mirror of
https://github.com/AsahiLinux/u-boot
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52cb4d4fb3
So far the console API uses the following naming convention: ======Extract====== typedef struct device_t; int device_register (device_t * dev); int devices_init (void); int device_deregister(char *devname); struct list_head* device_get_list(void); device_t* device_get_by_name(char* name); device_t* device_clone(device_t *dev); ======= which is too generic and confusing. Instead of using device_XX and device_t we change this into stdio_XX and stdio_dev This will also allow to add later a generic device mechanism in order to have support for multiple devices and driver instances. Signed-off-by: Jean-Christophe PLAGNIOL-VILLARD <plagnioj@jcrosoft.com> Edited commit message. Signed-off-by: Wolfgang Denk <wd@denx.de>
293 lines
6.9 KiB
C
293 lines
6.9 KiB
C
/*
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* avr.c
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*
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* AVR functions
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*
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* Copyright (C) 2006 Mihai Georgian <u-boot@linuxnotincluded.org.uk>
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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
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* the 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,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU 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,
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* MA 02111-1307 USA
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*/
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#include <common.h>
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#include <ns16550.h>
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#include <stdio_dev.h>
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/* Button codes from the AVR */
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#define PWRR 0x20 /* Power button release */
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#define PWRP 0x21 /* Power button push */
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#define RESR 0x22 /* Reset button release */
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#define RESP 0x23 /* Reset button push */
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#define AVRINIT 0x33 /* Init complete */
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#define AVRRESET 0x31 /* Reset request */
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/* LED commands */
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#define PWRBLINKSTRT '[' /* Blink power LED */
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#define PWRBLINKSTOP 'Z' /* Solid power LED */
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#define HDDLEDON 'W' /* HDD LED on */
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#define HDDLEDOFF 'V' /* HDD LED off */
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#define HDDBLINKSTRT 'Y' /* HDD LED start blink */
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#define HDDBLINKSTOP 'X' /* HDD LED stop blink */
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/* Timings for LEDs blinking to show choice */
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#define PULSETIME 250 /* msecs */
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#define LONGPAUSE (5 * PULSETIME)
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/* Button press times */
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#define PUSHHOLD 1000 /* msecs */
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#define NOBUTTON (6 * (LONGPAUSE+PULSETIME))
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/* Boot and console choices */
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#define MAX_BOOT_CHOICE 3
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static char *consoles[] = {
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"serial",
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#if defined(CONFIG_NETCONSOLE)
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"nc",
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#endif
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};
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#define MAX_CONS_CHOICE (sizeof(consoles)/sizeof(char *))
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#if !defined(CONFIG_NETCONSOLE)
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#define DEF_CONS_CHOICE 0
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#else
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#define DEF_CONS_CHOICE 1
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#endif
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#define perror(fmt, args...) printf("%s: " fmt, __FUNCTION__ , ##args)
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extern void miconCntl_SendCmd(unsigned char dat);
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extern void miconCntl_DisWDT(void);
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static int boot_stop;
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static int boot_choice = 1;
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static int cons_choice = DEF_CONS_CHOICE;
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static char envbuffer[16];
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void init_AVR_DUART (void)
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{
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NS16550_t AVR_port = (NS16550_t) CONFIG_SYS_NS16550_COM2;
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int clock_divisor = CONFIG_SYS_NS16550_CLK / 16 / 9600;
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/*
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* AVR port init sequence taken from
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* the original Linkstation init code
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* Normal U-Boot serial reinit doesn't
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* work because the AVR uses even parity
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*/
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AVR_port->lcr = 0x00;
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AVR_port->ier = 0x00;
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AVR_port->lcr = UART_LCR_BKSE;
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AVR_port->dll = clock_divisor & 0xff;
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AVR_port->dlm = (clock_divisor >> 8) & 0xff;
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AVR_port->lcr = UART_LCR_WLS_8 | UART_LCR_PEN | UART_LCR_EPS;
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AVR_port->mcr = 0x00;
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AVR_port->fcr = UART_FCR_FIFO_EN | UART_FCR_RXSR | UART_FCR_TXSR;
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miconCntl_DisWDT();
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boot_stop = 0;
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miconCntl_SendCmd(PWRBLINKSTRT);
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}
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static inline int avr_tstc(void)
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{
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return (NS16550_tstc((NS16550_t)CONFIG_SYS_NS16550_COM2));
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}
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static inline char avr_getc(void)
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{
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return (NS16550_getc((NS16550_t)CONFIG_SYS_NS16550_COM2));
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}
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static int push_timeout(char button_code)
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{
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ulong push_start = get_timer(0);
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while (get_timer(push_start) <= PUSHHOLD)
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if (avr_tstc() && avr_getc() == button_code)
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return 0;
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return 1;
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}
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static void next_boot_choice(void)
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{
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ulong return_start;
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ulong pulse_start;
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int on_times;
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int button_on;
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int led_state;
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char c;
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button_on = 0;
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return_start = get_timer(0);
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on_times = boot_choice;
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led_state = 0;
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miconCntl_SendCmd(HDDLEDOFF);
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pulse_start = get_timer(0);
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while (get_timer(return_start) <= NOBUTTON || button_on) {
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if (avr_tstc()) {
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c = avr_getc();
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if (c == PWRP)
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button_on = 1;
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else if (c == PWRR) {
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button_on = 0;
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return_start = get_timer(0);
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if (++boot_choice > MAX_BOOT_CHOICE)
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boot_choice = 1;
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sprintf(envbuffer, "bootcmd%d", boot_choice);
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if (getenv(envbuffer)) {
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sprintf(envbuffer, "run bootcmd%d", boot_choice);
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setenv("bootcmd", envbuffer);
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}
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on_times = boot_choice;
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led_state = 1;
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miconCntl_SendCmd(HDDLEDON);
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pulse_start = get_timer(0);
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} else {
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perror("Unexpected code: 0x%02X\n", c);
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}
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}
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if (on_times && get_timer(pulse_start) > PULSETIME) {
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if (led_state == 1) {
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--on_times;
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led_state = 0;
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miconCntl_SendCmd(HDDLEDOFF);
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} else {
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led_state = 1;
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miconCntl_SendCmd(HDDLEDON);
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}
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pulse_start = get_timer(0);
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}
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if (!on_times && get_timer(pulse_start) > LONGPAUSE) {
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on_times = boot_choice;
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led_state = 1;
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miconCntl_SendCmd(HDDLEDON);
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pulse_start = get_timer(0);
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}
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}
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if (led_state)
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miconCntl_SendCmd(HDDLEDOFF);
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}
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void next_cons_choice(int console)
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{
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ulong return_start;
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ulong pulse_start;
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int on_times;
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int button_on;
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int led_state;
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char c;
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button_on = 0;
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cons_choice = console;
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return_start = get_timer(0);
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on_times = cons_choice+1;
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led_state = 1;
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miconCntl_SendCmd(HDDLEDON);
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pulse_start = get_timer(0);
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while (get_timer(return_start) <= NOBUTTON || button_on) {
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if (avr_tstc()) {
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c = avr_getc();
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if (c == RESP)
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button_on = 1;
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else if (c == RESR) {
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button_on = 0;
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return_start = get_timer(0);
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cons_choice = (cons_choice + 1) % MAX_CONS_CHOICE;
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console_assign(stdin, consoles[cons_choice]);
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console_assign(stdout, consoles[cons_choice]);
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console_assign(stderr, consoles[cons_choice]);
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on_times = cons_choice+1;
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led_state = 0;
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miconCntl_SendCmd(HDDLEDOFF);
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pulse_start = get_timer(0);
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} else {
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perror("Unexpected code: 0x%02X\n", c);
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}
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}
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if (on_times && get_timer(pulse_start) > PULSETIME) {
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if (led_state == 0) {
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--on_times;
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led_state = 1;
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miconCntl_SendCmd(HDDLEDON);
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} else {
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led_state = 0;
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miconCntl_SendCmd(HDDLEDOFF);
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}
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pulse_start = get_timer(0);
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}
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if (!on_times && get_timer(pulse_start) > LONGPAUSE) {
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on_times = cons_choice+1;
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led_state = 0;
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miconCntl_SendCmd(HDDLEDOFF);
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pulse_start = get_timer(0);
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}
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}
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if (led_state);
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miconCntl_SendCmd(HDDLEDOFF);
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}
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int avr_input(void)
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{
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char avr_button;
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if (!avr_tstc())
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return 0;
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avr_button = avr_getc();
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switch (avr_button) {
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case PWRP:
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if (push_timeout(PWRR)) {
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/* Timeout before power button release */
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boot_stop = ~boot_stop;
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if (boot_stop)
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miconCntl_SendCmd(PWRBLINKSTOP);
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else
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miconCntl_SendCmd(PWRBLINKSTRT);
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/* Wait for power button release */
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while (avr_getc() != PWRR)
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;
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} else
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/* Power button released */
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next_boot_choice();
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break;
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case RESP:
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/* Wait for Reset button release */
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while (avr_getc() != RESR)
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;
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next_cons_choice(cons_choice);
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break;
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case AVRINIT:
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return 0;
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default:
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perror("Unexpected code: 0x%02X\n", avr_button);
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return 0;
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}
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if (boot_stop)
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return (-3);
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else
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return (-2);
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}
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void avr_StopBoot(void)
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{
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boot_stop = ~0;
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miconCntl_SendCmd(PWRBLINKSTOP);
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}
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