2032eeae6c
Documentation/components/drivers/character/serial.rst Documentation/faq/index.rst Documentation/guides/pysimcoder.rst Documentation/platforms/arm/imxrt/boards/teensy-4.x/index.rst Documentation/platforms/arm/imxrt/index.rst Documentation/platforms/arm/stm32wl5/boards/nucleo-wl55jc/index.rst Documentation/platforms/arm/stm32wl5/index.rst Documentation/platforms/risc-v/bl602/index.rst Documentation/platforms/sim/sim/index.rst Documentation/platforms/xtensa/esp32/index.rst Co-authored-by: Gustavo Henrique Nihei <38959758+gustavonihei@users.noreply.github.com>
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5.8 KiB
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215 lines
5.8 KiB
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==================
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Bouffalo Lab BL602
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==================
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BL602/BL604 is Wi-Fi + BLE combo chipset for ultra-low-cost and
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low-power application. Wireless subsystem contains 2.4G radio, Wi-Fi
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802.11b/g/n and BLE 5.0 baseband/MAC designs. Microcontroller subsystem
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contains a low-power 32-bit RISC CPU, high-speed cache and memories.
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Power Management Unit controls low-power modes. Moreover, variety of
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security features are supported.
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- 32-bit RISC CPU with FPU (floating point unit)
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- 276KB RAM
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- 128KB ROM
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- 1Kb eFuse
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- Embedded Flash (Optional)
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- Four DMA channels
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BL602 Toolchain
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===============
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Toolchain can be obtained from
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`bl_iot_sdk/toolchain/riscv <https://github.com/bouffalolab/bl_iot_sdk/tree/master/toolchain/riscv/Linux>`__
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In addition, SiFive’s toolchain can be downloaded from:
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https://static.dev.sifive.com/dev-tools/riscv64-unknown-elf-gcc-8.3.0-2019.08.0-x86_64-linux-ubuntu14.tar.gz
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Building
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========
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nsh
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---
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First make sure the ``riscv-gnu-toolchain`` has been installed
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correctly.
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Configure the NuttX project: ``./tools/configure.sh bl602evb:nsh``. Run
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``make`` to build the project.
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.. code:: shell
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root@pc:~/nuttx$ tools/configure.sh bl602evb:nsh
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root@pc:~/nuttx$ make
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wifi
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----
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Configure the NuttX project: ``./tools/configure.sh bl602evb:wifi``. Run
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``make`` to build the project.
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.. code:: shell
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root@pc:~/nuttx$ tools/configure.sh bl602evb:wifi
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root@pc:~/nuttx$ make
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Flashing
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========
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Dev Cube is a chip integrated development tool provided by Bouffalolab,
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which includes three functions: IOT program download, MCU program
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download and RF performance test.
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Dev Cube provides users with the function of downloading programs, and
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supports the configuration of parameters such as clock and flash. Users
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can decide whether to encrypt the program, add signatures, and replace
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the information file, user resource file, partition table and other
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functional configurations according to their own needs when the program
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is started.
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Users can get the latest version of Dev Cube through `Bouffalo Lab
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Dev <https://dev.bouffalolab.com/download>`__.
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Config download
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---------------
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**Configuration parameters include:**
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- **Interface**: Select the communication interface for flashing, here
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select Uart to download
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- **COM Port**: When select UART for downloading, select the COM port
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number connected to the chip, and you can click the Refresh button to
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refresh the COM port
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- **Uart Rate**: When select UART for downloading, fill in the baud
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rate. The recommended download baud rate is 2MHz,
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- **Xtal**: Select the crystal oscillator frequency when downloading.
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If the board does not have a soldered crystal oscillator, the
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internal RC32M clock source should be selected here,default is 40M
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- **Chip Erase**: default setting is False
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**Configuration parameters include:**
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- **Factory Params**: Use the dts file in the device_tree folder of the
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corresponding chip model in the Dev Cube directory. The default
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selection is 40M.
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- **Partition Table**: Use the partition table in the partition folder
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of the corresponding chip model in the Dev Cube directory, and 2M
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files are selected by default for BL602
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**For the nuttx, BL602 has a dedicated partition file. It is placed
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in** ``nuttx/tools/bl602``
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- **Boot2 Bin**: It is the first Flash program that runs after the
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system is started. It is responsible for establishing the BLSP
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security environment and guiding the main program to run. It uses the
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Boot2 file in the builtin_imgs folder of the corresponding chip model
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in the Dev Cube directory.
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- **Firmware Bin**: Bin file path generated by user compilation
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- **Media/Romfs**: Choose one of Media and Romfs. If you check media,
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you should provide a file. If you check Romfs, a folder should be
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provided.
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- **MFG Bin**: Select MFG file
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- **AES-Encrypt**: If you use the encryption function, you need to
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select the AES-Encrypt option, and enter the Key and IV used for
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encryption. Hexadecimal characters should be entered, and a Byte is
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composed of two characters, so the Key and IV require 32 characters
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to be input respectively. It should be noted that the last 8
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characters of the IV (ie 4Bytes) must be all 0
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- **Single Download Config**: you can download a single file. Fill in
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the starting address of the download, starting with 0x
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For details, please refer to `BLFlashEnv — BL602 IoT
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SDK <https://bouffalolab.github.io/bl_iot_sdk/Developer_Environment/BLFlashEnv/BLFlashEnv.html#iot>`__
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Debugging with OpenOCD
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======================
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Download OpenOCD `RISC‑V
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OpenOCD <https://static.dev.sifive.com/dev-tools/freedom-tools/v2020.12/riscv-openocd-0.10.0-2020.12.1-x86_64-linux-ubuntu14.tar.gz>`__.
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Start OpenOCD:
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.. code:: shell
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root@pc:~$ openocd -f ~/bl_iot_sdk/tools/debug/if_bflb_link.cfg -f ~/bl_iot_sdk/tools/debug/tgt_602_xip.cfg
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Start GDB:
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.. code:: shell
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root@pc:~$ riscv64-unknown-elf-gdb ~/nuttx/nuttx -x ~/bl_iot_sdk/tools/debug/602.init
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Connect OpenOCD:
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.. code:: shell
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(gdb) target remote :3333
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(gdb) c
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BL602 Peripheral Support
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========================
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- One SDIO 2.0 slave
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- One SPI master/slave
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- Two UART
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- One I2C master
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- Five PWM channels
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- 10-bit general DAC
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- 12-bit general ADC
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- Two general analog comparators (ACOMP)
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- PIR (Passive Infra-Red) detection
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- IR remote HW accelerator
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- 16 or 23 GPIOs
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========== ======= =====
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Peripheral Support NOTES
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========== ======= =====
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GPIO Yes
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UART Yes
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SPI Yes
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I2C Yes
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DMA Yes
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Wifi Yes
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SPI FLASH Yes
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Timers Yes
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Watchdog Yes
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RTC Yes
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RNG No
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AES No
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eFuse Yes
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ADC No
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Bluetooth No
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LED_PWM No
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SHA No
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RSA No
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========== ======= =====
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