Merge upstream changes from Marlin 2.1.1
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@@ -25,7 +25,7 @@
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#ifdef ARDUINO_ARCH_SAM
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#include "../../inc/MarlinConfig.h"
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#include "HAL.h"
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#include "../../MarlinCore.h"
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#include <Wire.h>
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#include "usb/usb_task.h"
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@@ -34,39 +34,33 @@
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// Public Variables
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// ------------------------
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uint16_t HAL_adc_result;
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uint16_t MarlinHAL::adc_result;
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// ------------------------
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// Public functions
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// ------------------------
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TERN_(POSTMORTEM_DEBUGGING, extern void install_min_serial());
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#if ENABLED(POSTMORTEM_DEBUGGING)
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extern void install_min_serial();
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#endif
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// HAL initialization task
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void HAL_init() {
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// Initialize the USB stack
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void MarlinHAL::init() {
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#if ENABLED(SDSUPPORT)
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OUT_WRITE(SDSS, HIGH); // Try to set SDSS inactive before any other SPI users start up
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#endif
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usb_task_init();
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usb_task_init(); // Initialize the USB stack
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TERN_(POSTMORTEM_DEBUGGING, install_min_serial()); // Install the min serial handler
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}
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// HAL idle task
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void HAL_idletask() {
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// Perform USB stack housekeeping
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usb_task_idle();
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void MarlinHAL::init_board() {
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#ifdef BOARD_INIT
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BOARD_INIT();
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#endif
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}
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// Disable interrupts
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void cli() { noInterrupts(); }
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void MarlinHAL::idletask() { usb_task_idle(); } // Perform USB stack housekeeping
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// Enable interrupts
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void sei() { interrupts(); }
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void HAL_clear_reset_source() { }
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uint8_t HAL_get_reset_source() {
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uint8_t MarlinHAL::get_reset_source() {
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switch ((RSTC->RSTC_SR >> 8) & 0x07) {
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case 0: return RST_POWER_ON;
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case 1: return RST_BACKUP;
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@@ -77,13 +71,105 @@ uint8_t HAL_get_reset_source() {
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}
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}
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void HAL_reboot() { rstc_start_software_reset(RSTC); }
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void MarlinHAL::reboot() { rstc_start_software_reset(RSTC); }
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void _delay_ms(const int delay_ms) {
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// Todo: port for Due?
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delay(delay_ms);
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// ------------------------
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// Watchdog Timer
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// ------------------------
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#if ENABLED(USE_WATCHDOG)
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// Initialize watchdog - On SAM3X, Watchdog was already configured
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// and enabled or disabled at startup, so no need to reconfigure it
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// here.
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void MarlinHAL::watchdog_init() { WDT_Restart(WDT); } // Reset watchdog to start clean
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// Reset watchdog. MUST be called at least every 4 seconds after the
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// first watchdog_init or AVR will go into emergency procedures.
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void MarlinHAL::watchdog_refresh() { watchdogReset(); }
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#endif
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// Override Arduino runtime to either config or disable the watchdog
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//
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// We need to configure the watchdog as soon as possible in the boot
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// process, because watchdog initialization at hardware reset on SAM3X8E
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// is unreliable, and there is risk of unintended resets if we delay
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// that initialization to a later time.
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void watchdogSetup() {
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#if ENABLED(USE_WATCHDOG)
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// 4 seconds timeout
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uint32_t timeout = TERN(WATCHDOG_DURATION_8S, 8000, 4000);
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// Calculate timeout value in WDT counter ticks: This assumes
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// the slow clock is running at 32.768 kHz watchdog
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// frequency is therefore 32768 / 128 = 256 Hz
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timeout = (timeout << 8) / 1000;
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if (timeout == 0)
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timeout = 1;
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else if (timeout > 0xFFF)
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timeout = 0xFFF;
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// We want to enable the watchdog with the specified timeout
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uint32_t value =
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WDT_MR_WDV(timeout) | // With the specified timeout
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WDT_MR_WDD(timeout) | // and no invalid write window
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#if !(SAMV70 || SAMV71 || SAME70 || SAMS70)
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WDT_MR_WDRPROC | // WDT fault resets processor only - We want
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// to keep PIO controller state
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#endif
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WDT_MR_WDDBGHLT | // WDT stops in debug state.
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WDT_MR_WDIDLEHLT; // WDT stops in idle state.
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#if ENABLED(WATCHDOG_RESET_MANUAL)
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// We enable the watchdog timer, but only for the interrupt.
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// Configure WDT to only trigger an interrupt
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value |= WDT_MR_WDFIEN; // Enable WDT fault interrupt.
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// Disable WDT interrupt (just in case, to avoid triggering it!)
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NVIC_DisableIRQ(WDT_IRQn);
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// We NEED memory barriers to ensure Interrupts are actually disabled!
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// ( https://dzone.com/articles/nvic-disabling-interrupts-on-arm-cortex-m-and-the )
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__DSB();
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__ISB();
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// Initialize WDT with the given parameters
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WDT_Enable(WDT, value);
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// Configure and enable WDT interrupt.
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NVIC_ClearPendingIRQ(WDT_IRQn);
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NVIC_SetPriority(WDT_IRQn, 0); // Use highest priority, so we detect all kinds of lockups
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NVIC_EnableIRQ(WDT_IRQn);
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#else
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// a WDT fault triggers a reset
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value |= WDT_MR_WDRSTEN;
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// Initialize WDT with the given parameters
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WDT_Enable(WDT, value);
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#endif
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// Reset the watchdog
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WDT_Restart(WDT);
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#else
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// Make sure to completely disable the Watchdog
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WDT_Disable(WDT);
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#endif
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}
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// ------------------------
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// Free Memory Accessor
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// ------------------------
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extern "C" {
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extern unsigned int _ebss; // end of bss section
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}
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@@ -95,18 +181,9 @@ int freeMemory() {
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}
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// ------------------------
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// ADC
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// Serial Ports
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// ------------------------
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void HAL_adc_start_conversion(const uint8_t ch) {
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HAL_adc_result = analogRead(ch);
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}
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uint16_t HAL_adc_get_result() {
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// nop
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return HAL_adc_result;
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}
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// Forward the default serial ports
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#if USING_HW_SERIAL0
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DefaultSerial1 MSerial0(false, Serial);
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