma_page_info {
unsigned long uaddr;
unsigned long first;
unsigned long last;
unsigned int offset;
unsigned int tail;
int page_count;
};
struct ivtv_buffer {
struct list_head list;
dma_addr_t dma_handle;
unsigned short b_flags;
unsigned short dma_xfer_cnt;
char *buf;
u32 bytesused;
u32 readpos;
};
struct ivtv_queue {
struct list_head list;
u32 buffers;
u32 length;
u32 bytesused;
};
struct ivtv;
struct ivtv_stream {
struct video_device vdev;
struct ivtv *itv;
const char *name;
int type;
struct v4l2_fh *fh;
spinlock_t qlock;
unsigned long s_flags;
int dma;
u32 pending_offset;
u32 pending_backup;
u64 pending_pts;
u32 dma_offset;
u32 dma_backup;
u64 dma_pts;
int subtype;
wait_queue_head_t waitq;
u32 dma_last_offset;
u32 buffers;
u32 buf_size;
u32 buffers_stolen;
struct ivtv_queue q_free;
struct ivtv_queue q_full;
struct ivtv_queue q_io;
struct ivtv_queue q_dma;
struct ivtv_queue q_predma;
u16 dma_xfer_cnt;
struct ivtv_sg_host_element *sg_pending;
struct ivtv_sg_host_element *sg_processing;
struct ivtv_sg_element *sg_dma;
dma_addr_t sg_handle;
int sg_pending_size;
int sg_processing_size;
int sg_processed;
struct scatterlist *SGlist;
};
struct ivtv_open_id {
struct v4l2_fh fh;
int type;
int yuv_frames;
struct ivtv *itv;
};
static inline struct ivtv_open_id *fh2id(struct v4l2_fh *fh)
{
return container_of(fh, struct ivtv_open_id, fh);
}
struct yuv_frame_info
{
u32 update;
s32 src_x;
s32 src_y;
u32 src_w;
u32 src_h;
s32 dst_x;
s32 dst_y;
u32 dst_w;
u32 dst_h;
s32 pan_x;
s32 pan_y;
u32 vis_w;
u32 vis_h;
u32 interlaced_y;
u32 interlaced_uv;
s32 tru_x;
u32 tru_w;
u32 tru_h;
u32 offset_y;
s32 lace_mode;
u32 sync_field;
u32 delay;
u32 interlaced;
};
#define IVTV_YUV_MODE_INTERLACED 0x00
#define IVTV_YUV_MODE_PROGRESSIVE 0x01
#define IVTV_YUV_MODE_AUTO 0x02
#define IVTV_YUV_MODE_MASK 0x03
#define IVTV_YUV_SYNC_EVEN 0x00
#define IVTV_YUV_SYNC_ODD 0x04
#define IVTV_YUV_SYNC_MASK 0x04
#define IVTV_YUV_BUFFERS 8
struct yuv_playback_info
{
u32 reg_2834;
u32 reg_2838;
u32 reg_283c;
u32 reg_2840;
u32 reg_2844;
u32 reg_2848;
u32 reg_2854;
u32 reg_285c;
u32 reg_2864;
u32 reg_2870;
u32 reg_2874;
u32 reg_2890;
u32 reg_2898;
u32 reg_289c;
u32 reg_2918;
u32 reg_291c;
u32 reg_2920;
u32 reg_2924;
u32 reg_2928;
u32 reg_292c;
u32 reg_2930;
u32 reg_2934;
u32 reg_2938;
u32 reg_293c;
u32 reg_2940;
u32 reg_2944;
u32 reg_2948;
u32 reg_294c;
u32 reg_2950;
u32 reg_2954;
u32 reg_2958;
u32 reg_295c;
u32 reg_2960;
u32 reg_2964;
u32 reg_2968;
u32 reg_296c;
u32 reg_2970;
int v_filter_1;
int v_filter_2;
int h_filter;
u8 track_osd;
u32 osd_x_offset;
u32 osd_y_offset;
u32 osd_x_pan;
u32 osd_y_pan;
u32 osd_vis_w;
u32 osd_vis_h;
u32 osd_full_w;
u32 osd_full_h;
int decode_height;
int lace_mode;
int lace_threshold;
int lace_sync_field;
atomic_t next_dma_frame;
atomic_t next_fill_frame;
u32 yuv_forced_update;
int update_frame;
u8 fields_lapsed;
struct yuv_frame_info new_frame_info[IVTV_YUV_BUFFERS];
struct yuv_frame_info old_frame_info;
struct yuv_frame_info old_frame_info_args;
void *blanking_ptr;
dma_addr_t blanking_dmaptr;
int stream_size;
u8 draw_frame;
u8 max_frames_buffered;
struct v4l2_rect main_rect;
u32 v4l2_src_w;
u32 v4l2_src_h;
u8 running;
};
#define IVTV_VBI_FRAMES 32
struct vbi_cc {
u8 odd[2];
u8 even[2]; ;
};
struct vbi_vps {
u8 data[5];
};
struct vbi_info {
u32 raw_decoder_line_size;
u8 raw_decoder_sav_odd_field;
u8 raw_decoder_sav_even_field;
u32 sliced_decoder_line_size;
u8 sliced_decoder_sav_odd_field;
u8 sliced_decoder_sav_even_field;
u32 start[2];
u32 count;
u32 raw_size;
u32 sliced_size;
u32 dec_start;
u32 enc_start;
u32 enc_size;
int fpi;
struct v4l2_format in;
struct v4l2_sliced_vbi_format *sliced_in;
int insert_mpeg;
u32 frame;
struct vbi_cc cc_payload[256];
int cc_payload_idx;
u8 cc_missing_cnt;
int wss_payload;
u8 wss_missing_cnt;
struct vbi_vps vps_payload;
struct v4l2_sliced_vbi_data sliced_data[36];
struct v4l2_sliced_vbi_data sliced_dec_data[36];
u8 *sliced_mpeg_data[IVTV_VBI_FRAMES];
u32 sliced_mpeg_size[IVTV_VBI_FRAMES];
struct ivtv_buffer sliced_mpeg_buf;
u32 inserted_frame;
};
struct ivtv_card;
struct ivtv {
struct pci_dev *pdev;
const struct ivtv_card *card;
const char *card_name;
const struct ivtv_card_tuner_i2c *card_i2c;
u8 has_cx23415;
u8 pvr150_workaround;
u8 nof_inputs;
u8 nof_audio_inputs;
u32 v4l2_cap;
u32 hw_flags;
v4l2_std_id tuner_std;
struct v4l2_subdev *sd_video;
struct v4l2_subdev *sd_audio;
struct v4l2_subdev *sd_muxer;
resource_size_t base_addr;
volatile void __iomem *enc_mem;
volatile void __iomem *dec_mem;
volatile void __iomem *reg_mem;
struct ivtv_options options;
struct v4l2_device v4l2_dev;
struct cx2341x_handler cxhdl;
struct {
struct v4l2_ctrl *ctrl_pts;
struct v4l2_ctrl *ctrl_frame;
};
struct {
struct v4l2_ctrl *ctrl_audio_playback;
struct v4l2_ctrl *ctrl_audio_multilingual_playback;
};
struct v4l2_ctrl_handler hdl_gpio;
struct v4l2_subdev sd_gpio;
u16 instance;
unsigned long i_flags;
u8 is_50hz;
u8 is_60hz ;
u8 is_out_50hz ;
u8 is_out_60hz ;
int output_mode;
u32 audio_input;
u32 active_input;
u32 active_output;
v4l2_std_id std;
v4l2_std_id std_out;
u8 audio_stereo_mode;
u8 audio_bilingual_mode;
spinlock_t lock;
struct mutex serialize_lock;
int stream_buf_size[IVTV_MAX_STREAMS];
struct ivtv_stream streams[IVTV_MAX_STREAMS];
atomic_t capturing;
atomic_t decoding;
struct snd_ivtv_card *alsa;
void (*pcm_announce_callback)(struct snd_ivtv_card *card, u8 *pcm_data,
size_t num_bytes);
struct work_struct request_module_wk;
u32 irqmask;
u32 irq_rr_idx;
struct kthread_worker irq_worker;
struct task_struct *irq_worker_task;
struct kthread_work irq_work;
spinlock_t dma_reg_lock;
int cur_dma_stream;
int cur_pio_stream;
u32 dma_data_req_offset;
u32 dma_data_req_size;
int dma_retries;
struct ivtv_user_dma udma;
struct timer_list dma_timer;
u32 last_vsync_field;
wait_queue_head_t dma_waitq;
wait_queue_head_t eos_waitq;
wait_queue_head_t event_waitq;
wait_queue_head_t vsync_waitq;
struct ivtv_mailbox_data enc_mbox;
struct ivtv_mailbox_data dec_mbox;
struct ivtv_api_cache api_cache[256];
struct i2c_adapter i2c_adap;
struct i2c_algo_bit_data i2c_algo;
struct i2c_client i2c_client;
int i2c_state;
struct mutex i2c_bus_lock;
struct IR_i2c_init_data ir_i2c_init_data;
u32 pgm_info_offset;
u32 pgm_info_num;
u32 pgm_info_write_idx;
u32 pgm_info_read_idx;
struct v4l2_enc_idx_entry pgm_info[IVTV_MAX_PGM_INDEX];
u32 open_id;
int search_pack_header;
int speed;
u8 speed_mute_audio;
u64 mpg_data_received;
u64 vbi_data_inserted;
u32 last_dec_timing[3];
unsigned long dualwatch_jiffies;
u32 dualwatch_stereo_mode;
struct vbi_info vbi;
struct yuv_playback_info yuv_info;
unsigned long osd_video_pbase;
int osd_global_alpha_state;
int osd_local_alpha_state;
int osd_chroma_key_state;
u8 osd_global_alpha;
u32 osd_chroma_key;
struct v4l2_rect osd_rect;
struct v4l2_rect main_rect;
struct osd_info *osd_info;
void (*ivtvfb_restore)(struct ivtv *itv);
};
static inline struct ivtv *to_ivtv(struct v4l2_device *v4l2_dev)
{
return container_of(v4l2_dev, struct ivtv, v4l2_dev);
}
extern int (*ivtv_ext_init)(struct ivtv *);
extern int ivtv_first_minor;
void ivtv_set_irq_mask(struct ivtv *itv, u32 mask);
void ivtv_clear_irq_mask(struct ivtv *itv, u32 mask);
int ivtv_set_output_mode(struct ivtv *itv, int mode);
struct ivtv_stream *ivtv_get_output_stream(struct ivtv *itv);
int ivtv_msleep_timeout(unsigned int msecs, int intr);
int ivtv_waitq(wait_queue_head_t *waitq);
struct tveeprom;
void ivtv_read_eeprom(struct ivtv *itv, struct tveeprom *tv);
int ivtv_init_on_first_open(struct ivtv *itv);
static inline int ivtv_raw_vbi(const struct ivtv *itv)
{
return itv->vbi.in.type == V4L2_BUF_TYPE_VBI_CAPTURE;
}
#define write_sync(val, reg) \
do { writel(val, reg); readl(reg); } while (0)
#define read_reg(reg) readl(itv->reg_mem + (reg))
#define write_reg(val, reg) writel(val, itv->reg_mem + (reg))
#define write_reg_sync(val, reg) \
do { write_reg(val, reg); read_reg(reg); } while (0)
#define read_enc(addr) readl(itv->enc_mem + (u32)(addr))
#define write_enc(val, addr) writel(val, itv->enc_mem + (u32)(addr))
#define write_enc_sync(val, addr) \
do { write_enc(val, addr); read_enc(addr); } while (0)
#define read_dec(addr) readl(itv->dec_mem + (u32)(addr))
#define write_dec(val, addr) writel(val, itv->dec_mem + (u32)(addr))
#define write_dec_sync(val, addr) \
do { write_dec(val, addr); read_dec(addr); } while (0)
#define ivtv_call_hw(itv, hw, o, f, args...) \
v4l2_device_mask_call_all(&(itv)->v4l2_dev, hw, o, f, ##args)
#define ivtv_call_all(itv, o, f, args...) ivtv_call_hw(itv, 0, o, f , ##args)
#define ivtv_call_hw_err(itv, hw, o, f, args...) \
v4l2_device_mask_call_until_err(&(itv)->v4l2_dev, hw, o, f, ##args)
#define ivtv_call_all_err(itv, o, f, args...) ivtv_call_hw_err(itv, 0, o, f , ##args)
#endif