}
}
+
+static volatile bool stayinbootloader;
+
/** Main program entry point. This routine configures the hardware required by the bootloader, then continuously
* runs the bootloader processing routine until instructed to soft-exit, or hard-reset via the watchdog to start
* the loaded application code.
SetupHardware();
/* Turn on first LED on the board to indicate that the bootloader has started */
- LEDs_SetAllLEDs(LEDS_LED1);
+ //LEDs_SetAllLEDs(LEDS_LED1);
/* Enable global interrupts so that the USB stack can function */
GlobalInterruptEnable();
/* Run the USB management task while the bootloader is supposed to be running */
+ /*if bit_is_clear(PINB,PB5) // PB5 is Digital 9 on Arduino Pro Micro
+ {
+ loop_until_bit_is_set(PINB,PB5);
+
+ while ((RunBootloader || WaitForExit) && bit_is_set(PINB,PB5))
+ USB_USBTask();
+
+ loop_until_bit_is_clear(PINB,PB5);
+ }*/
+
+ stayinbootloader = false;
+
+ uint16_t i = 0;
while (RunBootloader || WaitForExit)
- USB_USBTask();
+ {
+ USB_USBTask();
+
+ if (!stayinbootloader)
+ {
+ _delay_ms(1);
+ if (i++ > 5000)
+ {
+ break;
+ }
+ }
+ else
+ {
+ i = 0;
+ }
+ }
/* Reset configured hardware back to their original states for the user application */
ResetHardware();
/* Initialize the USB and other board hardware drivers */
USB_Init();
- LEDs_Init();
+ //LEDs_Init();
+ DDRB = 1;
+ PORTB = _BV(PB5);
+ DDRD = 0b00100000;
+ PORTD = 0;
/* Bootloader active LED toggle timer initialization */
TIMSK1 = (1 << TOIE1);
{
/* Shut down the USB and other board hardware drivers */
USB_Disable();
- LEDs_Disable();
+ //LEDs_Disable();
+ DDRB = 0;
+ PORTB = 0;
+ DDRD = 0;
+ PORTD = 0;
/* Disable Bootloader active LED toggle timer */
TIMSK1 = 0;
/** ISR to periodically toggle the LEDs on the board to indicate that the bootloader is active. */
ISR(TIMER1_OVF_vect, ISR_BLOCK)
{
- LEDs_ToggleLEDs(LEDS_LED1 | LEDS_LED2);
+ //LEDs_ToggleLEDs(LEDS_LED1 | LEDS_LED2);
+ PORTB &= ~_BV(PB0);
+ _delay_ms(5);
+ PORTB |= _BV(PB0);
}
/** Event handler for the USB_ControlRequest event. This is used to catch and process control requests sent to
return;
}
+stayinbootloader = true;
+
/* Activity - toggle indicator LEDs */
- LEDs_ToggleLEDs(LEDS_LED1 | LEDS_LED2);
+ //LEDs_ToggleLEDs(LEDS_LED1 | LEDS_LED2);
+ PORTB &= ~_BV(PB0);
+ _delay_ms(5);
+ PORTB |= _BV(PB0);
/* Get the size of the command and data from the wLength value */
SentCommand.DataSize = USB_ControlRequest.wLength;
# Run "make help" for target help.
-MCU = at90usb1287
+MCU = atmega32u4
ARCH = AVR8
-BOARD = USBKEY
+BOARD = USER
F_CPU = 8000000
F_USB = $(F_CPU)
OPTIMIZATION = s
# Flash size and bootloader section sizes of the target, in KB. These must
# match the target's total FLASH size and the bootloader size set in the
# device's fuses.
-FLASH_SIZE_KB = 128
-BOOT_SECTION_SIZE_KB = 8
+FLASH_SIZE_KB = 32
+BOOT_SECTION_SIZE_KB = 4
# Bootloader address calculation formulas
# Do not modify these macros, but rather modify the dependent values above.