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main.c
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main.c
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/*****************************************************************************
* *
* DFU/SD/SDHC Bootloader for LPC17xx *
* *
* by Triffid Hunter *
* *
* lightly modified GadgetAngel for BTT SKR (mini) E3 TURBO *
* - DFU can be included and will be launched if flash is empty or if the *
* encoder button of the display board is pressed while booting *
* - Bootloader will hold down the BEEPER_PIN on EXP1 while marlin boots to *
* have a silent boot process *
* *
* lightly modified Armin Diehl for BTT SKR 1.3 and 1.4[T] *
* - DFU can be included and will be launched if flash is empty or if the *
* encoder button of the display board is pressed while booting *
* - Firware can also be loaded from the sdcard on the display board (on my *
* board the sd card slot on the skr board was broken) *
* *
* This firmware is Copyright (C) 2009-2010 Michael Moon aka Triffid_Hunter *
* *
* 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 St, Fifth Floor, Boston, MA 02110-1301 USA *
* *
*****************************************************************************/
#define VERSION "1.05 SKR"
__attribute__((used)) static const char * version = VERSION;
// AD 16 Nov 2020
// added support for second sd card (on display port) connected to SPI 0
// disabled DFU mode / pin
// A LOW level after reset at pin DFU_BTN is considered an external hardware
// request to start the ISP command handler.
#include "usbhw.h"
#include "usbcore.h"
#include "uart.h"
#include "SDCard.h"
#include "gpio.h"
#include "sbl_iap.h"
#include "sbl_config.h"
#include "ff.h"
#include "dfu.h"
#include "min-printf.h"
#include "lpc17xx_wdt.h"
//---------------------------------
// pin definitions and defines
#include "config.h"
//--------------------------------
//#define printf(...) do {} while (0)
FATFS fat;
FIL file;
const char *firmware_file = "firmware.bin";
const char *firmware_old = "firmware.cur";
#if ENABLED(LEDS)
void setleds(int leds)
{
GPIO_write(LED1, leds & 1);
GPIO_write(LED2, leds & 2);
GPIO_write(LED3, leds & 4);
GPIO_write(LED4, leds & 8);
GPIO_write(LED5, leds & 16);
}
#endif
#if ENABLED(DFU)
int dfu_btn_pressed(void)
{
return GPIO_get(DFU_BTN);
}
void start_dfu(void)
{
DFU_init();
usb_init();
usb_connect();
while (DFU_complete() == 0)
usb_task();
usb_disconnect();
}
#else
int dfu_btn_pressed(void)
{
return 1;
}
#endif
int check_sd_firmware(void)
{
int r;
// DBGPRINTF("Check SD\n");
f_mount(0, &fat);
if ((r = f_open(&file, firmware_file, FA_READ)) == FR_OK)
{
DBGPRINTF("Flashing firmware...\n");
uint8_t buf[512];
unsigned int r = sizeof(buf);
uint32_t address = USER_FLASH_START;
while (r == sizeof(buf))
{
if (f_read(&file, buf, sizeof(buf), &r) != FR_OK)
{
f_close(&file);
return 0;
}
#if ENABLED(LEDS)
setleds((address - USER_FLASH_START) >> 15);
#endif
// printf(PFX "\t0x%lx\n", address);
write_flash((void *) address, (char *)buf, sizeof(buf));
address += r;
}
f_close(&file);
if (address > USER_FLASH_START)
{
DBGPRINTF("Success\n");
r = f_unlink(firmware_old);
r = f_rename(firmware_file, firmware_old);
return 1;
}
} else {
DBGPRINTF("%s not found\n", firmware_file);
}
return 0;
}
// this seems to fix an issue with handoff after poweroff
// found here http://knowledgebase.nxp.trimm.net/showthread.php?t=2869
typedef void __attribute__((noreturn))(*exec)();
static void boot(uint32_t a)
{
uint32_t *start;
__set_MSP(*(uint32_t *)USER_FLASH_START);
start = (uint32_t *)(USER_FLASH_START + 4);
((exec)(*start))();
}
static uint32_t delay_loop(uint32_t count)
{
volatile uint32_t j, del;
for(j=0; j<count; ++j){
del=j; // volatiles, so the compiler will not optimize the loop
}
return del;
}
static void new_execute_user_code(void)
{
uint32_t addr=(uint32_t)USER_FLASH_START;
// delay
delay_loop(3000000);
// relocate vector table
SCB->VTOR = (addr & 0x1FFFFF80);
// switch to RC generator
LPC_SC->PLL0CON = 0x1; // disconnect PLL0
LPC_SC->PLL0FEED = 0xAA;
LPC_SC->PLL0FEED = 0x55;
while (LPC_SC->PLL0STAT&(1<<25));
LPC_SC->PLL0CON = 0x0; // power down
LPC_SC->PLL0FEED = 0xAA;
LPC_SC->PLL0FEED = 0x55;
while (LPC_SC->PLL0STAT&(1<<24));
// disable PLL1
LPC_SC->PLL1CON = 0;
LPC_SC->PLL1FEED = 0xAA;
LPC_SC->PLL1FEED = 0x55;
while (LPC_SC->PLL1STAT&(1<<9));
LPC_SC->FLASHCFG &= 0x0fff; // This is the default flash read/write setting for IRC
LPC_SC->FLASHCFG |= 0x5000;
LPC_SC->CCLKCFG = 0x0; // Select the IRC as clk
LPC_SC->CLKSRCSEL = 0x00;
LPC_SC->SCS = 0x00; // not using XTAL anymore
delay_loop(1000);
// reset pipeline, sync bus and memory access
__asm (
"dmb\n"
"dsb\n"
"isb\n"
);
boot(addr);
}
int main(void)
{
int flashed;
int dfu;
#ifdef BEEPER_PIN
GPIO_output(BEEPER_PIN); GPIO_write(BEEPER_PIN,0);
#endif
flashed=0;
WDT_Feed();
#if ENABLED(DFU)
GPIO_init(DFU_BTN); GPIO_input(DFU_BTN); // GPIO_init enables pullup as well
#endif
#if ENABLED(LEDS)
GPIO_init(LED1); GPIO_output(LED1);
GPIO_init(LED2); GPIO_output(LED2);
GPIO_init(LED3); GPIO_output(LED3);
GPIO_init(LED4); GPIO_output(LED4);
GPIO_init(LED5); GPIO_output(LED5);
#endif
#if ENABLED(HEATER)
// turn off heater outputs
#error check/adjust pins for heater
GPIO_init(P2_4); GPIO_output(P2_4); GPIO_write(P2_4, 0);
GPIO_init(P2_5); GPIO_output(P2_5); GPIO_write(P2_5, 0);
GPIO_init(P2_6); GPIO_output(P2_6); GPIO_write(P2_6, 0);
GPIO_init(P2_7); GPIO_output(P2_7); GPIO_write(P2_7, 0);
#endif
#if ENABLED(LEDS)
setleds(31);
#endif
UART_init(UART_RX, UART_TX, APPBAUD);
// give SD card time to wake up
// AD: the card in the TFT35 needs more time
//for (volatile int i = (1UL<<19); i; i--);
DBGPRINTF("%s DFU:%d\n", version, DFU);
// check if dfu button pressed to avoid checking SD card(s)
dfu = (dfu_btn_pressed() == 0);
if (! dfu) delay_loop(5000000);
// check onboard sd card
// P0_9: MOSI1 P0_8: MISO1 P0_7: SCK1 P0_6: SSEL1
SDCard_init(P0_9, P0_8, P0_7, P0_6);
if (SDCard_disk_initialize() == 0)
flashed = check_sd_firmware();
else DBGPRINTF("no sdcard\n");
#if ENABLED(SD_DISPLAYBOARD)
// check sd card on display board
// P0_18: MOSI0 P0_17: MISO0 P0_15: SCK0 P0_16: SSEL0
if (! dfu) { // do not check SD cards if dfu button pressed
if (!flashed) {
SDCard_init(P0_18, P0_17, P0_15, P0_16);
if (SDCard_disk_initialize() == 0)
flashed = check_sd_firmware();
else {
DBGPRINTF("no sdcard on display board\n");
}
}
}
#endif // SD_DISPLAYBOARD
#if ENABLED(DFU)
if (dfu)
{
DBGPRINTF("ISP button pressed");
}
else if (WDT_ReadTimeOutFlag()) {
WDT_ClrTimeOutFlag();
DBGPRINTF("WATCHDOG reset");
dfu++;
} else if (*(uint32_t *)USER_FLASH_START == 0xFFFFFFFF) {
DBGPRINTF("User flash empty");
dfu++;
}
if (dfu) {
DBGPRINTF_NOPFX(", entering DFU mode\n");
start_dfu();
}
#endif
#ifdef WATCHDOG
WDT_Init(WDT_CLKSRC_IRC, WDT_MODE_RESET);
WDT_Start(1<<22);
#endif
// grab user code reset vector
#if ENABLED(DEBUG_MESSAGES)
DBGPRINTF("Jumping to 0x%x\n", (unsigned int)USER_FLASH_START+4);
#endif
while (UART_busy());
UART_deinit();
new_execute_user_code();
#if ENABLED(DEBUG_MESSAGES)
UART_init(UART_RX, UART_TX, APPBAUD);
printf(PFX "This should never happen\n");
while (UART_busy());
#endif
delay_loop(9000000);
NVIC_SystemReset();
}
DWORD get_fattime(void)
{
#define aYEAR 2020
#define aMONTH 11
#define aDAY 20
#define aHOUR 12
#define aMINUTE 42
#define aSECOND 42
return ((aYEAR & 127) << 25) |
((aMONTH & 15) << 21) |
((aDAY & 31) << 16) |
((aHOUR & 31) << 11) |
((aMINUTE & 63) << 5) |
((aSECOND & 63) << 0);
}
int _write(int fd, const char *buf, int buflen)
{
if (fd < 3)
{
while (UART_cansend() < buflen);
return UART_send((const uint8_t *)buf, buflen);
}
return buflen;
}
void NMI_Handler() {
#if ENABLED(DEBUG_MESSAGES)
DBGPRINTF("NMI\n");
#endif
for (;;);
}
void HardFault_Handler() {
#if ENABLED(DEBUG_MESSAGES)
DBGPRINTF("HardFault\n");
#endif
for (;;);
}
void MemManage_Handler() {
#if ENABLED(DEBUG_MESSAGES)
DBGPRINTF("MemManage\n");
#endif
for (;;);
}
void BusFault_Handler() {
#if ENABLED(DEBUG_MESSAGES)
DBGPRINTF("BusFault\n");
#endif
for (;;);
}
void UsageFault_Handler() {
DBGPRINTF("UsageFault\n");
for (;;);
}