cx88-video.c 51.8 KB
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/*
 *
 * device driver for Conexant 2388x based TV cards
 * video4linux video interface
 *
 * (c) 2003-04 Gerd Knorr <kraxel@bytesex.org> [SuSE Labs]
 *
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 * (c) 2005-2006 Mauro Carvalho Chehab <mchehab@infradead.org>
 *	- Multituner support
 *	- video_ioctl2 conversion
 *	- PAL/M fixes
 *
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 *  This program is free software; you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License as published by
 *  the Free Software Foundation; either version 2 of the License, or
 *  (at your option) any later version.
 *
 *  This program is distributed in the hope that it will be useful,
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *  GNU General Public License for more details.
 *
 *  You should have received a copy of the GNU General Public License
 *  along with this program; if not, write to the Free Software
 *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
 */

#include <linux/init.h>
#include <linux/list.h>
#include <linux/module.h>
#include <linux/moduleparam.h>
#include <linux/kmod.h>
#include <linux/kernel.h>
#include <linux/slab.h>
#include <linux/interrupt.h>
#include <linux/delay.h>
#include <linux/kthread.h>
#include <asm/div64.h>

#include "cx88.h"
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#include <media/v4l2-common.h>
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#ifdef CONFIG_VIDEO_V4L1_COMPAT
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/* Include V4L1 specific functions. Should be removed soon */
#include <linux/videodev.h>
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#endif
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MODULE_DESCRIPTION("v4l2 driver module for cx2388x based TV cards");
MODULE_AUTHOR("Gerd Knorr <kraxel@bytesex.org> [SuSE Labs]");
MODULE_LICENSE("GPL");

/* ------------------------------------------------------------------ */

static unsigned int video_nr[] = {[0 ... (CX88_MAXBOARDS - 1)] = UNSET };
static unsigned int vbi_nr[]   = {[0 ... (CX88_MAXBOARDS - 1)] = UNSET };
static unsigned int radio_nr[] = {[0 ... (CX88_MAXBOARDS - 1)] = UNSET };

module_param_array(video_nr, int, NULL, 0444);
module_param_array(vbi_nr,   int, NULL, 0444);
module_param_array(radio_nr, int, NULL, 0444);

MODULE_PARM_DESC(video_nr,"video device numbers");
MODULE_PARM_DESC(vbi_nr,"vbi device numbers");
MODULE_PARM_DESC(radio_nr,"radio device numbers");

static unsigned int video_debug = 0;
module_param(video_debug,int,0644);
MODULE_PARM_DESC(video_debug,"enable debug messages [video]");

static unsigned int irq_debug = 0;
module_param(irq_debug,int,0644);
MODULE_PARM_DESC(irq_debug,"enable debug messages [IRQ handler]");

static unsigned int vid_limit = 16;
module_param(vid_limit,int,0644);
MODULE_PARM_DESC(vid_limit,"capture memory limit in megabytes");

#define dprintk(level,fmt, arg...)	if (video_debug >= level) \
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	printk(KERN_DEBUG "%s/0: " fmt, core->name , ## arg)
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/* ------------------------------------------------------------------ */

static LIST_HEAD(cx8800_devlist);

/* ------------------------------------------------------------------- */
/* static data                                                         */

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v4l2_std_id radionorms[] = { 0 };
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static struct cx8800_fmt formats[] = {
	{
		.name     = "8 bpp, gray",
		.fourcc   = V4L2_PIX_FMT_GREY,
		.cxformat = ColorFormatY8,
		.depth    = 8,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "15 bpp RGB, le",
		.fourcc   = V4L2_PIX_FMT_RGB555,
		.cxformat = ColorFormatRGB15,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "15 bpp RGB, be",
		.fourcc   = V4L2_PIX_FMT_RGB555X,
		.cxformat = ColorFormatRGB15 | ColorFormatBSWAP,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "16 bpp RGB, le",
		.fourcc   = V4L2_PIX_FMT_RGB565,
		.cxformat = ColorFormatRGB16,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "16 bpp RGB, be",
		.fourcc   = V4L2_PIX_FMT_RGB565X,
		.cxformat = ColorFormatRGB16 | ColorFormatBSWAP,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "24 bpp RGB, le",
		.fourcc   = V4L2_PIX_FMT_BGR24,
		.cxformat = ColorFormatRGB24,
		.depth    = 24,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "32 bpp RGB, le",
		.fourcc   = V4L2_PIX_FMT_BGR32,
		.cxformat = ColorFormatRGB32,
		.depth    = 32,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "32 bpp RGB, be",
		.fourcc   = V4L2_PIX_FMT_RGB32,
		.cxformat = ColorFormatRGB32 | ColorFormatBSWAP | ColorFormatWSWAP,
		.depth    = 32,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "4:2:2, packed, YUYV",
		.fourcc   = V4L2_PIX_FMT_YUYV,
		.cxformat = ColorFormatYUY2,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},{
		.name     = "4:2:2, packed, UYVY",
		.fourcc   = V4L2_PIX_FMT_UYVY,
		.cxformat = ColorFormatYUY2 | ColorFormatBSWAP,
		.depth    = 16,
		.flags    = FORMAT_FLAGS_PACKED,
	},
};

static struct cx8800_fmt* format_by_fourcc(unsigned int fourcc)
{
	unsigned int i;

	for (i = 0; i < ARRAY_SIZE(formats); i++)
		if (formats[i].fourcc == fourcc)
			return formats+i;
	return NULL;
}

/* ------------------------------------------------------------------- */

static const struct v4l2_queryctrl no_ctl = {
	.name  = "42",
	.flags = V4L2_CTRL_FLAG_DISABLED,
};

static struct cx88_ctrl cx8800_ctls[] = {
	/* --- video --- */
	{
		.v = {
			.id            = V4L2_CID_BRIGHTNESS,
			.name          = "Brightness",
			.minimum       = 0x00,
			.maximum       = 0xff,
			.step          = 1,
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			.default_value = 0x7f,
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			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
		.off                   = 128,
		.reg                   = MO_CONTR_BRIGHT,
		.mask                  = 0x00ff,
		.shift                 = 0,
	},{
		.v = {
			.id            = V4L2_CID_CONTRAST,
			.name          = "Contrast",
			.minimum       = 0,
			.maximum       = 0xff,
			.step          = 1,
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			.default_value = 0x3f,
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			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
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		.off                   = 0,
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		.reg                   = MO_CONTR_BRIGHT,
		.mask                  = 0xff00,
		.shift                 = 8,
	},{
		.v = {
			.id            = V4L2_CID_HUE,
			.name          = "Hue",
			.minimum       = 0,
			.maximum       = 0xff,
			.step          = 1,
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			.default_value = 0x7f,
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			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
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		.off                   = 128,
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		.reg                   = MO_HUE,
		.mask                  = 0x00ff,
		.shift                 = 0,
	},{
		/* strictly, this only describes only U saturation.
		 * V saturation is handled specially through code.
		 */
		.v = {
			.id            = V4L2_CID_SATURATION,
			.name          = "Saturation",
			.minimum       = 0,
			.maximum       = 0xff,
			.step          = 1,
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			.default_value = 0x7f,
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			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
		.off                   = 0,
		.reg                   = MO_UV_SATURATION,
		.mask                  = 0x00ff,
		.shift                 = 0,
	},{
	/* --- audio --- */
		.v = {
			.id            = V4L2_CID_AUDIO_MUTE,
			.name          = "Mute",
			.minimum       = 0,
			.maximum       = 1,
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			.default_value = 1,
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			.type          = V4L2_CTRL_TYPE_BOOLEAN,
		},
		.reg                   = AUD_VOL_CTL,
		.sreg                  = SHADOW_AUD_VOL_CTL,
		.mask                  = (1 << 6),
		.shift                 = 6,
	},{
		.v = {
			.id            = V4L2_CID_AUDIO_VOLUME,
			.name          = "Volume",
			.minimum       = 0,
			.maximum       = 0x3f,
			.step          = 1,
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			.default_value = 0x3f,
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			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
		.reg                   = AUD_VOL_CTL,
		.sreg                  = SHADOW_AUD_VOL_CTL,
		.mask                  = 0x3f,
		.shift                 = 0,
	},{
		.v = {
			.id            = V4L2_CID_AUDIO_BALANCE,
			.name          = "Balance",
			.minimum       = 0,
			.maximum       = 0x7f,
			.step          = 1,
			.default_value = 0x40,
			.type          = V4L2_CTRL_TYPE_INTEGER,
		},
		.reg                   = AUD_BAL_CTL,
		.sreg                  = SHADOW_AUD_BAL_CTL,
		.mask                  = 0x7f,
		.shift                 = 0,
	}
};
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static const int CX8800_CTLS = ARRAY_SIZE(cx8800_ctls);
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const u32 cx88_user_ctrls[] = {
	V4L2_CID_USER_CLASS,
	V4L2_CID_BRIGHTNESS,
	V4L2_CID_CONTRAST,
	V4L2_CID_SATURATION,
	V4L2_CID_HUE,
	V4L2_CID_AUDIO_VOLUME,
	V4L2_CID_AUDIO_BALANCE,
	V4L2_CID_AUDIO_MUTE,
	0
};
EXPORT_SYMBOL(cx88_user_ctrls);

static const u32 *ctrl_classes[] = {
	cx88_user_ctrls,
	NULL
};

int cx8800_ctrl_query(struct v4l2_queryctrl *qctrl)
{
	int i;

	if (qctrl->id < V4L2_CID_BASE ||
	    qctrl->id >= V4L2_CID_LASTP1)
		return -EINVAL;
	for (i = 0; i < CX8800_CTLS; i++)
		if (cx8800_ctls[i].v.id == qctrl->id)
			break;
	if (i == CX8800_CTLS) {
		*qctrl = no_ctl;
		return 0;
	}
	*qctrl = cx8800_ctls[i].v;
	return 0;
}
EXPORT_SYMBOL(cx8800_ctrl_query);

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/* ------------------------------------------------------------------- */
/* resource management                                                 */

static int res_get(struct cx8800_dev *dev, struct cx8800_fh *fh, unsigned int bit)
{
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	struct cx88_core *core = dev->core;
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	if (fh->resources & bit)
		/* have it already allocated */
		return 1;

	/* is it free? */
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	mutex_lock(&core->lock);
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	if (dev->resources & bit) {
		/* no, someone else uses it */
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		mutex_unlock(&core->lock);
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		return 0;
	}
	/* it's free, grab it */
	fh->resources  |= bit;
	dev->resources |= bit;
	dprintk(1,"res: get %d\n",bit);
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	mutex_unlock(&core->lock);
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	return 1;
}

static
int res_check(struct cx8800_fh *fh, unsigned int bit)
{
	return (fh->resources & bit);
}

static
int res_locked(struct cx8800_dev *dev, unsigned int bit)
{
	return (dev->resources & bit);
}

static
void res_free(struct cx8800_dev *dev, struct cx8800_fh *fh, unsigned int bits)
{
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	struct cx88_core *core = dev->core;
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	BUG_ON((fh->resources & bits) != bits);
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	mutex_lock(&core->lock);
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	fh->resources  &= ~bits;
	dev->resources &= ~bits;
	dprintk(1,"res: put %d\n",bits);
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	mutex_unlock(&core->lock);
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}

/* ------------------------------------------------------------------ */

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int cx88_video_mux(struct cx88_core *core, unsigned int input)
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{
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	/* struct cx88_core *core = dev->core; */
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	dprintk(1,"video_mux: %d [vmux=%d,gpio=0x%x,0x%x,0x%x,0x%x]\n",
		input, INPUT(input)->vmux,
		INPUT(input)->gpio0,INPUT(input)->gpio1,
		INPUT(input)->gpio2,INPUT(input)->gpio3);
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	core->input = input;
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	cx_andor(MO_INPUT_FORMAT, 0x03 << 14, INPUT(input)->vmux << 14);
	cx_write(MO_GP3_IO, INPUT(input)->gpio3);
	cx_write(MO_GP0_IO, INPUT(input)->gpio0);
	cx_write(MO_GP1_IO, INPUT(input)->gpio1);
	cx_write(MO_GP2_IO, INPUT(input)->gpio2);

	switch (INPUT(input)->type) {
	case CX88_VMUX_SVIDEO:
		cx_set(MO_AFECFG_IO,    0x00000001);
		cx_set(MO_INPUT_FORMAT, 0x00010010);
		cx_set(MO_FILTER_EVEN,  0x00002020);
		cx_set(MO_FILTER_ODD,   0x00002020);
		break;
	default:
		cx_clear(MO_AFECFG_IO,    0x00000001);
		cx_clear(MO_INPUT_FORMAT, 0x00010010);
		cx_clear(MO_FILTER_EVEN,  0x00002020);
		cx_clear(MO_FILTER_ODD,   0x00002020);
		break;
	}
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	if (cx88_boards[core->board].mpeg & CX88_MPEG_BLACKBIRD) {
		/* sets sound input from external adc */
		if (INPUT(input)->extadc)
			cx_set(AUD_CTL, EN_I2SIN_ENABLE);
		else
			cx_clear(AUD_CTL, EN_I2SIN_ENABLE);
	}
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	return 0;
}
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EXPORT_SYMBOL(cx88_video_mux);
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/* ------------------------------------------------------------------ */

static int start_video_dma(struct cx8800_dev    *dev,
			   struct cx88_dmaqueue *q,
			   struct cx88_buffer   *buf)
{
	struct cx88_core *core = dev->core;

	/* setup fifo + format */
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	cx88_sram_channel_setup(core, &cx88_sram_channels[SRAM_CH21],
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				buf->bpl, buf->risc.dma);
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	cx88_set_scale(core, buf->vb.width, buf->vb.height, buf->vb.field);
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	cx_write(MO_COLOR_CTRL, buf->fmt->cxformat | ColorFormatGamma);

	/* reset counter */
	cx_write(MO_VIDY_GPCNTRL,GP_COUNT_CONTROL_RESET);
	q->count = 1;

	/* enable irqs */
	cx_set(MO_PCI_INTMSK, core->pci_irqmask | 0x01);
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	/* Enables corresponding bits at PCI_INT_STAT:
		bits 0 to 4: video, audio, transport stream, VIP, Host
		bit 7: timer
		bits 8 and 9: DMA complete for: SRC, DST
		bits 10 and 11: BERR signal asserted for RISC: RD, WR
		bits 12 to 15: BERR signal asserted for: BRDG, SRC, DST, IPB
	 */
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	cx_set(MO_VID_INTMSK, 0x0f0011);

	/* enable capture */
	cx_set(VID_CAPTURE_CONTROL,0x06);

	/* start dma */
	cx_set(MO_DEV_CNTRL2, (1<<5));
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	cx_set(MO_VID_DMACNTRL, 0x11); /* Planar Y and packed FIFO and RISC enable */
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	return 0;
}

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#ifdef CONFIG_PM
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static int stop_video_dma(struct cx8800_dev    *dev)
{
	struct cx88_core *core = dev->core;

	/* stop dma */
	cx_clear(MO_VID_DMACNTRL, 0x11);

	/* disable capture */
	cx_clear(VID_CAPTURE_CONTROL,0x06);

	/* disable irqs */
	cx_clear(MO_PCI_INTMSK, 0x000001);
	cx_clear(MO_VID_INTMSK, 0x0f0011);
	return 0;
}
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#endif
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static int restart_video_queue(struct cx8800_dev    *dev,
			       struct cx88_dmaqueue *q)
{
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	struct cx88_core *core = dev->core;
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	struct cx88_buffer *buf, *prev;
	struct list_head *item;

	if (!list_empty(&q->active)) {
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		buf = list_entry(q->active.next, struct cx88_buffer, vb.queue);
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		dprintk(2,"restart_queue [%p/%d]: restart dma\n",
			buf, buf->vb.i);
		start_video_dma(dev, q, buf);
		list_for_each(item,&q->active) {
			buf = list_entry(item, struct cx88_buffer, vb.queue);
			buf->count    = q->count++;
		}
		mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
		return 0;
	}

	prev = NULL;
	for (;;) {
		if (list_empty(&q->queued))
			return 0;
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		buf = list_entry(q->queued.next, struct cx88_buffer, vb.queue);
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		if (NULL == prev) {
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			list_move_tail(&buf->vb.queue, &q->active);
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			start_video_dma(dev, q, buf);
			buf->vb.state = STATE_ACTIVE;
			buf->count    = q->count++;
			mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
			dprintk(2,"[%p/%d] restart_queue - first active\n",
				buf,buf->vb.i);

		} else if (prev->vb.width  == buf->vb.width  &&
			   prev->vb.height == buf->vb.height &&
			   prev->fmt       == buf->fmt) {
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			list_move_tail(&buf->vb.queue, &q->active);
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			buf->vb.state = STATE_ACTIVE;
			buf->count    = q->count++;
			prev->risc.jmp[1] = cpu_to_le32(buf->risc.dma);
			dprintk(2,"[%p/%d] restart_queue - move to active\n",
				buf,buf->vb.i);
		} else {
			return 0;
		}
		prev = buf;
	}
}

/* ------------------------------------------------------------------ */

static int
buffer_setup(struct videobuf_queue *q, unsigned int *count, unsigned int *size)
{
	struct cx8800_fh *fh = q->priv_data;

	*size = fh->fmt->depth*fh->width*fh->height >> 3;
	if (0 == *count)
		*count = 32;
	while (*size * *count > vid_limit * 1024 * 1024)
		(*count)--;
	return 0;
}

static int
buffer_prepare(struct videobuf_queue *q, struct videobuf_buffer *vb,
	       enum v4l2_field field)
{
	struct cx8800_fh   *fh  = q->priv_data;
	struct cx8800_dev  *dev = fh->dev;
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	struct cx88_core *core = dev->core;
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	struct cx88_buffer *buf = container_of(vb,struct cx88_buffer,vb);
	int rc, init_buffer = 0;

	BUG_ON(NULL == fh->fmt);
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	if (fh->width  < 48 || fh->width  > norm_maxw(core->tvnorm) ||
	    fh->height < 32 || fh->height > norm_maxh(core->tvnorm))
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		return -EINVAL;
	buf->vb.size = (fh->width * fh->height * fh->fmt->depth) >> 3;
	if (0 != buf->vb.baddr  &&  buf->vb.bsize < buf->vb.size)
		return -EINVAL;

	if (buf->fmt       != fh->fmt    ||
	    buf->vb.width  != fh->width  ||
	    buf->vb.height != fh->height ||
	    buf->vb.field  != field) {
		buf->fmt       = fh->fmt;
		buf->vb.width  = fh->width;
		buf->vb.height = fh->height;
		buf->vb.field  = field;
		init_buffer = 1;
	}

	if (STATE_NEEDS_INIT == buf->vb.state) {
		init_buffer = 1;
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		if (0 != (rc = videobuf_iolock(q,&buf->vb,NULL)))
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			goto fail;
	}

	if (init_buffer) {
		buf->bpl = buf->vb.width * buf->fmt->depth >> 3;
		switch (buf->vb.field) {
		case V4L2_FIELD_TOP:
			cx88_risc_buffer(dev->pci, &buf->risc,
					 buf->vb.dma.sglist, 0, UNSET,
					 buf->bpl, 0, buf->vb.height);
			break;
		case V4L2_FIELD_BOTTOM:
			cx88_risc_buffer(dev->pci, &buf->risc,
					 buf->vb.dma.sglist, UNSET, 0,
					 buf->bpl, 0, buf->vb.height);
			break;
		case V4L2_FIELD_INTERLACED:
			cx88_risc_buffer(dev->pci, &buf->risc,
					 buf->vb.dma.sglist, 0, buf->bpl,
					 buf->bpl, buf->bpl,
					 buf->vb.height >> 1);
			break;
		case V4L2_FIELD_SEQ_TB:
			cx88_risc_buffer(dev->pci, &buf->risc,
					 buf->vb.dma.sglist,
					 0, buf->bpl * (buf->vb.height >> 1),
					 buf->bpl, 0,
					 buf->vb.height >> 1);
			break;
		case V4L2_FIELD_SEQ_BT:
			cx88_risc_buffer(dev->pci, &buf->risc,
					 buf->vb.dma.sglist,
					 buf->bpl * (buf->vb.height >> 1), 0,
					 buf->bpl, 0,
					 buf->vb.height >> 1);
			break;
		default:
			BUG();
		}
	}
	dprintk(2,"[%p/%d] buffer_prepare - %dx%d %dbpp \"%s\" - dma=0x%08lx\n",
		buf, buf->vb.i,
		fh->width, fh->height, fh->fmt->depth, fh->fmt->name,
		(unsigned long)buf->risc.dma);

	buf->vb.state = STATE_PREPARED;
	return 0;

 fail:
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	cx88_free_buffer(q,buf);
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	return rc;
}

static void
buffer_queue(struct videobuf_queue *vq, struct videobuf_buffer *vb)
{
	struct cx88_buffer    *buf = container_of(vb,struct cx88_buffer,vb);
	struct cx88_buffer    *prev;
	struct cx8800_fh      *fh   = vq->priv_data;
	struct cx8800_dev     *dev  = fh->dev;
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	struct cx88_core      *core = dev->core;
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	struct cx88_dmaqueue  *q    = &dev->vidq;

	/* add jump to stopper */
	buf->risc.jmp[0] = cpu_to_le32(RISC_JUMP | RISC_IRQ1 | RISC_CNT_INC);
	buf->risc.jmp[1] = cpu_to_le32(q->stopper.dma);

	if (!list_empty(&q->queued)) {
		list_add_tail(&buf->vb.queue,&q->queued);
		buf->vb.state = STATE_QUEUED;
		dprintk(2,"[%p/%d] buffer_queue - append to queued\n",
			buf, buf->vb.i);

	} else if (list_empty(&q->active)) {
		list_add_tail(&buf->vb.queue,&q->active);
		start_video_dma(dev, q, buf);
		buf->vb.state = STATE_ACTIVE;
		buf->count    = q->count++;
		mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
		dprintk(2,"[%p/%d] buffer_queue - first active\n",
			buf, buf->vb.i);

	} else {
		prev = list_entry(q->active.prev, struct cx88_buffer, vb.queue);
		if (prev->vb.width  == buf->vb.width  &&
		    prev->vb.height == buf->vb.height &&
		    prev->fmt       == buf->fmt) {
			list_add_tail(&buf->vb.queue,&q->active);
			buf->vb.state = STATE_ACTIVE;
			buf->count    = q->count++;
			prev->risc.jmp[1] = cpu_to_le32(buf->risc.dma);
			dprintk(2,"[%p/%d] buffer_queue - append to active\n",
				buf, buf->vb.i);

		} else {
			list_add_tail(&buf->vb.queue,&q->queued);
			buf->vb.state = STATE_QUEUED;
			dprintk(2,"[%p/%d] buffer_queue - first queued\n",
				buf, buf->vb.i);
		}
	}
}

static void buffer_release(struct videobuf_queue *q, struct videobuf_buffer *vb)
{
	struct cx88_buffer *buf = container_of(vb,struct cx88_buffer,vb);

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	cx88_free_buffer(q,buf);
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}

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static struct videobuf_queue_ops cx8800_video_qops = {
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	.buf_setup    = buffer_setup,
	.buf_prepare  = buffer_prepare,
	.buf_queue    = buffer_queue,
	.buf_release  = buffer_release,
};

/* ------------------------------------------------------------------ */


/* ------------------------------------------------------------------ */

static struct videobuf_queue* get_queue(struct cx8800_fh *fh)
{
	switch (fh->type) {
	case V4L2_BUF_TYPE_VIDEO_CAPTURE:
		return &fh->vidq;
	case V4L2_BUF_TYPE_VBI_CAPTURE:
		return &fh->vbiq;
	default:
		BUG();
		return NULL;
	}
}

static int get_ressource(struct cx8800_fh *fh)
{
	switch (fh->type) {
	case V4L2_BUF_TYPE_VIDEO_CAPTURE:
		return RESOURCE_VIDEO;
	case V4L2_BUF_TYPE_VBI_CAPTURE:
		return RESOURCE_VBI;
	default:
		BUG();
		return 0;
	}
}

static int video_open(struct inode *inode, struct file *file)
{
	int minor = iminor(inode);
	struct cx8800_dev *h,*dev = NULL;
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	struct cx88_core *core;
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	struct cx8800_fh *fh;
	struct list_head *list;
	enum v4l2_buf_type type = 0;
	int radio = 0;

	list_for_each(list,&cx8800_devlist) {
		h = list_entry(list, struct cx8800_dev, devlist);
		if (h->video_dev->minor == minor) {
			dev  = h;
			type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
		}
		if (h->vbi_dev->minor == minor) {
			dev  = h;
			type = V4L2_BUF_TYPE_VBI_CAPTURE;
		}
		if (h->radio_dev &&
		    h->radio_dev->minor == minor) {
			radio = 1;
			dev   = h;
		}
	}
	if (NULL == dev)
		return -ENODEV;

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	core = dev->core;

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	dprintk(1,"open minor=%d radio=%d type=%s\n",
		minor,radio,v4l2_type_names[type]);

	/* allocate + initialize per filehandle data */
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	fh = kzalloc(sizeof(*fh),GFP_KERNEL);
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	if (NULL == fh)
		return -ENOMEM;
	file->private_data = fh;
	fh->dev      = dev;
	fh->radio    = radio;
	fh->type     = type;
	fh->width    = 320;
	fh->height   = 240;
	fh->fmt      = format_by_fourcc(V4L2_PIX_FMT_BGR24);

	videobuf_queue_init(&fh->vidq, &cx8800_video_qops,
			    dev->pci, &dev->slock,
			    V4L2_BUF_TYPE_VIDEO_CAPTURE,
			    V4L2_FIELD_INTERLACED,
			    sizeof(struct cx88_buffer),
			    fh);
	videobuf_queue_init(&fh->vbiq, &cx8800_vbi_qops,
			    dev->pci, &dev->slock,
			    V4L2_BUF_TYPE_VBI_CAPTURE,
			    V4L2_FIELD_SEQ_TB,
			    sizeof(struct cx88_buffer),
			    fh);

	if (fh->radio) {
		int board = core->board;
		dprintk(1,"video_open: setting radio device\n");
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		cx_write(MO_GP3_IO, cx88_boards[board].radio.gpio3);
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		cx_write(MO_GP0_IO, cx88_boards[board].radio.gpio0);
		cx_write(MO_GP1_IO, cx88_boards[board].radio.gpio1);
		cx_write(MO_GP2_IO, cx88_boards[board].radio.gpio2);
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		core->tvaudio = WW_FM;
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		cx88_set_tvaudio(core);
		cx88_set_stereo(core,V4L2_TUNER_MODE_STEREO,1);
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		cx88_call_i2c_clients(core,AUDC_SET_RADIO,NULL);
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	}

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	return 0;
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}

static ssize_t
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video_read(struct file *file, char __user *data, size_t count, loff_t *ppos)
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{
	struct cx8800_fh *fh = file->private_data;

	switch (fh->type) {
	case V4L2_BUF_TYPE_VIDEO_CAPTURE:
		if (res_locked(fh->dev,RESOURCE_VIDEO))
			return -EBUSY;
		return videobuf_read_one(&fh->vidq, data, count, ppos,
					 file->f_flags & O_NONBLOCK);
	case V4L2_BUF_TYPE_VBI_CAPTURE:
		if (!res_get(fh->dev,fh,RESOURCE_VBI))
			return -EBUSY;
		return videobuf_read_stream(&fh->vbiq, data, count, ppos, 1,
					    file->f_flags & O_NONBLOCK);
	default:
		BUG();
		return 0;
	}
}

static unsigned int
video_poll(struct file *file, struct poll_table_struct *wait)
{
	struct cx8800_fh *fh = file->private_data;
	struct cx88_buffer *buf;

	if (V4L2_BUF_TYPE_VBI_CAPTURE == fh->type) {
		if (!res_get(fh->dev,fh,RESOURCE_VBI))
			return POLLERR;
		return videobuf_poll_stream(file, &fh->vbiq, wait);
	}

	if (res_check(fh,RESOURCE_VIDEO)) {
		/* streaming capture */
		if (list_empty(&fh->vidq.stream))
			return POLLERR;
		buf = list_entry(fh->vidq.stream.next,struct cx88_buffer,vb.stream);
	} else {
		/* read() capture */
		buf = (struct cx88_buffer*)fh->vidq.read_buf;
		if (NULL == buf)
			return POLLERR;
	}
	poll_wait(file, &buf->vb.done, wait);
	if (buf->vb.state == STATE_DONE ||
	    buf->vb.state == STATE_ERROR)
		return POLLIN|POLLRDNORM;
	return 0;
}

static int video_release(struct inode *inode, struct file *file)
{
	struct cx8800_fh  *fh  = file->private_data;
	struct cx8800_dev *dev = fh->dev;

	/* turn off overlay */
	if (res_check(fh, RESOURCE_OVERLAY)) {
		/* FIXME */
		res_free(dev,fh,RESOURCE_OVERLAY);
	}

	/* stop video capture */
	if (res_check(fh, RESOURCE_VIDEO)) {
		videobuf_queue_cancel(&fh->vidq);
		res_free(dev,fh,RESOURCE_VIDEO);
	}
	if (fh->vidq.read_buf) {
		buffer_release(&fh->vidq,fh->vidq.read_buf);
		kfree(fh->vidq.read_buf);
	}

	/* stop vbi capture */
	if (res_check(fh, RESOURCE_VBI)) {
		if (fh->vbiq.streaming)
			videobuf_streamoff(&fh->vbiq);
		if (fh->vbiq.reading)
			videobuf_read_stop(&fh->vbiq);
		res_free(dev,fh,RESOURCE_VBI);
	}

	videobuf_mmap_free(&fh->vidq);
	videobuf_mmap_free(&fh->vbiq);
	file->private_data = NULL;
	kfree(fh);
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	cx88_call_i2c_clients (dev->core, TUNER_SET_STANDBY, NULL);

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	return 0;
}

static int
video_mmap(struct file *file, struct vm_area_struct * vma)
{
	struct cx8800_fh *fh = file->private_data;

	return videobuf_mmap_mapper(get_queue(fh), vma);
}

/* ------------------------------------------------------------------ */
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/* VIDEO CTRL IOCTLS                                                  */
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int cx88_get_control (struct cx88_core  *core, struct v4l2_control *ctl)
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{
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	struct cx88_ctrl  *c    = NULL;
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	u32 value;
	int i;

	for (i = 0; i < CX8800_CTLS; i++)
		if (cx8800_ctls[i].v.id == ctl->id)
			c = &cx8800_ctls[i];
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	if (unlikely(NULL == c))
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		return -EINVAL;

	value = c->sreg ? cx_sread(c->sreg) : cx_read(c->reg);
	switch (ctl->id) {
	case V4L2_CID_AUDIO_BALANCE:
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		ctl->value = ((value & 0x7f) < 0x40) ? ((value & 0x7f) + 0x40)
					: (0x7f - (value & 0x7f));
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		break;
	case V4L2_CID_AUDIO_VOLUME:
		ctl->value = 0x3f - (value & 0x3f);
		break;
	default:
		ctl->value = ((value + (c->off << c->shift)) & c->mask) >> c->shift;
		break;
	}
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	dprintk(1,"get_control id=0x%X(%s) ctrl=0x%02x, reg=0x%02x val=0x%02x (mask 0x%02x)%s\n",
				ctl->id, c->v.name, ctl->value, c->reg,
				value,c->mask, c->sreg ? " [shadowed]" : "");
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	return 0;
}
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EXPORT_SYMBOL(cx88_get_control);
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int cx88_set_control(struct cx88_core *core, struct v4l2_control *ctl)
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{
	struct cx88_ctrl *c = NULL;
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	u32 value,mask;
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	int i;
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	for (i = 0; i < CX8800_CTLS; i++) {
		if (cx8800_ctls[i].v.id == ctl->id) {
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			c = &cx8800_ctls[i];
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		}
	}
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	if (unlikely(NULL == c))
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		return -EINVAL;

	if (ctl->value < c->v.minimum)
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		ctl->value = c->v.minimum;
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	if (ctl->value > c->v.maximum)
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		ctl->value = c->v.maximum;
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	mask=c->mask;
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	switch (ctl->id) {
	case V4L2_CID_AUDIO_BALANCE:
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		value = (ctl->value < 0x40) ? (0x7f - ctl->value) : (ctl->value - 0x40);
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		break;
	case V4L2_CID_AUDIO_VOLUME:
		value = 0x3f - (ctl->value & 0x3f);
		break;
	case V4L2_CID_SATURATION:
		/* special v_sat handling */
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		value = ((ctl->value - c->off) << c->shift) & c->mask;

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		if (core->tvnorm & V4L2_STD_SECAM) {
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			/* For SECAM, both U and V sat should be equal */
			value=value<<8|value;
		} else {
			/* Keeps U Saturation proportional to V Sat */
			value=(value*0x5a)/0x7f<<8|value;
		}
		mask=0xffff;
		break;
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	default:
		value = ((ctl->value - c->off) << c->shift) & c->mask;
		break;
	}
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	dprintk(1,"set_control id=0x%X(%s) ctrl=0x%02x, reg=0x%02x val=0x%02x (mask 0x%02x)%s\n",
				ctl->id, c->v.name, ctl->value, c->reg, value,
				mask, c->sreg ? " [shadowed]" : "");
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	if (c->sreg) {
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		cx_sandor(c->sreg, c->reg, mask, value);
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	} else {
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		cx_andor(c->reg, mask, value);
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	}
	return 0;
}
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EXPORT_SYMBOL(cx88_set_control);
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static void init_controls(struct cx88_core *core)
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{
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	struct v4l2_control ctrl;
	int i;
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	for (i = 0; i < CX8800_CTLS; i++) {
		ctrl.id=cx8800_ctls[i].v.id;
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		ctrl.value=cx8800_ctls[i].v.default_value;
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		cx88_set_control(core, &ctrl);
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	}
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}

/* ------------------------------------------------------------------ */
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/* VIDEO IOCTLS                                                       */
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static int vidioc_g_fmt_cap (struct file *file, void *priv,
					struct v4l2_format *f)
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{
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	struct cx8800_fh  *fh   = priv;

	f->fmt.pix.width        = fh->width;
	f->fmt.pix.height       = fh->height;
	f->fmt.pix.field        = fh->vidq.field;
	f->fmt.pix.pixelformat  = fh->fmt->fourcc;
	f->fmt.pix.bytesperline =
		(f->fmt.pix.width * fh->fmt->depth) >> 3;
	f->fmt.pix.sizeimage =
		f->fmt.pix.height * f->fmt.pix.bytesperline;
	return 0;
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}

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static int vidioc_try_fmt_cap (struct file *file, void *priv,
			struct v4l2_format *f)
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{
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	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
	struct cx8800_fmt *fmt;
	enum v4l2_field   field;
	unsigned int      maxw, maxh;
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	fmt = format_by_fourcc(f->fmt.pix.pixelformat);
	if (NULL == fmt)
		return -EINVAL;
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	field = f->fmt.pix.field;
	maxw  = norm_maxw(core->tvnorm);
	maxh  = norm_maxh(core->tvnorm);
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	if (V4L2_FIELD_ANY == field) {
		field = (f->fmt.pix.height > maxh/2)
			? V4L2_FIELD_INTERLACED
			: V4L2_FIELD_BOTTOM;
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	}
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	switch (field) {
	case V4L2_FIELD_TOP:
	case V4L2_FIELD_BOTTOM:
		maxh = maxh / 2;
		break;
	case V4L2_FIELD_INTERLACED:
		break;
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	default:
		return -EINVAL;
	}
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	f->fmt.pix.field = field;
	if (f->fmt.pix.height < 32)
		f->fmt.pix.height = 32;
	if (f->fmt.pix.height > maxh)
		f->fmt.pix.height = maxh;
	if (f->fmt.pix.width < 48)
		f->fmt.pix.width = 48;
	if (f->fmt.pix.width > maxw)
		f->fmt.pix.width = maxw;
	f->fmt.pix.width &= ~0x03;
	f->fmt.pix.bytesperline =
		(f->fmt.pix.width * fmt->depth) >> 3;
	f->fmt.pix.sizeimage =
		f->fmt.pix.height * f->fmt.pix.bytesperline;

	return 0;
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}

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static int vidioc_s_fmt_cap (struct file *file, void *priv,
					struct v4l2_format *f)
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{
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	struct cx8800_fh  *fh   = priv;
	int err = vidioc_try_fmt_cap (file,priv,f);

	if (0 != err)
		return err;
	fh->fmt        = format_by_fourcc(f->fmt.pix.pixelformat);
	fh->width      = f->fmt.pix.width;
	fh->height     = f->fmt.pix.height;
	fh->vidq.field = f->fmt.pix.field;
	return 0;
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}

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static int vidioc_querycap (struct file *file, void  *priv,
					struct v4l2_capability *cap)
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{
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	struct cx8800_dev *dev  = ((struct cx8800_fh *)priv)->dev;
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	struct cx88_core  *core = dev->core;

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	strcpy(cap->driver, "cx8800");
	strlcpy(cap->card, cx88_boards[core->board].name,
		sizeof(cap->card));
	sprintf(cap->bus_info,"PCI:%s",pci_name(dev->pci));
	cap->version = CX88_VERSION_CODE;
	cap->capabilities =
		V4L2_CAP_VIDEO_CAPTURE |
		V4L2_CAP_READWRITE     |
		V4L2_CAP_STREAMING     |
		V4L2_CAP_VBI_CAPTURE;
	if (UNSET != core->tuner_type)
		cap->capabilities |= V4L2_CAP_TUNER;
	return 0;
}
1096

1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107
static int vidioc_enum_fmt_cap (struct file *file, void  *priv,
					struct v4l2_fmtdesc *f)
{
	if (unlikely(f->index >= ARRAY_SIZE(formats)))
		return -EINVAL;

	strlcpy(f->description,formats[f->index].name,sizeof(f->description));
	f->pixelformat = formats[f->index].fourcc;

	return 0;
}
L
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1108

1109
#ifdef CONFIG_VIDEO_V4L1_COMPAT
1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131
static int vidiocgmbuf (struct file *file, void *priv, struct video_mbuf *mbuf)
{
	struct cx8800_fh           *fh   = priv;
	struct videobuf_queue      *q;
	struct v4l2_requestbuffers req;
	unsigned int i;
	int err;

	q = get_queue(fh);
	memset(&req,0,sizeof(req));
	req.type   = q->type;
	req.count  = 8;
	req.memory = V4L2_MEMORY_MMAP;
	err = videobuf_reqbufs(q,&req);
	if (err < 0)
		return err;

	mbuf->frames = req.count;
	mbuf->size   = 0;
	for (i = 0; i < mbuf->frames; i++) {
		mbuf->offsets[i]  = q->bufs[i]->boff;
		mbuf->size       += q->bufs[i]->bsize;
1132
	}
1133 1134
	return 0;
}
1135
#endif
1136

1137 1138 1139 1140 1141
static int vidioc_reqbufs (struct file *file, void *priv, struct v4l2_requestbuffers *p)
{
	struct cx8800_fh  *fh   = priv;
	return (videobuf_reqbufs(get_queue(fh), p));
}
1142

1143 1144 1145 1146 1147
static int vidioc_querybuf (struct file *file, void *priv, struct v4l2_buffer *p)
{
	struct cx8800_fh  *fh   = priv;
	return (videobuf_querybuf(get_queue(fh), p));
}
1148

1149 1150 1151 1152 1153
static int vidioc_qbuf (struct file *file, void *priv, struct v4l2_buffer *p)
{
	struct cx8800_fh  *fh   = priv;
	return (videobuf_qbuf(get_queue(fh), p));
}
1154

1155 1156 1157 1158 1159 1160
static int vidioc_dqbuf (struct file *file, void *priv, struct v4l2_buffer *p)
{
	struct cx8800_fh  *fh   = priv;
	return (videobuf_dqbuf(get_queue(fh), p,
				file->f_flags & O_NONBLOCK));
}
1161

1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192
static int vidioc_streamon(struct file *file, void *priv, enum v4l2_buf_type i)
{
	struct cx8800_fh  *fh   = priv;
	struct cx8800_dev *dev  = fh->dev;

	if (unlikely(fh->type != V4L2_BUF_TYPE_VIDEO_CAPTURE))
		return -EINVAL;
	if (unlikely(i != fh->type))
		return -EINVAL;

	if (unlikely(!res_get(dev,fh,get_ressource(fh))))
		return -EBUSY;
	return videobuf_streamon(get_queue(fh));
}

static int vidioc_streamoff(struct file *file, void *priv, enum v4l2_buf_type i)
{
	struct cx8800_fh  *fh   = priv;
	struct cx8800_dev *dev  = fh->dev;
	int               err, res;

	if (fh->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
		return -EINVAL;
	if (i != fh->type)
		return -EINVAL;

	res = get_ressource(fh);
	err = videobuf_streamoff(get_queue(fh));
	if (err < 0)
		return err;
	res_free(dev,fh,res);
1193 1194 1195
	return 0;
}

1196
static int vidioc_s_std (struct file *file, void *priv, v4l2_std_id *tvnorms)
1197
{
1198
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
1199

1200
	mutex_lock(&core->lock);
1201
	cx88_set_tvnorm(core,*tvnorms);
1202
	mutex_unlock(&core->lock);
1203

1204 1205
	return 0;
}
L
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1207
/* only one input in this sample driver */
1208
int cx88_enum_input (struct cx88_core  *core,struct v4l2_input *i)
1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221
{
	static const char *iname[] = {
		[ CX88_VMUX_COMPOSITE1 ] = "Composite1",
		[ CX88_VMUX_COMPOSITE2 ] = "Composite2",
		[ CX88_VMUX_COMPOSITE3 ] = "Composite3",
		[ CX88_VMUX_COMPOSITE4 ] = "Composite4",
		[ CX88_VMUX_SVIDEO     ] = "S-Video",
		[ CX88_VMUX_TELEVISION ] = "Television",
		[ CX88_VMUX_CABLE      ] = "Cable TV",
		[ CX88_VMUX_DVB        ] = "DVB",
		[ CX88_VMUX_DEBUG      ] = "for debug only",
	};
	unsigned int n;
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1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234
	n = i->index;
	if (n >= 4)
		return -EINVAL;
	if (0 == INPUT(n)->type)
		return -EINVAL;
	memset(i,0,sizeof(*i));
	i->index = n;
	i->type  = V4L2_INPUT_TYPE_CAMERA;
	strcpy(i->name,iname[INPUT(n)->type]);
	if ((CX88_VMUX_TELEVISION == INPUT(n)->type) ||
		(CX88_VMUX_CABLE      == INPUT(n)->type))
		i->type = V4L2_INPUT_TYPE_TUNER;
1235
		i->std = CX88_NORMS;
1236 1237
	return 0;
}
1238 1239 1240 1241 1242 1243 1244 1245
EXPORT_SYMBOL(cx88_enum_input);

static int vidioc_enum_input (struct file *file, void *priv,
				struct v4l2_input *i)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
	return cx88_enum_input (core,i);
}
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1247 1248 1249
static int vidioc_g_input (struct file *file, void *priv, unsigned int *i)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
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1251 1252 1253
	*i = core->input;
	return 0;
}
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1255 1256 1257
static int vidioc_s_input (struct file *file, void *priv, unsigned int i)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
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1259 1260
	if (i >= 4)
		return -EINVAL;
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1262 1263
	mutex_lock(&core->lock);
	cx88_newstation(core);
1264
	cx88_video_mux(core,i);
1265 1266 1267
	mutex_unlock(&core->lock);
	return 0;
}
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1271 1272 1273 1274 1275 1276 1277 1278
static int vidioc_queryctrl (struct file *file, void *priv,
				struct v4l2_queryctrl *qctrl)
{
	qctrl->id = v4l2_ctrl_next(ctrl_classes, qctrl->id);
	if (unlikely(qctrl->id == 0))
		return -EINVAL;
	return cx8800_ctrl_query(qctrl);
}
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1280
static int vidioc_g_ctrl (struct file *file, void *priv,
1281 1282 1283
				struct v4l2_control *ctl)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
1284 1285 1286
	return
		cx88_get_control(core,ctl);
}
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1288 1289 1290 1291
static int vidioc_s_ctrl (struct file *file, void *priv,
				struct v4l2_control *ctl)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
1292
	return
1293
		cx88_set_control(core,ctl);
1294 1295 1296 1297 1298 1299 1300
}

static int vidioc_g_tuner (struct file *file, void *priv,
				struct v4l2_tuner *t)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
	u32 reg;
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1302 1303
	if (unlikely(UNSET == core->tuner_type))
		return -EINVAL;
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1305 1306 1307 1308
	strcpy(t->name, "Television");
	t->type       = V4L2_TUNER_ANALOG_TV;
	t->capability = V4L2_TUNER_CAP_NORM;
	t->rangehigh  = 0xffffffffUL;
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1310 1311 1312 1313 1314
	cx88_get_stereo(core ,t);
	reg = cx_read(MO_DEVICE_STATUS);
	t->signal = (reg & (1<<5)) ? 0xffff : 0x0000;
	return 0;
}
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1316 1317 1318 1319
static int vidioc_s_tuner (struct file *file, void *priv,
				struct v4l2_tuner *t)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
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1321 1322 1323 1324
	if (UNSET == core->tuner_type)
		return -EINVAL;
	if (0 != t->index)
		return -EINVAL;
1325

1326 1327 1328
	cx88_set_stereo(core, t->audmode, 1);
	return 0;
}
1329

1330 1331 1332 1333 1334
static int vidioc_g_frequency (struct file *file, void *priv,
				struct v4l2_frequency *f)
{
	struct cx8800_fh  *fh   = priv;
	struct cx88_core  *core = fh->dev->core;
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1336 1337 1338 1339 1340 1341 1342 1343
	if (unlikely(UNSET == core->tuner_type))
		return -EINVAL;

	/* f->type = fh->radio ? V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV; */
	f->type = fh->radio ? V4L2_TUNER_RADIO : V4L2_TUNER_ANALOG_TV;
	f->frequency = core->freq;

	cx88_call_i2c_clients(core,VIDIOC_G_FREQUENCY,f);
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	return 0;
}

1348
int cx88_set_freq (struct cx88_core  *core,
1349
				struct v4l2_frequency *f)
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{
1351 1352 1353 1354
	if (unlikely(UNSET == core->tuner_type))
		return -EINVAL;
	if (unlikely(f->tuner != 0))
		return -EINVAL;
1355

1356 1357 1358 1359
	mutex_lock(&core->lock);
	core->freq = f->frequency;
	cx88_newstation(core);
	cx88_call_i2c_clients(core,VIDIOC_S_FREQUENCY,f);
1360

1361 1362 1363
	/* When changing channels it is required to reset TVAUDIO */
	msleep (10);
	cx88_set_tvaudio(core);
1364

1365
	mutex_unlock(&core->lock);
1366

1367
	return 0;
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}
1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384
EXPORT_SYMBOL(cx88_set_freq);

static int vidioc_s_frequency (struct file *file, void *priv,
				struct v4l2_frequency *f)
{
	struct cx8800_fh  *fh   = priv;
	struct cx88_core  *core = fh->dev->core;

	if (unlikely(0 == fh->radio && f->type != V4L2_TUNER_ANALOG_TV))
		return -EINVAL;
	if (unlikely(1 == fh->radio && f->type != V4L2_TUNER_RADIO))
		return -EINVAL;

	return
		cx88_set_freq (core,f);
}
L
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1386 1387 1388

/* ----------------------------------------------------------- */
/* RADIO ESPECIFIC IOCTLS                                      */
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/* ----------------------------------------------------------- */

1391 1392
static int radio_querycap (struct file *file, void  *priv,
					struct v4l2_capability *cap)
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{
1394
	struct cx8800_dev *dev  = ((struct cx8800_fh *)priv)->dev;
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	struct cx88_core  *core = dev->core;

1397 1398 1399 1400 1401 1402 1403 1404
	strcpy(cap->driver, "cx8800");
	strlcpy(cap->card, cx88_boards[core->board].name,
		sizeof(cap->card));
	sprintf(cap->bus_info,"PCI:%s", pci_name(dev->pci));
	cap->version = CX88_VERSION_CODE;
	cap->capabilities = V4L2_CAP_TUNER;
	return 0;
}
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1406 1407 1408 1409
static int radio_g_tuner (struct file *file, void *priv,
				struct v4l2_tuner *t)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
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1411 1412
	if (unlikely(t->index > 0))
		return -EINVAL;
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1414 1415
	strcpy(t->name, "Radio");
	t->type = V4L2_TUNER_RADIO;
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1417 1418 1419
	cx88_call_i2c_clients(core,VIDIOC_G_TUNER,t);
	return 0;
}
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1421 1422 1423 1424 1425 1426 1427
static int radio_enum_input (struct file *file, void *priv,
				struct v4l2_input *i)
{
	if (i->index != 0)
		return -EINVAL;
	strcpy(i->name,"Radio");
	i->type = V4L2_INPUT_TYPE_TUNER;
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1429 1430
	return 0;
}
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1432 1433 1434 1435
static int radio_g_audio (struct file *file, void *priv, struct v4l2_audio *a)
{
	if (unlikely(a->index))
		return -EINVAL;
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1437 1438 1439 1440
	memset(a,0,sizeof(*a));
	strcpy(a->name,"Radio");
	return 0;
}
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1441

1442
/* FIXME: Should add a standard for radio */
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1444 1445 1446 1447
static int radio_s_tuner (struct file *file, void *priv,
				struct v4l2_tuner *t)
{
	struct cx88_core  *core = ((struct cx8800_fh *)priv)->dev->core;
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1449 1450
	if (0 != t->index)
		return -EINVAL;
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1452
	cx88_call_i2c_clients(core,VIDIOC_S_TUNER,t);
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1454 1455
	return 0;
}
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1457 1458 1459 1460 1461
static int radio_s_audio (struct file *file, void *fh,
			  struct v4l2_audio *a)
{
	return 0;
}
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1463 1464
static int radio_s_input (struct file *file, void *fh, unsigned int i)
{
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1465
	return 0;
1466
}
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1468 1469
static int radio_queryctrl (struct file *file, void *priv,
			    struct v4l2_queryctrl *c)
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{
1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484
	int i;

	if (c->id <  V4L2_CID_BASE ||
		c->id >= V4L2_CID_LASTP1)
		return -EINVAL;
	if (c->id == V4L2_CID_AUDIO_MUTE) {
		for (i = 0; i < CX8800_CTLS; i++)
			if (cx8800_ctls[i].v.id == c->id)
				break;
		*c = cx8800_ctls[i].v;
	} else
		*c = no_ctl;
	return 0;
}
L
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1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495

/* ----------------------------------------------------------- */

static void cx8800_vid_timeout(unsigned long data)
{
	struct cx8800_dev *dev = (struct cx8800_dev*)data;
	struct cx88_core *core = dev->core;
	struct cx88_dmaqueue *q = &dev->vidq;
	struct cx88_buffer *buf;
	unsigned long flags;

1496
	cx88_sram_channel_dump(core, &cx88_sram_channels[SRAM_CH21]);
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	cx_clear(MO_VID_DMACNTRL, 0x11);
	cx_clear(VID_CAPTURE_CONTROL, 0x06);

	spin_lock_irqsave(&dev->slock,flags);
	while (!list_empty(&q->active)) {
		buf = list_entry(q->active.next, struct cx88_buffer, vb.queue);
		list_del(&buf->vb.queue);
		buf->vb.state = STATE_ERROR;
		wake_up(&buf->vb.done);
		printk("%s/0: [%p/%d] timeout - dma=0x%08lx\n", core->name,
		       buf, buf->vb.i, (unsigned long)buf->risc.dma);
	}
	restart_video_queue(dev,q);
	spin_unlock_irqrestore(&dev->slock,flags);
}

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static char *cx88_vid_irqs[32] = {
	"y_risci1", "u_risci1", "v_risci1", "vbi_risc1",
	"y_risci2", "u_risci2", "v_risci2", "vbi_risc2",
	"y_oflow",  "u_oflow",  "v_oflow",  "vbi_oflow",
	"y_sync",   "u_sync",   "v_sync",   "vbi_sync",
	"opc_err",  "par_err",  "rip_err",  "pci_abort",
};

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1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538 1539 1540
static void cx8800_vid_irq(struct cx8800_dev *dev)
{
	struct cx88_core *core = dev->core;
	u32 status, mask, count;

	status = cx_read(MO_VID_INTSTAT);
	mask   = cx_read(MO_VID_INTMSK);
	if (0 == (status & mask))
		return;
	cx_write(MO_VID_INTSTAT, status);
	if (irq_debug  ||  (status & mask & ~0xff))
		cx88_print_irqbits(core->name, "irq vid",
				   cx88_vid_irqs, status, mask);

	/* risc op code error */
	if (status & (1 << 16)) {
		printk(KERN_WARNING "%s/0: video risc op code error\n",core->name);
		cx_clear(MO_VID_DMACNTRL, 0x11);
		cx_clear(VID_CAPTURE_CONTROL, 0x06);
1541
		cx88_sram_channel_dump(core, &cx88_sram_channels[SRAM_CH21]);
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	}

	/* risc1 y */
	if (status & 0x01) {
		spin_lock(&dev->slock);
		count = cx_read(MO_VIDY_GPCNT);
1548
		cx88_wakeup(core, &dev->vidq, count);
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		spin_unlock(&dev->slock);
	}

	/* risc1 vbi */
	if (status & 0x08) {
		spin_lock(&dev->slock);
		count = cx_read(MO_VBI_GPCNT);
1556
		cx88_wakeup(core, &dev->vbiq, count);
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		spin_unlock(&dev->slock);
	}

	/* risc2 y */
	if (status & 0x10) {
		dprintk(2,"stopper video\n");
		spin_lock(&dev->slock);
		restart_video_queue(dev,&dev->vidq);
		spin_unlock(&dev->slock);
	}

	/* risc2 vbi */
	if (status & 0x80) {
		dprintk(2,"stopper vbi\n");
		spin_lock(&dev->slock);
		cx8800_restart_vbi_queue(dev,&dev->vbiq);
		spin_unlock(&dev->slock);
	}
}

1577
static irqreturn_t cx8800_irq(int irq, void *dev_id)
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{
	struct cx8800_dev *dev = dev_id;
	struct cx88_core *core = dev->core;
	u32 status;
	int loop, handled = 0;

	for (loop = 0; loop < 10; loop++) {
		status = cx_read(MO_PCI_INTSTAT) & (core->pci_irqmask | 0x01);
		if (0 == status)
			goto out;
		cx_write(MO_PCI_INTSTAT, status);
		handled = 1;

		if (status & core->pci_irqmask)
			cx88_core_irq(core,status);
		if (status & 0x01)
			cx8800_vid_irq(dev);
	};
	if (10 == loop) {
		printk(KERN_WARNING "%s/0: irq loop -- clearing mask\n",
		       core->name);
		cx_write(MO_PCI_INTMSK,0);
	}

 out:
	return IRQ_RETVAL(handled);
}

/* ----------------------------------------------------------- */
/* exported stuff                                              */

1609
static const struct file_operations video_fops =
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{
	.owner	       = THIS_MODULE,
	.open	       = video_open,
	.release       = video_release,
	.read	       = video_read,
	.poll          = video_poll,
	.mmap	       = video_mmap,
1617
	.ioctl	       = video_ioctl2,
1618
	.compat_ioctl  = v4l_compat_ioctl32,
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	.llseek        = no_llseek,
};

1622
static struct video_device cx8800_vbi_template;
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static struct video_device cx8800_video_template =
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{
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	.name                 = "cx8800-video",
	.type                 = VID_TYPE_CAPTURE|VID_TYPE_TUNER|VID_TYPE_SCALES,
	.fops                 = &video_fops,
	.minor                = -1,
	.vidioc_querycap      = vidioc_querycap,
	.vidioc_enum_fmt_cap  = vidioc_enum_fmt_cap,
	.vidioc_g_fmt_cap     = vidioc_g_fmt_cap,
	.vidioc_try_fmt_cap   = vidioc_try_fmt_cap,
	.vidioc_s_fmt_cap     = vidioc_s_fmt_cap,
	.vidioc_g_fmt_vbi     = cx8800_vbi_fmt,
	.vidioc_try_fmt_vbi   = cx8800_vbi_fmt,
	.vidioc_s_fmt_vbi     = cx8800_vbi_fmt,
	.vidioc_reqbufs       = vidioc_reqbufs,
	.vidioc_querybuf      = vidioc_querybuf,
	.vidioc_qbuf          = vidioc_qbuf,
	.vidioc_dqbuf         = vidioc_dqbuf,
	.vidioc_s_std         = vidioc_s_std,
	.vidioc_enum_input    = vidioc_enum_input,
	.vidioc_g_input       = vidioc_g_input,
	.vidioc_s_input       = vidioc_s_input,
	.vidioc_queryctrl     = vidioc_queryctrl,
	.vidioc_g_ctrl        = vidioc_g_ctrl,
	.vidioc_s_ctrl        = vidioc_s_ctrl,
	.vidioc_streamon      = vidioc_streamon,
	.vidioc_streamoff     = vidioc_streamoff,
#ifdef CONFIG_VIDEO_V4L1_COMPAT
	.vidiocgmbuf          = vidiocgmbuf,
#endif
	.vidioc_g_tuner       = vidioc_g_tuner,
	.vidioc_s_tuner       = vidioc_s_tuner,
	.vidioc_g_frequency   = vidioc_g_frequency,
	.vidioc_s_frequency   = vidioc_s_frequency,
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	.tvnorms              = CX88_NORMS,
	.current_norm         = V4L2_STD_PAL_BG,
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};

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static const struct file_operations radio_fops =
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{
	.owner         = THIS_MODULE,
	.open          = video_open,
	.release       = video_release,
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	.ioctl         = video_ioctl2,
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	.compat_ioctl  = v4l_compat_ioctl32,
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	.llseek        = no_llseek,
};

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static struct video_device cx8800_radio_template =
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{
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	.name                 = "cx8800-radio",
	.type                 = VID_TYPE_TUNER,
	.hardware             = 0,
	.fops                 = &radio_fops,
	.minor                = -1,
	.vidioc_querycap      = radio_querycap,
	.vidioc_g_tuner       = radio_g_tuner,
	.vidioc_enum_input    = radio_enum_input,
	.vidioc_g_audio       = radio_g_audio,
	.vidioc_s_tuner       = radio_s_tuner,
	.vidioc_s_audio       = radio_s_audio,
	.vidioc_s_input       = radio_s_input,
	.vidioc_queryctrl     = radio_queryctrl,
	.vidioc_g_ctrl        = vidioc_g_ctrl,
	.vidioc_s_ctrl        = vidioc_s_ctrl,
	.vidioc_g_frequency   = vidioc_g_frequency,
	.vidioc_s_frequency   = vidioc_s_frequency,
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};

/* ----------------------------------------------------------- */

static void cx8800_unregister_video(struct cx8800_dev *dev)
{
	if (dev->radio_dev) {
		if (-1 != dev->radio_dev->minor)
			video_unregister_device(dev->radio_dev);
		else
			video_device_release(dev->radio_dev);
		dev->radio_dev = NULL;
	}
	if (dev->vbi_dev) {
		if (-1 != dev->vbi_dev->minor)
			video_unregister_device(dev->vbi_dev);
		else
			video_device_release(dev->vbi_dev);
		dev->vbi_dev = NULL;
	}
	if (dev->video_dev) {
		if (-1 != dev->video_dev->minor)
			video_unregister_device(dev->video_dev);
		else
			video_device_release(dev->video_dev);
		dev->video_dev = NULL;
	}
}

static int __devinit cx8800_initdev(struct pci_dev *pci_dev,
				    const struct pci_device_id *pci_id)
{
	struct cx8800_dev *dev;
	struct cx88_core *core;
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	int err;

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	dev = kzalloc(sizeof(*dev),GFP_KERNEL);
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	if (NULL == dev)
		return -ENOMEM;

	/* pci init */
	dev->pci = pci_dev;
	if (pci_enable_device(pci_dev)) {
		err = -EIO;
		goto fail_free;
	}
	core = cx88_core_get(dev->pci);
	if (NULL == core) {
		err = -EINVAL;
		goto fail_free;
	}
	dev->core = core;

	/* print pci info */
	pci_read_config_byte(pci_dev, PCI_CLASS_REVISION, &dev->pci_rev);
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	pci_read_config_byte(pci_dev, PCI_LATENCY_TIMER,  &dev->pci_lat);
	printk(KERN_INFO "%s/0: found at %s, rev: %d, irq: %d, "
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	       "latency: %d, mmio: 0x%llx\n", core->name,
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	       pci_name(pci_dev), dev->pci_rev, pci_dev->irq,
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	       dev->pci_lat,(unsigned long long)pci_resource_start(pci_dev,0));
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	pci_set_master(pci_dev);
	if (!pci_dma_supported(pci_dev,0xffffffff)) {
		printk("%s/0: Oops: no 32bit PCI DMA ???\n",core->name);
		err = -EIO;
		goto fail_core;
	}

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	/* Initialize VBI template */
	memcpy( &cx8800_vbi_template, &cx8800_video_template,
		sizeof(cx8800_vbi_template) );
	strcpy(cx8800_vbi_template.name,"cx8800-vbi");
	cx8800_vbi_template.type = VID_TYPE_TELETEXT|VID_TYPE_TUNER;

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	/* initialize driver struct */
	spin_lock_init(&dev->slock);
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	core->tvnorm = cx8800_video_template.current_norm;
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	/* init video dma queues */
	INIT_LIST_HEAD(&dev->vidq.active);
	INIT_LIST_HEAD(&dev->vidq.queued);
	dev->vidq.timeout.function = cx8800_vid_timeout;
	dev->vidq.timeout.data     = (unsigned long)dev;
	init_timer(&dev->vidq.timeout);
	cx88_risc_stopper(dev->pci,&dev->vidq.stopper,
			  MO_VID_DMACNTRL,0x11,0x00);

	/* init vbi dma queues */
	INIT_LIST_HEAD(&dev->vbiq.active);
	INIT_LIST_HEAD(&dev->vbiq.queued);
	dev->vbiq.timeout.function = cx8800_vbi_timeout;
	dev->vbiq.timeout.data     = (unsigned long)dev;
	init_timer(&dev->vbiq.timeout);
	cx88_risc_stopper(dev->pci,&dev->vbiq.stopper,
			  MO_VID_DMACNTRL,0x88,0x00);

	/* get irq */
	err = request_irq(pci_dev->irq, cx8800_irq,
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			  IRQF_SHARED | IRQF_DISABLED, core->name, dev);
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	if (err < 0) {
		printk(KERN_ERR "%s: can't get IRQ %d\n",
		       core->name,pci_dev->irq);
		goto fail_core;
	}
	cx_set(MO_PCI_INTMSK, core->pci_irqmask);

	/* load and configure helper modules */
	if (TUNER_ABSENT != core->tuner_type)
		request_module("tuner");
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	if (cx88_boards[ core->board ].audio_chip == AUDIO_CHIP_WM8775)
		request_module("wm8775");

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	/* register v4l devices */
	dev->video_dev = cx88_vdev_init(core,dev->pci,
					&cx8800_video_template,"video");
	err = video_register_device(dev->video_dev,VFL_TYPE_GRABBER,
				    video_nr[core->nr]);
	if (err < 0) {
		printk(KERN_INFO "%s: can't register video device\n",
		       core->name);
		goto fail_unreg;
	}
	printk(KERN_INFO "%s/0: registered device video%d [v4l2]\n",
	       core->name,dev->video_dev->minor & 0x1f);

	dev->vbi_dev = cx88_vdev_init(core,dev->pci,&cx8800_vbi_template,"vbi");
	err = video_register_device(dev->vbi_dev,VFL_TYPE_VBI,
				    vbi_nr[core->nr]);
	if (err < 0) {
		printk(KERN_INFO "%s/0: can't register vbi device\n",
		       core->name);
		goto fail_unreg;
	}
	printk(KERN_INFO "%s/0: registered device vbi%d\n",
	       core->name,dev->vbi_dev->minor & 0x1f);

	if (core->has_radio) {
		dev->radio_dev = cx88_vdev_init(core,dev->pci,
						&cx8800_radio_template,"radio");
		err = video_register_device(dev->radio_dev,VFL_TYPE_RADIO,
					    radio_nr[core->nr]);
		if (err < 0) {
			printk(KERN_INFO "%s/0: can't register radio device\n",
			       core->name);
			goto fail_unreg;
		}
		printk(KERN_INFO "%s/0: registered device radio%d\n",
		       core->name,dev->radio_dev->minor & 0x1f);
	}

	/* everything worked */
	list_add_tail(&dev->devlist,&cx8800_devlist);
	pci_set_drvdata(pci_dev,dev);

	/* initial device configuration */
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	mutex_lock(&core->lock);
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	cx88_set_tvnorm(core,core->tvnorm);
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	init_controls(core);
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	cx88_video_mux(core,0);
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	mutex_unlock(&core->lock);
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	/* start tvaudio thread */
	if (core->tuner_type != TUNER_ABSENT)
		core->kthread = kthread_run(cx88_audio_thread, core, "cx88 tvaudio");
	return 0;

fail_unreg:
	cx8800_unregister_video(dev);
	free_irq(pci_dev->irq, dev);
fail_core:
	cx88_core_put(core,dev->pci);
fail_free:
	kfree(dev);
	return err;
}

static void __devexit cx8800_finidev(struct pci_dev *pci_dev)
{
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	struct cx8800_dev *dev = pci_get_drvdata(pci_dev);
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	struct cx88_core *core = dev->core;
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	/* stop thread */
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	if (core->kthread) {
		kthread_stop(core->kthread);
		core->kthread = NULL;
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	}

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	cx88_shutdown(core); /* FIXME */
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	pci_disable_device(pci_dev);

	/* unregister stuff */

	free_irq(pci_dev->irq, dev);
	cx8800_unregister_video(dev);
	pci_set_drvdata(pci_dev, NULL);

	/* free memory */
	btcx_riscmem_free(dev->pci,&dev->vidq.stopper);
	list_del(&dev->devlist);
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	cx88_core_put(core,dev->pci);
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	kfree(dev);
}

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#ifdef CONFIG_PM
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static int cx8800_suspend(struct pci_dev *pci_dev, pm_message_t state)
{
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	struct cx8800_dev *dev = pci_get_drvdata(pci_dev);
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	struct cx88_core *core = dev->core;

	/* stop video+vbi capture */
	spin_lock(&dev->slock);
	if (!list_empty(&dev->vidq.active)) {
		printk("%s: suspend video\n", core->name);
		stop_video_dma(dev);
		del_timer(&dev->vidq.timeout);
	}
	if (!list_empty(&dev->vbiq.active)) {
		printk("%s: suspend vbi\n", core->name);
		cx8800_stop_vbi_dma(dev);
		del_timer(&dev->vbiq.timeout);
	}
	spin_unlock(&dev->slock);

	/* FIXME -- shutdown device */
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	cx88_shutdown(core);
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	pci_save_state(pci_dev);
	if (0 != pci_set_power_state(pci_dev, pci_choose_state(pci_dev, state))) {
		pci_disable_device(pci_dev);
		dev->state.disabled = 1;
	}
	return 0;
}

static int cx8800_resume(struct pci_dev *pci_dev)
{
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	struct cx8800_dev *dev = pci_get_drvdata(pci_dev);
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	struct cx88_core *core = dev->core;
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	int err;
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	if (dev->state.disabled) {
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		err=pci_enable_device(pci_dev);
		if (err) {
			printk(KERN_ERR "%s: can't enable device\n",
						       core->name);
			return err;
		}

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		dev->state.disabled = 0;
	}
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	err= pci_set_power_state(pci_dev, PCI_D0);
	if (err) {
		printk(KERN_ERR "%s: can't enable device\n",
				       core->name);

		pci_disable_device(pci_dev);
		dev->state.disabled = 1;

		return err;
	}
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	pci_restore_state(pci_dev);

	/* FIXME: re-initialize hardware */
1955
	cx88_reset(core);
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	/* restart video+vbi capture */
	spin_lock(&dev->slock);
	if (!list_empty(&dev->vidq.active)) {
		printk("%s: resume video\n", core->name);
		restart_video_queue(dev,&dev->vidq);
	}
	if (!list_empty(&dev->vbiq.active)) {
		printk("%s: resume vbi\n", core->name);
		cx8800_restart_vbi_queue(dev,&dev->vbiq);
	}
	spin_unlock(&dev->slock);

	return 0;
}
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#endif
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/* ----------------------------------------------------------- */

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static struct pci_device_id cx8800_pci_tbl[] = {
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	{
		.vendor       = 0x14f1,
		.device       = 0x8800,
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		.subvendor    = PCI_ANY_ID,
		.subdevice    = PCI_ANY_ID,
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	},{
		/* --- end of list --- */
	}
};
MODULE_DEVICE_TABLE(pci, cx8800_pci_tbl);

static struct pci_driver cx8800_pci_driver = {
1988 1989 1990 1991
	.name     = "cx8800",
	.id_table = cx8800_pci_tbl,
	.probe    = cx8800_initdev,
	.remove   = __devexit_p(cx8800_finidev),
1992
#ifdef CONFIG_PM
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	.suspend  = cx8800_suspend,
	.resume   = cx8800_resume,
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#endif
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};

static int cx8800_init(void)
{
	printk(KERN_INFO "cx2388x v4l2 driver version %d.%d.%d loaded\n",
	       (CX88_VERSION_CODE >> 16) & 0xff,
	       (CX88_VERSION_CODE >>  8) & 0xff,
	       CX88_VERSION_CODE & 0xff);
#ifdef SNAPSHOT
	printk(KERN_INFO "cx2388x: snapshot date %04d-%02d-%02d\n",
	       SNAPSHOT/10000, (SNAPSHOT/100)%100, SNAPSHOT%100);
#endif
	return pci_register_driver(&cx8800_pci_driver);
}

static void cx8800_fini(void)
{
	pci_unregister_driver(&cx8800_pci_driver);
}

module_init(cx8800_init);
module_exit(cx8800_fini);

/* ----------------------------------------------------------- */
/*
 * Local variables:
 * c-basic-offset: 8
 * End:
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 */