#!/bin/sh # # Copyright (C) 2011 OpenWrt.org # # This is free software, licensed under the GNU General Public License v2. # See /LICENSE for more information. # usage() { echo "Usage: $0 " rm -f $CFG_OUT exit 1 } [ "$#" -lt 4 ] && usage CE_TYPE=$1 CFG_OUT=$2 KERNEL_PATH=$3 ROOTFS_PATH=$4 case $CE_TYPE in PA300|\ OM2P) MAX_PART_SIZE=7168 KERNEL_FLASH_ADDR=0x1c0000 SIZE_FACTOR=1 SIZE_FORMAT="%d" ;; OM5P|OM5PAC|MR600|MR900|MR1750|A60) MAX_PART_SIZE=7808 KERNEL_FLASH_ADDR=0xb0000 SIZE_FACTOR=1 SIZE_FORMAT="%d" ;; A42|PA1200) MAX_PART_SIZE=15616 KERNEL_FLASH_ADDR=0x180000 SIZE_FACTOR=1024 SIZE_FORMAT="0x%08x" ;; A62|PA2200) MAX_PART_SIZE=15552 KERNEL_FLASH_ADDR=0x1a0000 SIZE_FACTOR=1024 SIZE_FORMAT="0x%08x" ;; *) echo "Error - unsupported ce type: $CE_TYPE" exit 1 ;; esac CHECK_BS=65536 KERNEL_SIZE=$(stat -c%s "$KERNEL_PATH") KERNEL_MD5=$($MKHASH md5 $KERNEL_PATH) KERNEL_SHA256=$($MKHASH sha256 $KERNEL_PATH) KERNEL_PART_SIZE_KB=$((KERNEL_SIZE / 1024)) KERNEL_PART_SIZE=$(printf $SIZE_FORMAT $(($KERNEL_PART_SIZE_KB * $SIZE_FACTOR))) ROOTFS_FLASH_ADDR=$(addr=$(($KERNEL_FLASH_ADDR + ($KERNEL_PART_SIZE_KB * 1024))); printf "0x%x" $addr) ROOTFS_SIZE=$(stat -c%s "$ROOTFS_PATH") ROOTFS_SQUASHFS_SIZE=$((ROOTFS_SIZE-4)) ROOTFS_CHECK_BLOCKS=$((ROOTFS_SQUASHFS_SIZE / CHECK_BS)) ROOTFS_MD5=$(dd if=$ROOTFS_PATH bs=$CHECK_BS count=$ROOTFS_CHECK_BLOCKS 2>&- | $MKHASH md5) ROOTFS_MD5_FULL=$($MKHASH md5 $ROOTFS_PATH) ROOTFS_SHA256_FULL=$($MKHASH sha256 $ROOTFS_PATH) ROOTFS_CHECK_SIZE=$(printf '0x%x' $ROOTFS_SQUASHFS_SIZE) ROOTFS_PART_SIZE_KB=$(($MAX_PART_SIZE - $KERNEL_PART_SIZE_KB)) ROOTFS_PART_SIZE=$(printf $SIZE_FORMAT $(($ROOTFS_PART_SIZE_KB * $SIZE_FACTOR))) cat << EOF > $CFG_OUT [vmlinux] filename=kernel md5sum=$KERNEL_MD5 filemd5sum=$KERNEL_MD5 filesha256sum=$KERNEL_SHA256 flashaddr=$KERNEL_FLASH_ADDR checksize=0x0 cmd_success=setenv bootseq 1,2; setenv kernel_size_1 $KERNEL_PART_SIZE; saveenv cmd_fail=reset [rootfs] filename=rootfs md5sum=$ROOTFS_MD5 filemd5sum=$ROOTFS_MD5_FULL filesha256sum=$ROOTFS_SHA256_FULL flashaddr=$ROOTFS_FLASH_ADDR checksize=$ROOTFS_CHECK_SIZE cmd_success=setenv bootseq 1,2; setenv kernel_size_1 $KERNEL_PART_SIZE; setenv rootfs_size_1 $ROOTFS_PART_SIZE; saveenv cmd_fail=reset EOF nge
blob: 0b13eb83012c2bd89a8d68b0287f7ebcdf821a71 (plain)
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#include "retro_refit.h"

__attribute__ ((weak))
void matrix_init_user(void) {
	// leave this function blank - it can be defined in a keymap file
};

__attribute__ ((weak))
void matrix_scan_user(void) {
	// leave this function blank - it can be defined in a keymap file
};

__attribute__ ((weak))
void led_set_user(uint8_t usb_led) {
	// leave this function blank - it can be defined in a keymap file
};

void matrix_init_kb(void) {
	// put your keyboard start-up code here
	// runs once when the firmware starts up
	
	// Disable status LED on KB, enable status LED on Teensy (KB_STATUS = !TEENSY_STATUS)
	DDRD |= (1<<6);
	PORTD |= (1<<6);
	
	matrix_init_user();
};

void amatrix_scan_kb(void) {
    // put your looping keyboard code here
    // runs every cycle (a lot)

	matrix_scan_user();
};

void led_set_kb(uint8_t usb_led) {
	// put your keyboard LED indicator (ex: Caps Lock LED) toggling code here

    if (usb_led & (1<<USB_LED_CAPS_LOCK)) {
        // output low
        DDRD |= (1<<0);
        PORTD &= ~(1<<0);
    } else {
        // Hi-Z
        DDRD &= ~(1<<0);
        PORTD &= ~(1<<0);
    }
    if (usb_led & (1<<USB_LED_NUM_LOCK)) {
        // output low
        DDRD |= (1<<1);
        PORTD &= ~(1<<1);
    } else {
        // Hi-Z
        DDRD &= ~(1<<1);
        PORTD &= ~(1<<1);
    }
    if (usb_led & (1<<USB_LED_SCROLL_LOCK)) {
        // output low
        DDRC |= (1<<6);
        PORTC &= ~(1<<6);
    } else {
        // Hi-Z
        DDRC &= ~(1<<6);
        PORTC &= ~(1<<6);
    }	
	
	led_set_user(usb_led);
};