tuner-xc2028.c 25.0 KB
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/* tuner-xc2028
 *
 * Copyright (c) 2007 Mauro Carvalho Chehab (mchehab@infradead.org)
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 *
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 * Copyright (c) 2007 Michel Ludwig (michel.ludwig@gmail.com)
 *       - frontend interface
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 *
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 * This code is placed under the terms of the GNU General Public License v2
 */

#include <linux/i2c.h>
#include <asm/div64.h>
#include <linux/firmware.h>
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#include <linux/videodev2.h>
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#include <linux/delay.h>
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#include <media/tuner.h>
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#include <linux/mutex.h>
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#include "tuner-i2c.h"
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#include "tuner-xc2028.h"
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#include "tuner-xc2028-types.h"
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#include <linux/dvb/frontend.h>
#include "dvb_frontend.h"

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#define PREFIX "xc2028"
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static int debug;
module_param(debug, int, 0644);
MODULE_PARM_DESC(debug, "enable verbose debug messages");

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static char audio_std[8];
module_param_string(audio_std, audio_std, sizeof(audio_std), 0);
MODULE_PARM_DESC(audio_std,
	"Audio standard. XC3028 audio decoder explicitly "
	"needs to know what audio\n"
	"standard is needed for some video standards with audio A2 or NICAM.\n"
	"The valid values are:\n"
	"A2\n"
	"A2/A\n"
	"A2/B\n"
	"NICAM\n"
	"NICAM/A\n"
	"NICAM/B\n");

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static LIST_HEAD(xc2028_list);
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static DEFINE_MUTEX(xc2028_list_mutex);

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/* struct for storing firmware table */
struct firmware_description {
	unsigned int  type;
	v4l2_std_id   id;
	unsigned char *ptr;
	unsigned int  size;
};
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struct firmware_properties {
	unsigned int	type;
	v4l2_std_id	id;
	v4l2_std_id	std_req;
	unsigned int	scode_table;
	int 		scode_nr;
};

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struct xc2028_data {
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	struct list_head        xc2028_list;
	struct tuner_i2c_props  i2c_props;
	int                     (*tuner_callback) (void *dev,
						   int command, int arg);
	void			*video_dev;
	int			count;
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	__u32			frequency;

	struct firmware_description *firm;
	int			firm_size;
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	__u16			firm_version;
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	__u16			hwmodel;
	__u16			hwvers;

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	struct xc2028_ctrl	ctrl;
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83
	struct firmware_properties cur_fw;
84 85

	struct mutex lock;
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};

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#define i2c_send(priv, buf, size) ({					\
	int _rc;							\
	_rc = tuner_i2c_xfer_send(&priv->i2c_props, buf, size);		\
	if (size != _rc)						\
		tuner_info("i2c output error: rc = %d (should be %d)\n",\
			   _rc, (int)size);				\
	_rc;								\
})

#define i2c_rcv(priv, buf, size) ({					\
	int _rc;							\
	_rc = tuner_i2c_xfer_recv(&priv->i2c_props, buf, size);		\
	if (size != _rc)						\
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		tuner_err("i2c input error: rc = %d (should be %d)\n",	\
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			   _rc, (int)size); 				\
	_rc;								\
})
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#define i2c_send_recv(priv, obuf, osize, ibuf, isize) ({		\
	int _rc;							\
	_rc = tuner_i2c_xfer_send_recv(&priv->i2c_props, obuf, osize,	\
				       ibuf, isize);			\
	if (isize != _rc)						\
		tuner_err("i2c input error: rc = %d (should be %d)\n",	\
			   _rc, (int)isize); 				\
	_rc;								\
})

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#define send_seq(priv, data...)	({					\
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	static u8 _val[] = data;					\
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	int _rc;							\
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	if (sizeof(_val) !=						\
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			(_rc = tuner_i2c_xfer_send(&priv->i2c_props,	\
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						_val, sizeof(_val)))) {	\
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		tuner_err("Error on line %d: %d\n", __LINE__, _rc);	\
	} else 								\
		msleep(10);						\
	_rc;								\
})
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static unsigned int xc2028_get_reg(struct xc2028_data *priv, u16 reg, u16 *val)
129
{
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	unsigned char buf[2];
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	unsigned char ibuf[2];
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133
	tuner_dbg("%s %04x called\n", __FUNCTION__, reg);
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135
	buf[0] = reg >> 8;
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	buf[1] = (unsigned char) reg;
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	if (i2c_send_recv(priv, buf, 2, ibuf, 2) != 2)
		return -EIO;
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	*val = (ibuf[1]) | (ibuf[0] << 8);
	return 0;
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}

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void dump_firm_type(unsigned int type)
{
	 if (type & BASE)
		printk("BASE ");
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	 if (type & INIT1)
		printk("INIT1 ");
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	 if (type & F8MHZ)
		printk("F8MHZ ");
	 if (type & MTS)
		printk("MTS ");
	 if (type & D2620)
		printk("D2620 ");
	 if (type & D2633)
		printk("D2633 ");
	 if (type & DTV6)
		printk("DTV6 ");
	 if (type & QAM)
		printk("QAM ");
	 if (type & DTV7)
		printk("DTV7 ");
	 if (type & DTV78)
		printk("DTV78 ");
	 if (type & DTV8)
		printk("DTV8 ");
	 if (type & FM)
		printk("FM ");
	 if (type & INPUT1)
		printk("INPUT1 ");
	 if (type & LCD)
		printk("LCD ");
	 if (type & NOGD)
		printk("NOGD ");
	 if (type & MONO)
		printk("MONO ");
	 if (type & ATSC)
		printk("ATSC ");
	 if (type & IF)
		printk("IF ");
	 if (type & LG60)
		printk("LG60 ");
	 if (type & ATI638)
		printk("ATI638 ");
	 if (type & OREN538)
		printk("OREN538 ");
	 if (type & OREN36)
		printk("OREN36 ");
	 if (type & TOYOTA388)
		printk("TOYOTA388 ");
	 if (type & TOYOTA794)
		printk("TOYOTA794 ");
	 if (type & DIBCOM52)
		printk("DIBCOM52 ");
	 if (type & ZARLINK456)
		printk("ZARLINK456 ");
	 if (type & CHINA)
		printk("CHINA ");
	 if (type & F6MHZ)
		printk("F6MHZ ");
	 if (type & INPUT2)
		printk("INPUT2 ");
	 if (type & SCODE)
		printk("SCODE ");
}

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static  v4l2_std_id parse_audio_std_option(void)
210
{
211
	if (strcasecmp(audio_std, "A2") == 0)
212
		return V4L2_STD_A2;
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	if (strcasecmp(audio_std, "A2/A") == 0)
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		return V4L2_STD_A2_A;
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	if (strcasecmp(audio_std, "A2/B") == 0)
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		return V4L2_STD_A2_B;
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	if (strcasecmp(audio_std, "NICAM") == 0)
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		return V4L2_STD_NICAM;
219
	if (strcasecmp(audio_std, "NICAM/A") == 0)
220
		return V4L2_STD_NICAM_A;
221
	if (strcasecmp(audio_std, "NICAM/B") == 0)
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		return V4L2_STD_NICAM_B;

	return 0;
}

227
static void free_firmware(struct xc2028_data *priv)
228
{
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	int i;

	if (!priv->firm)
		return;

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	for (i = 0; i < priv->firm_size; i++)
		kfree(priv->firm[i].ptr);

237 238
	kfree(priv->firm);

239
	priv->firm = NULL;
240
	priv->firm_size = 0;
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	memset(&priv->cur_fw, 0, sizeof(priv->cur_fw));
243 244
}

245
static int load_all_firmwares(struct dvb_frontend *fe)
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{
	struct xc2028_data    *priv = fe->tuner_priv;
248
	const struct firmware *fw   = NULL;
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	unsigned char         *p, *endp;
250 251
	int                   rc = 0;
	int		      n, n_array;
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	char		      name[33];
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	tuner_dbg("%s called\n", __FUNCTION__);
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256
	tuner_dbg("Reading firmware %s\n", priv->ctrl.fname);
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	rc = request_firmware(&fw, priv->ctrl.fname,
			      &priv->i2c_props.adap->dev);
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	if (rc < 0) {
260
		if (rc == -ENOENT)
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			tuner_err("Error: firmware %s not found.\n",
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				   priv->ctrl.fname);
263
		else
264
			tuner_err("Error %d while requesting firmware %s \n",
265
				   rc, priv->ctrl.fname);
266

267 268
		return rc;
	}
269 270
	p = fw->data;
	endp = p + fw->size;
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	if (fw->size < sizeof(name) - 1 + 2 + 2) {
		tuner_err("Error: firmware file %s has invalid size!\n",
			  priv->ctrl.fname);
		goto corrupt;
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	}
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	memcpy(name, p, sizeof(name) - 1);
	name[sizeof(name) - 1] = 0;
	p += sizeof(name) - 1;
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282
	priv->firm_version = le16_to_cpu(*(__u16 *) p);
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	p += 2;

285
	n_array = le16_to_cpu(*(__u16 *) p);
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	p += 2;

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	tuner_info("Loading %d firmware images from %s, type: %s, ver %d.%d\n",
		   n_array, priv->ctrl.fname, name,
		   priv->firm_version >> 8, priv->firm_version & 0xff);
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292
	priv->firm = kzalloc(sizeof(*priv->firm) * n_array, GFP_KERNEL);
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	if (priv->firm == NULL) {
		tuner_err("Not enough memory to load firmware file.\n");
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		rc = -ENOMEM;
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		goto err;
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	}
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	priv->firm_size = n_array;
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300 301
	n = -1;
	while (p < endp) {
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		__u32 type, size;
		v4l2_std_id id;

		n++;
		if (n >= n_array) {
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			tuner_err("More firmware images in file than "
				  "were expected!\n");
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			goto corrupt;
		}

		/* Checks if there's enough bytes to read */
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		if (p + sizeof(type) + sizeof(id) + sizeof(size) > endp) {
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			tuner_err("Firmware header is incomplete!\n");
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			goto corrupt;
		}

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		type = le32_to_cpu(*(__u32 *) p);
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		p += sizeof(type);

321
		id = le64_to_cpu(*(v4l2_std_id *) p);
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		p += sizeof(id);

324
		size = le32_to_cpu(*(__u32 *) p);
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		p += sizeof(size);

327
		if ((!size) || (size + p > endp)) {
328
			tuner_err("Firmware type ");
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			dump_firm_type(type);
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			printk("(%x), id %llx is corrupted "
			       "(size=%d, expected %d)\n",
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			       type, (unsigned long long)id,
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			       (unsigned)(endp - p), size);
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			goto corrupt;
		}

337
		priv->firm[n].ptr = kzalloc(size, GFP_KERNEL);
338 339
		if (priv->firm[n].ptr == NULL) {
			tuner_err("Not enough memory to load firmware file.\n");
340
			rc = -ENOMEM;
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			goto err;
		}
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		tuner_dbg("Reading firmware type ");
		if (debug) {
			dump_firm_type(type);
			printk("(%x), id %llx, size=%d.\n",
				   type, (unsigned long long)id, size);
		}
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		memcpy(priv->firm[n].ptr, p, size);
		priv->firm[n].type = type;
		priv->firm[n].id   = id;
		priv->firm[n].size = size;

		p += size;
	}

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	if (n + 1 != priv->firm_size) {
359
		tuner_err("Firmware file is incomplete!\n");
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		goto corrupt;
	}

	goto done;

corrupt:
366
	rc = -EINVAL;
367
	tuner_err("Error: firmware file is corrupted!\n");
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err:
370
	tuner_info("Releasing partially loaded firmware file.\n");
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	free_firmware(priv);

done:
	release_firmware(fw);
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	if (rc == 0)
		tuner_dbg("Firmware files loaded.\n");
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	return rc;
}

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static int seek_firmware(struct dvb_frontend *fe, unsigned int type,
			 v4l2_std_id *id)
383 384
{
	struct xc2028_data *priv = fe->tuner_priv;
385
	int                 i, best_i = -1, best_nr_matches = 0;
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	tuner_dbg("%s called, want type=", __FUNCTION__);
	if (debug) {
		dump_firm_type(type);
		printk("(%x), id %016llx.\n", type, (unsigned long long)*id);
	}
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	if (!priv->firm) {
394
		tuner_err("Error! firmware not loaded\n");
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		return -EINVAL;
	}

398
	if (((type & ~SCODE) == 0) && (*id == 0))
399
		*id = V4L2_STD_PAL;
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	if (type & BASE)
		type &= BASE_TYPES;
	else if (type & SCODE)
		type &= SCODE_TYPES;
	else if (type & DTV_TYPES)
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		type &= DTV_TYPES;
	else if (type & STD_SPECIFIC_TYPES)
		type &= STD_SPECIFIC_TYPES;
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410
	/* Seek for exact match */
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	for (i = 0; i < priv->firm_size; i++) {
		if ((type == priv->firm[i].type) && (*id == priv->firm[i].id))
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			goto found;
	}

	/* Seek for generic video standard match */
417
	for (i = 0; i < priv->firm_size; i++) {
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		v4l2_std_id match_mask;
		int nr_matches;

		if (type != priv->firm[i].type)
			continue;

		match_mask = *id & priv->firm[i].id;
		if (!match_mask)
			continue;

		if ((*id & match_mask) == *id)
			goto found; /* Supports all the requested standards */

		nr_matches = hweight64(match_mask);
		if (nr_matches > best_nr_matches) {
			best_nr_matches = nr_matches;
			best_i = i;
		}
	}

	if (best_nr_matches > 0) {
		tuner_dbg("Selecting best matching firmware (%d bits) for "
			  "type=", best_nr_matches);
		dump_firm_type(type);
		printk("(%x), id %016llx:\n", type, (unsigned long long)*id);
		i = best_i;
		goto found;
445 446 447 448
	}

	/*FIXME: Would make sense to seek for type "hint" match ? */

449
	i = -ENOENT;
450
	goto ret;
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found:
	*id = priv->firm[i].id;

455
ret:
456
	tuner_dbg("%s firmware for type=", (i < 0) ? "Can't find" : "Found");
457 458
	if (debug) {
		dump_firm_type(type);
459
		printk("(%x), id %016llx.\n", type, (unsigned long long)*id);
460
	}
461 462 463 464 465 466 467 468
	return i;
}

static int load_firmware(struct dvb_frontend *fe, unsigned int type,
			 v4l2_std_id *id)
{
	struct xc2028_data *priv = fe->tuner_priv;
	int                pos, rc;
469
	unsigned char      *p, *endp, buf[priv->ctrl.max_len];
470

471
	tuner_dbg("%s called\n", __FUNCTION__);
472 473 474 475 476

	pos = seek_firmware(fe, type, id);
	if (pos < 0)
		return pos;

477
	tuner_info("Loading firmware for type=");
478 479 480
	dump_firm_type(priv->firm[pos].type);
	printk("(%x), id %016llx.\n", priv->firm[pos].type,
	       (unsigned long long)*id);
481

482 483
	p = priv->firm[pos].ptr;
	endp = p + priv->firm[pos].size;
484

485
	while (p < endp) {
486 487 488
		__u16 size;

		/* Checks if there's enough bytes to read */
489
		if (p + sizeof(size) > endp) {
490
			tuner_err("Firmware chunk size is wrong\n");
491 492 493
			return -EINVAL;
		}

494
		size = le16_to_cpu(*(__u16 *) p);
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		p += sizeof(size);

		if (size == 0xffff)
			return 0;

		if (!size) {
501
			/* Special callback command received */
502
			rc = priv->tuner_callback(priv->video_dev,
503 504
						  XC2028_TUNER_RESET, 0);
			if (rc < 0) {
505
				tuner_err("Error at RESET code %d\n",
506
					   (*p) & 0x7f);
507
				return -EINVAL;
508 509 510
			}
			continue;
		}
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		if (size >= 0xff00) {
			switch (size) {
			case 0xff00:
				rc = priv->tuner_callback(priv->video_dev,
							XC2028_RESET_CLK, 0);
				if (rc < 0) {
					tuner_err("Error at RESET code %d\n",
						  (*p) & 0x7f);
					return -EINVAL;
				}
521
				break;
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			default:
				tuner_info("Invalid RESET code %d\n",
					   size & 0x7f);
				return -EINVAL;

			}
528
			continue;
529
		}
530 531 532

		/* Checks for a sleep command */
		if (size & 0x8000) {
533
			msleep(size & 0x7fff);
534
			continue;
535 536
		}

537
		if ((size + p > endp)) {
538
			tuner_err("missing bytes: need %d, have %d\n",
539
				   size, (int)(endp - p));
540 541
			return -EINVAL;
		}
542

543
		buf[0] = *p;
544
		p++;
545
		size--;
546

547
		/* Sends message chunks */
548
		while (size > 0) {
549 550
			int len = (size < priv->ctrl.max_len - 1) ?
				   size : priv->ctrl.max_len - 1;
551

552
			memcpy(buf + 1, p, len);
553

554
			rc = i2c_send(priv, buf, len + 1);
555
			if (rc < 0) {
556
				tuner_err("%d returned from send\n", rc);
557 558 559 560 561 562 563
				return -EINVAL;
			}

			p += len;
			size -= len;
		}
	}
564
	return 0;
565 566
}

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static int load_scode(struct dvb_frontend *fe, unsigned int type,
			 v4l2_std_id *id, int scode)
{
	struct xc2028_data *priv = fe->tuner_priv;
	int                pos, rc;
	unsigned char	   *p;

574
	tuner_dbg("%s called\n", __FUNCTION__);
575 576 577 578 579 580 581

	pos = seek_firmware(fe, type, id);
	if (pos < 0)
		return pos;

	p = priv->firm[pos].ptr;

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	/* 16 SCODE entries per file; each SCODE entry is 12 bytes and
	 * has a 2-byte size header in the firmware format. */
	if (priv->firm[pos].size != 14 * 16 || scode >= 16 ||
	    le16_to_cpu(*(__u16 *)(p + 14 * scode)) != 12)
586 587
		return -EINVAL;

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	tuner_info("Loading SCODE for type=");
	dump_firm_type(priv->firm[pos].type);
	printk("(%x), id %016llx.\n", priv->firm[pos].type,
	       (unsigned long long)*id);

593
	if (priv->firm_version < 0x0202)
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		rc = send_seq(priv, {0x20, 0x00, 0x00, 0x00});
	else
		rc = send_seq(priv, {0xa0, 0x00, 0x00, 0x00});
	if (rc < 0)
		return -EIO;
599

600
	rc = i2c_send(priv, p + 14 * scode + 2, 12);
601 602
	if (rc < 0)
		return -EIO;
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	rc = send_seq(priv, {0x00, 0x8c});
	if (rc < 0)
		return -EIO;
607 608 609 610

	return 0;
}

611
static int check_firmware(struct dvb_frontend *fe, enum tuner_mode new_mode,
612
			  v4l2_std_id std, fe_bandwidth_t bandwidth)
613
{
614
	struct xc2028_data      *priv = fe->tuner_priv;
615
	int			rc = 0, is_retry = 0;
616 617
	unsigned int		type = 0;
	struct firmware_properties new_fw;
618
	u16			version, hwmodel;
619
	v4l2_std_id		std0;
620

621
	tuner_dbg("%s called\n", __FUNCTION__);
622

623
	if (!priv->firm) {
624 625
		if (!priv->ctrl.fname) {
			tuner_info("xc2028/3028 firmware name not set!\n");
626
			return -EINVAL;
627
		}
628

629 630
		rc = load_all_firmwares(fe);
		if (rc < 0)
631 632 633
			return rc;
	}

634
	if (priv->ctrl.mts)
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		type |= MTS;
	if (bandwidth == BANDWIDTH_7_MHZ || bandwidth == BANDWIDTH_8_MHZ)
		type |= F8MHZ;
638

639
	/* FIXME: How to load FM and FM|INPUT1 firmwares? */
640

641
	if (new_mode == T_DIGITAL_TV) {
642 643 644 645
		if (priv->ctrl.d2633)
			type |= D2633;
		else
			type |= D2620;
646

647
		switch (bandwidth) {
648 649
		case BANDWIDTH_8_MHZ:
			type |= DTV8;
650
			break;
651 652
		case BANDWIDTH_7_MHZ:
			type |= DTV7;
653
			break;
654 655
		case BANDWIDTH_6_MHZ:
			/* FIXME: Should allow select also ATSC */
656
			type |= DTV6 | QAM;
657
			break;
658
		default:
659
			tuner_err("error: bandwidth not supported.\n");
660
		};
661 662
	}

663
retry:
664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695
	new_fw.type = type;
	new_fw.id = std;
	new_fw.std_req = std;
	new_fw.scode_table = SCODE | priv->ctrl.scode_table;
	new_fw.scode_nr = 0;

	tuner_dbg("checking firmware, user requested type=");
	if (debug) {
		dump_firm_type(new_fw.type);
		printk("(%x), id %016llx, scode_tbl ", new_fw.type,
		       (unsigned long long)new_fw.std_req);
		dump_firm_type(priv->ctrl.scode_table);
		printk("(%x), scode_nr %d\n", priv->ctrl.scode_table,
		       new_fw.scode_nr);
	}

	/* No need to reload base firmware if it matches */
	if (((BASE | new_fw.type) & BASE_TYPES) ==
	    (priv->cur_fw.type & BASE_TYPES)) {
		tuner_dbg("BASE firmware not changed.\n");
		goto skip_base;
	}

	/* Updating BASE - forget about all currently loaded firmware */
	memset(&priv->cur_fw, 0, sizeof(priv->cur_fw));

	/* Reset is needed before loading firmware */
	rc = priv->tuner_callback(priv->video_dev,
				  XC2028_TUNER_RESET, 0);
	if (rc < 0)
		goto fail;

696 697 698
	/* BASE firmwares are all std0 */
	std0 = 0;
	rc = load_firmware(fe, BASE | new_fw.type, &std0);
699 700 701 702 703
	if (rc < 0) {
		tuner_err("Error %d while loading base firmware\n",
			  rc);
		goto fail;
	}
704

705
	/* Load INIT1, if needed */
706
	tuner_dbg("Load init1 firmware, if exists\n");
707

708
	rc = load_firmware(fe, BASE | INIT1 | new_fw.type, &std0);
709 710 711
	if (rc == -ENOENT)
		rc = load_firmware(fe, (BASE | INIT1 | new_fw.type) & ~F8MHZ,
				   &std0);
712 713 714 715 716
	if (rc < 0 && rc != -ENOENT) {
		tuner_err("Error %d while loading init1 firmware\n",
			  rc);
		goto fail;
	}
717

718 719 720 721
skip_base:
	/*
	 * No need to reload standard specific firmware if base firmware
	 * was not reloaded and requested video standards have not changed.
722
	 */
723 724
	if (priv->cur_fw.type == (BASE | new_fw.type) &&
	    priv->cur_fw.std_req == std) {
725
		tuner_dbg("Std-specific firmware already loaded.\n");
726
		goto skip_std_specific;
727
	}
728

729 730 731
	/* Reloading std-specific firmware forces a SCODE update */
	priv->cur_fw.scode_table = 0;

732
	/* Add audio hack to std mask */
733 734
	if (new_mode == T_ANALOG_TV)
		new_fw.id |= parse_audio_std_option();
735

736
	rc = load_firmware(fe, new_fw.type, &new_fw.id);
737 738 739
	if (rc == -ENOENT)
		rc = load_firmware(fe, new_fw.type & ~F8MHZ, &new_fw.id);

740
	if (rc < 0)
741 742 743 744 745 746 747 748
		goto fail;

skip_std_specific:
	if (priv->cur_fw.scode_table == new_fw.scode_table &&
	    priv->cur_fw.scode_nr == new_fw.scode_nr) {
		tuner_dbg("SCODE firmware already loaded.\n");
		goto check_device;
	}
749

750
	/* Load SCODE firmware, if exists */
751
	tuner_dbg("Trying to load scode %d\n", new_fw.scode_nr);
752

753 754
	rc = load_scode(fe, new_fw.type | new_fw.scode_table,
			&new_fw.id, new_fw.scode_nr);
755

756
check_device:
757 758 759 760 761
	if (xc2028_get_reg(priv, 0x0004, &version) < 0 ||
	    xc2028_get_reg(priv, 0x0008, &hwmodel) < 0) {
		tuner_err("Unable to read tuner registers.\n");
		goto fail;
	}
762 763 764 765 766

	tuner_info("Device is Xceive %d version %d.%d, "
		   "firmware version %d.%d\n",
		   hwmodel, (version & 0xf000) >> 12, (version & 0xf00) >> 8,
		   (version & 0xf0) >> 4, version & 0xf);
767

768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784
	/* Check firmware version against what we downloaded. */
	if (priv->firm_version != ((version & 0xf0) << 4 | (version & 0x0f))) {
		tuner_err("Incorrect readback of firmware version.\n");
		goto fail;
	}

	/* Check that the tuner hardware model remains consistent over time. */
	if (priv->hwmodel == 0 && (hwmodel == 2028 || hwmodel == 3028)) {
		priv->hwmodel = hwmodel;
		priv->hwvers  = version & 0xff00;
	} else if (priv->hwmodel == 0 || priv->hwmodel != hwmodel ||
		   priv->hwvers != (version & 0xff00)) {
		tuner_err("Read invalid device hardware information - tuner "
			  "hung?\n");
		goto fail;
	}

785 786 787 788 789 790 791 792 793
	memcpy(&priv->cur_fw, &new_fw, sizeof(priv->cur_fw));

	/*
	 * By setting BASE in cur_fw.type only after successfully loading all
	 * firmwares, we can:
	 * 1. Identify that BASE firmware with type=0 has been loaded;
	 * 2. Tell whether BASE firmware was just changed the next time through.
	 */
	priv->cur_fw.type |= BASE;
794 795

	return 0;
796 797 798

fail:
	memset(&priv->cur_fw, 0, sizeof(priv->cur_fw));
799 800 801 802 803 804 805
	if (!is_retry) {
		msleep(50);
		is_retry = 1;
		tuner_dbg("Retrying firmware load\n");
		goto retry;
	}

806 807 808
	if (rc == -ENOENT)
		rc = -EINVAL;
	return rc;
809 810
}

811
static int xc2028_signal(struct dvb_frontend *fe, u16 *strength)
812
{
813
	struct xc2028_data *priv = fe->tuner_priv;
814 815
	u16                 frq_lock, signal = 0;
	int                 rc;
816

817
	tuner_dbg("%s called\n", __FUNCTION__);
818

819
	mutex_lock(&priv->lock);
820

821
	/* Sync Lock Indicator */
822 823
	rc = xc2028_get_reg(priv, 0x0002, &frq_lock);
	if (rc < 0 || frq_lock == 0)
824
		goto ret;
825 826 827

	/* Frequency is locked. Return signal quality */

828
	/* Get SNR of the video signal */
829 830 831
	rc = xc2028_get_reg(priv, 0x0040, &signal);
	if (rc < 0)
		signal = -frq_lock;
832 833

ret:
834 835 836
	mutex_unlock(&priv->lock);

	*strength = signal;
837

838
	return rc;
839 840 841 842
}

#define DIV 15625

843 844 845
static int generic_set_tv_freq(struct dvb_frontend *fe, u32 freq /* in Hz */ ,
			       enum tuner_mode new_mode,
			       v4l2_std_id std, fe_bandwidth_t bandwidth)
846
{
847
	struct xc2028_data *priv = fe->tuner_priv;
848
	int		   rc = -EINVAL;
849
	unsigned char	   buf[4];
850
	u32		   div, offset = 0;
851

852
	tuner_dbg("%s called\n", __FUNCTION__);
853

854 855
	mutex_lock(&priv->lock);

856
	tuner_dbg("should set frequency %d kHz\n", freq / 1000);
857

858
	if (check_firmware(fe, new_mode, std, bandwidth) < 0)
859
		goto ret;
860

861 862 863 864 865 866 867 868 869 870
	/* On some cases xc2028 can disable video output, if
	 * very weak signals are received. By sending a soft
	 * reset, this is re-enabled. So, it is better to always
	 * send a soft reset before changing channels, to be sure
	 * that xc2028 will be in a safe state.
	 * Maybe this might also be needed for DTV.
	 */
	if (new_mode != T_DIGITAL_TV)
		rc = send_seq(priv, {0x00, 0x00});

871
	if (new_mode == T_DIGITAL_TV) {
872
		offset = 2750000;
873
		if (priv->cur_fw.type & DTV7)
874 875
			offset -= 500000;
	}
876

877
	div = (freq - offset + DIV / 2) / DIV;
878

879
	/* CMD= Set frequency */
880
	if (priv->firm_version < 0x0202)
881 882 883 884 885
		rc = send_seq(priv, {0x00, 0x02, 0x00, 0x00});
	else
		rc = send_seq(priv, {0x80, 0x02, 0x00, 0x00});
	if (rc < 0)
		goto ret;
886

887
	rc = priv->tuner_callback(priv->video_dev, XC2028_RESET_CLK, 1);
888
	if (rc < 0)
889
		goto ret;
890 891

	msleep(10);
892

893 894 895 896
	buf[0] = 0xff & (div >> 24);
	buf[1] = 0xff & (div >> 16);
	buf[2] = 0xff & (div >> 8);
	buf[3] = 0xff & (div);
897

898
	rc = i2c_send(priv, buf, sizeof(buf));
899
	if (rc < 0)
900
		goto ret;
901 902
	msleep(100);

903
	priv->frequency = freq;
904

905 906 907
	tuner_dbg("divisor= %02x %02x %02x %02x (freq=%d.%03d)\n",
	       buf[0], buf[1], buf[2], buf[3],
	       freq / 1000000, (freq % 1000000) / 1000);
908

909
	rc = 0;
910

911 912
ret:
	mutex_unlock(&priv->lock);
913

914
	return rc;
915 916
}

917
static int xc2028_set_tv_freq(struct dvb_frontend *fe,
918
			      struct analog_parameters *p)
919
{
920
	struct xc2028_data *priv = fe->tuner_priv;
921 922
	fe_bandwidth_t bw;

923 924 925 926 927
	/* if std is not defined, choose one */
	if (!p->std)
		p->std = V4L2_STD_MN;

	/* PAL/M, PAL/N, PAL/Nc and NTSC variants should use 6MHz firmware */
928 929 930 931
	if (p->std & V4L2_STD_MN)
		bw = BANDWIDTH_6_MHZ;
	else
		bw = BANDWIDTH_8_MHZ;
932

933
	tuner_dbg("%s called\n", __FUNCTION__);
934

935
	return generic_set_tv_freq(fe, 62500l * p->frequency, T_ANALOG_TV,
936
				   p->std, bw);
937
}
938

939 940
static int xc2028_set_params(struct dvb_frontend *fe,
			     struct dvb_frontend_parameters *p)
941
{
942
	struct xc2028_data *priv = fe->tuner_priv;
943

944
	tuner_dbg("%s called\n", __FUNCTION__);
945

946 947
	/* FIXME: Only OFDM implemented */
	if (fe->ops.info.type != FE_OFDM) {
948
		tuner_err("DTV type not implemented.\n");
949
		return -EINVAL;
950 951
	}

952
	return generic_set_tv_freq(fe, p->frequency, T_DIGITAL_TV,
953 954
				   0 /* NOT USED */,
				   p->u.ofdm.bandwidth);
955 956

}
957

958 959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979
static int xc2028_sleep(struct dvb_frontend *fe)
{
	struct xc2028_data *priv = fe->tuner_priv;
	int rc = 0;

	tuner_dbg("%s called\n", __FUNCTION__);

	mutex_lock(&priv->lock);

	if (priv->firm_version < 0x0202)
		rc = send_seq(priv, {0x00, 0x08, 0x00, 0x00});
	else
		rc = send_seq(priv, {0x80, 0x08, 0x00, 0x00});

	priv->cur_fw.type = 0;	/* need firmware reload */

	mutex_unlock(&priv->lock);

	return rc;
}


980
static int xc2028_dvb_release(struct dvb_frontend *fe)
981
{
982 983
	struct xc2028_data *priv = fe->tuner_priv;

984
	tuner_dbg("%s called\n", __FUNCTION__);
985

986 987
	mutex_lock(&xc2028_list_mutex);

988
	priv->count--;
989

990
	if (!priv->count) {
991 992
		list_del(&priv->xc2028_list);

993
		kfree(priv->ctrl.fname);
994 995

		free_firmware(priv);
996
		kfree(priv);
997
		fe->tuner_priv = NULL;
998
	}
999

1000 1001
	mutex_unlock(&xc2028_list_mutex);

1002 1003 1004
	return 0;
}

1005
static int xc2028_get_frequency(struct dvb_frontend *fe, u32 *frequency)
1006
{
1007
	struct xc2028_data *priv = fe->tuner_priv;
1008

1009
	tuner_dbg("%s called\n", __FUNCTION__);
1010

1011
	*frequency = priv->frequency;
1012 1013 1014 1015

	return 0;
}

1016
static int xc2028_set_config(struct dvb_frontend *fe, void *priv_cfg)
1017 1018 1019
{
	struct xc2028_data *priv = fe->tuner_priv;
	struct xc2028_ctrl *p    = priv_cfg;
1020
	int                 rc   = 0;
1021

1022
	tuner_dbg("%s called\n", __FUNCTION__);
1023

1024 1025
	mutex_lock(&priv->lock);

1026 1027
	kfree(priv->ctrl.fname);
	free_firmware(priv);
1028

1029 1030
	memcpy(&priv->ctrl, p, sizeof(priv->ctrl));
	priv->ctrl.fname = NULL;
1031

1032 1033 1034 1035
	if (p->fname) {
		priv->ctrl.fname = kstrdup(p->fname, GFP_KERNEL);
		if (priv->ctrl.fname == NULL)
			rc = -ENOMEM;
1036 1037
	}

1038 1039
	if (priv->ctrl.max_len < 9)
		priv->ctrl.max_len = 13;
1040

1041 1042
	mutex_unlock(&priv->lock);

1043
	return rc;
1044 1045
}

1046
static const struct dvb_tuner_ops xc2028_dvb_tuner_ops = {
1047
	.info = {
1048 1049 1050 1051 1052
		 .name = "Xceive XC3028",
		 .frequency_min = 42000000,
		 .frequency_max = 864000000,
		 .frequency_step = 50000,
		 },
1053

1054
	.set_config	   = xc2028_set_config,
1055 1056 1057 1058 1059
	.set_analog_params = xc2028_set_tv_freq,
	.release           = xc2028_dvb_release,
	.get_frequency     = xc2028_get_frequency,
	.get_rf_strength   = xc2028_signal,
	.set_params        = xc2028_set_params,
1060
	.sleep             = xc2028_sleep,
1061 1062 1063

};

1064
void *xc2028_attach(struct dvb_frontend *fe, struct xc2028_config *cfg)
1065
{
1066
	struct xc2028_data *priv;
1067
	void               *video_dev;
1068

1069
	if (debug)
1070
		printk(KERN_DEBUG PREFIX ": Xcv2028/3028 init called!\n");
1071

1072
	if (NULL == cfg || NULL == cfg->video_dev)
1073
		return NULL;
1074

1075
	if (!fe) {
1076
		printk(KERN_ERR PREFIX ": No frontend!\n");
1077
		return NULL;
1078 1079
	}

1080 1081
	video_dev = cfg->video_dev;

1082 1083
	mutex_lock(&xc2028_list_mutex);

1084
	list_for_each_entry(priv, &xc2028_list, xc2028_list) {
1085 1086 1087 1088
		if (priv->video_dev == cfg->video_dev) {
			video_dev = NULL;
			break;
		}
1089 1090
	}

1091
	if (video_dev) {
1092
		priv = kzalloc(sizeof(*priv), GFP_KERNEL);
1093 1094
		if (priv == NULL) {
			mutex_unlock(&xc2028_list_mutex);
1095
			return NULL;
1096
		}
1097

1098 1099
		priv->i2c_props.addr = cfg->i2c_addr;
		priv->i2c_props.adap = cfg->i2c_adap;
1100
		priv->video_dev = video_dev;
1101
		priv->tuner_callback = cfg->callback;
1102
		priv->ctrl.max_len = 13;
1103

1104 1105
		mutex_init(&priv->lock);

1106
		list_add_tail(&priv->xc2028_list, &xc2028_list);
1107
	}
1108 1109

	fe->tuner_priv = priv;
1110
	priv->count++;
1111 1112

	memcpy(&fe->ops.tuner_ops, &xc2028_dvb_tuner_ops,
1113
	       sizeof(xc2028_dvb_tuner_ops));
1114 1115 1116

	tuner_info("type set to %s\n", "XCeive xc2028/xc3028 tuner");

1117 1118 1119
	if (cfg->ctrl)
		xc2028_set_config(fe, cfg->ctrl);

1120 1121
	mutex_unlock(&xc2028_list_mutex);

1122
	return fe;
1123
}
1124

1125 1126
EXPORT_SYMBOL(xc2028_attach);

1127
MODULE_DESCRIPTION("Xceive xc2028/xc3028 tuner driver");
1128
MODULE_AUTHOR("Michel Ludwig <michel.ludwig@gmail.com>");
1129 1130
MODULE_AUTHOR("Mauro Carvalho Chehab <mchehab@infradead.org>");
MODULE_LICENSE("GPL");