Add FW update functionality
* refactor code
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14
Makefile
14
Makefile
@ -1,8 +1,18 @@
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#!/bin/bash
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#SERIAL_PORT=/dev/ttyUSB0
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SERIAL_PORT=/dev/ttyUSB0
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ifeq (,$(wildcard $(SERIAL_PORT)))
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SERIAL_PORT=/dev/tty.usbserial-1410
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endif
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ifeq (,$(wildcard $(SERIAL_PORT)))
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SERIAL_PORT=/dev/tty.usbserial-1420
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#SERIAL_PORT=/dev/tty.SLAB_USBtoUART
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endif
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ifeq (,$(wildcard $(SERIAL_PORT)))
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SERIAL_PORT=/dev/tty.SLAB_USBtoUART
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endif
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all: flash delay config update reset
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34
boot.py
34
boot.py
@ -1,5 +1,33 @@
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import os
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import machine
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from utime import sleep_ms
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# Give time to cancel boot script
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print("Press Ctrl-C to stop boot script...")
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sleep_ms(500)
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# Give time to cancel this boot script
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print("Press Ctrl-C to stop new boot script...")
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sleep_ms(1000)
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root_files = os.listdir()
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update_files = ['boot.py.new', 'main.py.new', 'hal.py.new']
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files_to_update = []
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# Check for FW updates and verify new FW files
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for file in update_files:
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if file in root_files:
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print("boot.py: trying to update " + file)
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# Try to load the user code
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try:
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with open(file, 'r') as code:
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compile(code.read(), "snippet", 'exec')
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files_to_update.append(file)
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except:
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print("boot.py: " + file + " compilation failed")
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files_to_update.clear()
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break
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# If valid updates replace with new FW
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for file in files_to_update:
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os.rename(file, file.replace('.new', ''))
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# If updates, reboot to load new FW
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if len(files_to_update) != 0:
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machine.reset()
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48
hal.py
48
hal.py
@ -34,7 +34,7 @@ class Sumorobot(object):
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# LED sensor feedback
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self.sensor_feedback = True
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# Bottom status LED
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self.status_led = Pin(self.config["status_led_pin"], Pin.OUT)
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self.status_led = Pin(self.config['status_led_pin'], Pin.OUT)
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# Bottom status LED is in reverse polarity
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self.status_led.value(1)
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# Sensor LEDs
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@ -96,7 +96,7 @@ class Sumorobot(object):
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# When the SumoRobot is not moving
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if self.prev_speed[LEFT] == 0 and self.prev_speed[RIGHT] == 0:
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# Calculate battery voltage
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battery_voltage = round(self.config["battery_coeff"] * (self.adc_battery.read() * 3.3 / 4096), 2)
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battery_voltage = round(self.config['battery_coeff'] * (self.adc_battery.read() * 3.3 / 4096), 2)
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# Map battery voltage to percentage
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temp_battery_level = 0.0 + ((100.0 - 0.0) / (4.2 - 3.2)) * (battery_voltage - 3.2)
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# When battery level changed more than 5 percent
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@ -122,7 +122,7 @@ class Sumorobot(object):
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# Get the sonar value
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self.sonar_value = self.get_sonar_value()
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# When the sonar value is small and the ping actually returned
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if self.sonar_value < self.config["sonar_threshold"] and self.sonar_value > 0:
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if self.sonar_value < self.config['sonar_threshold'] and self.sonar_value > 0:
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# When not maximum score
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if self.sonar_score < 5:
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# Increase the sonar score
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@ -145,15 +145,15 @@ class Sumorobot(object):
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# Function to update the config file
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def update_config_file(self):
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# Update the config file
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with open("config.part", "w") as config_file:
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with open('config.part', 'w') as config_file:
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config_file.write(ujson.dumps(self.config))
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os.rename("config.part", "config.json")
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os.rename('config.part', 'config.json')
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# Function to update line calibration and write it to the config file
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def calibrate_line_values(self):
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# Read the line sensor values
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self.config["left_line_value"] = self.adc_line_left.read()
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self.config["right_line_value"] = self.adc_line_right.read()
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self.config['left_line_value'] = self.adc_line_left.read()
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self.config['right_line_value'] = self.adc_line_right.read()
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# Function to get light inensity from the phototransistors
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def get_line(self, line):
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@ -173,9 +173,9 @@ class Sumorobot(object):
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# Define feedback LED
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led = LEFT_LINE if line == LEFT else RIGHT_LINE
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# Define config prefix
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prefix = "left" if line == LEFT else "right"
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prefix = 'left' if line == LEFT else 'right'
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# Check for line
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value = abs(self.get_line(line) - self.config[prefix + "_line_value"]) > self.config[prefix + "_line_threshold"]
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value = abs(self.get_line(line) - self.config[prefix + '_line_value']) > self.config[prefix + '_line_threshold']
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# Show LED feedback
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self.set_led(led, value)
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# Update last line direction if line was detected
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@ -201,10 +201,10 @@ class Sumorobot(object):
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self.pwm[servo].duty(0)
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else:
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# Define config prefix
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prefix = "left" if servo == LEFT else "right"
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prefix = 'left' if servo == LEFT else 'right'
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# -100 ... 100 to min_tuning .. max_tuning
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min_tuning = self.config[prefix + "_servo_min_tuning"]
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max_tuning = self.config[prefix + "_servo_max_tuning"]
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min_tuning = self.config[prefix + '_servo_min_tuning']
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max_tuning = self.config[prefix + '_servo_max_tuning']
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self.pwm[servo].duty(int((speed + 100) / 200 * (max_tuning - min_tuning) + min_tuning))
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def move(self, dir):
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@ -251,20 +251,20 @@ class Sumorobot(object):
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def get_sensor_scope(self):
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# TODO: implement sensor value caching
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return str(self.get_sonar_value()) + ',' + \
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str(self.get_line(LEFT)) + ',' + \
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str(self.get_line(RIGHT)) + ',' + \
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str(self.bat_charge.value()) + ',' + \
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str(self.get_battery_level())
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return str(self.get_sonar_value()) + ',' \
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+ str(self.get_line(LEFT)) + ',' \
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+ str(self.get_line(RIGHT)) + ',' \
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+ str(self.bat_charge.value()) + ',' \
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+ str(self.get_battery_level())
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def get_configuration_scope(self):
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return str(self.config["sumorobot_name"]) + ',' + \
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str(self.config["firmware_version"]) + ',' + \
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str(self.config["left_line_value"]) + ',' + \
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str(self.config["right_line_value"]) + ',' + \
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str(self.config["left_line_threshold"]) + ',' + \
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str(self.config["right_line_threshold"]) + ',' + \
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str(self.config["sonar_threshold"])
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return str(self.config['sumorobot_name']) + ',' \
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+ str(self.config['firmware_version']) + ',' \
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+ str(self.config['left_line_value']) + ',' \
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+ str(self.config['right_line_value']) + ',' \
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+ str(self.config['left_line_threshold']) + ',' \
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+ str(self.config['right_line_threshold']) + ',' \
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+ str(self.config['sonar_threshold'])
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def sleep(self, delay):
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# Check for valid delay
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15
main.py
15
main.py
@ -1,4 +1,3 @@
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import os
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import ujson
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import struct
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import _thread
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@ -15,7 +14,7 @@ _IRQ_CENTRAL_DISCONNECT = const(2)
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_IRQ_GATTS_READ_REQUEST = const(4)
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# Open and parse the config file
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with open("config.json", "r") as config_file:
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with open('config.json', 'r') as config_file:
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config = ujson.load(config_file)
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# Initialize the SumoRobot object
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@ -48,7 +47,7 @@ def process():
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# Try to execute the Python code
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try:
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python_code = compile(python_code, "snippet", "exec")
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python_code = compile(python_code, "snippet", 'exec')
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exec(python_code)
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except:
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print("main.py: the code sent had errors")
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@ -108,19 +107,19 @@ def ble_handler(event, data):
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temp_python_code += cmd
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else:
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temp_python_code = b''
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print('main.py: unknown cmd=', cmd)
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print("main.py: unknown cmd=" + cmd)
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conn_handle = None
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temp_python_code = b''
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python_code = b''
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# When user code (code.py) exists
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if 'code.py' in os.listdir():
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print('main.py: trying to load code.py')
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if 'code.py' in root_files:
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print("main.py: trying to load code.py")
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# Try to load the user code
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try:
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with open("code.py", "r") as code:
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python_code = compile(code.read(), "snippet", "exec")
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with open('code.py', 'r') as code:
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python_code = compile(code.read(), "snippet", 'exec')
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except:
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print("main.py: code.py compilation failed")
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