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Add WDT Library #242
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2ca5c57
Create keywords.txt
nseidle 9072743
Correct typo in HAL
nseidle ddda09e
Add checking of RTS/CTS pins to enable flow control. Fix typo in _beg…
nseidle 16894c2
Merge pull request #230 from sparkfun/addFlowControl
33bd2d9
Merge pull request #191 from sparkfun/addKeywords
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Merge pull request #232 from sparkfun/release-candidate
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Merge pull request #234 from sparkfun/release-candidate
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Merge pull request #1 from sparkfun/master
stephenf7072 ece522d
Removed code using <time.h> non-core library (ie. Epoch stuff)
stephenf7072 847eb3d
Create Example8_ResetsAndWatchdog.ino
stephenf7072 38d783d
Create WDT.h
adamgarbo d913933
Create WDT.cpp
adamgarbo f8d1fb9
Create library.properties
adamgarbo fd8e357
Create keywords.txt
adamgarbo 57c81bd
Revert "Removed code using <time.h> non-core library (ie. Epoch stuff)"
stephenf7072 66b6e6e
Update WDT.h
adamgarbo 331b8d7
Update WDT.cpp
adamgarbo 453196d
rename example
oclyke 03ae640
rename the actual file
oclyke d9b3290
Merge pull request #241 from stephenf7072/master
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Add examples
adamgarbo 73a813b
Add WDT configuration
adamgarbo 6bda297
Merge remote-tracking branch 'upstream/master' into wdt
adamgarbo 38a241b
Minor updates
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####################################### | ||
# Syntax Coloring Map For Wire | ||
####################################### | ||
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####################################### | ||
# Datatypes (KEYWORD1) | ||
####################################### | ||
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####################################### | ||
# Methods and Functions (KEYWORD2) | ||
####################################### | ||
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enableBurstMode KEYWORD2 | ||
disableBurstMode KEYWORD2 | ||
getCpuFreqMHz KEYWORD2 | ||
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getInternalTemp KEYWORD2 | ||
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analogWriteResolution KEYWORD2 | ||
analogWriteFrameWidth KEYWORD2 | ||
analogWriteFrequency KEYWORD2 | ||
servoWrite KEYWORD2 | ||
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enableFastShift KEYWORD2 | ||
fastShiftOut KEYWORD2 | ||
fastShiftIn KEYWORD2 | ||
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secs KEYWORD2 | ||
systicks KEYWORD2 | ||
sysoverflows KEYWORD2 | ||
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####################################### | ||
# Instances (KEYWORD2) | ||
####################################### | ||
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####################################### | ||
# Constants (LITERAL1) | ||
####################################### | ||
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196 changes: 196 additions & 0 deletions
196
libraries/Examples/examples/Example9_ResetsAndWatchdog/Example9_ResetsAndWatchdog.ino
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/* Author: Stephen Fordyce (adapted from WDT example code by Adam Garbo - https://forum.sparkfun.com/viewtopic.php?f=169&t=52431&p=213296&hilit=watchdog#p213296) | ||
Created: 24th July 2020 | ||
License: MIT. See SparkFun Arduino Apollo3 Project for more information | ||
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This example demonstrates use of the watchdog timer, also different ways of resetting the Artemis as well as how to determine the last reset type | ||
*/ | ||
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// Global variables | ||
volatile uint8_t watchdogCounter = 0; // Watchdog interrupt counter | ||
uint32_t resetStatus = 0; // Reset status register | ||
bool testWatchdogResetFlag = false; | ||
bool watchdogInterruptCallsEmergencyReset = false; | ||
bool resetWDTEveryLoop = true; | ||
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// Watchdog timer configuration structure. | ||
am_hal_wdt_config_t g_sWatchdogConfig = { | ||
//Substitude other values for AM_HAL_WDT_LFRC_CLK_16HZ to increase/decrease the range | ||
.ui32Config = AM_HAL_WDT_LFRC_CLK_16HZ | AM_HAL_WDT_ENABLE_RESET | AM_HAL_WDT_ENABLE_INTERRUPT, // Configuration values for generated watchdog timer event. | ||
//****** EVEN THOUGH THESE IMPLY 16-BIT, THEY ARE ONLY 8-BIT - 255 MAX! | ||
.ui16InterruptCount = 120, //MAX 255! // Set WDT interrupt timeout for 5 seconds (120 / 16 = 8). // Number of watchdog timer ticks allowed before a watchdog interrupt event is generated. | ||
.ui16ResetCount = 160 //MAX 255! // Set WDT reset timeout for 15 seconds (160 / 16 = 10). // Number of watchdog timer ticks allowed before the watchdog will issue a system reset. | ||
}; | ||
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void setup(void) | ||
{ | ||
pinMode(LED_BUILTIN, OUTPUT); | ||
Serial.begin(115200); delay(10); | ||
Serial.println();Serial.println(); | ||
Serial.println("****Artemis Reset & Watchdog Reset Example****"); | ||
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printResetReason(); //Explain reason for reset | ||
am_hal_reset_control(AM_HAL_RESET_CONTROL_STATUSCLEAR, 0); // Clear reset status register for next time we reset. | ||
delay(1000); | ||
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startWatchdogTimer(); //Initialise and start the watchdog timer, in case the program gets stuck in a while loop or waiting for user input | ||
printWatchdogDetails(); | ||
delay(2000); | ||
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Serial.println("\nRunning a time-consuming loop with watchdog running"); | ||
for(int i=0; i<5; i++) | ||
{ | ||
delay(1000); //Phew, a bunch of hard processing | ||
printWatchdogValue(); | ||
} | ||
Serial.println("Yikes, the time kept increasing, even though we were doing legitimate work\n"); | ||
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Serial.println("\nRunning a time-consuming loop that restarts the watchdog timer each loop"); | ||
for(int i=0; i<5; i++) | ||
{ | ||
delay(1000); //Phew, a bunch of hard processing | ||
printWatchdogValue(); | ||
am_hal_wdt_restart(); // "Pet" the dog. // Restart the watchdog. | ||
} | ||
Serial.println("Plenty of time, but the watchdog timer will still catch a freeze\n"); | ||
delay(2000); | ||
} | ||
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void loop(void) | ||
{ | ||
Serial.println("Start of loop()"); | ||
if(resetWDTEveryLoop) | ||
am_hal_wdt_restart(); // "Pet" the dog. // Restart the watchdog. (every loop run seems good) | ||
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if(resetWDTEveryLoop) | ||
{ | ||
Serial.println("Enter 'r' to do a scheduled software reset"); | ||
Serial.println("Enter 's' to stop resetting the watchdog timer each loop"); | ||
delay(1000); | ||
char option = Serial.read(); | ||
if(option == 'r') | ||
myScheduledReset(); | ||
if(option == 's') | ||
{ | ||
Serial.println("I take no responsibility for the consequences!"); | ||
Serial.println("(the watchdog interrupt routine when triggered will reset the timer 3 times, watch the timer values to see when it's reset by the ISR)"); | ||
delay(2000); | ||
resetWDTEveryLoop = false; | ||
} | ||
} | ||
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if(resetWDTEveryLoop == false) | ||
{ | ||
Serial.println("Enter 'e' to let the watchdog interrupt call emergencyReset()"); | ||
delay(1000); | ||
char option = Serial.read(); | ||
if(option == 'e') | ||
{ | ||
Serial.println("Cool, that'll happen in a sec"); delay(20); | ||
watchdogInterruptCallsEmergencyReset = true; | ||
} | ||
} | ||
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if(testWatchdogResetFlag) | ||
{ | ||
Serial.println("Just about to go down the rabbit hole..."); | ||
delay(20); //Let serial buffer clear | ||
while(1); //Intentionally get stuck, and hope that the watchdog timer saves the day | ||
} | ||
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printWatchdogValue(); | ||
Serial.println(); | ||
delay(10); | ||
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//Optional code for sleeping - just halt the WDT before you disable everything, then re-initialise the WDT after waking up. Tested elsewhere, and does not have any appreciable impact on sleep currents or performance | ||
//am_hal_wdt_halt(); | ||
//sleepForABit(); | ||
//startWatchdog(); | ||
} | ||
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// Interrupt handler for the watchdog. | ||
extern "C" void am_watchdog_isr(void) | ||
{ | ||
am_hal_wdt_int_clear(); // Clear the watchdog interrupt. | ||
if(watchdogInterruptCallsEmergencyReset) | ||
emergencyReset(); | ||
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if ( watchdogCounter < 3 ) // Catch the first three watchdog interrupts, but let the fourth through untouched. | ||
{ | ||
digitalWrite(LED_BUILTIN, LOW); | ||
am_hal_wdt_restart(); // "Pet" the dog (reset the timer) | ||
} | ||
else | ||
{ | ||
digitalWrite(LED_BUILTIN, HIGH); // Indicator that a reset will occur. | ||
testWatchdogResetFlag = true; | ||
} | ||
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watchdogCounter++; // Increment the number of watchdog interrupts. | ||
} | ||
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void startWatchdogTimer() | ||
{ | ||
am_hal_clkgen_control(AM_HAL_CLKGEN_CONTROL_LFRC_START, 0); // LFRC must be turned on for this example as the watchdog only runs off of the LFRC. | ||
am_hal_wdt_init(&g_sWatchdogConfig); // Configure the watchdog. | ||
NVIC_EnableIRQ(WDT_IRQn); // Enable the interrupt for the watchdog in the NVIC. | ||
am_hal_interrupt_master_enable(); | ||
am_hal_wdt_start(); // Enable the watchdog. | ||
} | ||
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//IMPORTANT: IF THIS IS CALLED BY THE WATCHDOG TIMER INTERRUPT ROUTINE, IT NEEDS TO BE QUICK (NO PRINTING TO SERIAL OR DELAYS) | ||
void emergencyReset() | ||
{ | ||
//Optional: write some bits to flash/EEPROM to help with recovery | ||
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am_hal_reset_control(AM_HAL_RESET_CONTROL_SWPOI,0); //Reset with option "Software Power On Initialization" SWPOI | ||
// am_hal_reset_control(AM_HAL_RESET_CONTROL_SWPOR,0); //Reset with option SWPOR (same as SWPOI but different am_hal_reset_status bit) | ||
} | ||
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void myScheduledReset() | ||
{ | ||
//Optional: write some bits to flash/EEPROM to help with recovery | ||
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// am_hal_reset_control(AM_HAL_RESET_CONTROL_SWPOI,0); //Reset with option "Software Power On Initialization" SWPOI | ||
am_hal_reset_control(AM_HAL_RESET_CONTROL_SWPOR,0); //Reset with option SWPOR (same as SWPOI but different am_hal_reset_status bit) | ||
} | ||
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void printWatchdogDetails() | ||
{ | ||
Serial.print("Interrupt Count = "); Serial.print(g_sWatchdogConfig.ui16InterruptCount ); Serial.println(" ticks"); | ||
Serial.print("Reset Count = "); Serial.print(g_sWatchdogConfig.ui16ResetCount); Serial.println(" ticks"); | ||
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// Print out reset status register. | ||
am_hal_reset_status_t sStatus; // (Note: See am_hal_reset.h for RESET status structure) | ||
am_hal_reset_status_get(&sStatus); | ||
resetStatus = sStatus.eStatus; | ||
char rStatus[30]; | ||
sprintf(rStatus, "Reset Status Register = 0x%x", resetStatus); // (Note: Watch Dog Timer reset = 0x40) | ||
Serial.println(rStatus); | ||
} | ||
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void printWatchdogValue() | ||
{ | ||
Serial.print("Watchdog timer:"); | ||
Serial.println(am_hal_wdt_counter_get()); | ||
} | ||
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void printResetReason() | ||
{ | ||
am_hal_reset_status_t resetResult; | ||
uint32_t resultOk = am_hal_reset_status_get(&resetResult); | ||
Serial.print("Reset reason: "); | ||
if(resultOk == AM_HAL_STATUS_FAIL) Serial.println("Failed to get reset status"); | ||
if(resetResult.bEXTStat) Serial.println("External reset"); | ||
if(resetResult.bPORStat) Serial.println("Power-On reset"); | ||
if(resetResult.bBODStat) Serial.println("Brown-Out reset"); | ||
if(resetResult.bSWPORStat) Serial.println("SW Power-On reset or AIRCR reset - in this example, indicates reset by myScheduledReset()"); | ||
if(resetResult.bSWPOIStat) Serial.println("SW Power On Initialization reset - in this example, indicates reset by emergencyReset()"); | ||
if(resetResult.bDBGRStat) Serial.println("Debugger reset"); | ||
if(resetResult.bWDTStat) Serial.println("Watch Dog Timer reset - nothing in the Watchdog Timer Interrupt routine got to restarting the Watchdog Timer"); | ||
if(resetResult.bBOUnregStat) Serial.println("Unregulated Supply Brownout event"); | ||
if(resetResult.bBOCOREStat) Serial.println("Core Regulator Brownout event"); | ||
if(resetResult.bBOMEMStat) Serial.println("Memory Regulator Brownout event"); | ||
if(resetResult.bBOBLEStat) Serial.println("BLE/Burst Regulator Brownout event"); | ||
// am_hal_reset_control(AM_HAL_RESET_CONTROL_STATUSCLEAR, 0); // (do this in setup() Clear reset status register for next time we reset. | ||
Serial.println(); | ||
} |
81 changes: 81 additions & 0 deletions
81
libraries/WDT/examples/Example1_WDT_Basic/Example1_WDT_Basic.ino
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/* | ||
Author: Adam Garbo | ||
Created: August 1st, 2020 | ||
License: MIT. See SparkFun Arduino Apollo3 Project for more information | ||
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This example demonstrates a simple configuration of the Artemis Watchdog Timer. | ||
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The code will configure the watchdog for both interrupt and reset generation, | ||
and immediately start the watchdog timer. | ||
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The watchdog ISR provided will 'pet' the watchdog four times. On the fifth | ||
interrupt, the watchdog will not be pet, so the 'reset' action can occur. | ||
On the sixth timeout event, the WDT will issue a system reset, and the | ||
program will start over from the beginning. | ||
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The watchdogCounter will show the number of ticks before the watchdog | ||
reset occurs. | ||
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This example is based on the Ambiq SDK 2.4.2 watchdog.c example. | ||
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Tested with SparkFun Artemis Redboard. | ||
*/ | ||
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#include "WDT.h" | ||
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APM3_WDT wdt; | ||
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volatile bool watchdogFlag = false; // Watchdog Timer ISR flag | ||
volatile int watchdogInterrupt = 0; // Watchdog interrupt counter | ||
unsigned long currentMillis = 0, | ||
previousMillis = 0; | ||
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void setup() { | ||
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Serial.begin(115200); | ||
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Serial.println("Artemis Watchdog Timer Example"); | ||
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// Start the watchdog | ||
wdt.start(); | ||
} | ||
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void loop() | ||
{ | ||
// Check for watchdog interrupts | ||
if (watchdogFlag) | ||
{ | ||
// Calculate duration between watchdog interrupts | ||
currentMillis = millis() - previousMillis; | ||
previousMillis = millis(); | ||
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Serial.print("Interrupt: "); Serial.print(watchdogInterrupt); | ||
Serial.print(" Period: "); Serial.print(currentMillis); Serial.println(" ms "); | ||
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if (watchdogInterrupt == 5) | ||
{ | ||
Serial.println("Warning: Watchdog has triggered a system reset"); | ||
} | ||
} | ||
watchdogFlag = false; // Clear watchdog flag | ||
delay(1); | ||
} | ||
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// Interrupt handler for the watchdog | ||
extern "C" void am_watchdog_isr(void) | ||
{ | ||
// Clear the watchdog interrupt | ||
wdt.clear(); | ||
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// Catch the first four watchdog interrupts, but let the fifth through untouched | ||
if ( watchdogInterrupt < 4 ) | ||
{ | ||
wdt.restart(); // "Pet" the dog | ||
} | ||
else { | ||
digitalWrite(LED_BUILTIN, HIGH); // Visual indication of system reset trigger | ||
} | ||
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watchdogFlag = true; // Set watchdog flag | ||
watchdogInterrupt++; // Increment watchdog interrupt counter | ||
} |
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