example: Remove duplicate commands and invalid serial port information
Closes https://github.com/espressif/esp-idf/issues/5049
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33 changed files with 6 additions and 115 deletions
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@ -35,8 +35,6 @@ Note :
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -26,8 +26,6 @@ Note :
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -23,8 +23,6 @@ To test this demo, any BLE mesh provisioner app can be used.
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Select 'Enable BLE mesh functionality' under 'Component config > Bluetooth > Enable NimBLE host stack'.
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### Build and Flash
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@ -29,8 +29,6 @@ Note :
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Select I/O capabilities of device from 'Example Configuration > I/O Capability', default is 'Just_works'.
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* Enable/Disable other security related parameters 'Bonding, MITM option, secure connection(SM SC)' from 'Example Configuration'.
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@ -19,8 +19,6 @@ In this example, we use `ADC_UNIT_1` by default, we need to connect a voltage so
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -27,8 +27,6 @@ We use ADC1_CHANNEL_7 (GPIO18) and DAC_CHANNEL_1 (GPIO17) by default, you need t
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Set ADC2 and DAC channel in "Example Configuration"
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### Build and Flash
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@ -17,8 +17,6 @@ In this example, we generate a 100Hz triangle and sine wave and send it out from
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -38,7 +38,7 @@ The following is the hardware connection:
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options, the flash size should be set to 4 MB.
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* Set the flash size to 4 MB under Serial Flasher Options.
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* Select "Custom partition table CSV" and rename "Custom partition CSV file" to "partitions_adc_dac_example.csv".
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(Note that you can use `sdkconfig.defaults`)
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@ -26,8 +26,6 @@ Connect four LEDs to the following LEDC channels / individual GPIOs:
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -23,8 +23,6 @@ Pin connection:
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -27,9 +27,6 @@ By default the GPIO output is 4. To change it, edit the line with `GPIO_NUM_4` i
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idf.py menuconfig
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```
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Set serial port under Serial Flasher Options and save the configuration.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -26,21 +26,11 @@ order to receive back the same data which were sent out.
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```
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idf.py menuconfig
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```
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or
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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or
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```
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idf.py -p PORT flash monitor
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```
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@ -38,21 +38,11 @@ UART1 driver to use the hardware flow control by setting `.flow_ctrl = UART_HW_F
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```
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idf.py menuconfig
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```
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or
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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or
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```
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idf.py -p PORT flash monitor
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```
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@ -47,21 +47,12 @@ Connect USB to RS485 adapter to computer and connect its D+, D- output lines wit
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```
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idf.py menuconfig
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```
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or
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options to the serial port of ESP32-WROVER-KIT board.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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or
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```
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idf.py -p PORT flash monitor
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```
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(To exit the serial monitor, type ``Ctrl-]``.)
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@ -16,21 +16,11 @@ The example can be used with any ESP32 development board connected to a computer
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```
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idf.py menuconfig
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```
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or
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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or
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```
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idf.py -p PORT flash monitor
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```
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@ -28,21 +28,11 @@ through UART.
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```
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idf.py menuconfig
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```
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or
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```
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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```
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idf.py -p PORT flash monitor
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```
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or
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```
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idf.py -p PORT flash monitor
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```
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@ -82,8 +82,6 @@ This example can be run on any commonly available ESP32 development board.
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Specific configuration for each example can be found in its README.md file.
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## Build and Flash
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@ -38,10 +38,6 @@ This example can be run on any commonly available ESP32 development board.
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idf.py menuconfig
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```
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Set following parameter under Serial Flasher Options:
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* Set `Default serial port`.
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Set following parameters under Example Configuration Options:
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* Set `IP version` of example to be IPV4 or IPV6.
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@ -40,10 +40,6 @@ This example can be run on any commonly available ESP32 development board.
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idf.py menuconfig
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```
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Set following parameter under Serial Flasher Options:
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* Set `Default serial port`.
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Set following parameters under Example Configuration Options:
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* Set `IP version` of the example to be IPV4 or IPV6.
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@ -48,10 +48,6 @@ This example can be run on any commonly available ESP32 development board.
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idf.py menuconfig
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```
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Set following parameter under Serial Flasher Options:
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* Set `Default serial port`.
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Set following parameters under Example Configuration Options:
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* Set `IP version` of example to be IPV4 or IPV6.
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@ -50,10 +50,6 @@ This example can be run on any commonly available ESP32 development board.
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idf.py menuconfig
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```
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Set following parameter under Serial Flasher Options:
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* Set `Default serial port`.
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Set following parameters under Example Configuration Options:
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* Set `IP version` of the example to be IPV4 or IPV6.
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@ -50,8 +50,6 @@ There are various applications, specific to Windows and macOS platform which can
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Under Example Configuration set the following :
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* Security Version (default 1)
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* Proof of Possession (default "abcd1234")
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@ -33,8 +33,6 @@ To provision the device running this example, the `esp_prov.py` script needs to
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Under Example Configuration set the following :
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* Security Version (default 1)
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* Proof of Possession (default "abcd1234")
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@ -32,8 +32,6 @@ To provision the device running this example, the `esp_prov.py` script needs to
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Under Example Configuration set the following :
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* SoftAP SSID (Defaults to PROV_<MACID>)
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* SoftAP Password (Defaults to PROV_PASS)
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@ -50,8 +50,6 @@ There are various applications, specific to Windows and macOS platform which can
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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@ -45,8 +45,6 @@ To provision the device running this example, the `esp_prov.py` script needs to
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Under Example Configuration set the following :
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* SoftAP SSID (Defaults to PROV_<MACID>)
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* SoftAP Password (Defaults to PROV_PASS)
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@ -14,8 +14,6 @@ The example also demonstrates writing and reading encrypted partitions in flash.
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Enable the flash encryption mode (Development or Release) under Security Features. Default usage mode is Development (recommended during test and development phase).
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* Ensure Bootloader log verbosity is Info under Bootloader config.
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Make sure that SPI RAM bank switching is enabled. (Compiling the example with default values will automatically enable this.) It can be found under `Component config > ESP32-specific > Support for external, SPI-connected RAM > SPI RAM config`.
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### Build and Flash
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@ -18,14 +18,14 @@ Example should be able to run on any commonly available ESP32 development board.
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### Configure the project
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```
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make menuconfig
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Enter `make -j4 flash monitor` if you are using GNU Make based build system or enter `idf.py build flash monitor` if you' are using CMake based build system.
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```
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idf.py build flash monitor
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```
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(To exit the serial monitor, type ``Ctrl-]``.)
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@ -34,7 +34,6 @@ to make ESPNOW data more safe and more reliable.
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Set WiFi mode (station or SoftAP) under Example Configuration Options.
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* Set ESPNOW primary master key under Example Configuration Options.
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This parameter must be set to the same value for sending and recving devices.
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@ -11,8 +11,6 @@
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Set WiFi SSID and WiFi Password and Maximal STA connections under Example Configuration Options.
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### Build and Flash
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@ -11,8 +11,6 @@
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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* Set WiFi SSID and WiFi Password and Maximum retry under Example Configuration Options.
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### Build and Flash
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@ -16,8 +16,6 @@ Download ESPTOUCH APP from app store:
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idf.py menuconfig
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```
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* Set serial port under Serial Flasher Options.
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### Build and Flash
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Build the project and flash it to the board, then run monitor tool to view serial output:
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