[media] fintek-cir: new driver for Fintek LPC SuperIO CIR function
This is a new driver for the Fintek LPC SuperIO CIR function, in the
Fintek F71809 chip. Hardware and datasheets were provided by Fintek, so
thanks go to them for supporting this effort.
This driver started out as a copy of the nuvoton-cir driver, and was
then modified as needed for the Fintek chip. The two share many
similaries, though the buffer handling for the Fintek chip is actually
nearly identical to the mceusb buffer handling, so the parser routine is
almost a drop-in copy of the mceusb buffer parser (a candidate for being
abstracted out into shared code at some point).
This initial code drop *only* supports receive, but the hardware does
support transmit as well. I really haven't even started to look at
what's required, but my guess is that its also pretty similar to mceusb.
Most people are probably only really interested in RX anyway though, so
I think its good to get this out there even with only RX.
(Nb: there are also Fintek-made mceusb receivers, which presumably, this
chip shares CIR hardware with).
This hardware can be found on at least Jetway NC98 boards and derivative
systems, and likely others as well. Functionality was tested with an
NC98 development board, in-kernel decode of RC6 (mce), RC5 (hauppauge)
and NEC-ish (tivo) remotes all successful, as was lirc userspace decode
of the RC6 remote.
CC: Aaron Huang <aaron_huang@fintek.com.tw>
CC: Tom Tsai <tom_tsai@fintek.com.tw>
Signed-off-by: Jarod Wilson <jarod@redhat.com>
Signed-off-by: Mauro Carvalho Chehab <mchehab@redhat.com>
2011-05-25 16:35:13 +00:00
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/*
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* Driver for Feature Integration Technology Inc. (aka Fintek) LPC CIR
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*
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* Copyright (C) 2011 Jarod Wilson <jarod@redhat.com>
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*
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* Special thanks to Fintek for providing hardware and spec sheets.
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* This driver is based upon the nuvoton, ite and ene drivers for
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* similar hardware.
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License as
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* published by the Free Software Foundation; either version 2 of the
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* License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307
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* USA
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*/
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#include <linux/spinlock.h>
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#include <linux/ioctl.h>
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/* platform driver name to register */
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#define FINTEK_DRIVER_NAME "fintek-cir"
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#define FINTEK_DESCRIPTION "Fintek LPC SuperIO Consumer IR Transceiver"
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#define VENDOR_ID_FINTEK 0x1934
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/* debugging module parameter */
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static int debug;
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#define fit_pr(level, text, ...) \
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printk(level KBUILD_MODNAME ": " text, ## __VA_ARGS__)
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#define fit_dbg(text, ...) \
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if (debug) \
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printk(KERN_DEBUG \
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KBUILD_MODNAME ": " text "\n" , ## __VA_ARGS__)
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#define fit_dbg_verbose(text, ...) \
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if (debug > 1) \
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printk(KERN_DEBUG \
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KBUILD_MODNAME ": " text "\n" , ## __VA_ARGS__)
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#define fit_dbg_wake(text, ...) \
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if (debug > 2) \
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printk(KERN_DEBUG \
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KBUILD_MODNAME ": " text "\n" , ## __VA_ARGS__)
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#define TX_BUF_LEN 256
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#define RX_BUF_LEN 32
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struct fintek_dev {
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struct pnp_dev *pdev;
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struct rc_dev *rdev;
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spinlock_t fintek_lock;
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/* for rx */
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u8 buf[RX_BUF_LEN];
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unsigned int pkts;
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struct {
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spinlock_t lock;
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u8 buf[TX_BUF_LEN];
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unsigned int buf_count;
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unsigned int cur_buf_num;
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wait_queue_head_t queue;
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} tx;
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/* Config register index/data port pair */
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2013-11-01 17:37:17 +00:00
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u32 cr_ip;
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u32 cr_dp;
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[media] fintek-cir: new driver for Fintek LPC SuperIO CIR function
This is a new driver for the Fintek LPC SuperIO CIR function, in the
Fintek F71809 chip. Hardware and datasheets were provided by Fintek, so
thanks go to them for supporting this effort.
This driver started out as a copy of the nuvoton-cir driver, and was
then modified as needed for the Fintek chip. The two share many
similaries, though the buffer handling for the Fintek chip is actually
nearly identical to the mceusb buffer handling, so the parser routine is
almost a drop-in copy of the mceusb buffer parser (a candidate for being
abstracted out into shared code at some point).
This initial code drop *only* supports receive, but the hardware does
support transmit as well. I really haven't even started to look at
what's required, but my guess is that its also pretty similar to mceusb.
Most people are probably only really interested in RX anyway though, so
I think its good to get this out there even with only RX.
(Nb: there are also Fintek-made mceusb receivers, which presumably, this
chip shares CIR hardware with).
This hardware can be found on at least Jetway NC98 boards and derivative
systems, and likely others as well. Functionality was tested with an
NC98 development board, in-kernel decode of RC6 (mce), RC5 (hauppauge)
and NEC-ish (tivo) remotes all successful, as was lirc userspace decode
of the RC6 remote.
CC: Aaron Huang <aaron_huang@fintek.com.tw>
CC: Tom Tsai <tom_tsai@fintek.com.tw>
Signed-off-by: Jarod Wilson <jarod@redhat.com>
Signed-off-by: Mauro Carvalho Chehab <mchehab@redhat.com>
2011-05-25 16:35:13 +00:00
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/* hardware I/O settings */
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unsigned long cir_addr;
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int cir_irq;
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int cir_port_len;
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/* hardware id */
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u8 chip_major;
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u8 chip_minor;
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u16 chip_vendor;
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2012-02-14 18:51:56 +00:00
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u8 logical_dev_cir;
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[media] fintek-cir: new driver for Fintek LPC SuperIO CIR function
This is a new driver for the Fintek LPC SuperIO CIR function, in the
Fintek F71809 chip. Hardware and datasheets were provided by Fintek, so
thanks go to them for supporting this effort.
This driver started out as a copy of the nuvoton-cir driver, and was
then modified as needed for the Fintek chip. The two share many
similaries, though the buffer handling for the Fintek chip is actually
nearly identical to the mceusb buffer handling, so the parser routine is
almost a drop-in copy of the mceusb buffer parser (a candidate for being
abstracted out into shared code at some point).
This initial code drop *only* supports receive, but the hardware does
support transmit as well. I really haven't even started to look at
what's required, but my guess is that its also pretty similar to mceusb.
Most people are probably only really interested in RX anyway though, so
I think its good to get this out there even with only RX.
(Nb: there are also Fintek-made mceusb receivers, which presumably, this
chip shares CIR hardware with).
This hardware can be found on at least Jetway NC98 boards and derivative
systems, and likely others as well. Functionality was tested with an
NC98 development board, in-kernel decode of RC6 (mce), RC5 (hauppauge)
and NEC-ish (tivo) remotes all successful, as was lirc userspace decode
of the RC6 remote.
CC: Aaron Huang <aaron_huang@fintek.com.tw>
CC: Tom Tsai <tom_tsai@fintek.com.tw>
Signed-off-by: Jarod Wilson <jarod@redhat.com>
Signed-off-by: Mauro Carvalho Chehab <mchehab@redhat.com>
2011-05-25 16:35:13 +00:00
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/* hardware features */
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bool hw_learning_capable;
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bool hw_tx_capable;
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/* rx settings */
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bool learning_enabled;
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bool carrier_detect_enabled;
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enum {
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CMD_HEADER = 0,
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SUBCMD,
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CMD_DATA,
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PARSE_IRDATA,
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} parser_state;
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u8 cmd, rem;
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/* carrier period = 1 / frequency */
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u32 carrier;
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};
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/* buffer packet constants, largely identical to mceusb.c */
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#define BUF_PULSE_BIT 0x80
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#define BUF_LEN_MASK 0x1f
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#define BUF_SAMPLE_MASK 0x7f
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#define BUF_COMMAND_HEADER 0x9f
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#define BUF_COMMAND_MASK 0xe0
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#define BUF_COMMAND_NULL 0x00
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#define BUF_HW_CMD_HEADER 0xff
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#define BUF_CMD_G_REVISION 0x0b
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#define BUF_CMD_S_CARRIER 0x06
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#define BUF_CMD_S_TIMEOUT 0x0c
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#define BUF_CMD_SIG_END 0x01
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#define BUF_CMD_S_TXMASK 0x08
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#define BUF_CMD_S_RXSENSOR 0x14
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#define BUF_RSP_PULSE_COUNT 0x15
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#define CIR_SAMPLE_PERIOD 50
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/*
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* Configuration Register:
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* Index Port
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* Data Port
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*/
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#define CR_INDEX_PORT 0x2e
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#define CR_DATA_PORT 0x2f
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/* Possible alternate values, depends on how the chip is wired */
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#define CR_INDEX_PORT2 0x4e
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#define CR_DATA_PORT2 0x4f
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/*
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* GCR_CONFIG_PORT_SEL bit 4 specifies which Index Port value is
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* active. 1 = 0x4e, 0 = 0x2e
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*/
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#define PORT_SEL_PORT_4E_EN 0x10
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/* Extended Function Mode enable/disable magic values */
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#define CONFIG_REG_ENABLE 0x87
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#define CONFIG_REG_DISABLE 0xaa
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/* Chip IDs found in CR_CHIP_ID_{HI,LO} */
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#define CHIP_ID_HIGH_F71809U 0x04
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#define CHIP_ID_LOW_F71809U 0x08
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/*
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* Global control regs we need to care about:
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* Global Control def.
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* Register name addr val. */
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#define GCR_SOFTWARE_RESET 0x02 /* 0x00 */
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#define GCR_LOGICAL_DEV_NO 0x07 /* 0x00 */
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#define GCR_CHIP_ID_HI 0x20 /* 0x04 */
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#define GCR_CHIP_ID_LO 0x21 /* 0x08 */
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#define GCR_VENDOR_ID_HI 0x23 /* 0x19 */
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#define GCR_VENDOR_ID_LO 0x24 /* 0x34 */
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#define GCR_CONFIG_PORT_SEL 0x25 /* 0x01 */
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#define GCR_KBMOUSE_WAKEUP 0x27
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#define LOGICAL_DEV_DISABLE 0x00
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#define LOGICAL_DEV_ENABLE 0x01
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/* Logical device number of the CIR function */
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2012-02-14 18:51:56 +00:00
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#define LOGICAL_DEV_CIR_REV1 0x05
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#define LOGICAL_DEV_CIR_REV2 0x08
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[media] fintek-cir: new driver for Fintek LPC SuperIO CIR function
This is a new driver for the Fintek LPC SuperIO CIR function, in the
Fintek F71809 chip. Hardware and datasheets were provided by Fintek, so
thanks go to them for supporting this effort.
This driver started out as a copy of the nuvoton-cir driver, and was
then modified as needed for the Fintek chip. The two share many
similaries, though the buffer handling for the Fintek chip is actually
nearly identical to the mceusb buffer handling, so the parser routine is
almost a drop-in copy of the mceusb buffer parser (a candidate for being
abstracted out into shared code at some point).
This initial code drop *only* supports receive, but the hardware does
support transmit as well. I really haven't even started to look at
what's required, but my guess is that its also pretty similar to mceusb.
Most people are probably only really interested in RX anyway though, so
I think its good to get this out there even with only RX.
(Nb: there are also Fintek-made mceusb receivers, which presumably, this
chip shares CIR hardware with).
This hardware can be found on at least Jetway NC98 boards and derivative
systems, and likely others as well. Functionality was tested with an
NC98 development board, in-kernel decode of RC6 (mce), RC5 (hauppauge)
and NEC-ish (tivo) remotes all successful, as was lirc userspace decode
of the RC6 remote.
CC: Aaron Huang <aaron_huang@fintek.com.tw>
CC: Tom Tsai <tom_tsai@fintek.com.tw>
Signed-off-by: Jarod Wilson <jarod@redhat.com>
Signed-off-by: Mauro Carvalho Chehab <mchehab@redhat.com>
2011-05-25 16:35:13 +00:00
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/* CIR Logical Device (LDN 0x08) config registers */
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#define CIR_CR_COMMAND_INDEX 0x04
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#define CIR_CR_IRCS 0x05 /* Before host writes command to IR, host
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must set to 1. When host finshes write
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command to IR, host must clear to 0. */
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#define CIR_CR_COMMAND_DATA 0x06 /* Host read or write comand data */
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#define CIR_CR_CLASS 0x07 /* 0xff = rx-only, 0x66 = rx + 2 tx,
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0x33 = rx + 1 tx */
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#define CIR_CR_DEV_EN 0x30 /* bit0 = 1 enables CIR */
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#define CIR_CR_BASE_ADDR_HI 0x60 /* MSB of CIR IO base addr */
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#define CIR_CR_BASE_ADDR_LO 0x61 /* LSB of CIR IO base addr */
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#define CIR_CR_IRQ_SEL 0x70 /* bits3-0 store CIR IRQ */
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#define CIR_CR_PSOUT_STATUS 0xf1
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#define CIR_CR_WAKE_KEY3_ADDR 0xf8
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#define CIR_CR_WAKE_KEY3_CODE 0xf9
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#define CIR_CR_WAKE_KEY3_DC 0xfa
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#define CIR_CR_WAKE_CONTROL 0xfb
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#define CIR_CR_WAKE_KEY12_ADDR 0xfc
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#define CIR_CR_WAKE_KEY4_ADDR 0xfd
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#define CIR_CR_WAKE_KEY5_ADDR 0xfe
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#define CLASS_RX_ONLY 0xff
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#define CLASS_RX_2TX 0x66
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#define CLASS_RX_1TX 0x33
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/* CIR device registers */
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#define CIR_STATUS 0x00
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#define CIR_RX_DATA 0x01
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#define CIR_TX_CONTROL 0x02
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#define CIR_TX_DATA 0x03
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#define CIR_CONTROL 0x04
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/* Bits to enable CIR wake */
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#define LOGICAL_DEV_ACPI 0x01
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#define LDEV_ACPI_WAKE_EN_REG 0xe8
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#define ACPI_WAKE_EN_CIR_BIT 0x04
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#define LDEV_ACPI_PME_EN_REG 0xf0
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#define LDEV_ACPI_PME_CLR_REG 0xf1
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#define ACPI_PME_CIR_BIT 0x02
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#define LDEV_ACPI_STATE_REG 0xf4
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#define ACPI_STATE_CIR_BIT 0x20
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/*
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* CIR status register (0x00):
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* 7 - CIR_IRQ_EN (1 = enable CIR IRQ, 0 = disable)
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* 3 - TX_FINISH (1 when TX finished, write 1 to clear)
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* 2 - TX_UNDERRUN (1 on TX underrun, write 1 to clear)
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* 1 - RX_TIMEOUT (1 on RX timeout, write 1 to clear)
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* 0 - RX_RECEIVE (1 on RX receive, write 1 to clear)
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*/
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#define CIR_STATUS_IRQ_EN 0x80
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#define CIR_STATUS_TX_FINISH 0x08
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#define CIR_STATUS_TX_UNDERRUN 0x04
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#define CIR_STATUS_RX_TIMEOUT 0x02
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#define CIR_STATUS_RX_RECEIVE 0x01
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#define CIR_STATUS_IRQ_MASK 0x0f
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/*
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* CIR TX control register (0x02):
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* 7 - TX_START (1 to indicate TX start, auto-cleared when done)
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* 6 - TX_END (1 to indicate TX data written to TX fifo)
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*/
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#define CIR_TX_CONTROL_TX_START 0x80
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#define CIR_TX_CONTROL_TX_END 0x40
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