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This reverts commit 1a17e17c462bdd4e1d26d8742f8b7087273e04c2. PUBLISHED_FROM=80028de308c9a021955d1425d2bfee8feb85f193
86 lines
2.6 KiB
Markdown
86 lines
2.6 KiB
Markdown
# STM32F4 example project
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This example shows how to use mongoose on STM32 boards.
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To run it you will need:
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- [STM32F429-Discovery](http://www.st.com/content/st_com/en/products/evaluation-tools/product-evaluation-tools/mcu-eval-tools/stm32-mcu-eval-tools/stm32-mcu-discovery-kits/32f429idiscovery.html) dev board
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- [CC3100](http://www.ti.com/product/CC3100) WiFi network processor
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## Wiring scheme
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By default, example uses SPI4 for communication with CC3100 and UART1 for
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the debug output. All parameters are described in file `stm32f4xx_hal_msp.h`,
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they can be changed to use another SPI and/or UART
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To use default scheme connect (CC3100 -> STM32-DISCO) connect:
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```
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DO -> PE5
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DIN -> PE6
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CLK -> PE2
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CS -> PB12
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IRQ -> PA0
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HIB -> PB0
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```
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## Building firmware
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Change `user_params.h`, put correct WiFi SSID and password there,
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also change `MQTT_BROKER_ADDRESS` to the real broker address.
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`make` in `mongoose/STM32F4_CC3100` will download required docker image and make
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firmware. Result will be in `STM32F4_CC3100/out` folder.
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## Uploading firmare
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Uploading firmware method depends on how you connected STM32 board to your
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computer. If it is connected via USB ST-LINK connected it is appears as
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a flash drive and in order to upload firmware just copy `out/example.bin`
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to that drive.
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## Running
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Compile two additional samples: `mqtt_broker` and `mqtt_client` and run them
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in different terminals.
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Press `reset` (or repower) STM board.
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The board will connect to broker and will start to publish its uptime in
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`/stuff` channel. `mqtt_client` is subscribed on this channel as well, so
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it should start to print
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```
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Got incoming message /stuff: Current tick: 99000
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Forwarding to /test
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Got incoming message /stuff: Current tick: 100120
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Forwarding to /test
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Got incoming message /stuff: Current tick: 101250
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Forwarding to /test
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...
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```
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If you connect UART to serial port monitor (pin PA9 or ST-LINK device, like /dev/ttyACM0)
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you should see device output:
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```
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**** Hello ****
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Initializing CC3100 on SPI4
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Starting WiFi connect
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Done, waiting for events
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Connected to WiFi
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Got IP
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Connected to 192.168.1.108:1883
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Connected to broker
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Subscribing to /test
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Subscription acknowledged
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Publishing message with tick=1
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Got incoming message /test: Current tick: 4487
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Publishing message with tick=2
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Got incoming message /test: Current tick: 5597
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Publishing message with tick=3
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Got incoming message /test: Current tick: 6717
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...
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```
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This output looks like this because the device sends messages `Current tick: ....`
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into `/stuff` channel, `mqtt_client` receives all messages in this channel
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and sends them to `/test` channel. But the device is subscribed to this channel
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so, it receives it back.
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