af9035.c 31.3 KB
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/*
 * Afatech AF9035 DVB USB driver
 *
 * Copyright (C) 2009 Antti Palosaari <crope@iki.fi>
 * Copyright (C) 2012 Antti Palosaari <crope@iki.fi>
 *
 *    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.,
 *    51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
 */

#include "af9035.h"

DVB_DEFINE_MOD_OPT_ADAPTER_NR(adapter_nr);

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static u16 af9035_checksum(const u8 *buf, size_t len)
{
	size_t i;
	u16 checksum = 0;

	for (i = 1; i < len; i++) {
		if (i % 2)
			checksum += buf[i] << 8;
		else
			checksum += buf[i];
	}
	checksum = ~checksum;

	return checksum;
}

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static int af9035_ctrl_msg(struct dvb_usb_device *d, struct usb_req *req)
43
{
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#define BUF_LEN 64
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#define REQ_HDR_LEN 4 /* send header size */
#define ACK_HDR_LEN 3 /* rece header size */
#define CHECKSUM_LEN 2
#define USB_TIMEOUT 2000
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	struct state *state = d_to_priv(d);
	int ret, wlen, rlen;
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	u8 buf[BUF_LEN];
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	u16 checksum, tmp_checksum;
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	/* buffer overflow check */
	if (req->wlen > (BUF_LEN - REQ_HDR_LEN - CHECKSUM_LEN) ||
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			req->rlen > (BUF_LEN - ACK_HDR_LEN - CHECKSUM_LEN)) {
		dev_err(&d->udev->dev, "%s: too much data wlen=%d rlen=%d\n",
				__func__, req->wlen, req->rlen);
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		return -EINVAL;
	}

	buf[0] = REQ_HDR_LEN + req->wlen + CHECKSUM_LEN - 1;
	buf[1] = req->mbox;
	buf[2] = req->cmd;
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	buf[3] = state->seq++;
	memcpy(&buf[REQ_HDR_LEN], req->wbuf, req->wlen);

	wlen = REQ_HDR_LEN + req->wlen + CHECKSUM_LEN;
	rlen = ACK_HDR_LEN + req->rlen + CHECKSUM_LEN;
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	/* calc and add checksum */
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	checksum = af9035_checksum(buf, buf[0] - 1);
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	buf[buf[0] - 1] = (checksum >> 8);
	buf[buf[0] - 0] = (checksum & 0xff);
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	/* no ack for these packets */
	if (req->cmd == CMD_FW_DL)
		rlen = 0;
79

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	ret = dvb_usbv2_generic_rw(d, buf, wlen, buf, rlen);
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	if (ret)
		goto err;
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	/* no ack for those packets */
	if (req->cmd == CMD_FW_DL)
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		goto exit;
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	/* verify checksum */
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	checksum = af9035_checksum(buf, rlen - 2);
	tmp_checksum = (buf[rlen - 2] << 8) | buf[rlen - 1];
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	if (tmp_checksum != checksum) {
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		dev_err(&d->udev->dev, "%s: command=%02x checksum mismatch " \
				"(%04x != %04x)\n", KBUILD_MODNAME, req->cmd,
				tmp_checksum, checksum);
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		ret = -EIO;
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		goto err;
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	}
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	/* check status */
	if (buf[2]) {
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		dev_dbg(&d->udev->dev, "%s: command=%02x failed fw error=%d\n",
				__func__, req->cmd, buf[2]);
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		ret = -EIO;
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		goto err;
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	}

	/* read request, copy returned data to return buf */
	if (req->rlen)
		memcpy(req->rbuf, &buf[ACK_HDR_LEN], req->rlen);

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exit:
	return 0;

err:
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	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
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	return ret;
}

/* write multiple registers */
static int af9035_wr_regs(struct dvb_usb_device *d, u32 reg, u8 *val, int len)
{
	u8 wbuf[6 + len];
	u8 mbox = (reg >> 16) & 0xff;
	struct usb_req req = { CMD_MEM_WR, mbox, sizeof(wbuf), wbuf, 0, NULL };

	wbuf[0] = len;
	wbuf[1] = 2;
	wbuf[2] = 0;
	wbuf[3] = 0;
	wbuf[4] = (reg >> 8) & 0xff;
	wbuf[5] = (reg >> 0) & 0xff;
	memcpy(&wbuf[6], val, len);

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	return af9035_ctrl_msg(d, &req);
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}

/* read multiple registers */
static int af9035_rd_regs(struct dvb_usb_device *d, u32 reg, u8 *val, int len)
{
	u8 wbuf[] = { len, 2, 0, 0, (reg >> 8) & 0xff, reg & 0xff };
	u8 mbox = (reg >> 16) & 0xff;
	struct usb_req req = { CMD_MEM_RD, mbox, sizeof(wbuf), wbuf, len, val };

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	return af9035_ctrl_msg(d, &req);
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}

/* write single register */
static int af9035_wr_reg(struct dvb_usb_device *d, u32 reg, u8 val)
{
	return af9035_wr_regs(d, reg, &val, 1);
}

/* read single register */
static int af9035_rd_reg(struct dvb_usb_device *d, u32 reg, u8 *val)
{
	return af9035_rd_regs(d, reg, val, 1);
}

/* write single register with mask */
static int af9035_wr_reg_mask(struct dvb_usb_device *d, u32 reg, u8 val,
		u8 mask)
{
	int ret;
	u8 tmp;

	/* no need for read if whole reg is written */
	if (mask != 0xff) {
		ret = af9035_rd_regs(d, reg, &tmp, 1);
		if (ret)
			return ret;

		val &= mask;
		tmp &= ~mask;
		val |= tmp;
	}

	return af9035_wr_regs(d, reg, &val, 1);
}

static int af9035_i2c_master_xfer(struct i2c_adapter *adap,
		struct i2c_msg msg[], int num)
{
	struct dvb_usb_device *d = i2c_get_adapdata(adap);
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	struct state *state = d_to_priv(d);
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	int ret;

	if (mutex_lock_interruptible(&d->i2c_mutex) < 0)
		return -EAGAIN;

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	/*
	 * I2C sub header is 5 bytes long. Meaning of those bytes are:
	 * 0: data len
	 * 1: I2C addr << 1
	 * 2: reg addr len
	 *    byte 3 and 4 can be used as reg addr
	 * 3: reg addr MSB
	 *    used when reg addr len is set to 2
	 * 4: reg addr LSB
	 *    used when reg addr len is set to 1 or 2
	 *
	 * For the simplify we do not use register addr at all.
	 * NOTE: As a firmware knows tuner type there is very small possibility
	 * there could be some tuner I2C hacks done by firmware and this may
	 * lead problems if firmware expects those bytes are used.
	 */
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	if (num == 2 && !(msg[0].flags & I2C_M_RD) &&
			(msg[1].flags & I2C_M_RD)) {
		if (msg[0].len > 40 || msg[1].len > 40) {
			/* TODO: correct limits > 40 */
			ret = -EOPNOTSUPP;
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		} else if ((msg[0].addr == state->af9033_config[0].i2c_addr) ||
			   (msg[0].addr == state->af9033_config[1].i2c_addr)) {
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			/* demod access via firmware interface */
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			u32 reg = msg[0].buf[0] << 16 | msg[0].buf[1] << 8 |
					msg[0].buf[2];
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			if (msg[0].addr == state->af9033_config[1].i2c_addr)
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				reg |= 0x100000;
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			ret = af9035_rd_regs(d, reg, &msg[1].buf[0],
					msg[1].len);
		} else {
			/* I2C */
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			u8 buf[5 + msg[0].len];
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			struct usb_req req = { CMD_I2C_RD, 0, sizeof(buf),
					buf, msg[1].len, msg[1].buf };
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			req.mbox |= ((msg[0].addr & 0x80)  >>  3);
H
Hans-Frieder Vogt 已提交
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			buf[0] = msg[1].len;
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			buf[1] = msg[0].addr << 1;
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			buf[2] = 0x00; /* reg addr len */
			buf[3] = 0x00; /* reg addr MSB */
			buf[4] = 0x00; /* reg addr LSB */
			memcpy(&buf[5], msg[0].buf, msg[0].len);
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			ret = af9035_ctrl_msg(d, &req);
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		}
	} else if (num == 1 && !(msg[0].flags & I2C_M_RD)) {
		if (msg[0].len > 40) {
			/* TODO: correct limits > 40 */
			ret = -EOPNOTSUPP;
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		} else if ((msg[0].addr == state->af9033_config[0].i2c_addr) ||
			   (msg[0].addr == state->af9033_config[1].i2c_addr)) {
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			/* demod access via firmware interface */
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			u32 reg = msg[0].buf[0] << 16 | msg[0].buf[1] << 8 |
					msg[0].buf[2];
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			if (msg[0].addr == state->af9033_config[1].i2c_addr)
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				reg |= 0x100000;
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			ret = af9035_wr_regs(d, reg, &msg[0].buf[3],
					msg[0].len - 3);
		} else {
			/* I2C */
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			u8 buf[5 + msg[0].len];
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			struct usb_req req = { CMD_I2C_WR, 0, sizeof(buf), buf,
					0, NULL };
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			req.mbox |= ((msg[0].addr & 0x80)  >>  3);
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			buf[0] = msg[0].len;
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			buf[1] = msg[0].addr << 1;
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			buf[2] = 0x00; /* reg addr len */
			buf[3] = 0x00; /* reg addr MSB */
			buf[4] = 0x00; /* reg addr LSB */
			memcpy(&buf[5], msg[0].buf, msg[0].len);
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			ret = af9035_ctrl_msg(d, &req);
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		}
	} else {
		/*
		 * We support only two kind of I2C transactions:
		 * 1) 1 x read + 1 x write
		 * 2) 1 x write
		 */
		ret = -EOPNOTSUPP;
	}

	mutex_unlock(&d->i2c_mutex);

	if (ret < 0)
		return ret;
	else
		return num;
}

static u32 af9035_i2c_functionality(struct i2c_adapter *adapter)
{
	return I2C_FUNC_I2C;
}

static struct i2c_algorithm af9035_i2c_algo = {
	.master_xfer = af9035_i2c_master_xfer,
	.functionality = af9035_i2c_functionality,
};

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static int af9035_identify_state(struct dvb_usb_device *d, const char **name)
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{
	int ret;
	u8 wbuf[1] = { 1 };
	u8 rbuf[4];
	struct usb_req req = { CMD_FW_QUERYINFO, 0, sizeof(wbuf), wbuf,
			sizeof(rbuf), rbuf };

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	ret = af9035_ctrl_msg(d, &req);
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	if (ret < 0)
		goto err;

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	dev_dbg(&d->udev->dev, "%s: reply=%*ph\n", __func__, 4, rbuf);
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	if (rbuf[0] || rbuf[1] || rbuf[2] || rbuf[3])
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		ret = WARM;
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	else
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		ret = COLD;
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311
	return ret;
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err:
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	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
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	return ret;
}

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static int af9035_download_firmware(struct dvb_usb_device *d,
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		const struct firmware *fw)
{
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	int ret, i, j, len;
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	u8 wbuf[1];
	u8 rbuf[4];
	struct usb_req req = { 0, 0, 0, NULL, 0, NULL };
	struct usb_req req_fw_dl = { CMD_FW_DL, 0, 0, wbuf, 0, NULL };
	struct usb_req req_fw_ver = { CMD_FW_QUERYINFO, 0, 1, wbuf, 4, rbuf } ;
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	u8 hdr_core, tmp;
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	u16 hdr_addr, hdr_data_len, hdr_checksum;
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	#define MAX_DATA 58
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	#define HDR_SIZE 7

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	/*
	 * In case of dual tuner configuration we need to do some extra
	 * initialization in order to download firmware to slave demod too,
	 * which is done by master demod.
	 * Master feeds also clock and controls power via GPIO.
	 */
	ret = af9035_rd_reg(d, EEPROM_DUAL_MODE, &tmp);
	if (ret < 0)
		goto err;

	if (tmp) {
		/* configure gpioh1, reset & power slave demod */
		ret = af9035_wr_reg_mask(d, 0x00d8b0, 0x01, 0x01);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0x00d8b1, 0x01, 0x01);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0x00d8af, 0x00, 0x01);
		if (ret < 0)
			goto err;

		usleep_range(10000, 50000);

		ret = af9035_wr_reg_mask(d, 0x00d8af, 0x01, 0x01);
		if (ret < 0)
			goto err;

		/* tell the slave I2C address */
		ret = af9035_rd_reg(d, EEPROM_2ND_DEMOD_ADDR, &tmp);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg(d, 0x00417f, tmp);
		if (ret < 0)
			goto err;

		/* enable clock out */
		ret = af9035_wr_reg_mask(d, 0x00d81a, 0x01, 0x01);
		if (ret < 0)
			goto err;
	}

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	/*
	 * Thanks to Daniel Glöckner <daniel-gl@gmx.net> about that info!
	 *
	 * byte 0: MCS 51 core
	 *  There are two inside the AF9035 (1=Link and 2=OFDM) with separate
	 *  address spaces
	 * byte 1-2: Big endian destination address
	 * byte 3-4: Big endian number of data bytes following the header
	 * byte 5-6: Big endian header checksum, apparently ignored by the chip
	 *  Calculated as ~(h[0]*256+h[1]+h[2]*256+h[3]+h[4]*256)
	 */

	for (i = fw->size; i > HDR_SIZE;) {
		hdr_core = fw->data[fw->size - i + 0];
		hdr_addr = fw->data[fw->size - i + 1] << 8;
		hdr_addr |= fw->data[fw->size - i + 2] << 0;
		hdr_data_len = fw->data[fw->size - i + 3] << 8;
		hdr_data_len |= fw->data[fw->size - i + 4] << 0;
		hdr_checksum = fw->data[fw->size - i + 5] << 8;
		hdr_checksum |= fw->data[fw->size - i + 6] << 0;

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		dev_dbg(&d->udev->dev, "%s: core=%d addr=%04x data_len=%d " \
				"checksum=%04x\n", __func__, hdr_core, hdr_addr,
				hdr_data_len, hdr_checksum);
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		if (((hdr_core != 1) && (hdr_core != 2)) ||
				(hdr_data_len > i)) {
405
			dev_dbg(&d->udev->dev, "%s: bad firmware\n", __func__);
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			break;
		}
408

409 410
		/* download begin packet */
		req.cmd = CMD_FW_DL_BEGIN;
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		ret = af9035_ctrl_msg(d, &req);
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		if (ret < 0)
			goto err;
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		/* download firmware packet(s) */
		for (j = HDR_SIZE + hdr_data_len; j > 0; j -= MAX_DATA) {
			len = j;
			if (len > MAX_DATA)
				len = MAX_DATA;
			req_fw_dl.wlen = len;
			req_fw_dl.wbuf = (u8 *) &fw->data[fw->size - i +
					HDR_SIZE + hdr_data_len - j];
423
			ret = af9035_ctrl_msg(d, &req_fw_dl);
424
			if (ret < 0)
425 426
				goto err;
		}
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		/* download end packet */
		req.cmd = CMD_FW_DL_END;
430
		ret = af9035_ctrl_msg(d, &req);
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		if (ret < 0)
			goto err;

		i -= hdr_data_len + HDR_SIZE;

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		dev_dbg(&d->udev->dev, "%s: data uploaded=%zu\n",
				__func__, fw->size - i);
438 439
	}

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	/* print warn if firmware is bad, continue and see what happens */
	if (i)
		dev_warn(&d->udev->dev, "%s: bad firmware\n", KBUILD_MODNAME);

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	/* firmware loaded, request boot */
	req.cmd = CMD_FW_BOOT;
446
	ret = af9035_ctrl_msg(d, &req);
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	if (ret < 0)
		goto err;

	/* ensure firmware starts */
	wbuf[0] = 1;
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	ret = af9035_ctrl_msg(d, &req_fw_ver);
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	if (ret < 0)
		goto err;

	if (!(rbuf[0] || rbuf[1] || rbuf[2] || rbuf[3])) {
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		dev_err(&d->udev->dev, "%s: firmware did not run\n",
				KBUILD_MODNAME);
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		ret = -ENODEV;
		goto err;
	}

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	dev_info(&d->udev->dev, "%s: firmware version=%d.%d.%d.%d",
			KBUILD_MODNAME, rbuf[0], rbuf[1], rbuf[2], rbuf[3]);
465

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	return 0;

err:
469
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
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	return ret;
}

474
static int af9035_download_firmware_it9135(struct dvb_usb_device *d,
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		const struct firmware *fw)
{
	int ret, i, i_prev;
	u8 wbuf[1];
	u8 rbuf[4];
	struct usb_req req = { 0, 0, 0, NULL, 0, NULL };
	struct usb_req req_fw_dl = { CMD_FW_SCATTER_WR, 0, 0, NULL, 0, NULL };
	struct usb_req req_fw_ver = { CMD_FW_QUERYINFO, 0, 1, wbuf, 4, rbuf } ;
	#define HDR_SIZE 7

	/*
	 * There seems to be following firmware header. Meaning of bytes 0-3
	 * is unknown.
	 *
	 * 0: 3
	 * 1: 0, 1
	 * 2: 0
	 * 3: 1, 2, 3
	 * 4: addr MSB
	 * 5: addr LSB
	 * 6: count of data bytes ?
	 */

	for (i = HDR_SIZE, i_prev = 0; i <= fw->size; i++) {
		if (i == fw->size ||
				(fw->data[i + 0] == 0x03 &&
				(fw->data[i + 1] == 0x00 ||
				fw->data[i + 1] == 0x01) &&
				fw->data[i + 2] == 0x00)) {
			req_fw_dl.wlen = i - i_prev;
			req_fw_dl.wbuf = (u8 *) &fw->data[i_prev];
			i_prev = i;
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			ret = af9035_ctrl_msg(d, &req_fw_dl);
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			if (ret < 0)
				goto err;

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			dev_dbg(&d->udev->dev, "%s: data uploaded=%d\n",
					__func__, i);
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		}
	}

	/* firmware loaded, request boot */
	req.cmd = CMD_FW_BOOT;
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	ret = af9035_ctrl_msg(d, &req);
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	if (ret < 0)
		goto err;

	/* ensure firmware starts */
	wbuf[0] = 1;
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	ret = af9035_ctrl_msg(d, &req_fw_ver);
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	if (ret < 0)
		goto err;

	if (!(rbuf[0] || rbuf[1] || rbuf[2] || rbuf[3])) {
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		dev_err(&d->udev->dev, "%s: firmware did not run\n",
				KBUILD_MODNAME);
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		ret = -ENODEV;
		goto err;
	}

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	dev_info(&d->udev->dev, "%s: firmware version=%d.%d.%d.%d",
			KBUILD_MODNAME, rbuf[0], rbuf[1], rbuf[2], rbuf[3]);
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	return 0;

err:
541
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
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	return ret;
}

546
static int af9035_read_config(struct dvb_usb_device *d)
547
{
548
	struct state *state = d_to_priv(d);
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	int ret, i, eeprom_shift = 0;
	u8 tmp;
	u16 tmp16;

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	/* demod I2C "address" */
	state->af9033_config[0].i2c_addr = 0x38;

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	/* check if there is dual tuners */
	ret = af9035_rd_reg(d, EEPROM_DUAL_MODE, &tmp);
	if (ret < 0)
		goto err;

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	state->dual_mode = tmp;
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	dev_dbg(&d->udev->dev, "%s: dual mode=%d\n", __func__,
			state->dual_mode);
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	if (state->dual_mode) {
		/* read 2nd demodulator I2C address */
567
		ret = af9035_rd_reg(d, EEPROM_2ND_DEMOD_ADDR, &tmp);
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		if (ret < 0)
			goto err;
570

571
		state->af9033_config[1].i2c_addr = tmp;
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		dev_dbg(&d->udev->dev, "%s: 2nd demod I2C addr=%02x\n",
				__func__, tmp);
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	}

576
	for (i = 0; i < state->dual_mode + 1; i++) {
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		/* tuner */
		ret = af9035_rd_reg(d, EEPROM_1_TUNER_ID + eeprom_shift, &tmp);
		if (ret < 0)
			goto err;

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		state->af9033_config[i].tuner = tmp;
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		dev_dbg(&d->udev->dev, "%s: [%d]tuner=%02x\n",
				__func__, i, tmp);
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		switch (tmp) {
		case AF9033_TUNER_TUA9001:
588
		case AF9033_TUNER_FC0011:
589
		case AF9033_TUNER_MXL5007T:
590
		case AF9033_TUNER_TDA18218:
591
		case AF9033_TUNER_FC2580:
592
		case AF9033_TUNER_FC0012:
593
			state->af9033_config[i].spec_inv = 1;
594 595
			break;
		default:
596 597 598
			dev_warn(&d->udev->dev, "%s: tuner id=%02x not " \
					"supported, please report!",
					KBUILD_MODNAME, tmp);
599
		}
600

601 602 603
		/* disable dual mode if driver does not support it */
		if (i == 1)
			switch (tmp) {
604 605
			case AF9033_TUNER_FC0012:
				break;
606 607 608 609 610 611 612
			default:
				state->dual_mode = false;
				dev_info(&d->udev->dev, "%s: driver does not " \
						"support 2nd tuner and will " \
						"disable it", KBUILD_MODNAME);
		}

613 614 615 616 617 618 619 620 621 622 623 624 625
		/* tuner IF frequency */
		ret = af9035_rd_reg(d, EEPROM_1_IFFREQ_L + eeprom_shift, &tmp);
		if (ret < 0)
			goto err;

		tmp16 = tmp;

		ret = af9035_rd_reg(d, EEPROM_1_IFFREQ_H + eeprom_shift, &tmp);
		if (ret < 0)
			goto err;

		tmp16 |= tmp << 8;

626
		dev_dbg(&d->udev->dev, "%s: [%d]IF=%d\n", __func__, i, tmp16);
627 628 629 630 631 632 633 634 635 636 637

		eeprom_shift = 0x10; /* shift for the 2nd tuner params */
	}

	/* get demod clock */
	ret = af9035_rd_reg(d, 0x00d800, &tmp);
	if (ret < 0)
		goto err;

	tmp = (tmp >> 0) & 0x0f;

638
	for (i = 0; i < ARRAY_SIZE(state->af9033_config); i++)
639
		state->af9033_config[i].clock = clock_lut[tmp];
640 641 642 643

	return 0;

err:
644
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
645 646 647 648

	return ret;
}

649
static int af9035_read_config_it9135(struct dvb_usb_device *d)
650
{
651
	struct state *state = d_to_priv(d);
652 653 654
	int ret, i;
	u8 tmp;

655
	state->dual_mode = false;
656 657 658 659 660 661 662 663

	/* get demod clock */
	ret = af9035_rd_reg(d, 0x00d800, &tmp);
	if (ret < 0)
		goto err;

	tmp = (tmp >> 0) & 0x0f;

664
	for (i = 0; i < ARRAY_SIZE(state->af9033_config); i++)
665
		state->af9033_config[i].clock = clock_lut_it9135[tmp];
666 667 668 669

	return 0;

err:
670
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
671 672 673 674

	return ret;
}

675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720
static int af9035_tua9001_tuner_callback(struct dvb_usb_device *d,
		int cmd, int arg)
{
	int ret;
	u8 val;

	dev_dbg(&d->udev->dev, "%s: cmd=%d arg=%d\n", __func__, cmd, arg);

	/*
	 * CEN     always enabled by hardware wiring
	 * RESETN  GPIOT3
	 * RXEN    GPIOT2
	 */

	switch (cmd) {
	case TUA9001_CMD_RESETN:
		if (arg)
			val = 0x00;
		else
			val = 0x01;

		ret = af9035_wr_reg_mask(d, 0x00d8e7, val, 0x01);
		if (ret < 0)
			goto err;
		break;
	case TUA9001_CMD_RXEN:
		if (arg)
			val = 0x01;
		else
			val = 0x00;

		ret = af9035_wr_reg_mask(d, 0x00d8eb, val, 0x01);
		if (ret < 0)
			goto err;
		break;
	}

	return 0;

err:
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);

	return ret;
}


721
static int af9035_fc0011_tuner_callback(struct dvb_usb_device *d,
722
		int cmd, int arg)
723
{
724
	int ret;
725 726 727 728

	switch (cmd) {
	case FC0011_FE_CALLBACK_POWER:
		/* Tuner enable */
729 730 731 732 733 734 735 736 737 738 739 740
		ret = af9035_wr_reg_mask(d, 0xd8eb, 1, 1);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0xd8ec, 1, 1);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0xd8ed, 1, 1);
		if (ret < 0)
			goto err;

741
		/* LED */
742 743 744 745 746 747 748 749
		ret = af9035_wr_reg_mask(d, 0xd8d0, 1, 1);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0xd8d1, 1, 1);
		if (ret < 0)
			goto err;

750
		usleep_range(10000, 50000);
751 752
		break;
	case FC0011_FE_CALLBACK_RESET:
753 754 755 756 757 758 759 760 761 762 763 764
		ret = af9035_wr_reg(d, 0xd8e9, 1);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg(d, 0xd8e8, 1);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg(d, 0xd8e7, 1);
		if (ret < 0)
			goto err;

765
		usleep_range(10000, 20000);
766 767 768 769 770

		ret = af9035_wr_reg(d, 0xd8e7, 0);
		if (ret < 0)
			goto err;

771
		usleep_range(10000, 20000);
772 773
		break;
	default:
774 775
		ret = -EINVAL;
		goto err;
776 777 778
	}

	return 0;
779 780

err:
781
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
782 783

	return ret;
784 785 786 787
}

static int af9035_tuner_callback(struct dvb_usb_device *d, int cmd, int arg)
{
788
	struct state *state = d_to_priv(d);
789 790

	switch (state->af9033_config[0].tuner) {
791 792
	case AF9033_TUNER_FC0011:
		return af9035_fc0011_tuner_callback(d, cmd, arg);
793 794
	case AF9033_TUNER_TUA9001:
		return af9035_tua9001_tuner_callback(d, cmd, arg);
795 796 797 798
	default:
		break;
	}

799
	return 0;
800 801 802 803 804 805 806 807
}

static int af9035_frontend_callback(void *adapter_priv, int component,
				    int cmd, int arg)
{
	struct i2c_adapter *adap = adapter_priv;
	struct dvb_usb_device *d = i2c_get_adapdata(adap);

808 809 810
	dev_dbg(&d->udev->dev, "%s: component=%d cmd=%d arg=%d\n",
			__func__, component, cmd, arg);

811 812 813 814 815 816 817
	switch (component) {
	case DVB_FRONTEND_COMPONENT_TUNER:
		return af9035_tuner_callback(d, cmd, arg);
	default:
		break;
	}

818
	return 0;
819 820
}

821 822 823 824 825 826
static int af9035_get_adapter_count(struct dvb_usb_device *d)
{
	struct state *state = d_to_priv(d);
	return state->dual_mode + 1;
}

827 828
static int af9035_frontend_attach(struct dvb_usb_adapter *adap)
{
829 830
	struct state *state = adap_to_priv(adap);
	struct dvb_usb_device *d = adap_to_d(adap);
831 832
	int ret;

833 834
	if (!state->af9033_config[adap->id].tuner) {
		/* unsupported tuner */
835 836 837 838
		ret = -ENODEV;
		goto err;
	}

839
	if (adap->id == 0) {
840 841 842
		state->af9033_config[0].ts_mode = AF9033_TS_MODE_USB;
		state->af9033_config[1].ts_mode = AF9033_TS_MODE_SERIAL;

843
		ret = af9035_wr_reg(d, 0x00417f,
844
				state->af9033_config[1].i2c_addr);
845 846 847
		if (ret < 0)
			goto err;

848
		ret = af9035_wr_reg(d, 0x00d81a, state->dual_mode);
849 850 851 852 853
		if (ret < 0)
			goto err;
	}

	/* attach demodulator */
854 855
	adap->fe[0] = dvb_attach(af9033_attach, &state->af9033_config[adap->id],
			&d->i2c_adap);
856
	if (adap->fe[0] == NULL) {
857 858 859
		ret = -ENODEV;
		goto err;
	}
860 861

	/* disable I2C-gate */
862 863
	adap->fe[0]->ops.i2c_gate_ctrl = NULL;
	adap->fe[0]->callback = af9035_frontend_callback;
864 865 866 867

	return 0;

err:
868
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
869 870 871 872 873 874 875 876

	return ret;
}

static struct tua9001_config af9035_tua9001_config = {
	.i2c_addr = 0x60,
};

877 878 879 880
static const struct fc0011_config af9035_fc0011_config = {
	.i2c_address = 0x60,
};

881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896
static struct mxl5007t_config af9035_mxl5007t_config[] = {
	{
		.xtal_freq_hz = MxL_XTAL_24_MHZ,
		.if_freq_hz = MxL_IF_4_57_MHZ,
		.invert_if = 0,
		.loop_thru_enable = 0,
		.clk_out_enable = 0,
		.clk_out_amp = MxL_CLKOUT_AMP_0_94V,
	}, {
		.xtal_freq_hz = MxL_XTAL_24_MHZ,
		.if_freq_hz = MxL_IF_4_57_MHZ,
		.invert_if = 0,
		.loop_thru_enable = 1,
		.clk_out_enable = 1,
		.clk_out_amp = MxL_CLKOUT_AMP_0_94V,
	}
897 898
};

899 900 901 902 903
static struct tda18218_config af9035_tda18218_config = {
	.i2c_address = 0x60,
	.i2c_wr_max = 21,
};

904 905 906 907 908
static const struct fc2580_config af9035_fc2580_config = {
	.i2c_addr = 0x56,
	.clock = 16384000,
};

909 910 911 912
static const struct fc0012_config af9035_fc0012_config[] = {
	{
		.i2c_address = 0x63,
		.xtal_freq = FC_XTAL_36_MHZ,
913
		.dual_master = true,
914 915 916 917 918
		.loop_through = true,
		.clock_out = true,
	}, {
		.i2c_address = 0x63 | 0x80, /* I2C bus select hack */
		.xtal_freq = FC_XTAL_36_MHZ,
919
		.dual_master = true,
920
	}
921 922
};

923 924
static int af9035_tuner_attach(struct dvb_usb_adapter *adap)
{
925 926
	struct state *state = adap_to_priv(adap);
	struct dvb_usb_device *d = adap_to_d(adap);
927 928
	int ret;
	struct dvb_frontend *fe;
929
	struct i2c_msg msg[1];
930 931 932 933 934
	u8 tuner_addr;
	/*
	 * XXX: Hack used in that function: we abuse unused I2C address bit [7]
	 * to carry info about used I2C bus for dual tuner configuration.
	 */
935

936
	switch (state->af9033_config[adap->id].tuner) {
937 938 939 940 941
	case AF9033_TUNER_TUA9001:
		/* AF9035 gpiot3 = TUA9001 RESETN
		   AF9035 gpiot2 = TUA9001 RXEN */

		/* configure gpiot2 and gpiot2 as output */
942
		ret = af9035_wr_reg_mask(d, 0x00d8ec, 0x01, 0x01);
943 944 945
		if (ret < 0)
			goto err;

946
		ret = af9035_wr_reg_mask(d, 0x00d8ed, 0x01, 0x01);
947 948 949
		if (ret < 0)
			goto err;

950
		ret = af9035_wr_reg_mask(d, 0x00d8e8, 0x01, 0x01);
951 952 953
		if (ret < 0)
			goto err;

954
		ret = af9035_wr_reg_mask(d, 0x00d8e9, 0x01, 0x01);
955 956 957 958
		if (ret < 0)
			goto err;

		/* attach tuner */
959 960
		fe = dvb_attach(tua9001_attach, adap->fe[0],
				&d->i2c_adap, &af9035_tua9001_config);
961
		break;
962
	case AF9033_TUNER_FC0011:
963 964
		fe = dvb_attach(fc0011_attach, adap->fe[0],
				&d->i2c_adap, &af9035_fc0011_config);
965
		break;
966
	case AF9033_TUNER_MXL5007T:
967 968 969 970
		if (adap->id == 0) {
			ret = af9035_wr_reg(d, 0x00d8e0, 1);
			if (ret < 0)
				goto err;
971

972 973 974
			ret = af9035_wr_reg(d, 0x00d8e1, 1);
			if (ret < 0)
				goto err;
975

976 977 978
			ret = af9035_wr_reg(d, 0x00d8df, 0);
			if (ret < 0)
				goto err;
979

980
			msleep(30);
981

982 983 984
			ret = af9035_wr_reg(d, 0x00d8df, 1);
			if (ret < 0)
				goto err;
985

986
			msleep(300);
987

988 989 990
			ret = af9035_wr_reg(d, 0x00d8c0, 1);
			if (ret < 0)
				goto err;
991

992 993 994
			ret = af9035_wr_reg(d, 0x00d8c1, 1);
			if (ret < 0)
				goto err;
995

996 997 998
			ret = af9035_wr_reg(d, 0x00d8bf, 0);
			if (ret < 0)
				goto err;
999

1000 1001 1002
			ret = af9035_wr_reg(d, 0x00d8b4, 1);
			if (ret < 0)
				goto err;
1003

1004 1005 1006
			ret = af9035_wr_reg(d, 0x00d8b5, 1);
			if (ret < 0)
				goto err;
1007

1008 1009 1010
			ret = af9035_wr_reg(d, 0x00d8b3, 1);
			if (ret < 0)
				goto err;
1011 1012 1013 1014

			tuner_addr = 0x60;
		} else {
			tuner_addr = 0x60 | 0x80; /* I2C bus hack */
1015
		}
1016 1017

		/* attach tuner */
1018 1019
		fe = dvb_attach(mxl5007t_attach, adap->fe[0], &d->i2c_adap,
				tuner_addr, &af9035_mxl5007t_config[adap->id]);
1020
		break;
1021 1022
	case AF9033_TUNER_TDA18218:
		/* attach tuner */
1023 1024
		fe = dvb_attach(tda18218_attach, adap->fe[0],
				&d->i2c_adap, &af9035_tda18218_config);
1025
		break;
1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044
	case AF9033_TUNER_FC2580:
		/* Tuner enable using gpiot2_o, gpiot2_en and gpiot2_on  */
		ret = af9035_wr_reg_mask(d, 0xd8eb, 0x01, 0x01);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0xd8ec, 0x01, 0x01);
		if (ret < 0)
			goto err;

		ret = af9035_wr_reg_mask(d, 0xd8ed, 0x01, 0x01);
		if (ret < 0)
			goto err;

		usleep_range(10000, 50000);
		/* attach tuner */
		fe = dvb_attach(fc2580_attach, adap->fe[0],
				&d->i2c_adap, &af9035_fc2580_config);
		break;
1045 1046 1047 1048 1049 1050 1051
	case AF9033_TUNER_FC0012:
		/*
		 * AF9035 gpiot2 = FC0012 enable
		 * XXX: there seems to be something on gpioh8 too, but on my
		 * my test I didn't find any difference.
		 */

1052 1053 1054 1055 1056
		if (adap->id == 0) {
			/* configure gpiot2 as output and high */
			ret = af9035_wr_reg_mask(d, 0xd8eb, 0x01, 0x01);
			if (ret < 0)
				goto err;
1057

1058 1059 1060
			ret = af9035_wr_reg_mask(d, 0xd8ec, 0x01, 0x01);
			if (ret < 0)
				goto err;
1061

1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078
			ret = af9035_wr_reg_mask(d, 0xd8ed, 0x01, 0x01);
			if (ret < 0)
				goto err;
		} else {
			/*
			 * FIXME: That belongs for the FC0012 driver.
			 * Write 02 to FC0012 master tuner register 0d directly
			 * in order to make slave tuner working.
			 */
			msg[0].addr = 0x63;
			msg[0].flags = 0;
			msg[0].len = 2;
			msg[0].buf = "\x0d\x02";
			ret = i2c_transfer(&d->i2c_adap, msg, 1);
			if (ret < 0)
				goto err;
		}
1079 1080 1081

		usleep_range(10000, 50000);

1082
		fe = dvb_attach(fc0012_attach, adap->fe[0], &d->i2c_adap,
1083
				&af9035_fc0012_config[adap->id]);
1084
		break;
1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096
	default:
		fe = NULL;
	}

	if (fe == NULL) {
		ret = -ENODEV;
		goto err;
	}

	return 0;

err:
1097
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
1098 1099 1100 1101

	return ret;
}

1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122
static int af9035_init(struct dvb_usb_device *d)
{
	struct state *state = d_to_priv(d);
	int ret, i;
	u16 frame_size = 87 * 188 / 4;
	u8  packet_size = 512 / 4;
	struct reg_val_mask tab[] = {
		{ 0x80f99d, 0x01, 0x01 },
		{ 0x80f9a4, 0x01, 0x01 },
		{ 0x00dd11, 0x00, 0x20 },
		{ 0x00dd11, 0x00, 0x40 },
		{ 0x00dd13, 0x00, 0x20 },
		{ 0x00dd13, 0x00, 0x40 },
		{ 0x00dd11, 0x20, 0x20 },
		{ 0x00dd88, (frame_size >> 0) & 0xff, 0xff},
		{ 0x00dd89, (frame_size >> 8) & 0xff, 0xff},
		{ 0x00dd0c, packet_size, 0xff},
		{ 0x00dd11, state->dual_mode << 6, 0x40 },
		{ 0x00dd8a, (frame_size >> 0) & 0xff, 0xff},
		{ 0x00dd8b, (frame_size >> 8) & 0xff, 0xff},
		{ 0x00dd0d, packet_size, 0xff },
1123 1124
		{ 0x80f9a3, state->dual_mode, 0x01 },
		{ 0x80f9cd, state->dual_mode, 0x01 },
1125 1126 1127
		{ 0x80f99d, 0x00, 0x01 },
		{ 0x80f9a4, 0x00, 0x01 },
	};
1128

1129 1130 1131
	dev_dbg(&d->udev->dev, "%s: USB speed=%d frame_size=%04x " \
			"packet_size=%02x\n", __func__,
			d->udev->speed, frame_size, packet_size);
1132

1133 1134 1135 1136 1137 1138 1139
	/* init endpoints */
	for (i = 0; i < ARRAY_SIZE(tab); i++) {
		ret = af9035_wr_reg_mask(d, tab[i].reg, tab[i].val,
				tab[i].mask);
		if (ret < 0)
			goto err;
	}
1140

1141
	return 0;
1142

1143
err:
1144
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
1145

1146 1147
	return ret;
}
1148

1149
#if defined(CONFIG_RC_CORE) || defined(CONFIG_RC_CORE_MODULE)
1150 1151 1152 1153 1154 1155
static int af9035_rc_query(struct dvb_usb_device *d)
{
	unsigned int key;
	unsigned char b[4];
	int ret;
	struct usb_req req = { CMD_IR_GET, 0, 0, NULL, 4, b };
1156

1157 1158 1159
	ret = af9035_ctrl_msg(d, &req);
	if (ret < 0)
		goto err;
1160

1161 1162 1163 1164 1165 1166 1167
	if ((b[2] + b[3]) == 0xff) {
		if ((b[0] + b[1]) == 0xff) {
			/* NEC */
			key = b[0] << 8 | b[2];
		} else {
			/* ext. NEC */
			key = b[0] << 16 | b[1] << 8 | b[2];
1168
		}
1169 1170
	} else {
		key = b[0] << 24 | b[1] << 16 | b[2] << 8 | b[3];
1171 1172
	}

1173
	rc_keydown(d->rc_dev, key, 0);
1174

1175 1176 1177 1178
err:
	/* ignore errors */
	return 0;
}
1179

1180 1181 1182 1183
static int af9035_get_rc_config(struct dvb_usb_device *d, struct dvb_usb_rc *rc)
{
	int ret;
	u8 tmp;
1184

1185
	ret = af9035_rd_reg(d, EEPROM_IR_MODE, &tmp);
1186 1187 1188
	if (ret < 0)
		goto err;

1189
	dev_dbg(&d->udev->dev, "%s: ir_mode=%02x\n", __func__, tmp);
1190 1191 1192 1193

	/* don't activate rc if in HID mode or if not available */
	if (tmp == 5) {
		ret = af9035_rd_reg(d, EEPROM_IR_TYPE, &tmp);
1194 1195
		if (ret < 0)
			goto err;
1196

1197
		dev_dbg(&d->udev->dev, "%s: ir_type=%02x\n", __func__, tmp);
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		switch (tmp) {
		case 0: /* NEC */
		default:
1202
			rc->allowed_protos = RC_BIT_NEC;
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			break;
		case 1: /* RC6 */
1205
			rc->allowed_protos = RC_BIT_RC6_MCE;
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			break;
		}

		rc->query = af9035_rc_query;
		rc->interval = 500;
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		/* load empty to enable rc */
		if (!rc->map_name)
			rc->map_name = RC_MAP_EMPTY;
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	}

	return 0;

err:
1220
	dev_dbg(&d->udev->dev, "%s: failed=%d\n", __func__, ret);
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	return ret;
}
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#else
	#define af9035_get_rc_config NULL
#endif
1227

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/* interface 0 is used by DVB-T receiver and
   interface 1 is for remote controller (HID) */
static const struct dvb_usb_device_properties af9035_props = {
	.driver_name = KBUILD_MODNAME,
	.owner = THIS_MODULE,
	.adapter_nr = adapter_nr,
	.size_of_priv = sizeof(struct state),

	.generic_bulk_ctrl_endpoint = 0x02,
	.generic_bulk_ctrl_endpoint_response = 0x81,

	.identify_state = af9035_identify_state,
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	.firmware = AF9035_FIRMWARE_AF9035,
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	.download_firmware = af9035_download_firmware,

	.i2c_algo = &af9035_i2c_algo,
	.read_config = af9035_read_config,
	.frontend_attach = af9035_frontend_attach,
	.tuner_attach = af9035_tuner_attach,
	.init = af9035_init,
	.get_rc_config = af9035_get_rc_config,

1250
	.get_adapter_count = af9035_get_adapter_count,
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	.adapter = {
		{
			.stream = DVB_USB_STREAM_BULK(0x84, 6, 87 * 188),
		}, {
			.stream = DVB_USB_STREAM_BULK(0x85, 6, 87 * 188),
		},
	},
};

static const struct dvb_usb_device_properties it9135_props = {
	.driver_name = KBUILD_MODNAME,
	.owner = THIS_MODULE,
	.adapter_nr = adapter_nr,
	.size_of_priv = sizeof(struct state),

	.generic_bulk_ctrl_endpoint = 0x02,
	.generic_bulk_ctrl_endpoint_response = 0x81,

	.identify_state = af9035_identify_state,
1270
	.firmware = AF9035_FIRMWARE_IT9135,
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	.download_firmware = af9035_download_firmware_it9135,

	.i2c_algo = &af9035_i2c_algo,
	.read_config = af9035_read_config_it9135,
	.frontend_attach = af9035_frontend_attach,
	.tuner_attach = af9035_tuner_attach,
	.init = af9035_init,
	.get_rc_config = af9035_get_rc_config,

	.num_adapters = 1,
	.adapter = {
		{
			.stream = DVB_USB_STREAM_BULK(0x84, 6, 87 * 188),
		}, {
			.stream = DVB_USB_STREAM_BULK(0x85, 6, 87 * 188),
		},
	},
};

static const struct usb_device_id af9035_id_table[] = {
	{ DVB_USB_DEVICE(USB_VID_AFATECH, USB_PID_AFATECH_AF9035_9035,
		&af9035_props, "Afatech AF9035 reference design", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AFATECH, USB_PID_AFATECH_AF9035_1000,
		&af9035_props, "Afatech AF9035 reference design", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AFATECH, USB_PID_AFATECH_AF9035_1001,
		&af9035_props, "Afatech AF9035 reference design", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AFATECH, USB_PID_AFATECH_AF9035_1002,
		&af9035_props, "Afatech AF9035 reference design", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AFATECH, USB_PID_AFATECH_AF9035_1003,
		&af9035_props, "Afatech AF9035 reference design", NULL) },
	{ DVB_USB_DEVICE(USB_VID_TERRATEC, USB_PID_TERRATEC_CINERGY_T_STICK,
		&af9035_props, "TerraTec Cinergy T Stick", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_A835,
		&af9035_props, "AVerMedia AVerTV Volar HD/PRO (A835)", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_B835,
		&af9035_props, "AVerMedia AVerTV Volar HD/PRO (A835)", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_1867,
		&af9035_props, "AVerMedia HD Volar (A867)", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_A867,
		&af9035_props, "AVerMedia HD Volar (A867)", NULL) },
	{ DVB_USB_DEVICE(USB_VID_AVERMEDIA, USB_PID_AVERMEDIA_TWINSTAR,
		&af9035_props, "AVerMedia Twinstar (A825)", NULL) },
1313 1314
	{ DVB_USB_DEVICE(USB_VID_ASUS, USB_PID_ASUS_U3100MINI_PLUS,
		&af9035_props, "Asus U3100Mini Plus", NULL) },
1315 1316 1317 1318
	{ }
};
MODULE_DEVICE_TABLE(usb, af9035_id_table);

1319
static struct usb_driver af9035_usb_driver = {
1320 1321 1322 1323 1324 1325
	.name = KBUILD_MODNAME,
	.id_table = af9035_id_table,
	.probe = dvb_usbv2_probe,
	.disconnect = dvb_usbv2_disconnect,
	.suspend = dvb_usbv2_suspend,
	.resume = dvb_usbv2_resume,
1326
	.reset_resume = dvb_usbv2_reset_resume,
1327 1328
	.no_dynamic_id = 1,
	.soft_unbind = 1,
1329 1330
};

1331
module_usb_driver(af9035_usb_driver);
1332 1333 1334 1335

MODULE_AUTHOR("Antti Palosaari <crope@iki.fi>");
MODULE_DESCRIPTION("Afatech AF9035 driver");
MODULE_LICENSE("GPL");
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MODULE_FIRMWARE(AF9035_FIRMWARE_AF9035);
MODULE_FIRMWARE(AF9035_FIRMWARE_IT9135);