rockbox/firmware/target/arm/as3525/sansa-e200v2/button-e200v2.c
Thomas Martitz 740e5a2ffe Show DBOP in the e200v2's view IO ports menu.
git-svn-id: svn://svn.rockbox.org/rockbox/trunk@20042 a1c6a512-1295-4272-9138-f99709370657
2009-02-18 17:46:11 +00:00

288 lines
8.3 KiB
C

/***************************************************************************
* __________ __ ___.
* Open \______ \ ____ ____ | | _\_ |__ _______ ___
* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
* \/ \/ \/ \/ \/
* $Id$
*
* Copyright (C) 2006 by Barry Wardell
*
* 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 software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
* KIND, either express or implied.
*
****************************************************************************/
/* Taken from button-h10.c by Barry Wardell and reverse engineering by MrH. */
#include "system.h"
#include "button.h"
#include "backlight.h"
#include "powermgmt.h"
#define WHEEL_REPEAT_INTERVAL 300000
#define WHEEL_FAST_ON_INTERVAL 20000
#define WHEEL_FAST_OFF_INTERVAL 60000
#define WHEELCLICKS_PER_ROTATION 48 /* wheelclicks per full rotation */
static short _dbop_din;
/* Clickwheel */
static unsigned int old_wheel_value = 0;
static unsigned int wheel_repeat = BUTTON_NONE;
static unsigned int wheel_click_count = 0;
static unsigned int wheel_delta = 0;
static int wheel_fast_mode = 0;
static unsigned long last_wheel_usec = 0;
static unsigned long wheel_velocity = 0;
static long last_wheel_post = 0;
static long next_backlight_on = 0;
/* Buttons */
static bool hold_button = false;
#ifndef BOOTLOADER
static bool hold_button_old = false;
#endif
extern bool lcd_button_support(void);
void button_init_device(void)
{
}
bool button_hold(void)
{
return hold_button;
}
void clickwheel(unsigned int wheel_value)
{
static const unsigned char wheel_tbl[2][4] =
{
{ 2, 0, 3, 1 }, /* Clockwise rotation */
{ 1, 3, 0, 2 }, /* Counter-clockwise */
};
/* Read wheel
* Bits 13 and 14 of DBOP_DIN change as follows:
* Clockwise rotation 00 -> 01 -> 11 -> 10 -> 00
* Counter-clockwise 00 -> 10 -> 11 -> 01 -> 00
*/
/* did the wheel value change? */
unsigned int btn = BUTTON_NONE;
if (old_wheel_value == wheel_tbl[0][wheel_value])
btn = BUTTON_SCROLL_FWD;
else if (old_wheel_value == wheel_tbl[1][wheel_value])
btn = BUTTON_SCROLL_BACK;
if (btn != BUTTON_NONE)
{
int repeat = 1; /* assume repeat */
unsigned long usec = TIMER1_VALUE; /* WAG!!! and it works!!*/
unsigned v = (usec - last_wheel_usec) & 0x7fffffff;
v = (v>0) ? 1000000 / v : 0; /* clicks/sec = 1000000 * +clicks/usec */
v = (v>0xffffff) ? 0xffffff : v; /* limit to 24 bit */
/* some velocity filtering to smooth things out */
wheel_velocity = (7*wheel_velocity + v) / 8;
if (btn != wheel_repeat)
{
/* direction reversals nullify all fast mode states */
wheel_repeat = btn;
repeat =
wheel_fast_mode =
wheel_velocity =
wheel_click_count = 0;
}
if (wheel_fast_mode != 0)
{
/* fast OFF happens immediately when velocity drops below
threshold */
if (TIME_AFTER(usec,
last_wheel_usec + WHEEL_FAST_OFF_INTERVAL))
{
/* moving out of fast mode */
wheel_fast_mode = 0;
/* reset velocity */
wheel_velocity = 0;
/* wheel_delta is always 1 in slow mode */
wheel_delta = 1;
}
}
else
{
/* fast ON gets filtered to avoid inadvertent jumps to fast mode */
if (repeat && wheel_velocity > 1000000/WHEEL_FAST_ON_INTERVAL)
{
/* moving into fast mode */
wheel_fast_mode = 1 << 31;
wheel_click_count = 0;
wheel_velocity = 1000000/WHEEL_FAST_OFF_INTERVAL;
}
else if (++wheel_click_count < 2)
{
btn = BUTTON_NONE;
}
/* wheel_delta is always 1 in slow mode */
wheel_delta = 1;
}
if (TIME_AFTER(current_tick, next_backlight_on) ||
v <= 4)
{
/* poke backlight to turn it on or maintain it no more often
than every 1/4 second*/
next_backlight_on = current_tick + HZ/4;
backlight_on();
buttonlight_on();
reset_poweroff_timer();
}
if (btn != BUTTON_NONE)
{
wheel_click_count = 0;
/* generate repeats if quick enough */
if (repeat && TIME_BEFORE(usec,
last_wheel_post + WHEEL_REPEAT_INTERVAL))
btn |= BUTTON_REPEAT;
last_wheel_post = usec;
if (queue_empty(&button_queue))
{
queue_post(&button_queue, btn, wheel_fast_mode |
(wheel_delta << 24) |
wheel_velocity*360/WHEELCLICKS_PER_ROTATION);
/* message posted - reset delta */
wheel_delta = 1;
}
else
{
/* skipped post - increment delta */
if (++wheel_delta > 0x7f)
wheel_delta = 0x7f;
}
}
last_wheel_usec = usec;
}
old_wheel_value = wheel_value;
}
static short read_dbop(void)
{
/*write a red pixel */
if (!lcd_button_support())
return _dbop_din;
/* Set up dbop for input */
while (!(DBOP_STAT & (1<<10))); /* Wait for fifo to empty */
DBOP_CTRL |= (1<<19);
DBOP_CTRL &= ~(1<<16); /* disable output */
DBOP_TIMPOL_01 = 0xe167e167; //11100001011001111110000101100111
DBOP_TIMPOL_23 = 0xe167006e; //11100001011001110000000001101110
DBOP_CTRL |= (1<<15); /* start read */
while (!(DBOP_STAT & (1<<16))); /* wait for valid data */
int delay = 50;
while(delay--); /* small delay to set up read */
_dbop_din = DBOP_DIN; /* now read dbop & store info*/
DBOP_TIMPOL_01 = 0x6e167;
DBOP_TIMPOL_23 = 0xa167e06f;
DBOP_CTRL |= (1<<16);
DBOP_CTRL &= ~(1<<19);
return _dbop_din;
}
short button_dbop_data(void)
{
return _dbop_din;
}
/*
* Get button pressed from hardware
*/
int button_read_device(void)
{
int btn = BUTTON_NONE;
/* read buttons from dbop */
short dbop = read_dbop();
/* hold button */
if(dbop & (1<<12))
{
hold_button = true;
return btn;
}
else
{
hold_button = false;
}
if (dbop & (1<<8))
btn |= BUTTON_POWER;
if (!(dbop & (1<<15)))
btn |= BUTTON_REC;
/* handle wheel */
int wheel_value = dbop & (1<<13|1<<14);
wheel_value >>= 13;
clickwheel(wheel_value);
/* Set afsel, so that we can read our buttons */
GPIOC_AFSEL &= ~(1<<2|1<<3|1<<4|1<<5|1<<6);
/* set dir so we can read our buttons (but reset the C pins first) */
GPIOB_DIR &= ~(1<<4);
GPIOC_DIR |= (1<<2|1<<3|1<<4|1<<5|1<<6);
GPIOC_PIN(2) |= (1<<2);
GPIOC_PIN(3) |= (1<<3);
GPIOC_PIN(4) |= (1<<4);
GPIOC_PIN(5) |= (1<<5);
GPIOC_PIN(6) |= (1<<6);
GPIOC_DIR &= ~(1<<2|1<<3|1<<4|1<<5|1<<6);
int delay = 50; /* small delay needed to read buttons correctly */
while(delay--);
/* direct GPIO connections */
if (!GPIOC_PIN(2))
btn |= BUTTON_UP;
if (!GPIOC_PIN(3))
btn |= BUTTON_LEFT;
if (!GPIOC_PIN(4))
btn |= BUTTON_SELECT;
if (!GPIOC_PIN(5))
btn |= BUTTON_RIGHT;
if (!GPIOC_PIN(6))
btn |= BUTTON_DOWN;
/* return to settings needed for lcd */
GPIOC_DIR |= (1<<2|1<<3|1<<4|1<<5|1<<6);
GPIOC_AFSEL |= (1<<2|1<<3|1<<4|1<<5|1<<6);
#ifndef BOOTLOADER
/* light handling */
if (hold_button != hold_button_old)
{
hold_button_old = hold_button;
backlight_hold_changed(hold_button);
}
#endif /* BOOTLOADER */
/* The int_btn variable is set in the button interrupt handler */
return btn;
}